Javascript must be enabled to continue!
Recycling of Carbon Fiber-Reinforced Composites—Difficulties and Future Perspectives
View through CrossRef
Carbon fiber-reinforced composites present an exciting combination of properties and offer clear advantages that make them a perfect replacement for a spread of materials. Consequently, in recent years, their production has dramatically increased as well as the quantity of waste materials. As future legislations are likely to prevent the use of landfills and incineration to dispose of composite waste, alternative solutions such as recycling are considered as one of the urgent problems to be settled. This study presents the leading technologies for recycling carbon fiber-reinforced composites, focusing on chemical recycling using sub- and supercritical fluids. These new reaction media have been demonstrated to be more manageable and efficient in recovering clean fibers with good mechanical properties. The conventional technologies of carbon fibers recycling have also been reviewed and described with both advantages and drawbacks.
Title: Recycling of Carbon Fiber-Reinforced Composites—Difficulties and Future Perspectives
Description:
Carbon fiber-reinforced composites present an exciting combination of properties and offer clear advantages that make them a perfect replacement for a spread of materials.
Consequently, in recent years, their production has dramatically increased as well as the quantity of waste materials.
As future legislations are likely to prevent the use of landfills and incineration to dispose of composite waste, alternative solutions such as recycling are considered as one of the urgent problems to be settled.
This study presents the leading technologies for recycling carbon fiber-reinforced composites, focusing on chemical recycling using sub- and supercritical fluids.
These new reaction media have been demonstrated to be more manageable and efficient in recovering clean fibers with good mechanical properties.
The conventional technologies of carbon fibers recycling have also been reviewed and described with both advantages and drawbacks.
Related Results
Carbon fiber-reinforced epoxy with 100% fiber recycling by transesterification reactions
Carbon fiber-reinforced epoxy with 100% fiber recycling by transesterification reactions
Carbon fiber (CF)-reinforced epoxy is the most commonly used advanced composite with high performance. However, these composites usually face intractable disposal problems in their...
Tensile and flexural strength enhancement in carbon‐fiber epoxy composites using a novel method of particle type electrophoretic deposition of carboxyl functionalized graphene on carbon fiber
Tensile and flexural strength enhancement in carbon‐fiber epoxy composites using a novel method of particle type electrophoretic deposition of carboxyl functionalized graphene on carbon fiber
AbstractPolymer composites reinforced with carbon fiber (CF) are strong, light weight and corrosion‐resistant, and have a wide range of applications in automobile, sports, aerospac...
Effect of Fiber Content on the Mechanical Properties of Jute Fiber Reinforced Perlite/Gypsum Composites
Effect of Fiber Content on the Mechanical Properties of Jute Fiber Reinforced Perlite/Gypsum Composites
Fiber reinforcement is one of the ways for the improvement of the mechanical properties of composite materials. Previously, it was seen that the fiber content in composites played ...
Physico-Mechanical Behaviors of Chemically Treated Natural Fibers Reinforced Hybrid Polypropylene Composites
Physico-Mechanical Behaviors of Chemically Treated Natural Fibers Reinforced Hybrid Polypropylene Composites
The goal of current research is to replace synthetic materials with natural, biodegradable, and renewable ones. Natural fiber composites are extensively studied due to their unique...
Mechanical Properties of GF/CF Hybrid ABS Composite by DFFIM
Mechanical Properties of GF/CF Hybrid ABS Composite by DFFIM
GF reinforced polymer composites to improve the mechanical properties by increasing fiber content, but there is a limit. On the contrary, CF reinforced polymer composites are super...
Characterization of the coir fiber from different coconut varieties to enhance the performance of coir fiber-reinforced natural rubber composites
Characterization of the coir fiber from different coconut varieties to enhance the performance of coir fiber-reinforced natural rubber composites
The manufacture of composite materials reinforced with bristle fiber that possess distinct properties is highly attractive for novel applications. The quality variations in coir fi...
Multi-Facility Location Optimization to Analyze the Economics of Plastic Recycling Systems: A Study Integrating K-Means and Monte Carlo Methods
Multi-Facility Location Optimization to Analyze the Economics of Plastic Recycling Systems: A Study Integrating K-Means and Monte Carlo Methods
Abstract
Plastic waste recycling is essential for sustainable practices, but it suffers from inefficiency due to a lack of a secondary market and difficulties in sep...
Enhancement of Solid Particle Erosion‐Resistance in Carbon‐Fiber Epoxy Composites Using Electrophoretically Deposited Carboxyl Functionalized Graphene on Carbon Fiber
Enhancement of Solid Particle Erosion‐Resistance in Carbon‐Fiber Epoxy Composites Using Electrophoretically Deposited Carboxyl Functionalized Graphene on Carbon Fiber
ABSTRACT
Carbon fiber reinforced polymer (CFRP) composites exhibit high specific strength and stiffness, making them suitable for application...

