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Pipeline Corrosion-Resistant Heat Shrink Tape is a vital protective solution designed to safeguard pipelines from corrosion and environmental damage, especially for pipe bend, pipe elbow, tee, and other pipe fittings. This specialized tape is engineered to provide a robust barrier against moisture, chemicals, and other corrosive elements, making it essential in various industries, including oil and gas, water treatment, and chemical processing.
Advantages
Corrosion Resistance: The primary advantage of Pipeline Corrosion-Resistant Heat Shrink Tape is its exceptional ability to protect pipelines from corrosion. The tape forms a tight seal that prevents moisture and harmful chemicals from reaching the underlying material, significantly reducing the risk of corrosion and extending the lifespan of the pipeline.
Durability: This heat shrink tape is designed to withstand harsh environmental conditions, including extreme temperatures and exposure to corrosive substances. Its durability ensures long-lasting protection, making it suitable for both indoor and outdoor applications.
Mechanical Protection: When heated, the tape tightly conforms to the shape of the pipeline, providing a robust layer of mechanical protection. This shields the pipeline from physical damage, abrasion, and environmental factors, ensuring reliable performance over time.
Ease of Application: The lightweight and flexible nature of the tape makes it easy to handle and apply. It can be quickly installed using a heat source, allowing for efficient application in various settings, including remote locations where traditional protective methods may be impractical.
Versatility: Available in various sizes and thicknesses, this heat shrink tape can be used for a wide range of pipeline applications. Its versatility makes it suitable for different types of pipelines, including those used in oil and gas, water treatment, and chemical processing.
Cost-Effective Solution: By preventing corrosion and extending the lifespan of pipelines, this heat shrink tape offers a cost-effective solution for maintenance and repair. It reduces the need for frequent replacements and minimizes downtime, ultimately saving costs in the long run.
Applications
Oil and Gas Industry: In the oil and gas sector, pipelines are often exposed to harsh environmental conditions and corrosive substances. Pipeline Corrosion-Resistant Heat Shrink Tape is used to protect pipelines from moisture ingress and chemical exposure, ensuring safe and efficient operation.
Water Treatment Facilities: In water treatment plants, pipelines are susceptible to corrosion due to the presence of water and various chemicals. The heat shrink tape provides a protective layer that prevents corrosion, ensuring the integrity and safety of the water supply system.
Chemical Processing: In chemical processing facilities, pipelines transport various corrosive substances. The heat shrink tape acts as a barrier, protecting the pipeline from chemical damage and preventing leaks that could lead to environmental contamination.
Marine Applications: In marine environments, pipelines are exposed to saltwater and humidity, which can accelerate corrosion. The heat shrink tape provides a protective seal that helps prevent corrosion and damage, ensuring reliable performance in harsh marine conditions.
Conclusion
In summary, Pipeline Corrosion-Resistant Heat Shrink Tape is an essential component for protecting pipelines across various industries. Its numerous advantages, including corrosion resistance, durability, mechanical protection, and ease of application, make it a reliable and efficient solution for safeguarding critical infrastructure. Whether used in oil and gas, water treatment, chemical processing, or marine applications, this heat shrink tape plays a crucial role in ensuring the longevity and reliability of pipeline systems.
Product specification
Application guide | FRDS 50 | FRDS 60 | FRDS 80 |
Performance | EN12068 | EN12068 | EN12068 |
Compatible mainline coatings | FBE, Coal Tar, PE. PP | FBE, Coal Tar, PE. PP | FBE, Coal Tar, PE. PP |
Soil stress restriction | None | None | None |
Max. Operation temperature | 55 ℃ | 60 ℃ | 80℃ |
Preheat temperature | 50℃~60℃ | 55℃~65 ℃ | 55℃~65 ℃ |
Recommended pipe preparation | SA 2.5 | SA 2.5 | SA 2.5 |
Technical Data
Property | Test Method | Value |
Max. Operating temperature | Up to 55℃ | |
Backing | ||
Tensile strength | ASTM D 638 | 24.2 MPa |
Elongation | ASTM D 638 | 690% |
Hardness, Shore D | ASTM D 2240 | 58 |
Dielectric Strength | ASTM D 149 | 29.8KV/mm |
Volume Resistivity | ASTM D 257 | 10^17 ohm-cm |
Water Absorption | ASTM D 570 | <0.05% |
Adhesive | ||
Softening point for FRDS50/60/80 | ASTM E 28 | 95 ℃/110℃/128℃ |
Lap shear@23℃ for FRDS 50/60/80 | DIN30672 | 90/300/450 N/c㎡ |
Installed Product | ||
Peel Strength@23℃ | EN 12068 | 40N/cm/ >70N/cm/ >90N/cm |
Impact Resistance | EN 12068 | ≥15J |
Indentation resistance | EN 12068 | Pass |
Cathodic disbandment @23℃ | EN12068 | 8.8mm rad |
Resistance to thermal ageing | EN12068 | |
-Tensile strength ratio | 0.9 | |
-Elongation ratio | 0.9 | |
Ultraviolet Irradiation resistance ratio of | EN12068 | |
- Tape strength | 0.94 | |
-Elongation at break | 0.94 |