• FIBERGLASS WOVEN ROVING COMNO MAT 800g 200~2600mm System 1
  • FIBERGLASS WOVEN ROVING COMNO MAT 800g 200~2600mm System 2
FIBERGLASS WOVEN ROVING COMNO MAT 800g 200~2600mm

FIBERGLASS WOVEN ROVING COMNO MAT 800g 200~2600mm

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Shanghai
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Description & application

◎ This mat is a combination of woven roving and chopped glass fiber. The layer of chopped strand is stitched together with woven roving by polyester thread. It is mainly applied in the processes of molding compressing, pultrusion, RTM, filament winding etc..
◎ This fabric is compatible with UP Resin, Vinyl ester resin, epoxy resin system etc. It is widely used in vehicle bodies and panels, marine (boat hulls and decks), pipeline, lamination and structural profiles etc.

◎ Increase strength, reduce product weight and better surface finish.
◎ low resin-consumption and faster wet-out.
◎ Good manufacturability and mechanical properties
◎ Improved fatigue and impact resistance

General parameters:

Code

Total weight g/m2

Weight of each layer, g/m2

Width, mm

Chopping

Woven Roving

Chopping

E-WRM500/300

800

300

500

200~2600

E-WRM600/300

900

300

600

200~2600

E-WRM800/450

1250

450

800

200~2600

E-WRDM300/500/300

1100

300

500

300

200~2600

E-WRDM450/800/450

1700

450

800

450

200~2600

Packing:

Each roll is wrapped by PE film and then packed into carton. Stacking in bulk or palletized is available; the pallet shall be no higher than 2 layers.

Q:Is fiberglass mat tissue resistant to oil and grease?
Yes, fiberglass mat tissue is resistant to oil and grease. The composition of fiberglass mat tissue consists of fine strands of glass fibers bonded together with a resin. This resin acts as a barrier that prevents oil and grease from penetrating through the mat tissue, making it resistant to these substances. Additionally, fiberglass itself is known for its non-reactive properties, which further enhances its resistance to oil and grease. Therefore, fiberglass mat tissue is an ideal material for applications where contact with oil and grease is expected, such as in industrial settings or automotive components.
Q:How does fiberglass mat tissue compare to spray foam insulation?
Fiberglass mat tissue and spray foam insulation differ in terms of their insulation materials, characteristics, and benefits. Fiberglass mat tissue, a woven fiberglass insulation, is commonly used for thermal insulation in walls, roofs, and attics. It effectively resists heat transfer and provides an additional safety benefit with its fire-resistant properties. In contrast, spray foam insulation is a liquid that expands into a solid foam upon application. It fills in cracks and gaps, creating an airtight seal that prevents air leakage and reduces energy loss. It is also known for its soundproofing capabilities. Regarding installation, fiberglass mat tissue comes in large rolls or batts that require cutting and fitting. It must be carefully handled and may necessitate the use of protective equipment due to potential skin and respiratory irritation. On the other hand, spray foam insulation is applied using specialized equipment that sprays the liquid foam onto surfaces. It quickly expands, filling gaps and hardening within a short time. This makes it a convenient choice for insulating hard-to-reach areas or irregularly shaped spaces. In terms of cost, fiberglass mat tissue is generally more economical for purchase and installation compared to spray foam insulation. However, spray foam insulation provides superior air sealing and can result in higher long-term energy savings. In summary, each insulation type has its own advantages. Fiberglass mat tissue excels in thermal insulation, while spray foam insulation is ideal for air sealing and soundproofing. The choice between the two depends on factors such as budget, desired insulation performance, and project requirements.
Q:Is fiberglass mat tissue compatible with different resin systems?
Fiberglass mat tissue is indeed compatible with different resin systems. This versatile material can be utilized with a variety of resin systems, such as polyester, epoxy, and vinyl ester resins. Its exceptional wet-out properties enable the resin to be absorbed and distributed evenly throughout the mat. Consequently, this compatibility facilitates the fabrication of robust and long-lasting composite structures for numerous industries, including automotive, marine, construction, and aerospace. Nevertheless, it is crucial to carefully assess the unique properties and characteristics of the resin system employed to guarantee optimal performance and compatibility with the fiberglass mat tissue.
Q:Can fiberglass mat tissue be used for reinforcing fiberglass tanks?
Certainly, fiberglass tanks can be reinforced using fiberglass mat tissue. Fiberglass mat tissue, a lightweight and thin material, is commonly utilized in the construction of fiberglass products. Its purpose is to fortify the fiberglass structure, offering added durability and strength. In the specific case of fiberglass tanks, the mat tissue serves as a layer of reinforcement, further enhancing the tank's overall structural integrity. This reinforcement assists in preventing cracks, improving impact resistance, and augmenting the tank's ability to withstand external forces and pressure. Moreover, fiberglass mat tissue boasts ease of use, enabling simple molding or application onto the tank's surface, thus rendering it a suitable choice for tank reinforcement.
Q:What is the cost of fiberglass mat tissue?
The cost of fiberglass mat tissue can vary depending on factors such as the thickness, size, and brand. It is best to check with suppliers or retailers for specific pricing information.
Q:How does the thickness of fiberglass mat tissue affect its flexibility?
The flexibility of fiberglass mat tissue is directly influenced by its thickness. In general, thinner mat tissue exhibits greater flexibility in contrast to thicker ones. This is primarily because the thickness of the mat tissue regulates the level of resin absorption and the overall weight of the material. Thinner mat tissue allows for a higher saturation of resin, thereby enhancing its flexibility. Moreover, the reduced weight of thinner mat tissue facilitates easier bending and shaping. Conversely, thicker mat tissue is less flexible due to its lower capacity for resin absorption and heavier weight. Consequently, bending or shaping thicker mat tissue may necessitate more force or effort when compared to thinner counterparts. Hence, the thickness of fiberglass mat tissue plays a pivotal role in determining its flexibility.
Q:What is the tear strength of fiberglass mat tissue?
The tear strength of fiberglass mat tissue refers to the ability of the material to resist the propagation of tears or cracks when subjected to external forces. It is a crucial characteristic that determines the durability and performance of fiberglass mat tissue in various applications. The tear strength of fiberglass mat tissue is typically measured using standardized testing methods, such as the ASTM D1922 tear resistance test. This test involves subjecting a sample of the material to a controlled force, typically in the form of a tensile load, and measuring the force required to cause a tear or rupture. The tear strength of fiberglass mat tissue can vary depending on factors such as the manufacturing process, the quality of the raw materials used, and the specific application requirements. Generally, fiberglass mat tissues are designed to have high tear strength to withstand the stresses and strains encountered during installation and use. Fiberglass mat tissue is commonly used in industries such as construction, automotive, aerospace, and marine, where its high tear strength and other desirable properties make it an ideal choice. It is often utilized as a reinforcement material in composites, providing added strength and durability to the final product. In conclusion, the tear strength of fiberglass mat tissue is an important property that determines its resistance to tearing or cracking under applied forces. By ensuring a high tear strength, fiberglass mat tissue can withstand the demands of various applications and provide long-lasting performance.
Q:Can fiberglass mat tissue be used in structural applications?
Yes, fiberglass mat tissue can be used in structural applications. It is commonly used as a reinforcement material in composites, such as in the construction of building panels, automotive parts, and boat hulls. The high strength and stiffness properties of fiberglass mat tissue make it suitable for providing structural integrity and enhancing the overall strength of various applications.
Q:How does the width of fiberglass mat tissue affect its conformability?
The conformability of fiberglass mat tissue can be significantly influenced by its width. In general, a wider width allows for greater flexibility and adaptability to various surfaces and shapes. This is due to the fact that a broader mat tissue can cover larger areas, resulting in smoother transitions and improved conformability to irregular surfaces. Conversely, a narrower width of fiberglass mat tissue may be more rigid and less capable of conforming to intricate shapes or contours. It may struggle to adhere properly to uneven surfaces, leading to potential gaps or imperfections. Moreover, a narrower width might restrict the flexibility and maneuverability of the mat tissue during installation or application. Thus, when determining the conformability of fiberglass mat tissue, it is crucial to consider its width. Generally, a wider width provides superior conformability and the ability to cover larger areas, while a narrower width may have limitations in adapting to complex surfaces.
Q:What is fiberglass mat tissue made of?
Fiberglass mat tissue is made of fine strands of glass fibers that are bonded together with a resin or binder material.

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