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Investigation on the Variability of Existing Models for Simulation of Local Temperature Field during a Single Discharge for Electrical Discharge Machining (EDM)

机译:电气放电加工(EDM)中局部温度场模拟现有模型变异性的研究

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In electrical discharge machining (EDM) material removal and rim zone modifications are resulted by generated heat during numerous discharges. By estimating the temperature field applied on the workpiece as material loading, removal rate and induced modifications in the rim zone can be predicted. Different scientists tried to simulate the induced temperature field on the workpiece during a single or multiple discharges. However, due to the complex removal mechanism in EDM, these models are mostly incomplete and contain considerable uncertainties. In this study, the strengths and weaknesses of typical heat transfer models for a single discharge are discussed. For this propose a finite element model is constructed and influences of different modeling parameters on the obtained results have been analyzed. Moreover, potentials of reverse microstructure simulation as an assistant for modification of heat source models discussed.
机译:在放电加工(EDM)材料中,除去和RIM区修饰是通过在许多放电期间产生的热量产生的。通过估计在工件上施加的温度场作为材料负载,可以预测RIM区中的去除速率和诱导的修改。不同的科学家试图在单个或多次放电期间模拟工件上的诱导温度场。然而,由于EDM中的复杂去除机制,这些模型主要是不完整的并且包含相当大的不确定性。在该研究中,讨论了单个放电典型传热模型的强度和弱点。为此,提出了有限元模型,并分析了不同建模参数对所得结果的影响。此外,反向微结构模拟的电位作为讨论的热源模型改变的辅助仪。

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