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Le scanner MagnaFORM sert à inspecter les surfaces peintes ou rugueuses et fournit rapidement des résultats fiables.","robots":""},{"path":"/fr/insights/5-ways-to-improve-measurement-accuracy-with-the-magna-mike-8600-thickness-gage","lastModified":1773335686,"title":"Cinq façons d’améliorer la précision des résultats de mesure lors de l’utilisation du mesureur d’épaisseur Magna-Mike 8600 | Blog Post | Evident IMS","image":"https://ims.evidentscientific.com/fr/insights/media_1da3906a89c1e02210a326fc120f907b416cc027f.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Cet article indique les façons d’améliorer la précision de mesure lors de l’utilisation du mesureur d’épaisseur Magna-Mike 8600, c'est-à-dire utiliser la plus grande cible appropriée possible pour l’application, toujours effectuer des étalonnages multipoints, effectuer des étalonnages rapides et réguliers, utiliser le mode de capture minimale et tenir le Magna-Mike 8600 loin des interférences environnementales. Cet article indique les façons d’améliorer la précision de mesure lors de l’utilisation du mesureur d’épaisseur Magna-Mike 8600, c'est-à-dire utiliser la plus grande cible appropriée possible pour l’application, toujours effectuer des étalonnages multipoints, effectuer des étalonnages rapides et réguliers, utiliser le mode de capture minimale et tenir le Magna-Mike 8600 loin des interférences environnementales.","robots":""},{"path":"/fr/insights/8-reasons-to-try-the-72dl-plus-ultrasonic-thickness-gauge","lastModified":1773335688,"title":"Huit raisons d’essayer le mesureur d’épaisseur à ultrasons 72DL PLUS™ | Blog Post | Evident IMS","image":"https://ims.evidentscientific.com/fr/insights/media_1880e49464f9cb8e3c28036f6d9d991ca5a28de63.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Découvrez le mesureur d’épaisseur à ultrasons 72DL PLUS™, un appareil à haute fréquence et à haute vitesse capable de mesurer l’épaisseur de matériaux ultraminces et multicouches. Dans cet article, nous vous donnons huit raisons d’essayer ce mesureur novateur dans votre processus d’inspection.","robots":""},{"path":"/fr/insights/8-tips-to-improve-your-high-temperature-corrosion-thickness-measurements","lastModified":1773335683,"title":"Huit trucs pour améliorer vos mesures d’épaisseur de la corrosion à des températures élevées | Blog Post | Evident IMS","image":"https://ims.evidentscientific.com/fr/insights/media_1da9ee3711586cec7f07f3345328fd6cbdede0d91.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Ces conseils vous aideront à effectuer des mesures exactes de la corrosion à des températures élevées. Utilisez une sonde à émission-réception séparées et un couplant conçus pour des températures élevées, de même qu’un logiciel de compensation de la température. Augmentez votre fréquence de rafraîchissement de la mesure, appliquez le couplant sur la sonde, limitez la durée du contact entre la sonde et le matériau, effectuez fréquemment un étalonnage de la compensation du délai de la sonde, et ne laissez jamais la sonde devenir trop chaude pour les mains. Ces conseils vous aideront à effectuer des mesures exactes de la corrosion à des températures élevées. Utilisez une sonde à émission-réception séparées et un couplant conçus pour des températures élevées, de même qu’un logiciel de compensation de la température. Augmentez votre fréquence de rafraîchissement de la mesure, appliquez le couplant sur la sonde, limitez la durée du contact entre la sonde et le matériau, effectuez fréquemment un étalonnage de la compensation du délai de la sonde, et ne laissez jamais la sonde devenir trop chaude pour les mains.","robots":""},{"path":"/fr/insights/a-faster-way-to-inspect-heat-exchanger-tubes","lastModified":1773335688,"title":"Trois méthodes d’inspection des tubes d’échangeurs thermiques | Une façon plus rapide d’inspecter les tubes d’échangeurs thermiques","image":"https://ims.evidentscientific.com/fr/insights/media_1d23e41690f2f5c115917904bab9aba6ad8694a05.jpg?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Les échangeurs thermiques sont courants dans de nombreuses applications, y compris dans les gros systèmes de climatisation. À l’intérieur se trouvent de petits tubes qu’on doit inspecter périodiquement pour déceler la corrosion. Bien que les méthodes classiques soient efficaces, les vidéoscopes modernes proposent une technique plus rapide et plus économique. Les échangeurs thermiques sont présents dans de nombreuses applications, y compris dans les gros systèmes de climatisation. À l’intérieur se trouvent de petits tubes que l’on doit inspecter périodiquement pour déceler la corrosion. Bien que les méthodes classiques soient efficaces, les vidéoscopes modernes proposent une technique plus rapide et plus économique.","robots":""},{"path":"/fr/insights/a-monumental-discovery-xrf-sheds-light-on-the-origins-of-stonehenge","lastModified":1773335688,"title":"Une monumentale découverte : comment la technologie XRF a jeté un nouvel éclairage sur les origines des monolithes de Stonehenge | Blog Post | Evident IMS","image":"https://ims.evidentscientific.com/fr/insights/media_140c518a907bc4043ea049018f659235933e4fe4c.jpg?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Pendant des siècles, les explorateurs et les archéologues ont spéculé sur l’origine des pierres qui se trouvent sur le site de Stonehenge. Aujourd’hui, le mystère de leur origine est en voie d’être résolu grâce à de nouvelles recherches menées à l’aide d’une technologie avancée. En savoir plus. Pendant des siècles, les explorateurs et les archéologues ont spéculé sur l’origine des pierres qui se trouvent sur le site de Stonehenge. Aujourd’hui, le mystère de leur origine est en voie d’être résolu grâce à de nouvelles recherches menées à l’aide d’une technologie avancée. En savoir plus.","robots":""},{"path":"/fr/insights/a-rats-eye-view-revealing-the-secret-lives-of-natures-covert-creatures-with-borescopes-and-videoscopes","lastModified":1773335689,"title":"Du point de vue d’un rat : utiliser des boroscopes et des vidéoscopes pour montrer la vie secrète des créatures naturelles cachées | Blog Post | Evident IMS","image":"https://ims.evidentscientific.com/fr/insights/media_1f44381ad430557e719112ec76f724374f2bc6351.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Découvrez comment un cinéaste animalier a appliqué la technologie de collecte d’images destinée à l’inspection industrielle pour révéler un côté que nous ne voyons jamais des rongeurs et des insectes.","robots":""},{"path":"/fr/insights/a-whirlwind-journeyfrom-high-school-junior-to-published-author-with-the-vanta-xrf-along-for-the-ride","lastModified":1773335685,"title":"Un parcours hors du commun : comment une étudiante du secondaire a vu sa recherche, menée entre autres à l’aide d’un analyseur XRF Vanta, publiée dans une revue scientifique | Blog Post | Evident IMS","image":"https://ims.evidentscientific.com/fr/insights/media_17624bdd50ba9c9b7a45fe9d06faa42b859fd26f6.jpg?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Que faisiez-vous à 17 ans? Lisez cet article sur une jeune femme particulièrement déterminée qui a vu sa recherche publiée dans une revue scientifique de renommée internationale alors qu’elle était encore à l’école secondaire. Notre analyseur XRF Vanta faisait partie des outils utilisés dans le cadre de cette recherche. Que faisiez-vous à 17 ans? Lisez cet article sur une jeune femme particulièrement déterminée qui a vu sa recherche publiée dans une revue scientifique de renommée internationale alors qu’elle était encore à l’école secondaire. Notre analyseur XRF Vanta faisait partie des outils utilisés dans le cadre de cette recherche.","robots":""},{"path":"/fr/insights/9-quick-tips-for-end-to-end-manufacturing-quality-control","lastModified":1767974312,"title":"Neuf conseils pratiques pour la réalisation d’un contrôle de la qualité de bout en bout dans l’industrie de la fabrication | Neuf conseils pratiques pour la réalisation d’un contrôle de la qualité de bout en bout dans l’industrie de la fabrication","image":"https://ims.evidentscientific.com/fr/insights/media_133f588868af8d74d550ab7ffa98e5cc332dd7224.jpg?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Pour les applications critiques, il est important de respecter des normes de qualité élevées à toutes les étapes de votre chaîne d’approvisionnement, de l’arrivée des marchandises jusqu’à l’assemblage final, en passant par le processus de fabrication. Découvrez neuf conseils pratiques pour la réalisation d’un contrôle de la qualité de bout en bout dans l’industrie de la fabrication Apprenez-en plus! Pour les applications critiques, il est important de respecter des normes de qualité élevées à toutes les étapes de votre chaîne d’approvisionnement, de l’arrivée des marchandises jusqu’à l’assemblage final, en passant par le processus de fabrication. Découvrez neuf conseils pratiques pour la réalisation d’un contrôle de la qualité de bout en bout dans l’industrie de la fabrication Apprenez-en plus!","robots":""},{"path":"/fr/insights/accuracy-vs-precision-in-handheld-xrf-whats-the-difference","lastModified":1773335688,"title":"Quelle est la différence entre l’exactitude et la précision dans le domaine des analyseurs XRF à main? | Quelle est la différence entre l’exactitude et la précision dans le domaine des analyseurs XRF à main?","image":"https://ims.evidentscientific.com/fr/insights/media_158cc7814d82f43d2b35f3bbb0eeb112f12a3acd5.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"L’exactitude et la précision sont essentielles lorsqu’on effectue une analyse XRF, mais la signification de ces termes est souvent mal comprise. Dans cet article de blogue, nous expliquons leur différence et la façon dont ils sont utilisés lorsqu’il est question d’analyseurs XRF à main. Apprenez-en plus! L’exactitude et la précision sont essentielles lorsqu’on effectue une analyse XRF, mais la signification de ces termes est souvent mal comprise. Dans cet article de blogue, nous expliquons leur différence et la façon dont ils sont utilisés lorsqu’il est question d’analyseurs XRF à main. Apprenez-en plus!","robots":""},{"path":"/fr/insights/achieving-the-pipe-safety-dream","lastModified":1773335687,"title":"Assurer la sécurité maximale des pipelines | Blog Post | Evident IMS","image":"https://ims.evidentscientific.com/fr/insights/media_137e66f127e64d6fd656eca9861dfac9c5ccd42d8.jpg?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Les méthodes de contrôle non destructif (CND) constituent un outil essentiel pour les inspecteurs de la sécurité des conduites de gaz naturel, car elles leur permettent d’effectuer leurs inspections sans mettre en péril l’intégrité des pipelines. En utilisant des appareils d’inspection visuelle à distance (RVI), les inspecteurs de la sécurité peuvent évaluer l’état d’une conduite de branchement transportant du gaz naturel. Les méthodes de contrôle non destructif (CND) constituent un outil essentiel pour les inspecteurs de la sécurité des conduites de gaz naturel, car elles leur permettent d’effectuer leurs inspections sans mettre en péril l’intégrité des pipelines. En utilisant des appareils d’inspection visuelle à distance (RVI), les inspecteurs de la sécurité peuvent évaluer l’état d’une conduite de branchement transportant du gaz naturel.","robots":""},{"path":"/fr/insights/advantageous-applications-for-phase-coherence-imaging-pci","lastModified":1773335689,"title":"Applications pour lesquelles l’imagerie par cohérence de phase (PCI) est avantageuse | Article de blogue | Evident IMS","image":"https://ims.evidentscientific.com/fr/insights/media_10248c3b97073e5f64097d0feb1c28795da9cefba.jpg?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Découvrez de quelle façon vous pouvez, dans le cadre de vos applications, bénéficier de la PCI, une nouvelle technologie de traitement des signaux intégrée à la version 5.10 du logiciel MXU de l’appareil de recherche de défauts OmniScan X3 64.","robots":""},{"path":"/fr/insights/advantages-x-ray-defraction-ore-processing","lastModified":1773335688,"title":"Quatre avantages de la diffraction des rayons X (XRD) pour le traitement du minerai | Blog Post | Evident IMS","image":"https://ims.evidentscientific.com/fr/insights/media_151cd048ebf42d931a29711fd336998b16fbc283f.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Nous examinons quatre avantages de la technologie par diffraction des rayons X pour les applications de traitement du minerai. L’intégration de la technologie XRD permet d’économiser du temps et de l’argent, en plus d’optimiser les opérations.","robots":""},{"path":"/fr/insights/aluminum-coating-thickness-analysis-drives-quality-in-automotive-components","lastModified":1767387491,"title":"L’analyse de l’épaisseur des revêtements en aluminium : un processus clé pour vérifier la qualité des composants automobiles | Blog Post | Evident IMS","image":"https://ims.evidentscientific.com/fr/insights/media_1ca2ee56b382c7be29832d990d668f0ec06364213.jpg?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Les finitions et les revêtements en aluminium jouent un rôle clé dans l’optimisation des performances des véhicules. Apprenez-en plus sur contrôle qualité de l’épaisseur des revêtements, où la technologie XRF révolutionne le domaine en permettant aux fabricants de répondre à des spécifications précises.","robots":""},{"path":"/fr/insights/aistech-2019-our-latest-for-the-steel-industry","lastModified":1773335685,"title":"AISTech 2019 : présentation de nos dernières innovations pour l’industrie sidérurgique | Blog Post | Evident IMS","image":"https://ims.evidentscientific.com/fr/insights/media_16503d0d97b70c6adca9eb99dd23dae2ae6667c08.jpg?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Vous étiez absent au salon commercial AISTech 2019? Rattrapez-vous : obtenez de l’information sur nos dernières innovations pour l’industrie sidérurgique et voyez les deux présentations faites par Alex Thurston, responsable de l’ingénierie des applications. Vous étiez absent au salon commercial AISTech 2019? 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Apprenez-en plus sur la conformité à la norme API RP 578 et la formation connexe dispensée par un expert des applications PMI.","robots":""},{"path":"/fr/insights/all-your-flaws-revealed-tfm-imaging-that-you-can-trust","lastModified":1773335690,"title":"Détection du moindre défaut : faites confiance à l’imagerie TFM d’Evident | Blog Post | Evident IMS","image":"https://ims.evidentscientific.com/fr/insights/media_1ce7c61ffc1af03b06b2b719f03648bf87bbf9872.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Découvrez nos conseils pour maintenir des taux d’acquisition élevés même en utilisant notre puissante fonction d’enveloppe, une innovation qui améliore encore davantage les images créées avec la méthode d’inspection TFM. Découvrez nos conseils pour maintenir des taux d’acquisition élevés même en utilisant notre puissante fonction d’enveloppe, une innovation qui améliore encore davantage les images créées avec la méthode d’inspection TFM.","robots":""},{"path":"/fr/insights/are-olympic-gold-medals-actually-made-of-gold","lastModified":1773335685,"title":"Les médailles d’or olympiques sont-elles réellement faites d’or ? | Blog Post | Evident IMS","image":"https://ims.evidentscientific.com/fr/insights/media_173e31d80211cf33d168032ab6cb21f7274fb6ec8.jpg?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Les médailles d’or olympiques sont-elles réellement faites d’or ? 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Chaque jour, Artemis Testing Lab utilise les technologies XRF et de thermoluminescence pour répondre à cette question. Apprenez-en plus sur ces techniques et sur la façon dont cette entreprise les utilise pour vérifier avec précision l’authenticité des objets. Cet artefact est-il authentique ou faux? Chaque jour, Artemis Testing Lab utilise les technologies XRF et de thermoluminescence pour répondre à cette question. 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Découvrez comment ils se sont servis d’un analyseur XRF à main pour analyser en toute sécurité le bois des boîtes devant être triées pour le recyclage. Lorsqu’un client s’est présenté chez Austin Hayes Ltd. en demandant au personnel s’il était possible de recycler 20 000 boîtes de munitions en bois traité avec un produit de préservation, les responsables de l’entreprise ont compris qu’un nouveau défi se posait à eux en matière de santé et de sécurité. 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Les roues des avions sont soumises à de très fortes contraintes et à des températures élevées qui peuvent, avec le temps, causer leur fissuration. Nos sondes à courants de Foucault sur mesure sont utilisées pour inspecter les roues des avions et garantir la sécurité des passagers.","robots":""},{"path":"/fr/insights/efficient-ndt-for-hot-surfaces","lastModified":1764620784,"title":"Scanner HSMT-Flex haute température | CND efficaces","image":"/fr/insights/media_1e9d8a406972228bf5d34fcf4e3e716e67d7183b8.jpg?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Inspectez des surfaces chaudes jusqu’à 350 °C (662 °F) avec le scanner HSMT-Flex™ haute température. 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Dans cet article de blogue, obtenez la réponse à cette question et à bien d’autres questions fréquemment posées sur le logiciel WeldSight.","robots":""},{"path":"/fr/insights/fuel-oil-analysis-using-handheld-xrf-an-experiment","lastModified":1773335686,"title":"Une expérience sur l’analyse du mazout au moyen d’un analyseur XRF à main | Blog Post | Evident IMS","image":"https://ims.evidentscientific.com/fr/insights/media_18e65145d4562e8dc48afc63eec233b3188a48127.jpg?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Les analyseurs XRF à main sont-ils des outils efficaces analyser le mazout? Nous avons réalisé une expérience pour le découvrir. Apprenez-en plus! Les analyseurs XRF à main sont-ils des outils efficaces analyser le mazout? Nous avons réalisé une expérience pour le découvrir. 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Équipés d’une sonde et d’un sabot spéciaux, les appareils de recherche de défauts par ultrasons multiéléments Omniscan SX ou MX d’Evident servent justement à la détection des défauts dans ce type de soudure. Découvrez comment une bonne combinaison d’appareil de recherche de défauts, de sonde et de sabot multiéléments peut produire une imagerie facilement interprétable des minuscules défauts se créant dans les soudures par friction-malaxage.","robots":""},{"path":"/fr/insights/propelling-sustainable-energy","lastModified":1767387253,"title":"Propelling Sustainable Energy | Blog Post | Evident Scientific","image":"https://ims.evidentscientific.com/fr/insights/media_105bffcb427bb99d45a975e0f97ef30b1fa3d2cc0.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Keeping Wind Turbines at Max Capacity is Critical","robots":""},{"path":"/fr/insights/power-of-portable-video-borescopes-for-wind-turbine-inspection","lastModified":1767387108,"title":"La puissance des vidéoscopes portables pour l’inspection d’éoliennes | La puissance des vidéoscopes portables pour l’inspection d’éoliennes","image":"https://ims.evidentscientific.com/fr/insights/media_102f5d143e5e3788ef4a58c194abf4abccc1801a3.jpg?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Avec la croissance de la demande en énergie éolienne, les besoins en matière de solutions d’inspection d’éoliennes augmentent aussi, et les vidéoscopes ultraportables émergent comme des solutions qui peuvent répondre à ces besoins croissants. 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Le système d’inspection des roues de train d’Evident fournit aux fabricants un accès direct à une efficacité accrue. Découvrez comment la conception innovante de notre système d’inspection des roues de train contribue à résoudre les problèmes de productivité des systèmes actuels.","robots":""},{"path":"/fr/insights/ruckus-composites-inspects-thousands-of-bikes-with-one-ultrasonic-thickness-gage","lastModified":1773335683,"title":"Ruckus Composites inspecte des milliers de vélos au moyen d’un mesureur d’épaisseur à ultrasons | Ruckus Composites inspecte des milliers de vélos au moyen d’un mesureur d’épaisseur à ultrasons","image":"https://ims.evidentscientific.com/fr/insights/media_1f2f7069c4162d7dbdc478eb6c4d8021fd22456de.jpg?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Il peut être difficile d’inspecter des cadres de vélos en fibre de carbone sans avoir l’équipement approprié. 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Cet article décrit les manières de reconnaître les fausses pierres précieuses et explique comment les analyseurs XRF peuvent les distinguer des vraies pierres avec exactitude. Apprenez-en plus! Vous êtes-vous déjà demandé si la bague que vous avez reçue en héritage est sertie d’un vrai ou d’un faux diamant? Evident peut vous aider à faire la différence. Cet article décrit les manières de reconnaître les fausses pierres précieuses et explique comment les analyseurs XRF peuvent les distinguer des vraies pierres avec exactitude. 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Conçue pour les analyseurs XRF Vanta et offerte sur l’Evident Scientific Cloud, l’application Vanta™ Data Viewer simplifie radicalement le partage de données. Dans cet article de blogue, nous répondons aux questions couramment posées sur cette application gratuite et expliquons comment elle peut vous aider à visualiser les données de vos analyseurs XRF répartis partout dans le monde. 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(63 mm) to…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720048","lastModified":1770677466,"title":"SA1-N60S-IHC-AOD2","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased array probe A1 type, normal scan, 60 degree shear wave with IHC option (irrigation holes and carbides). The wedge features a curvature matching 1.8 in. (46 mm) to…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720060","lastModified":1770677466,"title":"SA1-N60S-IHC-AOD3.25","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased array probe A1 type, normal scan, 60 degree shear wave with IHC option (irrigation holes and carbides). The wedge features a curvature matching 2.9 in. 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(79 mm) to…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720068","lastModified":1770677466,"title":"SA1-N60S-IHC-AOD4.5","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased array probe A1 type, normal scan, 60 degree shear wave with IHC option (irrigation holes and carbides). The wedge features a curvature matching 3.9 in. (98 mm) to…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720064","lastModified":1770677466,"title":"SA1-N60S-IHC-AOD30","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased array probe A1 type, normal scan, 60 degree shear wave with IHC option (irrigation holes and carbides). 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(88.9 mm)…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720549","lastModified":1770677466,"title":"SA12-0L","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A12, normal scan, 0 degree longitudinal wave, plain wedge (without irrigation, holes, carbides).","robots":""},{"path":"/fr/products/phased-array-wedges/u8720550","lastModified":1770677466,"title":"SA12-N55S","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A12, normal scan, 55 degree shear wave, plain wedge (without irrigation holes and carbides).","robots":""},{"path":"/fr/products/phased-array-wedges/u8720755","lastModified":1770677466,"title":"SA12-N55S-AOD4.5","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A12, normal scan, 55 degree shear wave, plain wedge (without irrigation holes and carbides). 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(168.3…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720754","lastModified":1770677466,"title":"SA12-N55S-AOD4","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A12, normal scan, 55 degree shear wave, plain wedge (without irrigation holes and carbides). The wedge features a curvature matching 4 in. (101.6 mm)…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720770","lastModified":1770677466,"title":"SA12-N55S-IHC-AOD12.75","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A12, normal scan, 55 degree shear wave, with IHC option (with irrigation holes and carbides). The wedge features a curvature matching 12.75 in. 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(219.1…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720764","lastModified":1770677466,"title":"SA12-N55S-IHC-AOD4","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A12, normal scan, 55 degree shear wave, with IHC option (with irrigation holes and carbides). The wedge features a curvature matching 4 in. (101.6 mm)…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720763","lastModified":1770677466,"title":"SA12-N55S-IHC-AOD3.5","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A12, normal scan, 55 degree shear wave, with IHC option (with irrigation holes and carbides in rexolite, no ring). 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The wedge features a curvature matching 4 inches…","robots":""},{"path":"/fr/products/phased-array-wedges/u8721380","lastModified":1770677466,"title":"SA12-N60L-IHC","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A12, normal scan, 60 degree longitudinal wave, with IHC option (with irrigation holes and carbides).","robots":""},{"path":"/fr/products/phased-array-wedges/u8720766","lastModified":1770677466,"title":"SA12-N55S-IHC-AOD5.563","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A12, normal scan, 55 degree shear wave, with IHC option (with irrigation holes and carbides). The wedge features a curvature matching 5.563 in. (141.3…","robots":""},{"path":"/fr/products/phased-array-wedges/u8721012","lastModified":1770677466,"title":"SA14-N55S-IHC-AOD10.75","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A14, normal scan, 55 degree shear wave, with IHC option (with irrigation holes and carbides). The wedge features a curvature matching 10.75 in. (273.1…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720999","lastModified":1770677466,"title":"SA14-N55S-IHC","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A14, normal scan, 55 degree shear wave, with IHC option (with irrigation holes and carbides).?","robots":""},{"path":"/fr/products/phased-array-wedges/u8721003","lastModified":1770677466,"title":"SA14-N55S-AOD6.625","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A14, normal scan, 55 degree shear wave, plain wedge (without irrigation holes and carbides). The wedge features a curvature matching 6.625 in. (168.3…","robots":""},{"path":"/fr/products/phased-array-wedges/u8721006","lastModified":1770677466,"title":"SA14-N55S-AOD12.75","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A14, normal scan, 55 degree shear wave, plain wedge (without irrigation holes and carbides). The wedge features a curvature matching 12.75 in. (323.9…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720765","lastModified":1770677466,"title":"SA12-N55S-IHC-AOD4.5","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A12, normal scan, 55 degree shear wave, with IHC option (with irrigation holes and carbides). The wedge features a curvature matching 4.5 in.(114.3…","robots":""},{"path":"/fr/products/phased-array-wedges/u8721007","lastModified":1770677466,"title":"SA14-N55S-IHC-AOD4","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A14, normal scan, 55 degree shear wave, with IHC option (with irrigation holes and carbides). The wedge features a curvature matching 4 in. (101.6 mm)…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720768","lastModified":1770677466,"title":"SA12-N55S-IHC-AOD8.625","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A12, normal scan, 55 degree shear wave, with IHC option (with irrigation holes and carbides). The wedge features a curvature matching 8.625 in. (219.1…","robots":""},{"path":"/fr/products/phased-array-wedges/u8721002","lastModified":1770677466,"title":"SA14-N55S-AOD5.563","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A14, normal scan, 55 degree shear wave, plain wedge (without irrigation holes and carbides). The wedge features a curvature matching 5.563 in. (141.3…","robots":""},{"path":"/fr/products/phased-array-wedges/u8721013","lastModified":1770677466,"title":"SA14-N55S-IHC-AOD12.75","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A14, normal scan, 55 degree shear wave, with IHC option (with irrigation holes and carbides). The wedge features a curvature matching 12.75 in. (323.9…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720551","lastModified":1770677466,"title":"SA12-N60L","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A12, normal scan, 60 degree longitudinal wave, plain wedge (without irrigation holes and carbides).","robots":""},{"path":"/fr/products/phased-array-wedges/u8721005","lastModified":1770677466,"title":"SA14-N55S-AOD10.75","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A14, normal scan, 55 degree shear wave, plain wedge (without irrigation holes and carbides). The wedge features a curvature matching 10.75 in. (273.1…","robots":""},{"path":"/fr/products/phased-array-wedges/u8721001","lastModified":1770677466,"title":"SA14-N55S-AOD4.5","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A14, normal scan, 55 degree shear wave, plain wedge (without irrigation holes and carbides). The wedge features a curvature matching 4.5 in. (114.3…","robots":""},{"path":"/fr/products/phased-array-wedges/u8721004","lastModified":1770677466,"title":"SA14-N55S-AOD8.625","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A14, normal scan, 55 degree shear wave, plain wedge (without irrigation holes and carbides). The wedge features a curvature matching 8.625 in. (219.1…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720767","lastModified":1770677466,"title":"SA12-N55S-IHC-AOD6.625","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A12, normal scan, 55 degree shear wave, with IHC option (with irrigation holes and carbides). The wedge features a curvature matching 6.625 in. (168.3…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720997","lastModified":1770677466,"title":"SA14-N55S","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A14, normal scan, 55 degree shear wave, plain wedge (without irrigation holes and carbides).","robots":""},{"path":"/fr/products/phased-array-wedges/u8721011","lastModified":1770677466,"title":"SA14-N55S-IHC-AOD8.625","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A14, normal scan, 55 degree shear wave, with IHC option (with irrigation holes and carbides). The wedge features a curvature matching 8.625 in. (219.1…","robots":""},{"path":"/fr/products/phased-array-wedges/u8721008","lastModified":1770677466,"title":"SA14-N55S-IHC-AOD4.5","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A14, normal scan, 55 degree shear wave, with IHC option (with irrigation holes and carbides). The wedge features a curvature matching 4.5 in. (114.3…","robots":""},{"path":"/fr/products/phased-array-wedges/u8721010","lastModified":1770677466,"title":"SA14-N55S-IHC-AOD6.625","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A14, normal scan, 55 degree shear wave, with IHC option (with irrigation holes and carbides). The wedge features a curvature matching 6.625 in. 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in.…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720102","lastModified":1770677466,"title":"SA2-N55S-IHC-AOD12","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased array probe A2 type, normal scan, 55 degree shear wave with IHC option (irrigation holes and carbides). 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(63 mm) to…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720126","lastModified":1770677466,"title":"SA2-N55S-IHC-AOD4.5","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased array probe A2 type, normal scan, 55 degree shear wave with IHC option (irrigation holes and carbides). The wedge features a curvature matching 3.9 in. (98 mm) to…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720120","lastModified":1770677466,"title":"SA2-N55S-IHC-AOD3.5","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased array probe A2 type, normal scan, 55 degree shear wave with IHC option (irrigation holes and carbides). The wedge features a curvature matching 3.1 in. (79 mm) to…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720128","lastModified":1770677466,"title":"SA2-N55S-IHC-AOD6","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased array probe A2 type, normal scan, 55 degree shear wave with IHC option (irrigation holes and carbides). The wedge features a curvature matching 5 in. (127 mm) to…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720124","lastModified":1770677466,"title":"SA2-N55S-IHC-AOD4","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased array probe A2 type, normal scan, 55 degree shear wave with IHC option (irrigation holes and carbides). The wedge features a curvature matching 3.5 in. (88.5 mm)…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720114","lastModified":1770677466,"title":"SA2-N55S-IHC-AOD22","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased array probe A2 type, normal scan, 55 degree shear wave with IHC option (irrigation holes and carbides). The wedge features a curvature matching 16 inches (406mm)…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720136","lastModified":1770677466,"title":"SA2-N60L-IHC","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A2, normal scan, 60 degree longitudinal wave with IHC option (irrigation holes and carbides).","robots":""},{"path":"/fr/products/phased-array-wedges/u8720135","lastModified":1770677466,"title":"SA2-N60L","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe A2, normal scan, 60 degree longitudinal wave, plain wedge (without irrigation holes and carbides).","robots":""},{"path":"/fr/products/phased-array-wedges/u8720122","lastModified":1770677466,"title":"SA2-N55S-IHC-AOD30","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased array probe A2 type, normal scan, 55 degree shear wave with IHC option (irrigation holes and carbides). The wedge features a curvature matching 22 inches (559mm)…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720110","lastModified":1770677466,"title":"SA2-N55S-IHC-AOD2.5","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased array probe A2 type, normal scan, 55 degree shear wave with IHC option (irrigation holes and carbides). The wedge features a curvature matching 2.3 in. (57.15 mm)…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720130","lastModified":1770677466,"title":"SA2-N55S-IHC-AOD7","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased array probe A2 type, normal scan, 55 degree shear wave with IHC option (irrigation holes and carbides). The wedge features a curvature matching 5.7 in. (144 mm)…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720116","lastModified":1770677466,"title":"SA2-N55S-IHC-AOD3","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased array probe A2 type, normal scan, 55 degree shear wave with IHC option (irrigation holes and carbides). The wedge features a curvature matching 2.5 inches…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720919","lastModified":1770677466,"title":"SA2-N55S-IHC-AOD5","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased array probe A2 type, normal scan, 55 degree shear wave with IHC option (irrigation holes and carbides). The wedge features a curvature matching 4.3 in. (108 mm)…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720132","lastModified":1770677466,"title":"SA2-N55S-IHC-AOD8","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased array probe A2 type, normal scan, 55 degree shear wave with IHC option (irrigation holes and carbides). The wedge features a curvature matching 6.4 in. (162 mm)…","robots":""},{"path":"/fr/products/phased-array-wedges/u8720706","lastModified":1770677466,"title":"SAWS1-0L","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe AWS1, normal scan, 0 degree longitudinal wave, plain wedge (without irrigation holes and carbides).","robots":""},{"path":"/fr/products/phased-array-wedges/u8700265","lastModified":1770677466,"title":"SNW1-0L-IHC","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for phased array probe Near Wall (NW) casing type, normal scan, 0 degree longitudinal wave with IHC option (irrigation,holes and carbides).","robots":""},{"path":"/fr/products/phased-array-wedges/u8700264","lastModified":1770677466,"title":"SNW1-0L","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for phased array probe Near Wall (NW) casing type, normal scan, 0 degree longitudinal wave.","robots":""},{"path":"/fr/products/phased-array-wedges/u8720552","lastModified":1770677466,"title":"SAWS1-N60S","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased-array probe AWS1, normal scan, 60 degree shear wave, plain wedge (without irrigation holes and carbides).","robots":""},{"path":"/fr/products/phased-array-wedges/u8720637","lastModified":1770677466,"title":"SNW1-0L-WP5","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for phased array probe NW1 casing type, normal scan, 0 degree longitudinal wave with WP5 option (irrigation, holes and water chamber of 0.005 in. whitout carbides).","robots":""},{"path":"/fr/products/eddy-current-probes/u8610232","lastModified":1770677466,"title":"SPO-5965 .218-.250","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Universal Rotary Hole Probe 0.218 inch (5.5 mm) to 0.250 inch (6.3mm) diameter, Self expanding 2.00 inch(50 mm) working length, Operating frequency 200 kHz - 3 MHz Fischer 4 pin connector, reflection…","robots":""},{"path":"/fr/products/eddy-current-probes/u8629128","lastModified":1770677466,"title":"SPO-5329 SR/300HZ-40KHZ/.50","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Spot probe with a diameter of 0.50 inches (12.7 mm) and a operating frequency range of 300Hz - 40 kHz. 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The wedge…","robots":""},{"path":"/fr/products/phased-array-wedges/u8721337","lastModified":1770677466,"title":"SPWZ1-N50S-IRC-AOD5.563","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased array probe PWZ1, normal scan, 50 degree shear wave with IRC option (irrigation, ring compatible and carbides), suitable with PipeWIZARD System. The wedge…","robots":""},{"path":"/fr/products/phased-array-wedges/u8700340","lastModified":1770677466,"title":"SPWZ1-N55S-IHC-AOD10","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased array probe SPWZ1 type, normal scan, 55 degree shear wave with IHC option (irrigation holes and carbides). The wedge features a curvature matching 7.6 in. (192…","robots":""},{"path":"/fr/products/phased-array-wedges/u8721344","lastModified":1770677466,"title":"SPWZ1-N50S-IRC-AOD18","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased array probe PWZ1, normal scan, 50 degree shear wave with IRC option (irrigation, ring compatible and carbides), suitable with PipeWIZARD System. The wedge…","robots":""},{"path":"/fr/products/phased-array-wedges/u8700339","lastModified":1770677466,"title":"SPWZ1-N55S-IHC","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased array probe SPWZ1, normal scan, 55 degree shear wave with IHC option (irrigation,holes and carbides).","robots":""},{"path":"/fr/products/phased-array-wedges/u8721342","lastModified":1770677466,"title":"SPWZ1-N50S-IRC-AOD14","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased array probe PWZ1, normal scan, 50 degree shear wave with IRC option (irrigation, ring compatible and carbides), suitable with PipeWIZARD System. The wedge…","robots":""},{"path":"/fr/products/phased-array-wedges/u8721340","lastModified":1770677466,"title":"SPWZ1-N50S-IRC-AOD10.75","image":"https://ims.evidentscientific.com/default-meta-image.png?width=1200&format=pjpg&optimize=medium","category":"","tags":"","description":"Standard wedge for angle beam phased array probe PWZ1, normal scan, 50 degree shear wave with IRC option (irrigation, ring compatible and carbides), suitable with PipeWIZARD System. 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