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首页> 外文期刊>Indian journal of engineering and materials sciences >Influence of titanium carbide and activated carbon particles on the wear, mechanical properties and microstructure study of A413 metal matrix composite
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Influence of titanium carbide and activated carbon particles on the wear, mechanical properties and microstructure study of A413 metal matrix composite

机译:碳化钛和活性炭颗粒对A413金属基质复合材料磨损,力学性能和微观结构研究的影响

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Present industries show an increasing demand in low-cost reinforcement and light weight composites. As compared to unreinforced alloys, metal matrix composites (MMCs) have possessed better properties including good thermal conductivity, wear resistance and high strength. The inexpensive low-density reinforcement of several discontinuous dispersions is available in huge quantities of agricultural waste is activated carbon (AC). Hence, the composites with activated carbon as reinforcement in Al-Si alloys (AMMC) are likely to find wide spread applications in aerospace, marine and automobile sectors. The current?examination?has been?cantered?at the?usage?of titanium carbide (TiC) and activated carbon (coconut shell ash powder) in micro?form,?with the aid of?dispersing it into aluminium silicon alloy (A413) to yield composites?via?stir casting method. Hybrid reinforcement of 1, 2 & 3% of TiC and 5, 10 & 15 % of activated carbon?via?weight %, specimens have been prepared?by using?liquid metallurgy route. Tests like wear behaviour, mechanical?tests and microstructure?studies?are?executed?and?analysed. From the investigation it has been revealed that with increase in the % reinforcements of TiC and activated carbon improving the mechanical properties of the composites such as hardness and tensile strength. The microstructure pictures have revealed the distribution of TiC and AC reinforcement uniformly in the Al-Si matrix.
机译:目前的行业在低成本加固和轻量级复合材料中表现出不断增长的需求。与未原始的合金相比,金属基质复合材料(MMC)具有更好的性能,包括良好的导热性,耐磨性和高强度。几种不连续分散体的廉价低密度增强有大量的农业废物是活性炭(AC)。因此,具有活性炭作为Al-Si合金(AMMC)的增强的复合材料可能在航空航天,海洋和汽车领域中找到广泛的涂抹应用。目前?检查?又叫了?用法?碳化钛(TiC)和活性炭(椰子壳灰粉)在微箱中,借助于铝合金硅合金(A413)产生复合材料?通过?搅拌铸造方法。杂交增强1,2&3%的TIC和5,11%和15%的活性炭?通过α重量%,样品进行了制备?液体冶金途径。测试就像磨损行为,机械?测试和微观结构?研究?是?执行?和?分析。从调查开始,据揭示,随着TIC和活性炭的百分比增强,改善了复合材料的机械性能,例如硬度和拉伸强度。微结构图片揭示了在Al-Si基质中均匀的TIC和AC加强件的分布。

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