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1)  elastic tailoring optimization
弹性刚度剪裁优化
2)  elastic stiffness
弹性刚度
1.
Based on the performance evaluation results by pushover analysis,the elastic stiffness,the design bearing capacity value and the transverse reinforcement characteristic value of beams and columns which influence structural pushover curve are analyzed respectively.
根据现行规范的"三水准"设防目标定义结构的性能水平及性能目标,从满足性能目标的Pushover分析结果出发,分析了框架结构弹性刚度、设计承载力取值以及梁柱端配箍特征值三因素对Pushover曲线走势的影响。
2.
This paper mainly introduces the choice of the structural system, the confirmation of base elastic stiffness,the affection of various base elastic stiffness on the inner force of the latticed shell a.
主要介绍了该工程屋盖的结构选型、支座弹性刚度的确定 ,不同支座弹性刚度值对网壳内力的影响以及设计中重点考虑的一些问
3)  elastic rigidity
弹性刚度
1.
The cooperative works of single rank of piles with Mdifferent vertical elastic rigidity under strip beam,is analysed herein and proposals are given here for calculating the load of foundation of single rank of piles under there circumstances.
分析了条形承台梁下具有不同的竖向弹性刚度单排桩的协同工作情况,给出此种情况下的单排桩基承载力计算建
4)  aeroelastic tailoring
气动弹性剪裁
1.
To our knowledge,there are very few papers on the aeroelastic tailoring of composite joined-wing aircraft,although it is key to the design of such aircraft.
应用MSC/NA STRAN软件的气弹优化模块,对一个真实的复合材料连翼结构,采用分步实现的策略进行了连翼在颤振/发散速度约束下的气动弹性剪裁。
2.
An analytical approach is proposed to obtain the sensitivity of structural responses in aeroelastic tailoring.
进行了一种用解析方法求气动弹性剪裁中的结构响应值敏度的研究。
3.
It is shown that COMPASS is not only an engineering optimum design software hut also an aeroelastic tailoring tool for composite aircraft wing.
利用复合材料各向异性特性和优化设计技术,开展结构气动弹性剪裁研究,是防止前掠翼发散的有效手段。
5)  elastic soft film cutting
弹性软片裁剪
6)  stiffness optimization
刚度优化
1.
On the basis of allowable lateral deflections and frame shear scales, a simple method of stiffness optimization of the frame shear-wall structure is investigated.
根据高层规程和抗震规范对结构顶点侧移的限制和对框架剪力比例的要求,以地震作用最小为目标,研究建立了框架—剪力墙结构刚度优化的一种简化方法。
补充资料:弹性刚度
分子式:
CAS号:

性质:一种表征材料刚硬程度的指标。材料受到冲击时的能量吸收与其表面硬度有关,弹性刚度的测定是将一金刚石圆锥在一定条件下落到试样表面上,测定圆锥回弹的高度,以确定材料表面硬度。材料表面硬度越高,回弹高度越高,其弹性刚度越大。

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