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首页> 外文期刊>Engineering Optimization >Optimization of stir-squeeze casting parameters for production of metal matrix composites using a hybrid analytical hierarchy process-Taguchi-Grey approach
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Optimization of stir-squeeze casting parameters for production of metal matrix composites using a hybrid analytical hierarchy process-Taguchi-Grey approach

机译:用杂交分析层次工艺 - Taguchi-Try-Gray方法优化金属基质复合材料的搅拌挤压参数

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摘要

A hybrid optimization approach using analytical hierarchy process (AHP) combined with Taguchi-Grey has been developed and tested for the first time to optimize the stir-squeeze casting process parameters in the production of aluminium metal matrix composites reinforced with alumina for automotive brake disc application. The AHP method was used for assigning a weight to the response variables, which was based on experts' opinion on the importance of the response variables for brake disc application. For producing brake discs, the optimum process parameters are found to be a squeeze pressure of 100 MPa, squeeze time of 45 s, die preheating temperature of 250 degrees C and stirrer speed of 525 rpm. Also, a confirmatory analysis was carried out to validate these optimum process parameters, and the results indicated enhanced compressive strength of 433 MPa (18.5% increase) and reduced porosity of 5.29% (13.5% decrease) in the composite.
机译:使用分析层次处理(AHP)与Taguchi-Gray相结合的混合优化方法已经开发和测试,首次开发和测试,以优化用氧化铝用于汽车制动盘应用的铝金属基质复合材料的生产中的搅拌挤压铸造工艺参数 。 AHP方法用于为响应变量分配权重,这是基于专家对制动盘应用程序响应变量的重要性的看法。 为了生产制动盘,发现最佳过程参数是100MPa的挤压压力,挤压时间为45秒,模具预热温度为250℃,搅拌速度为525rpm。 此外,进行了确认分析以验证这些最佳过程参数,结果表明,增强的压缩强度为433MPa(增加18.5%),复合材料中的孔隙率降低5.29%(减少13.5%)。

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