Compressive bearing capacity of CFRP–aluminum alloy hybrid tubes

Combining Al (namely, aluminum alloy) and CFRP (carbon-fiber-reinforced polymer) jackets to form structural members can yield many advantages and a bilinear behavior, which can enhance their advantages and mitigate any disadvantages. CFRP–Al hybrid tubes, which are used as axial load members in spatial structures, are investigated in this study by using compression experiments and a theoretical analysis. Formulas that describe the compressive bearing capacity with and without local buckling before yielding are proposed for stub hybrid tubes. In addition, their compressive behaviors are simulated by using the finite element method (FEM). A good agreement in the test results is achieved. The effect of the number of pairs of CFRP layers, the diameter-thickness ratio (DT ratio) and width-thickness ratio (WT ratio), and the fiber direction are described based on finite element analysis (FEA). Finally, a design approach for compressive CFRP–Al hybrid stub tubes is proposed.

FRP与海砂混凝土组合应用的发展与创新

海砂的资源化开采和应用不仅能解决沿海地区建筑用砂紧缺的难题,而且对环境、资源保护有重大意义。本文回顾了已有的钢筋海砂混凝土结构应用,钢筋锈蚀带来的建筑质量问题十分严峻,虽然可以用严格的海砂淡化方法避免,但是需要消耗大量的淡水资源,使用受限且综合效益低。而FRP耐氯盐腐蚀,性能优异,海砂混凝土与其组合应用可从根本上避免锈蚀问题,目前已有了一系列应用形式,而且未来发展前景广阔。本文介绍了已有的相关研究,并针对我国海洋开发的重大需求提出了一种面向海洋的新型FRP海砂混凝土组合结构,为海砂混凝土与FRP在工程建设中的应用提供了新的思路。