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Machining and Wear of High-Alumina Ceramics for Structural Applications

机译:用于结构应用的高氧化铝陶瓷的加工和磨损

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The wear resistances of four standard-grade high-alumina ceramics were evaluated and related to their machining ability. Three of the material grades contained 96% of alumina and 4% of either calcium silicate, or magnesium silicate, or manganese titanate in the starting-powder composition. The nominal alumina content in the fourth material was 99.7%. The specimens were fabricated using a low-pressure injection-molding forming technique, followed by thermal de-binding and sintering. After sintering the four materials differ significantly in their grain size, bending strength and Vickers hardness. No direct relationship between the microstructural parameters and the mechanical properties was found, but there was a grain-size dependence of the surface finish after grinding under industrial conditions. The two silicate-containing ceramics exhibited considerably higher wear resistances than the two silicate-free ceramics, but no direct relationship between the abrasive wear rate during grinding and the cutting time was observed. The cutting ability represents a valuable material characteristic for industrial practice, but it should not be directly used for predicting the wear rate during grinding. Quantitative differences in the cutting time and abrasive wear rate were manifested in the different topographies of the worn surfaces. Cutting resulted in relatively large area fractions of plastically deformed surfaces, whereas pullouts dominated the worn surfaces after grinding.
机译:评估了四种标准级高氧化铝陶瓷的耐磨性和与其加工能力相关。其中三种材料等级含有96%的氧化铝和4%的硅酸钙,或硅酸镁或在起始粉末组合物中的锰钛酸锰。第四材料中的标称氧化铝含量为99.7%。使用低压注塑成型技术制造标本,然后进行热解束和烧结。烧结后,四种材料的晶粒尺寸差异显着,弯曲强度和维氏硬度。没有发现微观结构参数与机械性能之间的直接关系,但在工业条件下研磨后表面饰面依赖性依赖性。含两种硅酸盐的陶瓷比两种无硅酸盐陶瓷表现出相当高的耐磨性,但是观察到研磨过程中的磨料磨损率之间没有直接关系。切割能力代表了工业实践的宝贵材料特性,但不应直接用于在研磨过程中预测磨损率。在磨损表面的不同拓扑中表现出切割时间和磨料磨损率的定量差异。切割导致塑性变形表面的相对大的面部分数,而拉伸在研磨后占据磨损的表面。

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