Epoxy FRP Pipe Internal Heating Curing

Epoxy FRP Pipe Internal Heating Curing

ParameterValue
Pipe DiameterDN40 to DN300 mm
Annual Output2000 km
Max Working Pressure (Surface Line)31 MPa
Max Working Pressure (Downhole Tubing)26 MPa
Max Ambient Temperature (Aliphatic Amine)85°C

Technical Data

Epoxy FRP Pipe Internal Heating Curingw

ParameterValue
Pipe DiameterDN40 to DN300 mm
Annual Output2000 km
Max Working Pressure (Surface Line)31 MPa
Max Working Pressure (Downhole Tubing)26 MPa
Max Ambient Temperature (Aliphatic Amine)85°C
Max Ambient Temperature (Aromatic Amine)110°C
High-Temperature PipesUp to 150°C (Customer Request)
Fiber Winding TechnologyDigital Controlled, Continuous Fiber

Epoxy FRP Pipe Internal Heating Curing

Applications of Epoxy FRP Pipes

  • Surface Lines in Oil and Gas Fields:
    Used for fluid transportation, production piping, and wellhead lines in oil and gas fields. Their resistance to corrosion and long-lasting performance in high-pressure environments makes them ideal for these applications.
  • Downhole Tubing:
    Epoxy FRP pipes are highly effective in downhole environments where high tensile strength and durability are required. Their ability to withstand high-pressure conditions ensures reliable operation even under deep well conditions.
  • Offshore Platforms:
    Epoxy FRP pipes provide robust solutions for offshore oil rigs and platforms, where exposure to saltwater and extreme weather conditions demands highly resistant piping systems.
  • Geothermal Applications:
    With their ability to handle high temperatures and pressures, epoxy FRP pipes are well-suited for geothermal drilling and exploration projects where traditional materials may not provide the same level of performance.

Epoxy FRP Pipe Internal Heating Curingw

Epoxy FRP Pipe Internal Heating Curing

Epoxy FRP Pipe Internal Heating Curing

The Epoxy Fiber Reinforced Plastic (FRP) HP Surface Lines and Downhole Tubing are designed and manufactured to meet stringent API specifications. These pipes offer exceptional performance in demanding environments, providing a durable, high-strength solution for oil and gas applications. With an annual output of 2000 km in length, these pipes range in diameter from DN40 to DN300mm.

The Epoxy FRP HP Surface Line features standard API long round thread connections made from composite material, which enhances wear resistance and extends the pipe’s working life. These pipes are designed for high-pressure applications, with maximum working pressures of 31MPa for HP surface lines and 26MPa for downhole tubing. The maximum ambient temperature ranges from 85°C for aliphatic amine cured epoxy FRP pipes to 110°C for aromatic amine cured epoxy FRP pipes. Pipes suitable for temperatures up to 150°C are available upon customer request.

The downhole tubing is constructed using high-performance, high-tensile-strength FRP materials wound by advanced digital-controlled equipment. Continuous fiber winding technology ensures that the pipes meet the required tensile strength for downhole operations.


Main Features

  • Lightweight: Approximately 1/4 of the weight of steel pipes.
  • Fast and Convenient Installation: Can be installed under all weather conditions without the need for bonding agents.
  • Smooth Inner Surface: Provides excellent fluid flow, minimizing resistance.
  • Strong Corrosion Resistance: Designed for long-term use in harsh environments.
  • Low Installation Cost: Reduced expenses compared to traditional piping solutions.
  • Little Wax and Scale Deposition: Enhances performance and longevity in various applications.

Epoxy FRP Pipe Internal Heating Curing (Continued)

The Epoxy FRP Pipes continue to gain recognition for their outstanding performance in harsh environments, especially in the oil and gas industry. With exceptional mechanical properties and resistance to corrosion, these pipes ensure long-term reliability and cost-efficiency in a range of applications. Below is a further elaboration on the operational advantages, technical enhancements, and additional features of the Epoxy FRP Pipe Internal Heating Curing.


Additional Key Features and Advantages:

  1. Enhanced Durability:
    The composite material used in the epoxy FRP pipes enhances their durability, making them less susceptible to wear and tear over extended periods of use. The fiber-reinforced structure ensures the pipes are resilient against external mechanical stresses, while the composite thread connections minimize damage to the pipe and the joints, ensuring smooth and long-lasting operations.
  2. Excellent Fluid Handling:
    The smooth inner surface of the pipes significantly enhances the flow of fluids. By minimizing friction, fluid dynamics are optimized, which reduces the risk of turbulence, pressure losses, and improves the efficiency of the entire fluid transportation system. The reduced chances of scale and wax formation inside the pipe also contribute to better fluid flow and less maintenance downtime.
  3. Versatile Use in Extreme Conditions:
    The pipes are highly adaptable for a wide range of applications in extreme conditions. Whether it’s deep well drilling, exploration, or refining processes, the pipes offer excellent resistance to corrosion and chemical attack, making them ideal for use in environments where traditional steel pipes may fail due to corrosion or degradation over time.
  4. Easy and Quick Installation:
    The lightweight nature of Epoxy FRP Pipes makes them easier to handle and install compared to traditional metal piping systems. This leads to reduced installation time and labor costs, making them an economical choice. Furthermore, there is no need for bonding agents during the installation, which simplifies the process and reduces potential environmental impacts.
  5. Customizability for Different Applications:
    As customer needs vary across different industrial processes, Epoxy FRP Pipes can be custom-manufactured to meet specific project requirements. The ability to tailor the pipes for different diameters, pressures, and operational conditions ensures that each application receives the right solution for optimal performance.
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