PA66 CF 27 has high strength, high modulus, good impact strength in mechanical aspects, good heat resistance thermally, strong wear resistance, low shrinkage rate for dimensional stability, low density for lightweight design, and good corrosion resistance chemically.
PA66 CF 27 is a carbon fiber-reinforced nylon 66 composite. PA66 is the base, CF means carbon fiber, and 27 shows 27% fiber content.
Mechanical Properties
– High Strength: Carbon fiber boosts PA66’s tensile and bending strengths, allowing PA66 CF 27 to bear more force. Used for strong mechanical parts, auto components, etc.
– High Modulus: It has a fairly high elastic modulus, not easily deformed, maintaining good size and shape stability. Fit for precision parts.
– Good Impact Strength: While strong, it also has good impact toughness. It absorbs and disperses energy on impact, reducing damage risk and improving product reliability and lifespan.
Thermal Properties
– Good Heat Resistance: PA66 has some heat resistance. Carbon fiber further improves its thermal stability, significantly raising the heat distortion temperature. Meets high-temperature use needs like around car engines.
Wear Resistance Properties
– Strong Wear Resistance: PA66 has decent wear resistance. With carbon fiber added, PA66 CF 27 becomes even better, reducing long-term wear. Good for frequently frictioned parts like gears and bearings.
Dimensional Stability Properties
– Low Shrinkage Rate: Carbon fiber cuts PA66’s shrinkage rate. Size changes during molding and use are small, helping maintain product accuracy and stability. Important for precision engineering parts.
Lightweight Properties
– Low Density: Carbon fiber is low-density. PA66 CF 27 enhances material properties without much weight gain, giving the composite a high specific strength and modulus. Helps with product lightweight design, widely used in aerospace, auto, sports, etc.
Chemical Resistance Properties
– Good Corrosion Resistance: PA66 tolerates many chemicals. Adding carbon fiber doesn’t reduce this. PA66 CF 27 resists acid, base, salt erosion, suitable for parts in harsh chemical environments like in chemical equipment.
Application Fields
Corresponding Components
Main Properties Demonstrated
Aerospace
Wing, fuselage structural parts, etc.
High stren., high mod. for struct. stren. & rigid., good dim. stab. for prec., lightwt. for flight, chem. res. for env.
Automobile Manufacturing
Engine peripheral components, automobile wheels, transmission gears, etc.
Heat res. for engine’s high temp., high stren. to bear ext. forces, wear res. for freq. fric., lightwt. to boost fuel eff.
Electronic Appliances
Electronic equipment housings, precision instrument brackets, etc.
High mod. for shape prec., dim. stab. for fit, good impact stren. to prevent damage, chem. res. to handle env.
Sporting Goods
Tennis rackets, golf clubs, bicycle frames, etc.
High stren. to bear sports impacts, high mod. for shape, lightwt. for handling, wear res. to extend life.
Mechanical Manufacturing
Various high-precision mechanical parts, bearings, lead screws, etc.
High stren. & high mod. for op., good dim. stab. for assem. prec., wear res. for fric. work cond.
Chemical Equipment
Chemical pipelines, reactor internals, etc.
Chem. res. to resist acid, base, salt, high stren. to bear pres., dim. stab. for equip. run.
If you would like to buy Nylon PA66 CF 27 Compound Materials or more CFRTPs, please contact Carbon New Material directly.
Learn more about CFRTPs or LCFRTPs, please click here.
Contact Us
If you want to obtain information such as product specifications, performance, and price, choose a suitable product according to your own needs. Meanwhile, you can ask the manufacturer to provide samples for testing to ensure that the material meets your usage requirements.
If you are interested in purchasing this composite material, please contact the manufacturer Carbon (Xiamen) New Material directly.
Carbon fiber is thin, strong filaments made mostly of carbon. It possesses exceptional strength and stiffness while being lightweight. These properties make carbon fibers highly valuable in various industries. They are used in aerospace for lightweight yet strong structures, in sports equipment to enhance performance, and in many other fields where high strength-to-weight ratio is crucial.
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What are CF Reinforced Thermoplastic Composites?
CF Reinforced Thermoplastic Composites are materials where carbon fibers are incorporated into a thermoplastic matrix. They combine the strength and stiffness of carbon fibers with the processability and recyclability of thermoplastics. For instance, they are used in automotive parts like bumper beams.
What are the benefits of CF Reinforced Thermoplastic Composites over traditional composites?
The key benefits include faster production cycles, easier recyclability, and better impact resistance. They also offer design flexibility. An example is in the manufacturing of consumer electronics casings where complex shapes can be achieved more easily.
How are CF Reinforced Thermoplastic Composites processed?
Common processing methods include injection molding, extrusion, and compression molding. Injection molding is widely used for mass production. For example, in the production of small components for the medical industry.
What industries use CF Reinforced Thermoplastic Composites?
They are utilized in aerospace, automotive, medical, and sports equipment industries. In aerospace, they can be found in interior components. In the medical field, they might be used in prosthetics.
How does the carbon fiber content affect the properties of the composites?
Higher carbon fiber content generally leads to increased strength and stiffness but may reduce ductility. A moderate content is often balanced for specific applications. For example, a higher content might be preferred in structural parts of a race car.
What are the challenges in using CF Reinforced Thermoplastic Composites?
Challenges include higher material costs, complex processing equipment requirements, and ensuring uniform fiber dispersion. Issues with adhesion between the fibers and the matrix can also arise. An example is in achieving consistent quality in large-scale production.