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Predicting Material Properties of Flow Formed Work-piece Based on a Finite Deformation Method

机译:基于有限变形法预测流动成型工件的材料特性

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Flow Forming Process is a manufacturing process to deform rotating axis symmetric work-piece with rotating rollers. It is difficult to predict the behaviour of work-piece during the process because the shear and compression deformation occurs simultaneously in the shape of helix along the axis. This study presents a model which can predict the deformed geometric shape and material properties using geometric shape change and material properties of work-piece. This model is based on finite deformation theory, and assumes that the structure of the material is isotropic lattice structure. To simulate the flow forming process, firstly the axial displacement is calculated using the stress-strain relation. And then the radial displacement is calculated using the volume constancy theory. The material properties of flow formed material are easily calculated with the deformed geometry. The presented model is verified by experimenting actually, and a tensile test demonstrates the predicted material properties.
机译:流动成型过程是用旋转辊变形旋转轴对称工作片的制造过程。难以预测过程中工件的行为,因为剪切和压缩变形沿轴的螺旋形状同时发生。该研究介绍了一种模型,其可以使用工件的几何形状变化和材料特性来预测变形的几何形状和材料特性。该模型基于有限变形理论,并假设材料的结构是各向同性的晶格结构。为了模拟流动形成过程,首先使用应力 - 应变关系计算轴向位移。然后使用音量恒定理论计算径向位移。通过变形的几何形状容易地计算流动成形材料的材料特性。通过实际进行实验验证所提出的模型,并且拉伸试验表明了预测的材料特性。

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