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Endochronic simulation for the response of 1020 carbon steel tubes under symmetric and symmetric cyclic bending with or without external pressure

机译:1020碳钢管在有外压力作用下对称和对称循环弯曲的响应的内时模拟

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This paper presents the theoretical simulation of the response of 1020 carbon steel tubes subjected to symmetric and unsymmetric cyclic Bending with or without external pressure by using the endochronic theory. Experimental data of 1020 carbon steel tubes tested by Corona and Kyriakidcs (1991) were used for evaluating the theoretical simulation. Several cases were considered in this study, they were symmetric bending without external pressure, symmetric bending with external pressure, unsymmetric bending without external pressure, and unsymmetric bending with external pressure. The responses of the moment-curvature, ovalization-curvature and ovalization-number of cycles with or without external pressure were discussed. It has been shown that the theoretical simulations of the responses correlate well with the experimental data.
机译:本文运用内时理论,对1020碳钢管在有或无外压的情况下对称和非对称循环弯曲的响应进行了理论模拟。通过Corona和Kyriakidcs(1991)测试的1020碳钢管的实验数据用于评估理论模拟。在本研究中考虑了几种情况,它们是无外压的对称弯曲,有外压的对称弯曲,无外压的不对称弯曲和有外压的不对称弯曲。讨论了弯矩曲率,椭圆化曲率和椭圆化次数在有或没有外压的情况下的响应。结果表明,响应的理论模拟与实验数据很好地相关。

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