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Abrasive wear behavior of a brittle matrix (MoSi_2) composite reinforced with a ductile phase (Nb)

机译:韧性相(Nb)增强的脆性基体(MoSi_2)复合材料的磨粒磨损行为

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The toughness of a variety of brittle ceramic and intermetallic matrices has been improved through the incorporation of ductile metallic reinforcements. In these composites resistance to catastrophic failure of the matrix is derived through a combination of mechanisms, including matrix crack bridging, matrix crack defection and rupturing of the ductile phase. The degree to which these mechanisms operate is a function of composite microstructure. In general, the ductile phase is softer than the matrix phase. This may have unique implications when the materials are subjected to a wear environment, whether intentional or not. Hence, it is important to understand the wear behavior of these new materials. MoSi_2-Nb was selected as a model composite system, in part because of the wide body of open literature regarding this system. The influences of abrasive wear environment and the composite microstructure (Nb reinforcement size, shape and volume fraction) on the wear resistance of the composites are reported.
机译:通过加入韧性金属增强材料,可以改善各种脆性陶瓷和金属间化合物的韧性。在这些复合材料中,基体对灾难性破坏的抵抗力是通过多种机制的组合得出的,这些机制包括基体裂纹桥接,基体裂纹缺陷和韧性相的破裂。这些机制的作用程度是复合微结构的函数。通常,韧性相比基质相软。当材料受到磨损环境(无论是否有意)时,这可能会产生独特的含义。因此,重要的是要了解这些新材料的磨损行为。选择MoSi_2-Nb作为模型复合系统,部分原因是有关该系统的大量公开文献。报道了磨料磨损环境和复合材料微观结构(Nb增强材料的尺寸,形状和体积分数)对复合材料耐磨性的影响。

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