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Studies on Tensile Properties of Titanium Carbide (TiC) Participates Composites

机译:碳化钛(TIC)参与复合材料的拉伸性能研究

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The aim of this study is to determine the tensile properties of titanium carbide (TiC) particulate reinforced with aluminium alloy 11.8% silicon (LM6) alloy composite. In this experimental study, TiC particulates reinforced with LM6 composite were manufactured by sand and permanent metallic mould methods. Tensile properties of these composite materials were investigated by different weight percentages, 0%, 5%, 10%, 15% and 20%wt. The tensile tests were conducted to determine tensile strength and modulus young to investigate the effects of reinforce materials on weight percentages. The outcome of the investigations reveals that the tensile strength is enhanced from 0wt% to 10wt% of TiC and start to decrease after the addition of 10wt% of TiC. Good bonding and wettability between the composites ranging from 0%wt. to 10%wt. of TiC influence the close distribution of TiC particles in the LM6 alloy matrix. The addition of 10%wt. to 20%wt. of TiC in LM6 alloy matrix cause the lower resistance and load-bearing capacity and the particle are no longer isolated with the LM6 alloy matrix causing the worse value of tensile strength.
机译:本研究的目的是确定用铝合金11.8%硅(LM6)合金复合材料加固碳化钛(TIC)颗粒的拉伸性能。在该实验研究中,用LM6复合材料加固的TIC颗粒由砂和永久金属模具方法制造。通过不同的重量百分比,0%,5%,10%,15%和20%重量来研究这些复合材料的拉伸性质。进行拉伸试验以确定拉伸强度和模量杨,以研究增强材料对重量百分比的影响。研究结果表明,拉伸强度从0wt%到10wt%的TIC增强,并在添加10wt%的Tic后开始降低。复合材料之间的良好粘接和润湿性,从0%wt。到10%wt。 TIC影响LM6合金基质中TIC颗粒的紧密分布。添加10%wt。 20%wt。在LM6合金基质中的TIC导致降低电阻和承载能力,颗粒不再与LM6合金基质隔离,导致拉伸强度的更差值。

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