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首页> 外文期刊>Journal of Materials Processing Technology >Simulation and experimental investigations of complex thermal deformation behavior of wire electrical discharge machining of the thin-walled component of Inconel 718
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Simulation and experimental investigations of complex thermal deformation behavior of wire electrical discharge machining of the thin-walled component of Inconel 718

机译:Inconel 718薄壁组分电线电气放电加工复杂热变形行为的仿真及实验研究

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摘要

The geometric error is very important to the component performance in wire electric discharge machining (WEDM) process, yet few studies have focused on the geometric error caused by thermal deformation. This work mainly describes the complex thermal deformation phenomenon and its corresponding cause during the WEDM processing the thin-walled component of Inconel 718. Firstly, the thermo-physical model is developed to explore the thermal deformation by calculating the temperature distribution of workpiece and surface residual stress. Then a number of experiments are conducted to investigate the effect of pulse-on time, pulse current, water pressure, and wire speed on the thermal deformation of thin-walled samples. By the comparison of experimental and simulation results, it was confirmed the reliability and accuracy of thereto-physical model while experimental results revealed that the effects of process parameters of WEDM on the surface integrity as well as thermal deformation scale. Furthermore, we presented their variations of residual stress and surface characteristics including surface topography, micro-hardness, surface elemental composition, and recast layer thickness under different thermal deformation conditions. It can be concluded that the variations of residual stress and surface integrity are almost consistent with that of the thermal deformation.
机译:几何误差对电线电气放电加工(WEDM)过程中的元件性能非常重要,但很少有研究集中在热变形引起的几何误差上。这项工作主要描述了复杂的热变形现象及其相应的原因在WEDM处理Inconel 718的薄壁分量期间。首先,开发了通过计算工件温度分布和表面残留的温度分布来探索热变形压力。然后进行许多实验以研究脉冲对时间,脉冲电流,水压和电线速度对薄壁样品的热变形的影响。通过对实验和仿真结果的比较,证实了其对物理模型的可靠性和准确性,而实验结果表明,WEDM过程参数对表面完整性的影响以及热变形尺度。此外,我们介绍了在不同热变形条件下的表面形貌,微硬度,表面元素组合物和重塑层厚度的残余应力和表面特性的变化。可以得出结论,残余应力和表面完整性的变化几乎与热变形的变化一致。

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