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SPG Simulation of Free Orthogonal Cutting for Cutting Forces Prediction

机译:切削力预测的自由正交切割的SPG模拟

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Metal processing by cutting is a common process. The accuracy and quality of a machined part essentially depend on cutting forces and mechanics of the cutting process. Along with experimental measurements, there are many numerical techniques for cutting forces prediction. The purpose of this paper is evaluating of the Smoothed Particle Galerkin (SPG) method for modeling metal cutting and cutting forces prediction. SPG is a relatively new mesh-free method, and severe material deformations arising in the cutting process can be treated in such a way that mesh distortion is of minor effect. The SPG method leads to no element deletion, and material failure and chip formation are controlled by phenomenological failure criteria. A proposed SPG model was verified and showed a good similarity in modeling chip formation and more correct estimating the chip shape comparing with SPH as illustrated in some orthogonal cutting examples. The chip shape and cutting forces predicted values obtained with the help of this method were compared to SPH. The aim of the proposed approach is reducing high-cost experimental work or at least its amount.
机译:通过切割的金属加工是一个共同的过程。机加工部件的精度和质量基本上取决于切割工艺的切割力和力学。除了实验测量之外,还有许多用于切割力预测的数值技术。本文的目的是评估用于建模金属切割和切割力预测的平滑粒子Galerkin(SPG)方法。 SPG是一种相对较新的网格方法,并且在切割过程中产生的严重物质变形可以以啮齿物扭曲的方式处理较小的效果。 SPG方法导致无元素缺失,材料发生故障和芯片形成由现象学失败标准控制。验证了所提出的SPG模型,并在建模芯片地层中显示出良好的相似性,并且更正确地估计与SPH相比的芯片形状,如在一些正交的切割例中所示。将芯片的形状和切割力预测与该方法的帮助获得的值与SPH进行比较。提出方法的目的正在减少高成本的实验工作或至少其数量。

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