BS EN ISO 8130-13:2019
Coating powders Particle size analysis by laser diffraction
Standard number: | BS EN ISO 8130-13:2019 |
Pages: | 14 |
Released: | 2019-05-15 |
ISBN: | 978 0 580 52059 4 |
Status: | Standard |
BS EN ISO 8130-13:2019 - Coating Powders Particle Size Analysis by Laser Diffraction
Discover the essential standard for the analysis of coating powders with the BS EN ISO 8130-13:2019. This comprehensive document provides a detailed methodology for particle size analysis using laser diffraction, a critical process for ensuring the quality and performance of coating powders in various industrial applications.
Overview
The BS EN ISO 8130-13:2019 standard is a pivotal resource for professionals in the coatings industry, offering a precise and reliable method for determining the particle size distribution of coating powders. Released on May 15, 2019, this standard is the latest in a series of guidelines that ensure consistency and accuracy in the analysis of coating materials.
Key Features
- Standard Number: BS EN ISO 8130-13:2019
- Pages: 14
- ISBN: 978 0 580 52059 4
- Status: Standard
Why Choose Laser Diffraction?
Laser diffraction is a widely recognized technique for particle size analysis due to its accuracy, speed, and ability to handle a wide range of particle sizes. This method is particularly beneficial for coating powders, where precise particle size distribution is crucial for achieving desired coating properties such as texture, gloss, and durability.
Benefits of BS EN ISO 8130-13:2019
Adhering to the BS EN ISO 8130-13:2019 standard ensures that your particle size analysis is conducted with the highest level of precision and reliability. This standard helps in:
- Quality Assurance: Ensures that coating powders meet specific quality criteria, leading to improved product performance.
- Consistency: Provides a uniform method for particle size analysis, facilitating consistency across different batches and production lines.
- Compliance: Helps manufacturers comply with industry regulations and standards, reducing the risk of non-compliance issues.
- Efficiency: Streamlines the analysis process, saving time and resources while maintaining accuracy.
Applications
The BS EN ISO 8130-13:2019 standard is applicable across a wide range of industries where coating powders are used, including:
- Automotive: Ensures high-quality finishes on vehicles, enhancing both aesthetics and protection.
- Construction: Provides durable and weather-resistant coatings for buildings and infrastructure.
- Consumer Goods: Ensures consistent and appealing finishes on household appliances and electronics.
- Industrial Equipment: Enhances the longevity and performance of machinery and tools through protective coatings.
Conclusion
Incorporating the BS EN ISO 8130-13:2019 standard into your particle size analysis processes is a strategic move towards achieving superior quality and performance in your coating products. By leveraging the precision of laser diffraction, this standard provides a robust framework for ensuring that your coating powders meet the highest industry standards.
Stay ahead in the competitive coatings industry by adopting the BS EN ISO 8130-13:2019 standard, and ensure that your products consistently deliver the quality and reliability that your customers expect.
BS EN ISO 8130-13:2019
This standard BS EN ISO 8130-13:2019 Coating powders is classified in these ICS categories:
- 87.040 Paints and varnishes
This document specifies a method for the determination of the equivalent-sphere particle size distribution of coating powders by laser diffraction, for particles of the size range from 1 µm to 300 µm.
NOTE There is a possibility that particle sizes >300 µm need the use of a different optical model.
This document is specific for the measurement of coating powders and also draws attention to ISO 13320, which provides guidance on instrument qualification and particle size distribution.
Laser diffraction is not suitable for determining oversize material, which can be verified by sieve analysis as described in ISO 8130‑1 or by dynamic image analysis as described in ISO 13322‑2.