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Experimental Study on the Seismic Behaviour of an Innovative Hybrid Concrete Connection Used as Thermal Break System

机译:用作热断裂系统的创新混合混凝土连接的地震行为的实验研究

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In Europe, the simultaneous introduction of new energy efficiency standards and majored seismic requirements has lead concrete constructors to find innovative solutions. In case of internal insulation, slab to wall connections have to be designed to maintain continuity of the insulation in structural connections while ensuring the transfer of shear forces from the slab to the wall. For this purpose, INGENOVA, a French civil engineering office, has developed a robust and ductile system, called SLABE~R: stainless steel Z-shaped profiles are used as shear keys, creating an innovative hybrid concrete connection. An important research program has been carried out in order to characterize the SLABE~R system behaviour under cyclic loads. Nearly true scale specimens including concrete slabs and walls have been tested in order to determine the stiffness and resistance under cyclic horizontal and vertical shear actions. Tests demonstrate a very stable behaviour of the system up to its theoretical yielding capacity and a large reserve of ductility due to the material of steel members. At last the effect of the SLABE on the overall seismic answer of buildings has been investigated numerically, in order to predict both the force redistribution between external and internal concrete walls, and the magnitude of horizontal forces transmitted by the shear link.
机译:在欧洲,同时引入新的能效标准与工程专业的抗震要求具有领先的混凝土构造找到创新的解决方案。在内部绝缘的情况下,板坯壁连接必须被设计以保持绝缘的连续性的结构连接,同时确保剪切力从板坯输送到墙上。为了这个目的,INGENOVA,法国土木工程处,已开发出强健和延性系统,被称为SLABE〜R:不锈钢Z形轮廓被用作剪切键,产生一个创新的混合混凝土连接。一个重要的研究项目是为了循环载荷下表征SLABE〜R系统的行为进行了。近真实比例试件包括混凝土板和墙人为了确定在循环水平和垂直剪切作用的刚度和电阻进行了测试。测试表明该系统达到其理论容量屈服和大储备延展性的一个非常稳定的行为由于钢构件的材料中。最后,对建筑物的整体抗震答案SLABE的影响进行了数值研究,以便预测外部和内部的混凝土墙之间都力再分配,并通过剪切链路传输的水平力的大小。

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