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Ludwik's model parameter identification for v-bending simulations with Ti64 and MS1200

机译:Ludwik的模型参数识别V型弯曲模拟与TI64和MS1200

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Flow curves coming from tensile tests together with constant young modulus are widely used by industry when modelling sheet metal bending processes. Unfortunately this modelling strategy based on previous mentioned variables is not accurate enough and leads to big errors due to the springback of the material. This drawback is even more important when high strength steels are bended. Aiming to reduce the springback errors, Ludwik's hardening material models under vbending deformation have been obtained for a Ti6Al4V alloy and for a MS1200 martensitic ultra high strength steel and their accuracy has been compared to the classical models obtained from tensile tests. First of all, classical Ludwik's hardening models are obtained from tensile tests. Then, using a v-bending test and inverse simulation, Ludwik hardening model parameters for bending are calculated using a von Mises yielding criteria. As a result, a model able to represent the bending behaviour of these two materials more accurately without complex code modifications is achieved.
机译:当涂布金属板弯曲过程时,工业广泛使用来自拉伸试验的流量曲线与恒定的幼年模量广泛使用。遗憾的是,基于先前提到的变量的这种建模策略不够准确,并且由于材料的回弹而导致大错误。当弯曲高强度钢时,该缺点更为重要。旨在减少回弹误差,Ludwik的硬化材料模型已经获得了Vb,Ti6Al4V合金,并且对于MS1200马氏体超高强度钢,并且它们的精度与从拉伸试验中获得的经典模型进行了比较。首先,古典Ludwik的硬化模型是从拉伸试验中获得的。然后,使用V弯曲试验和逆模拟,使用von Mises产生标准来计算用于弯曲的Ludwik硬化模型参数。结果,实现了一种能够更准确地表示这两种材料的弯曲行为而没有复杂的代码修改的模型。

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