高速冲击对纤维增强纺织复合材料的影响:航空发动机应用的潜力

IF 3.4 Q1 ENGINEERING, MECHANICAL
Yinghong Li, Xuefeng Chen, Jin Zhou, Xiaochuan Liu, Di Zhang, Feiping Du, Weifeng He, Pu Jia, Haibao Liu
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引用次数: 4

摘要

大量研究表明,纤维增强纺织复合材料由于其高比强度、比刚度、耐腐蚀性和抗疲劳性,对航空航天工业,特别是航空发动机有显著的好处。然而,在广泛的应用中,高速撞击造成的损伤是一个关键的限制因素。本文综述了航空发动机用纤维增强纺织复合材料的发展、材料特性及应用。这些纺织复合材料分为四大类:二维编织复合材料、二维编织复合材料、三维编织复合材料和三维编织复合材料。并详细讨论了复合材料在高速冲击作用下的复杂损伤机理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A review of high-velocity impact on fiber-reinforced textile composites: Potential for aero engine applications

A review of high-velocity impact on fiber-reinforced textile composites: Potential for aero engine applications

Considerable research has indicated that fiber-reinforced textile composites are significantly beneficial to the aerospace industry, especially aero engines, due to their high specific strength, specific stiffness, corrosion resistance, and fatigue resistance. However, damage caused by high-velocity impacts is a critical limitation factor in a wide range of applications. This paper presents an overview of the development, material characterizations, and applications of fiber-reinforced textile composites for aero engines. These textile composites are classified into four categories including two-dimensional (2D) woven composites, 2D braided composites, 3D woven composites, and 3D braided composites. The complex damage mechanisms of these composite materials due to high-velocity impacts are discussed in detail as well.

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