说明:双击或选中下面任意单词,将显示该词的音标、读音、翻译等;选中中文或多个词,将显示翻译。
您的位置:首页 -> 词典 -> 温度力
1)  temperature force
温度力
1.
Calculation of temperature force and displacement of joinless switch on simple supported beam bridge
简支梁桥上无缝道岔温度力与位移计算
2.
The calculation results compared with the sludge orbit seamless switch model,the influencing factors of seamless switch temperature force and bit shift,which can be referenced for the sludge less orbit seamless switch construction design.
建立了无砟轨道无缝道岔纵向受力有限元模型,运用模型计算可能出现的各种工况,得出计算结果,并将所得计算结果与有砟轨道无缝道岔模型进行了对比分析,探讨了影响无缝道岔钢轨温度力与位移的因素,为无砟轨道无缝道岔的施工设计提供了参考。
3.
A finite element mechanics model was established which can calculate the interaction between bridge and ballastless turnout under temperature force.
研究了大跨度桥梁上铺设无砟道岔时,钢轨与墩台温度力与位移的规律。
2)  temperature stress
温度力
1.
An analysis of factors affecting temperature stress and displacement of jointless turnouts;
无缝道岔钢轨温度力与位移影响因素分析
2.
The temperature stress calculation of the top-coat vertical wall of a brick-concrete building(continuance);
砖混房屋顶层纵墙的温度力计算(续)
3.
The temperature stress calculation of the top-coat vertical wall of a brick-concrete building;
砖混房屋顶层纵墙的温度力计算
3)  thermal stress
温度应力
1.
Analysis of thermal stresses of RC beams strengthened with carbon fiber laminate;
碳纤维薄板增强RC梁的温度应力分析
2.
Effect of thermal stress on safe controlling standard for early age concrete under blasting vibration;
温度应力对新浇混凝土爆破安全控制标准的影响
3.
Finite element analysis of thermal stress within walls of brick-masonry mixed structure;
砖混结构墙体温度应力的有限元分析
4)  temperature stress
温度应力
1.
Study on dynamic characteristics and vortex-induced vibration of marine risers considering temperature stress;
考虑温度应力的海洋输液立管动力特性及涡激振动研究
2.
Finite element analysis of temperature stress in Polymer Modified Cement Concrete and Portland Cement Concrete(PMCC-PCC) composite pavement;
复合式路面(PMCC-PCC)温度应力有限元分析
5)  temperature/pressure
温度/压力
6)  driving temperature
动力温度
1.
In somanycomplicated influencefactors, the author holds tightly the character of driving temperature 0as primary theory of the calculation model.
作者在关系复杂的诸多影响因素中,抓住动力温度这个本质作为计算模型0的主要理论基础。
补充资料:铂电阻温度表(见电阻温度表)


铂电阻温度表(见电阻温度表)


表。bod旧nZu wendubiao铂电阻温度表见电阻温
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条