TS
T.-L. Sham
Also known as: Ting-Leung Sham, Sam Sham, T.-L. (Sam) Sham
United States Nuclear Regulatory Commission, Idaho National Laboratory, Brown University, University of Glasgow, Argonne National Laboratory
Employment
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United States Nuclear Regulatory Commission Sr. Technical Advisor for Advanced Reactor Research2024 - Present
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Idaho National Laboratory Laboratory Fellow2020 - 2024
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Argonne National Laboratory Program Lead, Advanced Reactor Materials2015 - 2020
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Oak Ridge National Laboratory Distinguished R&D Staff Member2007 - 2015
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Framatome Inc Adviosory Engineer2006 - 2007
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Knolls Atomic Power Laboratory Senior Advisory Engineer1999 - 2006
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Rensselaer Polytechnic Institute Associate Professor1982 - 1999
Education
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Brown University Ph.D.1977 - 1982
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Brown University M.Sc.1977 - 1982
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Brown University M.Sc.1977 - 1979
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University of Glasgow B.Sc. (First Class Honor)1974 - 1977
Projects & Funding
Projects & funding information is unavailable.
Publications (104)
- A Structural Design Approach Tailored for the Rapid Preliminary Design of Microreactor Components Save
- Designing Cladded Components for High Temperature Nuclear Service: Part I-Analysis Methods Save
- Designing Cladded Components for High Temperature Nuclear Service: Part II-Design Rules Save
- Varied enhancements in mechanical properties and sodium compatibility of Grade 92 by thermomechanical treatments Save
- A COMPREHENSIVE COMPARISON BETWEEN DIFFERENT MULTIAXIAL CYCLE COUNTING PROCEDURE Save
- A PROBABILISTIC MARGIN ASSESSMENT OF THE ASME SECTION III, DIVISION 5 PRIMARY LOAD DESIGN RULES FOR CLASS A COMPONENTS Save
- A VISCOPLASTIC MODEL FOR ALLOY 617 FOR USE WITH THE ASME SECTION III, DIVISION 5 DESIGN BY INELASTIC ANALYSIS RULES Save
- A method for predicting failure statistics for steady state elevated temperature structural components Save
- Accurate Effective Stress Measures: Predicting Creep Life for 3D Stresses Using 2D and 1D Creep Rupture Simulations and Data Save
- EVALUATION OF PRIMARY-LOAD EFFECTS ON CREEP-FATIGUE LIFE OF ALLOY 617 USING SIMPLIFIED MODEL TEST METHOD Save