Research Areas
Biography and Research Information
OverviewAI-generated summary
Chinmaya Joshi's research focuses on the quantification and mitigation of uncertainties in thermal conductivity measurements, particularly using modified ASTM D5470 thermal resistance testers. This work includes the development and calibration of thermal resistance testing facilities and the measurement of out-of-plane thermal conductivity via steady-state heat conduction. Joshi also investigates open multimodal datasets and open-source software for data-driven modeling of multiphase transport and thermal systems. Additionally, Joshi has explored the integration of metal additive manufacturing using fused deposition modeling within mechanical engineering education. Collaborations include Stephen W. Pierson, Clancy Milam, Christy Dunlap, and Mohammad Ishraq Hossain, all at the University of Arkansas at Fayetteville.
Metrics
- h-index: 1
- Publications: 7
- Citations: 3
Selected Publications
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Open Multimodal Datasets and Open-Source Software for Data-Driven Modeling of Multiphase Transport and Thermal Systems (2026)arXiv (Cornell University) OpenAlex
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Quantification and mitigation of uncertainties in thermal conductivity measurements using a modified ASTM D5470 thermal resistance tester (2025)
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Quantification and Mitigation of Uncertainties in Thermal Conductivity Measurements Using a Modified Astm D5470 Thermal Resistance Tester (2025)
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Integration of Metal Additive Manufacturing Using Fused Deposition Modeling in Mechanical Engineering Education (2024)
Collaboration Network
Top Collaborators
- Quantification and Mitigation of Uncertainties in Thermal Conductivity Measurements Using a Modified Astm D5470 Thermal Resistance Tester
- Quantification and mitigation of uncertainties in thermal conductivity measurements using a modified ASTM D5470 thermal resistance tester
- Integration of Metal Additive Manufacturing Using Fused Deposition Modeling in Mechanical Engineering Education
- Quantification and mitigation of uncertainties in thermal conductivity measurements using a modified ASTM D5470 thermal resistance tester
- Integration of Metal Additive Manufacturing Using Fused Deposition Modeling in Mechanical Engineering Education
- Quantification and Mitigation of Uncertainties in Thermal Conductivity Measurements Using a Modified Astm D5470 Thermal Resistance Tester
- Quantification and mitigation of uncertainties in thermal conductivity measurements using a modified ASTM D5470 thermal resistance tester
- Quantification and Mitigation of Uncertainties in Thermal Conductivity Measurements Using a Modified Astm D5470 Thermal Resistance Tester
- Quantification and mitigation of uncertainties in thermal conductivity measurements using a modified ASTM D5470 thermal resistance tester
- Quantification and Mitigation of Uncertainties in Thermal Conductivity Measurements Using a Modified Astm D5470 Thermal Resistance Tester
- Quantification and mitigation of uncertainties in thermal conductivity measurements using a modified ASTM D5470 thermal resistance tester
- Integration of Metal Additive Manufacturing Using Fused Deposition Modeling in Mechanical Engineering Education
- Integration of Metal Additive Manufacturing Using Fused Deposition Modeling in Mechanical Engineering Education
- Quantification and Mitigation of Uncertainties in Thermal Conductivity Measurements Using a Modified Astm D5470 Thermal Resistance Tester
- Open Multimodal Datasets and Open-Source Software for Data-Driven Modeling of Multiphase Transport and Thermal Systems
- Open Multimodal Datasets and Open-Source Software for Data-Driven Modeling of Multiphase Transport and Thermal Systems
- Open Multimodal Datasets and Open-Source Software for Data-Driven Modeling of Multiphase Transport and Thermal Systems
- Open Multimodal Datasets and Open-Source Software for Data-Driven Modeling of Multiphase Transport and Thermal Systems
- Open Multimodal Datasets and Open-Source Software for Data-Driven Modeling of Multiphase Transport and Thermal Systems
- Open Multimodal Datasets and Open-Source Software for Data-Driven Modeling of Multiphase Transport and Thermal Systems
- Open Multimodal Datasets and Open-Source Software for Data-Driven Modeling of Multiphase Transport and Thermal Systems
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