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首页> 外文期刊>Materials Sciences and Applications >Effect of Slow Cooling in Reducing Pore Size in a Sintered Powder Metallurgical 6061Aluminium Alloy
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Effect of Slow Cooling in Reducing Pore Size in a Sintered Powder Metallurgical 6061Aluminium Alloy

机译:缓慢冷却对粉末冶金6061铝合金烧结体孔径减小的影响

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The usage of powder metallurgy aluminium compacts in lieu of ferrous components in automotives helps to lower vehicle weight. The major drawback in the commercially available press sintered aluminium alloy is porosity which is mainly dependent on the powder metallurgical process parameters such as compaction pressure, sintering temperature and cooling rate after sintering. In this paper the effect of particle size and furnace controlled cooling after sintering on porosity level and micro hardness of an elemental 6061 aluminium alloy has been investigated. Aluminium particle sizes of 20 μm and 150 μm were used. The elemental 6061 aluminium alloy powders are warm compacted at 175 MPa. After sintering for about one hour at 600°C, the aluminium compacts were furnace cooled at the rate of 1°C /min to different temperatures of 500°C, 400°C, 300°C and 200?C. When the cooling temperature after sintering inside the furnace is effected at various temperatures from 600°C to 200°C, for a precipitate hardened aluminium compacts with aluminium particle size of 20 μm, the porosity level reduced by 26% and that for aluminium particle size of 150μm, the porosity level reduced by 23%. Marked improvement in micro hardness value is also observed correspondingly.
机译:在汽车中使用粉末冶金铝粉代替铁成分有助于减轻汽车重量。市售压制烧结铝合金的主要缺点是孔隙率,其主要取决于粉末冶金工艺参数,例如压制压力,烧结温度和烧结后的冷却速率。本文研究了粒径和烧结后炉内控制冷却对元素6061铝合金的孔隙度和显微硬度的影响。使用的铝粒度为20μm和150μm。将元素6061铝合金粉末在175 MPa下热压。在600℃下烧结约一小时后,将铝压块以1℃/ min的速率炉冷至500℃,400℃,300℃和200℃的不同温度。当在炉内烧结后的冷却温度在600°C至200°C的各种温度下进行时,对于铝粒径为20μm的沉淀硬化铝压块,孔隙率降低了26%,而铝粒径降低了150μm的孔隙率降低了23%。相应地还观察到显微硬度值的显着改善。

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