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The development and the future of advanced polymer composites in the civil infrastructure

机译:民事基础设施高级聚合物复合材料的发展与未来

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A polymer composite is a material consisting of fibres bound into a polymer matrix to maximise specific performance properties of the final product. A composite structural system is one in which two dissimilar materials are combined to form an efficient component such that, when under load, the two materials act to maximise specific performance properties. Both of these definitions relate to composite structural systems relevant to the civil infrastructure. Composites in structural/civil engineering are utilized in broadly three ways, these are: (a) as load bearing infill panels, (b) as all composite material structures, (c) as one of two or more materials which are combined to form a structural system and to act compositely under load The development of each of these systems will be discussed separately as observed from a UK perspective. Glass fibre/polymer composites (GFRP) were first introduced into the UK during the Second World War as materials suitable for housing radar and electronic equipment. GFRP composites are non-conductive, consequently, no distortion of radio waves occurs as they are transmitted through the material. Similar housings are currently used on the north east coast of England and generally consist of eight or more segments bolted to a steel base ring which is attached to concrete foundations and to a top cap moulding made in GFRP. Adjacent panels are connected by return of flanges which, when correctly sized, can form an integral frame within the radome. From the late forties to the late sixties the interest in and the use of polymer composites in the civil infrastructure was sporadic and any systems which were developed were expensive. In addition, because of the ease of manufacturing GFRP hand lay-up systems a number of unscrupulous small manufacturers produced cheap and inferior components which would generally have had no post-cure; these composites degraded very quickly and damaged the reputation of composites in the civil engineering industry.
机译:聚合物复合材料是由结合到聚合物基质中的纤维组成的材料,以最大化最终产品的特异性性能。复合结构系统是其中两种不同材料组合形成有效成分的结构系统,使得当在负载下,两种材料的作用是最大化特异性性能。这两个定义都涉及与民事基础设施相关的复合结构系统。结构/土木工程中的复合材料以广义三种方式利用,这些是:(a)作为载荷填充板,(b)作为所有复合材料结构,(c)作为组合形成a的两种或更多种材料之一结构系统和在加载下组合的行动,这些系统的开发将从英国的角度观察到。在第二次世界大战期间,首先将玻璃纤维/聚合物复合材料(GFRP)作为适用于住房雷达和电子设备的材料。因此,GFRP复合材料是非导电的,因此,由于通过材料传输而不会发生无线电波的失真。目前在英国东北海岸使用类似的外壳,通常由螺栓固定在钢基环上的八个或更多个段组成,该钢基环连接到混凝土基础上,并加入GFRP中制造的顶盖成型。相邻的面板通过旋转旋转连接,该凸缘在正确尺寸的情况下,可以在天线罩内形成一体的框架。从迟到的六十年代到六十年代,民用基础设施中聚合物复合材料的兴趣和使用是零星的,并且任何开发的系统都很昂贵。此外,由于易于制造GFRP手铺设系统,一些令人肆无忌惮的小型制造商生产的廉价和劣质部件通常没有治愈后;这些复合材料非常快速地降低并损坏了土木工程行业复合材料的声誉。

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