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Homepage>BS Standards>83 RUBBER AND PLASTICS INDUSTRIES>83.080 Plastics>83.080.20 Thermoplastic materials>BS EN ISO 23153-2:2020 Plastics. Polyetheretherketone (PEEK) moulding and extrusion materials Preparation of test specimens and determination of properties
immediate downloadReleased: 2020-02-05
BS EN ISO 23153-2:2020 Plastics. Polyetheretherketone (PEEK) moulding and extrusion materials Preparation of test specimens and determination of properties

BS EN ISO 23153-2:2020

Plastics. Polyetheretherketone (PEEK) moulding and extrusion materials Preparation of test specimens and determination of properties

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Standard number:BS EN ISO 23153-2:2020
Pages:12
Released:2020-02-05
ISBN:978 0 539 01464 8
Status:Standard
BS EN ISO 23153-2:2020 - PEEK Moulding and Extrusion Materials

BS EN ISO 23153-2:2020: Plastics - Polyetheretherketone (PEEK) Moulding and Extrusion Materials

Welcome to the comprehensive guide on the BS EN ISO 23153-2:2020 standard, a pivotal document for professionals working with Polyetheretherketone (PEEK) moulding and extrusion materials. This standard is essential for ensuring the quality and consistency of PEEK materials, which are widely used in various high-performance applications due to their exceptional properties.

Overview of the Standard

The BS EN ISO 23153-2:2020 standard provides detailed guidelines for the preparation of test specimens and the determination of properties for PEEK moulding and extrusion materials. Released on February 5, 2020, this standard is a critical resource for manufacturers, quality assurance professionals, and researchers who are involved in the production and testing of PEEK materials.

Key Features

  • Standard Number: BS EN ISO 23153-2:2020
  • Pages: 12
  • Release Date: 2020-02-05
  • ISBN: 978 0 539 01464 8
  • Status: Standard

Importance of PEEK Materials

Polyetheretherketone (PEEK) is a high-performance engineering thermoplastic known for its remarkable properties, including high temperature resistance, excellent chemical resistance, and outstanding mechanical properties. These characteristics make PEEK an ideal choice for demanding applications in industries such as aerospace, automotive, medical, and electronics.

PEEK's ability to maintain its properties at elevated temperatures and in harsh chemical environments makes it a preferred material for components that require long-term reliability and performance. The BS EN ISO 23153-2:2020 standard ensures that PEEK materials meet the necessary quality and performance criteria, providing confidence to manufacturers and end-users alike.

Preparation of Test Specimens

The standard outlines the procedures for preparing test specimens from PEEK moulding and extrusion materials. Proper preparation of test specimens is crucial for obtaining accurate and reliable test results. The guidelines cover various aspects of specimen preparation, including:

  • Selection of appropriate moulding and extrusion techniques
  • Control of processing conditions to minimize variability
  • Specification of specimen dimensions and tolerances
  • Post-processing treatments to ensure specimen integrity

Determination of Properties

Once the test specimens are prepared, the standard provides methods for determining the key properties of PEEK materials. These properties are critical for assessing the suitability of PEEK for specific applications and include:

  • Mechanical properties such as tensile strength, flexural strength, and impact resistance
  • Thermal properties including heat deflection temperature and thermal conductivity
  • Chemical resistance to various solvents and environmental conditions
  • Electrical properties such as dielectric strength and volume resistivity

Benefits of Compliance

Adhering to the BS EN ISO 23153-2:2020 standard offers numerous benefits to manufacturers and users of PEEK materials:

  • Quality Assurance: Ensures consistent quality and performance of PEEK materials, reducing the risk of product failures.
  • Regulatory Compliance: Helps meet industry regulations and standards, facilitating market access and acceptance.
  • Competitive Advantage: Demonstrates commitment to quality and innovation, enhancing brand reputation and customer trust.
  • Cost Efficiency: Reduces waste and rework by providing clear guidelines for material testing and evaluation.

Conclusion

The BS EN ISO 23153-2:2020 standard is an indispensable tool for anyone involved in the production, testing, or application of PEEK moulding and extrusion materials. By following the guidelines set forth in this standard, you can ensure that your PEEK materials meet the highest standards of quality and performance, providing peace of mind to both manufacturers and end-users.

Whether you are a manufacturer looking to optimize your production processes, a quality assurance professional seeking to ensure compliance, or a researcher exploring the potential of PEEK materials, the BS EN ISO 23153-2:2020 standard is your go-to resource for achieving excellence in PEEK material applications.

DESCRIPTION

BS EN ISO 23153-2:2020


This standard BS EN ISO 23153-2:2020 Plastics. Polyetheretherketone (PEEK) moulding and extrusion materials is classified in these ICS categories:
  • 83.080.20 Thermoplastic materials

This document specifies the methods of preparation of test specimens and the test methods to be used in determining the properties of polyetheretherketone (PEEK) moulding and extrusion materials. Requirements for handling test material and for conditioning both the test material before moulding and the specimens before testing are given.

Procedures and conditions for the preparation of test specimens and procedures for measuring properties of the materials from which these specimens are made are also given. Properties and test methods that are suitable and necessary to characterize PEEK moulding and extrusion materials are listed.

In order to obtain reproducible and comparable test results, the methods of preparation and conditioning, the specimen dimensions and the test procedures specified herein are used. Values determined will not necessarily be identical to those obtained using specimens of different dimensions or prepared using different procedures.