• Fiberglass Chopped Strands for Pa - General Purpose Fiberglass Powder Chopped Stand Mat System 1
  • Fiberglass Chopped Strands for Pa - General Purpose Fiberglass Powder Chopped Stand Mat System 2
  • Fiberglass Chopped Strands for Pa - General Purpose Fiberglass Powder Chopped Stand Mat System 3
  • Fiberglass Chopped Strands for Pa - General Purpose Fiberglass Powder Chopped Stand Mat System 4
  • Fiberglass Chopped Strands for Pa - General Purpose Fiberglass Powder Chopped Stand Mat System 5
Fiberglass Chopped Strands for Pa - General Purpose Fiberglass Powder Chopped Stand Mat

Fiberglass Chopped Strands for Pa - General Purpose Fiberglass Powder Chopped Stand 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

Fiberglass Powder Chopped Stand Mat General Purpose

Fiberglass Powder Chopped Stand Mat General Purpose

Fiberglass Powder Chopped Stand Mat General Purpose

Fiberglass Powder Chopped Stand Mat General Purpose

Fiberglass Powder Chopped Stand Mat General Purpose

Fiberglass Powder Chopped Stand Mat General Purpose



Q: Is fiberglass chopped strand suitable for automotive parts?
Indeed, automotive parts can indeed be made with fiberglass chopped strand. In the automotive industry, fiberglass chopped strand is extensively utilized for a range of components, including body panels, hoods, fenders, and interior parts. This material boasts a remarkable strength-to-weight ratio, commendable dimensional stability, and outstanding impact resistance, thus rendering it exceptionally suitable for applications necessitating high-performance substances. Moreover, fiberglass chopped strand is renowned for its corrosion resistance, a quality of utmost importance for automotive parts that endure harsh environmental conditions. Ultimately, the integration of fiberglass chopped strand into automotive parts not only heightens fuel efficiency and diminishes vehicle weight, but also augments overall performance and durability.
Q: Can fiberglass chopped strand be used in aerospace interior components?
Yes, fiberglass chopped strand can be used in aerospace interior components. Fiberglass is a lightweight and versatile material that offers excellent strength and durability. It is commonly used in various industries, including aerospace, for its high-performance properties. In aerospace, interior components often require materials that are lightweight yet strong enough to withstand the demanding conditions of flight. Fiberglass chopped strand meets these requirements as it is lightweight and has high tensile strength. It can be used in the manufacturing of interior components such as panels, seat backs, overhead bins, and cabin partitions. Additionally, fiberglass chopped strand offers excellent fire resistance properties, which is crucial for aerospace applications. It can meet the stringent fire safety regulations and requirements set by aviation authorities. Furthermore, fiberglass chopped strand is relatively easy to process, allowing for efficient and cost-effective manufacturing processes. It can be molded into various shapes and sizes, making it suitable for complex aerospace interior designs. Overall, fiberglass chopped strand is a suitable material for aerospace interior components due to its lightweight, high strength, fire resistance, and ease of processing. Its use in the aerospace industry helps to ensure the safety, performance, and comfort of passengers and crew members during flight.
Q: How is the fiber distribution in fiberglass chopped strand ensured?
The fiber distribution in fiberglass chopped strand is ensured through a combination of manufacturing techniques and quality control measures. During the production process, the glass fibers are chopped into predetermined lengths and then mixed with a binding agent. This mixture is then spread evenly onto a conveyor belt or a rotating drum, where it is further processed. One of the key steps in ensuring fiber distribution is the use of a mechanical device, such as a comb or a rake, which aligns and separates the fibers as they are being spread. This helps to prevent clumping and promotes an even dispersion of the fibers. In addition to mechanical devices, manufacturers also employ various techniques to monitor and control the fiber distribution. For example, sensors and cameras may be used to inspect the fiber mat and detect any irregularities or areas of poor distribution. This allows for adjustments to be made in real-time to ensure consistent and uniform fiber distribution. Furthermore, quality control measures are implemented throughout the production process. Random samples of the fiberglass chopped strand are regularly taken and tested for fiber distribution. These samples are analyzed using techniques such as microscopy or image analysis to measure the length and alignment of the fibers. By combining these manufacturing techniques and quality control measures, the fiber distribution in fiberglass chopped strand is carefully controlled and ensured to meet the desired specifications. This helps to maintain the structural integrity and performance of fiberglass products in various applications, such as in the construction, automotive, and aerospace industries.
Q: How does the fiber surface treatment affect the properties of fiberglass chopped strand?
The fiber surface treatment plays a crucial role in enhancing the properties of fiberglass chopped strand. The treatment involves applying a chemical coating to the surface of the fibers in order to improve their performance and compatibility with the resin matrix. One of the key benefits of fiber surface treatment is enhanced adhesion between the fiberglass and the resin matrix. The treatment modifies the surface of the fibers, creating a stronger bond with the resin. This results in improved mechanical properties, such as increased tensile strength, flexural strength, and impact resistance. The enhanced adhesion also helps to prevent fiber-matrix delamination, ensuring the structural integrity of the composite material. Moreover, fiber surface treatment can improve the resistance of fiberglass chopped strand to moisture and chemical substances. The chemical coating creates a protective barrier on the fiber surface, preventing water or chemicals from penetrating into the fibers and causing degradation. This enhances the durability and longevity of the fiberglass material, making it suitable for various applications in harsh environments. In addition, the surface treatment can also enhance the dispersion of the fibers within the resin matrix. This leads to a more uniform distribution of the fibers, reducing the occurrence of voids and improving the overall mechanical properties of the composite material. The improved fiber dispersion also enhances the dimensional stability of the fiberglass, preventing shrinkage or warping during fabrication. It is worth noting that different types of surface treatments can be applied to fiberglass chopped strand, depending on the specific requirements of the application. Common treatment options include silane treatment, coupling agent treatment, and sizing treatment. Each treatment has its own advantages and can be tailored to optimize the performance of the fiberglass in different environments. In conclusion, fiber surface treatment has a significant impact on the properties of fiberglass chopped strand. It improves adhesion, resistance to moisture and chemicals, fiber dispersion, and dimensional stability. By enhancing these properties, the surface treatment enhances the overall performance and versatility of fiberglass chopped strand, making it an ideal material for a wide range of applications in industries such as automotive, construction, and aerospace.
Q: How is fiberglass chopped strand used for thermal insulation?
Fiberglass chopped strand is commonly used for thermal insulation due to its unique properties. Firstly, the fibers are made from molten glass which is then cooled and spun into fine strands. These strands are then chopped into shorter lengths, usually around 1-3 inches, and mixed with a binder to form a loose mat or blanket. The chopped strand mat is then used as a layer of insulation in various applications. Its primary function is to trap air within its fibers, creating a barrier that reduces heat transfer. Air is a poor conductor of heat, so the trapped air pockets within the mat act as an effective insulator, preventing heat from escaping or entering the insulated area. Furthermore, fiberglass chopped strand insulation is non-combustible, meaning that it does not contribute to the spread of fire. This makes it a particularly safe choice for thermal insulation in buildings and other structures. It also offers excellent acoustic insulation properties, reducing noise transmission through walls and floors. Another advantage of fiberglass chopped strand insulation is its durability. It does not degrade or lose its insulating properties over time, making it a long-lasting solution for thermal insulation. It is also resistant to moisture, mold, and pests, ensuring a consistently high level of insulation performance. In summary, fiberglass chopped strand is used for thermal insulation due to its ability to trap air, its non-combustible nature, acoustic insulation properties, durability, and resistance to moisture and pests. Its versatility makes it a popular choice for a wide range of applications, providing efficient and reliable thermal insulation for both residential and commercial buildings.
Q: Is fiberglass chopped strand lightweight?
Yes, fiberglass chopped strand is lightweight.
Q: How does the fiber surface treatment affect the performance of fiberglass chopped strand?
The fiber surface treatment plays a crucial role in enhancing the performance of fiberglass chopped strands. It helps to improve the adhesion between the glass fibers and the matrix material in composite applications. By providing a chemically compatible interface, the surface treatment promotes better wetting and dispersion of the fibers, resulting in improved mechanical properties, such as tensile strength and impact resistance. Additionally, the treatment reduces fiber breakage during processing, leading to better overall performance of the fiberglass chopped strand in various applications.
Q: What does glass fiber reinforced plastic ant medium mean?
The raw materials and technical requirements of producing glass fiber reinforced. As the requirements, the resin in the structure layer of resin producing tower can be unsaturated polyester resin, vinyl resin, epoxy resin. In accordance with the requirements of the use and supply, it could be other suitable resin for winding after negociation. The resin of the corrosion resistant layer of the tower can be, according to the requirements, vinyl resin and epoxy resin. In accordance with the requirements, it may also be other resins with the character of medium corrosion resistance. . Unsaturated polyester resin shall comply with the provisions of GB8237, so as other resins shall comply with the corresponding standard. Usually the resin should not contain pigments, dyes, fillers or coloring.
Q: Can fiberglass chopped strand be used in chemical pipelines?
No, fiberglass chopped strand cannot be used in chemical pipelines as it is not chemically resistant and may degrade or react with certain chemicals.
Q: How does the density of the chopped strand affect its performance?
The density of the chopped strand plays a significant role in determining its performance. Chopped strands are commonly used as reinforcement in composite materials, such as fiberglass, to improve their strength and mechanical properties. When the density of the chopped strand is high, meaning a larger number of strands per unit volume, the resulting composite material tends to exhibit enhanced mechanical properties. This is primarily because a higher density of strands provides more surface area for interaction with the matrix material, resulting in improved load transfer and distribution throughout the composite structure. As a result, the composite becomes stronger and more resistant to deformation and fracture. On the other hand, a lower density of chopped strand can lead to a decrease in the performance of the composite. With fewer strands present, there is less opportunity for load transfer and distribution, which can result in reduced strength and stiffness. Additionally, a lower density of chopped strand may result in the formation of voids or gaps within the composite, compromising its overall integrity and mechanical properties. It is important to note that the optimal density of chopped strand depends on various factors, including the specific application and desired performance requirements. Different applications may require different densities to achieve the desired balance between strength, stiffness, and other mechanical properties. In conclusion, the density of chopped strand significantly affects its performance in composite materials. A higher density generally improves the mechanical properties of the composite, while a lower density can lead to decreased performance. The appropriate density of chopped strand should be carefully considered based on the specific application and desired performance requirements.

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