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Homepage>BS Standards>81 GLASS AND CERAMICS INDUSTRIES>81.060 Ceramics>81.060.30 Advanced ceramics>BS EN ISO 14544:2025 Fine ceramics (advanced ceramics, advanced technical ceramics). Mechanical properties of ceramic composites at high temperature. Determination of compressive properties
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BS EN ISO 14544:2025 Fine ceramics (advanced ceramics, advanced technical ceramics). Mechanical properties of ceramic composites at high temperature. Determination of compressive properties

BS EN ISO 14544:2025

Fine ceramics (advanced ceramics, advanced technical ceramics). Mechanical properties of ceramic composites at high temperature. Determination of compressive properties

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Standard number:BS EN ISO 14544:2025
Pages:36
Released:2025-01-24
ISBN:978 0 539 27201 7
Status:Standard
BS EN ISO 14544:2025 - Fine Ceramics Standard

BS EN ISO 14544:2025 - Fine Ceramics (Advanced Ceramics, Advanced Technical Ceramics)

Mechanical Properties of Ceramic Composites at High Temperature

Determination of Compressive Properties

Welcome to the comprehensive guide on the BS EN ISO 14544:2025 standard, a pivotal document for professionals and researchers working with fine ceramics, also known as advanced ceramics or advanced technical ceramics. This standard is essential for understanding the mechanical properties of ceramic composites, especially under high-temperature conditions, and focuses on the determination of compressive properties.

Overview of the Standard

The BS EN ISO 14544:2025 standard is a crucial resource for anyone involved in the field of ceramics. Released on January 24, 2025, this document provides detailed methodologies and guidelines for assessing the compressive properties of ceramic composites when subjected to high temperatures. With a total of 36 pages, it offers a comprehensive exploration of the subject matter, ensuring that users have access to the most up-to-date and relevant information.

Key Features and Benefits

  • Standard Number: BS EN ISO 14544:2025
  • Pages: 36
  • Release Date: January 24, 2025
  • ISBN: 978 0 539 27201 7
  • Status: Standard

This standard is indispensable for professionals who require precise and reliable data on the mechanical behavior of ceramic composites. It is particularly beneficial for industries where high-temperature performance is critical, such as aerospace, automotive, and energy sectors.

Why Choose BS EN ISO 14544:2025?

The BS EN ISO 14544:2025 standard is designed to meet the needs of engineers, researchers, and manufacturers who demand the highest level of accuracy and reliability in their materials testing. By adhering to this standard, users can ensure that their ceramic composites are tested under rigorous conditions, providing confidence in their performance and durability.

Comprehensive Testing Methodologies

This standard outlines a series of testing methodologies that are specifically tailored to evaluate the compressive properties of ceramic composites at elevated temperatures. These methodologies are developed by experts in the field and are based on the latest scientific research, ensuring that users have access to the most advanced testing techniques available.

Enhanced Material Performance

By following the guidelines set forth in the BS EN ISO 14544:2025 standard, users can optimize the performance of their ceramic composites. This is particularly important in applications where materials are exposed to extreme conditions, as it ensures that they maintain their structural integrity and functionality.

Global Recognition and Compliance

As an internationally recognized standard, BS EN ISO 14544:2025 provides a benchmark for quality and performance that is acknowledged worldwide. Compliance with this standard demonstrates a commitment to excellence and can enhance the reputation of organizations within the global marketplace.

Applications of the Standard

The BS EN ISO 14544:2025 standard is applicable across a wide range of industries and applications, including:

  • Aerospace: Ensuring the reliability of ceramic components in high-temperature environments such as jet engines and heat shields.
  • Automotive: Enhancing the performance of ceramic parts used in exhaust systems and other high-heat applications.
  • Energy: Improving the efficiency and durability of ceramic materials used in power generation and thermal management systems.
  • Manufacturing: Providing guidelines for the development and testing of advanced ceramic materials used in various industrial processes.

Conclusion

The BS EN ISO 14544:2025 standard is an essential tool for anyone involved in the design, testing, and application of fine ceramics. By providing a detailed framework for assessing the compressive properties of ceramic composites at high temperatures, this standard ensures that users can achieve the highest levels of performance and reliability in their materials.

Whether you are an engineer, researcher, or manufacturer, the BS EN ISO 14544:2025 standard offers the guidance and expertise needed to excel in the field of advanced ceramics. Embrace the future of materials science with this indispensable resource.

DESCRIPTION

BS EN ISO 14544:2025


This standard BS EN ISO 14544:2025 Fine ceramics (advanced ceramics, advanced technical ceramics). Mechanical properties of ceramic composites at high temperature. Determination of compressive properties is classified in these ICS categories:
  • 81.060.30 Advanced ceramics
This document specifies procedures for determination of the compressive behaviour of ceramic matrix composite materials with continuous fibre reinforcement at elevated temperature in air, vacuum and inert gas atmospheres. This document applies to all ceramic matrix composites with a continuous fibre reinforcement, uni-directional (1D), bidirectional (2D) and multi-directional (xD, with x > 2), tested along one principal axis of reinforcement or off axis conditions for 2D and xD materials. This document also applies to carbon-fibre-reinforced carbon matrix composites (also known as carbon/carbon or C/C). Two cases of testing are distinguished: compression between platens and compression using grips.