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A Review on Mechanical Behavior of FRP Composites at Different Loading Speeds

机译:FRP复合材料在不同加载速度下的力学行为研究进展

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摘要

Fiber-reinforced polymer (FRP) composites are increasingly becoming suitable and durable materials in the repair and replacement of traditional metallic materials. The built-in promise of performance assurance and retention of structural integrity in harsh and hostile environments of these materials certainly offers an alternative and attractive avenue for a wider range application to explore its potential to the zenith. The toughest challenge faced by material scientists is to assess and ascertain its behavioral log in a range of loading rates. The heterogeneity and responses of multiple distinct phases to varying loading conditions are most often complex and far away from comprehensive conclusion. Furthermore, composites with common structural polymer matrices quite often absorb moisture during service period. Then, FRPs become a much more complex system to comprehend its sensitivity to experimental variation. The present article emphasizes the need for understanding this perpetual problem of FRPs which might pose a threat to its prospects.
机译:纤维增强聚合物(FRP)复合材料正日益成为维修和替代传统金属材料的合适且耐用的材料。这些材料在苛刻和恶劣环境中的性能保证和保持结构完整性的内在承诺无疑为更广泛的应用探索其顶峰潜力提供了另一种诱人的途径。材料科学家面临的最严峻挑战是评估和确定其在各种加载速率下的行为记录。多个不同相对变化的加载条件的异质性和响应通常是复杂的,并且远离综合结论。此外,具有常见结构聚合物基质的复合材料在使用期间经常吸收水分。然后,FRP变得更加复杂,以了解其对实验变化的敏感性。本文强调需要理解这种永久性的玻璃钢问题,这可能对其前景构成威胁。

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