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首页> 外文期刊>Journal of Mechanical Science and Technology >Modeling and grinding large sculptured surface by robotic digitization
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Modeling and grinding large sculptured surface by robotic digitization

机译:通过机器人数字化对大型雕刻表面进行建模和研磨

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摘要

An efficient approach to surface remodeling and grinding tool-path generation for a large sculptured surface via robotic digitization was developed, and a prototype system was implemented to replace the manual grinding process for large marine propellers. The current manual grinding process removes cusps on the NC machined area and peels the unmachined area; the research focuses on the grinding of the unmachined area of a large marine propeller. A robotic digitization and surface remodeling methodology was developed by the use of a thickness-map that reduces a three-dimensional problem to a two-dimensional problem. Also, the local and global grinding tool-paths are generated on the reconstructed surface based on the thickness-map, and the workpiece is machined by a six-axis articulated robot. The purpose of the research is to construct a prototype system for propeller grinding experiments and further development in Hyundai Heavy Industry, Korea.
机译:开发了一种通过机器人数字化技术对大型雕刻表面进行表面重塑和磨削刀具路径的有效方法,并开发了原型系统来代替大型船用螺旋桨的手动磨削过程。当前的手动磨削工艺去除了NC加工区域上的尖端,并剥去了未加工区域。该研究集中在大型船用螺旋桨未加工区域的磨削上。通过使用厚度图开发了一种机器人数字化和表面重塑方法,该厚度图将三维问题简化为二维问题。同样,基于厚度图在重建表面上生成局部和全局磨削刀具路径,并通过六轴多关节机器人对工件进行加工。该研究的目的是在韩国现代重工建设用于螺旋桨磨削实验和进一步开发的原型系统。

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