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Dynamics of Hydrogen Induced Blistering of a Low Carbon Steel Sheet by Lamb Waves Analysis

机译:兰姆波分析氢气诱导低碳钢板衬管的动态

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With the aim of studying the fracture dynamics ofenvironmentally assisted fractures in thin pates. We developed anew source simulation method of the zeroth-order symmetric (orS0-) Lamb wave using the experimental overall-transfer functionof the system. The transfer function was determined by the time-domain deconvolution of detected S0-Lamb component by theartificial fracture source of a compression-type PZT elementwhose vibration kinetics was previously monitored by a laserinterferometer. The fracture kinetics was estimated by the iterationso that the S0-waveform computed to the assumed fracture kineticsbest represents the S0-waveform detected. Hydrogen inducedblistering was found to be caused by the succession of fast Mode-Ifracture with source rise times from 0.6 to 1.0 μs. The crackvolume estimated by the source simulation corresponded to that offine blistering with an opening displacement of 5μm. As theestimated fracture kinetics of hydrogen blistering coincide withthose of delayed fracture of high tension low alloy steel undertensile loading, the kinetics of first and micro-fractures andblistering induced by hydrogen gas precipitation appears to beindependent on the hydrogen solubility and strength of steels, theapplied stresses and the orientation of cracks.
机译:目的在于研究薄型折射骨折的骨折动力学。我们使用该系统的实验总体传递功能开发了Zeroth阶对称(ORS0-)羊波的重生源仿真方法。通过通过激光干扰度计预先监测检测到的S0-羊肉组分的检测到的S0-羊肉组分的时域去卷源来确定转移功能。通过迭代的迭代率估计骨折动力学,即计算到假定的骨折动力学的S0-波形表示检测到的S0波形。发现氢诱导抑菌是由源上升时间为0.6至1.0μs的快速模式 - iFr发作引起的。由源模拟估计的Crackvolume对应于具有5μm的开口位移的侵入衬垫。作为氢气沉淀的延迟骨折的催化骨折动力学重量,氢气沉淀诱导的第一和微骨折和微骨折的动力学似乎是钢溶解度和钢的强度,挖掘力和强度裂缝的方向。

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