首页> 外文会议>Advancing Materials in the Global Economy―Applications, Emerging Markets and Evolving Technologies >PULTRUDED COMPOSITES IN IMPACT AND TOUGHNESS DRIVEN APPLICATIONS ACHIEVE NEW PERFORMANCE LEVELS WITH POLYURETHANE RESIN
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PULTRUDED COMPOSITES IN IMPACT AND TOUGHNESS DRIVEN APPLICATIONS ACHIEVE NEW PERFORMANCE LEVELS WITH POLYURETHANE RESIN

机译:冲击和韧性驱动应用中的拉挤复合材料,采用聚氨酯树脂可达到新的性能水平

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Historically pultruded products have been manufactured using relatively brittle matrices such as polyester, epoxy and phenolic. For many years vinyl ester resins have been used as well for improved toughness but often with a reduction in processability and higher cost. Several polyurethane pultrusion technologies have now become available that provide exceptional performance potential in applications requiring damage tolerance, impact resistance and overall composite toughness. Two-component thermoset polyurethane pultrusion capability has quickly advanced from small simple shapes having only unidirectional fibers to complex profiles with perimeter width exceeding 76cm (30 inches) and utilizing engineered fiber architectures. Recently polyurethane hybrid resins have also been introduced that significantly increase the toughness and strength of pultruded composites while providing conventional processing advanatages. These resins are based on the same styrene cross-linking addition reaction as the polyester/vinyl ester technology and fall somewhat short of the properties realized by two component thermoset polyurethanes based on the step reaction of isocyanate and polyols. Thermoplastic polyurethane is yet another emerging option to provide tougher pultruded products while providing additional features not achievable with thermosets. This paper compares polyurethane resin options to traditional pultrusion resins to differentiate their niche in pultruded composite solutions for infrastructure, transportation, sporting goods, industrial, security and military applications.
机译:从历史上看,拉挤产品是使用较脆的基质(例如聚酯,环氧树脂和酚醛树脂)制造的。多年来,乙烯基酯树脂也一直用于提高韧性,但通常会降低加工性能并增加成本。现在已经有几种聚氨酯拉挤成型技术可用,它们在需要耐破损性,抗冲击性和整体复合材料韧性的应用中具有非凡的性能潜力。两组分的热固性聚氨酯拉挤成型能力已从仅具有单向纤维的小型简单形状迅速发展为周长超过76厘米(30英寸)的复杂型材,并采用了工程纤维结构。最近,还引入了聚氨酯杂化树脂,该聚氨酯杂化树脂可显着提高拉挤复合材料的韧性和强度,同时提供常规的加工优势。这些树脂基于与聚酯/乙烯基酯技术相同的苯乙烯交联加成反应,并且略微低于基于异氰酸酯和多元醇的分步反应的两组分热固性聚氨酯实现的性能。热塑性聚氨酯是提供更坚韧的拉挤产品,同时提供热固性塑料无法实现的其他功能的又一个新兴选择。本文将聚氨酯树脂的选择与传统的拉挤成型树脂进行了比较,以区分其在基础​​设施,运输,体育用品,工业,安全和军事应用的拉挤复合材料解决方案中的优势。

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