Chung-Che Chou focuses on Structural engineering, Buckling, Finite element method, Earthquake engineering and Brace. His Structural engineering research integrates issues from Frame and Yield. Chung-Che Chou usually deals with Buckling and limits it to topics linked to Beam and Compression and Tension.
Chung-Che Chou focuses mostly in the field of Finite element method, narrowing it down to topics relating to Stiffness and, in certain cases, Braced frame, Mechanics and Bracing. His work deals with themes such as Mechanical engineering and Friction coefficient, which intersect with Earthquake engineering. The study incorporates disciplines such as Air gap, Lateral expansion, Flexural rigidity and Nonlinear finite element analysis in addition to Brace.
His scientific interests lie mostly in Structural engineering, Buckling, Beam, Finite element method and Brace. In his study, Instability is inextricably linked to Braced frame, which falls within the broad field of Structural engineering. His Buckling research is multidisciplinary, incorporating elements of Flexural rigidity, Geotechnical engineering, Seismic analysis, Deformation and Gusset plate.
The concepts of his Beam study are interwoven with issues in Slab, Frame, Compression and Shear. Chung-Che Chou interconnects Deformation, Bending and Welding in the investigation of issues within Finite element method. His Brace research includes elements of Work and Bracing.
His primary areas of study are Structural engineering, Buckling, Finite element method, Braced frame and Brace. His work carried out in the field of Structural engineering brings together such families of science as Work and Ductility. His research in Ductility intersects with topics in Compressive strength, Yield, Structural load and Infill.
Finite element method is closely attributed to Deformation in his research. His research integrates issues of Gusset plate and Stiffness in his study of Brace. His Beam research incorporates elements of Transverse plane and Instability.
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Subassemblage tests and finite element analyses of sandwiched buckling-restrained braces
Chung-Che Chou;Chung-Che Chou;Sheng-Yang Chen.
Engineering Structures (2010)
Cyclic tests of post‐tensioned precast CFT segmental bridge columns with unbonded strands
Chung-Che Chou;Yu-Chih Chen.
Earthquake Engineering & Structural Dynamics (2006)
Seismic self‐centering steel beam‐to‐column moment connections using bolted friction devices
Keh-Chyuan Tsai;Keh-Chyuan Tsai;Chung-Che Chou;Chi-Lon Lin;Pei-Ching Chen.
Earthquake Engineering & Structural Dynamics (2008)
A procedure for evaluating seismic energy demand of framed structures
Chung‐Che Chou;Chia‐Ming Uang.
Earthquake Engineering & Structural Dynamics (2003)
Evaluating performance of post‐tensioned steel connections with strands and reduced flange plates
Chung-Che Chou;Jun-Hen Chen;Yu-Chih Chen;Keh-Chyuan Tsai.
Earthquake Engineering & Structural Dynamics (2006)
Steel buckling-restrained braced frames with single and dual corner gusset connections: seismic tests and analyses
Chung-Che Chou;Chung-Che Chou;Jia-Hau Liu;Dinh-Hai Pham.
Earthquake Engineering & Structural Dynamics (2012)
Steel braced frames with dual-core SCBs and sandwiched BRBs: Mechanics, modeling and seismic demands
Chung-Che Chou;Chung-Che Chou;Ying-Chuan Chen;Dinh-Hai Pham;Vu-Minh Truong.
Engineering Structures (2014)
Seismic design and shake table tests of a steel post‐tensioned self‐centering moment frame with a slab accommodating frame expansion
Chung-Che Chou;Chung-Che Chou;Jun-Hen Chen;Jun-Hen Chen.
Earthquake Engineering & Structural Dynamics (2011)
Establishing absorbed energy spectra—an attenuation approach
Chung-Che Chou;Chia-Ming Uang.
Earthquake Engineering & Structural Dynamics (2000)
Lessons Learned from the Damaged Chi-Lu Cable-Stayed Bridge
Kuei-Chung Chang;Y L Mo;C C Chen;L C Lai.
Journal of Bridge Engineering (2004)
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