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Full-Text Articles in Materials Science and Engineering

Plastic Deformation Of Astm A36 Steel Using Two-Stage Light Gas Gun, Shawoon Kumar Roy Apr 2013

Plastic Deformation Of Astm A36 Steel Using Two-Stage Light Gas Gun, Shawoon Kumar Roy

College of Engineering: Graduate Celebration Programs

To characterize material deformation in high velocity impact. To validate material models for computation simulation purposes.

This ongoing research is an attempt to study the plastic deformation of A36 steel plate (0.5” thick) under hypervelocity impact. Plastic deformation of the target plate was simulated using finite element software LS-DYNA.


Analysis Of Bolted Joints Under Medium And High Impact Loading, Deepak Sankar Somasundaram, Mohamed Trabia, Brendan J. O'Toole Apr 2013

Analysis Of Bolted Joints Under Medium And High Impact Loading, Deepak Sankar Somasundaram, Mohamed Trabia, Brendan J. O'Toole

College of Engineering: Graduate Celebration Programs

  • Develop test fixture for medium impact study on bolted joints
  • Create FEA model that can replicate the experiment
  • Develop test fixture for high impact loading
  • Create FEA model and select material properties that can produce results that
    closely match experiments.
  • Compare different modeling techniques for high impact loading


Vulnerability Of Progressive Collapse In Reinforced Concrete Flat-Plate Buildings, Jinrong Liu Apr 2013

Vulnerability Of Progressive Collapse In Reinforced Concrete Flat-Plate Buildings, Jinrong Liu

College of Engineering: Graduate Celebration Programs

  • Progressive collapse is the spread of initial local failure, causing partial or
    even total collapse of a building.
  • Flat plate structure is widely used for office and residential buildings.
  • There is a large inventory of older flat plate building without continuous slab bottom reinforcement through columns.
  • Limited knowledge exists regarding the risk of disproportionate collapse in
    older flat-plates under sudden column removal during abnormal events.
  • Reliable mechanical model is needed for structural evaluation.


Nano-Silica For Enhanced Greener Concrete, Mohamed S. Zeidan Apr 2012

Nano-Silica For Enhanced Greener Concrete, Mohamed S. Zeidan

College of Engineering: Graduate Celebration Programs

Colloidal nano-silica was added to normal and fly ash concretes with different rates to examine the its effect on different concrete performance aspects. The main objectives of the study is to determine the effect of adding nano-silica on:

• The rate hydration and the reactivity of cement and pozzolans.

• The mechanical properties and strength gain rate (especially for fly ash concrete).

• Durability.

• Microstructure and Porosity.