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Design of permanent greenhouse structure by pultruded glass reinforced plastic

机译:拉挤玻璃钢永久温室结构设计。

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Research activities have been taking on place in many ports of the world to develop or produce new greenhouse construction materials in order to grow more economic agricultural products. One of the new technological materials is the glass fiber reinforced plastic (GFRP) materials. GFRP materials are basically constituted of resin and continuous or chopped fiber and they are manufactured by using various manufacturing methods. The pultrusion process is a proven manufacturing method for obtaining lengths of high quality GFRP and became a competitive alternative to traditional structural materials. Factors in choosing GFRP materials for greenhouse applications are: lightweight, non?corrosive, chemically resistant, possess good fatigue strength, provide electrical and flame resistance. In this study, the structural behavior of the greenhouse structure, which is constructed using pultruded GFRP structural element, has been investigated. The mechanical properties of the pultruded GFRP sections have been computed using national and international standards. The proposed structures have been modeled using well known finite element program (SAP, 2000) to investigate the structural behavior under the static and dynamic loads. The pultruded GFRP box section and three different connection details have also been developed. The advantages and importance of GFRP profiles used in the greenhouse structure have been demonstrated.
机译:为了种植更经济的农产品,世界许多港口都在进行研究活动,以开发或生产新的温室建筑材料。玻璃纤维增​​强塑料(GFRP)是一种新的技术材料。 GFRP材料基本上由树脂和连续或短切纤维组成,并且它们通过使用各种制造方法来制造。拉挤成型工艺是获得高质量GFRP长度的行之有效的制造方法,已成为传统结构材料的竞争替代品。选择用于温室的GFRP材料的因素包括:轻巧,无腐蚀,耐化学腐蚀,具有良好的疲劳强度,具有电气和阻燃性。在这项研究中,已经研究了使用拉挤的GFRP结构元件构造的温室结构的结构行为。 GFRP拉挤型材的机械性能已使用国家和国际标准进行了计算。拟议的结构已使用众所周知的有限元程序(SAP,2000)进行了建模,以研究静态和动态载荷下的结构行为。拉挤的GFRP盒部分和三个不同的连接细节也已开发出来。已经证明了在温室结构中使用GFRP的优点和重要性。

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