Investigating the Effect of Inclination Angle and the Influence of Scan Parameters on the Appearance and Thermal and Mechanical Properties of Filigree Tension Rods of LPBF‐Manufactured NiTi Shape‐Memory Alloys

NiTi powder is processed into tensile rods with a diameter of 150–220 µm using laser powder bed fusion with identical laser and scan parameters to investigate their properties as a function of the inclination angle to the build platform. Metallographic analysis shows that the melt pools in inclined rods (inclination angles >0° and <90°) extend partially perpendicularly into the powder bed due to the delicate nature of the structures and poor heat dissipation of the powder bed compared to the solidified material. Chemical analysis confirms the results of the thermal characterization: the nickel content decreases with increasing inclination angle, causing the transformation temperatures to rise. This behavior is reflected in the mechanical behavior, which, with identical manufacturing parameters, ranges from elastic–plastic behavior to martensite detwinning under load. In a second step, the scan parameters are adjusted as a function of the inclination angle with the intention to minimize the differences in properties. However, the results show that no significant changes in the thermal and mechanical properties are achieved, and therefore the scan vector length plays a minor role in the properties of such filigree structures compared to other parameters.

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Publication Details

Journal
Advanced Engineering Materials
Published
2026-08-26
DOI
https://doi.org/10.1002/adem.71178
Primary Topic
Shape Memory Alloy Transformations
Type
article
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article

Investigating the Effect of Inclination Angle and the Influence of Scan Parameters on the Appearance and Thermal and Mechanical Properties of Filigree Tension Rods of LPBF‐Manufactured NiTi Shape‐Memory Alloys

Michael Werner, Christian Rotsch, Sandra Herzig
Advanced Engineering Materials
Shape Memory Alloy Transformations
article

Investigating the Effect of Inclination Angle and the Influence of Scan Parameters on the Appearance and Thermal and Mechanical Properties of Filigree Tension Rods of LPBF‐Manufactured NiTi Shape‐Memory Alloys

Michael Werner, Christian Rotsch, Sandra Herzig
article en

Abstract

NiTi powder is processed into tensile rods with a diameter of 150–220 µm using laser powder bed fusion with identical laser and scan parameters to investigate their properties as a function of the inclination angle to the build platform. Metallographic analysis shows that the melt pools in inclined rods (inclination angles >0° and <90°) extend partially perpendicularly into the powder bed due to the delicate nature of the structures and poor heat dissipation of the powder bed compared to the solidified material. Chemical analysis confirms the results of the thermal characterization: the nickel content decreases with increasing inclination angle, causing the transformation temperatures to rise. This behavior is reflected in the mechanical behavior, which, with identical manufacturing parameters, ranges from elastic–plastic behavior to martensite detwinning under load. In a second step, the scan parameters are adjusted as a function of the inclination angle with the intention to minimize the differences in properties. However, the results show that no significant changes in the thermal and mechanical properties are achieved, and therefore the scan vector length plays a minor role in the properties of such filigree structures compared to other parameters.

Advanced Engineering Materials
Fraunhofer Institute for Machine Tools and Forming Technology (DE)
Sustainable cities and communities
Openalex Percentile: Top 23%
Shape Memory Alloy Transformations
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