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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Processing and Characterization of Functionally Graded Aluminum (A319)-SiCp Metallic Composites by Centrifugal Casting Technique
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Processing and Characterization of Functionally Graded Aluminum (A319)-SiCp Metallic Composites by Centrifugal Casting Technique

机译:功能梯度铝(A319)-SiCp金属复合材料的离心铸造工艺及表征

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Functionally graded materials (FGM) are successfully adopted for the design and fabrication of engineering components with location-specific properties. The present study describes the processing and characterization of A319 Aluminum functionally graded metal matrix composites (FGMMC) with 10 and 15 wt pct SiCp reinforcements. The liquid stir casting method is used for composite melt preparation followed by FGMMC formation by vertical centrifugal casting method. The process parameters used are the mold preheating temperature of 523 K (250 A degrees C), melt pouring temperature of 1013 K (740 A degrees C), and mold rotation speed of 1300 rpm. The study analyzes the distribution and concentration of reinforcement particles in the radial direction of the FGMMC disk along with the effects of gradation on density, hardness, mechanical strength, the variation in coefficient of thermal expansion and the wear resistance properties at different zones. Microstructures of FGMMC reveal an outward radial gradient distribution of reinforcements forming different zones. Namely, matrix-rich inner, transition, particles-rich outer, and chill zone of a few millimeters thick at the outer most periphery of the casting are formed. From 10-FGM, a radial shift in the position of SiCp maxima is observed in 15-FGM casting. The mechanical characterization depicts enhanced properties for the particle-rich zone. The hardness shows a graded nature in correlation with particle concentration and a maximum of 94.4 HRB has been obtained at the particle-rich region of 15-FGM. In the particle-rich zone, the lowest CTE value of 20.1 A mu m/mK is also observed with a compressive strength of 650 MPa and an ultimate tensile strength of 279 MPa. The wear resistance is higher at the particle-rich zone of the FGMMC. (C) The Minerals, Metals & Materials Society and ASM International 2016
机译:功能梯度材料(FGM)已成功用于具有特定位置特性的工程组件的设计和制造。本研究描述了具有10和15 wt%SiCp增强材料的A319铝功能梯度金属基复合材料(FGMMC)的加工和表征。液体搅拌铸造法用于复合熔体的制备,然后通过垂直离心铸造法形成FGMMC。所使用的工艺参数是模具预热温度523 K(250 A摄氏度),熔体浇注温度1013 K(740 A摄氏度)和模具转速1300 rpm。该研究分析了FGMMC圆盘径向上增强颗粒的分布和浓度,以及渐变对密度,硬度,机械强度,热膨胀系数变化和不同区域的耐磨性的影响。 FGMMC的微结构揭示了形成不同区域的钢筋的径向向外的梯度分布。即,在铸件的最外围形成了富基质的内部,过渡,富颗粒的外部以及几毫米厚的冷却区。从10-FGM开始,在15-FGM铸造中观察到SiCp最大值位置的径向偏移。机械表征描绘了富含颗粒区域的增强的性能。硬度显示出与颗粒浓度相关的渐变性质,并且在15-FGM的富颗粒区域获得了最大94.4 HRB。在富含颗粒的区域中,还观察到最低CTE值为20.1 Aμm / mK,抗压强度为650 MPa,极限抗拉强度为279 MPa。 FGMMC的富颗粒区的耐磨性更高。 (C)矿产,金属与材料学会和ASM International 2016

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