首页> 外文会议>NATO advanced research workshop on security and reliability of damaged structures and defective materials >ASSESSING THE DEVELOPMENT OF FATIGUE CRACKS: FROM GRIFFITH FUNDAMENTALS TO THE LATEST APPLICATIONS IN FRACTURE MECHANICS
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ASSESSING THE DEVELOPMENT OF FATIGUE CRACKS: FROM GRIFFITH FUNDAMENTALS TO THE LATEST APPLICATIONS IN FRACTURE MECHANICS

机译:评估疲劳裂缝的发展:从Griffith基本面到骨折力学中最新应用

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Engineering analysis of fatigue crack growth depend on different loading conditions, wherever those conditions have been studied, in laboratory or real-world practice. Such analyses can be done on basis of different parameters: the stress intensity factor range, ΔK, introduced in linear elastic fracture mechanics; the J -integral range, ΔJ, employed in elastic-plastic material characterization; the square-root area parameter of Murakami, effective in the presence of small defects and non-metallic inclusions. An alternative presentation of fatigue data has been proposed that uses the crack growth rate against a newly introduced parameter, namely an energy fatigue-function Δw based at different conditions on different parameters, ΔK or ΔJ or the square-root area parameter of Murakami. This alternative presentation shows fatigue data as forming an almost straight line, which may be termed the "natural fatigue tendency" of a material, and specified more precisely at a given stress range. Also the present study introduces a physical interpretation of the line presentation of fatigue data and some illustrations of the "natural fatigue tendency" for different materials under different conditions.
机译:疲劳裂纹增长的工程分析取决于不同的装载条件,无论在实验室还是真实的惯例中都在何处进行了研究。这种分析可以根据不同的参数来完成:在线性弹性骨折力学中引入的应力强度因子范围,ΔK;弹性塑料材料表征的j- integral范围,Δj; Murakami的平方根参数,在存在小缺陷和非金属夹杂物的情况下有效。已经提出了一种替代的疲劳数据呈现,其利用对新引进的参数的裂缝生长速率,即基于不同参数的不同条件的能量疲劳函数ΔW,ΔK或Δj或Murakami的平方根参数。该替代呈现显示了形成几乎直线的疲劳数据,其可以称为材料的“天然疲劳趋势”,并且在给定的应力范围内更精确地指定。此外,本研究介绍了不同条件下不同材料的疲劳数据线呈现的物理解释以及不同材料的“天然疲劳倾向”的一些插图。

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