Experimental and numerical investigations on the ratcheting characteristics of cylindrical shell under cyclic axial loading

材料科学 软化 硬化(计算) 复合材料 应变硬化指数 壳体(结构) 残余应力 结构工程 极限抗拉强度 非线性系统 机械 工程类 量子力学 物理 图层(电子)
作者
Mahmoud Shariati,Hossein Hatami,Hamid Torabi,H R Epakchi
出处
期刊:Structural Engineering and Mechanics [Technopress]
卷期号:44 (6): 753-762 被引量:19
标识
DOI:10.12989/sem.2012.44.6.753
摘要

The ratcheting characteristics of cylindrical shell under cyclic axial loading are investigated. The specimens are subjected to stress-controlled cycling with non-zero mean stress, which causes the accumulation of plastic strain or ratcheting behavior in continuous cycles. Also, cylindrical shell shows softening behavior under symmetric axial strain-controlled loading and due to the localized buckling, which occurs in the compressive stress-strain curve of the shell; it has more residual plastic strain in comparison to the tensile stress-strain hysteresis curve. The numerical analysis was carried out by ABAQUS software using hardening models. The nonlinear isotropic/kinematic hardening model accurately simulates the ratcheting behavior of shell. Although hardening models are incapable of simulating the softening behavior of the shell, this model analyzes the softening behavior well. Moreover, the model calculates the residual plastic strain close to the experimental data. Experimental tests were performed using an INSTRON 8802 servo-hydraulic machine. Simulations show good agreement between numerical and experimental results. The results reveal that the rate of plastic strain accumulation increases for the first few cycles and then reduces in the subsequent cycles. This reduction is more rapid for numerical results in comparison to experiments.

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