• Carbon Fiber Manufactured Fabrics System 1
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  • Carbon Fiber Manufactured Fabrics System 3
Carbon Fiber Manufactured Fabrics

Carbon Fiber Manufactured Fabrics

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$1.00 - 10.00 / kg get latest price
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Description:

With raw material of carbon fiber yarn from Toray or Mitsubishi Japan , our company can produce both woven fabric and knitted fabric, including unidirectional fabrics, plain weave fabric, twill fabric, satin fabric and multi-axial fabrics. The main use of carbon fabric is to make structural materials reinforced with resin, metal, and ceramic etc. Among the existing structural materials, carbon fiber reinforced epoxy resin composites have the highest specific strength and modulus. In the areas of strict requirements on density, stiffness, weight, fatigue characteristics, high temperature and high chemical stability, CFRP have an outstanding advantage.

Carbon Fiber Manufactured Fabrics

Product Features:
  ● Light weight
  ● Products high strength, high modulus
  ● Superior acid corrosion resistance

Product Specifications:
  Density:100-400g/m2.
  Item:1k,2k,3k,6k,12k.
  Weave:Plain,Twill,Satin,Multiaxial,UD。
Packaging:
  Each roll is wound onto a paper tube which has an inside diameter of 76mm and the mat roll has a diameter of 225mm. The  roll is wrapped up with plastic film,and then packed in a cardboard box or wrapped up with kraft paper. The rolls can be horizontally placed. For transportation, the rolls can be loaded into a cantainer directly or on pallets.

Carbon Fiber Manufactured Fabrics

FAQ:

1.What is the delivery time ?

15days after receiving the deposit

2.Are you a trading company or factory.

We are factory,and we have more than 10 years of experience.

Carbon Fiber Manufactured Fabrics

Q:Can fiberglass fabric be used for reinforcement in bridge structures?
Yes, fiberglass fabric can be used for reinforcement in bridge structures. Fiberglass fabric is a strong and durable material that has several advantages when used in the construction of bridges. One of the main benefits of using fiberglass fabric for reinforcement in bridge structures is its high strength-to-weight ratio. Fiberglass fabric is known for its exceptional strength, yet it is significantly lighter than traditional reinforcement materials such as steel. This makes it an ideal choice for bridges, as it reduces the overall weight of the structure while still providing the necessary strength and support. Additionally, fiberglass fabric is corrosion-resistant, which is particularly advantageous for bridge structures exposed to harsh weather conditions and environments. Unlike steel, which is susceptible to corrosion and rusting, fiberglass fabric is not affected by moisture, chemicals, or the elements. This not only extends the lifespan of the bridge but also reduces maintenance and repair costs over time. Another advantage of using fiberglass fabric for reinforcement in bridge structures is its flexibility and ease of installation. Fiberglass fabric can be easily molded and shaped to fit the specific design requirements of the bridge, making it a versatile material that can adapt to various structural configurations. It is also relatively simple to install, requiring less time and labor compared to traditional reinforcement materials. Furthermore, fiberglass fabric offers excellent durability and longevity. It has a high resistance to fatigue and can withstand heavy loads and repetitive stresses over time. This makes it a reliable choice for bridge structures that need to accommodate heavy traffic and constant usage. In conclusion, fiberglass fabric can indeed be used for reinforcement in bridge structures. Its high strength-to-weight ratio, corrosion resistance, flexibility, ease of installation, and durability make it an excellent alternative to traditional reinforcement materials such as steel. By utilizing fiberglass fabric, bridges can be constructed to be lighter, more resistant to corrosion, and longer-lasting.
Q:Can fiberglass fabric be used for insulation tapes?
Yes, fiberglass fabric can be used for insulation tapes. It is a commonly used material for its excellent thermal insulation properties and durability, making it suitable for applications requiring insulation tapes.
Q:What are the different fiberglass fabric finishes for abrasion resistance?
Fiberglass fabric finishes designed to enhance abrasion resistance come in various types. These finishes are applied during the fabric's manufacturing process, boosting its durability and resistance to wear and tear. One commonly utilized finish for abrasion resistance is the silicone coating. By forming a protective layer on the fabric's surface, this coating increases resistance to abrasion, ensuring a longer lifespan. Silicone-coated fiberglass fabrics find frequent use in applications that involve high levels of abrasion, like conveyor belts and industrial curtains. Another popular choice for abrasion resistance is the PVC coating. This type of coating acts as a strong barrier against friction and wear, making the fabric more resistant to tearing, puncturing, and other forms of damage. PVC-coated fiberglass fabrics are commonly seen in protective clothing, tents, and machinery or equipment covers. Apart from silicone and PVC coatings, there are other finishes available to enhance abrasion resistance in fiberglass fabrics. For instance, some fabrics may undergo treatment with a polyurethane coating, which offers similar benefits to silicone and PVC coatings. Other finishes may involve chemical treatments or laminations that provide improved abrasion resistance. Ultimately, the selection of a fiberglass fabric finish for abrasion resistance depends on the specific application and desired level of protection. Manufacturers and users of fiberglass fabrics should carefully consider the intended use and potential wear and tear the fabric may endure to choose the most suitable finish for their requirements.
Q:What are the different fiberglass fabric coatings for moisture resistance?
There are several different fiberglass fabric coatings available for moisture resistance, including silicone, polyurethane, acrylic, and vinyl. These coatings create a barrier that prevents water from penetrating the fiberglass fabric, making it suitable for applications where moisture resistance is essential.
Q:Is fiberglass fabric suitable for use in automotive upholstery?
Yes, fiberglass fabric is suitable for use in automotive upholstery. Fiberglass fabric is known for its durability, strength, and resistance to heat and chemicals, making it a popular choice for various industries including automotive. It is lightweight, easy to handle, and can be molded into different shapes, making it ideal for creating automotive upholstery that needs to conform to the contours of the vehicle's interior. Additionally, fiberglass fabric is resistant to fading, staining, and wear, which is important for upholstery that is constantly exposed to sunlight, spills, and frequent use. It also has excellent insulation properties, providing added comfort and noise reduction in the vehicle. Overall, fiberglass fabric is a reliable and versatile material for automotive upholstery, offering a combination of strength, durability, and aesthetic appeal.
Q:What is the tear strength of fiberglass fabric?
The tear strength of fiberglass fabric can vary based on several factors, including fabric thickness, weave type, and material quality. Typically, fiberglass fabric exhibits high tear strength due to the resilient and strong nature of its fibers, surpassing the strength of various textile materials like cotton, nylon, or polyester. However, it's important to consider that tear strength may also be influenced by external elements like temperature, exposure to chemicals or UV radiation, and the presence of defects or damages in the fabric. Consequently, it is advisable to consult the manufacturer's specifications or conduct a tear strength test to precisely determine the tear resistance of a particular fiberglass fabric.
Q:Can fiberglass fabric be used for making insulation tapes?
Yes, fiberglass fabric can be used for making insulation tapes. It is a commonly used material for insulation due to its high thermal resistance and ability to withstand high temperatures. Its durability and flexibility make it suitable for creating tapes used in various insulation applications.
Q:How do fiberglass fabrics perform in terms of dimensional stability?
The excellent dimensional stability of fiberglass fabrics is well-known. This quality pertains to the fabric's ability to retain its shape and size in different conditions, including temperature fluctuations, exposure to moisture, and mechanical strain. The remarkable tensile strength and low coefficient of thermal expansion inherent in fiberglass endow it with great resistance to dimensional changes. Fiberglass fabrics do not easily shrink, stretch, or deform, even when exposed to extreme temperatures or moisture. This stability is of utmost importance in applications that necessitate precise dimensions and consistent shape preservation, such as in the production of aircraft parts, automotive components, and structural reinforcements. Moreover, fiberglass fabrics display minimal creep, which refers to the gradual deformation or elongation of a material under constant load over time. This resistance to creep guarantees that fiberglass fabrics maintain their original dimensions and shape for extended periods, making them ideal for applications that require long-term stability, such as in building construction or industrial machinery. In summary, fiberglass fabrics exhibit exceptional dimensional stability. Their resistance to shrinkage, stretching, deformation, and creep renders them highly dependable and suitable for a wide array of applications where the preservation of precise dimensions and shape is critical.
Q:What are the different fiberglass fabric weaves for electrical insulation?
Electrical insulation in the electrical industry commonly utilizes various fiberglass fabric weaves. These weaves are specifically designed to offer high electrical resistance and thermal stability, catering to different applications. Among the weaves used for electrical insulation, the plain weave stands as one of the most frequently employed options. It consists of a simple over-under pattern, with each weft yarn alternately passing over and under each warp yarn. The plain weave ensures both strength and flexibility, making it suitable for applications that require both electrical insulation and mechanical protection. Another weave commonly utilized for electrical insulation is the satin weave. This weave boasts a more intricate pattern, with multiple interlacing points between the warp and weft yarns. By offering a smoother surface, the satin weave reduces the risk of abrasion and damage, proving advantageous in applications where direct contact with conductive materials is necessary. Twill weave, characterized by a diagonal pattern, is another popular choice for electrical insulation. In this weave, each weft yarn passes over two or more warp yarns before going under one. Twill weave fabrics offer enhanced strength and durability in comparison to plain weave fabrics, making them ideal for applications that require increased mechanical protection. Lastly, specialty weaves are available to fulfill specific electrical insulation needs. For instance, leno weave involves twisting a pair of warp yarns around each weft yarn, resulting in a more secure fabric structure. Leno weave fabrics are commonly used when high temperature resistance and dimensional stability are crucial. In conclusion, the choice of fiberglass fabric weave for electrical insulation depends on the specific requirements of the application. Plain weave, satin weave, twill weave, and specialty weaves, such as leno weave, are all commonly utilized to provide the necessary electrical resistance and thermal stability.
Q:Can fiberglass fabrics be used for insulation in pipelines?
Yes, fiberglass fabrics can be used for insulation in pipelines. Fiberglass fabrics have excellent thermal insulating properties as they can effectively prevent heat transfer. When used as insulation in pipelines, fiberglass fabrics can help to maintain the desired temperature of the fluid being transported, whether it is hot or cold. Additionally, fiberglass fabrics are resistant to moisture and chemicals, which makes them suitable for use in various environments. They are also lightweight and flexible, allowing for easy installation and maintenance. Overall, fiberglass fabrics are a popular choice for pipeline insulation due to their thermal insulation capabilities and durability.

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