交错轴摩擦轮传动机理及应用  被引量:4

Mechanism and Application of the Crossed Friction Wheel Drive

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作  者:姜松[1] 陈琦莹 王婧 姜奕奕 冯侃[2] 陈章耀[2] Jiang Song;Chen Qiying;Wang Jing;Jiang Yiyi;Feng Kan;Chen Zhangyao(School of Food and Biological Engineering,Jiangsu University,Zhenjiang 212013,Jiangsu;Faculty of Civil Engineering and Mechanics,Jiangsu University,Zhenjiang 212013,Jiangsu)

机构地区:[1]江苏大学食品与生物工程学院,江苏镇江212013 [2]江苏大学土木工程与力学学院,江苏镇江212013

出  处:《中国食品学报》2020年第6期65-72,共8页Journal of Chinese Institute Of Food Science and Technology

基  金:国家自然科学基金项目(51575243);江苏高校优势学科建设工程资助项目。

摘  要:为了阐明交错轴摩擦轮机构传动机理,运用力学运动理论,分析了交错轴摩擦轮机构从动摩擦轮与主动摩擦轮之间的运动关系和力作用关系,构建了交错轴摩擦轮机构的传动理论,建立了交错轴摩擦轮传动机构两种基本形式的从动摩擦轮沿其自身支撑轴轴线和沿主动摩擦轮支撑轴线轴向运动参数的设计计算方法,提出了从动摩擦轮轴向运动方向的判定方法,并利用ADAMS对两种基本形式交错轴摩擦轮传动关系模型进行仿真分析。在此基础上,利用交错轴摩擦轮传动原理,分析在工程上应用的10个经典案例与两种基本形式交错轴摩擦轮传动机构的对应关系,以及传动的特点。研究表明,交错轴摩擦轮传动运动参数的理论设计计算方法是准确的,为交错轴摩擦轮传动实际应用提供了理论基础。To clarify the mechanism of the crossed friction wheel drive,the motion and the force relationship between the driven friction wheel and the active friction wheel are constructed by using the mechanics theory.The two basic forms of theoretical calculation method about the axial displacement are established.The basic form is a driven friction wheel along its own support axis direction,and the other is along the support axis direction of the active friction wheel.The judgment method of the movement direction is established completely.The two basic forms of crossed friction wheel drive model are simulated by ADAMS.On this basis,using the principle of the crossed friction wheel drive,the corresponding relationship between the ten classic cases applied in engineering and the two basic forms of the crossed friction wheel transmission mechanism is analyzed,and the characteristics of the institution is summarized.The research shows that the theoretical design calculation method is accurate.It provides a theoretical basis for the application design and analysis of the crossed friction wheel drive.

关 键 词:交错轴摩擦轮传动 机理 轴向运动位移 轴向运动速度 设计计算 仿真分析 卵形体农产品 

分 类 号:TH132.21[机械工程—机械制造及自动化]

 

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