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Dynamic analysis of a flexible rotor supported by ball bearings with damping rings based on FEM and lumped mass theory 被引量:5
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作者 ZHU Hai-min CHEN Wei-fang +3 位作者 ZHU Ru-peng ZHANG Li GAO Jie LIAO Mei-jun 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第12期3684-3701,共18页
A dynamic model of a flexible rotor supported by ball bearings with rubber damping rings was proposed by combining the finite element and the mass-centralized method.In the proposed model,the rotor was built with the ... A dynamic model of a flexible rotor supported by ball bearings with rubber damping rings was proposed by combining the finite element and the mass-centralized method.In the proposed model,the rotor was built with the Timoshenko beam element,while the supports and bearing outer rings were modelled by the mass-centralized method.Meanwhile,the influences of the rotor’s gravity,unbalanced force and nonlinear bearing force were considered.The governing equations were solved by precise integration and the Runge-Kutta hybrid numerical algorithm.To verify the correctness of the modelling method,theoretical and experimental analysis is carried out by a rotor-bearing test platform,where the error rate between the theoretical and experimental studies is less than 10%.Besides that,the influence of the rubber damping ring on the dynamic properties of the rotor-bearing coupling system is also analyzed.The conclusions obtained are in agreement with the real-world deployment.On this basis,the bifurcation and chaos behaviors of the coupling system were carried out with rotational speed and rubber damping ring’s stiffness.The results reveal that as rotational speed increases,the system enters into chaos by routes of crisis,quasi-periodic and intermittent bifurcation.However,the paths of crisis,quasi-periodic bifurcation,and Hopf bifurcation to chaos were detected under the parameter of rubber damping ring’s stiffness.Additionally,the bearing gap affects the rotor system’s dynamic characteristics.Moreover,the excessive bearing gap will make the system’s periodic motion change into chaos,and the rubber damping ring’s stiffness has a substantial impact on the system motion. 展开更多
关键词 finite element method Timoshenko beam rubber damping ring BIFURCATION CHAOS
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新型橡胶柔性齿轮的制备及其结构和性能分析
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作者 童任远 杨苑苒 +3 位作者 田嘉俊 龚俊杰 韦源源 黄浩 《橡胶工业》 CAS 2023年第11期881-886,共6页
制备一种新型橡胶柔性齿轮并通过有限元技术对其丁腈橡胶(HNBR)阻尼环结构进行设计,确定HNBR阻尼环外径为52 mm时其内径为46 mm最佳。对新型橡胶柔性齿轮进行模态有限元分析,得到新型橡胶柔性齿轮的模态特性,证明新型橡胶柔性齿轮能够... 制备一种新型橡胶柔性齿轮并通过有限元技术对其丁腈橡胶(HNBR)阻尼环结构进行设计,确定HNBR阻尼环外径为52 mm时其内径为46 mm最佳。对新型橡胶柔性齿轮进行模态有限元分析,得到新型橡胶柔性齿轮的模态特性,证明新型橡胶柔性齿轮能够更好地避免共振现象。通过模态试验,研究不同温度下新型橡胶柔性齿轮的固有频率变化,得出新型橡胶柔性齿轮的1阶固有频率随着温度的升高而减小的结论。本工作为新型柔性齿轮动力学性能的研究奠定了基础。 展开更多
关键词 橡胶柔性齿轮 丁腈橡胶阻尼 静力学分析 模态分析 有限元分析
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金属橡胶阻尼环的剪切力学特性及密度相关性 被引量:2
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作者 任子林 赵旭 +1 位作者 薛新(指导) 白鸿柏 《机械工程材料》 CAS CSCD 北大核心 2021年第11期55-61,共7页
基于金属橡胶阻尼环的制备工艺流程、剪切试验工装设计以及阻尼耗能表征方法,通过建立金属橡胶阻尼环简化三维数值模型,采用LS-DYNA软件分析了金属橡胶阻尼环在切向和轴向剪切位移下的曲梁运动特性,研究了金属橡胶阻尼环的剪切力学特性... 基于金属橡胶阻尼环的制备工艺流程、剪切试验工装设计以及阻尼耗能表征方法,通过建立金属橡胶阻尼环简化三维数值模型,采用LS-DYNA软件分析了金属橡胶阻尼环在切向和轴向剪切位移下的曲梁运动特性,研究了金属橡胶阻尼环的剪切力学特性及其密度相关性。结果表明:金属橡胶阻尼环的金属丝曲梁之间的滑移方式多为平行滑移;随着密度的增大,金属橡胶阻尼环的切向和轴向剪切能量耗散系数均先增大后减小,等效刚度均增大。 展开更多
关键词 金属橡胶阻尼 切向和轴向剪切 等效刚度 能量耗散系数
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金属橡胶阻尼环动刚度试验
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作者 梁树 《科技传播》 2012年第24期121-121,113,共2页
金属橡胶阻尼环动刚度试验目的是探索金属橡胶的动力系数随激振频率变化的规律,本实验中金属橡胶阻尼环固定在直径为66mm的芯轴上,通过对外环施加恒幅定频激振,试验结果表明金属橡胶阻尼环的动刚度随频率上升而递减,并随着金属橡胶相对... 金属橡胶阻尼环动刚度试验目的是探索金属橡胶的动力系数随激振频率变化的规律,本实验中金属橡胶阻尼环固定在直径为66mm的芯轴上,通过对外环施加恒幅定频激振,试验结果表明金属橡胶阻尼环的动刚度随频率上升而递减,并随着金属橡胶相对密度的增大而增大;而等效粘性阻尼系数随频率上升呈反比例函数递减;并随金属橡胶相对密度的减小而减小。 展开更多
关键词 金属橡胶阻尼 动刚度 试验研究
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