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Determining the Optimal Parameters of Chip Shrinkage Coefficient and Cutting Force in High-Speed Machining for Aluminum Alloy A6061

机译:铝合金A6061高速加工中芯片收缩系数和切割力的最佳参数

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Nowadays, increasing the productivity and the quality of machining become major challenges of the metal cutting process. Due to the complexity of the chip formation process, in particular, at high cutting speeds, finite element model (FEM) has been frequently used as an alternative solution. Chip shrinkage coefficient and cutting force are the two basic parameters of the cutting process, which determines the productivity and quality of the workpiece. This study uses a Grey correlation relationship to analyze and select the common set of parameters for cutting force and chip shrinkage coefficient of the chip. Simulation of the A6061 aluminum alloy high-speed milling is done by Bao-Wierzbicki's (B-W) model. The optimal parameters are determined cutting depth 1 mm, clearance angle 6° and rake angle 10°. This parameter set adjusts the cut parameters so that the cutting process achieves the highest machining efficiency.
机译:如今,提高生产力和加工的质量成为金属切削过程的主要挑战。由于芯片形成过程的复杂性,特别是在高切削速度下,有限元模型(FEM)经常用作替代解决方案。芯片收缩系数和切割力是切割过程的两个基本参数,这决定了工件的生产率和质量。本研究使用灰色相关关系来分析和选择芯片的切割力和芯片收缩系数的常见参数集。 A6061铝合金高速铣削的仿真由Bao-Wierzbicki(B-W)模型完成。最佳参数是确定的切割深度1mm,间隙角6°和耙角10°。该参数集调节截止参数,使切割过程实现最高的加工效率。

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