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首页> 外文期刊>International Journal of Material Forming: Official Journal of the European Scientific Association for Material Forming - ESAFORM >Evaluation of bending limit curves of aluminium alloy AA6014-T4 and dual phase steel DP600 at ambient temperature
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Evaluation of bending limit curves of aluminium alloy AA6014-T4 and dual phase steel DP600 at ambient temperature

机译:铝合金AA6014-T4和双相钢DP600在环境温度下的弯曲极限曲线评价

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摘要

Bending/hemming operations are extensively used in automotive industries for assembling the car body panels. Besides the process mechanics, bending operation differs from biaxial sheet metal forming operations in failure mechanism also. Hence, the limit strains that material can sustain are different for both the operations. Thus, the conventional FLC proposed by Keeler and Goodwin fails to predict formability in bending/hemming operations. This necessitates the development of bending limit curves. In this work, bending limit curves are determined experimentally for AA6014-T4 and DP600. Effect of punch radius, nature and level of pre-strain on the bending limits is also studied. Thus, BLC can be used as a post-processing criterion in finite element simulations to assess formability during bending/hemming operations.
机译:折弯/包边操作广泛用于汽车工业,用于组装车身面板。除了工艺力学外,折弯操作在失效机制上也不同于双轴钣金成形操作。因此,对于这两种操作,材料可以承受的极限应变是不同的。因此,Keeler 和 Goodwin 提出的传统 FLC 无法预测弯曲/包边操作中的成形性。这就需要开发弯曲极限曲线。在这项工作中,通过实验确定了 AA6014-T4 和 DP600 的弯曲极限曲线。还研究了冲头半径、性质和预应变水平对弯曲极限的影响。因此,BLC可以用作有限元仿真中的后处理准则,以评估弯曲/包边操作期间的成形性。

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