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Effects of forming parameters on the forming limit of single-point incremental forming of sheet metal

机译:形成参数对金属单点增量成形成形限的影响

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摘要

In this paper, experimental and numerical simulation studies on the forming limit diagram of single-point incremental forming (SPIF) were described. We proposed a novel method for evaluating the forming limit in incremental forming. The proposed method utilizes the forming limit angle and the maximum thinning rate. The effects of the forming and processing parameters on the forming limit of an aluminum sheet during incremental forming were investigated using a combination of simulation analysis and experimental verification. The obtained results show that the forming limit is large for 1060Al and 6061Al when the initial thickness is 1.5 mm for a single parameter change for SPIF. For 1060Al, the step size is in the range of 0.8-1.5 mm. When the step size is 0.8 mm, the incremental forming limit is large and the forming precision is high. For 1060Al and 6061Al, the incremental forming limit is at the maximum level when the tool radius is 6.0 mm, and when the tool radius is 5.0 mm, the best forming precision can be achieved. It is of great theoretical significance and practical engineering value to study the effects of various forming parameters on the forming limit of metal sheet SPIF.
机译:本文对单点渐进成形(SPIF)的成形极限图进行了实验和数值模拟研究。提出了一种新的渐进成形极限计算方法。该方法利用了成形极限角和最大减薄率。采用模拟分析和实验验证相结合的方法,研究了渐进成形过程中成形参数和工艺参数对铝板成形极限的影响。结果表明,当初始厚度为1.5mm时,对于1060Al和6061Al,SPIF的单参数变化的成形极限较大。对于1060Al,步长在0.8-1.5毫米之间。当步长为0.8mm时,增量成形极限大,成形精度高。对于1060Al和6061Al,当刀具半径为6.0mm时,增量成形极限处于最大水平,当刀具半径为5.0mm时,可以达到最佳成形精度。研究各种成形参数对金属板材SPIF成形极限的影响具有重要的理论意义和工程实用价值。

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