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1)  curve of the main cable
主缆曲线
1.
Therefore it must present the geometric coordinates of the curve of the main cable before installing.
悬索桥主缆安装时受到荷载分布、自身变形、温度变化、鞍座偏移等诸多因素的影响 ,因此 ,应预先给出安装阶段主缆曲线的几何坐标 ,对特大桥施工而言 ,这点尤为重要。
2)  funicular curve
缆索曲线
3)  cable shape
主缆线形
1.
We introduce the zero method principle which can calculate initial stress while gravity act and the iterative method which can determine the cable shape.
介绍了按照零位移原则确定重力作用下主缆的初始应力状态的方法及确定主缆线形的迭代算法。
2.
In order to calculate the cable shape of suspension bridge with spatial cables at bridge completion stage and cable finish stage,a 3-dimensional analysis model is used and an numerical-analytical method is proposed,the effect of saddle and coupling between cable and hanger are also considered.
用空间分析模型 ,考虑了主缆和吊索的耦合效应和鞍座的影响 ,采用数值解析法对空间缆索悬索桥成桥状态和空缆状态主缆线形进行分析 ,然后通过算例验证了所提方法的正确性 。
3.
Using numerical-analytical method,considering the influence of saddle,the calculation principles and procedures for cable Linetype of finished bridge state of cable-stayed suspension bridge were introduced,and a new method for calculation of cable shape and saddle predisplacement of cable finished stage was given.
采用数值解析法,考虑索鞍的影响,介绍了吊拉组合体系桥成桥状态主缆线形的计算原理和步骤,给出了空缆状态线形和索鞍预偏量计算的一种新方法。
4)  cable curve
主缆线形
1.
Segmental catenary method of calculating the cable curve of suspension bridge;
悬索桥成桥主缆线形计算的分段悬链线法
2.
It consists of two parts, calculation of cable curve for suspension bridge and geometric nonlinear analysis of bridge structure.
全文主要包括两大部分:悬索桥主缆线形计算部分和桥梁结构几何非线性分析部分。
3.
According to the strong geometric nonlinear character of long-span suspension bridges, this thesis has explored the calculation of cable curve for suspension bridge and geometric nonlinear analysis theory of suspension bridge.
针对大跨度悬索桥所具有的强几何非线性,本文探索了悬索桥主缆线形计算理论和结构几何非线性有限元分析理论,并提出了一些新的计算方法。
5)  main loop cabling
主回线电缆
6)  master plots method
主曲线法
1.
The master plots method along with a statistical procedure was employed to determine the kinetic model and kinetic parameters of the thermal decomposition process of stannous oxalate,which led to the produce of stannous oxide and conformed .
采用差示扫描量热法(DSC)研究了草酸亚锡的热分解过程,通过主曲线法并结合统计方法判定得到草酸亚锡热分解过程的动力学模型函数,求算得到了动力学参数。
2.
Iso-conversional method was applied to estimate the apparent activation energy E_a,and the most probable mechanism function G(α) was determined by using the master plots method.
mol-1;用主曲线法确定了亮氨酸热失重过程的最可几机理函数G(α)为一维相边界反应函数,G(α)=α;再由Ea和G(α)求得指前因子ln(A/s-1)=23。
3.
Also, the multi-heating rate method along with master plots method was employed to estimate the kinetic triplets of the thermal decomposition process.
采用热重法研究了水合草酸锌热分解反应过程,并通过多升温速率法和主曲线法相结合求算得到了水合草酸锌热分解反应两个过程的动力学三因子。
补充资料:主曲线
分子式:
CAS号:

性质:利用时间-温度等效原理,把宽温度范围内的不同温度下在短时间观测时间范围内所测得的力学性能(模量、强度、伸长率等)-时间曲线,位移叠加成某一参照温度下长时间范围的一条完整的性能-时间曲线,这样的叠加组合曲线称为主曲线。这种叠加方法只适用于热流变简单材料,即温度变化时不同分子过程的松弛时间的移动必须是一样的。

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