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Necking bifurcations during high strain rate extenslon

机译:高应变率延伸过程中的颈缩分叉

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Dynamic necking bifurcations which occur during rapid plane strain extension of a block of strain hardening plastic material are investigated. The block is presumed to be a portion of a plate or thin-walled shell deforming at high strain rate. It is found that the rates of growth of both very long and very short wavelength modes of nonuniform deformation are suppressed by inertia, thus promoting a necking pattern at an intermediate wavelength. The analysis indicates that, for blocks of small aspect ratio, the number of necks formed per unit length is proportional to the square root of the mean extensional strain rate of the block. The results of the analysis agree with necking patterns observed in high velocity ring expansion experiments and in detailed numerical simulations.
机译:研究了在应变硬化塑料材料块的快速平面应变扩展过程中发生的动态缩颈分叉。假定该块是板或薄壁壳以高应变率变形的一部分。发现很长和很短波长的非均匀变形模式的增长率都被惯性抑制,从而促进了中等波长的颈缩图案。分析表明,对于小长宽比的块,每单位长度形成的颈颈数量与块的平均拉伸应变率的平方根成比例。分析结果与在高速环膨胀实验和详细的数值模拟中观察到的颈缩模式相吻合。

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