• Fiberglass Chopped Strand Mat 450 G/M2 - 2024 e-glass powder chopped stand mats System 1
  • Fiberglass Chopped Strand Mat 450 G/M2 - 2024 e-glass powder chopped stand mats System 2
  • Fiberglass Chopped Strand Mat 450 G/M2 - 2024 e-glass powder chopped stand mats System 3
  • Fiberglass Chopped Strand Mat 450 G/M2 - 2024 e-glass powder chopped stand mats System 4
  • Fiberglass Chopped Strand Mat 450 G/M2 - 2024 e-glass powder chopped stand mats System 5
  • Fiberglass Chopped Strand Mat 450 G/M2 - 2024 e-glass powder chopped stand mats System 6
Fiberglass Chopped Strand Mat 450 G/M2 - 2024 e-glass powder chopped stand mats

Fiberglass Chopped Strand Mat 450 G/M2 - 2024 e-glass powder chopped stand mats

Ref Price:
get latest price
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

2015 E-GLASS Powder Chopped Stand Mats

2015 E-GLASS Powder Chopped Stand Mats

2015 E-GLASS Powder Chopped Stand Mats

2015 E-GLASS Powder Chopped Stand Mats

2015 E-GLASS Powder Chopped Stand Mats

2015 E-GLASS Powder Chopped Stand Mats



Q: Can fiberglass chopped strand be used to reinforce concrete?
Fiberglass chopped strand is capable of reinforcing concrete. By incorporating the chopped strands into concrete mixtures, the concrete gains supplementary tensile strength, impact resistance, and durability. The fiberglass strands function as a reinforcement material, effectively managing cracking and enhancing the overall structural integrity. This proves particularly advantageous in scenarios where concrete may encounter substantial loads or harsh environmental circumstances. Moreover, fiberglass chopped strand is not only lightweight but also resistant to corrosion, rendering it an optimal selection for concrete reinforcement.
Q: Can fiberglass chopped strand be used in acoustic insulation applications?
Yes, fiberglass chopped strand can be used in acoustic insulation applications. Fiberglass is known for its excellent sound absorption properties, making it an ideal material for reducing noise and improving acoustics in various settings. The chopped strand form of fiberglass can be easily mixed with other materials, such as binders or resins, to create insulation products that effectively absorb and dampen sound waves. These products are commonly used in buildings, automotive applications, and other environments where noise reduction is desired. Overall, fiberglass chopped strand is a versatile and effective material for acoustic insulation applications.
Q: Can fiberglass chopped strand be used in the production of automotive body parts?
Automotive body parts can utilize fiberglass chopped strand as a reinforcement material. Consisting of small strands of glass fibers, this type of material is randomly chopped into shorter lengths and combined with a resin or other binding substance to create a composite. This composite can then be shaped into various forms to create hoods, fenders, and bumpers. The utilization of fiberglass chopped strand in automotive applications offers numerous advantages. Firstly, it possesses a high strength-to-weight ratio, providing exceptional strength and rigidity while remaining lightweight. This is particularly vital for automotive body parts as it aids in reducing the overall weight of the vehicle, resulting in improved fuel efficiency and performance. Moreover, fiberglass chopped strand is renowned for its impact resistance and durability. It can withstand heavy loads, shocks, and vibrations, making it suitable for enduring the harsh conditions that automotive body parts often encounter. It also exhibits good corrosion resistance, which is crucial for automotive applications where the parts may be exposed to moisture, chemicals, and other corrosive elements. Additionally, fiberglass chopped strand can be easily molded into intricate shapes, allowing for greater flexibility in designing automotive body parts. In case of any damages, it can also be conveniently repaired. In summary, fiberglass chopped strand is a versatile and dependable material that can be effectively utilized in the production of automotive body parts. Its strength, durability, lightweight properties, and design flexibility make it a favored choice in the automotive industry.
Q: What are the different color options available for fiberglass chopped strand?
The different color options available for fiberglass chopped strand include white, black, gray, and various custom colors depending on the manufacturer.
Q: Is fiberglass chopped strand suitable for applications requiring high electrical insulation?
High electrical insulation is not suitable for applications that require fiberglass chopped strand. Despite being a strong and versatile material, fiberglass is not renowned for its electrical insulation properties. Instead, fiberglass chopped strand finds its typical usage in applications that demand strength, corrosion resistance, and thermal insulation. This includes automotive parts, boats, and construction materials. For applications that necessitate high electrical insulation, alternative materials like silicone rubber, polyethylene, or polypropylene would be more appropriate options. These materials possess superior dielectric properties and are specifically engineered to deliver exceptional electrical insulation.
Q: How is the adhesion strength of fiberglass chopped strand composites tested?
The adhesion strength of fiberglass chopped strand composites is typically tested using a pull-out test method. In this test, a sample of the composite is prepared with a specific length of chopped strands embedded in a matrix material. The sample is then subjected to a controlled force, pulling the strands out of the matrix. The force required to pull out the strands is measured, providing a measure of the adhesion strength between the strands and the matrix material.
Q: How does the abrasion resistance of fiberglass chopped strand compare to other reinforcing materials?
The abrasion resistance of fiberglass chopped strand is generally considered to be higher compared to other reinforcing materials. This is primarily due to the inherent properties of fiberglass, such as its high tensile strength and durability. Additionally, fiberglass is known for its resistance to wear and tear, making it an excellent choice for applications that require resistance against abrasive forces.
Q: What are the fatigue resistance properties of fiberglass chopped strand?
Fiberglass chopped strand exhibits remarkable resistance to fatigue, enabling it to endure repetitive loading and cyclic stress without suffering from structural failure or deformation. This material is widely recognized for its outstanding fatigue resistance, rendering it suitable for applications that demand long-term performance and durability under cyclic loading conditions. The unique physical and mechanical properties of fiberglass chopped strand account for its fatigue resistance. Comprised of individual glass fibers that are randomly arranged and bound together, this material allows for the even distribution of stress and load across its entirety, thereby reducing stress concentration at specific points and enhancing its resistance to fatigue. Furthermore, fiberglass chopped strand possesses notable tensile strength and stiffness, which further bolster its fatigue resistance. The strong bond between the glass fibers and the binder ensures that the material can withstand the repeated stress and strain cycles typically associated with fatigue loading. It is worth noting that the fatigue resistance properties of fiberglass chopped strand can vary depending on factors such as the type and quality of the glass fibers, the binder material used, and the manufacturing process. Consequently, it is crucial to consider these factors when selecting fiberglass chopped strand for applications that necessitate high fatigue resistance. In summary, fiberglass chopped strand offers exceptional fatigue resistance, making it a dependable choice across various industries, including automotive, aerospace, construction, and sports equipment. Its ability to endure cyclic loading without significant degradation or failure makes it an enduring and resilient material for demanding applications.
Q: How does the fiber orientation of fiberglass chopped strand affect its performance?
The fiber orientation of fiberglass chopped strand significantly impacts its performance. The orientation refers to the alignment of the individual fibers within the strand. Depending on the intended use and desired properties, the fiber orientation can be optimized to enhance specific characteristics. Firstly, the fiber orientation affects the mechanical strength of the fiberglass. When the fibers are aligned parallel to the applied load, they can efficiently transfer the stress, resulting in increased tensile and flexural strength. This makes the material more resistant to breakage and deformation, ideal for applications requiring high structural integrity. Secondly, the fiber orientation influences the stiffness and rigidity of the fiberglass. Fibers aligned in the direction of the load offer greater resistance to bending, making the material stiffer and able to withstand higher forces without excessive deflection. This is crucial in applications where dimensional stability and resistance to deformation are important, such as in construction or automotive industries. Moreover, the fiber orientation impacts the impact resistance of fiberglass. By aligning the fibers in multiple directions, the material can distribute the applied force more evenly, dissipating the energy and reducing the likelihood of cracking or fracturing. This makes it more suitable for applications requiring impact resistance, like protective gear or transportation components. Additionally, the fiber orientation affects the thermal and electrical conductivity of fiberglass. Depending on the desired property, fibers can be aligned to enhance or minimize heat or electrical transfer. For instance, aligning fibers perpendicular to the heat flow can improve insulation properties, while aligning them parallel to electrical current flow can enhance conductivity. In summary, the fiber orientation of fiberglass chopped strand plays a crucial role in determining its performance characteristics. By optimizing the alignment, the material's strength, stiffness, impact resistance, and thermal/electrical conductivity can be tailored to meet the specific requirements of various applications.
Q: Can fiberglass chopped strand be used in water treatment tanks?
Yes, fiberglass chopped strand can be used in water treatment tanks. Fiberglass is known for its excellent corrosion resistance and high strength-to-weight ratio, making it a suitable material for various applications in the water treatment industry. The chopped strand form of fiberglass can be used to reinforce the tanks, making them more durable and resistant to wear and tear. Additionally, fiberglass is non-reactive to water and does not leach any harmful substances, which is crucial for maintaining water quality in treatment tanks. Overall, fiberglass chopped strand is a reliable and effective material for use in water treatment tanks.

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