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Stress-Based Predictions of Formability and Failure in Incremental Sheet Forming

机译:基于应力的成型性和失效的预测

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This research investigates the deformation mechanism in incremental sheet forming (ISF) with relation to necking and failure. A strain-based forming limit criterion is widely used in sheet-metal forming industry to predict necking. However, this criterion is strictly valid only when the strain path is linear throughout the deformation process. Where the strain path in ISF is often found to be severely nonlinear throughout the deformation history. Therefore, the practice of using a strain-based forming limit criterion often leads to erroneous assessments of formability and failure prediction. On the other hands, stress-based forming limit is insensitive against any changes in the strain path and hence it is used to model the necking and fracture limits. Simulation model is evaluated for a single point incremental forming using AA 6022-T4E32 and checked the accuracy against experiments.
机译:本研究研究了缩颈和故障的增量板形成(ISF)中的变形机制。基于应变的成形限制标准广泛用于金属板形成工业以预测缩颈。然而,只有当在整个变形过程中应变路径线性时,该标准才会严格有效。在整个变形历史中,通常发现在ISF中的应变路径通常是严重的非线性。因此,使用基于应变的成形限制标准的实践通常导致对可成形性和故障预测的错误评估。另一方面,基于应力的成形限制对应变路径的任何变化不敏感,因此它用于模拟颈缩和断裂限制。使用AA 6022-T4E32评估仿真模型的单点增量形成,并检查对实验的准确性。

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