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PULTRUSION VERSUS CASTING PROCESSES FOR THE PRODUCTION OF FABRIC-CEMENT COMPOSITES

机译:拉挤铸造工艺用于生产织物 - 水泥复合材料

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There is growing interest in recent years in the use of fabrics as reinforcements for cement composites. The present paper addresses the influence of the production processes, casting and pultrusion of fabric-cement composites, on the mechanical properties of the composites, fabric-matrix bond and microstructural characteristics. Bonded glass mesh fabrics, woven polyethylene fabrics and warp knitted weft insertion polypropylene fabrics were studied. Tensile, flexural and fabric-matrix bond tests were conducted to study the mechanical performance of the composites. SEM observations were carried out to correlate microstructural characteristics with mechanical performance. The advantages of using the pultrusion process for the production of fabric-cement composites were clearly identified in this study. Improved mechanical performance was obtained for fabric-cement composites produced with the pultrusion process, especially with fabrics made from multifilament yarns (not impregnated in epoxy) having open junction points. This improved mechanical performance could be accounted for by the improved bonding, which was induced by the impregnation of the spaces between the filaments in the pultrusion process, and the lack of such effective impregnation is the casting process. However, in the epoxy impregnated fabric and the mono-filament fabric sufficient interfacial bonding could be obtained in the casting process and pultrusion did not yield a significant advantage.
机译:近年来在使用织物作为水泥复合材料的增强剂时,近年来的兴趣日益增长。本文解决了织物 - 水泥复合材料的生产过程,铸造和拉伸对复合材料的机械性能,织物 - 基质键和微观结构特性的影响。研究了粘结玻璃网织物,编织聚乙烯织物和经编纬纱纬编聚丙烯织物。进行拉伸,弯曲和织物 - 基质粘合试验,以研究复合材料的机械性能。进行SEM观察以与机械性能相关的微观结构特征。在本研究中清楚地鉴定了使用用于生产织物 - 水泥复合材料的拉挤法的优点。用于采用拉挤工艺生产的织物水泥复合材料,特别是用来自多丝纱线制成的织物(未浸渍在环氧树脂中)的织物,得到改善的机械性能。这种改进的机械性能可以通过改进的粘合来占据,这是通过在拉挤法中的长丝之间的空间的浸渍而引起的,并且缺乏这种有效的浸渍是铸造过程。然而,在环氧浸渍织物中,在铸造过程中可以获得足够的界面织物,并且拉挤阻出没有产生显着的优势。

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