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Experimental investigation of existing R/C frames strengthened by high dissipation steel link elements

机译:高耗散钢连接件加固现有RC框架的试验研究

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This paper presents the results of an experimental program concerning the efficiency of a specific strengthening technique which utilizes a small steel link element connected to the R/C frame through bracing elements. Brittle types of failure, especially at the connections between steel and concrete elements, can be avoided by appropriate design of the local details. Five single storey one bay R/C frames scaled 1:3 were constructed according to older codes with substandard details. The first one was a typical bare reference frame. The other four were identical to the first one, strengthened by steel bracing elements. The behavior of the strengthened frames is described with respect to the reference bare frame. The concrete frames were constructed according to older code provisions by the use of smooth steel bars, low strength concrete, sparsely spaced stirrups and substandard details. The strengthening scheme aimed to the increase of both strength and deformation capacity of the original R/C frame. The inelastic deformations are purposely concentrated to a short steel link element connecting the steel bracing to the R/C frame. The results show that the steel link element can increase considerably the strength and the energy dissipation capacity of the frame.
机译:本文介绍了有关特定加固技术效率的实验程序结果,该技术利用通过支撑元件连接到R / C框架的小型钢连接元件。通过适当设计局部细节,可以避免脆性破坏,尤其是在钢和混凝土构件之间的连接处。根据较旧的规范和不合标准的细节,构造了五个比例为1:3的单层一托架R / C框架。第一个是典型的裸参考系。其他四个与第一个相同,并通过钢支撑元素进行了增强。相对于参考裸框架描述了增强框架的行为。根据较旧的规范规定,混凝土框架是使用光滑的钢筋,低强度混凝土,稀疏的箍筋和不合格的细节来构造的。加强方案旨在增加原始R / C框架的强度和变形能力。非弹性变形特意集中在将钢支撑与R / C框架连接的短钢链节上。结果表明,钢连接件可以显着提高框架的强度和消能能力。

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