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首页> 外文期刊>Materials Sciences and Applications >Finite Element Wear Behavior Modeling of Al/Al2SiO5/C Chilled Hybrid Metal Matrix Composites (CHMMCs)
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Finite Element Wear Behavior Modeling of Al/Al2SiO5/C Chilled Hybrid Metal Matrix Composites (CHMMCs)

机译:Al / Al2SiO5 / C冷却杂化金属基复合材料(CHMMCs)的有限元磨损行为建模

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This paper describes research on aluminum based metal matrix hybrid composites reinforced with kaolinite (Al2SiO5) and carbon (C) particulates cast using high rate heat transfer technique during solidification by employing metallic, non-metallic and cryogenic end chills. The effect of reinforcement and chilling on strength, hardness and wear behavior are discussed in this paper. It is discovered that cryogenic chilled MMCs with Al2SiO5-9 vol.%/C-3 vol.% dispersoid content proved to be the best in enhancing the mechanical and wear properties. A physically based Finite element (FE) model for the abrasive wear of the hybrid composite developed is based on the mechanisms associated with sliding wear of ductile aluminum matrix of the composite containing hard Al2SiO5 and soft carbon (dry lubricant) reinforcement particles. Finally the results reveal that there is a good agreement that exists between the simulated (FE) values and those of the experimental values, proving the suitability of the boundary conditions.
机译:本文介绍了利用金属,非金属和低温端冷剂在凝固过程中通过高速传热技术铸造的高岭石(Al2SiO5)和碳(C)颗粒增强的铝基金属基复合材料的研究。本文讨论了强化和冷却对强度,硬度和磨损行为的影响。发现具有Al 2 SiO 5-9体积%/ C-3体积%分散体含量的低温冷却MMC被证明是增强机械和磨损性能的最佳方法。基于物理的有限元(FE)模型用于开发的混合复合材料的磨料磨损,是基于与包含硬质Al2SiO5和软碳(干润滑剂)增强颗粒的复合材料的韧性铝基体的滑动磨损相关的机理。最后,结果表明,模拟(FE)值和实验值之间存在良好的一致性,证明了边界条件的适用性。

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