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基于基础结构法的柔顺机构动力学拓扑优化 被引量:2
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作者 占金青 张宪民 《机械强度》 CAS CSCD 北大核心 2011年第3期353-357,共5页
提出一种新的在简谐激励作用下,基于基础结构法的柔顺机构动力学拓扑优化方法。框架单元能够包含弯曲模式,因此采用它的集合表示设计域。以动力放大系数最大化与应变能的最小化加权函数为目标,满足在动态条件下柔顺机构具有足够柔度和刚... 提出一种新的在简谐激励作用下,基于基础结构法的柔顺机构动力学拓扑优化方法。框架单元能够包含弯曲模式,因此采用它的集合表示设计域。以动力放大系数最大化与应变能的最小化加权函数为目标,满足在动态条件下柔顺机构具有足够柔度和刚度;并且规一化目标函数避免不同性质目标函数的量级差异。目标函数的敏度采用伴随矩阵法求解,用移动近似算法对优化问题进行迭代求解。通过数值算例对不同外激励频率和不同输出刚度的拓扑优化结构进行分析讨论。结果表明,该方法在柔顺机构动力学拓扑优化设计中是正确的和有效的。 展开更多
关键词 柔顺机构 拓扑优化 简谐响应 基础结构法 多目标优化
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Hazard degree identification of goafs based on scale effect of structure by RS-TOPSIS method 被引量:6
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作者 胡建华 尚俊龙 +4 位作者 周科平 陈宜楷 甯榆林 刘浪 Mohammed M.Aliyu 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第2期684-692,共9页
In order to precisely predict the hazard degree of goaf(HDG), the RS-TOPSIS model was built based on the results of expert investigation. To evaluate the HDG in the underground mine, five structure size factors, i.e. ... In order to precisely predict the hazard degree of goaf(HDG), the RS-TOPSIS model was built based on the results of expert investigation. To evaluate the HDG in the underground mine, five structure size factors, i.e. goaf span, exposed area, goaf height, goaf depth, and pillar width, were selected as the evaluation indexes. And based on rough dependability in rough set(RS)theory, the weights of evaluation indexes were identified by calculating rough dependability between evaluation indexes and evaluation results. Fourty goafs in some mines of western China, whose indexes parameters were measured by cavity monitoring system(CMS), were taken as evaluation objects. In addition, the characteristic parameters of five grades' typical goafs were built according to the interval limits value of single index evaluation. Then, using the technique for order preference by similarity to ideal solution(TOPSIS), five-category classification of HDG was realized based on closeness degree, and the HDG was also identified.Results show that the five-category identification of mine goafs could be realized by RS-TOPSIS method, based on the structure-scale-effect. The classification results are consistent with those of numerical simulation based on stress and displacement,while the coincidence rate is up to 92.5%. Furthermore, the results are more conservative to safety evaluation than numerical simulation, thus demonstrating that the proposed method is more easier, reasonable and more definite for HDG identification. 展开更多
关键词 GOAF RS-TOPSIS method hazard degree scale effect
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