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Crack profiles under a Vickers indent in silicon nitride ceramics with various microstructures

机译:具有各种微观结构的氮化硅陶瓷在维氏凹痕下的裂纹轮廓

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摘要

The effect of microstructure on crack morphology under a Vickers indentation was studied using 20 various silicon nitride ceramics including bearing-grade silicon nitrides. The indentation load was decreased from 98 N to 9.8 N and a transition of the crack types from half-penny crack to radial one was observed with both decoration method and serial sectioning technique. All of the indented samples possessed the half-penny cracks at the load of 98 N. The transition of crack profiles in the samples with coarse microstructure occurred when the load decreased from 49 N to 19.6 N, whereas the transition load for the sample with fine microstructure was approx 9.8 N. Half-penny cracks were formed regardless of the microstructures when the ratio of the half of crack length to the half of diagonal size of an indentation, c/a, was above approx 2. The dependence of the transition load on both Vickers hardness and fracture resistances was analyzed using Pajares's equation.
机译:使用20种包括轴承级氮化硅的各种氮化硅陶瓷,研究了维氏压痕下微观结构对裂纹形态的影响。压痕载荷从98 N减小到9.8 N,并通过装饰方法和连续切片技术观察到裂纹类型从半便士裂纹过渡到径向裂纹。所有压痕样品在98 N的载荷下均具有半个细小裂纹。当载荷从49 N降低到19.6 N时,具有微观组织的样品出现了裂纹轮廓的转变,而细微的样品则出现了细小裂纹的转变。微观结构约为9.8N。当裂纹长度的一半与压痕的对角线尺寸的一半之比c / a大于约2时,无论微观结构如何,都会形成半个便士的裂纹。使用Pajares方程分析维氏硬度和抗断裂性。

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