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A geometry-dependent model for void closure in hot metal forming

机译:铁水成形中空洞封闭的几何相关模型

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During production of large metal workpieces, an internal presence of voids is usually observed. Such internal defects are generally closed up using hot metal forming processes, such as hot forging or hot rolling. Prediction models for void closure, associated with process simulation, are extremely powerful tools and might significantly support process design. However, there is at present a lack of accurate models being able to predict void closure according to industrial conditions, particularly in terms of void geometries. In this paper, an original model for void closure is presented, accounting for the void's geometry and orientation, as well as the mechanical state during deformation. The model is build and calibrated based on a wide campaign of finite element simulations at the scale of a representative volume element. Various void geometries are defined and several mechanical states are prescribed on a range that is representative of industrial loadings. The model's accuracy is verified using industrial data and was compared to several models from literature. Great advantages are obtained for non-spherical voids in terms of void volume evolution. (C) 2015 Elsevier B.V. All rights reserved.
机译:在生产大型金属工件期间,通常会观察到内部存在空隙。通常使用诸如热锻或热轧之类的热金属成形工艺来封闭这种内部缺陷。与过程仿真相关的空隙闭合的预测模型是非常强大的工具,可能会大大支持过程设计。但是,目前缺乏能够根据工业条件,特别是在空隙几何形状方面预测空隙封闭的精确模型。在本文中,提出了一种原始的空隙封闭模型,该模型考虑了空隙的几何形状和方向以及变形过程中的机械状态。基于具有代表性的体积元素的范围内的有限元模拟的广泛活动,对模型进行构建和校准。定义了各种空隙几何形状,并在代表工业负载的范围内规定了几种机械状态。使用工业数据验证了该模型的准确性,并与文献中的几种模型进行了比较。就空隙体积的发展而言,非球形空隙具有很大的优势。 (C)2015 Elsevier B.V.保留所有权利。

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