Agnieszka Chmielewska
Engineering · The Ohio State University
Publications
21
Citations
366
Est. group size
~1
Recurring co-author estimate
Active years
10
Publishing since 2017
This researcher works on additive manufacturing (3D printing) of metals, especially NiTi (nickel-titanium, a shape-memory alloy) and titanium, focusing on how processing conditions affect material structure, defects like porosity and cracks, and mechanical properties. A major application area is designing porous or lattice metal implants and scaffolds for bone and skeletal repair, where matching the stiffness of the implant to bone is important to avoid complications.
Publication output has fluctuated over the past decade with no publications some years and peaks of 5 in 2021 and 2023, suggesting an irregular rather than steadily growing or slowing cadence, with recent years (2024-2026) showing continued but modest activity.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Porosity Evolution and Crack Formation in NiTi Under Varying Laser Powder Bed Fusion Parameters
Material Design & Processing Communications · 2026
- Development of AI crack segmentation models for additive manufacturing
Tomography of Materials and Structures · 2025
- Ivosidenib in the treatment of patients with IDH1 mutated cholangiocarcinoma
Oncology in Clinical Practice · 2024
- The role of stiffness-matching in avoiding stress shielding-induced bone loss and stress concentration-induced skeletal reconstruction device failure
Acta Biomaterialia · 2023
- NiTi in situ alloying in powder-based additive manufacturing
Progress in Additive Manufacturing · 2023
- Numerical design of open-porous titanium scaffolds for Powder Bed Fusion using Laser Beam (PBF-LB)
Journal of the mechanical behavior of biomedical materials/Journal of mechanical behavior of biomedical materials · 2023
- The Effect of Microstructural Defects on High-Cycle Fatigue of Ti Grade 2 Manufactured by PBF-LB and Hydrostatic Extrusion
Crystals · 2023
- The Role of Stiffness-Matching in the Design of Metallic Skeletal Reconstruction Devices- a Review
SSRN Electronic Journal · 2023
- Heat Treatment of NiTi Alloys Fabricated Using Laser Powder Bed Fusion (LPBF) from Elementally Blended Powders
Materials · 2022
- Laser powder bed fusion (LPBF) of NiTi alloy using elemental powders: the influence of remelting on printability and microstructure
Rapid Prototyping Journal · 2022
- In situ alloying of NiTi: Influence of laser powder bed fusion (LBPF) scanning strategy on chemical composition
Materials Today Communications · 2021
- Chemical Polishing of Additively Manufactured, Porous, Nickel–Titanium Skeletal Fixation Plates
3D Printing and Additive Manufacturing · 2021
- Biological and Corrosion Evaluation of In Situ Alloyed NiTi Fabricated through Laser Powder Bed Fusion (LPBF)
International Journal of Molecular Sciences · 2021
- Methods of Topical Administration of Drugs and Biological Active Substances for Dental Implants—A Narrative Review
Antibiotics · 2021
- Novel design for an additively manufactured nozzle to produce tubular scaffolds via fused filament fabrication
Additive manufacturing · 2021
- Acta Biomaterialia×1
- Materials Today Communications×1
- Materials×1
- Rapid Prototyping Journal×1
- Progress in Additive Manufacturing×1
- Brian Welk
Engineering · The Ohio State University
- Rakeshkumar Karunakaran
Engineering · Purdue University West Lafayette
- Qingyu Pan
Engineering · Purdue University West Lafayette
- Jin Li
Engineering · Purdue University West Lafayette
- Xiaoyuan Lou
Engineering · Purdue University West Lafayette
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 19, 2026.
Claim or correct this profile