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基于田口方法的AM60合金热室压铸工艺优化

Optimisation of Hot-Chamber Die-Casting Process of AM60 Alloy Using Taguchi Method.

作者信息

Rzychoń Tomasz, Kiełbus Andrzej

机构信息

Faculty of Materials Engineering, Silesian University of Technology, ul. Krasińskiego 8, 40-019 Katowice, Poland.

出版信息

Materials (Basel). 2024 Dec 21;17(24):6256. doi: 10.3390/ma17246256.

Abstract

This paper presents the effect of hot-chamber HPDC (high-pressure die casting) process parameters on the porosity, mechanical properties, and microstructure of AM60 magnesium alloy. To reduce costs, a Taguchi design of the experimental method was used to optimise the HPDC process. Six parameters set at two levels were selected for optimisation, i.e., piston speed in the first phase, piston speed in the second phase, molten metal temperature, piston travel, mould temperature, and die-casting pressure (the pressure under the piston). Signal-to-noise (S/N) ratios were used to quantify the present variations. The significance of the influence of the HPDC parameters was assessed using statistical analysis of variance (ANOVA). The results showed that the die-casting pressure had the most significant influence on the porosity of the AM60 alloy. Moreover, piston speed in the first phase, second phase, and die-casting pressure had the most important effects on tensile strength. It is well known that porosity determines the mechanical properties of die castings; however, in AM60 alloy, changes in the HPDC parameters also contribute to microstructural changes, mainly through the formation of Externally Solidified Crystals.

摘要

本文介绍了热室高压压铸(HPDC)工艺参数对AM60镁合金气孔率、力学性能和微观结构的影响。为降低成本,采用田口实验设计方法对HPDC工艺进行优化。选择六个设置为两个水平的参数进行优化,即第一阶段活塞速度、第二阶段活塞速度、金属液温度、活塞行程、模具温度和压铸压力(活塞下方压力)。使用信噪比(S/N)来量化当前变化。通过方差统计分析(ANOVA)评估HPDC参数影响的显著性。结果表明,压铸压力对AM60合金的气孔率影响最为显著。此外,第一阶段、第二阶段的活塞速度和压铸压力对拉伸强度影响最为重要。众所周知,气孔率决定了压铸件的力学性能;然而,在AM60合金中,HPDC参数的变化也会导致微观结构的变化,主要是通过形成外部凝固晶体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b57a/11676469/22fbea80b69d/materials-17-06256-g001.jpg

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