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四连杆悬架衬套刚度系数匹配优化设计 被引量:2
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作者 廖抒华 唐兴 +3 位作者 陈坤 杨帆 赵亮 韦建平 《广西科技大学学报》 CAS 2014年第1期50-53,58,共5页
基于adams/car和adams/insight软件,提出对悬架衬套刚度系数匹配优化设计的方法和流程,通过调节悬架衬套刚度使悬架的弹性运动学特性满足特定要求.以某轿车四连杆后悬架为例,通过优化前、后悬架弹性运动学的对比分析可知,采用优化后的... 基于adams/car和adams/insight软件,提出对悬架衬套刚度系数匹配优化设计的方法和流程,通过调节悬架衬套刚度使悬架的弹性运动学特性满足特定要求.以某轿车四连杆后悬架为例,通过优化前、后悬架弹性运动学的对比分析可知,采用优化后的衬套刚度系数匹配对悬架的弹性运动学特性得到改善,验证了本文衬套刚度系数匹配研究的有效性. 展开更多
关键词 优化设计 橡胶衬套刚度 悬架 灵敏度分析
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Analysis of radial stiffness of rubber bush used in dynamic vibration absorber 被引量:1
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作者 Li Lie Sun Beibei Hua Haitao 《Journal of Southeast University(English Edition)》 EI CAS 2019年第3期281-287,共7页
In order to study the influence of the structural parameters of the rubber bush on its radial stiffness, the constitutive relation of rubber materiel is used to obtain the calculation formula of the dimensionless radi... In order to study the influence of the structural parameters of the rubber bush on its radial stiffness, the constitutive relation of rubber materiel is used to obtain the calculation formula of the dimensionless radial stiffness coefficient. The obtained theoretical result is consistent with previous research results in both long rubber bushes and short rubber bushes. The simulation case was conducted by the finite element method to verify the correctness of the theory. The axial compression experiment was conducted to obtain the parameters needed in the simulation. The result shows that the percentage difference between the theoretical result and the simulation one is only 2.75%. A series of simulations were conducted to compare with previous work, and the largest magnitude of the percentage difference is only about 5%. Finally, the radial stiffness experiment was conducted by using a dynamic vibration absorber, and the influence of the structural parameters of the rubber bush on its radial stiffness is obtained. The result shows that the radial stiffness of the rubber bush increases with the increase in the length and the inner radius, but decreases with the increase in the outer radius. 展开更多
关键词 radial stiffness rubber bush dynamic vibration absorber boring bar
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