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双主轴加工单元取代专用机床
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作者 HektorSteinhiber 沈捷 谭汝谋 《制造技术与机床》 CSCD 北大核心 2001年第4期50-52,共3页
加工中心日益取代组合机床和专用机床。其原因是:由于托盘交换和刀具交换而始终存在的影响生产率和有碰撞危险的缺点可以用新结构的机床加以避免。首次在2000年的Metav展会上展示的柔性加工单元就是一个证明。
关键词 专用机床 加工中心 组合机床 主轴加工单元
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双主轴加工单元取代专用机床
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作者 Hektor Steinhiber 沈捷 《世界制造技术与装备市场》 2001年第2期E006-E009,共4页
加工中心日益取代组合机床和专用机床.其原因是:由于托盘交换和刀具交换而始终存在的影响生产率和有碰撞危险的缺点可以用新结构的机床加以避免.首次在2000年的Metav展会上展示的柔性加工单元就是一个证明.
关键词 加工中心 柔性加工单元 主轴加工单元 专用机床
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超高速加工机床技术新进展 被引量:2
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作者 郭力 李波 《机电国际市场》 2000年第8期24-27,共4页
超高速加工是指高于常规切削速度5倍乃至十几倍条件下所进行的切削加工。例如在实验室中,铝合金加工已达6000m/min;而在实际生产中也达到了1500~5500m/min。在实验室中,磨削中单层镀砂轮,磨削速度达300m/s,目前正探索500m/s速度的磨削... 超高速加工是指高于常规切削速度5倍乃至十几倍条件下所进行的切削加工。例如在实验室中,铝合金加工已达6000m/min;而在实际生产中也达到了1500~5500m/min。在实验室中,磨削中单层镀砂轮,磨削速度达300m/s,目前正探索500m/s速度的磨削;而实际生产中也达到了250m/s。 超高速加工不但可以大幅度提高零件的加工效率、缩短加工时间、降低加工成本;而且可以使零件的表面加工质量和加工精度达到更高的水平。 展开更多
关键词 超高速加工 高速机床 主轴加工单元 控制系统
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Development of a one-axis manipulator for laser-assisted machining 被引量:1
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作者 KIM Dong-hyeon LEE Choon-man 《Journal of Central South University》 SCIE EI CAS 2013年第2期378-384,共7页
Laser-assisted machining has been considered as a new alternative machining method of difficult-to-cut materials. A laser module with one-axis manipulator is developed to focus on preheating laser beam effectively. Fi... Laser-assisted machining has been considered as a new alternative machining method of difficult-to-cut materials. A laser module with one-axis manipulator is developed to focus on preheating laser beam effectively. First of all, the thermal characteristic analysis was performed to verify the importance of laser module location. Laser module should be moved within 1 mm. Analysis conditions of three positions in driving range of the one-axis manipulator are selected. And a C coupling is used as a connection device for spindle and laser module. An initial model has one C coupling, and the number of C coupling has been increased from 1 to 2 in an improved model. And the analysis is carried out again for the one-axis manipulator. The results of the static analysis, the maximum displacement and the maximum stress are decreased by 22% and 11%, respectively, for the improved model when the laser module is located at farthest away from the spindle unit. As a result of the modal analysis, the first natural frequency mode is increased by 13%, 18% and 12% at these positions of the improved model, respectively. The harmonic analysis of the improved model was performed by analyzing the results of the modal analysis. The maximum deformation was 0.33 mm in driving unit at 222 Hz. And the maximum compliance of the ISO axis direction was 0.23 mm/N. Finally, the one-axis manipulator has been fabricated successfully using the analysis result. 展开更多
关键词 finite element analysis (FEA) laser-assisted machining MANIPULATOR
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