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CORROSION AND BIAXIAL FATIGUE OF WELDED STRUCTURES

机译:焊接结构的腐蚀和双轴疲劳

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摘要

The aim of this research is to develop an experimental approach for corrosion fatigue behaviour of welded structures subjected to simultaneous biaxial, rotating-bending and torsional loading, results of which could be used in railway bridges, ship, offshore structures, ground vehicles etc. The experimental program developed here considers stress field information due to the variations of applied stress conditions, surface treatments and corrosive environment using simulated heat-affected-zone (HAZ) and base materials. This is aimed at providing a procedure for improved design of new welded structures subjected to biaxial loading. The experimental data have been collected and compared with standard theoretical "Stress-Life" curves generated by earlier researchers (Juvinall, Shigley and Collin's method). Experimental data in dry and corrosive environment (3.5% NaCl solutions) for rotating-bending-torsional thrust have been collected. This initial investigation suggests that the effects of secondary thrust is more severe than the effects due to corrosive environment, as it accelerates the initiation of the cracks; and consequently, the fatigue life reduces significantly. Design-Engineers must consider reducing the effects of secondary thrust and minimising the environmental effect to improve on crack initiation properties of the structures.
机译:该研究的目的是开发焊接结构的腐蚀疲劳行为的实验方法,该焊接结构进行同时双轴,旋转弯曲和扭转负载,其结果可用于铁路桥,船舶,海上结构,地面车辆等在此开发的实验程序由于应用的应力条件,表面处理和使用模拟热影响区(HAZ)和基材的腐蚀环境的变化而认为压力场信息。这旨在提供一种改进经过双轴载荷的新焊接结构设计的程序。已经收集了实验数据并与早期研究人员产生的标准理论“应力 - 生命”曲线进行了比较(Juvinall,Shigley和Collin的方法)。收集了干燥和腐蚀环境中的实验数据(3.5%NaCl溶液),用于旋转弯曲扭转推力。这一初步调查表明,二次推力的影响比腐蚀性环境引起的影响更严重,因为它加速了裂缝的启动;因此,疲劳生活显着减少。设计工程师必须考虑减少二次推力的影响,并最大限度地减少环境效果,以改善结构的裂纹启动性能。

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