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电磁力作用下平板变形的实验研究 被引量:1
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作者 初红艳 费仁元 +1 位作者 陆辛 杨鲁义 《中国机械工程》 EI CAS CSCD 北大核心 2003年第20期1729-1732,共4页
通过平板件的电磁无底凹模成形、有底凹模成形的实验研究 ,发现不同形式的压边圈可以导致不同的工件变形高度。有底凹模成形时 ,在设备能量足以使工件变形达到凹模底部的情况下 ,工件的最大变形高度小于凹模深度 ,并且电压越大 ,工件的... 通过平板件的电磁无底凹模成形、有底凹模成形的实验研究 ,发现不同形式的压边圈可以导致不同的工件变形高度。有底凹模成形时 ,在设备能量足以使工件变形达到凹模底部的情况下 ,工件的最大变形高度小于凹模深度 ,并且电压越大 ,工件的变形高度越小 ,而且在较大电压的情况下 ,工件底部还会出现反向变形。对实验现象进行了分析 ,认为不同形式的压边圈 ,板料所受径向拉深力不同 ,导致不同的工件变形高度 ;板料受撞击产生的反向运动是导致工件最大变形高度小于凹模深度的主要原因。 展开更多
关键词 电磁成形 变形高度 径向拉深力 反作用
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Hydrodynamic deep drawing of double layered conical cups 被引量:4
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作者 Alireza JALIL Mohammad HOSEINPOUR GOLLO +1 位作者 M.Morad SHEIKHI S.M.Hossein SEYEDKASHI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2016年第1期237-247,共11页
Hydrodynamic deep drawing assisted by radial pressure is an advanced sheet forming technology with great advantages such as higher drawing ratio, good surface quality and higher dimensional accuracy. In this process, ... Hydrodynamic deep drawing assisted by radial pressure is an advanced sheet forming technology with great advantages such as higher drawing ratio, good surface quality and higher dimensional accuracy. In this process, both the bottom surface and the peripheral edge of sheets are under hydrodynamic pressure, so that the forming procedure is more uniform with low failure probability. Multi-layered sheets with complex geometries could be formed more easily with this technique compared with other traditional methods. Rupture is the main irrecoverable failure form in sheet forming processes. Prediction of rupture occurrence is of great importance for determining and optimizing the proper process parameters. In this research, a theoretical model was proposed to calculate the critical rupture pressure in production of double layered conical parts with hydrodynamic deep drawing process assisted by radial pressure. The effects of other process parameters on critical rupture pressure, such as punch tip radius, drawing ratio, coefficient of friction, sheet thickness and material properties were also discussed. The proposed model was compared with finite element simulation and validated by experiments on Al1050/St13 double layered sheets, where a good agreement was found with analytical results. 展开更多
关键词 hydrodynamic deep drawing radial pressure double layered sheet conical cup critical pressure
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