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首页> 外文期刊>International journal of applied glass science >Glass Fiber-Reinforced Composites: From Formulation to Application
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Glass Fiber-Reinforced Composites: From Formulation to Application

机译:玻璃纤维增​​强复合材料:从配方到应用

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摘要

Glass fiber-reinforced composite materials are attractive because their properties can be tailored to meet the specific needs of a variety of applications. The mechanical and thermal properties of a composite generally follow the rule of mixtures. As glass fiber is the major component at 70-75% by weight (50-60% by volume), selection of the correct glass product is critical. Glass fiber reinforcement is available in many forms, including continuous rovings, chopped fibers, fabrics, and nonwoven mats. In addition to form, selection of a reinforcement product involves choosing a glass type, chemistry on the glass (sizing) filament diameter, and tex. Glass formulation or type governs mechanical, thermal, and corrosion properties, whereas sizing protects the glass during handling and gives compatibility with the resin system. Filament diameter and strand tex are chosen to balance physical properties and manufacturing efficiency. A significant amount of tensile strength, up to 50%, may be lost from a pristine single filament to a multi-filament roving. To minimize this degradation, the utmost care and consistency must be exercised in the fiber forming process. This, coupled with selection of a high-performance glass formulation, enables use of composites in highly demanding applications, such as pressure vessels and ballistic armor.
机译:玻璃纤维增​​强复合材料很有吸引力,因为可以调整其性能以满足各种应用的特定需求。复合材料的机械和热性能通常遵循混合物的规则。由于玻璃纤维是70-75%重量(50-60%体积)的主要成分,因此选择正确的玻璃产品至关重要。玻璃纤维增​​强材料有多种形式,包括连续粗纱,短切纤维,织物和非织造垫。除形式外,增强产品的选择还包括选择玻璃类型,玻璃(上浆)长丝直径和特克斯的化学性质。玻璃的配方或类型决定了机械,热和腐蚀性能,而施胶可在处理过程中保护玻璃并与树脂体系相容。选择长丝直径和股线特克斯以平衡物理性能和制造效率。从原始的单丝到多丝粗纱可能会损失多达50%的显着拉伸强度。为了使这种降解最小化,在纤维形成过程中必须格外小心和保持一致性。这样,再加上高性能玻璃配方的选择,便可以在压力容器和弹道装甲等要求很高的应用中使用复合材料。

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