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Improvement on die-casting efficiency and property of aluminum alloy casing.

机译:铝合金壳体压铸效率和性能的提高。

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Die-casting process is significantly used in the industry for its high productivity and less post-machining requirement. For high pressure die-casting, it needs well-design of gating and runner system;;therefore, die cavity design and technology parameter calculations are essential. In the current paper of die-casting for automobile starter motor casing, the following issues are focused: filling simulation, defect analysis, and finally the use of the Taguchi multi-quality analysis method to find the optimal parameters and factors to increase the aluminum ADC 10 die-casting quality and efficiency. When the casting speed is increased, the volume shortage detects due to solidification procedure can be reduced. However, if the casting speed exceeds a permissible level, the defects of gas volume and porosity will occur. After Taguchi method analysis, the results of the optimum parameters are: for the gate area of 40mm2, group 2 of the gate location, the speed of the liquid metal at the gate 50 m/s, the temperature of molten aluminum 670° C.
机译:为其高生产率和更低的加工后需求而言,压铸工艺显着使用。对于高压压铸,需要良好的门控和转轮系统设计;因此,模腔设计和技术参数计算是必不可少的。在本目前的汽车启动机电机外壳的压铸纸上,以下问题集中了:填充模拟,缺陷分析,以及使用Taguchi多质量分析方法的使用,找到增加铝ADC的最佳参数和因素10压铸质量和效率。当铸造速度增加时,可以减少由于凝固程序引起的体积短缺。然而,如果铸造速度超过允许水平,则会发生气体体积和孔隙率的缺陷。在Taguchi方法分析之后,最佳参数的结果是:对于栅极面积为40mm2,栅极位置的第2组,液体金属在栅极50m / s处,温度熔融铝温度670℃。

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