ISO 14001:2026 - Environmental management systems — Requirements with guidance for use - Order now!

PRICES include / exclude VAT
>BSI Standards >83 RUBBER AND PLASTICS INDUSTRIES>83.080 Plastics>83.080.10 Thermosetting materials>BS ISO 20368:2017 Plastics. Epoxy resins. Determination of degree of crosslinking of crosslinked epoxy resins by Fourier Transform Infrared (FTIR) Spectroscopy
immediate downloadReleased: 2018-01-24
BS ISO 20368:2017 Plastics. Epoxy resins. Determination of degree of crosslinking of crosslinked epoxy resins by Fourier Transform Infrared (FTIR) Spectroscopy

BS ISO 20368:2017

Plastics. Epoxy resins. Determination of degree of crosslinking of crosslinked epoxy resins by Fourier Transform Infrared (FTIR) Spectroscopy

Format
Availability
Price and currency
English Secure PDF
Immediate download
Printable - You are authorized to print 1 copy
222.64 USD
English Hardcopy
In stock
222.64 USD
Standard number:BS ISO 20368:2017
Pages:16
Released:2018-01-24
ISBN:978 0 580 93681 4
Status:Standard
DESCRIPTION

BS ISO 20368:2017


This standard BS ISO 20368:2017 Plastics. Epoxy resins. Determination of degree of crosslinking of crosslinked epoxy resins by Fourier Transform Infrared (FTIR) Spectroscopy is classified in these ICS categories:
  • 83.080.10 Thermosetting materials

This document specifies a method for determining the degree of crosslinking of crosslinked epoxy resins by the disappearance of the epoxy group during epoxy resin crosslinking measured by Fourier Transform Infrared (FTIR) (with a transmittance mode) spectroscopy.


BS ISO 20368:2017 - Epoxy Resins Crosslinking Determination

BS ISO 20368:2017 - Plastics: Epoxy Resins Crosslinking Determination

Unlock the potential of your epoxy resin applications with the BS ISO 20368:2017 standard. This comprehensive guide provides a detailed methodology for determining the degree of crosslinking in crosslinked epoxy resins using the advanced technique of Fourier Transform Infrared (FTIR) Spectroscopy. Whether you are in the field of materials science, engineering, or quality assurance, this standard is an essential tool for ensuring the integrity and performance of your epoxy resin products.

Key Features

  • Standard Number: BS ISO 20368:2017
  • Pages: 16
  • Release Date: January 24, 2018
  • ISBN: 978 0 580 93681 4
  • Status: Standard

Why Choose BS ISO 20368:2017?

The BS ISO 20368:2017 standard is a pivotal resource for professionals dealing with epoxy resins. It provides a reliable and scientifically validated method for assessing the degree of crosslinking, which is crucial for understanding the mechanical and thermal properties of the material. By utilizing FTIR Spectroscopy, this standard offers a non-destructive testing method that ensures accuracy and repeatability in your results.

Benefits of FTIR Spectroscopy

Fourier Transform Infrared (FTIR) Spectroscopy is a powerful analytical technique used to obtain an infrared spectrum of absorption or emission of a solid, liquid, or gas. Here are some benefits of using FTIR Spectroscopy as outlined in the BS ISO 20368:2017 standard:

  • Non-Destructive Testing: FTIR allows for the analysis of samples without altering or destroying them, preserving the integrity of your materials.
  • High Sensitivity: Detects even minor changes in the chemical structure, providing detailed insights into the degree of crosslinking.
  • Rapid Analysis: Offers quick results, enabling efficient quality control and research processes.
  • Versatility: Applicable to a wide range of epoxy resin formulations and crosslinking conditions.

Applications

The BS ISO 20368:2017 standard is invaluable across various industries where epoxy resins are used. Some of the key applications include:

  • Aerospace: Ensures the reliability and performance of composite materials used in aircraft and spacecraft.
  • Automotive: Enhances the durability and safety of automotive components.
  • Construction: Guarantees the structural integrity of epoxy-based adhesives and coatings.
  • Electronics: Validates the performance of encapsulants and potting compounds used in electronic devices.

Comprehensive Coverage

With 16 pages of detailed information, the BS ISO 20368:2017 standard provides a thorough exploration of the methodology and applications of FTIR Spectroscopy in determining the degree of crosslinking in epoxy resins. It is designed to be accessible to both seasoned professionals and newcomers to the field, offering clear instructions and guidelines to ensure successful implementation.

Stay Ahead with BS ISO 20368:2017

In the fast-paced world of materials science and engineering, staying ahead of the curve is essential. The BS ISO 20368:2017 standard equips you with the knowledge and tools needed to maintain the highest standards of quality and performance in your epoxy resin applications. By adhering to this standard, you can ensure that your products meet industry requirements and exceed customer expectations.

Conclusion

Invest in the future of your epoxy resin applications with the BS ISO 20368:2017 standard. Its comprehensive approach to determining the degree of crosslinking using FTIR Spectroscopy makes it an indispensable resource for professionals across various industries. Enhance your product quality, ensure compliance, and drive innovation with this essential standard.