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1)  layer shear force ratio
层剪力比
2)  shear stress ratio
剪应力比
3)  shear ratio
剪力比
1.
Based on the experimental results of five cantilever composite beams of different force ratios and shear ratios and one continuous composite beam, a study on the shear strength under negative bending is conducted.
并通过力比、剪力比的参数变化分析了负弯区截面的强度破坏情况及极限荷载、使用荷载限值。
2.
By simulating the seismic response,analyzing the shear and shear ratio of isolated and non-isolated structure,and checking the horizontal displacement of vibration isolation cushion,it is pointed out that under the situation of frequent earthquake,the shear ratio range of isolated and non-isolated structure i.
通过模拟系统地震振动响应,对比分析隔震与非隔震结构层间剪力和剪力比,以及验算隔震层隔震垫的水平位移,指出在多遇地震作用下,隔震结构与非隔震结构的层间剪力比范围为0。
4)  gravity shear ratio
重力剪力比
1.
By reviewing and analyzing the results of a large number of previously reported tests on slab-column connections,an limited gravity shear ratio on China code is presented.
介绍了国内外有关规范对板柱连接侧向变形性能的相关规定,并对其差异进行了比较,讨论了重力荷载对板柱连接抗震性能的影响,结合国内外有关文献试验成果,提出了基于我国规范的板柱连接重力剪力比限值条件,通过工程算例和结构弹性分析,指出重力荷载对板柱结构的抗震性能有较大的影响,在板柱-剪力墙结构的分析设计中,不仅需要考察板柱连接的承载力,同时还应通过限制重力剪力比来控制其极限变形。
5)  storey shearing force
楼层剪力
1.
The distribution of storey shearing force in frame-shear wall structure is discussed.
讨论了框剪结构在弹性和弹塑性工作状态下楼层剪力的分配机理。
6)  interstory shear force
层间剪力
1.
It is shown that the stiffness,interstory shear force and axial column force increase in steel bracing system,and the internal forces decrease in the energy dissipation system under the condition of the same displacement.
计算结果表明当两种 抗侧力体系对位移控制效果接近的情况下,普通支撑体系增加了刚度,同时也增加结构的层间剪力、与支撑相 连柱的轴力,而消能支撑体系能有效减少这些结构内力,故比前者大大提高了主体结构的抗震性能。
2.
It is shown the stiffness and the interstory shear force and the axial column force which is connected with the bracing are increased in steel bracing system and the internal forces decreased in the energy dissipation system when their displacements are controlled almost the same.
计算结果表明当两种抗侧力体系对位移控制效果接近的情况下,普通支撑体系增加了刚度,同时也增加结构的层间剪力、与支撑相连柱的轴力,而消能支撑体系能有效减少这些结构内力,故比前者大大提高了主体结构的抗震性能。
补充资料:剪力墙
剪力墙
shear wall

   房屋或构筑物中主要承受风荷载或地震作用引起的水平荷载的墙体。防止结构剪切破坏。又称抗风墙或抗震墙、结构墙。分平面剪力墙和筒体剪力墙。平面剪力墙用于钢筋混凝土框架结构、升板结构、无梁楼盖体系中。为增加结构的刚度、强度及抗倒塌能力,在某些部位可现浇或预制装配钢筋混凝土剪力墙。现浇剪力墙与周边梁、柱同时浇筑,整体性好。筒体剪力墙用于高层建筑、高耸结构和悬吊结构中  ,由电梯间、楼梯间、设备及辅助用房的间隔墙围成,筒壁均为现浇钢筋混凝土墙体,其刚度和强度较平面剪力墙高可承受较大的水平荷载。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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