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Microstructure and abrasive wear in silicon nitride ceramics

机译:氮化硅陶瓷的微观结构和磨料磨损

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It is well known that abrasive wear resistance is not strictly a materials property, but also depends upon the specific conditions of the wear environment. Nonetheless, characteristics of the ceramic microstructure do influence its hardness and fracture toughness and must, therefore, play an active role in determining how a ceramic will respond to the specific stress states imposed upon it by the wear environment, In this study, the ways in which composition and microstructure influence the abrasive wear behavior of six commercially-produced silicon nitride based ceramics are examined. Results indicate that microstructural parameters, such as matrix grain size and orientation, porosity, and grain boundary microstructure, and thermal expansion mismatch stresses created as the result of second phase formation, influence the wear rate through their effect on wear sheet formation and subsurface fracture. It is also noted that the potential impact of these variables on the wear rate may not be reflected in conventional fracture toughness measurements.
机译:众所周知,耐磨性不是严格的材料性能,还取决于磨损环境的特定条件。尽管如此,陶瓷微结构的特性确实会影响其硬度和断裂韧性,因此必须在确定陶瓷如何响应磨损环境所施加的特定应力状态方面发挥积极作用。研究了哪种成分和微观结构会影响六种商业生产的氮化硅基陶瓷的磨料磨损行为。结果表明,由于第二相形成而产生的微观结构参数,例如基体晶粒尺寸和取向,孔隙率和晶界微结构,以及热膨胀失配应力,会通过其对耐磨片形成和表面下破裂的影响而影响磨损率。还应注意,这些变量对磨损率的潜在影响可能不会在常规断裂韧性测量中反映出来。

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