首页> 外文会议>ASME Pressure Vessels and Piping conference >ANALYSIS OF MAXIMUM ELASTO-PLASTIC RESPONSE OF MULTI-DEGREE-OF-FREEDOM OSCILLATORS BASED ON A MODAL COMBINATION OF EQUIVALENTLY LINEARIZED RESPONSE OF EACH MODE
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ANALYSIS OF MAXIMUM ELASTO-PLASTIC RESPONSE OF MULTI-DEGREE-OF-FREEDOM OSCILLATORS BASED ON A MODAL COMBINATION OF EQUIVALENTLY LINEARIZED RESPONSE OF EACH MODE

机译:基于各模态等效线性化响应模态组合的多自由度振动子最大弹塑性响应分析

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This study develops a new analytical method for evaluating maximum elasto-plastic displacement of multi-degree-of-freedom (MDOF) oscillators under the action of base excitation based on a modal combination. The essence is that modal frequencies, shapes and damping during yielding of any member of the MDOF oscillators are readily specified by the modal analysis with the secondary stifmess of the members being yielded. In addition, assuming that a bilinear hysteresis may describe the force-displacement relationship of each mode, an equivalently linearized system consisting of a single-degree-of-freedom (SDOF) oscillator is introduced to approximate maximum elsato-plastic displacement of each mode. Employing the SRSS-rule, the maximum elasto-plastic displacement of the MDOF oscillator subjected to Kobe-NS accelerogram is calculated and compared with that computed by the commercial software. Applicability of the proposed method to evaluating maximum elasto-plastic displacement of the MDOF oscillator is thoroughly discussed.
机译:这项研究开发了一种新的分析方法,用于评估基于模态组合的基本激励作用下的多自由度(MDOF)振荡器的最大弹塑性位移。实质是通过模态分析可以很容易地指定MDOF振荡器任何一个构件屈服期间的模态频率,形状和阻尼,并产生构件的第二个刚度。另外,假设双线性磁滞可以描述每个模式的力-位移关系,则引入由单自由度(SDOF)振荡器组成的等效线性化系统,以近似估计每个模式的最大弹塑性位移。使用SRSS规则,计算了经受Kobe-NS加速度图的MDOF振荡器的最大弹塑性位移,并将其与商用软件所计算的值进行了比较。彻底讨论了所提出的方法在评估MDOF振荡器的最大弹塑性位移方面的适用性。

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