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首页> 外文期刊>Journal of Materials Processing Technology >Deformation mechanism of ZK61 magnesium alloy cylindrical parts with longitudinal inner ribs during hot backward flow forming
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Deformation mechanism of ZK61 magnesium alloy cylindrical parts with longitudinal inner ribs during hot backward flow forming

机译:ZK61镁合金圆柱形圆柱件在热向内肋的纵向内肋形成变形机理

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摘要

Thin-walled cylindrical parts with longitudinal inner ribs (CPLIRs) made of magnesium alloys are one of the most promising lightweight components. Flow forming is an effective technology to realize the integrated manufacturing of thin-walled CPLIRs. However, due to the complicated material flow and narrow temperature window, defects like insufficient filling at the rib groove and concavity of the back of rib occur easily during hot backward flow forming (HBFF) of ZK61 alloy thin-walled CPLIRs. The isothermal uniaxial compression test was proposed as the physical simulation test of the HBFF of thin-walled CPLIRs, and a novel method for analyzing the formability of hot spin-forming was proposed on the basis of the combination of 3D hot processing maps (HPMs) and finite element (FE) simulation. The process experiment and FE simulation integrated with 3D HPMs were conducted to investigate the deformation characteristic and material flow, and formation mechanism of defects was revealed. Further, the influence of process parameters on the power dissipation efficiency of spun workpiece was discussed. The results show that safe deformation of the alloy is concentrated at a narrow region with high temperature and low strain rate; the large tangential flow at the cylindrical wall and radial flow at the inner rib contributed to the filling of rib groove; unsaturated inner rib and concavity of the outer wall at the back of rib are typical defects; the ZK61 alloy CPLIRs exhibits good formability under reasonable process parameters, which is beneficial for obtaining qualified forming quality and uniform recrystallized microstructure.
机译:镁合金薄壁内肋圆柱零件是最有前途的轻量化零件之一。流动成形是实现薄壁零件集成制造的有效技术。然而,由于材料流动复杂,温度窗口狭窄,ZK61合金薄壁管在热回流成形(HBFF)过程中容易出现肋槽填充不足、肋背凹陷等缺陷。提出将等温单轴压缩试验作为薄壁CPLIR HBFF的物理模拟试验,并将三维热加工图(HPMs)与有限元模拟相结合,提出了一种分析热旋成形性能的新方法。通过工艺试验和有限元模拟,结合三维高性能材料,研究了材料的变形特性和材料流动,揭示了缺陷的形成机理。此外,还讨论了工艺参数对旋压工件功耗效率的影响。结果表明,合金的安全变形集中在高温低应变速率的狭窄区域;圆柱壁处的大切向流和内肋处的径向流有助于肋槽的填充;内肋不饱和和肋背外壁凹陷是典型缺陷;ZK61合金在合理的工艺参数下具有良好的成形性能,有利于获得合格的成形质量和均匀的再结晶组织。

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