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AHSANULLAH UNIVERSITY OF SCIENCE AND TECHNOLOGY

Department of

Mechanical and Production Engineering




Dr. Fazle Rabbi



Designation: Associate Professor

Email: fazle.rabbi.mpe@aust.edu

Office Extension:

Room No:



Research Interests

Educational Background

  • Ph.D, (Mechanical Engineering), University of South Carolina, Columbia, South Carolina, USA
  • Bachelor of Science (BSc), (Mechanical Engineering), Bangladesh University of Engineering and Technology (BUET), Dhaka, Bangladesh

Honors and Achievements

Publications

  • Morphological Study of Dispersion Phases in Heterogeneous Waste Form Materials for Efficient Nuclear Waste Containment, 2018
  • Finite element analysis of ion transport in solid state nuclear waste form materials, Journal of Nuclear Materials, 2017
  • Critical path-driven property and performance transitions in heterogeneous microstructures, Journal of Materials Science, 2017
  • Conformal Analysis of Ion Transport in Heterogeneous Solid State Nuclear Waste Forms, 2016
  • Heterogeneous Materials Design for Sustainable Nuclear Waste Storage Using Life Prediction by Conformal Finite Element Analysis, 2016
  • Performance and Strength Prediction of Composite Materials Based on Dielectric Property Investigation, 2016
  • Heterogeneous Fracture Mechanics Representations of the Effects of Defects from Manufacturing to End of Life, 2016
  • Validated predictive computational methods for surface charge in heterogeneous functional materials: HeteroFoaM™, Mechanics of Advanced Materials and Modern Processes, 2015
  • Composite materials damage modeling based on dielectric properties, Materials Sciences and Applications, 2015
  • Relationship of dielectric property change to composite material state degradation, Composites Science and Technology, 2014
  • Meso-design of heterogeneous dielectric material systems: Structure property relationships, Journal of Advanced Dielectrics, 2014
  • Processing-property relationships in advanced multi-functional composite materials: Management of dielectric behavior, 2014
  • Nano-Mechanics foundations and experimental methodologies for multiphysics prognosis of functional behaviour in heterogeneous functional materials (HeteroFoaM), Procedia IUTAM, 2014
  • The Effect of Constituent, Interfacial Properties and Morphology on the Dielectric Response of MIEC Membranes, Carbon Dioxide Management and Other Technologies, 2013
  • A dielectric spectroscopy method of directly assessing composite micro-state evolution during manufacturing and deformation, Society for the Advancement of Material and Process Engineering (SAMPE), 2013
  • Multiphysics design and development of heterogeneous functional materials for renewable energy devices: the HeteroFoaM story, Journal of The Electrochemical Society, 2013
  • Role of micromorphology and interfacial mismatch in the design of heterogeneous functional materials for fuel cell applications, 2013
  • HeteroFoaMs: Electrode modeling in nanostructured heterogeneous materials for energy systems, Journal of Fuel Cell Science and Technology, 2012
  • Heterofoam: New concepts and tools for heterogeneous functional material design, Advances in Materials Science for Environmental and Energy Technologies: Ceramic Transactions, 2012
  • Relationship of micromophology to charge storage and transfer properties in heterogeneous functional materials, 2012
  • Multi-Physics Functional Design of HeteroFoaM Nanomaterials for Energy Systems, 2012
  • Experimental Mechanics for Prognosis of Material State Changes in Heterogeneous Materials for Energy Systems, 2011
  • Effect of Porous Electrode Morphology on Broadband Dielectric Characteristics of SOFC and Methodologies for Analytical Predictions, 2011
  • Relationship of micro-structure morphology to impedance in heterogeneous functional materials, 2010