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Effect of Process Parameters on Plastic Formability and Microstructures of Magnesium Alloy in Single Point Incremental Forming

机译:工艺参数对单点增量成形中镁合金塑性成形性和微观结构的影响

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In this paper, using a combination of simulated and experimental results and macroscopic and microscopic observations, we explain the effect of three process parameters: the forming temperature, forming tool radius, and the forming feed rate on the plastic formability of single point incremental forming of AZ31 magnesium alloy sheet in single point incremental forming from macroscopic and microscopic perspectives. The results show that the forming temperature and the tool-head radius strongly affect the macroscale experiment and the microstructure of AZ31 magnesium alloy sheet, whereas the effect of the feed rate is small. At a forming temperature of 250 degrees C, tool-head radius of 5 mm, and a feed rate of 0.7 mm, the magnesium alloy sheet exhibits a relatively good forming state, the thickness variation of the formed part is uniform, which is favorable for achieving uniform sheet forming, reducing stress concentration, and reducing the possibility of cracking. Under these conditions, the grain size of the magnesium alloy is relatively uniform; compared with the grain size in the microstructure of 6061 aluminum alloy, the grain size of the magnesium alloy is smaller.
机译:本文采用模拟和实验结果的组合和宏观和微观观测,我们解释了三个工艺参数的效果:形成温度,成形刀具半径和成型进料速率对单点增量成型的塑性成形性AZ31镁合金板单点增量形成从宏观和微观视角。结果表明,成形温度和工具头半径强烈影响宏观实验和AZ31镁合金板的微观结构,而进料速率的效果很小。在250℃的成形温度下,工具头半径为5mm,进给速率为0.7mm,镁合金板表现出相对良好的成形状态,所形成的部件的厚度变化是均匀的,这是有利的实现均匀的板材,降低应力浓度,降低裂化的可能性。在这些条件下,镁合金的晶粒尺寸相对均匀;与6061铝合金微观结构中的晶粒尺寸相比,镁合金的晶粒尺寸较小。

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