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Finite Element Analyses of Conventional Single Point Incremental Forming and Friction Stir Incremental Forming of Aluminum Alloy Sheets

机译:常规单点增量成形与铝合金板材摩擦搅拌增量成形的有限元分析

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摘要

Friction stir incremental forming process for formingA5083 aluminum alloy sheets was calculated by finite elementmethod. Conventional incremental forming process was alsocalculated and the both calculated results about distributions oftemperature, plastic strain and deformation after springbackwere compared each other. Metallurgical change was not takeninto account in the calculation. The maximum temperatures ofsheet during forming in friction stir incremental forming andconventional incremental forming were 380 o C and 60 o C,respectively. Both distributions of equivalent strain in frictionstir incremental forming and conventional incremental formingwere almost uniform, however, absolute value in friction stirincremental forming was greater due to the shear strainintroduced by tool rotation. Displacement in Z-direction byconventional incremental forming was uniform, however, thatby friction stir incremental forming was not uniform since thetemperature difference between during and after forming waslarge.
机译:采用有限元方法计算了A5083铝合金板的摩擦搅拌增量成形工艺。还计算了传统的渐进成形过程,并将两者关于温度分布,塑性应变和回弹后变形的计算结果进行了比较。计算中未考虑冶金变化。摩擦搅拌渐进成形和常规渐进成形过程中片材的最高温度分别为380 o C和60 oC。摩擦搅拌增量成形和常规增量成形中的等效应变分布几乎均一,但是,由于工具旋转引入的剪切应变,摩擦搅拌增量成形中的绝对值较大。通过常规的增量成形在Z方向上的位移是均匀的,但是,由于在成形期间和成形后之间的温差大,因此通过摩擦搅拌的增量成形是不均匀的。

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