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Analysis of Fatigue Damage Accumulation in Structural Materials under Quasi-Random Load

机译:准随机载荷下结构材料疲劳损伤积累分析

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The spectrum of stresses at a hazardous point on bearing metal structures of mining, road-building and transporting machines, as a rule, is random by nature. Objective complexity of the fatigue process and variety of fatigue crack nucleation mechanisms are the main causes of errors in prediction of their lifespan, along with an experimentally untestable hypothesis of linear summation of damages. The method of complete stress-strain diagrams uses a representative parameter of the fatigue process, selected in accordance with the results of testing, carried out on trained thin specimens of a specific material. The summation of fatigue damages is based on experimental kinematic curves, whose intersection with a load vector is used as a criterion of fatigue failure. It is shown that the approach proposed to calculate the lifespan gives certain advantages, as far as individual properties of the material are concerned, and when it comes to describing the kinetics of the fatigue process and determining the limiting state of the material in a structure.
机译:通常,造成金属结构造成金属结构的危险点的频谱,通常是随机的自然。疲劳过程的客观复杂性和疲劳裂缝成核机制的种类是其寿命预测中误差的主要原因,以及对损伤的线性求和的实验不存在假设。完全应力 - 应变图的方法使用疲劳过程的代表参数,根据测试结果选择,在特定材料的训练的薄样本上进行。疲劳损坏的总和是基于实验运动曲线,其与负载载体的交叉被用作疲劳失效的标准。结果表明,所提出的方法来计算寿命提供了某些优点,只要涉及材料的个性化性质,以及在描述疲劳过程的动力学并确定结构中的材料的限制状态时。

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