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Plastic energy dissipation and ductility of symmetric reinforced and over-reinforced RC elements' sections

机译:对称增强和过增强RC元素的塑料能量耗散和延展性

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It is clear today that the existing spectral-acceleration based the seismic design method has several limitations. First of all, it does not into account the cumulative plastic deformation demands in earthquake resistant structure. The important factors that affect the RC section plastic energy dissipation (PED) and ductility are symmetric reinforcing of the section and over-reinforcing. The purpose of this paper is to propose the method of the calculation of RC element PED and its ductility taking into account the variety of the section reinforcement. The alternating direction of the seismic force at each second half cycle leads to corresponding changes of stress values and signs in the reinforcement. Thus, the compressive zone is periodically over-reinforced and the tensile one is poorly reinforced. In this case, the reinforcement cannot contribute to the section PED, and ductility of the section decreases significantly. This is the main cause of RC element failure under strong earthquakes in seismic zones. The compression zone of a symmetric reinforced section undergoing large-eccentric compression acts as under axial compression, and there is no redistribution of the internal forces in such a section. This is the main cause of a compressed element failure under strong earthquakes, since RC columns in the seismic zone usually have symmetric reinforcement. Nevertheless, symmetric reinforcement is necessary as a result of the alternating direction of the seismic forces. The PED and ductility factor calculation methodology, given in this paper, can be used for RC structures seismic design codes.
机译:今天很清楚,基于地震设计方法的现有光谱加速度有几个限制。首先,它不考虑抗震结构中累积塑性变形需求。影响RC段塑料耗散(PED)和延展性的重要因素是对称增强部分和过度增强。本文的目的是提出计算RC元素PED的方法及其延展性考虑到截面加固的各种。每个第二半周期的地震力的交替方向导致应力值的相应变化和增强物中的符号。因此,压缩区域周期性地过度加固,并且张力增强不良。在这种情况下,加强件不能有助于PED,并且截面的延展性显着降低。这是地震区强震下RC元素失效的主要原因。经过大偏心压缩的对称增强部分的压缩区在轴向压缩下起作用,并且在这样的部分中没有内部力的再分布。这是强烈地震下压缩元件失效的主要原因,因为地震区中的RC柱通常具有对称的加强。然而,由于地震力的交替方向,对称加强是必要的。本文给出的PED和延展性因子计算方法可用于RC结构地震设计代码。

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