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Investigation of a plain ball burnishing process on differently machined Aluminium EN AW 2007 surfaces

机译:对在不同加工的铝EN AW 2007表面上进行的普通球打磨工艺的研究

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摘要

Burnishing is an effective chipless finishing process for improving workpiece properties: hardness, vibration resistance and surface quality. The application of this technology is limited to rotationally symmetrical structures of deformable metals. Because of the multiaxial characteristics, the transfer of this force controlled technology on to prismatic shapes requires a comprehensive process development. The main purpose of this paper is the characterization of a plain burnishing process on aluminium EN AW 2007 with a linear moved, spherical diamond tool. The method of design of experiments was used to investigate the influence of different machined surfaces in conjunction with process parameters: burnishing force, burnishing direction, path distance and burnishing speed. FEM simulation was utilized for strain and stress analysis. The experiments show, that unlike the process parameters the initial surface roughness as 3rd order shape deviation does not have a significant influence on the finished surface. Furthermore a completely new surface is created by the process, with properties independent from the initial surface roughness.
机译:抛光是一种有效的无屑精加工工艺,可改善工件性能:硬度,抗振性和表面质量。该技术的应用仅限于可变形金属的旋转对称结构。由于具有多轴特性,因此将这种力控制技术转移到棱柱形上需要全面的工艺开发。本文的主要目的是使用线性移动球形金刚石工具对铝EN AW 2007上的普通抛光过程进行表征。实验设计方法被用来结合加工参数:抛光力,抛光方向,路径距离和抛光速度来研究不同加工表面的影响。有限元模拟用于应变和应力分析。实验表明,与工艺参数不同,初始表面粗糙度(三阶形状偏差)对精加工表面没有显着影响。此外,通过该工艺可以创建一个全新的表面,其特性与初始表面粗糙度无关。

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