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刚度分段线性系统隔振抗冲击优化设计研究
引用本文:唐斯密,赵存生,朱石坚,楼京俊.刚度分段线性系统隔振抗冲击优化设计研究[J].噪声与振动控制,2011,31(1):27-32.
作者姓名:唐斯密  赵存生  朱石坚  楼京俊
作者单位:( 海军工程大学 船舶与动力学院, 武汉 430033 )
摘    要:提出了可应用于非线性系统冲击计算的DDAM改进方法,建立了附加弹性限位器的动力系统隔振抗冲击等效线性模型,设计了隔振抗冲击的优化框图,利用有限元法及遗传算法优化设计得到了pareto最优解集,根据该最优解集可选择有利于工程应用的隔振抗冲击优化方案,由参数反演得到系统的优化设计参数。该设计思路可以在保持良好隔振效果的同时,提高舰艇设备的抗冲击性能,对舰艇隔振抗冲设计具有较好的参考价值。

关 键 词:隔振抗冲击    线性化DDAM    刚度分段线性    优化设计
收稿时间:2010-4-2
修稿时间:2010-6-4

Study On Optimal Design for Vibration and Shock Isolation of Piecewise Linear Stiffness System
TANG Si-mi,ZHAO Cun-sheng,ZHU Shi-jian,LOU Jing-jun.Study On Optimal Design for Vibration and Shock Isolation of Piecewise Linear Stiffness System[J].Noise and Vibration Control,2011,31(1):27-32.
Authors:TANG Si-mi  ZHAO Cun-sheng  ZHU Shi-jian  LOU Jing-jun
Affiliation:( Naval University of Engineering, Wuhan 430033, China )
Abstract:A new method that can apply DDAM to nonlinear stiffness system is put forward in the paper, an equivalent linear stiffness model with displacement restrictor is constructed, and the optimal scheme is designed. Pareto setting is obtained by finite element method and genetic algorithm, this pareto setting would be an excellent reference for engineering application. This design mode would assure excellent vibration and shock isolation at the same time, that is significative for vibration and shock isolation of onboard settings.
Keywords:vibration and shock isolation  linearized DDAM  piecewise linear stiffness system  optimal design
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