• Fiberglass Mat Tissue Woven Roving Combo Mat 900gsm,1600/2400 System 1
  • Fiberglass Mat Tissue Woven Roving Combo Mat 900gsm,1600/2400 System 2
Fiberglass Mat Tissue Woven Roving Combo Mat 900gsm,1600/2400

Fiberglass Mat Tissue Woven Roving Combo Mat 900gsm,1600/2400

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
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Process
Fiberglass stitch combo mat is the mat combining the woven roving and a even layer of chopped strand mat with polyester yarn.


Properties
• Fiber level unfolded without cross, high density, high utilizing rate.
• Multi-layer finished one time, decrease layer and enhance efficiency.
• Providing the product with multi-directional mechanical strength.

Applications
Mainly be used as reinforced materials in the composite material industry.
• Matrix: unsaturated polyester resin, vinyl ester resin, epoxy resin and phenolic resin etc.
• Craft: pultrusion, RTM, hand lay up, etc.
• Ultimate products: pultruded profiles, FRP body of boat, insulation board, automobile body.

Specifications  

   

specifications

Fibre type

Wover roving

Chopped strand

Overall weight

Width

g/

g/

g/

mm

EMK 600/300

E-Glass

600

300

900

1600/2400

EMK 600/380

E-Glass

600

380

980

1600/2400

EMK 600/450

E-Glass

600

450

1050

1600/2400

EMK 800/300

E-Glass

800

300

1100

1600/2400

EMK 800/380

E-Glass

800

380

1180

1600/2400

EMK 800/450

E-Glass

800

450

1250

1600/2400

Packaging:  Wrapped in PVC and placed within a cardboard carton.

Q: Is fiberglass mat tissue easy to install?
Installing fiberglass mat tissue is relatively easy. This lightweight and flexible material can be easily cut and shaped to fit any surface. It can be applied using different methods, including spraying, rolling, or brushing on adhesive. Moreover, the tissue is self-adhesive, which simplifies the installation process as it readily adheres to the desired surface. Additionally, fiberglass mat tissues are generally designed to resist water and offer excellent insulation, making them a favored choice for various applications. In conclusion, by adequately preparing and following the manufacturer's guidelines, installing fiberglass mat tissue can be a simple and trouble-free task.
Q: Can fiberglass mat tissue be used for making lightweight panels?
Yes, fiberglass mat tissue can be used for making lightweight panels. It is often used as a reinforcement material in composite panels, providing strength and durability while keeping the overall weight of the panels low.
Q: What is the moisture resistance of fiberglass mat tissue?
The moisture resistance of fiberglass mat tissue is generally quite high. The material is typically made from fiberglass strands that are tightly woven together, creating a dense and water-resistant surface. This makes it highly effective in applications where moisture exposure is common, such as in the construction industry for roofing, insulation, and waterproofing purposes. Additionally, fiberglass mat tissue is often treated with special coatings or additives that further enhance its moisture resistance, making it even more durable and reliable in wet or humid environments. Overall, the moisture resistance of fiberglass mat tissue is a significant advantage and contributes to its widespread use in various industries.
Q: Does fiberglass mat tissue require any special surface bonding agents?
Yes, fiberglass mat tissue does require special surface bonding agents. Fiberglass mat tissue is typically used as a reinforcement material in various industries such as construction, automotive, and aerospace. To ensure proper adhesion between the fiberglass mat tissue and the substrate, a suitable bonding agent or adhesive is required. The bonding agent helps to create a strong and durable bond between the fiberglass mat tissue and the surface it is being applied to. It helps to improve the overall strength, integrity, and performance of the composite material. The bonding agent also helps to prevent delamination or separation of the fiberglass mat tissue from the substrate. The type of bonding agent required may vary depending on the specific application and the properties of the substrate. Generally, epoxy-based bonding agents are commonly used for bonding fiberglass mat tissue. Epoxy adhesives offer excellent bonding strength, chemical resistance, and durability. Before applying the bonding agent, it is important to properly prepare the surface by cleaning it thoroughly and removing any contaminants that may affect adhesion. The bonding agent can then be applied to the surface using appropriate techniques such as brushing, spraying, or rolling. In summary, fiberglass mat tissue does require special surface bonding agents to ensure proper adhesion and enhance the performance of the composite material. The choice of bonding agent depends on the specific application and the properties of the substrate. Proper surface preparation is also essential for achieving a strong and durable bond.
Q: What is fiberglass mat tissue made of?
Fiberglass mat tissue is made of fine strands of glass fibers that are woven together to form a thin, flexible fabric-like material. These glass fibers are typically made from molten glass that is drawn into very thin filaments and then coated with a binding agent to improve strength and durability. The woven structure of the fiberglass mat tissue helps to provide reinforcement and stability to various materials and products, making it an ideal choice for applications such as insulation, roofing, and composite materials.
Q: What is the expected lifespan of fiberglass mat tissue in chemical storage applications?
The expected lifespan of fiberglass mat tissue in chemical storage applications can vary depending on several factors. These factors include the type of chemicals being stored, the concentration of the chemicals, and the specific conditions of the storage environment. Fiberglass mat tissue is commonly used in chemical storage applications due to its excellent resistance to corrosion and its ability to provide structural reinforcement. However, it is important to note that fiberglass mat tissue is not completely impervious to chemical degradation. In general, fiberglass mat tissue can withstand a wide range of chemicals and can have a relatively long lifespan when properly maintained. It is typically designed to last for several years, with some manufacturers offering warranties ranging from 10 to 20 years. However, certain aggressive chemicals or extreme storage conditions may accelerate the degradation process of fiberglass mat tissue. Chemicals with high acidity or alkalinity, extreme temperatures, or prolonged exposure to UV radiation can potentially reduce the lifespan of the material. To ensure the maximum lifespan of fiberglass mat tissue in chemical storage applications, it is essential to carefully select the appropriate type of fiberglass mat tissue that is specifically designed for the intended chemicals and storage conditions. Regular inspections, maintenance, and proper handling of the chemicals can also help extend the lifespan of the material. Ultimately, it is recommended to consult with the manufacturer or a qualified engineer to determine the expected lifespan of fiberglass mat tissue in a specific chemical storage application, as they can provide more accurate information based on the specific circumstances.
Q: Does fiberglass mat tissue require any special precautions during cutting?
Yes, fiberglass mat tissue requires special precautions during cutting. It is important to wear protective clothing, gloves, and a respirator to prevent inhaling the fine fibers that can be released during the cutting process. Additionally, using a sharp blade or scissors is recommended to ensure clean cuts and minimize the risk of fraying or splintering.
Q: Can fiberglass mat tissue be used for repairing fiberglass bathtubs?
Yes, fiberglass mat tissue can be used for repairing fiberglass bathtubs. Fiberglass mat tissue is a thin, flexible material that is used for reinforcing and strengthening fiberglass surfaces. It is commonly used in the repair and restoration of fiberglass products, including bathtubs. The mat tissue is typically applied over the damaged area, along with a layer of resin, to create a strong and durable repair. The mat tissue helps to reinforce the weakened or damaged areas of the bathtub, restoring its integrity and preventing further damage. However, it is important to note that the success of the repair will depend on the extent of the damage and the skill of the person performing the repair. It is recommended to consult a professional or follow manufacturer's instructions for the best results.
Q: What is the expected lifespan of fiberglass mat tissue in cryogenic applications?
The lifespan of fiberglass mat tissue in cryogenic applications may vary, depending on factors like material quality, specific cryogenic environment, and maintenance and handling practices. Fiberglass mat tissue is renowned for its exceptional insulation properties and ability to withstand extreme temperatures. It is commonly utilized in cryogenic applications to offer thermal insulation and structural support. Under well-maintained and controlled cryogenic conditions, fiberglass mat tissue can endure for several decades. However, it should be noted that exposure to intense thermal cycling, mechanical stress, and chemicals can impact its performance and lifespan. To ensure the longevity of fiberglass mat tissue in cryogenic applications, it is crucial to conduct regular inspections, maintenance, and adhere to the manufacturer's guidelines. Promptly addressing any signs of degradation or damage is also recommended to prevent potential issues or failures.
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.

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