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Homepage>BS Standards>77 METALLURGY>77.150 Products of non-ferrous metals>77.150.20 Magnesium products>BS EN 1753:2019 Magnesium and magnesium alloys. Magnesium alloy ingots and castings
immediate downloadReleased: 2019-10-04
BS EN 1753:2019 Magnesium and magnesium alloys. Magnesium alloy ingots and castings

BS EN 1753:2019

Magnesium and magnesium alloys. Magnesium alloy ingots and castings

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Standard number:BS EN 1753:2019
Pages:34
Released:2019-10-04
ISBN:978 0 580 52296 3
Status:Standard
BS EN 1753:2019 Magnesium and Magnesium Alloys

BS EN 1753:2019 - Magnesium and Magnesium Alloys: Ingots and Castings

Welcome to the comprehensive guide on the BS EN 1753:2019 standard, a pivotal document for professionals dealing with magnesium and magnesium alloys. This standard is essential for ensuring quality and consistency in the production and application of magnesium alloy ingots and castings.

Overview of BS EN 1753:2019

The BS EN 1753:2019 standard is a crucial document that outlines the specifications and requirements for magnesium and magnesium alloy ingots and castings. Released on October 4, 2019, this standard is a testament to the ongoing advancements in material science and engineering, particularly in the field of lightweight and high-strength materials.

With a total of 34 pages, this standard provides detailed guidelines and specifications that are indispensable for manufacturers, engineers, and quality assurance professionals who work with magnesium alloys. The document is identified by the ISBN 978 0 580 52296 3, ensuring its authenticity and traceability in professional and academic settings.

Why Magnesium and Magnesium Alloys?

Magnesium and its alloys are renowned for their exceptional properties, making them a material of choice in various industries. Here are some reasons why magnesium alloys are highly valued:

  • Lightweight: Magnesium is one of the lightest structural metals, which makes it ideal for applications where weight reduction is crucial, such as in the automotive and aerospace industries.
  • High Strength-to-Weight Ratio: Despite being lightweight, magnesium alloys offer excellent strength, making them suitable for structural applications.
  • Good Machinability: Magnesium alloys are easy to machine, which reduces manufacturing costs and time.
  • Excellent Corrosion Resistance: With proper alloying and treatment, magnesium alloys can offer good resistance to corrosion, extending the lifespan of components.

Applications of Magnesium Alloy Ingots and Castings

The applications of magnesium alloy ingots and castings are vast and varied, thanks to their unique properties. Some of the key industries and applications include:

Automotive Industry

In the automotive sector, magnesium alloys are used to manufacture components such as engine blocks, transmission cases, and wheels. The reduction in weight leads to improved fuel efficiency and reduced emissions, aligning with the industry's push towards sustainability.

Aerospace Industry

For aerospace applications, the lightweight nature of magnesium alloys contributes to increased payload capacity and fuel efficiency. Components such as aircraft seats, gearboxes, and structural parts benefit from the use of magnesium alloys.

Electronics

Magnesium alloys are also used in the electronics industry for the production of lightweight and durable casings for laptops, smartphones, and cameras. Their excellent thermal conductivity helps in managing heat dissipation in electronic devices.

Medical Devices

In the medical field, magnesium alloys are being explored for use in biodegradable implants and devices. Their biocompatibility and ability to degrade safely in the body make them an exciting area of research and application.

Key Features of BS EN 1753:2019

The BS EN 1753:2019 standard provides a comprehensive framework for the production and quality assurance of magnesium alloy ingots and castings. Some of the key features include:

  • Material Specifications: Detailed descriptions of the chemical composition and mechanical properties required for magnesium alloys.
  • Manufacturing Processes: Guidelines on the acceptable methods for producing ingots and castings, ensuring consistency and quality.
  • Testing and Quality Control: Procedures for testing the properties of magnesium alloys, including tensile strength, hardness, and corrosion resistance.
  • Marking and Documentation: Requirements for labeling and documenting magnesium alloy products to ensure traceability and compliance.

Conclusion

The BS EN 1753:2019 standard is an indispensable resource for anyone involved in the production, application, or research of magnesium and magnesium alloys. By adhering to this standard, manufacturers and engineers can ensure that their products meet the highest quality and performance standards, paving the way for innovation and excellence in various industries.

Whether you are in the automotive, aerospace, electronics, or medical field, understanding and implementing the guidelines set forth in this standard will enhance your ability to produce superior magnesium alloy products that meet the demands of modern engineering and design.

DESCRIPTION

BS EN 1753:2019


This standard BS EN 1753:2019 Magnesium and magnesium alloys. Magnesium alloy ingots and castings is classified in these ICS categories:
  • 77.150.20 Magnesium products

This document specifies the grades and the corresponding requirements for cast alloyed magnesium materials.

This document specifies two groups of cast magnesium alloy grades by a classification based on the chemical composition. The first group deals with grades for magnesium alloy ingots. The second group deals with grades for magnesium alloy castings.

This document also specifies mechanical properties measured on test pieces machined from cast samples.

This document does not cover technical delivery conditions for magnesium alloy castings (see EN 1559â??1 [7] and EN 1559â??5 [8]).


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