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Nondestructive Testing for the Integrity Evaluation of Erosive and Abrasive Boundary Layers

机译:侵蚀性和磨蚀性边界层完整性评估的无损检测

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摘要

The test surfaces of erosion and abrasion specimens are prepared by electrical discharge machining, grinding, turning, and polishing. These machining operations form an affected material zone (AMZ), with mechanical and metallurgical alterations. As a result, the erosion properties of the AMZ vary from those of the base material, thereby affecting the cumulative mass loss-time curve. Erosion and abrasion standards loosely specify the preparation method of the specimens' test surface and relate to the AMZ integrity in a qualitative way. Consequently, there is a large variation in the AMZ thickness and properties, and in the mass loss-time pattern. There are several nondestructive test (NDT) methods for determining subsurface integrity. These methods enable one to determine material isotropy, and hardness, residual stress, and grain size gradients in the subsurface layer of many materials. Applying NDT methods in inspection of erosion and abrasion specimens will enable one to conduct better controlled erosion and abrasion tests with high precision results.
机译:腐蚀和磨损样品的测试表面是通过放电加工,研磨,车削和抛光制备的。这些加工操作形成了受影响的材料区域(AMZ),并进行了机械和冶金更改。结果,AMZ的腐蚀性能不同于基材的腐蚀性能,从而影响了累积质量损失时间曲线。侵蚀和磨损标准宽松地规定了试样测试表面的制备方法,并以定性的方式关系到AMZ的完整性。因此,AMZ的厚度和特性以及质量损失时间模式会有很大的差异。有几种确定地下完整性的非破坏性测试(NDT)方法。这些方法使人们能够确定材料的各向同性以及许多材料的地下层中的硬度,残余应力和晶粒尺寸梯度。将NDT方法应用于腐蚀和磨损样品的检查将使人们能够进行更好的受控腐蚀和磨损测试,并获得高精度的结果。

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