Next Generation Lightweight Structural Composite Materials for Future Mobility Review: Applicability of Self-Reinforced Composites

被引:0
|
作者
Kim, Mi Na [1 ]
Jang, Ji-un [2 ]
Lee, Hyeseong [3 ]
Oh, Myung Jun [1 ]
Kim, Seong Yun [3 ]
机构
[1] Jeonbuk Natl Univ, Dept Carbon Composites Convergence Mat Engn, Jeonju 54896, South Korea
[2] Hanyang Univ, Res Inst Ind Sci, Seoul 04763, South Korea
[3] Jeonbuk Natl Univ, Dept Organ Mat & Text Engn, Jeonju 54896, South Korea
来源
COMPOSITES RESEARCH | 2023年 / 36卷 / 01期
关键词
Carbon fiber reinforced composite; Self-reinforced composite; Lightweight structural materials; Future mobility; SINGLE POLYMER COMPOSITES; HIGH-DENSITY POLYETHYLENE; MECHANICAL-PROPERTIES; INTERFACIAL PROPERTIES; HOT COMPACTION; STRENGTH; SURFACE; PERFORMANCE; OXIDATION; PREPREGS;
D O I
10.7234/composres.2023.36.1.001
中图分类号
TB33 [复合材料];
学科分类号
摘要
Demand for energy consumption reduction is increasing according to the development expectations of future mobility. Lightweight structural materials are known as a method to reduce greenhouse gas emissions and improve energy efficiency. In particular, fiber reinforced polymer composite (FRP) is attracting attention as a material that can replace existing metal alloys due to its excellent mechanical properties and light weight. In this paper, industrial applications and research trends of carbon fiber reinforced composites (CFRP, carbon FRP) and self -reinforced composites (SRC) were reviewed based on the reinforcement, polymer matrix, and manufacturing process. In order to overcome the expensive process cost and long manufacturing time of the epoxy resin-based autoclave method, which is mainly used in the aircraft field, mass production of CFRP-applied electric vehicles has been reported using a high-pressure resin transfer molding process including fast-curing epoxy. In addition, thermoplastic resin-based CFRP and interface enhancement methods to solve the recycling issue of carbon fiber composites were reviewed in terms of materials and processes. To form a perfect matrix-reinforcement interface, which is known as the major factor inducing the excellent mechanical properties of FRP, studies on SRC impregnated with the same matrix in polymer fibers have been reported. The physical and mechanical properties of SRC based on various thermoplastic polymers were reviewed in terms of polymer orientation and composite structure. In addition, a copolymer matrix strategy for extending the processing window of highly drawn polypropylene fiber-based SRC was discussed. The application of CFRP and SRC as lightweight structural materials can provide potential options for improving the energy efficiency of future mobility.
引用
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页码:1 / 15
页数:15
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