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Formability limits of high-strength H240LA steel sheets under stress/strain gradients

机译:高强度H240LA钢板在应力/应变梯度下的成形性极限

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Conventional sheet metal forming processes usually involve the simultaneous action of stretching and bending, inducing strain/stress gradients across the sheet thickness and complex strain paths, which decisively influence the onset and development of the failure mechanism by necking. Therefore, an accurate assessment of formability requires the use of strain path independent tools that take in to account the bending effects on the sheet failure. The use of the theory of critical distance (TCD), widely used in fatigue and fracture mechanics to account the effect of the stress/strain gradients in metal failure, has been satisfactorily analysed by the authors to predict failure by necking under stretch-bending conditions. The current work develops, using and experimental and numerical analysis, two failure models for strain/stress gradient situations which combine both the use of path independent forming limit diagrams, particularly the forming limit stress diagram (FLSC) and the equivalent plastic strain based forming limit curve (epFLC), along with the concepts of critical distance to account for the effect of bending in the onset of necking. Both developed models are used to predict numerically the failure in a series of stretch-bending tests over H240LA steel sheets. Their predictive capabilities are discussed and compared in the light of the experimental results.
机译:常规的钣金成形过程通常涉及拉伸和弯曲的同时作用,在整个板材厚度和复杂的应变路径上引起应变/应力梯度,这通过颈缩来决定性地影响破坏机理的发生和发展。因此,对可成形性的准确评估需要使用独立于应变路径的工具,这些工具应考虑到对薄板破坏的弯曲影响。作者已经令人满意地分析了临界距离理论(TCD),该理论广泛用于疲劳和断裂力学中,以分析应力/应变梯度在金属失效中的作用,从而可以通过拉伸弯曲条件下的颈缩来预测失效。当前的工作是利用应变和应力梯度情况开发,使用以及进行实验和数值分析,结合了与路径无关的成形极限图,特别是成形极限应力图(FLSC)和基于等效塑性应变的成形极限的两种失效模型。曲线(epFLC)以及临界距离的概念,以说明缩颈开始时弯曲的影响。两种开发的模型均用于在H240LA钢板上进行的一系列拉伸弯曲试验中,通过数值预测失效。根据实验结果讨论并比较了它们的预测能力。

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