Applying ASTM International C1421 to Glasses and Optical Ceramics

J. Salem, M. Jenkins
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引用次数: 3

Abstract

Fracture toughness is a critical structural design parameter and an excellent metric to rank structural materials. It determines fracture strength by way of the flaws, both inherent and induced, and defines the endpoint of the slow crack growth (SCG) curve. The fracture toughnesses of glasses and structural and optical ceramics as measured by several techniques is compared. When good metrology is employed, the results are very comparable with two exceptions: materials exhibiting crack growth resistance (R-curve) and those with low SCG exponents. For materials exhibiting R-curves, the result is a function of extension and can be minimized with short cracks. For materials with low SCG exponents, such as glasses, elimination of the corrosive media and/or increasing the stress intensity rate produces consistent results. A summary of values is given for optical materials and glasses.
ASTM国际C1421应用于玻璃和光学陶瓷
断裂韧性是一种重要的结构设计参数,是评价结构材料等级的优良指标。它通过固有缺陷和诱导缺陷来确定断裂强度,并确定了慢裂纹扩展曲线的端点。比较了几种技术测量的玻璃、结构陶瓷和光学陶瓷的断裂韧性。当采用良好的计量方法时,结果非常具有可比性,只有两个例外:表现出抗裂纹增长(r曲线)的材料和具有低SCG指数的材料。对于表现为r曲线的材料,结果是扩展的函数,可以用短裂纹最小化。对于SCG指数较低的材料,如玻璃,消除腐蚀介质和/或增加应力强度率可以产生一致的结果。对光学材料和玻璃的数值作了总结。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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