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Static and dynamic strength of soda-lime glass under combined compression-shear loading

机译:组合压缩剪切载荷下钠钙玻璃的静态和动态强度

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A modified method was employed to investigate failure of the soda-lime glass under combined compression shear loading condition based on Split Hopkinson Pressure Bar. With double beveled ends loading blocks, shear component was introduced into the specimen, maximum ratio of which to normal stress was more than 40%. Both quasi-static and dynamic tests were conducted on soda-lime glass specimens in four different loading directions: 0 degrees, 15 degrees, 30 degrees and 45 degrees. With carefully pulse shaping, the dynamic equilibrium of the specimens and constant strain rate loading were satisfied. The progressive failure processes of the specimen illustrated via highspeed photographs manifested that axial splitting failure mode is dominated under both uniaxial compression and combined compression-shear loading. The non-axial cracks observed in combined compression-shear experiment resulted in the strength decline of specimen. Experimental results demonstrated an evident that the strength of soda-lime glass is strain rate and loading path dependent. A power law function was fitted to accurately describe the relationship between equivalent strength and strain rate. Failure surfaces at various strain rates were constructed, which allow us to have a further understanding of dynamic response and failure mechanism of inorganic glass under complex stress states.
机译:采用改性方法来研究基于分裂霍普金森压棒的组合压缩剪切负载条件下的钠钙玻璃的衰竭。使用双斜切端末端装载块,将剪切分量引入样品中,最大比率为正常应力大于40%。在四种不同的装载方向上的钠钙玻璃标本上进行准静态和动态测试均在钠钙玻璃标本上进行:0度,15度,30度和45度。仔细脉冲整形,满足样品的动态平衡和恒定应变速率载荷。通过高速照片所示的样本的渐进式故障过程表现出轴向分离失效模式在单轴压缩和组合的压缩剪切负载下占主导地位。在组合压缩剪切实验中观察到的非轴向裂缝导致样品的强度下降。实验结果表明,钠钙玻璃的强度是应变速率和负载路径依赖性的。拟合电力法函数,以准确描述等效强度和应变率之间的关系。构建了各种应变率的故障面,使我们能够进一步了解复杂应力状态下无机玻璃的动态响应和失效机制。

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