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High-tilt parallel positioning mechanism development and cutter path simulation for laser micro-machining

机译:激光微加工的高倾斜平行定位机构开发及刀具轨迹模拟

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摘要

We have designed a micro parallel positioning platform with two translational motions and a rotational motion that can tilt through large angles. Combined with a laser source mounted on its own slide, the platform can be used to produce fully three-dimensional micro-scale components. We investigate the kinematics, workspace, Jacobian matrix, and singularities of this parallel mechanism, and analyze the geometry of the laser machining of a polymer. Based on these results, we have developed algorithms to generate cutter paths for roughing, finishing, and slot-cutting, which we have verified using Vericut (ProEngineer) and kinematic simulator developed by authors for the platform, written in OpenGL.
机译:我们设计了一个微型平行定位平台,该平台具有两个平移运动和一个可以倾斜大角度的旋转运动。结合安装在其自己的幻灯片上的激光源,该平台可用于生产完全三维的微型组件。我们研究了这种并联机构的运动学,工作空间,雅可比矩阵和奇异性,并分析了聚合物激光加工的几何形状。基于这些结果,我们开发了用于生成粗加工,精加工和切槽的刀具路径的算法,并已使用OpenGL作者编写的Vericut(ProEngineer)和运动仿真器对平台进行了验证,并对此进行了验证。

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