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Low-cycle fatigue behavior of glass-fiber-reinforced polymers cross arms with steel sleeves

机译:玻璃纤维增​​强聚合物的低循环疲劳行为用钢套筒交叉

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For the dynamic fatigue problem of transmission tower cross arms caused by the strong wind load,an experimental study on low-cycle fatigue behavior of a new type full-scale glass-fiber-reinforced polymers(GFRP)cross arm with steel sleeves was carried out.A total of six specimens were subjected to cyclic loading for simulating low-cycle fatigue.The stress state was monitored.The variety of load-displacement-time curve,energy dissipation and dynamic strain were analyzed.The ultimate bearing capacity of the specimens without significant fatigue failure was examined to derive residual bearing capacity.Based on the residual strength theory,the cumulative damage was evaluated to predict the fatigue life.It is shown that the GFRP cross arms demonstrated favourable anti-fatigue performance,and can be expected to provide important reference for wind resistance design in transmission tower line system.
机译:对于由强风负荷引起的传输塔交叉臂的动态疲劳问题,进行了新型全尺寸玻璃纤维增​​强聚合物(GFRP)交叉与钢套筒的低循环疲劳行为的实验研究。将总共六种样品进行循环载荷,用于模拟低周期疲劳。分析了应力状态。分析了负载 - 位移时间曲线,能量耗散和动态应变的各种。标本的最终承载力没有检查显着的疲劳失效以导出残余承载力。基于剩余强度理论,评价累积损害以预测疲劳寿命。表明GFRP交叉臂表明了良好的抗疲劳性能,可以预期提供传输塔线系统中抗风性设计的重要参考。

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