Dan J. Thoma
#136,406
Most Influential Person Now
American metallurgist
Dan J. Thoma's AcademicInfluence.com Rankings
Dan J. Thomaengineering Degrees
Engineering
#5868
World Rank
#7155
Historical Rank
Metallurgy
#63
World Rank
#88
Historical Rank

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Engineering
Dan J. Thoma's Degrees
- PhD Materials Science and Engineering Stanford University
Why Is Dan J. Thoma Influential?
(Suggest an Edit or Addition)According to Wikipedia, Dan J. Thoma is an American metallurgist who is a Professor in the Department of Materials Science and Engineering at the University of Wisconsin–Madison. He is the director of the Grainger Institute for Engineering at the University of Wisconsin–Madison. Thoma is also a past President of the American Institute of Mining, Metallurgical, and Petroleum Engineers . Thoma is well-known for his research on 3D printing technology, which he has carried out for over two decades.
Dan J. Thoma's Published Works
Number of citations in a given year to any of this author's works
Total number of citations to an author for the works they published in a given year. This highlights publication of the most important work(s) by the author
Published Works
- Compositional grading of a 316L-Cu multi-material part using machine learning for the determination of selective laser melting process parameters (2021) (33)
- High-throughput ion irradiation of additively manufactured compositionally complex alloys (2021) (16)
- A High-Throughput Method to Define Additive Manufacturing Process Parameters: Application to Haynes 282 (2021) (10)
- Hydrogen embrittlement of additively manufactured austenitic stainless steel 316 L (2021) (9)
- Integrated High‐Throughput and Machine Learning Methods to Accelerate Discovery of Molten Salt Corrosion‐Resistant Alloys (2022) (6)
- Accelerated Discovery of Molten Salt Corrosion-resistant Alloy by High-throughput Experimental and Modeling Methods Coupled to Data Analytics (2021) (5)
- Machine Learning Prediction of the Critical Cooling Rate for Metallic Glasses from Expanded Datasets and Elemental Features (2022) (5)
- A dimensionless number for high-throughput design of multi-principal element alloys in directed energy deposition (2021) (4)
- Design and Validation of Additively Manufactured Metallic Cellular Scaffold Structures for Bone Tissue Engineering (2022) (4)
- Characterization of multi-material 316L-Hastelloy X fabricated via laser powder-bed fusion (2022) (3)
- Predictive process mapping for laser powder bed fusion: A review of existing analytical solutions (2022) (3)
- The Performance of Additively Manufactured Haynes 282 in Supercritical Co2 (2022) (2)
- Underwater ultrasonic topological waveguides by metal additive manufacturing (2022) (2)
- High-throughput surface characterization to identify porosity defects in additively manufactured 316L stainless steel (2022) (1)
- Experimental Validation and Evaluation of the Bending Properties of Additively Manufactured Metallic Cellular Scaffold Structures for Bone Tissue Engineering (2022) (0)
- Local Atomic Structure in Uranium‐Niobium Shape Memory Alloys (2003) (0)
- Influence of laser polishing on fatigue life of conventionally machined and laser powder bed fusion 316L stainless steel (2022) (0)
- A High Throughput Experimentation & Material Informatics Platform for the Discovery of Molten Salt Reactor Candidate Structural Materials (2022) (0)
- TRUSS-TYPE SUPPORT STRUCTURES FOR SLM (2021) (0)
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Dan J. Thoma is affiliated with the following schools: