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3D FE modelling of the cutting of Inconel 718

机译:Inconel 718切割的3D FE建模

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Following a literature review, the paper outlines the development of a 3D finite element model for the turning of Inconel 718 using ABAQUS/Explicit as a precursor to ball end milling simulation. The model employed a Lagrangian formulation. The workpiece material property data were determined from experimental work on a Gleeble thermo-mechanical simulator using uniaxial compression testing, with temperatures and strain rates of up to 850 deg C and 100s~(-1), respectively. Predicted and measured forces were within 6 percent for the tangential component, while feed forces were within 29 percent. The actual chip morphology determined from quick-stop experiments was segmented, whereas the predicted profile was continuous, irrespective of the cutting speed. It is likely that the discrepancies were a result of over-simplification of the friction model together with inadequacies in the algorithms describing the material behaviour. A user sub-routine which contains a 'damage criterion' to initiate crack propagation has been highlighted as a requirement to simulate chip segmentation. Details of preliminary work on the 3D ball nose end milling of Inconel 718 are also presented, which underline the difficulties inherent in this approach, together with geometry and mesh considerations.
机译:经过文献综述后,本文概述了使用ABAQUS / Explicit作为球头铣削仿真的前驱车来进行Inconel 718车削的3D有限元模型的开发。该模型采用拉格朗日公式。工件材料特性数据是通过在Gleeble热机械模拟器上使用单轴压缩测试的实验工作确定的,温度和应变率分别高达850℃和100s〜(-1)。切向分量的预测和测量力在6%以内,而进给力在29%以内。从快速停止实验确定的实际切屑形态被分割,而预测的轮廓是连续的,与切削速度无关。差异可能是由于摩擦模型的过度简化以及描述材料行为的算法中的不足所致。包含“破坏准则”以启动裂纹扩展的用户子例程已被强调为模拟切屑分段的要求。还介绍了Inconel 718的3D球头立铣刀的初步工作的详细信息,这些凸显了该方法固有的困难以及几何形状和网格的考虑。

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