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Finite Element Model Study of the Effect of Corner Rounding on Detectability of Corner Cracks using Bolt Hole Eddy Current

机译:有限元模型研究拐角圆角对螺栓孔涡流拐角裂缝可检测性的影响研究

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Recent work has shown that the detectability of comer cracks in bolt-holes is compromised when rounding of comers arises, as might occur during bolt-hole removal. Probability of Detection (POD) studies normally require a large number of samples of both fatigue cracks and electric discharge machined notches. In the particular instance of rounding of bolt-hole comers the generation of such a large set of samples representing the full spectrum of potential rounding would be prohibitive. In this paper, the application of Finite Element Method (FEM) modeling is used to supplement the study of detection of cracks forming at the rounded corners of bolt-holes. FEM models show that rounding of the comer of the bolt-hole reduces the size of the response to a corner crack to a greater extent than can be accounted for by loss of crack area. This reduced sensitivity can be ascribed to a lower concentration of eddy currents at the rounded corner surface and greater lift-off of pick-up coils relative to that of a straight-edge corner. A rounding with a radius of 0.4 mm (.016 inch) showed a 20% reduction in the strength of the crack signal. Assuming linearity of the crack signal with crack size, this would suggest an increase in the minimum detectable size by 25%.
机译:最近的工作表明,当螺栓孔移除期间发生圆角时,螺栓 - 孔中的螺栓孔中的螺栓裂缝的可检测性受到损害。检测概率(POD)研究通常需要大量疲劳裂缝和电气放电加工凹口的样品。在螺栓 - 孔的圆角的特定实例中,这一组代表全谱的全套样本的产生将是令人禁止的。本文用来应用有限元法(FEM)建模的应用来补充螺栓孔圆角裂缝检测研究。有限元模型表明,螺栓孔的聚光圆形圆角将响应的响应尺寸降低到更大程度上,而不是通过裂缝区域的损失来计算。这种降低的灵敏度可以归因于圆角表面的较低浓度的涡流浓度,并且相对于直边角的拾取线圈的更大升力。半径为0.4mm(0.016英寸)的圆角显示出裂缝信号的强度降低了20%。假设具有裂纹尺寸的裂缝信号的线性,这表明最小可检测大小的增加将增加25%。

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