首页> 外文期刊>Journal of Materials Science >Influence of whisker toughening and microstructure on the wear behavior of Si_(3)N_(4)- and Al_(2)O_(3)-matrix composites reinforced with SiC
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Influence of whisker toughening and microstructure on the wear behavior of Si_(3)N_(4)- and Al_(2)O_(3)-matrix composites reinforced with SiC

机译:晶须增韧和组织对SiC增强的Si_(3)N_(4)-和Al_(2)O_(3)-基复合材料磨损性能的影响

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A comparative study of the influence of randomly-oriented SiC whiskers on the abrasive wear behavior of several commercially-produced Si_(3)N_(4)- and Al_(2)O_(3)-based ceramics suggested that the residual stress states present within the materials can be important in predicting their wear resistance. The addition of SiC whiskers to the Si_(3)N_(4) matrix created residual tensile stresses at the whisker-matrix interfaces which led to enhanced bulk fracture toughness, but which degraded the fracture toughness at the microstructural level, and thus the abrasive wear resistance, by promoting easier whisker debonding and removal by the abrasive particles. The addition of SiC whiskers to an alumina matrix, on the other hand, led to the creation of residual compressive stresses at whisker-matrix interfaces, producing a locally tougher interface that was more able to withstand the rigors of the abrasive wear environment. These results indicate that in brittle materials, improved bulk mechanical properties do not always pop pop directly to improved performance in a tribological environment.
机译:对随机取向的SiC晶须对几种商业生产的基于Si_(3)N_(4)-和Al_(2)O_(3)的陶瓷的磨蚀行为的影响的比较研究表明,存在残余应力状态材料中的杂质对于预测其耐磨性可能很重要。在Si_(3)N_(4)基体中添加SiC晶须在晶须-基体界面处产生残余拉伸应力,从而导致整体断裂韧性增强,但在微观结构水平上降低了断裂韧性,从而降低了磨料磨损通过促进更容易的晶须剥离和磨料颗粒的去除而产生抗磨性。另一方面,向氧化铝基体中添加SiC晶须会导致晶须-基体界面处产生残余压应力,从而产生局部更坚硬的界面,从而更能承受磨料磨损环境的严酷考验。这些结果表明,在脆性材料中,改善的整体机械性能并不总是能在摩擦环境中直接弹出来改善性能。

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