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>BSI Standards >23 FLUID SYSTEMS AND COMPONENTS FOR GENERAL USE>23.040 Pipeline components and pipelines>23.040.10 Iron and steel pipes>BS ISO 24131-4:2026 Internal protection by polymeric lining for ductile iron pipes. Requirements and test methods Ceramic epoxy lining
immediate downloadReleased: 2026-06-16
BS ISO 24131-4:2026 Internal protection by polymeric lining for ductile iron pipes. Requirements and test methods Ceramic epoxy lining

BS ISO 24131-4:2026

Internal protection by polymeric lining for ductile iron pipes. Requirements and test methods Ceramic epoxy lining

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Standard number:BS ISO 24131-4:2026
Pages:20
Released:2026-06-16
ISBN:978 0 539 32674 1
Status:Standard
DESCRIPTION

BS ISO 24131-4:2026


This standard BS ISO 24131-4:2026 Internal protection by polymeric lining for ductile iron pipes. Requirements and test methods is classified in these ICS categories:
  • 23.040.10 Iron and steel pipes

BS ISO 24131-4:2026 - Internal Protection by Polymeric Lining for Ductile Iron Pipes

BS ISO 24131-4:2026 - Internal Protection by Polymeric Lining for Ductile Iron Pipes

Introducing the BS ISO 24131-4:2026, a comprehensive standard that sets the benchmark for internal protection of ductile iron pipes using polymeric lining. This standard is essential for professionals in the field of pipeline construction and maintenance, providing detailed requirements and test methods for ceramic epoxy lining. Released on June 16, 2026, this document is a must-have for ensuring the longevity and reliability of ductile iron pipes.

Key Features of the Standard

The BS ISO 24131-4:2026 standard is meticulously crafted to address the specific needs of ductile iron pipe protection. Here are some of the key features:

  • Standard Number: BS ISO 24131-4:2026
  • Pages: 20
  • Release Date: June 16, 2026
  • ISBN: 978 0 539 32674 1
  • Status: Standard

Why Choose Ceramic Epoxy Lining?

Ceramic epoxy lining is renowned for its exceptional protective qualities, making it an ideal choice for ductile iron pipes. Here are some reasons why ceramic epoxy lining is preferred:

  • Corrosion Resistance: Ceramic epoxy lining provides superior resistance to corrosion, significantly extending the lifespan of ductile iron pipes.
  • Durability: The robust nature of ceramic epoxy ensures that the lining can withstand harsh environmental conditions and mechanical stress.
  • Cost-Effective: By reducing the need for frequent maintenance and replacements, ceramic epoxy lining offers a cost-effective solution for pipeline protection.
  • Environmental Safety: This lining method is environmentally friendly, minimizing the impact on surrounding ecosystems.

Comprehensive Requirements and Test Methods

The BS ISO 24131-4:2026 standard provides a detailed framework for the application and testing of ceramic epoxy lining. It includes:

  • Application Guidelines: Step-by-step instructions for the proper application of ceramic epoxy lining to ensure optimal performance.
  • Testing Procedures: Rigorous test methods to verify the integrity and effectiveness of the lining, ensuring compliance with industry standards.
  • Quality Assurance: Criteria for quality control to maintain high standards throughout the lining process.

Who Should Use This Standard?

This standard is indispensable for a wide range of professionals, including:

  • Pipeline Engineers: To design and implement effective protection strategies for ductile iron pipes.
  • Construction Managers: To oversee the application of ceramic epoxy lining and ensure compliance with industry standards.
  • Quality Control Inspectors: To conduct thorough inspections and testing of lined pipes.
  • Environmental Engineers: To assess the environmental impact and sustainability of pipeline protection methods.

Conclusion

The BS ISO 24131-4:2026 standard is an essential resource for anyone involved in the protection and maintenance of ductile iron pipes. With its comprehensive guidelines and rigorous testing methods, this standard ensures that ceramic epoxy lining is applied effectively, providing long-lasting protection against corrosion and environmental damage. By adhering to this standard, professionals can enhance the durability and reliability of pipeline systems, ultimately leading to safer and more efficient infrastructure.