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首页> 外文期刊>Steel & Composite Structures: An International Journal >Buckling failure of 310 stainless steel tubes with different diameter-to-thickness ratios under cyclic bending
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Buckling failure of 310 stainless steel tubes with different diameter-to-thickness ratios under cyclic bending

机译:不同直径与厚度比的310不锈钢管在循环弯曲下的屈曲破坏

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摘要

In this paper, experimental and theoretical investigations on the response and collapse of 310 stainless steel tubes with different diameter-to-thickness ratios subjected to cyclic bending are discussed. The tube-bending device and curvature-ovalization measurement apparatus were used to conduct the experiment. The endochronic theory combined with the principle of virtual work and finite element software, ANSYS, were used to simulate the moment-curvature and ovalization-curvature relationships. It is shown that although the two methods lead to good simulation of the moment-curvature relationship, the endochronic theory combined with the principle of virtual work has the better simulation of the ovalization-curvature response when compared with experimental data and the simulation by ANSYS. In addition, the theoretical formulations proposed by Kyriakides and Shaw (1987) and Lee et al. (2001) were used to simulate the controlled curvature-number of cycles to produce buckling relationship. It is shown that the theoretical formulations effectively simulate the experimental data.
机译:本文讨论了310根不同直径/厚度比的不锈钢管在循环弯曲下的响应和坍塌的实验和理论研究。用弯管器和曲率椭圆测量仪进行实验。内时理论结合虚拟工作原理和有限元软件ANSYS,来模拟矩-曲率和椭圆化-曲率关系。结果表明,尽管这两种方法都可以很好地模拟弯矩-曲率关系,但与实验数据和ANSYS的仿真相比,内时理论结合虚拟功原理对椭圆化-曲率响应的仿真效果更好。此外,由Kyriakides和Shaw(1987)和Lee等人提出的理论公式。 (2001年)被用来模拟控制曲率-周期数产生屈曲关系。结果表明,理论公式有效地模拟了实验数据。

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