首页> 外文会议>8th Biennial Conference on Engineering Systems Design and Analysis 2006 vol.3 >A MODAL-GEOMETRICAL SELECTION CRITERION IN DYNAMIC CONDENSATION TECHNIQUES
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A MODAL-GEOMETRICAL SELECTION CRITERION IN DYNAMIC CONDENSATION TECHNIQUES

机译:动态冷凝技术中的模态几何选择准则

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Dynamic condensation techniques, usually applied to simplify the dynamic models of mechanical systems, are based on the choice of master degrees of freedom and the selection criterion entails important -characteristics on the equivalent reduced models.rnStarting from geometrical data of analytical models or experimental setup and corresponding modal data, the present paper presents a modal-geometrical selection criterion of master degrees of freedom that can minimize the ill-conditioning of mass and stiffness matrices.rnSome analytical models are tested, by computing with the System Equivalent Reduction Expansion Process (Serep) methodology the equivalent dynamic reduced systems. Both the modal properties and the ill-conditioning of mass and stiffness matrices of reduced models are compared. In particular, by increasing the order of the reduced model, the ratios between the maximum and minimum eigenvalue of the matrices models computed through the modal-geometrical selection criterion are matched up with the best and worst choice of master nodes between all possible solutions.rnTherefore, performance and restrictions of the proposed criterion is discussed for increasing weight of models and modal properties until to consider complex finite element (FE) models of automotive subsystems, such as tire, wheel clamp and exhaust pipeline.
机译:动态缩合技术通常用于简化机械系统的动力学模型,该技术基于对主自由度的选择,而选择标准则对等效的简化模型具有重要的特征。rn从分析模型的几何数据或实验设置以及相应的模态数据,本文提出了一种主自由度的模态-几何选择准则,该准则可以最大程度地减少质量和刚度矩阵的不良情况。通过使用系统等效还原展开过程(Serep)计算,测试了一些分析模型方法学上等同于动态缩减系统。比较了简化模型的质量特性和刚度矩阵的模态特性和不良状态。特别是,通过增加简化模型的阶数,可以将通过模态几何选择标准计算出的矩阵模型的最大和最小特征值之比与所有可能解之间的主节点的最佳和最差选择相匹配。讨论了提出的标准的性能和限制,以增加模型的权重和模态属性,直到考虑汽车子系统的复杂有限元(FE)模型,例如轮胎,车轮夹具和排气管道。

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