首页> 外文期刊>Journal of the Mechanics and Physics of Solids >SHEAR DOMINATED TRANSONIC INTERFACIAL CRACK GROWTH IN A BIMATERIAL .1. EXPERIMENTAL OBSERVATIONS
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SHEAR DOMINATED TRANSONIC INTERFACIAL CRACK GROWTH IN A BIMATERIAL .1. EXPERIMENTAL OBSERVATIONS

机译:双向剪切横贯界面裂纹的增长.1。实验观察

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In this work we describe a series of impact experiments performed on PMMA/4340 steel edge cracked bimaterial plates. Specimens were impacted at 20 m s(-1) in a one point bend configuration using a high speed gas gun. Dynamic interfacial crack propagation was observed using the optical method of Coherent Gradient Sensing and high speed photography. Very high crack tip accelerations (10(8) m s(-2)) and very high crack tip speeds (up to 1.5C(R)(PMMA)) were measured and are reported. Quantitative measurements show that in experiments in which the crack tip speed entered the intersonic range for PMMA, the stress field surrounding the crack tip was shear dominated. The observation of high shear around the crack tip Can also be explained using wave propagation arguments. It is found that the reason for attainment of intersonic (with respect to PMMA) crack tip speeds is directly related to the large amounts of energy necessary to initiate the crack tip under shear dominated conditions. A comparison with the theoretical results of Part II in this study is also made. There seems to be an unfavorable region of stable crack propagation velocities in the intersonic regime. This region is c(s)(PMMA) < v < root 2c(s)(PMMA). In all experiments performed, the propagating crack accelerated quickly out of this region. In the few interferograms that do actually correspond to crack propagation in this unfavorable velocity range, crack face contact was observed. This observation is also in agreement with the findings of Part II of this investigation. [References: 29]
机译:在这项工作中,我们描述了对PMMA / 4340钢质边缘开裂双材料板进行的一系列冲击实验。使用高速气枪以单点弯曲配置在20 m s(-1)冲击试样。使用相干梯度感测和高速摄影的光学方法观察到动态界面裂纹扩展。测量并报告了非常高的裂纹尖端加速度(10(8)m s(-2))和非常高的裂纹尖端速度(高达1.5C(R)(PMMA))。定量测量表明,在裂纹尖端速度进入PMMA的声速范围的实验中,裂纹尖端周围的应力场以剪切力为主。裂纹尖端周围高剪切的观察也可以使用波传播参数来解释。已发现达到声波间(相对于PMMA)裂纹尖端速度的原因直接与在剪切为主的条件下引发裂纹尖端所需的大量能量有关。还与本研究的第二部分的理论结果进行了比较。在声速状态下,似乎没有一个稳定的裂纹扩展速度的区域。该区域是c(s)(PMMA)

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