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Evaluation of stress intensity factor under pure shear stress in orthotropic material

机译:正交各向异性材料在纯剪切应力作用下的应力强度因子评估

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摘要

Various types of composite materials are currently being developed and used for automobiles, airplanes, ships and other structures in response to required service conditions which are getting increasingly more severe. Of growing importance under such circumstances is the study of stress analysis and fracture mechanics for these composite material structures. Particularly, the primary concern in design of structures and machines should be the initiation of cracks due to excessive deformation, delamination in material or other material defects. In evaluating safety, it is indispensable from the structural design point of view that K value should be known by an analysis conducted in advance. In this study, stress intensity factor (mode II) under a pure shear stress was obtained using the photoelastic method and caustic method and applying an isotropic material and orthotropic material (copper fibre epoxy composite (CFEC) developed by the authors), each containing the crack. Results were compared with theoretical values. As a result, this method was found useful and the effect of the direction of the primary axis of this material on the stress intensity factor was clarified.
机译:为了响应日益严重的要求的使用条件,目前正在开发各种类型的复合材料并将其用于汽车,飞机,轮船和其他结构。在这种情况下,对这些复合材料结构的应力分析和断裂力学的研究变得越来越重要。特别是,结构和机器设计中的主要关注点应该是由于过度变形,材料分层或其他材料缺陷而引发裂纹。在评估安全性时,从结构设计的角度来看,必不可少的是,应通过预先进行的分析来知道K值。在这项研究中,使用光弹性法和苛性碱法并应用各向同性材料和正交各向异性材料(由作者开发的铜纤维环氧复合材料(CFEC))获得纯剪切应力下的应力强度因子(模式II),每种材料均包含裂纹。将结果与理论值进行比较。结果,发现该方法是有用的,并且阐明了该材料的主轴方向对应力强度因子的影响。

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