• Fiberglass Mat Tissue e-glass Chopped Strand Mat for FRP Pipe and FRP Panel System 1
  • Fiberglass Mat Tissue e-glass Chopped Strand Mat for FRP Pipe and FRP Panel System 2
  • Fiberglass Mat Tissue e-glass Chopped Strand Mat for FRP Pipe and FRP Panel System 3
  • Fiberglass Mat Tissue e-glass Chopped Strand Mat for FRP Pipe and FRP Panel System 4
Fiberglass Mat Tissue e-glass Chopped Strand Mat for FRP Pipe and FRP Panel

Fiberglass Mat Tissue e-glass Chopped Strand Mat for FRP Pipe and FRP Panel

Ref Price:
get latest price
Loading Port:
Shanghai
Payment Terms:
TT or LC
Min Order Qty:
20000 kg
Supply Capability:
200000 kg/month

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1.Brief Introduction

E-Glass Emulsion Chopped Strand Mat is made of randomly distributed chopped strands held tighter by a emulsion binder. It is compatible with UP, VE, EP resins.
It is compatible with UP, VE, EP, PF resins.
The roll width ranges from 50mm to 3300mm.
Additional demands on wet-out and decomposition time may be available upon request. 
It is designed for use in hand lay-up, filament winding,  compression molding and continuous laminating processes. Its end-use applications include boats, bath equipment, automotive parts,  chemical corrosion resistant pipes, tanks, cooling towers and  building components


2.Product Features
Fast breakdown in styrene
High tensile strength, allowing for use in hand lay-up process to produce large-area parts
Good wet-through and fast wet-out in resins, rapid air lease
Superior acid corrosion resistance


3.Product Specifications

Property

Area Weight

Moisture Content

Size Content

Breakage Strength

Width

(%)

(%)

(%)

(N)

(mm)

Mathods

IS03374

ISO3344

ISO1887

ISO3342

EMC80E

±7.5

≤0.20

8-12

≥40

50-3300

EMC100E

≥40

EMC120E

≥50

EMC150E

4-8

≥50

EMC180E

≥60

EMC200E

≥60

EMC225E

≥60

EMC300E

3-4

≥90

EMC450E

≥120

EMC600E

≥150

EMC900E

≥200

Special specification can be produce according to customer requirements.

E-glass Chopped Strand Mat For FRP Pipe And FRP Panel
4.FAQ

Packaging:
Each Chopped Strand Mat is wound onto a paper tube which has an inside diameter of 76mm and the mat roll has a diameter of 275mm. The mat roll is wrapped up with plastic film,and then packed in a cardboard box or wrapped up with kraft paper. The rolls can be vertically or horizontally placed. For transportation, the rolls can be loaded into a cantainer directly or on pallets.

Storage:
Unless otherwise specified, Chopped Strand Mat should be stored in a dry, cool and rain-proof area. It is recommended that the room temperature and humidity should be always maintained at 15℃~35℃ and 35%~65% respectively.

Q: Can fiberglass mat tissue be used for reinforcing fiberglass pools?
Yes, fiberglass mat tissue can be used for reinforcing fiberglass pools. Fiberglass mat tissue is a thin, flexible material that is commonly used in the construction and repair of fiberglass structures, including pools. It is made up of fine glass fibers that are bonded together with a binder. When applied to the surface of a fiberglass pool, the mat tissue provides additional strength and reinforcement, helping to prevent cracks or damage. It is typically applied in conjunction with a fiberglass resin, which acts as an adhesive to bond the mat tissue to the pool surface. Using fiberglass mat tissue for reinforcing fiberglass pools is a common practice and can help to extend the lifespan and durability of the pool.
Q: Does fiberglass mat tissue require any special maintenance after installation?
No, fiberglass mat tissue does not require any special maintenance after installation.
Q: How is fiberglass mat tissue made?
Fiberglass mat tissue is made by combining thin strands of glass fibers with a binder material, such as polyester or acrylic, to form a non-woven fabric. These glass fibers are typically manufactured through a process called pultrusion, where molten glass is pulled through tiny openings to create continuous filaments. The filaments are then chopped into shorter lengths and dispersed randomly onto a moving conveyor belt. As the fibers move along the conveyor, the binder material is sprayed onto them to ensure adhesion and form a cohesive mat. The mat is then heated to cure the binder and solidify the structure, resulting in a strong and flexible fiberglass mat tissue.
Q: Is fiberglass mat tissue suitable for insulation in high-rise buildings?
Yes, fiberglass mat tissue is suitable for insulation in high-rise buildings. Fiberglass mat tissue is a widely used insulation material that offers excellent thermal and acoustic properties. It is lightweight, flexible, and easy to install, making it ideal for use in high-rise buildings where efficiency and effectiveness are crucial. Fiberglass mat tissue also has excellent fire-resistant properties, which is an essential requirement for buildings with multiple floors. Additionally, it is resistant to moisture, mold, and pests, ensuring long-term durability and performance. The material can be easily customized to fit various areas of the building, including walls, floors, and ceilings, providing consistent insulation throughout the structure. Overall, fiberglass mat tissue is a reliable and cost-effective insulation option for high-rise buildings.
Q: Is fiberglass mat tissue resistant to termites and insects?
Yes, fiberglass mat tissue is generally resistant to termites and insects. Fiberglass is made from woven glass fibers, which are not a food source for termites or insects. Additionally, fiberglass mat tissue is typically coated with a layer of resin, which further enhances its resistance to pests. This makes fiberglass mat tissue a popular choice for construction and insulation applications in areas prone to termite and insect infestations. However, it is worth noting that while fiberglass mat tissue itself is resistant to termites and insects, it does not guarantee complete protection against infestations. It is always advisable to take additional measures, such as proper sealing and regular inspections, to ensure long-term pest control.
Q: What is the tensile strength of fiberglass mat tissue?
Fiberglass mat tissue usually has a tensile strength ranging from 30 to 150 pounds per inch (lb/in). Nevertheless, it is crucial to bear in mind that the precise tensile strength may differ based on the particular type and quality of fiberglass mat tissue utilized.
Q: Is fiberglass mat tissue suitable for oil and gas applications?
Indeed, fiberglass mat tissue proves to be fitting for oil and gas applications. This material, renowned for its lightweight yet robust nature, demonstrates resilience in the face of the demanding conditions that typically arise within the oil and gas sector. Its extraordinary resistance to chemicals, including oil and gas, renders it an optimal selection for endeavors like pipeline insulation, tank lining, and filtration systems. Moreover, fiberglass mat tissue showcases exceptional resistance to moisture absorption, possesses commendable thermal insulation characteristics, and can be effortlessly molded into diverse shapes and forms, thereby establishing itself as a versatile substance suitable for a wide range of oil and gas applications.
Q: Is fiberglass mat tissue suitable for sound absorption?
No, fiberglass mat tissue is not suitable for sound absorption.
Q: Can fiberglass mat tissue be used for ballistic protection?
No, fiberglass mat tissue cannot be used for ballistic protection. It is not designed or tested to withstand the high-velocity impact of bullets or projectiles. Ballistic protection requires specialized materials such as Kevlar, aramid fibers, or ceramic plates that are specifically engineered to provide adequate protection against ballistic threats.
Q: How is fiberglass mat tissue used in the automotive industry?
Fiberglass mat tissue is commonly used in the automotive industry as a reinforcement material. It is typically applied to the surface of automotive parts, such as hoods, roofs, and doors, to enhance their strength and durability. The fiberglass mat tissue helps to improve the overall structural integrity of the vehicle, making it more resistant to impact and reducing the risk of damage. Additionally, it also contributes to noise reduction and vibration damping, resulting in a smoother and quieter ride for the occupants.

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