首页> 外文期刊>Journal of neurosurgical sciences >The Effect of the Chemical Composition to the End-Properties of Ceramic Dispersed Strengthened 316L/Y2O3 Composites
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The Effect of the Chemical Composition to the End-Properties of Ceramic Dispersed Strengthened 316L/Y2O3 Composites

机译:化学组合物对陶瓷分散的末端性能的效果加强了316L / Y2O3复合材料

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In this paper the influence of chemical composition to the end-properties of ceramic dispersed strengthened 316L/Y2O3 composites ceramic has been studied. Two various compositions were studied and compared to reference 316L sintered sample. These two compositions are 316L/0.33 wt% Y2O3 and 316L/1 wt% Y2O3. The high-efficient attrition milling has been used for grain size reduction and oxide distribution in the austenitic matrices. Spark Plasma Sintering (SPS) was used as fast compaction method of the milled powders in order to avoid excessive grain growth. In this work it was found that changing the chemical composition by increase of the Y2O3 addition in the composite matrix improves the milling efficiency, increases the hardness of the 316L and reduces significantly the wear rate.
机译:本文研究了化学成分对陶瓷分散的增强的316L / Y2O3复合材料陶瓷的影响。 研究了两种各种组合物,并与参考316L烧结样品进行比较。 这两种组合物是316l / 0.33wt%的Y 2 O 3和316l / 1wt%Y 2 O 3。 高效的磨削铣削已用于奥氏体矩阵中的粒度降低和氧化物分布。 火花等离子体烧结(SPS)用作研磨粉末的快速压实方法,以避免过量的晶粒生长。 在这项工作中,发现通过增加复合基质中的Y 2 O 3增加改变化学成分,提高了铣削效率,增加了316L的硬度并显着降低了磨损率。

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