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The Assessment of a Material Life Cycle Based on an Analysis of Fracture Surfaces after Fatigue Failure

机译:基于疲劳失效后断裂表面分析的材料生命周期评估

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The service life of machine components exposed to cyclic loading below a yield point is a very significant factor for the assessment of material properties. One of the methods of enhancing material resistance to the initiation and course of a fatigue process is changing the chemical composition of the material surface layer. The paper is concerned with the prolongation of the life cycle of military vehicles machine components by means of a new technology based on the combination of chemical-heat (plasma nitriding) treatment and heat treatment with emphasis put on the increase in the fatigue strength and service life (resistance to corrosion) of originally soft-annealed steel CSN 412061. The new technology allows reducing the probability of limit state occurrence in a component thus optimising financial means of the Armed Forces of the Czech Republic.
机译:在屈服点以下承受周期性载荷的机械部件的使用寿命是评估材料性能的非常重要的因素。增强材料抵抗疲劳过程的开始和过程的方法之一是改变材料表面层的化学组成。本文涉及一种基于化学-热(等离子体氮化)处理和热处理相结合的新技术,以延长军用车辆机械零件的使用寿命,并着重于提高疲劳强度和使用寿命软退火钢CSN 412061的使用寿命(抗腐蚀)。新技术可降低组件中出现极限状态的可能性,从而优化捷克共和国武装部队的财务手段。

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