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Effects of density on the mechanical properties of spark plasma sintered beta-SiC

机译:密度对火花等离子体烧结β-SiC机械性能的影响

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The influence of density on the hardness value of beta-SiC samples was studied based on Knoop and Vickers indentation tests. Hardness measurements were performed on additive-free spark plasma sintered SiC samples in the [80%-95%] density range and on highly dense samples ( > 99%) sintered with very low content of sintering aids. Results revealed that the density has a strong influence on the hardness value, which increases of about 7 GPa between samples presenting densities of 80% and 95% and even reaches 21 GPa under 2 kg with Knoop indenter for the densest samples sintered with very low content of sintering aids. These results allowed us to give a comprehensive model-supported analysis of the mechanical properties of spark plasma sintered beta-SiC with controlled porosity that currently does not exist in the literature. The calculation of Young modulus and toughness further resulted in encouraging properties for our samples with regards to mechanical and ballistic performances.
机译:基于Knoop和Vickers压痕试验研究了密度对β-SiC样品硬度值的影响。 在80%-95%]密度范围内的无加油火花等离子体烧结SiC样品中进行硬度测量,并在高度致密的样品(> 99%)烧结,烧结烧结辅助含量非常低。 结果表明,密度对硬度值产生强烈影响,该硬度值增加了80%和95%的样品之间的约7GPa,甚至达到21gPa,甚至与Knoop indenter达到21 kg,对于烧结的密度样品,含量非常低 烧结艾滋病。 这些结果允许我们提供全面的模型支持分析火花血浆烧结β-SiC的机械性能,其受控孔隙率在文献中不存在。 对于机械和弹道性能,对幼年模量和韧性的计算进一步促进了样本的特性。

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