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Manufacture of Green-Composite Sandwich Structures with Basalt Fiber and Bioepoxy Resin

机译:用玄武岩纤维和生物环氧树脂制备绿色复合夹层结构

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摘要

Nowadays, there is a growing interest for the use and development of materials synthesized from renewable sources in the polymer composites manufacturing industry; this applies for both matrix and reinforcement components. In the present research, a novel basalt fibre reinforced (BFR) bioepoxy green composite is proposed as an environmentally friendly alternative to traditional petroleum-derived composites. In addition, this material system was combined with cork as core material for the fabrication of fibre composite sandwich structures. Mechanical properties of both skin and core materials were assessed through flexural and tensile tests. Finite element (FEM) simulations for the mechanical stress analysis of the sandwich material were carried out, and a maximum allowable shear stress for material failure under bending loads was established. Permeability measurements of the basalt fabrics were carried out in order to perform numerical simulations of liquid composite moulding (LCM) processes on the PAM-RTM software. The proposed green-composite sandwich material was used for the fabrication of a longboard as a case study for a sports equipment application. Numerical simulations of the mould filling stage allowed the determination of an optimal mould filling strategy. Finally, the load-bearing capacity of the board was studied by means of FEM simulations, and the presented design proved to be acceptable for service.
机译:如今,在聚合物复合材料制造行业中,人们越来越关注使用和开发由可再生资源合成的材料。这适用于基体和增强部件。在本研究中,提出了一种新型的玄武岩纤维增强(BFR)生物环氧绿色复合材料,作为传统石油衍生复合材料的环保替代品。另外,该材料系统与软木作为核心材料结合在一起,用于制造纤维复合夹层结构。表皮和核心材料的机械性能都通过弯曲和拉伸测试进行了评估。进行了夹层材料机械应力分析的有限元(FEM)模拟,并建立了在弯曲载荷下材料破坏的最大允许剪应力。进行了玄武岩织物的渗透性测量,以便在PAM-RTM软件上进行液体复合成型(LCM)过程的数值模拟。拟议的绿色复合材料夹层材料用于制造长板,作为运动器材应用的案例研究。模具填充阶段的数值模拟可以确定最佳的模具填充策略。最后,通过有限元仿真研究了该板的承载能力,并证明了所提出的设计可用于服务。

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