首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Microstructure and abrasive behaviors of TiC-316L composites prepared by warm compaction and microwave sintering
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Microstructure and abrasive behaviors of TiC-316L composites prepared by warm compaction and microwave sintering

机译:温压和微波烧结制备的TiC-316L复合材料的显微组织和磨损性能

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摘要

316L stainless steel composites with various weight fractions of TiC particles were prepared using warm compaction and microwave sintering. Abrasion resistance measurements were used to study the abrasive behaviors of TiC-316L stainless steel composites. The effects of TiC content and preparation methods on the microstructure and mechanical properties of 316L stainless steel composites have been investigated. The results showed that the sample prepared by warm compaction and microwave sintering exhibited significantly superior densification, higher hardness, and better abrasion resistance when compared with conventionally processed counterpart. TiC particles reinforcement improved the abrasion resistance of 316L stainless steel, and the abrasion resistance of the composites was considerably better than that of the 316L stainless steel. The volume loss initially decreases with increasing TiC content up to 5 wt.%, it then slightly increases as increase the TiC particles content to 10 and 15 wt.%. In this present abrasion tests, the composites using 5 wt.% TiC addition offers a high abrasion resistance.
机译:使用热压和微波烧结制备了具有各种重量分数的TiC颗粒的316L不锈钢复合材料。耐磨性测量用于研究TiC-316L不锈钢复合材料的磨损性能。研究了TiC含量和制备方法对316L不锈钢复合材料组织和力学性能的影响。结果表明,与常规加工的样品相比,通过热压实和微波烧结制备的样品表现出明显优异的致密性,更高的硬度和更好的耐磨性。 TiC颗粒增强改善了316L不锈钢的耐磨性,并且复合材料的耐磨性明显优于316L不锈钢。体积损失最初随着TiC含量增加到5 wt。%而减少,然后随着TiC颗粒含量增加到10和15 wt。%而稍微增加。在本发明的耐磨性测试中,使用添加5重量%的TiC的复合材料提供了高耐磨性。

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