• 300g 450g 600g Fiberglass Chopped Stand Reinforcement Mat System 1
  • 300g 450g 600g Fiberglass Chopped Stand Reinforcement Mat System 2
  • 300g 450g 600g Fiberglass Chopped Stand Reinforcement Mat System 3
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300g 450g 600g Fiberglass Chopped Stand Reinforcement Mat

300g 450g 600g Fiberglass Chopped Stand Reinforcement Mat

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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:

450gsm

Mat Type:

Continuous Filament Mat

Fiberglass Type:

E-Glass

Softness:

softness

Place of Origin:

Jiangxi, China (Mainland)

Brand Name:

cnbm

Model Number:

450gsm

color:

white

fiberglass type:

E glass

product:

e-glass powder chopped stand mats

binder:

powder or emulsion

width:

1040 or 1270mm, as your requirement

weight:

30 or 45kg/roll

paper tube diameter:

90mm

outer diameter of roll:

256mm

packing:

plastic film+carton box + pallet



Packaging & Delivery

Packaging Details:plastic film+carton box + pallet
Delivery Detail:15-20days

Specifications

1.e-glass powder chopped stand mats 
2.binder:power or emulsion 
3.width:1040mm or 1270mm 
4.weight:450gsm

Picture

300g 450g 600g Fiberglass Chopped Stand Reinforcement Mat

300g 450g 600g Fiberglass Chopped Stand Reinforcement Mat

300g 450g 600g Fiberglass Chopped Stand Reinforcement Mat

300g 450g 600g Fiberglass Chopped Stand Reinforcement Mat

300g 450g 600g Fiberglass Chopped Stand Reinforcement Mat

300g 450g 600g Fiberglass Chopped Stand Reinforcement Mat



Q:Is fiberglass chopped strand suitable for electrical enclosures?
Yes, fiberglass chopped strand is suitable for electrical enclosures. Fiberglass is known for its excellent insulation properties and is commonly used in the electrical industry for a variety of applications. It provides good electrical insulation, high mechanical strength, and resistance to corrosion and chemicals. Furthermore, fiberglass is lightweight and non-conductive, making it an ideal material for electrical enclosures that require protection and insulation for electrical components.
Q:Does fiberglass chopped strand improve the fire resistance of composite materials?
Fiberglass chopped strand has the ability to enhance the fire resistance of composite materials. With its high melting point and low thermal conductivity, fiberglass serves as a suitable reinforcement material for improving the fire resistance properties in composites. Once incorporated into a composite material, the fiberglass chopped strand acts as a protective barrier, effectively preventing the spread of flames and reducing the rate at which heat is transferred. Moreover, the inclusion of fiberglass chopped strand in composites can bolster the structural integrity of the material when exposed to fire, thanks to its impressive strength-to-weight ratio. Nevertheless, it is important to acknowledge that the fire resistance properties of a composite material are also influenced by other factors such as the resin matrix employed, the manufacturing process utilized, and the overall composition of the composite.
Q:What are the typical testing standards for fiberglass chopped strand composites?
The typical testing standards for fiberglass chopped strand composites include tests for tensile strength, flexural strength, impact resistance, water absorption, thermal expansion, and fire resistance. These tests ensure that the composites meet the required quality and safety standards before they are used in various applications.
Q:What are the safety precautions to be taken while handling fiberglass chopped strand?
When handling fiberglass chopped strand, there are several safety precautions that should be taken to ensure the well-being of individuals. 1. Personal Protective Equipment (PPE): It is essential to wear appropriate PPE when handling fiberglass chopped strand. This includes safety goggles or a face shield to protect the eyes from any loose fibers or particles. Additionally, gloves should be worn to prevent direct contact with the fiberglass, which can cause irritation or cuts on the skin. Long-sleeved shirts and long pants should also be worn to provide further protection. 2. Ventilation: Fiberglass chopped strand should be handled in a well-ventilated area to minimize the inhalation of airborne fibers. If working indoors, open windows and doors or use exhaust fans to ensure proper air circulation. If working outdoors, position yourself upwind to avoid inhaling any fiberglass particles. 3. Proper Storage: Store fiberglass chopped strand in a secure location away from moisture and direct sunlight. This will prevent any potential degradation of the material and ensure its safety for use. 4. Handling Techniques: When handling fiberglass chopped strand, it is important to handle the material with care. Avoid dropping or mishandling the fibers to prevent the release of loose particles into the air. It is recommended to use gloves or tools specifically designed for handling fiberglass to minimize direct contact. 5. Cleanliness and Hygiene: After handling fiberglass chopped strand, individuals should thoroughly wash their hands and exposed skin to remove any loose fibers. It is also important to avoid touching the face, eyes, or mouth during the handling process to prevent accidental ingestion or irritation. 6. Disposal: Proper disposal of fiberglass chopped strand is crucial to prevent any environmental contamination. Dispose of any unused or waste material in accordance with local regulations and guidelines. By following these safety precautions, individuals can minimize the risks associated with handling fiberglass chopped strand and ensure a safe working environment.
Q:Can fiberglass chopped strand be used in chemical pipelines?
No, fiberglass chopped strand should not be used in chemical pipelines. Fiberglass is not chemically resistant and can deteriorate when exposed to certain chemicals. It is recommended to use materials that are specifically designed to handle the chemicals being transported in pipelines, such as corrosion-resistant alloys or lined pipes. Using fiberglass chopped strand could lead to leaks, contamination, and potential hazards in the pipeline system.
Q:Does fiberglass chopped strand improve the fatigue resistance of composite materials?
Yes, fiberglass chopped strand can improve the fatigue resistance of composite materials. Fiberglass is known for its high strength and stiffness, and when added as chopped strands to a composite matrix, it reinforces the material and enhances its ability to withstand cyclic loading and fatigue. The random orientation of the chopped strands helps to distribute the stress throughout the composite, reducing the likelihood of crack initiation and propagation. The high tensile strength of fiberglass chopped strand also helps to resist the propagation of cracks, thereby increasing the fatigue life of the composite material. This reinforcement effect is especially important in applications where the composite material is subjected to repeated loading or vibrations, such as in the aerospace, automotive, and sporting goods industries. In addition, the unique properties of fiberglass, such as its resistance to moisture and chemicals, further contribute to the enhanced fatigue resistance of the composite material. By preventing moisture ingress and chemical attack, fiberglass chopped strand helps to preserve the structural integrity of the composite and prolong its fatigue life. It is worth noting that the specific design and composition of the composite material, including the type and amount of fiberglass chopped strand used, as well as the matrix material, can influence the extent of improvement in fatigue resistance. Therefore, careful consideration and testing should be conducted to optimize the composite formulation for the desired fatigue performance.
Q:Does fiberglass chopped strand improve the chemical resistance of composite materials?
Yes, fiberglass chopped strand can improve the chemical resistance of composite materials. The addition of fiberglass chopped strand to composite materials enhances their resistance to a wide range of chemicals, making them more durable and suitable for various applications in different industries.
Q:Is fiberglass chopped strand suitable for thermal insulation?
Indeed, fiberglass chopped strand proves to be an ideal option for thermal insulation purposes. Renowned and extensively utilized, fiberglass stands out due to its exceptional thermal qualities. Its low thermal conductivity allows for efficient heat transfer prevention, ensuring the maintenance of desired temperatures within confined areas. Employing fiberglass in its chopped strand configuration further enhances its insulation capabilities, as it can be effortlessly packed or blown into cavities, forming a seamless and efficient barrier. Moreover, fiberglass chopped strand insulation guarantees safety, as it is non-combustible, rendering it a secure choice for thermal insulation across diverse industries and applications.
Q:How is fiberglass chopped strand used in the medical industry?
Fiberglass chopped strand is commonly used in the medical industry for various applications. It is primarily used as a reinforcing material in the production of orthopedic casts and splints. The chopped strands are embedded in a resin matrix, forming a strong and lightweight structure that provides support and immobilization to injured limbs. Additionally, fiberglass chopped strand can also be used in the manufacture of prosthetic devices, such as braces and supports, due to its excellent strength and flexibility properties.
Q:Is fiberglass chopped strand suitable for automotive interior components?
Indeed, automotive interior components can be made suitable by the use of fiberglass chopped strand. Fiberglass, a versatile material, provides numerous advantages for automotive purposes. It possesses qualities such as being lightweight, robust, and having exceptional dimensional stability. These characteristics render it a fitting selection for a wide array of interior components, including door panels, dashboards, trim panels, and seat backs. Superior mechanical properties are the reason why fiberglass chopped strand is commonly employed in automotive interior components. These chopped strands are blended with a resin matrix, resulting in a composite material that can be shaped into diverse forms. Consequently, this enables intricate designs and customization options, catering to specific requirements within the automotive industry. Moreover, fiberglass showcases resistance against high temperatures, chemicals, and UV radiation, which are essential factors in the automotive sector. It can withstand elevated temperatures while maintaining its structural integrity, and it also remains unaffected by sunlight or chemical exposure, preventing fading or discoloration. Additionally, fiberglass chopped strand proves to be an economical choice for automotive interior components. It provides a cost-effective solution without compromising quality or performance. Its durability ensures long-lasting functionality, minimizing the need for frequent replacements and maintenance. To conclude, fiberglass chopped strand is undoubtedly an appropriate option for automotive interior components. Its lightweight nature, strength, dimensional stability, resistance to heat and chemicals, and cost-effectiveness all contribute to making it an ideal choice for various automotive applications.

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