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Taper Angle Correction in Cutting of Complex Micro-mechanical Contours with Ultra-Short Pulse Laser 被引量:3
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作者 J. Auerswald A. Ruckli +3 位作者 T. Gschwilm P. Weber D. Diego-Vallejo H. Schliiter 《Journal of Mechanics Engineering and Automation》 2016年第7期334-338,共5页
The objective of this work was to investigate the possibility of taper angle correction in cutting of complex micro-mechanical contours using a TruMicro ultra-short pulse laser in combination with the SCANLAB precSYS ... The objective of this work was to investigate the possibility of taper angle correction in cutting of complex micro-mechanical contours using a TruMicro ultra-short pulse laser in combination with the SCANLAB precSYS micro machining sub system. In a first step, the influence of the process parameters on the kerftaper angle of metallic alloys was systematically investigated without beam inclination. A set of base parameters was derived for the subsequent investigations. In a second step, the kerftaper angle was controlled by static beam inclination. In a third step, the same optics was used in its dynamic precession mode to fabricate micro-mechanical components of complex contours with perpendicular 0~ taper angles. It was found that taper angle adjustments of up to 7.5~ are possible with the used setup for cutting applications. Taper angle control is possible both in the static beam inclination mode and in the dynamic precession mode. The static mode could be interesting for contours with sharp inner radii and for achieving faster cutting times similar to results with fixed optics, but would require excellent synchronization of beam inclination and axis motion. The dynamic precession mode would allow an easier integration of the optics into a laser machine but will result in longer cutting times and limitations with respect to achievable inner radii. 展开更多
关键词 Ultra-short pulse laser cutting kerf taper angle zero taper 5-axis micro machining.
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基于PowerMill 5轴策略的汽车储物箱动模板加工工艺探讨
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作者 古瑞兴 《模具制造》 2019年第9期77-81,共5页
分析了注射模动模板的结构特征,从模架材料的切削性能入手,采用通用夹具,进行二次装夹。选用5轴加工中心,利用PowerMill软件强大的编程功能,综合运用3+2轴加工及5轴加工,高效编制了动模板的加工程序,并对编制的程序进行校验。经量产校验... 分析了注射模动模板的结构特征,从模架材料的切削性能入手,采用通用夹具,进行二次装夹。选用5轴加工中心,利用PowerMill软件强大的编程功能,综合运用3+2轴加工及5轴加工,高效编制了动模板的加工程序,并对编制的程序进行校验。经量产校验,动模板的加工工艺合理。 展开更多
关键词 装夹 定轴加工 5轴清角 曲面
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