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Finite element modeling and optimization to prevent wire breakage in electro-discharge machining

机译:有限元建模和优化,以防止在放电加工中发生断线

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One of the most important problems in wire electrical discharge machining is related to wire breakage. This research develops a simple finite element model and a new approach to predict the thermal distribution in the wire fairly accurately. The model can be used to optimize the different parameters of the system to prevent wire breakage. At any instant of time, the spatial heat distribution profile of the wire can be mapped on the transient analysis of any point on the wire traversing through all the heat zones from the top spool to the bottom end. Based on this principle, the finite element model and optimization algorithm are used to determine that the heat generated is the critical variable responsible for wire breakage. The model successfully predicts the thermal distribution profile accurately for various wire materials, for increased wire velocity and for reduction in heat transfer coefficient. This simple model is a precursor of development for 3-D finite element models that can describe the cross-sectional wire erosion as the workpiece cutting progresses. The modeling may lead to the development of a smart electro-discharge machining system with a sensor and feedback control to increase the cutting speed and minimize breakage. (C) 2003 Elsevier Ltd. All rights reserved.
机译:电线放电加工中最重要的问题之一是与电线断裂有关。这项研究开发了一个简单的有限元模型和一种新的方法来相当准确地预测导线中的热分布。该模型可用于优化系统的不同参数,以防止断线。在任何时候,可以对从顶部线轴到底部穿过所有加热区的导线上任何一点的瞬态分析进行映射,从而绘制导线的空间热分布曲线。基于此原理,使用有限元模型和优化算法确定产生的热量是造成断线的关键变量。该模型成功地准确预测了各种线材的热分布曲线,从而提高了线速度,并降低了传热系数。这个简单的模型是3-D有限元模型开发的先驱,该模型可以描述随着工件切割进度而发生的横截面线腐蚀。建模可能会导致开发具有传感器和反馈控制的智能放电加工系统,以提高切割速度并使破损最小化。 (C)2003 Elsevier Ltd.保留所有权利。

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