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Non-destructive measurement of hardened surface layer thickness with velocity change of Rayleigh wave

机译:瑞利波速度变化的淬火表面层厚度的非破坏性测量

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摘要

A method to measure the layer thickness of nitrided processed steels non-destructively to assure durability is developed using Rayleigh wave velocity change. The technique uses tandem probes, a transmitter and a receiver. Since the Rayleigh wavevelocity differs depending on its frequency, the rate of velocity change is calculated by a cross-spectrum method, which calculates the difference in traveling time between the memorized wave traveling in a virgin material and that traveling in a material being tested. Velocities in some specimens of which layer thicknesses are already known are measured to obtain reference data and correlation function between the layer thickness and the rate of change in velocity is derived. The thickness of the testmaterial is then quantified from this velocity change and the correlation function. The method is applied to non-destructive measurement of steam valve rods which are nitrided to prevent them from abrasion damage. The valve rods are cylindrical and their diameters are 22mm to l50mm. Using rods with a nitrided layer of 50μm to 200μmthickness, the layer thickness obtained by the present method is confirmed to be in good agreement with those determined by destructive testing of the hardness measurement (standard error = 20μm).
机译:使用瑞利波速度变化,开发了一种测量氮化处理钢的层厚度的方法,以确保耐久性。该技术使用串联探针,发射器和接收器。由于瑞利波幂相差根据其频率而不同,因此通过跨频谱法计算速度变化率,该频谱法计算在处于原子材料中行进的记忆波之间的行进时间差,并且在所测试的材料中行进。测量其层厚度已经已知的一些标本中的速度,以获得参考数据和层厚度与速度变化率之间的相关函数。然后从该速度变化和相关函数来量化测试材料的厚度。该方法应用于蒸汽阀杆的非破坏性测量,蒸汽阀杆氮化以防止它们免于磨损损伤。阀杆是圆柱形的,并且它们的直径为22mm至150mm。使用具有50μm至200μm的氮化层的杆,通过本方法获得的层厚度与通过硬度测量的破坏性测试(标准误差=20μm)确定的那些吻合良好。

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