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Homepage>BS Standards>29 ELECTRICAL ENGINEERING>29.035 Insulating materials>29.035.20 Plastics and rubber insulating materials>BS EN IEC 60684-3-214:2019 Flexible insulating sleeving Specifications for individual types of sleeving. Sheet 214: Heat-shrinkable, polyolefin sleeving, not flame retarded, thick and medium wall
immediate downloadReleased: 2019-10-23
BS EN IEC 60684-3-214:2019 Flexible insulating sleeving Specifications for individual types of sleeving. Sheet 214: Heat-shrinkable, polyolefin sleeving, not flame retarded, thick and medium wall

BS EN IEC 60684-3-214:2019

Flexible insulating sleeving Specifications for individual types of sleeving. Sheet 214: Heat-shrinkable, polyolefin sleeving, not flame retarded, thick and medium wall

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Standard number:BS EN IEC 60684-3-214:2019
Pages:20
Released:2019-10-23
ISBN:978 0 539 02064 9
Status:Standard
BS EN IEC 60684-3-214:2019 Flexible Insulating Sleeving

BS EN IEC 60684-3-214:2019 Flexible Insulating Sleeving

Introducing the BS EN IEC 60684-3-214:2019, a comprehensive standard that sets the benchmark for flexible insulating sleeving. This document is an essential resource for professionals in the electrical and electronics industries, providing detailed specifications for heat-shrinkable, polyolefin sleeving that is not flame retarded, available in both thick and medium wall variations.

Key Features and Specifications

The BS EN IEC 60684-3-214:2019 standard is meticulously crafted to ensure that it meets the highest industry requirements. Here are some of the key features and specifications:

  • Standard Number: BS EN IEC 60684-3-214:2019
  • Pages: 20
  • Release Date: October 23, 2019
  • ISBN: 978 0 539 02064 9
  • Status: Standard

Product Overview

The BS EN IEC 60684-3-214:2019 standard provides a detailed framework for the use of heat-shrinkable, polyolefin sleeving. This type of sleeving is renowned for its flexibility and durability, making it an ideal choice for a wide range of applications. Whether you are working on complex electrical installations or simple wiring projects, this sleeving offers reliable insulation and protection.

Heat-Shrinkable Polyolefin Sleeving

One of the standout features of this standard is its focus on heat-shrinkable polyolefin sleeving. This material is known for its ability to shrink when heated, providing a snug fit around wires and cables. This property not only enhances the insulation but also offers additional mechanical protection, reducing the risk of damage from abrasion or environmental factors.

Thick and Medium Wall Variations

The standard covers both thick and medium wall variations of the sleeving, allowing for flexibility in application. The thick wall sleeving is ideal for environments where additional protection is required, while the medium wall option offers a balance between flexibility and durability. This versatility ensures that you can find the right sleeving for your specific needs.

Applications and Benefits

The BS EN IEC 60684-3-214:2019 standard is applicable across a wide range of industries and applications. Here are some of the key benefits and uses:

  • Electrical Insulation: Provides excellent electrical insulation, reducing the risk of short circuits and electrical failures.
  • Mechanical Protection: Offers robust protection against mechanical damage, including abrasion and impact.
  • Environmental Resistance: Resistant to a variety of environmental factors, including moisture, chemicals, and UV radiation.
  • Versatile Applications: Suitable for use in automotive, aerospace, industrial, and consumer electronics applications.

Why Choose BS EN IEC 60684-3-214:2019?

Choosing the BS EN IEC 60684-3-214:2019 standard ensures that you are using a product that meets rigorous international standards. This not only guarantees quality and reliability but also ensures compatibility with other components and systems. By adhering to this standard, you can be confident that your installations will perform optimally and safely.

Compliance and Quality Assurance

Compliance with the BS EN IEC 60684-3-214:2019 standard is a testament to the quality and reliability of the sleeving. This standard is recognized globally, providing assurance that the product meets the highest levels of safety and performance. By choosing a product that complies with this standard, you are investing in a solution that is both effective and dependable.

Conclusion

In conclusion, the BS EN IEC 60684-3-214:2019 standard is an invaluable resource for anyone involved in the design, installation, or maintenance of electrical systems. Its detailed specifications for heat-shrinkable, polyolefin sleeving ensure that you have access to a product that is both versatile and reliable. Whether you are looking to enhance the safety of your installations or improve their performance, this standard provides the guidance you need to achieve your goals.

Invest in the BS EN IEC 60684-3-214:2019 standard today and experience the benefits of using a product that is at the forefront of electrical insulation technology.

DESCRIPTION

BS EN IEC 60684-3-214:2019


This standard BS EN IEC 60684-3-214:2019 Flexible insulating sleeving is classified in these ICS categories:
  • 29.035.20 Plastics and rubber insulating materials

This part of IEC 60684 gives the requirements for two types of heat-shrinkable, polyolefin sleeving, not flame retarded, thick and medium wall with a nominal shrink ratio of 3:1.

This sleeving has been found suitable for use at temperatures of up to 100 °C.

  • Type A: Medium wall – internal diameter up to 200 mm typically.

  • Type B: Thick wall – internal diameter up to 200 mm typically.

These sleevings are normally supplied in colour black.

Since these types of sleeving cover a significantly large range of sizes and wall thicknesses, Annex A (Tables A.1 and A.2) of this document provides a guide to the range of sizes available. The actual size will be agreed between the user and supplier.

Materials which conform to this specification meet established levels of performance. However, the selection of a material by a user for a specific application will be based on the actual requirements necessary for adequate performance in that application and not based on this specification alone.