首页> 外文期刊>Iranian Journal of Science and Technology, Transactions of Mechanical Engineering >An Inclusive Experimental Investigation on Influences of Different Process Parameters in Warm Incremental Forming of AZ31 Magnesium Sheets
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An Inclusive Experimental Investigation on Influences of Different Process Parameters in Warm Incremental Forming of AZ31 Magnesium Sheets

机译:AZ31镁板温热增量成型不同工艺参数对不同工艺参数影响的包容性实验研究

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摘要

The incremental forming (IF) is a flexible sheet metal forming process, which is extensively used for low-quantity and/or prototype productions. Light alloys, such as magnesium alloys, are also interesting candidates for reducing the weights of different vehicles to reduce their fuel consumption. The present investigation is concerned with the warm incremental forming of AZ31 magnesium sheets. In this regard, the effects of different operational variables, namely the initial temperature, vertical pitch and tool diameter, on various outcome parameters such as actual in-process temperature, drawing depth, major and minor strains (forming limit diagrams), thickness reduction, spring-back, microstructure and hardness of the deformed sample are experimentally studied using the groove test. Among various parameters, it was found that the initial temperature and, consequently, the actual final temperature significantly affected the outputs of the IF process. Regarding this, a transition temperature of about 160 degrees C was obtained for AZ31 sheets, above which considerable changes were observed in the material behavior and the influences of several operational variables. Based on the experimental findings, a couple of predictive equations are also proposed in this article for estimation of the actual final temperature and the drawing depth of AZ31 samples incrementally deformed via the groove tests.
机译:增量形成(IF)是柔性金属板形成过程,其广泛用于低量和/或原型生产。镁合金等轻合金也是有趣的候选人,用于减少不同车辆的重量以降低其燃料消耗。本研究涉及AZ31镁板的温暖增量形成。在这方面,不同操作变量的影响,即初始温度,垂直间距和工具直径,在各种结果参数上,例如实际的过程温度,绘制深度,主要和次要菌株(形成极限图),厚度减小,使用沟槽试验实验研究变形样品的弹簧,微观结构和硬度。在各种参数中,发现初始温度和因此,实际的最终温度显着影响了IF过程的输出。关于此,对于AZ31片材获得约160℃的过渡温度,高于在材料行为中观察到具有相当大的变化以及若干操作变量的影响。基于实验结果,在本文中还提出了几种预测方程,用于估计实际的最终温度和AZ31样品的拉伸深度通过凹槽试验递增地变形。

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