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1)  steel strip energy absorber
弧形钢板条耗能器
1.
In this paper, based on the principle of seismic isolation and energy absorption for sliding pot bearing and curved steel strip, according to seismic nonlinear analysis of Yong Ding New river bridge, a system of sliding pot bearings incorporating curved steel strip energy absorber is presented.
本文根据活动盆式支座和弧形钢板条的减、隔震原理,通过对永定新河大桥主桥的抗震非线性分析,采用了弧形钢板条耗能器和活动盆式支座组合体系作为抗震设计的措施。
2)  Composite steel plate energy dissipator
组合钢板耗能器
3)  combined dissipator with concealed x-type mild steel plate and lead
内藏X形软钢板铅复合耗能器
1.
In this paper, according to the idea of " New energy dissipator can make two or more elements work and dissipate energy in cooperation" , the authors study and make combined dissipator with concealed x-type mild steel plate and lead(CDCXSPL).
遵循“综合利用不同耗能原理或机制来设计新型耗能减震器”思想,研制了内藏X形软钢板铅复合耗能器,并对三种不同构造方式的软钢铅复合耗能器以及一种软钢组合耗能器进行了循环加载的对比试验,分析了这四种耗能器的工作性能与耗能性能,揭示了耗能机制。
4)  composite steel plate yielding energy dissipator
组合钢板屈服耗能器
1.
Based on analyzing the advantages and shortcomings, especially the membrane effects, of X steel plate yielding energy dissipator (XSEDOR), and combined with the mechanism characteristics of Pall frictional energy dissipator, a composite steel plate yielding energy dissipator (CSEDOR) has been developed.
本文在充分利用钢板屈服耗能器性质稳定、耐久性好等优点的基础上,针对 X形钢板屈服耗能器中存在的薄膜效应,结合 Pall摩擦耗能器独特的构造特点,提出了工程可用的组合钢板屈服耗能器,并进行了这种耗能器的滞回特性试验和疲劳性能试验。
5)  ADAS damper
软钢耗能器
6)  arc-shaped steel plate support
弧形钢板支撑
1.
The thesis takes West Qin Ling Tunnel Project of Lan Yu Rail as example to improve the previous mode of stepping and discuss the mode of stepping by means of the arc-shaped steel plate support according to the conditions of West Qin Ling Tunnel Project.
以兰渝铁路西秦岭隧道工程为例,对以往长距离步进模式进行了改进,对弧形钢板支撑的模式进行步进予以了探讨,可供相关工程参考。
补充资料:弧形结晶器

curvedmold:用于弧型和超低头型(椭圆型)连铸机上。

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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