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Finite Element Simulation of Effects of Mould Angle and Friction on ECAP for AZ80 Magnesium Alloy

机译:AZ80镁合金的模角和摩擦力对ECAP影响的有限元模拟

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Finite element simulation of the effects of mould angle and friction condition on the equal channel angular pressing (ECAP) for AZ80 magnesium alloy were investigated by using DEFORM-3D program. The results show that the curve of load-displacement was divided into several stages including rapid increasing stage, load fluctuation, rapid increasing stage, steady stage and rapid drop stage. Firstly, when the angle decreased from 150° to 90°, the maximum load increased, and the same as energy consuming. In addition, the average effective strain increased with the decreasing of mould angle after single extrusion, while the degree of effective strain uniformity of the sample decreased and keep greater strain grads between inner and surface part. Secondly, the work load ascended with the increasing of the friction coefficient from 0 to 0.3, and one part of load overcome the friction and the other part is used for deformation of the sample. With the increment of friction coefficient, the average effective strain keeps steady value, while the degree of effective strain uniformity of the sample decreased. As mentioned above, large angle mould and low coefficient of friction should be adopted during ECAP deformation for AZ80 magnesium alloy.
机译:利用DEFORM-3D程序研究了模具角度和摩擦条件对AZ80镁合金等通道转角挤压的影响的有限元模拟。结果表明,负荷-位移曲线分为快速增加阶段,负荷波动,快速增加阶段,稳定阶段和快速下降阶段几个阶段。首先,当角度从150°减小到90°时,最大负载增加,并且与能量消耗相同。另外,单次挤压后,平均有效应变随模角的减小而增加,而样品的有效应变均匀度降低,并在内部和表面之间保持较大的应变梯度。其次,工作载荷随着摩擦系数从0增加到0.3而上升,一部分载荷克服了摩擦,另一部分用于样品变形。随着摩擦系数的增加,平均有效应变保持稳定值,而样品的有效应变均匀度降低。如上所述,AZ80镁合金的ECAP变形时应采用大角度模具和低摩擦系数。

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