• Fiber Glass Woven Roving Fabrics(E-glass) System 1
  • Fiber Glass Woven Roving Fabrics(E-glass) System 2
  • Fiber Glass Woven Roving Fabrics(E-glass) System 3
  • Fiber Glass Woven Roving Fabrics(E-glass) System 4
Fiber Glass Woven Roving Fabrics(E-glass)

Fiber Glass Woven Roving Fabrics(E-glass)

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Loading Port:
Shanghai
Payment Terms:
TT or LC
Min Order Qty:
16000 kg
Supply Capability:
160000Kg Per Month kg/month

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1.Brief Introduction

Fiber Glass Woven Roving Fabrics are bidirectional fabric made by interweaving direct rovings.
Fiber Glass Woven Roving Fabrics are compatible with unsaturated polyester, vinyl ester, epoxy and phenolic resins.
Fiber Glass Woven Roving Fabrics are a high-performance reinforcement widely used in hand lay up and robot processes to manufacture boats, vessels, plane and automotive parts, furniture and sports facilities.

2.Product Features

Warp and weft rovings aligned in a parallel and flat manner, resulting in uniform tension
Densely aligned fibers, resulting in high dimensional stability and making handling easy
Good moldability,  fast and complete wet out in resins, resulting in high productivity
Good mechanical properties and high strength of parts

3.Product Specifications

Property

Area Weight

Moisture Content

Size Content

Width

(%)

(%)

(%)

(mm)

Test Method

IS03374

ISO3344

ISO1887

EWR200

±7.5

≤0.15

0.4-0.8

20-3000

EWR270

EWR300

EWR360

EWR400

EWR500

EWR600

EWR800

Special specification can be produce according to customer requirements.

Fiber Glass Woven Roving Fabrics(E-glass)

4.FAQ

Packaging:
Each woven roving is wound onto a paper tube which has an inside diameter of 76mm and the mat roll has a diameter of 220mm. The woven roving roll is wrapped up with plastic film,and then packed in a cardboard box or wrapped up with kraft paper. The rolls can be horizontally placed. For transportation, the rolls can be loaded into a cantainer directly or on pallets.
Storage:
Unless otherwise specified,It 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:What are the different thickness tolerances for fiberglass mat tissue?
The different thickness tolerances for fiberglass mat tissue can vary depending on the specific product and manufacturer. However, common thickness tolerances range from +/- 0.001 inches to +/- 0.005 inches.
Q:What is the shelf life of fiberglass mat tissue?
The shelf life of fiberglass mat tissue varies depending on the manufacturer and storage conditions. However, on average, fiberglass mat tissue can have a shelf life of up to 1-2 years if stored properly in a cool, dry place and protected from moisture and direct sunlight. It is important to check the manufacturer's recommendations for specific shelf life information.
Q:Can fiberglass mat tissue be used for repairing fiberglass bathtubs?
Fiberglass bathtubs can be repaired using fiberglass mat tissue. This tissue is a flexible and thin material used to strengthen and reinforce fiberglass surfaces. It is commonly employed in the restoration and repair of various fiberglass products, bathtubs included. To create a durable and sturdy repair, the damaged area is covered with the mat tissue and a layer of resin. This procedure helps fortify weakened or damaged sections of the bathtub, restoring its integrity and preventing further harm. Nevertheless, the success of the repair hinges on the extent of the damage and the expertise of the individual conducting the repair. To achieve optimal results, it is advisable to seek professional advice or adhere to the manufacturer's instructions.
Q:How long does fiberglass mat tissue last?
The lifespan of fiberglass mat tissue varies depending on various factors such as the quality of the material, environmental conditions, and maintenance. However, on average, fiberglass mat tissue can last for several decades if properly installed and cared for.
Q:How is fiberglass mat tissue used in the production of shower enclosures?
Fiberglass mat tissue is commonly used in the production of shower enclosures due to its excellent properties and benefits. It is a thin and flexible material made up of fine glass fibers that are randomly distributed and bonded together with a resin binder. In the production process of shower enclosures, fiberglass mat tissue is primarily utilized as a reinforcement material. It is often applied to the surface of the enclosure structure to enhance its strength, durability, and resistance to cracking or breaking. Firstly, the fiberglass mat tissue is cut and sized to fit the specific dimensions of the shower enclosure. It is then carefully laid or applied onto the surface of the enclosure, usually through a process called hand lay-up or spray-up. The mat tissue is positioned strategically to cover all the critical areas that require reinforcement, such as corners, edges, and joints. Once the mat tissue is in place, a resin, typically polyester or epoxy, is applied over it. The resin infiltrates the fiberglass mat tissue and bonds with the fibers, creating a solid and robust composite structure. This resin-fiberglass combination provides additional strength and stability to the shower enclosure, making it more resistant to impact, stress, and environmental factors like water and humidity. Moreover, fiberglass mat tissue also contributes to the overall aesthetics of the shower enclosure. It can help create a smooth and uniform surface finish, eliminating imperfections and creating a visually appealing appearance. The mat tissue can be easily molded or shaped to match different designs and styles, enabling manufacturers to produce shower enclosures with various shapes, sizes, and patterns. In summary, fiberglass mat tissue plays a crucial role in the production of shower enclosures by providing reinforcement, strength, durability, and aesthetic benefits. It is a versatile material that enhances the overall performance and visual appeal of the enclosures, ensuring they can withstand daily use and maintain their quality over time.
Q:How does the cost of fiberglass mat tissue compare to other reinforcement materials?
The cost of fiberglass mat tissue generally tends to be more affordable compared to other reinforcement materials. Fiberglass mat tissue is widely used in various industries, such as construction and automotive, due to its cost-effectiveness. Other reinforcement materials like carbon fiber or aramid fibers can be significantly more expensive, making fiberglass mat tissue a preferred choice for many applications that require reinforcement. Additionally, fiberglass mat tissue offers excellent strength and durability, making it a cost-effective solution for projects that require reliable reinforcement without breaking the budget.
Q:Is fiberglass mat tissue safe to handle?
Yes, fiberglass mat tissue is generally safe to handle. However, it is important to take certain precautions such as wearing protective gloves and a mask to avoid skin irritation or inhalation of fibers.
Q:What are the different finishing options available for fiberglass mat tissue?
Some of the different finishing options available for fiberglass mat tissue include: resin coating, heat treatment, laminating, and surface texturing. These options can enhance the strength, durability, and appearance of the fiberglass mat tissue based on specific requirements and applications.
Q:What are the different reinforcement patterns available for fiberglass mat tissue?
There are several different reinforcement patterns available for fiberglass mat tissue, each offering unique benefits and characteristics. 1. Random Chopped Strand Mat (CSM): This is a widely used reinforcement pattern in fiberglass mat tissue. It consists of randomly chopped strands of fiberglass that are bound together with a binder. CSM provides good strength and stiffness properties, making it suitable for a wide range of applications. 2. Continuous Strand Mat (CSM): This reinforcement pattern consists of continuous strands of fiberglass that are evenly distributed and bound together with a binder. Continuous strand mat offers improved strength and stiffness compared to random chopped strand mat, making it ideal for applications that require higher performance. 3. Woven Roving: Woven roving is a reinforcement pattern that consists of interwoven bundles of fiberglass yarns. It provides excellent strength and impact resistance, making it suitable for applications that require high load-bearing capabilities. 4. Multiaxial Fabrics: Multiaxial fabrics are made up of multiple layers of fiberglass fibers that are oriented in different directions (usually at 0°, 90°, and ±45° angles). This reinforcement pattern offers balanced strength properties in multiple directions, making it ideal for applications that require isotropic properties. 5. Stitch-Bonded Fabrics: Stitch-bonded fabrics are made by mechanically stitching together layers of fiberglass fibers. This reinforcement pattern provides good drapability and conformability, making it suitable for applications that require complex shapes or curved surfaces. 6. Knitted Fabrics: Knitted fabrics are made by interlocking loops of fiberglass yarns. This reinforcement pattern offers excellent flexibility and ease of handling, making it suitable for applications that require conformability and flexibility. Each reinforcement pattern has its own advantages and is used in different applications based on the specific requirements of strength, stiffness, impact resistance, flexibility, or conformability. It is important to select the appropriate reinforcement pattern based on the desired end-use properties and manufacturing process.
Q:How does the strength of fiberglass mat tissue compare to other reinforcement materials?
The strength of fiberglass mat tissue is considered to be quite high when compared to other reinforcement materials. Fiberglass mat tissue is made up of numerous glass fibers that are tightly intertwined, resulting in a strong and durable material. This type of reinforcement material is commonly used in applications that require high strength, such as in the construction industry for reinforcing concrete structures, in the automotive sector for manufacturing lightweight yet strong components, and in the aerospace industry for building aircraft parts. Compared to other reinforcement materials like steel or carbon fiber, fiberglass mat tissue offers several advantages. Firstly, it is relatively lightweight, which makes it easier to handle and transport. Additionally, fiberglass mat tissue has a high tensile strength, meaning it can withstand stretching or pulling forces without breaking. It also has good impact resistance and is capable of absorbing energy, which makes it suitable for applications where impact resistance is important. Moreover, fiberglass mat tissue is highly corrosion resistant, making it suitable for use in harsh environments or in contact with chemicals. Unlike steel, it does not rust or deteriorate over time. Furthermore, fiberglass mat tissue is non-conductive, which is beneficial in applications where electrical conductivity can be a safety hazard or interfere with electronic equipment. Overall, the strength of fiberglass mat tissue is considered to be excellent when compared to other reinforcement materials. Its high tensile strength, lightweight nature, corrosion resistance, and impact resistance make it a versatile and widely used material in various industries.

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