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Roles of porosity, residual stresses and grain size in the fracture of brittle solids

机译:孔隙率,残余应力和晶粒尺寸在脆性固体断裂中的作用

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摘要

The effects of porosity, grain size and residual stresses on the thermal shock resistance and the strength of brittle solids are treated employing the stress intensity factor approach. Maximum resistance to thermal shock is found for materials possessing small pores and relatively large pre-existing cracks. The theory shows that it should be possible to synthesize a brittle material with high strength without the need to reduce the grain size significantly, provided that the grain size is considerably smaller than the flaw size. Excellent agreement was obtained between predicted and experimental values for strength. [References: 16]
机译:孔隙率,晶粒度和残余应力对耐热冲击性和脆性固体强度的影响采用应力强度因子方法进行了处理。对于具有小孔和相对较大的现有裂纹的材料,发现具有最大的抗热冲击性。该理论表明,只要晶粒尺寸远小于缺陷尺寸,就可以合成强度高的脆性材料,而无需显着减小晶粒尺寸。强度的预测值和实验值之间获得了极好的一致性。 [参考:16]

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