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The definition of cutting forces in square shoulder milling by 3D

机译:3D方肩铣削中切削力的定义

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The paper presents the 3D square shoulder milling study of modeling, using Smooth Particles Hydrodynamics methodology that also illustrate specific challenges and solutions. The aim of the study – define the cutting forces and to compare them to analytical models. The milling is discontinuous cutting and by each turn the chips are formed depending on the milling tool width and number of teeth. Then the simplification of complex cutting tools to one-point tool is not so informative and understandable for the numerical analysis. The main advantage of presented SPH methodology – less artificial numerical criterions needed for numerical solution. Also, shorter calculation time comparing to FEM and ?natural“ chip removal process due to Kernel function. SPH metodology alloowed to use real 3D milling cutter and to perform the calculation according to feed rate, cutting speed and tool rotation. In order to provide the numerical simulation the simplified numerical tests were performed, according to the density of smooth particles and artificial bulk viscosity parameter. The model demonstrated satisfactory coincidence of computed results against the theoretically obtained data. Calculated tangential cutting force is in satisfactory correlation with theoretical Hulle hypothesis. Tne numerical instabilies seen in graphics of results coud be eliminated with SPH metodology, by using higher cutting speed (deformation rate).
机译:本文介绍了使用平滑粒子流体动力学方法进行的3D方肩铣削建模研究,该方法还说明了特定的挑战和解决方案。研究的目的–定义切削力并将其与分析模型进行比较。铣削是不连续切削,每次铣削都会根据铣削工具的宽度和齿数形成切屑。这样一来,将复杂的切削刀具简化为单点刀具对于数值分析而言就没有那么多信息和可理解性。提出的SPH方法的主要优点-数值求解所需的人工数值准则更少。此外,由于具有内核功能,与FEM和“自然”排屑过程相比,计算时间更短。 SPH的方法论允许使用真正的3D铣刀并根据进给速度,切削速度和刀具旋转进行计算。为了提供数值模拟,根据光滑颗粒的密度和人工体积粘度参数进行了简化的数值测试。该模型表明计算结果与理论上获得的数据具有令人满意的一致性。计算出的切向切削力与理论的Hulle假设具有令人满意的相关性。通过使用更高的切削速度(变形率),使用SPH方法可以消除结果图形中出现的数值不稳定现象。

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