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首页> 外文期刊>Journal of the Institution of Engineers (India), Series D. Metallurgical & Materials Engineering.Mining Engineering >Microstructure, Mechanical and Surface Morphological Properties of Al 5Ti 5Cr Master Alloy as Friction Material Prepared by Stir Die Casting
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Microstructure, Mechanical and Surface Morphological Properties of Al 5Ti 5Cr Master Alloy as Friction Material Prepared by Stir Die Casting

机译:Al <下标> 5 Ti <下标> Cr Master合金作为搅拌压铸制备的摩擦材料的微观结构,机械和表面形态学性能

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摘要

Metal matrix composite offers outstanding properties for better performance of disc brakes. In the present study, the composite of AlTiCr master alloy was prepared by stir die casting method. The developed material was reinforced with (0–10?wt%) silicon carbide (SiC) and boron carbide (B~(4)C). The effects of SiC reinforcement from 0 to 10?wt% on mechanical, microstructure and surface morphological properties of Al MMC was investigated and compared with B~(4)C reinforcement. Physical properties like density and micro Vickers hardness number show an increasing trend with an increase in the percentage of SiC and B~(4)C reinforcement. Mechanical properties viz. UTS, yield strength and percentage of elongation are improved with increasing the fraction of reinforcement. The surface morphology and phase were identified from scanning electron microscopy (SEM) and X-ray diffraction analysis and the oxidized product formed during the casting was investigated by Fourier transformation infrared spectroscopy. This confirms the presence of crystallization of corundum (α-Al~(2)O~(3)) in small traces as one of the alumina phases, within casting sample. Micro-structural characterization by SEM depicted that the particles tend to be more agglomerated more and more with the percentage of the reinforcement. The AFM results reveal that the surface roughness value shows a decreasing trend with SiC reinforcement while roughness increases with increase the percentage of B~(4)C.
机译:金属矩阵复合材料提供出色的特性,可更好地表现圆盘制动器。在本研究中,通过搅拌压铸方法制备AltiCr Master合金的复合材料。用(0-10·wt%)碳化硅(SiC)和碳化硼(B〜(4)c)加固开发材料。研究了SiC增强从0到10℃的效果对Al MMC的机械,微观结构和表面形态特性进行研究,并与B〜(4)C加固进行比较。像密度和微维克斯硬度数字等物理性质显示出越来越大的趋势,随着SiC和B〜(4)C加固的百分比增加。机械性能viz。随着增强件的分数,改善了UTS,屈服强度和伸长率的百分比。通过傅里叶变换红外光谱研究了从扫描电子显微镜(SEM)和X射线衍射分析和X射线衍射分析和铸造期间形成的氧化产物的表面形态和相。这证实了小迹线中刚玉(α-Al〜(2)O〜(3))结晶的存在,作为铸造样品中的氧化铝相。 SEM的微结构表征描绘了颗粒往往更加凝聚,并且较越来越多地用增强件的百分比。 AFM结果表明,表面粗糙度值表明,随着SIC加固的趋势降低,而粗糙度随着增加B〜(4)C的百分比而增加。

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