Reinforce Your Projects with Fiberglass Woven Roving Mat: The Ultimate in Strength and Rigidity

The product “Fiberglass Woven Roving Mat” is a non-woven material made from fiberglass and commonly used to reinforce the strength and rigidity of composite materials. This product has several notable features that make it highly beneficial for various applications.

One of the key advantages of this material is its high strength and stiffness, which can significantly improve the durability and performance of the composite product. Additionally, it has strong corrosion resistance, making it well-suited for use in harsh environments or exposure to corrosive substances.

Another benefit of this material is its high-temperature resistance, making it suitable for use in applications that involve exposure to high temperatures. It also exhibits good insulation properties, which can be useful in certain applications.

The weaving structure of this material is designed to prevent fiber dislocation and mesh leakage, which helps to improve the overall strength and uniformity of the composite product. Overall, Fiberglass Woven Roving Mat is a highly versatile material with many desirable characteristics, making it a popular choice for a wide range of applications.

Applications:

The fiberglass woven roving mat is a versatile material that is commonly used in the manufacturing of composite products such as GFRP and FRP. Its high strength, stiffness, corrosion resistance, temperature resistance, and insulation performance make it a suitable choice for various industries including ships, aircraft, automobiles, wind turbines, and building materials.

In shipbuilding, the woven non-woven fabric is frequently used to reinforce the hull and strengthen the cabin structure to increase the ship’s overall strength and rigidity. Similarly, in the field of building materials, this product is commonly used in the manufacture of insulation, wall panels, floors, and roofs. The material is also widely used in other fields such as chemical industry, electronics, and healthcare.

For instance, in the automobile manufacturing industry, it can be used to make body parts, chassis structures, and other components. In construction, it can be used as a reinforcement material for walls, waterproof layer materials, and more. In the electronics field, it can be utilized to make circuit boards and other electronic components. With its versatility and range of applications, fiberglass woven roving mat is a popular choice for manufacturers across various industries.

Product Specifications

Product specifications for “Glass Fiber Woven Non-woven Fabric” typically include information such as fiber density, width, weight, and other characteristics, which can be customized to meet specific customer requirements. Some of the common specifications for this product include 200g/m2, 300g/m2, and 450g/m2.

Product Manufacturing Process

The manufacturing process for this product involves interweaving glass fibers on a weaving machine. During the process, the glass fibers undergo various stages such as board opening, degumming, worsted spinning, and weaving to create the final non-woven fabric. The resulting fabric has a uniform fiber density, long fiber length, and high tensile strength.

Precautions for Product Use

It is important to take necessary precautions when using this product, as it contains glass fibers which can cause harm to the skin and respiratory system if proper protective measures are not taken. Appropriate safety measures should be followed during the manufacturing process to prevent workers from being exposed to the fibers.

Product Advantages

The “glass fiber woven non-woven fabric” offers several advantages over other reinforcement materials. It has higher strength and stiffness, as well as good tensile, compressive, and shear properties. Furthermore, it possesses anti-corrosion, high-temperature resistance, insulation, and other properties, making it suitable for use in various special fields.

Features

Apart from the excellent performance, this material also has other features, such as being lightweight, easy to process, wear-resistant, and resistant to aging. It is easy to store and handle, making it an ideal choice for reinforcement material.

Product Market Potential

The “glass fiber woven non-woven fabric” is a product with great market potential due to its excellent performance and wide application fields. As various industries have higher and higher requirements for high strength, high stiffness, corrosion resistance, and high-temperature resistance, the demand for reinforced materials such as “glass fiber woven non-woven fabrics” is expected to continue to increase with the rapid development of the global economy and the continuous advancement of science and technology.

Product Categories

Glass fiber Woven Non-woven Fabrics” have various types, including unidirectional non-woven fabrics, two-way non-woven fabrics, multi-directional non-woven fabrics, etc. Unidirectional non-woven fabrics have unidirectional strength and are suitable for parts with a single direction of force, while bidirectional non-woven fabrics have bidirectional strength and are suitable for parts with changeable directions of force, such as complicated parts.

 

Production Process

The production process of “glass fiber woven fabric” includes fiber forming, weaving, heat setting, and other processes. Firstly, glass fibers are stretched, twisted, and parallelized to form fiber bundles of different shapes and lengths. Secondly, these fiber bundles are woven into a mesh to form a non-woven fabric. Finally, the non-woven fabric is heat-set for better strength, stiffness, and other properties.

Precautions for Product Use

Care should be taken when using “glass fiber woven non-woven fabrics” to avoid scratches, extrusion, folding, etc., which can affect the product’s performance. Moreover, personal protection should be taken into consideration during use to prevent dust and skin irritation.

In conclusion, “glass fiber woven non-woven fabric” is a significant material for enhancing the strength and stiffness of composite materials and has vast application prospects.

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