Effect of Temperature Semi-solid Casting Process on AZ91D Magnesium Alloys to Hardness and Microstructures

Kusharjanto Kusharjanto, S. Sutarno, R. H. Mulyani
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Abstract

This study investigates the effect of temperature semi-solid casting process for magnesium alloys AZ91D in an effort to increase the mechanical properties for the application of lightweight structures. In this experiments, semi-solid casting process is varied temperatures ranging from 500, 510, 520, 530 and 540°C. Results of hardness testing obtained the highest average is 64.4 BHN at a temperature of 500°C, which higher than the as-cast 42.56 BHN (an increase of 33.91%). The increasing of hardness occur because of changes in the microstructure of dendrite structures into globular grains, which have α-Mg phase and ß-Mg17Al12. Small spherical grain shape and spread evenly with a size of 40.08 μm obtained at temperatures of 500°C and size 77.2 μm at temperatures 540°C.
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温度半固态铸造工艺对AZ91D镁合金硬度和组织的影响
为了提高AZ91D镁合金轻量化结构的力学性能,研究了温度半固态铸造工艺对AZ91D镁合金的影响。在本实验中,半固态铸造过程的温度变化范围为500、510、520、530和540℃。硬度测试结果表明,在500℃温度下,合金的平均硬度最高,为64.4 BHN,高于铸态的42.56 BHN,提高了33.91%。硬度的提高是由于枝晶组织转变为具有α-Mg相和ß-Mg17Al12的球状晶粒。500℃时晶粒尺寸为40.08 μm, 540℃时晶粒尺寸为77.2 μm,晶粒呈小球形,分布均匀。
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