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首页> 外文期刊>Journal of Materials Research and Technology >Synthesis, microstructural and mechanical properties of ex situ zircon particles (ZrSiO 4) reinforced Metal Matrix Composites (MMCs): a review
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Synthesis, microstructural and mechanical properties of ex situ zircon particles (ZrSiO 4) reinforced Metal Matrix Composites (MMCs): a review

机译:异位锆石(ZrSiO 4 )增强金属基复合材料(MMC)的合成,微观结构和力学性能:综述

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Metal Matrix Composites (MMCs) are playing an increasingly important role in engineering applications and are in the forefront of significant research today because of their scientific and technological advantages. Particle or discontinuously reinforced MMCs are relatively inexpensive and are found to possess isotropic properties compared to fiber reinforced MMCs. Among the various types of particulate reinforcements such as boron, silicon nitride, boron nitride, silicon carbide, titanium carbide and alumina, extensive research has been directed toward the development of zircon particle reinforcement. Zircon reinforced composites are preferred as these composites exhibit relatively high refractoriness, excellent resistance to abrasion, thermal shock and chemical attack compared to composites reinforced with many other reinforcements.This review article details the current development on the synthesis, microstructure and mechanical properties of zircon reinforced MMCs, with specific attention on the abrasive wear behavior of the composites. This review also summarizes the work done by various research groups on zircon reinforced MMCs in achieving higher hardness and wear resistance in these composites.
机译:金属基复合材料(MMC)在工程应用中扮演着越来越重要的角色,由于其科学和技术优势,它们如今已成为重要研究的前沿。颗粒或不连续增强的MMC相对便宜,并且与纤维增强的MMC相比具有各向同性的特性。在各种类型的颗粒增强剂中,例如硼,氮化硅,氮化硼,碳化硅,碳化钛和氧化铝,对锆石颗粒增强剂的开发进行了广泛的研究。锆石增强复合材料是优选的,因为与其他许多增强材料相比,这些复合材料具有相对较高的耐火度,优异的耐磨性,抗热冲击性和化学侵蚀性。 MMC,特别注意复合材料的磨料磨损行为。这篇综述还总结了各个研究小组对锆石增强MMC所做的工作,以实现这些复合材料更高的硬度和耐磨性。

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