• Fiberglass Mat Tissue Reinforced Heat/Thermal Insulation Rock Wool Fireproof Board System 1
  • Fiberglass Mat Tissue Reinforced Heat/Thermal Insulation Rock Wool Fireproof Board System 2
  • Fiberglass Mat Tissue Reinforced Heat/Thermal Insulation Rock Wool Fireproof Board System 3
Fiberglass Mat Tissue Reinforced Heat/Thermal Insulation Rock Wool Fireproof Board

Fiberglass Mat Tissue Reinforced Heat/Thermal Insulation Rock Wool Fireproof Board

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Loading Port:
Tianjin
Payment Terms:
TT OR LC
Min Order Qty:
5000 m²
Supply Capability:
20000 m²/month

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1.Description of Glass Wool Blanket:

Rock wool insulation board is based on superior melted basalt and diabase as the main raw material, through advanced centrifuge system of four-roller cotton process which pulls melted basaltic rockwool into a 4 ~ 7μm non continuous fibers followed by adding a certain amount of binder, dust laying oil, water repellent before settlement folding, curing, cutting and other processes, and then made into the products of different density depending on purpose of usage.

At the system HOT END, the raw materials are dosed, mixed, melted, fiberized, impregnated with a special binder and formed into a primitive mat of very fine fiber glass. Continuous conveyors transport the mat to the COLD END of the plant for binder polymerization. The product is then cut to shape and packed for shipping.

 

2.Main features of Glass Wool Blanket:

1. Excellent thermal insulation

2. Fireproof

3. Good sound absorption property

4. Stable and durable.

5. High acidity coefficient


 

3.Glass Wool Blanket Images:

 

Heat/thermal insulation Rock Wool Fireproof boardHeat/thermal insulation Rock Wool Fireproof board

 

4. Glass Wool Insulation Blanket Technical Parameters:


Property

High/low   temperature resistance, oil and fuel resistance, weathering resistance, O   zone resistance etc.

Shape

According   to your requirement.

Color

Any color   is available ,according to your requirements.

Material

NBR, CR,   SBR, EPDM, IIR, NR, EP, Silicone, VITON etc.

Hardness

30-90ShoreA

Delivery

In 10   days

Packing

Plastic bag   &   carton box or according to your requirements.

Application

Electronic   field, industrial machine & equipment, house-hold appliance,   telecommunication, automobile, medical equipment industry etc.

 

Heat/thermal insulation Rock Wool Fireproof boardHeat/thermal insulation Rock Wool Fireproof board 

5.FAQ

We have organized several common questions for our clientsmay help you sincerely 

How about your company

A world class manufacturer & supplier of Glass Wool Blanket is one of the large scale professional investment casting production bases in China,consisting of both casting foundry forging and machining factory. Annually more than 8000 tons Precision casting and forging parts are exported to markets in Europe,America and Japan. OEM casting and forging service available according to customer’s requirement.

How to guarantee the quality of the products

We have established the international advanced quality management system every link from raw material to final product we have strict quality test; We resolutely put an end to unqualified products flowing into the market. At the same time, we will provide necessary follow-up service assurance.

 


Q: Can fiberglass mat tissue be used for pipe insulation?
Yes, fiberglass mat tissue can be used for pipe insulation. It provides thermal insulation and can help prevent heat loss or gain in pipes. Additionally, it offers excellent resistance to moisture and corrosion, making it suitable for various pipe insulation applications.
Q: Is fiberglass mat tissue suitable for wastewater treatment applications?
Yes, fiberglass mat tissue is suitable for wastewater treatment applications. It is commonly used in the construction of wastewater treatment tanks and pipes due to its corrosion resistance, durability, and ability to withstand harsh chemical environments. Additionally, fiberglass mat tissue is non-reactive to biological and chemical elements present in wastewater, making it an ideal material for such applications.
Q: Does fiberglass mat tissue require any special maintenance after installation?
Once the fiberglass mat tissue is installed, it typically requires no special maintenance. Its design makes it durable and resistant to wear and tear, as well as highly resistant to moisture, chemicals, and UV radiation. This versatility makes it suitable for a variety of applications, such as roofing, insulation, and wall covering. However, it is advisable to periodically inspect the fiberglass mat tissue to guarantee its good condition. This involves checking for any indications of damage, such as cracks, tears, or delamination. In the event of any issues, prompt attention should be given to prevent further harm. Furthermore, it is essential to adhere to the manufacturer's guidelines and recommendations concerning the specific type of fiberglass mat tissue used. This may involve avoiding exposure to certain chemicals or utilizing appropriate cleaning methods if necessary. In summary, while fiberglass mat tissue generally requires minimal upkeep, regular inspections and adherence to the manufacturer's instructions can promote its durability and optimal functionality.
Q: What is the moisture vapor transmission rate of fiberglass mat tissue?
The moisture vapor transmission rate of fiberglass mat tissue can vary depending on various factors such as the specific composition of the material and its thickness. However, in general, fiberglass mat tissue has a relatively low moisture vapor transmission rate. This means that it has a relatively low ability to allow moisture vapor to pass through it. This characteristic makes it a suitable material for applications where moisture resistance is desired, such as in insulation or construction materials. However, it is important to note that the moisture vapor transmission rate of fiberglass mat tissue can be further influenced by other factors such as the presence of coatings or laminations, which may enhance or restrict its moisture vapor transmission properties.
Q: Does fiberglass mat tissue provide any UV resistance?
Yes, fiberglass mat tissue does provide some level of UV resistance. The resin used to bind the fibers in the fiberglass mat tissue helps protect it from the harmful effects of UV radiation. However, prolonged exposure to sunlight can still cause some degradation over time, so additional UV protection measures may be necessary for long-term durability.
Q: Is fiberglass mat tissue suitable for insulation in educational facilities?
Indeed, fiberglass mat tissue proves to be a suitable option for insulation in educational facilities. Owing to its exceptional thermal insulation properties, fiberglass mat tissue is widely employed in insulation applications. This lightweight and cost-effective material effectively insulates buildings, including educational facilities, from heat loss or gain. Moreover, fiberglass mat tissue is renowned for its fire-resistant characteristics – a vital consideration in any structure, particularly in educational facilities where the safety of students and staff takes precedence. Furthermore, the installation of fiberglass mat tissue is effortless, and it does not necessitate extensive upkeep, thus rendering it a convenient selection for insulation in educational facilities.
Q: How does fiberglass mat tissue perform in terms of moisture resistance?
Fiberglass mat tissue is known for its excellent moisture resistance properties. The material is made up of tightly woven fiberglass strands, which create a barrier against moisture penetration. This makes it highly effective in preventing water or moisture from seeping through and damaging underlying surfaces or structures. Additionally, the resin used to bind the fiberglass strands together also adds an extra layer of protection against moisture, making it even more resistant to water and humidity. Overall, fiberglass mat tissue is a reliable choice when it comes to moisture resistance, making it suitable for various applications where preventing water damage is crucial.
Q: How does fiberglass mat tissue perform in terms of thermal expansion?
Fiberglass mat tissue has a relatively low thermal expansion coefficient, meaning it expands minimally when exposed to heat. This characteristic makes it an excellent material for applications where thermal stability is crucial. The tightly woven structure of fiberglass mat tissue helps to limit the expansion and contraction of the material, even under high temperatures. Consequently, it exhibits excellent dimensional stability and resistance to thermal stresses. This property allows fiberglass mat tissue to maintain its structural integrity when exposed to extreme temperature variations, making it highly suitable for use in industries such as aerospace, automotive, and construction, where thermal expansion and contraction can pose significant challenges.
Q: Is fiberglass mat tissue suitable for sound absorption?
No, fiberglass mat tissue is not suitable for sound absorption.
Q: What is the composition of fiberglass mat tissue?
Fiberglass mat tissue, also referred to as fiberglass mat or fiberglass veil, comprises a blend of fiberglass fibers and a binder substance. The fiberglass fibers utilized in its formulation are typically derived from silica, a naturally occurring mineral, and are esteemed for their exceptional strength and durability. The specific binder substance used in fiberglass mat tissue can differ, but commonly includes materials like urea-formaldehyde, acrylic, or polyester resins. The binder's function is to secure the fiberglass fibers together and provide the mat with structural integrity. Furthermore, the composition of fiberglass mat tissue may incorporate additional additives. These additives may encompass pigments, fire retardants, or coatings, contingent upon the mat's intended application and desired properties. In conclusion, fiberglass mat tissue is an amalgamation of fiberglass fibers and a binder substance, supplemented by other additives as required. This composition enables the material to possess remarkable strength, flexibility, and resistance to diverse environmental factors, rendering it a versatile substance employed in numerous industries including construction, automotive, aerospace, and marine.

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