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Material grain size and crack size influences on cleavage fracturing

机译:材料晶粒尺寸和裂纹尺寸对劈裂的影响

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摘要

A review is given of the analogous dependence on reciprocal square root of grain size or crack size of fracture strength measurements reported for steel and other potentially brittle materials. The two dependencies have much in common. For onset of cleavage in steel, attention is focused on relationship of the essentially athermal fracture stress compared with a quite different viscoplastic yield stress behaviour. Both grain-size-dependent stresses are accounted for in terms of dislocation pile-up mechanics. Lowering of the cleavage stress occurs in steel because of carbide cracking. For crack size dependence, there is complication of localized crack tip plasticity in fracture mechanics measurements. Crack-size-dependent conventional and indentation fracture mechanics measurements are described also for results obtained on the diverse materials: polymethylmethacrylate, silicon crystals, alumina polycrystals and WC-Co (cermet) composites.
机译:本文对钢和其他潜在脆性材料的晶粒强度倒数平方根或断裂强度测量值的裂纹大小的相似依赖性进行了回顾。这两个依赖项有很多共同点。对于钢中的开裂,注意力集中在与完全不同的粘塑性屈服应力行为相比的基本无热断裂应力之间的关系上。两种取决于晶粒尺寸的应力都是根据位错堆积力学来解决的。由于碳化物开裂,在钢中发生了分裂应力的降低。对于裂纹尺寸的依赖性,在断裂力学测量中存在局部裂纹尖端塑性的问题。还描述了裂纹尺寸相关的常规和压痕断裂力学测量结果,这些结果是针对多种材料获得的结果:聚甲基丙烯酸甲酯,硅晶体,氧化铝多晶体和WC-Co(金属陶瓷)复合材料。

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