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Crack arrest and stress dependence of laser-induced surface damage in fused-silica and borosilicate glass

机译:熔融石英和硼硅酸盐玻璃中激光诱导的表面损伤的裂纹停止和应力依赖性

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摘要

Results of experiments on stress-inhibited laser-driven crack growth and stress-delayed laser-damage initiation thresholds in fused silica, borosilicate, glass (BK-7), and cleaved bulk silica are presented. A numerical model is developed to explain the crack arrest in fused silica. Good agreement is obtained between the model and a finite-element code. The crack arrest is demonstrated to be the result of the breaking of a hoop-stress symmetry that is responsible for crack propagation in fused silica.
机译:给出了在熔融石英,硼硅酸盐,玻璃(BK-7)和裂解的块状二氧化硅中,应力抑制激光驱动的裂纹扩展和应力延迟激光损伤起始阈值的实验结果。建立了一个数值模型来解释熔融石英中的裂纹停止。该模型与有限元代码之间获得了良好的一致性。裂纹止裂被证明是由于环向应力对称性破坏的结果,环向对称性是导致熔融石英中裂纹扩展的原因。

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