Skip to main content
Top

Influence of the initial structure on the efficiency of laser processing of steel

  • 19-06-2024
Published in:

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

This article delves into the significant impact of the initial structure of steel on the efficiency of laser processing. It highlights how high-speed laser heating leads to the formation of thermostrictive stresses and local plastic deformations, influencing the structure and hardness of steel surfaces. The research explores the transformation of ferrite, pearlite, and martensitic structures under laser irradiation, revealing unique structural changes such as dynamic polygonization and the creation of heterogeneous carbon-rich martensite. The study also emphasizes the importance of initial martensitic structures and carbide dispersion in achieving optimal surface layer properties through laser hardening. By presenting detailed experimental results and X-ray diffraction analysis, the article offers valuable insights into the complex interplay between initial steel structure and laser processing outcomes.

Not a customer yet? Then find out more about our access models now:

Individual Access

Start your personal individual access now. Get instant access to more than 164,000 books and 540 journals – including PDF downloads and new releases.

Starting from 54,00 € per month!    

Get access

Access for Businesses

Utilise Springer Professional in your company and provide your employees with sound specialist knowledge. Request information about corporate access now.

Find out how Springer Professional can uplift your work!

Contact us now
Title
Influence of the initial structure on the efficiency of laser processing of steel
Authors
G. I. Brover
E. E. Shcherbakova
Publication date
19-06-2024
Publisher
Springer US
Published in
Metallurgist / Issue 2/2024
Print ISSN: 0026-0894
Electronic ISSN: 1573-8892
DOI
https://doi.org/10.1007/s11015-024-01715-4
This content is only visible if you are logged in and have the appropriate permissions.
Image Credits
Nordson Logo/© Nordson Deutschland GmbH, Ecoclean Logo/© SBS Ecoclean Group, Akzo Nobel Power Coatings GmbH/© Akzo Nobel Power Coatings GmbH, Sames GmbH/© Sames GmbH, Karl Bubenhofer AG/© Karl Bubenhofer AG, Munk GmbH/© Munk GmbH, Endress+Hauser Flow Deutschland/© Endress+Hauser Flow Deutschland, IST - International Surface Technology