Highly flexible carbon fiber unidirectional UD reinforcement cloth is a high-performance composite material that uses unidirectionally arranged carbon fibers as...
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Highly flexible carbon fiber unidirectional UD reinforcement cloth is a high-performance composite material that uses unidirectionally arranged carbon fibers as...
1K, 3K, 12K carbon fiber plain weave fabrics are high-performance textile materials made from carbon fiber. Plain weave fabrics are woven in alternating warp an...
Wear-resistant and heat-resistant carbon fiber twill weave fabric is made of carbon fiber yarns woven by the twill process. It has the properties of wear resist...
Corrosion-resistant and drug-resistant satin carbon fiber woven fabric adopts satin weaving technology, which makes it have mechanical properties and flexibilit...
Red/black aramid carbon fiber woven fabric is made of aramid fiber and carbon fiber interwoven in a specific proportion. Aramid fiber is known for its impact re...
3K 1000D/1500D plain/twill aramid mixed carbon fiber woven fabric is made of aramid fiber and carbon fiber. Aramid fiber provides impact resistance and toughnes...
Yellow/black I texturedaramid carbon fiber woven fabric is interlaced with yellow aramid fiber and black carbon fiber, combining the characteristics of both mat...
The football pattern aramid-carbon blended fiber cloth combines two good fiber materials, aramid, and carbon fiber. The unique football pattern design on the su...
High temperature-resistant and flame-resistant aramid woven fabric is a functional fabric made of high-performance aramid fiber, which has heat resistance and f...
Twill and plain weave basalt fiber woven fabrics are made from natural basalt melted and drawn into fibers, which are then processed through a weaving process. ...
Metallic and polyester filament woven fabric is a fabric that combines gold and silver yarn with polyester yarn. The gold and silver yarn is treated with metal ...
1. Opening a new chapter of convenient transportationFor water sports enthusiasts, whether they can easily transport paddle boards...
READ MOREThe Structural Basis of 1k Carbon Fiber Plain Weave1k Carbon Fiber Plain Weave, the "1k" here clearly indicates that the carbon f...
READ MORE1. Unique structure and impact resistance of carbon fiber The most notable feature of Carbon Fiber Drone Shell is its unique struc...
READ MORE1. Strength and rigidity: ensuring structural integrity Epoxy Carbon Fiber Prepreg is a composite material that uses a unique comb...
READ MOREBasic features of Carbon Fiber Prepreg Carbon Fiber Prepreg is made of continuous carbon fiber and resin matrix, usually by immers...
READ MOREHigh-performance fiber composites have become an indispensable key material in the aerospace field due to their excellent properties such as light weight, high strength and corrosion resistance. As aircraft and spacecraft develop towards lightweight, high performance and long life, the application scope of such materials continues to expand, and technological innovations continue to emerge. The following is a systematic analysis of its main applications and innovation directions:
Aircraft structural parts
Fuse and wings: The large-scale application of carbon fiber reinforced composites (CFRP) in Boeing 787 (50%) and Airbus A350 (53%) significantly reduces weight (20%-30%) and reduces fuel consumption.
Ear and flaps: The use of thermosetting composite materials (such as epoxy resin matrix) improves fatigue resistance and reduces the number of metal connectors.
Spacecraft components
Rocket shells and fuel tanks: Aramid fibers (such as Kevlar) and carbon fiber hybrid composites are used to reduce launch weight while bearing extreme mechanical loads.
Satellite structure: High modulus carbon fiber/cyanate ester resin system meets dimensional stability requirements and adapts to the thermal cycle environment of space.
Engine components
Fan blades and casings: Ceramic matrix composites (CMC) are used in GE Aviation LEAP engines, which can withstand high temperatures of 1600°C and replace traditional nickel-based alloys.
Nozzle thermal protection: Carbon/carbon composites (C/C) are used in rocket engine nozzles and have excellent ablation resistance.
Breakthrough in material system
New fiber: PBO fiber (Zylon) has a strength of 5.8GPa and is used for high-stress components; graphene-modified fibers improve electrical/thermal conductivity.
Smart composites: Embedded fiber sensors or carbon nanotubes to achieve structural health monitoring (SHM), such as Airbus' "Smart Wing" project.
Manufacturing process upgrade
Automated molding technology: Automatic fiber placement (AFP) and fiber placement (ATL) technologies improve the molding efficiency of large components (such as the integral molding of Boeing 777X wings).
Additive manufacturing: 3D printing of chopped fiber reinforced thermoplastic composites for rapid molding of complex special-shaped parts.
Multifunctional integrated design
Structure-function integration: conductive composite materials are used for lightning protection (such as the leading edge of the Boeing 787 wing); wave-transparent composite materials are used for radomes.
Environmentally friendly and recyclable: The recycling technology of thermoplastic composite materials (such as PEEK-based) meets the EU aviation emission reduction goals.