A Study On The Effect Of Multi-Axial Forging Type On The Deformation Heterogeneity Of Aa1100 Using Finite Element Analysis

KOREAN JOURNAL OF METALS AND MATERIALS(2021)

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摘要
The effect of 3 forging routes (Route A - 1 similar to 12 passes by plane forging (PF) and reverse-plane forging (R-PF), Route B - 1 similar to 6 passes by PF and R-PF, 7 similar to 12 passes by diagonal forging (DF) and reverse-diagonal forging (R-DF), Route C - 1 similar to 12 passes by DF and R-DF) on maximum load to produce the workpiece, deformation heterogeneity and hydrostatic pressure distribution in AA1100 was theoretically investigated using finite element analysis (FEA). The maximum load per pass required to complete 1 cycle of the SPD process was different depending on the forging routes. Route A was relatively higher than Route B and C. From the results of effective strain, the deformation heterogeneity was predicted at the center, edge, and corner regions of the AA1100 workpiece produced by Route A and B. However, the distribution of effective strain in Route C was relatively more homogeneous than Route A and B. The average hydrostatic pressure, which is closely related to the suppression of crack formation in the workpiece under multi-axial forging, was predicted to be relatively bigger in Route C than Route A and B.
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关键词
AA1100, forging, deformation, multi-axial, finite element analysis
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