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A new process proposal for continuous fabrication of rheological material by rotational barrel with stirring screw and its microstructural evaluation

机译:搅拌螺杆旋转桶连续制备流变材料的新工艺建议及其微观结构评价

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摘要

A new rheological fabrication process with specially designed rotational-barrel-type equipment has been developed for a rheo die-casting and a rheoforming process to reduce the number of manufacturing processes for the production of various engineering parts. The rotational-barrel-type equipment, which can continuously fabricate rheological material, was specially designed to have a shear rate and temperature control functions. While the barrel was constantly rotated at a constant temperature, the shear rate is controlled by the rotation speed. The effect of this system on the microstructure by varying the shear rate, the cooling rate and rotation time using A356.2 aluminum alloy was widely examined and analyzed, and suitability for new equipment for rheoforming process was investigated. It was resulted that the higher rotation speed, the longer time of rotation, and the slower cooling rate, the smaller the equivalent diameter and the roundness of primary particle were. However, it was confirmed that grain agglomeration and increase in grain size happens above the rotational time of 1800 s.
机译:已经开发出一种具有特殊设计的转筒式设备的新流变制造工艺,用于流变压铸和流变成型工艺,以减少用于生产各种工程零件的制造工艺的数量。可以连续制造流变材料的转筒式设备经过专门设计,具有剪切速率和温度控制功能。当机筒在恒定温度下恒定旋转时,剪切速率由转速控制。通过改变剪切速率,冷却速率和使用A356.2铝合金的旋转时间对该系统对显微组织的影响进行了广泛的研究和分析,并研究了适用于流变成形新设备的适用性。结果是,旋转速度越高,旋转时间越长,冷却速度越慢,一次粒径的当量直径和圆度越小。但是,已经证实,在1800 s的旋转时间以上会发生晶粒团聚和晶粒尺寸增大。

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