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Tensile Properties and Shallow Pan Rapid Gas Blow Forming of Commercial Fine-grained Mg Alloy AZ31B Thin Sheet

机译:张拉丝性能和浅盘快速气体吹塑,商用细粒镁合金AZ31B薄板

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Tensile tests and gas blow forming were performed to explore the deformation behavior of a fine-grained AZ31B Mg alloy sheet. This work studied the decrease in forming time in gas blow forming using fine-grained Mg alloy AZ31B thin sheet with a thickness of 0.6 mm. The stress-strain rate data showed that fine-grained AZ31B thin sheet on testing at 420°C exhibited strain rate sensitivity exponent values of approximately 0.29×0.36 in a strain rate ranging from 4×10~(-3) and 2×10_2 s_1, indicating that the dislocation creep would be a possible deformation mechanism to reduce forming time in gas blow forming. The alloy sheets were successfully deformed into a shallow rectangular pan using constant gas pressure forming. The deformation characteristics of gas blow forming were discussed. As a result, a significant reduction in forming time was achieved, in which a rectangular pan was formed with a height of 10 mm in less than 105 s at 420°C. Pan forming revealed that the maximum average stain rates of 7.0×10~(-3) and 8.7×10~(-3) s~(-1) were obtained for forming at constant pressures of 2.6 and 3.2 MPa, respectively. Fillet radius of the rectangular pan should be one of the key factors influencing forming time on closed die gas blow forming.
机译:进行拉伸试验和气体吹塑,以探讨细粒淀粉AZ31B mg合金板的变形行为。这项工作研究了使用厚度为0.6mm的细颗粒Mg合金AZ31B薄板的气体吹气中成型时间的降低。应力 - 应变速率数据显示,在420°C的测试中测试细粒的AZ31B薄板在4×10〜(-3)和2×10_2 S_1的应变速率下表现出约0.29×0.36的应变速率灵敏度指数值。 ,表明脱位蠕变是一种可能的变形机制,以减少气体吹割成形中的成形时间。使用恒定的气体压力成功地成功地变形到浅矩形平底锅中。讨论了气体吹割成形的变形特征。结果,实现了形成时间的显着降低,其中形成矩形盘,在420℃下小于105秒的高度为10mm。 PAN形成显示,获得7.0×10〜(-3)和8.7×10〜(-3)S〜(-1)的最大平均污渍率分别以恒定压力为2.6和3.2MPa的形成。矩形锅的圆角半径应是影响闭合模瓦吹割成型成形时间的关键因素之一。

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