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Numerical analysis of the fatigue crack growth

机译:疲劳裂纹生长的数值分析

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During designing it is important to be able to know as accurately as possible the entire ervice life. In this case the model of initiation and growth of short cracks as well as model of growth of long cracks are important. From the theory it is known that the defects, i.e., the cracks causing destruction or fracture of the basic function of the individual components, spent almost 80-90 percent of the entire service life in micro conditions, i.e., in conditions in which they cannot be detectedf by standard non-destructive methods. Therefore it is very important to have as precise coputation models for determination of the service life. For this area we used Bilby, Cottrell and Swinden model which is based on the theory of continuously dstributed dislocations. In the presented work the mdoel is ocmplemented with random generation of structure os material before cracks. Such a model is intended for "narrow" gears where it is possible to assume that the crack propagates uniformly along entire width.
机译:在设计期间,能够尽可能准确地了解整个渗透生命是很重要的。在这种情况下,短裂缝的启动和生长的模型以及长裂缝的生长模型很重要。从理论中,已知缺陷,即导致各个组分的基本功能的破坏或骨折的裂缝,在微条件下整个使用寿命的近80-90%,即在它们不能的条件下通过标准的非破坏性方法进行检测。因此,作为确定使用寿命的精确复名模型非常重要。对于该领域,我们使用了基于连续脱离脱位的理论的Bilby,Cottrell和Swinden模型。在所提出的工作中,MDOEL在裂缝之前用随机产生的结构OS材料进行遮挡。这种模型用于“窄”齿轮,在那里可以假设裂缝沿整个宽度均匀地传播。

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