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飞刀法加工蜗杆面齿轮的理论研究与实践 被引量:6
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作者 李清 徐伟俊 +2 位作者 张猛 杨海舰 刘云进 《中国机械工程》 EI CAS CSCD 北大核心 2019年第23期2835-2843,共9页
为快速获取蜗杆面齿轮的精确齿面,提出了一种加工面齿轮的新方法——飞刀加工法。建立了蜗杆面齿轮的理论模型,基于四轴数控镗床建立加工坐标系,分析了所提方法的加工机理,并将其分为两个阶段:仿形阶段和分度加工阶段;采用飞刀加工法进... 为快速获取蜗杆面齿轮的精确齿面,提出了一种加工面齿轮的新方法——飞刀加工法。建立了蜗杆面齿轮的理论模型,基于四轴数控镗床建立加工坐标系,分析了所提方法的加工机理,并将其分为两个阶段:仿形阶段和分度加工阶段;采用飞刀加工法进行刀具轨迹的求解,得到了该轨迹在面齿轮齿坯上的切触迹线,验证了所提方法的正确性;求解了上述两个阶段中刀具主轴转速、工件轴转速及刀具进给速度之间的关系,编制了加工程序,并在VERICUT中对蜗杆面齿轮进行了仿真加工,验证了所提方法的可行性;最后进行了加工实验验证。 展开更多
关键词 蜗杆面齿轮 飞刀加工法 刀具轨迹 仿真加工
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New method for calculating face gear tooth surface involving worm wheel installation errors 被引量:6
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作者 崔伟 唐进元 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第8期1767-1778,共12页
The machining principle and realization method for the continuous generative grinding face gear by a worm wheel are introduced. Based on a five-axis linked CNC grinding machine, a new method is presented to deprive th... The machining principle and realization method for the continuous generative grinding face gear by a worm wheel are introduced. Based on a five-axis linked CNC grinding machine, a new method is presented to deprive the equation of face gear error tooth surface by assuming the tool surface as the error surface, where actual tool installation position error is introduced into the equation of virtual shaper cutter. Surface equations and 3-D models for the face gear and the worm wheel involving four kinds of tool installation errors are established. When compared, the face gear tooth surface machined in VERICUT software for simulation based on this new method and the one obtained based on real process(grinding face gear by using a theoretical worm wheel with actual position errors) are found to be coincident, which proves the validity and feasibility of this new method. By using mesh planning for the rotating projection plane of the face gear work tooth surface, the deviation values of the tooth surface and the difference surface are acquired, and the influence of four kinds of errors on the face gear tooth surface is analyzed. Accordingly, this work provides a theoretical reference for assembly craft of worm wheel, improvement of face gear machining accuracy and modification of error tooth surface. 展开更多
关键词 face gear grinding worm wheel installation errors VERICUT error analysis
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Efficient and accurate worm grinding of spur face gears according to an advanced geometrical analysis and a closed-loop manufacturing process 被引量:1
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作者 ZHOU Yuan-sheng TANG Zhong-wei +2 位作者 SHI Xian-lin TANG Jin-yuan LI Zheng-min-qing 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第1期1-13,共13页
Worm grinding has been applied to manufacture gears to pursue high accuracy and fine surface finish.When the worm used to grind face gears is manufactured with multi-axis computer numerical control(CNC)machining,the m... Worm grinding has been applied to manufacture gears to pursue high accuracy and fine surface finish.When the worm used to grind face gears is manufactured with multi-axis computer numerical control(CNC)machining,the machining accuracy is usually improved by increasing the number of tool paths with more time cost.Differently,this work proposes a generated method to improve the efficiency by dressing the worm surface with only one path,and a closed-loop manufacturing process is applied to ensure the machining accuracy.According to an advanced geometric analysis,the worm surface is practically approximated as a swept surface generated by a planar curve.Meanwhile,this curve is applied as the profile of a dressing wheel,which is used to dress the worm surface.The practical machining is carried out in a CNC machine tool,which was originally used to grind helical gears.Finally,a closed-loop manufacturing process including machining,measurement,and modification is proposed to compensate the machining errors.The proposed method is validated with simulations and practical experiments. 展开更多
关键词 face gears worm grinding worm dressing geometrical analysis closed-loop manufacturing
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A precision generating hobbing method for face gear with assembly spherical hob 被引量:4
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作者 WANG Yan-zhong CHU Xiao-meng +3 位作者 ZHAO Wen-jun WANG Zhuo SU Guo-ying HUANG Yi-zhan 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第10期2704-2716,共13页
In order to improve the processing precision and shorten the hob manufacturing cycle of the face gear,a precision generating hobbing method for face gear with the assembly spherical hob is proposed.Firstly,the evoluti... In order to improve the processing precision and shorten the hob manufacturing cycle of the face gear,a precision generating hobbing method for face gear with the assembly spherical hob is proposed.Firstly,the evolution of the cylindrical gear to spherical hob basic worm is analyzed,then the spherical hob basic worm is designed,thus the basic worm and spiral angle equation of spherical hob are obtained.Secondly,based on the design method of the existing hob,the development method of the assembly spherical hob is analyzed,the cutter tooth and the cutter substrate of the assembly hob are designed,and the whole assembly is finished.Thirdly,based on the need of face gear hobbing,a numerical control machine for gear hobbing is developed,and the equation of the face gear is obtained.Fourth,for reducing the face gear processing errors induced by equivalent installation errors,the error analysis model is established and the impacts of each error on the gear tooth surface are analyzed.Finally,the assembly spherical hob is manufactured and the gear hobbing test is completed.According to the measurement results,the processing parameters of face gear hobbing are modified,and the deviation of tooth surface is significantly reduced. 展开更多
关键词 face gear spherical hob basic worm assembly spherical hob error analysis hobbing machine
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