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首页> 外文期刊>Journal of textile engineering >Experimental Study on Hoop Stress Affecting Braided Carbon Fiber Reinforced Plastics Subjected to Internal Pressure
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Experimental Study on Hoop Stress Affecting Braided Carbon Fiber Reinforced Plastics Subjected to Internal Pressure

机译:环向应力影响编织碳纤维增强塑料内压的实验研究

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Braided carbon fiber reinforced plastics (CFRPs) can be employed in the construction of pressurized vessels to increase performance and reduce overall weight. However, owing to the complex braiding structures resulting from the braiding process, an analysis of the elastic modulus is important as it affects the hoop stress on the pressure vessel. In this study, braided preformed CFRP constructed on a steel cylinder subjected to internal pressure was experimentally investigated using a simple approach that involved estimating the elastic modulus and hoop stress. Five types of braided preformed CFRP with different braiding angles and number of applied layers were analyzed. The elastic modulus and hoop stress can be estimated from these measurements of the internal pressure. The differences in the braided structures result in different strain values and affect the elastic modulus. High braiding angles tend to be more stable against high internal pressure, and exhibit small strain differences and high elastic modulus in the hoop direction. Similar results were observed when additional layers were applied. Increasing the braiding angle and the number of layers can increase the average elastic modulus.
机译:编织碳纤维增强塑料(CFRPs)可用于加压容器的构造,以提高性能并减轻整体重量。但是,由于编织过程产生的复杂编织结构,弹性模量的分析很重要,因为它会影响压力容器上的环向应力。在这项研究中,使用一种简单的方法对在钢瓶上承受内压的编织预成型CFRP进行了实验研究,该方法涉及估算弹性模量和环向应力。分析了五种编织角度不同,编织层数不同的编织预成型CFRP。弹性模量和环向应力可以从内部压力的这些测量值中估算出来。编织结构的差异导致不同的应变值并影响弹性模量。高编织角倾向于对高内部压力更稳定,并且在环向方向上表现出小的应变差异和高弹性模量。当施加额外的层时,观察到相似的结果。增加编织角和层数可以增加平均弹性模量。

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