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首页> 外文期刊>Materialwissenschaft und Werkstofftechnik >Verhalten von Magnesiumlegierungen fuer Anwendungen im Fahrzeugbau bei mechanisch-elektrochemischer Komplexbeanspruchung: Einfluss passivierender Deckschichten und Mechanismen der lokalen Schaedigung
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Verhalten von Magnesiumlegierungen fuer Anwendungen im Fahrzeugbau bei mechanisch-elektrochemischer Komplexbeanspruchung: Einfluss passivierender Deckschichten und Mechanismen der lokalen Schaedigung

机译:镁合金在具有机械-电化学复合应力的车辆结构中的应用行为:钝化覆盖层的影响和局部损伤的机理

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摘要

To assure an efficient design of components under cyclic loading, all available data concerning fatigue have to be observed. Therefore the influences of manufacturing on the material condition, the mechanical loads and environmental effects have to be analysed.Mag-nesium-alloys are of special interest for lightweight applications because of their excellent strength-density ratio. The corrosion resistance of magnesium-alloys depends on the same factors that are critical to other metals. The alloys have a good stability to atmospheric exposure and a good resistance to attack by alkali, chromic and hydrofluoric acids. However, because of the electrochemical activity of magnesium, the relative importance of some factors is greatly amplified.The nature and composition of passive films formed on magnesium-alloys depend on the prevailing conditions, viz. alloy-composition, passivation potential, pH, electrolyte composition and temperature. Passive films may be damaged by local breakdown. Because of this, magnesium-alloys suffer a degradation of their properties when exposed to an aqueous environment.The main topic of the present investigations is the verification of mechanisms of the local breakdown of the protecting film. At least two mechanisms are possible for this localization: mechanical breakdown by slip steps and electrochemical breakdown (for e.g. by the effects of chloride ions).Corrosion and passivation of different high purity alloys have been studied in different solutions (neutral, alkaline with specific anions and cations) using electrochemical techniques. The diecasted alloys were tested as produced and ma-chined.The results clarified that depending on alloy/material and surface condition/corrosion environment different mechanisms for electrochemical breakdown of the protecting films are possible. Hence fatigue life under environmental loading is influenced by surface and testing conditions.
机译:为了确保部件在循环载荷下的有效设计,必须遵守所有有关疲劳的可用数据。因此,必须分析制造对材料条件,机械载荷和环境影响的影响。镁合金由于其优异的强度密度比而特别适用于轻型应用。镁合金的耐腐蚀性取决于对其他金属至关重要的相同因素。该合金对大气暴露具有良好的稳定性,并且对碱,铬酸和氢氟酸具有良好的抵抗力。然而,由于镁的电化学活性,一些因素的相对重要性被大大放大。在镁合金上形成的钝化膜的性质和组成取决于普遍的条件,即。合金成分,钝化电位,pH,电解质成分和温度。被动薄膜可能会因局部击穿而损坏。因此,镁合金暴露于水环境中时其性能会下降。本研究的主要主题是验证保护膜局部破坏的机理。至少有两种机制可以实现这种定位:滑移步骤引起的机械击穿和电化学击穿(例如由于氯离子的作用)。已经研究了不同高纯度合金在不同溶液(中性,碱性和特定阴离子)中的腐蚀和钝化。和阳离子)。结果表明,根据合金/材料和表面条件/腐蚀环境的不同,保护膜的电化学击穿机理可能不同。因此,在环境载荷下的疲劳寿命受表面和测试条件的影响。

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