Medium Flame Resistant Sponge Silicone Tape

Medium Flame Resistant Sponge Silicone Tape

CELL STRUCTURE: Closed Cell
MATERIAL/SUBSTRATE: Silicone Sponge
DENSITY: 10.0 lbs/ft³
COMPRESSION STRESS 25% STRAIN: 2.8 psi
ELONGATION TO FAILURE: 110%
COMPRESSION SET, 22 HOURS @ 158°F, 50% [BSENISO 1856]: <1%
THERMAL CONDUCTIVITY: 0.064 w/m.K
UL94 V0: 1.5mm
OZONE RESISTANT: Yes
UV Resistant: Yes
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Description
Technical Parameters
Products Description
 

 

 

In the ever-evolving landscape of industrial solutions, Rolifyx stands out as a leading manufacturer and supplier specializing in the production of Medium Flame Resistant Sponge Silicone Tape. Renowned for our commitment to innovation and the delivery of top-notch products, Rolifyx takes pride in offering cutting-edge silicone materials tailored to meet the diverse needs of our clientele. Our dedication to customer satisfaction is exemplified through the customization options we provide, ensuring that our Medium Flame Resistant Sponge Silicone Tape not only exceeds industry standards but also aligns seamlessly with the unique requirements of each customer.

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Rolifyx's Medium Flame Resistant Sponge Silicone Tape embodies the pinnacle of flame resistance and adaptability. Crafted with high-quality silicone, this tape not only resists flames and high temperatures but also features a sponge-like texture, allowing it to conform to irregular surfaces with ease. As a supplier, we take pride in offering a versatile solution for industries such as manufacturing, automotive, electronics, and construction, where the need for flexible and flame-resistant materials is paramount.

Our commitment to customization ensures that clients receive tailor-made solutions, empowering them to modify liquid silicone effectively and providing optimal solutions to meet their specific needs. When opting for Rolifyx's Medium Flame Resistant Sponge Silicone Tape, clients can trust in the fusion of novel technology and quality craftsmanship, delivering a product that not only meets but exceeds expectations in the realm of industrial applications.

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Product Features
 

Superior Weather Resistance

The product demonstrates outstanding resistance to ultraviolet (UV) radiation and ozone, ensuring stability in various harsh environmental conditions. It remains unaffected by UV rays and ozone exposure, guaranteeing long-term stability and reliability.

 

Exceptional Temperature Adaptability

With excellent resistance to high and low temperatures, the product is suitable for use in extreme temperature conditions. Whether in high-temperature or low-temperature environments, the product maintains stable performance, ensuring reliable operation under diverse working conditions.

 

Lightweight Design

The product features a low-density design, making it a lightweight material. This not only helps reduce the overall weight of the product but also makes it more suitable for applications where weight considerations are crucial, enhancing portability and flexibility.

 

Uniform Microcellular Structure

The product boasts a fine and uniform microcellular structure, providing excellent sound insulation, thermal insulation, and shock absorption capabilities. This structure also facilitates easier processing and shaping, expanding its applicability in various applications.

 

Outstanding Compression Resistance

The product exhibits remarkable resistance to compression deformation and creep, maintaining elasticity over extended periods of use. This ensures the product's reliability when subjected to external pressures and stresses, ultimately extending its lifespan.

 

Non-toxic and Environmentally Friendly

The product is non-toxic and environmentally friendly, meeting eco-friendly requirements and suitable for applications where material safety is a priority. It does not release harmful substances during use, ensuring the health and safety of users.

 

 

 

 

Product Parameters
 

 

Liquid Silicone Foam

Hardness

Product model

Density (g/cm³)

25% Compression deformation stress (KPa)

Tensile strength (MPa)

Fracture elongation rate (%)

Compression deformation at 100℃

Water absorption rate (%)

High and low-temperature embrittlement

Flame retardancy

Environmental protection testing

Common thickness (mm)

Classic application scenarios

Soft

zwxc-185

0

2±2

≥0.2

≥85

≤5.0

≤5.0

Passes -55°C to 250°C

UL94﹣V0

ROHS, REACH Compliant

0.8-30

Sealing support

Soft

zwxc-186

0.16±0.05

10±3

≥0.2

≥85

≤5.0

≤5.0

Passes -55°C to 250°C

UL94﹣V0

ROHS, REACH Compliant

0.8-30

Sealing support

Medium-hard

zwxc-187

0.2±0.05

20±5

≥0.3

≥90

≤5.0

≤5.0

Passes -55°C to 250°C

UL94﹣V0

ROHS, REACH Compliant

0.8-30

Sealing support

Hard

zwxc-188

0.35±0.05

30±5

≥0.3

≥90

≤5.0

≤5.0

Passes -55°C to 250°C

UL94﹣V0

ROHS, REACH Compliant

0.8-30

Sealing support

 

 

 

 

Application Scenarios
 

The main applications of the Medium Flame Resistant Sponge Silicone Tape in flame retardancy include:

Sealing of Electronic Equipment

In the manufacturing of electronic devices, this flame retardant tape can be used to seal circuit boards, connectors, and other electronic components to prevent damage or malfunction caused by fires.

Automotive and Aerospace Industries

In the automotive and aerospace industries, it is commonly used to seal and flame retard engine compartments of automobiles, aircraft engine compartments, and other critical areas to enhance safety performance.

Building Materials

In the construction sector, this product can be used to seal wires, pipes, and other facilities inside or outside buildings to prevent the spread of flames and smoke in the event of a fire.

Industrial Pipelines

It can be applied in industrial pipeline systems for flame retardant, sealing, and insulation at pipe joints to ensure safe operation of pipelines.

Marine and Ocean Engineering

In marine and ocean engineering, this flame retardant tape can be used to seal and fireproof ship cabins, hull structures, and pipelines to improve the fire resistance of ships.

Power Industry

In the power industry, it can be used to seal and flame retard transformers, cable connections, and power equipment to ensure the safety of power system operation.

 

 

 

 

Competitive Analysis
 

The Medium Flame Resistant Sponge Silicone Tape differs significantly from ordinary silicone gel in terms of flame retardant properties. Its main component is liquid silicone rubber, and the differences between it and ordinary silicone gel are mainly reflected in the following aspects:

Flame Retardant Performance

Liquid silicone rubber is typically subjected to special treatment, with the addition of flame retardants or fillers with flame retardant properties to enhance its flame retardant performance. Compared to ordinary silicone gel, it exhibits higher resistance to fire during a fire, effectively preventing the spread of flames and the generation of smoke.

01

Sealing Performance

Due to its excellent plasticity and flexibility, liquid silicone rubber performs better in terms of sealing performance. It can better fill and seal irregular surfaces and gaps, effectively preventing fires and smoke from entering through sealed areas.

02

High Temperature Resistance

Liquid silicone rubber typically has higher temperature resistance, maintaining stability in high-temperature environments. This allows it to maintain good flame retardant performance even under high temperature conditions, effectively protecting equipment and structures from fire damage.

03

Weather Resistance and Durability

Due to its good weather resistance and durability, liquid silicone rubber has a longer service life and more stable performance, ensuring the long-term maintenance of its flame retardant properties and the safety of equipment and structures.

04

In summary, Medium Flame Resistant Sponge Silicone Tape, with its main component of liquid silicone rubber containing added flame retardants, exhibits superior characteristics in flame retardant performance, sealing performance, high temperature resistance, and durability compared to ordinary silicone gel. It is a material better suited for flame retardant applications.

 

 

 

 

Why choose us?
 

 

Rolifyx stands as a prominent manufacturer and supplier specializing in the production of Medium Flame Resistant Sponge Silicone Tape. With our own state-of-the-art factory, we are dedicated to providing comprehensive, tailored services to retailers worldwide.

A Commitment to Excellence

 

As a leading manufacturer, we prioritize impeccable quality control and steadfast on-time delivery. Our commitment to excellence ensures that each product leaving our facilities meets the highest standards of quality and reliability.

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Cost-Effectiveness

 

At Rolifyx, we understand the importance of cost-effectiveness in today's competitive market. Through automated production processes and sourcing raw materials domestically, we strive to offer our clients competitive pricing without compromising on quality.

Technological Prowess

 

Backed by a robust technical team, we continually invest in cutting-edge technologies to enhance our manufacturing processes and product offerings. Our dedication to innovation ensures that we stay at the forefront of the industry, delivering solutions that meet the evolving demands of the market.

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FAQ

 
 

Q: Is silicone rubber flame resistant?

A: Yes, silicone rubber is generally considered flame-resistant. Silicone rubber has inherent properties that make it resistant to ignition and combustion. Some key characteristics of silicone rubber that contribute to its flame resistance include:
 
High Temperature Resistance: Silicone rubber can withstand high temperatures without undergoing significant changes in its physical and chemical properties. This high-temperature resistance contributes to its ability to resist ignition and combustion.
 
Low Flammability: Silicone rubber has a low flammability rating, meaning it is less likely to catch fire compared to many other materials. It tends to self-extinguish when the flame source is removed.
 
Limited Smoke Emission: In the event of a fire, silicone rubber tends to produce limited smoke and toxic by-products. This is beneficial for applications where smoke and toxic fumes are a concern.
 
Self-Extinguishing: Silicone rubber often exhibits self-extinguishing properties, meaning that it stops burning when the ignition source is removed.
 
While silicone rubber is flame-resistant, it's important to note that the specific flame resistance properties can vary based on the formulation of the silicone material, additives used, and the manufacturing process. If flame resistance is a critical requirement for a particular application, it's advisable to check the specifications and certifications of the specific silicone rubber product to ensure it meets the desired standards for flame resistance. Additionally, testing and certification standards such as UL 94 may be applicable for assessing the flame resistance of silicone rubber products.

Q: Is silicone foam fire-resistant?

A: Silicone foam is generally considered to be fire-resistant, thanks to the inherent properties of silicone rubber from which the foam is derived. Silicone rubber, the base material for silicone foam, is known for its high-temperature resistance and flame-retardant characteristics. The unique chemical structure of silicone imparts flame-resistant properties to the foam.
 
Key attributes of silicone foam that contribute to its fire resistance include:
High Temperature Resistance: Silicone foam can withstand elevated temperatures without undergoing significant degradation. This property is crucial for applications where exposure to heat and potential fire hazards is a concern.
 
Low Flammability: Silicone foam typically has low flammability, meaning it is less prone to catching fire compared to some other materials. It often self-extinguishes when the flame source is removed.
 
Limited Smoke Emission: In the event of a fire, silicone foam tends to produce limited smoke and toxic by-products. This characteristic is important for applications where smoke and toxic fumes need to be minimized.
 
Self-Extinguishing: Like silicone rubber, silicone foam often exhibits self-extinguishing properties, meaning it ceases to burn once the ignition source is removed.
 
However, as with any material, the specific flame resistance properties of silicone foam can depend on factors such as the formulation of the foam, any additives used, and the manufacturing process. If fire resistance is a critical requirement for a specific application, it's recommended to review the product specifications and certifications to ensure that the silicone foam meets the desired standards. Testing and certification standards, such as UL 94, may be applicable for assessing the flame resistance of silicone foam products.

Q: Which is more heat resistant rubber or silicone?

A: Silicone rubber is generally more heat-resistant than traditional rubber. While both materials can withstand a range of temperatures, silicone rubber has superior high-temperature stability compared to many types of conventional rubber.
Here are some key points comparing the heat resistance of rubber and silicone:
Temperature Range:
Rubber: Depending on the specific type of rubber, it typically has a lower maximum temperature resistance compared to silicone. Common rubber types may have a maximum continuous use temperature of around 150 to 200 degrees Celsius (302 to 392 degrees Fahrenheit).
Silicone: Silicone rubber, on the other hand, can often withstand temperatures ranging from -50 to 250 degrees Celsius (-58 to 482 degrees Fahrenheit) or even higher, depending on the specific formulation and grade.
 
High-Temperature Stability:
Rubber: Conventional rubber can start to degrade and lose its mechanical properties at elevated temperatures, limiting its usefulness in high-temperature applications.
Silicone: Silicone rubber maintains its flexibility, elasticity, and other mechanical properties at higher temperatures, making it suitable for applications where exposure to heat is a significant factor.
 
Thermal Conductivity:
Rubber: Generally has lower thermal conductivity compared to silicone.
Silicone: Silicone rubber tends to have better thermal conductivity, allowing it to dissipate heat more effectively.
 
Thermal Expansion:
Rubber: May experience higher levels of thermal expansion.
Silicone: Silicone rubber typically has lower thermal expansion, contributing to its stability at varying temperatures.
 
Due to its excellent heat resistance, silicone rubber is often preferred in applications where exposure to high temperatures, thermal cycling, and thermal stability are crucial, such as in automotive, aerospace, and electrical applications. However, the choice between rubber and silicone depends on the specific requirements of the application and the operating conditions. Always refer to the manufacturer's specifications and recommendations for the particular type of rubber or silicone being used.

 

 

 

 

 

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