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Research progress on laser processing of carbon fiber-reinforced composites
by
Yu, Xiaotong
, Wang, Zhonghe
, Zheng, Zhao
, Wu, Chunting
, Ma, Yao
in
CAE) and Design
/ Carbon fiber reinforced plastics
/ Carbon fiber reinforcement
/ Computer-Aided Engineering (CAD
/ Corrosion resistance
/ Critical Review
/ Engineering
/ Fiber composites
/ Fiber reinforced polymers
/ Heat affected zone
/ Industrial and Production Engineering
/ Laser processing
/ Lasers
/ Machining
/ Mechanical Engineering
/ Media Management
/ Physical properties
/ Sporting goods
/ Thermal expansion
/ Thermal resistance
2024
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Research progress on laser processing of carbon fiber-reinforced composites
by
Yu, Xiaotong
, Wang, Zhonghe
, Zheng, Zhao
, Wu, Chunting
, Ma, Yao
in
CAE) and Design
/ Carbon fiber reinforced plastics
/ Carbon fiber reinforcement
/ Computer-Aided Engineering (CAD
/ Corrosion resistance
/ Critical Review
/ Engineering
/ Fiber composites
/ Fiber reinforced polymers
/ Heat affected zone
/ Industrial and Production Engineering
/ Laser processing
/ Lasers
/ Machining
/ Mechanical Engineering
/ Media Management
/ Physical properties
/ Sporting goods
/ Thermal expansion
/ Thermal resistance
2024
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Research progress on laser processing of carbon fiber-reinforced composites
by
Yu, Xiaotong
, Wang, Zhonghe
, Zheng, Zhao
, Wu, Chunting
, Ma, Yao
in
CAE) and Design
/ Carbon fiber reinforced plastics
/ Carbon fiber reinforcement
/ Computer-Aided Engineering (CAD
/ Corrosion resistance
/ Critical Review
/ Engineering
/ Fiber composites
/ Fiber reinforced polymers
/ Heat affected zone
/ Industrial and Production Engineering
/ Laser processing
/ Lasers
/ Machining
/ Mechanical Engineering
/ Media Management
/ Physical properties
/ Sporting goods
/ Thermal expansion
/ Thermal resistance
2024
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Research progress on laser processing of carbon fiber-reinforced composites
Journal Article
Research progress on laser processing of carbon fiber-reinforced composites
2024
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Overview
As an advanced high-performance material, carbon fiber-reinforced composites have become one of the most widely used and important materials among all composites, due to their lightweight, high modulus, high strength, low thermal expansion, and corrosion resistance. They are widely used in aerospace, military weaponry, renewable energy, and sports equipment. As a non-contact processing technology, laser processing has many advantages in the machining of carbon fiber-reinforced composites. However, the significant differences in thermal-physical properties between carbon fibers and the resin matrix present substantial challenges for laser processing. During the laser processing of CFRP materials, a heat-affected zone typically forms, which not only affects processing quality but also reduces processing efficiency. Therefore, reducing and eliminating the heat-affected zone has become a critical issue in the laser processing of CFRP materials. In recent years, extensive research on CFRP laser processing technology has been conducted both domestically and internationally, and this paper will provide a summary. This paper conducts a comprehensive and in-depth study of laser processing of carbon fiber composites and explores the effects of different parameters on the heat-affected zone. Additionally, this paper describes the treatment of carbon fiber composites using multi-energy field-assisted laser processing technology, as well as the modeling and optimization of process performance. Finally, an outlook on the development trends of laser processing of CFRP is provided.
Publisher
Springer London,Springer Nature B.V
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