2018 - Member of the European Academy of Sciences
Acoustic emission, Composite material, Structural engineering, Characterization and Fracture are his primary areas of study. His biological study spans a wide range of topics, including Bending, Cracking and Reinforced concrete. His Cracking study combines topics from a wide range of disciplines, such as Ultimate tensile strength, Waveform and Acoustics.
Fracture mechanics, Cementitious, Catastrophic failure, Composite number and Stiffness are subfields of Composite material in which his conducts study. His Structural engineering research is multidisciplinary, incorporating perspectives in Ultrasound and Corrosion. His study explores the link between Corrosion and topics such as Ultrasonic sensor that cross with problems in Rayleigh wave and Attenuation.
His primary areas of investigation include Acoustic emission, Composite material, Structural engineering, Cementitious and Fracture. His Acoustic emission research is multidisciplinary, relying on both Characterization, Cracking, Digital image correlation, Waveform and Bending. His Waveform research focuses on Acoustics and how it relates to Wave propagation.
His Composite material study often links to related topics such as Ultrasonic sensor. His Cementitious research integrates issues from Shrinkage, Attenuation, Microstructure and Superabsorbent polymer. The concepts of his Fracture study are interwoven with issues in Stress, Textile, Ceramic matrix composite and Bending.
Dimitrios G. Aggelis spends much of his time researching Composite material, Acoustic emission, Cementitious, Fracture and Superabsorbent polymer. The study of Composite material is intertwined with the study of Attenuation in a number of ways. His study in Acoustic emission is interdisciplinary in nature, drawing from both Fiber-reinforced concrete, Cement, Cracking, Stress and Digital image correlation.
His studies deal with areas such as Shrinkage and Curing as well as Cementitious. His studies in Fracture integrate themes in fields like Bending and Epoxy. His Bending research integrates issues from Acoustics and Waveform.
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Classification of cracking mode in concrete by acoustic emission parameters
Dimitrios G. Aggelis.
Mechanics Research Communications (2011)
Acoustic emission behavior of steel fibre reinforced concrete under bending
D. Soulioti;N.M. Barkoula;A. Paipetis;T.E. Matikas.
Construction and Building Materials (2009)
Experimental study of wave dispersion and attenuation in concrete
T.P. Philippidis;D.G. Aggelis.
Acoustic emission characterization of the fracture process in fibre reinforced concrete
D.G. Aggelis;D.V. Soulioti;N. Sapouridis;N.M. Barkoula.
Construction and Building Materials (2011)
Non-Destructive Evaluation for Corrosion Monitoring in Concrete: A Review and Capability of Acoustic Emission Technique
Ahmad Zaki;Hwa Kian Chai;Dimitrios G. Aggelis;Ninel Alver.
Monitoring mechanical damage in structural materials using complimentary NDE techniques based on thermography and acoustic emission
E.Z. Kordatos;D.G. Aggelis;T.E. Matikas.
Composites Part B-engineering (2012)
Investigation of different fracture modes in cement-based materials by acoustic emission
D.G. Aggelis;A.C. Mpalaskas;T.E. Matikas.
Cement and Concrete Research (2013)
Acoustic emission for fatigue damage characterization in metal plates
D.G. Aggelis;E.Z. Kordatos;T.E. Matikas.
Mechanics Research Communications (2011)
Combined use of thermography and ultrasound for the characterization of subsurface cracks in concrete
D.G. Aggelis;E.Z. Kordatos;D.V. Soulioti;T.E. Matikas.
Construction and Building Materials (2010)
Repair evaluation of concrete cracks using surface and through-transmission wave measurements
D.G. Aggelis;T. Shiotani.
Cement & Concrete Composites (2007)
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