EFEK WAKTU TAHAN SINTERING DAN KOMPOSISI BAHAN TERHADAP KEKERASAN DAN STRUKTUR MAKRO PRODUK METALURGI SERBUK

A. Triadi, M. D. Fathony, P. Pandiatmi
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Abstract

The development of science and technology today is very rapid and develop in various sectors, that one is in engineering material sector, specifically composite material . One method of composite formation is powder metallurgy method. Powder metallurgy is a metalworking technology in which components are manufactured from metal powders. This study aims to determine the effect of holding time sintering and mixing composition on hardness and macro structure observations. The material used in this study was aluminum waste that came from the rest of the window cutting. The specimens were made using powder metallurgy method. In this study the variations used were the sintering holding time of 120 minutes, 180 minutes, 240 minutes, composition variations of 80% Al : 17% Sic : 3% Glass, 80% Al : 14% Sic : 6% Glass, 80% Al : 11 % Sic : 9% Glass, 80% Al : 8% Sic : 12% Glass. Some control variables are grain size 100 mesh, mixing 15 minutes, compacting 7 tons and sintering temperature 600oC. The results obtained are the highest hardness value is found in the specimen with a sintering temperature of 600oC with a sintering holding time of 240 minutes at a material composition of 80:17:03 which is 90.33 HRF. The macro structure observations showed that there was a smaller porosity in the specimens with high hardness values. The results of the overall mechanical properties test show that the variation of the sintering resistance time has an effect on the specimen which will give time for the formation of stronger bonds between particles. While the variation in the composition of the material with SiC reinforcement the more the percentage given, the greater the composite hardness.
对流时间和材料成分对硬度和冶金产品宏观结构的影响
当今科学技术的发展非常迅速,各个领域都在发展,那就是工程材料领域,特别是复合材料。粉末冶金法是复合材料成形的一种方法。粉末冶金是一种金属加工技术,用金属粉末制造零件。本研究旨在确定保温时间、烧结和混合成分对硬度和宏观组织观察的影响。在这项研究中使用的材料是铝废料,来自其余的窗户切割。试样采用粉末冶金法制备。本研究采用的烧结保温时间分别为120分钟、180分钟、240分钟,成分分别为80% Al: 17% Sic: 3%玻璃、80% Al: 14% Sic: 6%玻璃、80% Al: 11% Sic: 9%玻璃、80% Al: 8% Sic: 12%玻璃。控制变量为粒度100目,混合15分钟,压实7吨,烧结温度600℃。结果表明,当烧结温度为600℃,烧结保温时间为240分钟,材料成分为80:17:03,硬度值为90.33 HRF时,硬度值最高。宏观组织观察表明,高硬度试样的孔隙率较小。综合力学性能测试结果表明,烧结阻力时间的变化对试样有影响,为颗粒间形成更强的结合提供了时间。而SiC增强材料的成分变化百分比越大,复合硬度越大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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