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1)  composite rubber bearing
叠合橡胶支座
1.
Combining with construction of composite rubber bearings in danger building reconstruction engineering at 12 block 3 area of Sanlihe in Beijing,ideas and key points of technical quality management for isolation system construction are discussed.
结合北京三里河三区12号地危旧房改造工程叠合橡胶支座施工,探讨了隔震系统施工的技术质量管理思路及管理重点。
2)  laminated rubber bearing
叠层橡胶支座
1.
Catastrophic seismic response of isolated structure based on laminated rubber bearings;
叠层橡胶支座隔震结构地震响应的突变分析
2.
Seismic response analysis of aqueduct bridge with laminated rubber bearing;
设置叠层橡胶支座梁式渡槽的地震响应分析
3.
A new form of isolation,the segmented isolation,applied to the large aspect ratio high-rise structure is put forward based on the laminated rubber bearing(LRB),and the numerical simulation in the same high-rise structure controlled by the segmented isolation is carried out compared with the base and the story isolation.
本文提出了一种基于叠层橡胶支座的大高宽比高层建筑分段隔震结构形式,并对同一高层建筑结构分别采用基础隔震、层间隔震和分段隔震三种不同形式时进行了数值模拟对比分析。
3)  laminated rubber bearings
叠层橡胶支座
1.
Also, the rational compressed stress of laminated rubber bearings used in base-isolated buildings is studied .
提出了一种隔震建筑用叠层橡胶支座的大变形模型。
2.
Dynamic stability and mechanical behaviors of laminated rubber bearings;
文章基于简化分析和动力实验 ,讨论了在隔震建筑设计中与叠层橡胶支座稳定性相关的问题。
4)  rubber bearing
叠层橡胶支座
1.
Application of rubber bearing in bridge structure;
叠层橡胶支座在桥梁结构中的应用
5)  SMA strands-composite bearing
SMA绞线-叠层橡胶复合支座
1.
The shaking table test of an SMA strands-composite bearing;
SMA绞线-叠层橡胶复合支座振动台试验研究
6)  SMA-composite rubber bearing
SMA复合橡胶支座
1.
Bridge isolation with SMA-composite rubber bearing;
应用SMA复合橡胶支座的桥梁隔震
2.
By using the proposed SMA-composite rubber bearings,the time-history analysis of a standard-span girder of a multi-span simple bridge excited by three kinds of earthquake wave that respectively denote three sorts of ground frequency is simulated,and the isolation effects are compared with those of the or- dinary rubber bearings.
针对结构减震、隔震问题,提出了一种基于SMA复合橡胶支座的智能隔震系统,应用SMA复合橡胶支座对一受代表3种场地频率地震波激励的多跨简支桥的标准跨桥梁进行了时程分析,并与应用普通橡胶支座的桥梁进行了减震、隔震效果的比较。
补充资料:橡胶覆盖层
分子式:
分子量:
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性质:钢铁等制件表面用橡胶处理,形成耐腐蚀的覆盖层。多种橡胶能与金属牢固粘合,不受低温影响,但当温度升高时,粘合能力逐渐减小。一般需用硬质橡胶作中间层。也可用氯化橡胶和氯丁橡胶作中间层。此外,可用胶浆把橡胶片直接粘合于金属表面上(常用于衬里)。橡胶能耐任何浓度的盐酸、氢氟酸、大多数有机酸、苛性碱溶液、丙酮或乙醇以及大多数非氧化性无机盐。也能耐高达75%浓度的硫酸。最高使用温度通常是65℃,但在氧化剂介质中则要低得多。

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