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Effect of barrel, wedge material and thickness on composite plate anchor performance through analytical, finite element, experimental and 3D prototype investigations

机译:通过分析,有限元,实验和3D原型研究,枪管,楔形材料和厚度对复合板锚固性能的影响

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Efficient use of pultruded thin composite plates in the mechanical and the structural applications largely depends on the performance of the anchor used at the two ends of the plates. This research studies the feasibility and effectiveness of an optimized, corrosion-resistant, thin, and light-weight anchor for the carbon fibre-based composite plates. The main objective is to investigate the effect of the material and the thickness of the barrel and the wedges on the performance of the anchor. Several materials were investigated; and finally, the corrosion-resistant heat-treated 440C stainless steel was chosen. This article also presents the development of an analytical model towards the design and optimization of an innovative prestressing anchor. The analytical model was developed and used to predict the contact pressure distribution on the composite plate inside the anchor under loading to avoid any premature failure of the plate. This analytical model was also used to predict a preliminary thickness of the new anchor. A three-dimensional finite element model was developed to analyze and optimize the anchor design. A detailed experimental study was also conducted to validate the analytical and the finite element simulation results.
机译:拉挤复合薄板在机械和结构应用中的有效使用在很大程度上取决于在板的两端使用的锚固件的性能。这项研究研究了用于碳纤维基复合板的优化,耐腐蚀,薄而轻的锚固的可行性和有效性。主要目的是研究材料,枪管和楔子的厚度对锚固件性能的影响。研究了几种材料;最后,选择了耐腐蚀热处理的440C不锈钢。本文还介绍了针对创新型预应力锚的设计和优化的分析模型的开发。开发了分析模型,并用于预测载荷作用下锚栓内部复合板上的接触压力分布,以避免板的任何过早破坏。该分析模型还用于预测新锚的初步厚度。开发了三维有限元模型来分析和优化锚设计。还进行了详细的实验研究,以验证分析结果和有限元模拟结果。

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