首页> 外文期刊>International Journal of Metalcasting: Leading the Transfer of Research and Technology for the Global Metalcasting Industry >Microstructure and Simulation of Semisolid Aluminum Alloy Castings in the Process of Stirring Integrated Transfer-Heat (SIT) with Water Cooling
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Microstructure and Simulation of Semisolid Aluminum Alloy Castings in the Process of Stirring Integrated Transfer-Heat (SIT) with Water Cooling

机译:半固体铝合金铸件在水冷搅拌综合转移热(SIT)过程中的微观结构和仿真

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摘要

The continuing quest for aluminum castings with fewer defects has aroused the interest in rheological high-pressure die casting (RHPDC). A new machine, stirring integrated transfer-heat (SIT) device, based on the mechanical stirring and enhanced cooling for semisolid slurry preparation was proposed to produce the thin-walled communication shell part by RHPDC process. The influence of SIT process characteristics on the microstructure was studied. The microstructure of SIT-RHPDC shell part in different locations was investigated. Combined with simulation, the flow characteristics and the temperature field change in the melt under the stirring-only process and different stirring with internal water-cooling conditions were studied to get a better understanding of the nucleation, grain growth and solidification behavior. Under the dual action of agitation and heat dissipation in SIT device, the fluid convection has changed the temperature field of the melt significantly. The temperature field of the melt becomes relatively uniform from a great temperature gradient and the continuous cooling rate is increased to 5 degrees C/s. In the same time, the slurry has a greater supercooling degree, and flows more evenly in the filling process. The experimental results indicate that compared with microstructure of an HPDC component, the microstructure at different locations of SIT-RHPDC part is composed of refined rosiness and nearly spherical particles.
机译:继续追求具有较少缺陷的铝铸件,引起了流变高压压铸(RHPDC)的兴趣。提出了一种新的机器,基于机械搅拌和增强的半固体浆料制剂冷却的新机器,搅拌的集成转移热(SIT)装置,通过RHPDC工艺制造薄壁通信壳部分。研究了SIT过程特征对微观结构的影响。研究了不同位置的SIT-RHPDC壳部分的微观结构。研究了搅拌过程下熔体的流动特性和温度场变化,并研究了与内部水冷条件不同的搅拌,以更好地了解成核,晶粒生长和凝固行为。在静态装置的搅拌和散热的双作用下,流体对流显着改变了熔体的温度场。熔体的温度场从较高的温度梯度变得相对均匀,并且连续冷却速率增加到5摄氏度。同时,浆料具有更大的过冷度,并且在填充过程中更均匀地流动。实验结果表明,与HPDC组分的微观结构相比,SIT-RHPDC部分的不同位置的微观结构由精制的圆筒性和几乎球形颗粒组成。

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