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首页> 外文期刊>材料 >Development of In-Situ Type Biaxial Bending Testing Machine and Crack Growth Behavior Observation under Mixed-Mode on Glass
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Development of In-Situ Type Biaxial Bending Testing Machine and Crack Growth Behavior Observation under Mixed-Mode on Glass

机译:玻璃原位式双轴弯曲试验机的研制及裂纹扩展行为观察

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摘要

An attempt was made to investigate the crack growth behavior in soda-lime glass under mixed mode loading. Mixed mode crack growth tests under monotonic increasing biaxial loading were carried out by using the newly developed in-situ observation type biaxial bending testing machine. Biaxial stresses were applied by "saddle shape bending" for square plate. Crack extension from the residual stress free indentation-induced precrack were observed by a scanning laser microscope. The mode I and mode II stress intensity factors were calculated by Yoda's method. The major results of this study are summarized as follows Kinked cracks were initiated from indentation-induced precrack. With a crack growth, crack growth direction gradually approached to the direction perpendicular to the maximum principal stress. When crack growth rate was arranged by mode I stress intensity factor K_I, the threshold stress intensity K_(Ith) under mixed mode tends to decrease with decreasing in the stress mixing ratio R. The criteria in which the crack starts to grow under mixed mode condition was expressed by similar equation for the brittle fracture criteria. The stress intensity factor K_(eq), which is obtained by combining K_I and K_(II), is useful to discuss a crack growth behavior under mixed mode condition.
机译:试图研究在混合模式载荷下钠钙玻璃中的裂纹扩展行为。使用新开发的现场观察型双轴弯曲试验机,在单调增加的双轴载荷下进行了混合模式裂纹扩展试验。通过“鞍形弯曲”对方形板施加双轴应力。通过扫描激光显微镜观察到由无残余压痕引起的预裂纹引起的裂纹扩展。通过Yoda方法计算了模式I和模式II的应力强度因子。这项研究的主要结果总结如下:压痕诱发的预裂纹引发了扭结裂纹。随着裂纹的生长,裂纹的生长方向逐渐接近垂直于最大主应力的方向。当通过模式I应力强度因子K_I排列裂纹扩展速率时,混合模式下的阈值应力强度K_(Ith)会随着应力混合比R的减小而降低。裂纹在混合模式下开始增长的标准用类似的方程表示脆性断裂标准。通过组合K_I和K_(II)获得的应力强度因子K_(eq),对于讨论混合模式条件下的裂纹扩展行为是有用的。

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