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机构地区:[1]中国工程物理研究院材料研究所,四川绵阳621700 [2]哈尔滨工业大学机电工程学院,黑龙江哈尔滨150001 [3]海军装备部重庆军代局,重庆400062
出 处:《工程设计学报》2016年第4期364-370,共7页Chinese Journal of Engineering Design
基 金:中国工程物理研究院材料研究所重点基金资助项目(SJZ201501)
摘 要:汇流环安装于具有相对转动的内、外环道之间,受到内、外环道的预紧压缩,形成与环道之间的微小面积接触,并通过接触面实现电传输.为了明确薄壁圆柱形滚动汇流环的装配力学特征及其压缩状态,基于汇流环装配后产生的变形状态,运用弯曲力学理论建立汇流环装配压缩后的弯曲变形模型,结合赫兹接触理论以及电接触理论得出汇流环压缩变形、接触电阻以及结构尺寸三者之间的关系.根据装配约束条件,得出汇流环预紧压缩量的预设范围.通过设计实例的计算分析与ABAQUS有限元验证,其结果表明有限元仿真结果与理论模型的计算结果相差微小.汇流环装配压缩的力学模型及其预设范围具有良好的合理性与正确性,能够为滚动汇流环的优化设计提供重要参考.The collector ring under compression is installed between a exterior orbit and a interiorone that produces contact zone between ring and orbits and obtains electro-transport. Aiming todefine character of rolling collector ring mechanics and its compression state,based on the distortionof ring after assembling,a bending deformation model of ring under compression was establishedwith bending principle. Hertz contact theory and electrical contact theory were used to obtainthe relationship among contact deformation, contact resistance and design size of the ring. A ccordingto the constraint conditions of assembling, the rational preinstalling and discriminantrange of compression of collector ring were determined. By means of calculation and validation ofdesign living example and simulation of software ABAQUS,the result of mechanics after simulationalmost kept the same with calculation of theory model. The research provides reference forthe development and optimum design of rolling collector ring.
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