BS EN ISO 2106:2020
Anodizing of aluminium and its alloys. Determination of mass per unit area (surface density) of anodic oxidation coatings. Gravimetric method
Standard number: | BS EN ISO 2106:2020 |
Pages: | 14 |
Released: | 2020-01-23 |
ISBN: | 978 0 580 97201 0 |
Status: | Standard |
BS EN ISO 2106:2020 - Anodizing of Aluminium and Its Alloys
Discover the essential standard for the anodizing industry with the BS EN ISO 2106:2020. This comprehensive document provides detailed guidelines for the determination of mass per unit area, also known as surface density, of anodic oxidation coatings on aluminium and its alloys using the gravimetric method.
Overview
The BS EN ISO 2106:2020 is a crucial standard for professionals working with anodized aluminium. Released on January 23, 2020, this document is a must-have for ensuring the quality and consistency of anodic oxidation coatings. With a total of 14 pages, it offers a concise yet thorough exploration of the gravimetric method, a reliable technique for measuring the surface density of anodic coatings.
Key Features
- Standard Number: BS EN ISO 2106:2020
- Pages: 14
- Release Date: January 23, 2020
- ISBN: 978 0 580 97201 0
- Status: Standard
Why Choose BS EN ISO 2106:2020?
The anodizing process is critical for enhancing the durability and aesthetic appeal of aluminium products. The BS EN ISO 2106:2020 standard provides a scientifically-backed method for determining the mass per unit area of anodic coatings, ensuring that your products meet the highest quality standards. By adhering to this standard, you can achieve consistent results, improve product performance, and enhance customer satisfaction.
Benefits of the Gravimetric Method
The gravimetric method outlined in this standard is a precise and reliable technique for measuring the surface density of anodic coatings. This method involves weighing the sample before and after the removal of the anodic coating, allowing for accurate determination of the coating's mass per unit area. The benefits of using this method include:
- Accuracy: Provides precise measurements of coating thickness and density.
- Reliability: Ensures consistent results across different samples and conditions.
- Versatility: Applicable to a wide range of aluminium alloys and anodic coatings.
Applications
The BS EN ISO 2106:2020 standard is applicable to various industries where anodized aluminium is used, including:
- Aerospace: Ensures the durability and performance of aircraft components.
- Automotive: Enhances the corrosion resistance and appearance of vehicle parts.
- Construction: Improves the longevity and aesthetic appeal of building materials.
- Consumer Electronics: Provides a protective and decorative finish for electronic devices.
Conclusion
Incorporating the BS EN ISO 2106:2020 standard into your anodizing processes is a strategic move towards achieving superior product quality and customer satisfaction. By following the guidelines set forth in this standard, you can ensure that your anodic coatings meet the highest industry standards for mass per unit area, ultimately leading to enhanced product performance and longevity.
Whether you are in the aerospace, automotive, construction, or consumer electronics industry, the BS EN ISO 2106:2020 standard is an invaluable resource for optimizing your anodizing processes. Embrace the precision and reliability of the gravimetric method and elevate your products to new heights of quality and excellence.
BS EN ISO 2106:2020
This standard BS EN ISO 2106:2020 Anodizing of aluminium and its alloys. Determination of mass per unit area (surface density) of anodic oxidation coatings. Gravimetric method is classified in these ICS categories:
- 25.220.20 Surface treatment
- 77.120.10 Aluminium and aluminium alloys
This document specifies a gravimetric method for determining the mass per unit area (surface density) of anodic oxidation coatings on aluminium and its alloys.
The method is applicable to all oxidation coatings formed by anodizing aluminium and its alloys, either cast or wrought, and is suitable for most aluminium alloys, except those in which the mass fraction of copper is greater than 6 %.
A high content of copper in the alloy can lead to increased dissolution of the substrate aluminium.
If the thickness is known with sufficient precision (for example, using the method specified in ISO 2128 ), the determination of the mass per unit area (surface density) of the coatings will enable its apparent density to be calculated. Conversely, if the conditions of application of the coating and its density are known, the determination of its mass per unit area (surface density) can permit the calculation of the average mass and an approximate evaluation of the thickness (see Clause 9).