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Preparation and Characterization of Alloy Al -SiC Made by Using Powder Metallurgy Method

机译:用粉末冶金方法制备和表征用粉末冶金方法制备

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Aluminum alloy as a strategic material and is widely used in all fields because this material has high strength, high ductility and has a low mass. The main application of alloy Al is used in aeronautical and automobile applications. aluminium is light weight materias, but it has lower mechanical strength. To improve the strength of aluminium (Al), silicon carbide particle (SiC) is added to aluminium powder for preparing alloy materials. The alloy Al is produced by powder metallurgy method. This method is cheap and very effective. The alloy Al was fabricated by variation of additive of SiC from 0 % , 1 %, 3 % and 5 % wt. Four samples of the composite materials have been prepared according to testing for bulk density, compressive strength, vickers hardness and crystal structure. From the results obtained, the alloy Al - SiC can influence siqnificantly on bulk density, compressive strength and vickers hardness. If the composition of SiC increases, the bulk density, compressive strength and vickers hardness tend to increase. The highest density, highest hardness and compressive strength are achieved at sample with 5 % SiC at sintering temperature 650°C. The addition of SiC on Al metal improves value of hardness and compressive strength, where highest hardness and compressive strength value achieved about 147 Hv and 259.65 kgf/cm~2 respectively. According the XRD results show that it is found two phases such as Al phase and SiC at samples with 3 to 5 % wt. of SiC.
机译:铝合金作为战略材料,广泛用于所有领域,因为这种材料具有高强度,高延展性并且具有低质量。 Alloy Al的主要应用用于航空和汽车应用。铝是重量轻的材料,但机械强度较低。为了提高铝(Al)的强度,将碳化硅颗粒(SiC)加入到用于制备合金材料的铝粉中。合金Al是通过粉末冶金方法生产的。这种方法便宜,非常有效。通过0%,1%,3%和5%wt的SiC的添加剂的变异来制造合金Al。根据对散装密度,抗压强度,维氏硬度和晶体结构的测试制备的四个复合材料样品。从获得的结果中,合金Al-SiC可以对散装密度,抗压强度和维氏硬度影响Siqimically。如果SiC的组成增加,堆积密度,抗压强度和维氏硬度趋于增加。在烧结温度650℃下的5%SiC的样品中实现最高密度,最高硬度和抗压强度。 Al金属上的SiC增加了硬度和抗压强度的值,其中最高的硬度和压缩强度值分别达到约147HV和259.65kgf / cm〜2。根据XRD结果表明,在3至5%wt的样品中发现了两种阶段,如Al相和SiC。 SIC。

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