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Frequency-based experimental and theoretical identification of multiple cracks in straight pipes filled with fluid

机译:基于频率的流体填充直管中多个裂纹的实验和理论识别

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摘要

A technique based on measurement of change of natural frequencies has been employed to detect multiple cracks in long pipes containing fluid at different pressures. The cracks have straight fronts and are non-leaking. Both theoretical and experimental results are presented. Two different materials, aluminium and mild steel, have been examined. The fluid considered is water; three (gauge) pressures in the range 0-981 kPa, and crack size to thickness ratio in the range 0.19-0.64 are studied. Two simultaneous cracks are considered in the experiments. The crack locations are predicted with an error less than 4.3 percent. Results on crack-equivalent rotational spring stiffness, which can be useful in the calculation of natural frequencies and crack size predictions, are reported.
机译:已经采用了基于自然频率变化测量的技术来检测包含不同压力的流体的长管中的多个裂缝。裂纹的前端是笔直的,并且不会渗漏。给出了理论和实验结果。已经检验了两种不同的材料,铝和低碳钢。所考虑的流体是水;研究了三种(表压)在0-981 kPa范围内的压力,裂纹尺寸与厚度之比在0.19-0.64范围内。实验中同时考虑了两个裂纹。预测裂纹位置的误差小于4.3%。报告了等效于裂纹的旋转弹簧刚度的结果,可用于计算固有频率和预测裂纹尺寸。

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