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Effect of fiber waviness on buckling strength of composite plates

机译:纤维波纹度对复合板屈曲强度的影响

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This paper explores the idea of tailoring the profile of reinforcing fibers to improve the buckling strength of composite plates. This paper analyzes the uniaxial buckling behavior of composite laminates in which fibers are placed along parallel sinusoidal curves, instead of the conventional straight line pattern. The sinusoidal fiber orientation results in variable elastic stiffness and nonuniform prebuckling stress fields, which are shown to have a pronounced influence on the buckling strength. For example, changing the fiber orientation from straight line to a sinusoidal pattern can increase the buckling load of a simply supported laminate by more than 80%. For the analysis, a computerized Rayleigh-Ritz procedure is developed that exploits an analogy between bending and stretching formulations to model a variety of boundary conditions.
机译:本文探讨了定制增强纤维轮廓以提高复合板屈曲强度的想法。本文分析了复合层压板的单轴屈曲行为,其中纤维沿平行的正弦曲线放置,而不是常规的直线模式。正弦纤维的取向导致可变的弹性刚度和不均匀的预屈曲应力场,这显示出对屈曲强度有显着影响。例如,将纤维的方向从直线改变为正弦形可以使简单支撑的层压板的屈曲载荷增加80%以上。为了进行分析,开发了计算机化的Rayleigh-Ritz程序,该程序利用弯曲和拉伸公式之间的类比来模拟各种边界条件。

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