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DEFORMATION ANALYSIS OF MULTI-STAGE INCREMENTAL SHEET FORMING

机译:多阶段渐进式板材成形的变形分析

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This paper presents an analytical and numerical study of deformation analysis for multistage incremental sheet forming processes, with a truncated conical part is used as an example. Unlike in the single-pass incremental forming where the sheet deformation is dominantly plane strain in the axial direction when forming a conical part, the sheet is also deformed in the circumferential direction when it is incrementally formed subsequently. Ideal deformation kinetics is assumed in the analytical derivations of strain distributions, which should be valid as long as the increment in deformation from one stage to the next is small. Numerical simulations with LS-DYNA are also conducted in an effort to understand the fundamental deformation mechanics of multistage incremental forming. The simulation result for a five-stage incremental forming process is presented. It is also used to correlate the analytical solution. An improved analytical equation for strain distributions is derived, which compares favorably with simulation results.
机译:本文介绍了多级增量板材成形过程中变形分析的分析和数值研究,以截锥形部分为例。与单次渐进成形不同,在单次渐进成形中,当形成圆锥形零件时,片材变形主要是沿轴向方向的平面应变,而当随后进行递增成形时,片材也沿圆周方向变形。在应变分布的解析推导中假设了理想的变形动力学,只要从一个阶段到下一个阶段的变形增量很小,该变形动力学就应该是有效的。为了理解多级增量成形的基本变形机理,还进行了LS-DYNA数值模拟。给出了五阶段增量成形过程的仿真结果。它也用于关联分析解决方案。推导了一种改进的应变分布解析方程,该方程与仿真结果相吻合。

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