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An experimental study of cracking processes generated in a contact subjected to fretting-fatigue loading under CO_2 corrosive seawater environment

机译:CO_2腐蚀海水环境下微动疲劳载荷作用下触头产生裂纹的实验研究

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In order to analyze the combined interaction between fretting contact and corrosion regarding the fretting-fatigue endurance, an innovative fretting-fatigue-corrosion (FFC) test machine has been developed: a corrosive cell with a CO_2-saturated solution was integrated in a hydraulic fretting-fatigue test machine in order to study the fretting-fatigue loading of an industrial steel under a controlled corrosive environment. The influence of the tangential force amplitude and the frequency on the cracking nucleation has been analyzed by carrying out fretting-fatigue tests in dry and wet conditions. By dividing the friction coefficient by a factor two, seawater considerably reduced the contact fretting stressing compared to dry conditions. However, investigation of lower loading frequency suggests that corrosion mechanisms increase the cracking extension. A global description of seawater condition regarding an aqueous CO_2 system corrosion and friction behavior is introduced taking into consideration the effect of loading frequency and fretting displacement in the interface.
机译:为了分析关于微动疲劳强度的微动接触与腐蚀之间的组合相互作用,开发了一种创新的微动疲劳-腐蚀(FFC)测试机:在液压微动中集成了具有CO_2饱和溶液的腐蚀池疲劳试验机,以研究在受控腐蚀环境下工业钢的微动疲劳载荷。通过在干燥和潮湿条件下进行微动疲劳试验,分析了切向力振幅和频率对裂纹成核的影响。通过将摩擦系数除以2,与干燥条件相比,海水大大降低了接触微动应力。但是,对较低加载频率的研究表明,腐蚀机理会增加裂纹扩展。考虑到界面上的加载频率和微动位移的影响,介绍了有关含水CO_2系统腐蚀和摩擦行为的海水状况的全局描述。

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