Valliappa Kalyanasundaram
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Also affiliated: Inspire (2013–2018); Swiss Federal Laboratories for Materials Science and Technology (2014–2018)
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Biography and Research Information
OverviewAI-generated summary
Valliappa Kalyanasundaram's research investigates material behavior under various conditions, with a focus on mechanical properties and nanoscale phenomena. His work has explored the creep and fatigue behavior of advanced steels, including P91 steel, at elevated temperatures. This includes predicting creep behavior from stress relaxation data and participating in ASTM round-robin studies on creep-fatigue interactions. Kalyanasundaram has also examined nanomanufacturing processes, specifically tip-based methods involving electrical, chemical, mechanical, and thermal techniques. His research has delved into the molecular dynamics of nanoscale confinement and the behavior of machining interfaces in electro-machining processes. His h-index is 6, with 16 publications and 189 citations.
Metrics
- h-index: 6
- Publications: 16
- Citations: 189
Selected Publications
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Nano Electro-Machining (nano-EM): A Novel Method for Sculpting Nano Vias (< 20 nm) for Nanoscale Packaging (2026)
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Prognostics of high temperature component reliability (2015)
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Harmonizing of Creep-Fatigue Test Methods through Development of ASTM Standards (2013)
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WITHDRAWN: Dislocation-based constitutive modeling of martensitic/ferritic steels at elevated temperatures. Part II: Cyclic behavior without hold time effects (2013)
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ASTM Round-Robin on Creep-Fatigue and Creep Behavior of P91 Steel (2011)
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Tip-based nanomanufacturing by electrical, chemical, mechanical and thermal processes (2010)
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Molecular Dynamics Simulation of Nanoconfinement Induced Organization of n-Decane (2009)
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Understanding repeatability in nanoscale electro-machining process (2008)3 citations OpenAlex
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Nano electro-machining (nano-EM): A novel method for sculpting nano vias (< 20 nm) for nanoscale packaging (2008)
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Understanding behavior of machining interface and dielectric molecular medium in nanoscale electro-machining (2008)
Collaboration Network
Top Collaborators
- Tip-based nanomanufacturing by electrical, chemical, mechanical and thermal processes
- Molecular Dynamics Simulation of Nanoconfinement Induced Organization of n-Decane
- Understanding behavior of machining interface and dielectric molecular medium in nanoscale electro-machining
- Understanding repeatability in nanoscale electro-machining process
- Nano electro-machining (nano-EM): A novel method for sculpting nano vias (< 20 nm) for nanoscale packaging
Showing 5 of 6 shared publications
- Tip-based nanomanufacturing by electrical, chemical, mechanical and thermal processes
- Understanding behavior of machining interface and dielectric molecular medium in nanoscale electro-machining
- Understanding repeatability in nanoscale electro-machining process
- Nano electro-machining (nano-EM): A novel method for sculpting nano vias (< 20 nm) for nanoscale packaging
- Nano Electro-Machining (nano-EM): A Novel Method for Sculpting Nano Vias (< 20 nm) for Nanoscale Packaging
- Tip-based nanomanufacturing by electrical, chemical, mechanical and thermal processes
- Understanding behavior of machining interface and dielectric molecular medium in nanoscale electro-machining
- Understanding repeatability in nanoscale electro-machining process
- Nano electro-machining (nano-EM): A novel method for sculpting nano vias (< 20 nm) for nanoscale packaging
- Nano Electro-Machining (nano-EM): A Novel Method for Sculpting Nano Vias (< 20 nm) for Nanoscale Packaging
- ASTM Round-Robin on Creep-Fatigue and Creep Behavior of P91 Steel
- Prognostics of high temperature component reliability
- WITHDRAWN: Dislocation-based constitutive modeling of martensitic/ferritic steels at elevated temperatures. Part II: Cyclic behavior without hold time effects
- Harmonizing of Creep-Fatigue Test Methods through Development of ASTM Standards
- ASTM Round-Robin on Creep-Fatigue and Creep Behavior of P91 Steel
- Prognostics of high temperature component reliability
- Harmonizing of Creep-Fatigue Test Methods through Development of ASTM Standards
- Molecular Dynamics Simulation of Nanoconfinement Induced Organization of n-Decane
- Understanding behavior of machining interface and dielectric molecular medium in nanoscale electro-machining
- Understanding repeatability in nanoscale electro-machining process
- WITHDRAWN: Dislocation-based constitutive modeling of martensitic/ferritic steels at elevated temperatures. Part II: Cyclic behavior without hold time effects
- Harmonizing of Creep-Fatigue Test Methods through Development of ASTM Standards
- Tip-based nanomanufacturing by electrical, chemical, mechanical and thermal processes
- Tip-based nanomanufacturing by electrical, chemical, mechanical and thermal processes
- Tip-based nanomanufacturing by electrical, chemical, mechanical and thermal processes
- Tip-based nanomanufacturing by electrical, chemical, mechanical and thermal processes
- Tip-based nanomanufacturing by electrical, chemical, mechanical and thermal processes
- Tip-based nanomanufacturing by electrical, chemical, mechanical and thermal processes
- ASTM Round-Robin on Creep-Fatigue and Creep Behavior of P91 Steel
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