Enhancing Pipe Performance with X65 SSAW Polypropylene Lined Pipe

Short Description:

In the world of pipeline infrastructure, ensuring safe and efficient fluid transport is critical. This is why the selection of pipe materials and construction methods is critical to achieving the desired performance. X65 SSAW polypropylene-lined pipes manufactured by the double submerged arc welding (DSAW) process have emerged as an efficient solution in this regard.


Product Detail

Product Tags

 X65 spiral submerged arc welded line pipe, commonly known as spiral submerged arc welded line pipe, is known for its high tensile strength and excellent corrosion resistance. By combining these properties with the benefits of polypropylene lining, the resulting piping system provides a strong and durable solution for a variety of applications, including the transportation of oil, gas and chemicals.

 Polypropylene lined pipes are designed to protect against corrosion, abrasion and chemical attack, ensuring a longer service life and lower maintenance costs. Its smooth inner surface also promotes efficient fluid flow, minimizing pressure losses and optimizing pipe performance. In addition, polypropylene materials are highly resistant to a wide range of chemicals, making them ideal for transporting corrosive substances.

Specification

Usage

Specification

Steel Grade

Seamless Steel Tube for High Pressure Boiler

GB/T 5310

20G, 25MnG, 15MoG, 15CrMoG, 12Cr1MoVG,
12Cr2MoG, 15Ni1MnMoNbCu, 10Cr9Mo1VNbN

High Temperature Seamless Carbon Steel Nominal Pipe

ASME SA-106/
SA-106M

B, C

Seamless Carbon Steel Boil Pipe used for High Pressure

ASME SA-192/
SA-192M

A192

Seamless Carbon Molybdenum Alloy Pipe used for Boiler and Superheater

ASME SA-209/
SA-209M

T1, T1a, T1b

Seamless Medium Carbon Steel Tube & Pipe used for Boiler and Superheater

ASME SA-210/
SA -210M

A-1, C

Seamless Ferrite and Austenite Alloy Steel Pipe used for Boiler, Superheater and Heat Exchanger

ASME SA-213/
SA-213M

T2, T5, T11, T12, T22, T91

Seamless Ferrite Alloy Nominal Steel Pipe applied for High Temperature

ASME SA-335/
SA-335M

P2, P5, P11, P12, P22, P36, P9, P91, P92

Seamless Steel Pipe made by Heat-resistant Steel

DIN 17175

St35.8, St45.8, 15Mo3, 13CrMo44, 10CrMo910

Seamless Steel Pipe for
Pressure Application

EN 10216

P195GH, P235GH, P265GH, 13CrMo4-5, 10CrMo9-10, 15NiCuMoNb5-6-4, X10CrMoVNb9-1

 The DSAW construction method further enhances the structural integrity of X65 SSAW polypropylene lined pipe. The process involves welding spiral joints of pipes from the inside and outside, resulting in a strong, consistent, and defect-free weld. As a result, the pipes have excellent dimensional accuracy and uniformity, reducing the likelihood of welding defects and potential leak points.

 In addition, the line pipe is made of X65 steel, which has high yield strength and impact toughness, making it ideal for harsh working conditions such as high pressure and extreme temperatures. This ensures the pipe can withstand challenging environments while maintaining its structural integrity over time.

 

Helical Welded Pipe

 X65 SSAW polypropylene lined pipe is also available in a variety of sizes and wall thicknesses for greater flexibility in adapting to varying flow requirements and operating pressures. This versatility makes it a viable option for a variety of industrial, commercial, and municipal applications.

 In summary, the combination of X65 SSAW line pipe manufactured via the DSAW process and a polypropylene liner provides a compelling solution for enhancing pipe performance. Its ability to resist corrosion, promote efficient fluid flow and withstand harsh operating conditions makes it an attractive choice for critical infrastructure projects.

 X65 SSAW polypropylene lined pipe offers a compelling value proposition for organizations looking to achieve optimal reliability and longevity in their piping systems. By leveraging the strengths of its constituent materials and construction methods, this pipeline solution demonstrates innovation in fluid transport infrastructure.


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