• Fiberglass ChoppedStand Mat for Repair System 1
  • Fiberglass ChoppedStand Mat for Repair System 2
  • Fiberglass ChoppedStand Mat for Repair System 3
  • Fiberglass ChoppedStand Mat for Repair System 4
  • Fiberglass ChoppedStand Mat for Repair System 5
  • Fiberglass ChoppedStand Mat for Repair System 6
Fiberglass ChoppedStand Mat for Repair

Fiberglass ChoppedStand Mat for Repair

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Loading Port:
Tianjin
Payment Terms:
TT OR LC
Min Order Qty:
100 m.t.
Supply Capability:
20000 m.t./month

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Quick Details

Technique:

Chopped Strand Fiberglass Mat (CSM)

Dimensions:

according to customer's request

Mat Type:

Stitch Bonding Chop Mat

Fiberglass Type:

E-Glass

Softness:

middle

Place of Origin:

Jiangxi, China (Mainland)

Brand Name:

cnbm

Model Number:

CSMEP100,CSMEP120,CSMEP200,etc

Product:

Cooling Tower Building Glass Fiber Fiberglass Chopped Strand Mat(csm)

Color:

White

Width:

1040mm,1250mm,ect.

Area weight:

225-900g/m2

Application:

filament winding,panpel,ect





Packaging & Delivery

Packaging Details:Each roll in one polybag then to an export carton.
Delivery Detail:Within 18 days after confirm order

Fiberglass Chopped strand mat

 

Powder Strand Mats  Product Features:

 

1) Uniform density ensures consistent fiberglass content and mechanical properties of the composites products.

 

2)Uniform powder distribution ensures good mat integrity, little loose fibers and small roll diameter.

 

3) Excellent flexibility ensures good mold ability with no spring back at sharp angles.

 

4)Fast and consistent wet-out speed in resins and rapid air lease reduce resin consumption and production cost and enhances productivity and mechanical properties of the end products.

 

5)The composite products have high dry and wet tensile strength and good transparency.

 

Picture

Fiberglass ChoppedStand Mat for Repair

Fiberglass ChoppedStand Mat for Repair

Fiberglass ChoppedStand Mat for Repair

Fiberglass ChoppedStand Mat for Repair

Fiberglass ChoppedStand Mat for Repair



Q:Can fiberglass chopped strand be used in corrosive environments?
Fiberglass chopped strand can be used in certain corrosive environments, but it is important to consider the specific type of resin used in combination with the chopped strand. Fiberglass itself is resistant to many corrosive substances, including saltwater, mild acids, and bases. However, the resin used to bind the chopped strand together can vary in its resistance to corrosion. Epoxy resin, for example, is highly resistant to corrosion and can withstand exposure to a wide range of chemicals and corrosive environments. It is commonly used in applications where fiberglass chopped strand is required to resist corrosion, such as in the construction of chemical storage tanks, pipes, and other industrial equipment. On the other hand, polyester resin is less resistant to corrosion and may not be suitable for use in highly corrosive environments. It can be used in less harsh conditions, such as in the construction of swimming pools or automotive parts. In summary, fiberglass chopped strand can be used in corrosive environments depending on the specific resin used. It is crucial to select a resin that is compatible with the corrosive substances present in the environment to ensure the longevity and performance of the fiberglass material. Consulting with a materials engineer or a supplier specializing in fiberglass products can help determine the most suitable resin for a specific corrosive environment.
Q:What are the applications of fiberglass chopped strand?
Fiberglass chopped strand has a wide range of applications due to its unique physical and mechanical properties. Here are some common applications: 1. Reinforcement in composite materials: Fiberglass chopped strand is extensively used as reinforcement in composite materials such as fiberglass-reinforced plastics (FRP). The strands are mixed with resin to create a strong and lightweight material that is widely used in industries like automotive, aerospace, construction, and marine. 2. Insulation: Fiberglass chopped strand is commonly used as insulation material in various applications. It is an excellent thermal insulator, making it suitable for insulating walls, roofs, pipes, and appliances. Fiberglass insulation also provides soundproofing properties, making it ideal for applications requiring noise reduction. 3. Filtration and separation: The fine fibers of fiberglass chopped strand are often used in filtration and separation processes. They can be manufactured into filter media to remove impurities from air, water, oil, and other fluids. Fiberglass filters are commonly used in HVAC systems, industrial applications, and even in face masks. 4. Electrical insulation: Due to its high dielectric strength and resistance to electrical conductivity, fiberglass chopped strand is widely used as electrical insulation material. It is commonly used in electrical cables, transformers, circuit boards, and other electrical components to protect against electrical current leakage and ensure safety. 5. Reinforcement in concrete: Fiberglass chopped strand is also used as a reinforcement material in concrete structures. It helps increase the strength and durability of concrete, making it suitable for applications like bridges, roads, tunnels, and buildings. Fiberglass-reinforced concrete (FRC) offers enhanced resistance to cracking, impact, and corrosion. 6. Automotive applications: Fiberglass chopped strand is extensively used in the automotive industry for various applications. It is commonly used in the manufacturing of car bodies, interior panels, bumpers, and other components. Its lightweight and high strength properties make it an ideal material for improving fuel efficiency and overall performance. These are just a few examples of the applications of fiberglass chopped strand. Its versatility, durability, and cost-effectiveness make it a preferred choice for various industries and applications.
Q:How does the fiber content affect the thermal conductivity of chopped strand composites?
The fiber content in chopped strand composites directly affects the thermal conductivity of the material. Higher fiber content leads to a lower thermal conductivity due to the increased insulation provided by the fibers. As the fiber content increases, the thermal energy transfer through the composite material is impeded, resulting in better heat resistance and insulation properties.
Q:Can fiberglass chopped strand be used for reinforcement in 3D printing?
Yes, fiberglass chopped strand can be used for reinforcement in 3D printing. It offers excellent strength and stiffness properties, making it suitable for enhancing the mechanical properties of printed parts. However, it is important to ensure compatibility with the specific 3D printing process and material being used.
Q:Can fiberglass chopped strand be used in water treatment applications?
Indeed, water treatment applications can make use of fiberglass chopped strand. With its exceptional resistance to corrosion and chemicals, fiberglass proves to be a versatile material perfectly suited for water treatment procedures. Employing chopped strands of fiberglass allows for the reinforcement of multiple components, including pipes, tanks, and filters, which are essential in water treatment systems. The remarkable strength and durability of fiberglass render it highly capable of enduring the challenging conditions commonly encountered in water treatment facilities. Furthermore, fiberglass is non-toxic and does not release any detrimental substances into the water, guaranteeing the safety of the treated water supply.
Q:What are the storage requirements for fiberglass chopped strand?
The storage requirements for fiberglass chopped strand primarily focus on maintaining the quality and integrity of the material. It is important to store fiberglass chopped strand in a dry and well-ventilated area to prevent moisture absorption, as excess moisture can lead to product degradation and performance issues. Additionally, the storage area should be free from direct sunlight and extreme temperature fluctuations, as these factors can also negatively impact the material's properties. It is recommended to store the chopped strand in its original packaging or in sealed containers to protect it from dust, dirt, and other contaminants. By following these storage requirements, the fiberglass chopped strand can be preserved in optimal condition, ensuring its effectiveness and longevity in various applications.
Q:Can fiberglass chopped strand be used in the production of wind turbine components?
Fiberglass chopped strand is indeed applicable for the production of wind turbine components. It is widely employed as a reinforcement material in the manufacturing of composite materials, including those utilized in wind turbine components. This material lends strength, durability, and exceptional mechanical properties to the final product. Generally, the chopped strand is mixed with a resin matrix and subsequently shaped or molded into the desired form, such as blades or nacelles, for wind turbines. The resulting composite material boasts a high strength-to-weight ratio, corrosion resistance, and fatigue resistance, making it highly suitable for the demanding operating conditions of wind turbines. Furthermore, fiberglass chopped strand can be easily customized to meet specific performance requirements, such as enhanced stiffness or improved impact resistance, based on the particular application. All in all, fiberglass chopped strand proves to be a versatile and efficient material for the production of wind turbine components.
Q:Can fiberglass chopped strand be used in the production of architectural panels?
Yes, fiberglass chopped strand can be used in the production of architectural panels.
Q:What are the typical fiber lengths used in fiberglass chopped strand?
The typical fiber lengths used in fiberglass chopped strand range from 1/4 inch to 2 inches.
Q:Can fiberglass chopped strand be used in electrical applications?
Indeed, it is possible to utilize fiberglass chopped strand in electrical applications. This material is generated by cutting continuous fiberglass strands into shorter lengths, and it serves as a reinforcing substance in diverse applications, such as electrical components. Fiberglass chopped strand boasts remarkable mechanical strength and electrical insulation properties, rendering it suitable for deployment in electrical insulation materials, circuit boards, electrical enclosures, and other electrical components. By enhancing the strength, durability, and electrical performance of these applications, it contributes to their increased reliability and efficiency. Furthermore, when combined with resins, fiberglass chopped strand can yield composite materials with improved electrical properties tailored for specific electrical applications.

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