离心铸造(银饰)
材料科学
合金
铸造
模具
冶金
离心力
粒度
逆温
传热
熔融金属
传热系数
液态金属
复合材料
机械
热力学
机械工程
转速
工程类
物理
作者
Shengkun Lv,Ruifeng Dou,Bo Yu,Junsheng Wang,Xunliang Liu,Wen Zhi
标识
DOI:10.1088/2053-1591/ac94b8
摘要
Abstract A horizontal centrifugal casting experiment was designed to determine the change in the solidification structure of Al-Cu alloy casting and the underlying variation in temperature, then obtained interface heat transfer coefficient by inverse calculation. The continuous simulation of metal melt filling from the gate to copper mold cavity is realized. The influence of centrifugal speed, pouring temperature, and mold preheating temperature on the solidified structure was analyzed. Simulation results showed that increasing the centrifugal speed mainly enhance the solidification rate of the molten metal and then refined the solidified structure of the Al-Cu alloy. Increasing the pouring temperature and mold preheating temperatures coarsen the grain size of the casting, but the range of change is small.
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