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AMPLITUDE-INDEPENDENT FLAW LENGTH DETERMINATION USING DIFFERENTIAL EDDY CURRENT

机译:使用差分涡电流的幅度独立缺陷长度测定

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Military engine component manufacturers typically specify the eddy current (EC) inspection requirements as a crack length or depth with the assumption that the cracks in both the test specimens and inspected component are of a similar fixed aspect ratio. However, differential EC response amplitude is dependent on the area of the crack face, not the length or depth. Additionally, due to complex stresses, in-service cracks do not always grow in the assumed manner. It would be advantageous to use more of the information contained in the EC data to better determine the full profile of cracks independent of the fixed aspect ratio amplitude response curve. A specimen with narrow width notches is used to mimic cracks of varying aspect ratios in a controllable manner. The specimen notches have aspect ratios that vary from 1:1 to 10:1. Analysis routines have been developed using the shape of the EC response signals that can determine the length of a surface flaw of common orientations without use of the amplitude of the signal or any supporting traditional probability of detection basis. Combined with the relationship between signal amplitude and area, the depth of the flaw can also be calculated.
机译:军用发动机部件制造商通常用假设测试样品和检查部件的裂缝具有类似的固定纵横比,将涡流(EC)检查要求作为裂缝长度或深度指定为裂缝长度或深度。然而,差动EC响应幅度取决于裂缝面的面积,而不是长度或深度。另外,由于复合应力,在役裂缝并不总是以假定的方式生长。利用EC数据中包含的更多信息将是有利的,以更好地确定独立于固定纵横比振幅响应曲线的裂缝的完整档案。具有窄宽度缺口的样品用于以可控方式模拟各种宽高比的裂缝。样本缺口具有从1:1至10:1的宽高比。已经使用EC响应信号的形状开发了分析程序,该信号可以在不使用信号的幅度或任何支持的检测概率的情况下确定常见方向的表面漏洞的长度。结合信号幅度和面积之间的关系,也可以计算缺陷的深度。

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