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A void evolution model accounting for stress triaxiality, Lode parameter and effective strain for hot metal forming

机译:一种压力三轴性,洛泽参数和热金属成形有效应变的空隙演进模型算法

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摘要

Large numbers of voids inevitably exist in the metal ingot due to non-equilibrium solidification. Forging is an important technique to eliminate such internal defects and obtain sound products. However, the research regarding void evolution mechanisms are currently not sufficient to direct the technological design in practical engineering because of the lack of suitable void evolution model, especially in terms of complex stress states. On the basis of a large number of numerical computations, the effect of Lode parameter on the void volume evolution rate is firstly investigated, and then incorporated together with the stress triaxiality T, effective strain E-c and Norton exponent n into a newly proposed void evolution model. At the scale of representative volume element (RVE), the prediction of void evolution calculated from the new model has achieved better accuracy than other analytical models comparing with the simulation results. Radial forging test for rectangular cross-section billet is carried out to verify the accuracy of the proposed void evolution model. Paired screw threads are used to introduce pre-fabricated voids and then embedded into the billet for measuring void volume variation and the distribution of strain around void during forging. The comparison of void evolution between the experimental and analytical solutions also shows that the prediction of void relative volume change by the proposed model is more accurate than those by other models.
机译:由于非平衡凝固,金属锭不可避免地存在大量空隙。锻造是消除这种内部缺陷并获得声音产品的重要技术。然而,由于缺乏合适的空隙演化模型,目前不足以推导实际工程技术设计的研究,特别是在复杂的压力状态方面。在大量数值计算的基础上,首先研究了仪表参数对空隙体积演化速率的影响,然后将应力三轴性T,有效菌株EC和Norton指数N一起掺入新提出的空隙演进模型中。在代表性体积元素(RVE)的范围内,从新模型计算的空隙演化的预测已经实现了比与模拟结果相比的其他分析模型的准确性更好。进行矩形横截面坯料的径向锻造测试,以验证所提出的空隙演进模型的准确性。配对的螺纹用于引入预制造的空隙,然后嵌入坯料中以测量空隙体积变化和在锻造期间空隙周围的应变分布。实验和分析解决方案之间的空隙演化的比较还表明,所提出的模型的空隙相对体积变化的预测比其他模型更准确。

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