Lisa Larsson
Researcher at Department of Materials Science and Engineering; Biomedical Engineering
- Mobile phone:
- +46 76 118 80 06
- E-mail:
- lisa.m.larsson@uu.se
- Visiting address:
- Ångströmlaboratoriet, Regementsvägen 10
- Postal address:
- Box 35
751 03 UPPSALA
Short presentation
After finishing my PhD in biomedical engineering during spring 2026, I am currently working as a researcher in the BMS group. My work focuses on degradable magnesium alloys for biomedical applications, manufactured by powder bed fusion - laser beam.
Keywords
- WE43
- magnesium
- pbf-lb
- additive manufacturing
- texture
- materials science
- biomedical engineering
Biography
Short CV
- 2021 - 2026, PhD student position in Engineering Sciences with a specialization in Biomedical Engineering, Uppsala University
- 2020, Master thesis on biocompatibility of a Zr-based metallic glass, Dpt of Materials science and engineering, Uppsala University
- 2015 - 2020, MSc in Materials science and engineering Obtained a french Bachelor in engineering in 2018, and a swedish, french and spanish M.Sc in engineering in 2020. Study time divided between: Luleå Univeristy of technonoly, Ecole Européenne d'Ingénieurs en Génie des Matériaux and Universitat Politècnica de Catalunya.

Publications
Selection of publications
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2026
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Part of Materials & design, 2025
- DOI for Leveraging laser powder bed fusion to alter texture and mechanical properties of magnesium alloy WE43
- Download full text (pdf) of Leveraging laser powder bed fusion to alter texture and mechanical properties of magnesium alloy WE43
-
Part of Materials Today Communications, 2024
- DOI for Higher Laser power improves strength but reduces corrosion resistance of Mg WE43 processed by powder bed fusion
- Download full text (pdf) of Higher Laser power improves strength but reduces corrosion resistance of Mg WE43 processed by powder bed fusion
-
Biocompatibility of a Zr-Based Metallic Glass Enabled by Additive Manufacturing
Part of ACS Applied Bio Materials, p. 5741-5753, 2022
- DOI for Biocompatibility of a Zr-Based Metallic Glass Enabled by Additive Manufacturing
- Download full text (pdf) of Biocompatibility of a Zr-Based Metallic Glass Enabled by Additive Manufacturing
Recent publications
-
2026
-
Additive manufacturing of magnesium alloy WE43 for biomedical applications
2025
-
Part of Materials & design, 2025
- DOI for Leveraging laser powder bed fusion to alter texture and mechanical properties of magnesium alloy WE43
- Download full text (pdf) of Leveraging laser powder bed fusion to alter texture and mechanical properties of magnesium alloy WE43
-
Part of Materials Today Communications, 2024
- DOI for Higher Laser power improves strength but reduces corrosion resistance of Mg WE43 processed by powder bed fusion
- Download full text (pdf) of Higher Laser power improves strength but reduces corrosion resistance of Mg WE43 processed by powder bed fusion
-
2023
All publications
Articles in journal
-
Part of Materials & design, 2025
- DOI for Leveraging laser powder bed fusion to alter texture and mechanical properties of magnesium alloy WE43
- Download full text (pdf) of Leveraging laser powder bed fusion to alter texture and mechanical properties of magnesium alloy WE43
-
Part of Materials Today Communications, 2024
- DOI for Higher Laser power improves strength but reduces corrosion resistance of Mg WE43 processed by powder bed fusion
- Download full text (pdf) of Higher Laser power improves strength but reduces corrosion resistance of Mg WE43 processed by powder bed fusion
-
Biocompatibility of a Zr-Based Metallic Glass Enabled by Additive Manufacturing
Part of ACS Applied Bio Materials, p. 5741-5753, 2022
- DOI for Biocompatibility of a Zr-Based Metallic Glass Enabled by Additive Manufacturing
- Download full text (pdf) of Biocompatibility of a Zr-Based Metallic Glass Enabled by Additive Manufacturing
Comprehensive doctoral thesis
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2026
Conference papers
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Additive manufacturing of magnesium alloy WE43 for biomedical applications
2025
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2023
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2022
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Additive manufacturing of biodegradable magnesium alloys
2022
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Residual Stresses in an Additively Manufactured Biodegradable Magnesium Alloy
Part of eCM Meeting Abstracts 2022, Collection 2, p. 11-11, 2022
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2022
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The impact of Residual Stresses formed during PBF-LB on the Biodegradability of Magnesium alloys
2022
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On the Residual Stress in Biodegradable Magnesium Alloys Produced by Powder Bed Fusion Laser Beam
2022