• E Glass Stitched Combo Mat System 1
  • E Glass Stitched Combo Mat System 2
  • E Glass Stitched Combo Mat System 3
E Glass Stitched Combo Mat

E Glass Stitched Combo Mat

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Loading Port:
China Main Port
Payment Terms:
TT or LC
Min Order Qty:
12000 kg
Supply Capability:
240000kg Per Month kg/month

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1.Brief Introduction

Two layers of roving(550g/㎡-1250g/㎡) are aligned at 0°/90° with or without a layer of chopped strands(0g/㎡-500g/㎡.

2.Product Structure


3.Product Specifications

Product No.

Overall Density

.0° Roving Density

.90° Roving Density

Chop Density

Polyester Yarn Density

 

(g/m2)

(g/m2)

(g/m2)

(g/m2)

(g/m2)

E-LTMC1603

671.74

303.8

247.96

101.62

18.36

E-LTMC1608

844.76

303.8

247.96

274.64

18.36

E-LTMC1808

903.8

303.8

307

274.64

18.36

E-LTMC1810

934.31

303.8

307

305.15

18.36

E-LTMC1815

1086.89

303.8

307

457.73

18.36

E-LTMC2408

1101.04

405.66

401.46

274.64

19.28

E-LTMC2415

1284.13

405.66

401.46

457.73

19.28

E-UDL450

479.14

405.66

55.12

-

18.36

E-UDL500

490.85

405.66

66.83

-

18.36

E-UDL600

608.9

566.92

23.62

-

18.36

E-UDL1200

1207.34

1133.86

55.12

-

18.36

Special specification can be produce according to customer requirements.

E Glass Stitched Combo Mat

4.FAQ

a.Packaging:
Each roll is wound onto a paper tube which has an inside diameter of 76mm and the roll has a diameter of 275mm. The  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.
b.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:Can fiberglass mat tissue be used for boat building?
Certainly, fiberglass mat tissue is a viable option for boat construction. It is a versatile and lightweight material that is frequently utilized in the building of boats. Its composition consists of thin fiberglass strands woven together to form a mat-like structure. This material is renowned for its exceptional strength-to-weight ratio, making it an optimal selection for boat builders. The utilization of fiberglass mat tissue in boat construction primarily serves to fortify the structure and provide added durability. It can be applied to various parts of the boat, including the hull and deck, to enhance its resilience and safeguard it against impacts. Moreover, it can be employed to create a smooth and uniform surface, which is crucial for achieving a professional-grade finish. One of the notable advantages of employing fiberglass mat tissue in boat construction lies in its ease of application. It can be effortlessly tailored to the desired size and molded to fit the desired shape, allowing for flexibility and customization. Additionally, it can be easily layered with other materials, such as epoxy resin, to create a robust and dependable composite. Furthermore, fiberglass mat tissue exhibits exceptional resistance to water and corrosion, rendering it suitable for marine environments. It is also recognized for its superb thermal and electrical insulation properties, both of which are highly advantageous for boat builders. In summary, fiberglass mat tissue is indeed a suitable choice for boat construction. Its lightweight nature, impressive strength, and resistance to water and corrosion establish it as a dependable and popular option among boat builders.
Q:Can fiberglass mat tissue be used in structural applications?
Indeed, structural applications can make use of fiberglass mat tissue. This lightweight and flexible material is frequently employed as reinforcement in construction and engineering endeavors. It is often combined with resin or concrete to enhance the structural integrity of diverse components. The remarkable strength-to-weight ratio of fiberglass mat tissue renders it exceptionally fitting for reinforcing walls, roofs, and floors. Furthermore, its resistance to corrosion, moisture, and chemicals allows for its utilization in diverse environments. The wide-ranging applicability and enduring nature of fiberglass mat tissue contribute to its widespread preference in structural applications.
Q:What are the different types of fiberglass mat tissue available in the market?
In the market, you can find various types of fiberglass mat tissue, each with its own distinct characteristics and applications. 1. Chopped Strand Mat (CSM): This is a commonly used fiberglass mat tissue. It consists of randomly oriented chopped strands of glass fibers held together by a binder. CSM is widely utilized in industries like construction, automotive, and marine due to its excellent strength and cost-effectiveness. 2. Continuous Filament Mat (CFM): Unlike CSM, CFM is made up of continuous strands of glass fibers. This type of fiberglass mat tissue offers enhanced strength and stiffness, making it suitable for applications that require higher performance and durability. 3. Woven Roving: Woven roving is created by weaving parallel rovings together. It provides a higher strength-to-weight ratio compared to CSM and CFM, making it ideal for applications that require additional reinforcement. 4. Surface Veil: Surface veils are lightweight fiberglass mat tissues primarily used for surface protection and cosmetic purposes. They are typically applied as a thin layer on the surface of other fiberglass materials to improve smoothness, appearance, and resistance to cracking or chipping. 5. Stitched Mat: Stitched mat is a type of fiberglass mat tissue where the fibers are stitched together using thread or yarn. This stitching enhances the mat's stability and structural integrity, making it suitable for applications that require enhanced dimensional stability and strength. 6. Composite Mat: Composite mat is a combination of different materials, including fiberglass, polyester, and other synthetic fibers. It offers a unique combination of properties such as strength, flexibility, and resistance to chemicals, making it suitable for a wide range of applications. In conclusion, the market provides a diverse range of fiberglass mat tissues to cater to specific needs and requirements in various industries.
Q:Can fiberglass mat tissue be used for composite tooling?
Yes, fiberglass mat tissue can be used for composite tooling. It is commonly used as a reinforcement material in composite tooling due to its high strength, durability, and ease of use. It helps to provide structural support and stability to the tooling, making it suitable for various applications in the composite industry.
Q:What is the expected lifespan of fiberglass mat tissue in residential applications?
The expected lifespan of fiberglass mat tissue in residential applications can vary depending on various factors such as the quality of the material, installation techniques, climate conditions, and maintenance. However, on average, fiberglass mat tissue can last for 20 to 30 years in residential applications when properly installed and maintained.
Q:Can fiberglass mat tissue be used for roofing applications?
Certainly, roofing applications can utilize fiberglass mat tissue. This lightweight and flexible material finds widespread use in the construction industry for a multitude of purposes, with roofing being one of them. It serves as a reinforcement layer, bolstering the strength and durability of roofing systems. Typically, the fiberglass mat tissue is saturated with bitumen or other waterproofing substances to establish a water-resistant shield atop the roof. Additionally, it contributes to augmenting the fire resistance and thermal insulation characteristics of the roof. Furthermore, fiberglass mat tissue's resistance to mold, mildew, and other prevalent roofing problems makes it an excellent option for roofing applications.
Q:How is fiberglass mat tissue used in the production of chemical storage tanks?
Fiberglass mat tissue serves as a reinforcement material in the manufacturing of chemical storage tanks. It is combined with resin to create a composite material that offers strength, durability, and protection against different chemicals. By layering the fiberglass mat tissue within the tank structure, its structural integrity is enhanced, and the risk of leakage is prevented. During the manufacturing process, resin, typically polyester or epoxy, is impregnated into the fiberglass mat tissue to establish a strong bond between the fibers and the matrix. This impregnated mat is then placed on a mold or mandrel and covered with additional layers of resin and mat, resulting in a laminate. The number of layers and thickness can vary based on the desired tank specifications and the chemicals it will store. The combination of fiberglass mat tissue and resin yields outstanding corrosion resistance, making it ideal for storing a wide range of chemicals. Fiberglass is inherently non-reactive and can endure exposure to harsh chemicals, acids, and alkalis without compromising the tank's structural integrity or degrading. Hence, fiberglass mat tissue is the preferred material for chemical storage tanks as it guarantees the safety of stored chemicals and minimizes the risk of leaks or contamination. Moreover, the utilization of fiberglass mat tissue enables the production of tanks with complex shapes and sizes. It can be easily molded and formed into various configurations, providing flexibility in design. This ensures that chemical storage tanks can be tailored to specific requirements and seamlessly integrated into diverse industrial applications. In conclusion, fiberglass mat tissue is indispensable in the manufacturing of chemical storage tanks. It reinforces the tank structure, offers chemical resistance, and facilitates the fabrication of tanks with diverse shapes and sizes. When combined with resin, it creates a durable and corrosion-resistant composite material, ensuring the secure storage of chemicals in a variety of industrial settings.
Q:What are the key properties of fiberglass mat tissue?
Fiberglass mat tissue is a versatile material that possesses several key properties. Firstly, it is made from fine glass fibers that are randomly oriented and bonded together with a binder. This random orientation allows for greater strength and flexibility compared to other materials. One key property of fiberglass mat tissue is its high tensile strength. It can withstand significant amounts of pulling or stretching forces without breaking, making it ideal for applications that require durability and resistance to mechanical stress. Another important property is its excellent thermal insulation capabilities. Fiberglass mat tissue has a low thermal conductivity, meaning it can effectively prevent the transfer of heat. This property makes it suitable for use in insulation applications where it helps to conserve energy and maintain a stable temperature. Fiberglass mat tissue also exhibits good chemical resistance. It is not easily affected by exposure to chemicals, acids, or alkaline substances. This property makes it a suitable choice for applications such as chemical storage tanks or pipes where resistance to corrosion is required. Furthermore, fiberglass mat tissue has excellent moisture resistance. It does not absorb water easily, which makes it resistant to rot and decay. This property makes it suitable for outdoor applications or in environments with high humidity. Lastly, fiberglass mat tissue is lightweight and easy to handle. It can be easily cut, shaped, and installed, making it a convenient material for various applications. In summary, the key properties of fiberglass mat tissue include high tensile strength, thermal insulation capabilities, chemical resistance, moisture resistance, and lightweight. These properties make it a versatile material that can be used in a wide range of applications such as construction, automotive, aerospace, and marine industries.
Q:How does the width of fiberglass mat tissue affect its conformability?
The width of fiberglass mat tissue does not directly affect its conformability. Conformability is primarily determined by the flexibility and pliability of the material itself, rather than its width.
Q:Can fiberglass mat tissue be used for composite panel manufacturing?
Yes, fiberglass mat tissue can be used for composite panel manufacturing. Fiberglass mat tissue is a thin and lightweight material that is typically made from randomly oriented fiberglass strands bonded together with a binder. It is commonly used as a reinforcement material in composite manufacturing processes. When used in composite panel manufacturing, fiberglass mat tissue is typically combined with other materials such as resin and a core material to create a strong and durable panel. The mat tissue provides reinforcement and strength to the panel, helping to distribute loads and prevent cracking or delamination. Fiberglass mat tissue is known for its excellent tensile strength, dimensional stability, and resistance to chemicals, making it well-suited for use in composite panel manufacturing. It can be used in a variety of applications, including construction, transportation, marine, and aerospace industries. Overall, fiberglass mat tissue is a versatile and effective material that can be successfully used in the manufacturing of composite panels. Its properties and characteristics make it a reliable choice for creating strong and durable panels for various applications.

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