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Simulation analysis of cutting process for Inconel718 nickel-based superalloy

机译:Inconel718镍高超合金切割过程的仿真分析

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摘要

As a difficult-to-machine material, Inconel718 nickel-based superalloy is widely used in aerospace, ocean navigation, and large-scale manufacturing of machines. In this paper, based on ABAQUS software, the continuous milling process of Inconel718 is simulated and analyzed, and related issues are discussed, including model establishment, material parameters, and meshing techniques during milling. The simulation results revealed that the heat generated during the milling process increases continuously with the increase in rotational speed. A majority of the generated heat is transferred to the chips and the workpiece, and a minor part is transferred to the tool. During the milling process, the temperature distribution on the cutting tool changes in a gradient, and the temperature of the tool is lower than that of the workpiece. Furthermore, it is observed that the cutting parameters that have the strongest influence on the cutting force and cutting temperature are feed per tooth and spindle speed, respectively. Therefore, in actual processing, speed and feed per tooth can be controlled to get better processing efficiency. Compared to the previous studies, it is concluded that three-dimensional simulation analysis of difficult-to-machine materials can reduce unnecessary wastage of resources and can provide better guidance for actual production and efficient milling.
机译:Inconel718镍基高温合金是一种难加工材料,广泛应用于航空航天、航海和大型机械制造。本文基于ABAQUS软件,对Inconel718合金的连续铣削过程进行了仿真分析,讨论了铣削过程中的模型建立、材料参数和网格划分等相关问题。模拟结果表明,铣削过程中产生的热量随着转速的增加而不断增加。产生的大部分热量被转移到切屑和工件上,一小部分被转移到刀具上。在铣削过程中,刀具上的温度分布呈梯度变化,刀具温度低于工件温度。此外,还观察到,对切削力和切削温度影响最大的切削参数分别是每齿进给量和主轴转速。因此,在实际加工中,可以控制速度和每齿进给量,以获得更好的加工效率。与以往的研究相比,难加工材料的三维仿真分析可以减少不必要的资源浪费,为实际生产和高效铣削提供更好的指导。

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