In Situ Pure Shear Tests on Textured Magnesium AZ31B Sheets

Author:

Whitmore Lawrence1ORCID,Nischler Anton2,Saage Holger2,Huber Otto2ORCID

Affiliation:

1. Department of Chemistry and Physics of Materials, University of Salzburg, 5020 Salzburg, Austria

2. Competence Centre for Lightweight Design (LLK), University of Applied Sciences Landshut, Am Lurzenhof 1, 84036 Landshut, Germany

Abstract

Pure shear tests of textured magnesium AZ31B sheet samples were carried out using a 5 kN Kammrath & Weiss in situ tension-compression stage in a scanning electron microscope in combination with real-time electron backscatter diffraction lattice orientation mapping. The sample design was optimized to produce a pure shear stress in the central gauge zone. Distributions of the deformation twins were correlated with finite element simulations using a linear-elastic constitutive law considering large deformations to show that twins form in areas where the principal compressive stress σ3* is a maximum and that they form normal to the trajectories of that minor principal stress. Mappings of the same area at different load values revealed the formation and growth of individual twins and their relationship to the internal elastic strain of individual grains as indicated by the internal grain disorientation. All twins observed were of the extension type, with an 86.3° disorientation with respect to the parent grains. A more detailed study was conducted using transmission electron microscopy to correlate with the EBSD observations and to further elucidate the twin structures within samples.

Funder

Austrian Science Fund

Deutsche Forschungsgemeinschaft

Publisher

MDPI AG

Reference56 articles.

1. Tan, J., and Ramakrishna, S. (2021). Applications of Magnesium and Its Alloys: A Review. Appl. Sci., 11.

2. A Review on Developments in Magnesium Alloys;Kaya;Front. Mater.,2020

3. (2024, February 23). Magnesium: Metal of the Future. Available online: www.financialtribune.com/articles/economy-business-and-markets/56890/magnesium-metal-of-the-future.

4. Editorial: Latest developments in the field of magnesium alloys and their applications;Dieringa;Front. Mater.,2021

5. Mechanical properties and applications of Magnesium alloy—Review;Jayasathyakawin;Mater. Today Proc.,2020

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