双啮合针齿凸轮分度机构的结构优化及有限元分析
[Abstract]:Double meshing needle cam indexing mechanism is a new type of intermittent mechanism. Its input shaft, needle tooth shaft and output shaft are three axis collinear. It has the advantages of simple and compact structure, large load, large indexing and stable transmission, etc. Therefore, its application prospect will be quite extensive. In this paper, based on the existing prototype, the meshing efficiency of the mechanism is theoretically analyzed, and then the volume of the internal structure and the average transmission efficiency of the mechanism are optimized by genetic algorithm. The fatigue simulation of the inner cycloid wheel and cam, the key parts of the prototype, and the dynamic analysis of the mechanism are also carried out. Firstly, according to the profile equation of the cam and the inner cycloid wheel, the relative sliding velocity between the needle tooth and the inner cycloid wheel and the cam is analyzed and solved by considering the influence of friction. Combined with the actual transmission of the mechanism, the overall transmission efficiency of the mechanism is calculated, the instantaneous meshing efficiency of the mechanism in a indexing period is obtained, and the main parameters affecting the average efficiency of the mechanism are analyzed. Secondly, taking the volume of the internal structure of the prototype and the average meshing efficiency of the mechanism as the optimization objectives, according to the geometric characteristics of the mechanism and the transmission principle, the Rz1,Rz2,e,Bng,Btg,Bzg is determined as the design variable. On the basis of meeting the requirements of strength and so on, the constraint conditions are established, and the multi-objective optimization model of the mechanism is established. The genetic algorithm is used to solve the model. Thirdly, according to the fatigue properties of the material, the fatigue life of the inner cycloid wheel and cam of the mechanism is predicted by the finite element analysis method, and an improved scheme is given to solve the problem that the safety factor of the cam is small and the design life is not reached. Finally, the equivalent dynamic model is established, and the equivalent total equivalent torsional stiffness curve of the cam and the cycloid wheel in the mechanism is solved and analyzed, and the range of the instantaneous natural frequencies of the cam and the inner cycloid wheel is given. The modal analysis of the whole machine is carried out by using Workbench, and the vibration modes under each mode are studied, and the possibility of resonance between the inner cycloid wheel and the cam and the system vibration is predicted.
【学位授予单位】:天津科技大学
【学位级别】:硕士
【学位授予年份】:2017
【分类号】:TH112.2
【参考文献】
相关期刊论文 前10条
1 何在庚;;机械优化设计理论方法研究综述[J];工业设计;2016年04期
2 刘明涛;徐俊丰;李彦启;翟凤潇;薛永宁;;新型内平动分度凸轮机构啮合效率分析[J];天津科技大学学报;2015年06期
3 刘明涛;李根;李彦启;郭志全;;基于FEM的内平动分度凸轮机构中凸轮与针齿间接触分析[J];机械设计;2015年04期
4 西庆坤;卢万强;曹素兵;;基于遗传算法的摆线针轮行星减速器优化设计[J];机械传动;2014年09期
5 陈波;;机械优化设计理论方法研究综述[J];科技风;2014年09期
6 陈鹏飞;秦伟;徐波;;摆线针轮啮合传动的等效接触扭转刚度计算[J];机械科学与技术;2014年04期
7 汤传军;张键;李健;熊金胜;;基于Workbench变速器齿轮轴的疲劳分析[J];汽车实用技术;2014年02期
8 何卫东;陆岩;吴鑫辉;;基于等价模型的RV减速器扭转刚度计算[J];机械传动;2013年09期
9 吴私;王旭;周吉学;刘运腾;李卫红;张国福;唐守秋;;铝合金疲劳性能的研究进展[J];金属世界;2013年04期
10 宋志强;;机械优化设计方法综述[J];呼伦贝尔学院学报;2012年05期
相关硕士学位论文 前10条
1 冯玉宾;RV减速器模态分析[D];北方工业大学;2016年
2 王文军;RV减速器动力学固有特性研究[D];湘潭大学;2015年
3 杨佳;重型车主减速器齿轮强度与疲劳寿命分析[D];青岛科技大学;2015年
4 徐俊丰;内平动分度凸轮机构的多目标优化与参数化设计[D];天津科技大学;2015年
5 沈彩瑜;铁道车辆转向架构架疲劳强度研究[D];西南交通大学;2014年
6 李连亮;新型双啮合针齿凸轮分度机构研究[D];天津科技大学;2013年
7 李根;基于FEM内平动分度凸轮机构的动静态特性分析[D];天津科技大学;2014年
8 钟飞;挖掘机破碎作业工作装置动态特性及疲劳分析[D];太原科技大学;2013年
9 杨龙宝;基于ANSYS Workbench的汽车盘式制动器性能分析[D];广西大学;2013年
10 陈港;内平动分度凸轮机构动力学与实验研究[D];天津科技大学;2013年
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