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Non destructive resting of the coating-substrate interface of thermally-sprayed industrial parts non destructive testing of the coating-substrate interface of thermally-sprayed industrial parts

机译:涂层衬底界面的涂层衬底界面的涂层衬底界面的涂层衬底界面的涂层衬底界面的涂层衬底界面的涂层衬底界面

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The present work deals with the application to actual in industrial conditions of the promising results of the study on adhesion, as presented at the previous edition of ITSC'2004 in Osaka, Japan. These industrial parts were typical of those produced in workshops for aircraft-aerospace, petro-chemical, printing works industries etc…. Thermal spray processing of industrial parts tested in this study are numerous, primarily air plasma spraying (APS), HVOF and conventional flame spray with or without remelting. Ultrasonic NDT facilities are now installed in an actual industrial workshop and show the reliability of the testing method and related results. For every tested part, digital ultrasonic testing was carried out to be compared to results from conventional adhesion tests according to EN 582 standard. U.T. results were quite in keeping with those from EN 582 testing. However, in addition, ultrasonic testing exhibited the any heterogeneity when existing, (local weak zones) at the coating-substrate interface. This resulted in easy discriminating of adhesive areas from cohesive areas. Results of this work obtained in a real workshop environment leaves promising expectations for ultrasonic testing to meet results from conventional EN 582 adhesion testing when applied to industrially-produced parts. Ultrasonic testing results in a low-cost NDT method which should compete with current high-cost control. Moreover, ultrasonic NDT looks more reliable in so far as the whole part can be controlled due to scanning of the whole surface.
机译:本工作涉及应用于粘附研究的有前途结果的实际工业条件,如日本大阪的前一版ITSC'2004所示。这些工业部件是典型的飞机航空航天,石化,印刷工程行业等厂房生产的零件。本研究中测试的工业部件的热喷涂加工是许多,主要是空气等离子喷涂(APS),HVOF和常规火焰喷雾,或者没有重新挤压。超声波NDT设施现在安装在实际的工业车间,并显示了测试方法的可靠性和相关结果。对于每个测试部分,进行数字超声波测试,以与根据EN 582标准的常规粘合试验的结果进行比较。 U.T.结果非常符合EN 582测试的结果。然而,另外,超声波测试在涂覆 - 衬底界面存在(局部弱区)时表现出任何异质性。这导致易于区分来自粘性区域的粘合区域。在真正的车间环境中获得的这项工作的结果留下了对超声波测试的有希望的预期,以满足传统EN 582粘附测试的结果,当应用于工业上产生的部件时。超声波测试导致低成本的NDT方法,应竞争电流的高成本控制。此外,由于整个表面可以控制整个部分,超声波NDT看起来更可靠。

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