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The CoMputational Mechanics and Methods (CM3 [cubic centimeter]) Group in the Department of Mechanical and Aerospace Engineering at the University of Kentucky is a research unit that extensively and intensively develops and applies computational methods (e.g., finite elements and meshfree/meshless methods) to model and simulate real world mechanics-related problems.

The research interests of our group lie primarily in the broad areas of Computational Mechanics and Computational Materials, with research focus in following main topics:

  • Multi-scale multi-physics modeling of solid materials (brittle, ductile);
  • Damage and failure modeling of solids and structures under normal and extreme conditions (high temperature, high velocity, etc);
  • Mechanics of material systems with stochastic heterogeneous microstructures (composites, polycrystals, etc);
  • Advanced methods for Integrated Computational Materials Engineering and materials design.

We believe that new and existing ideas become better through exploration and collaboration. If you find what we are doing is interesting to you, don’t hesitate to contact us.

Cheers!


Four Golden Lessons (to PhD students)

By Steven Weinberg

  • Lesson 1: "No one knows everything, and you don't have to."
  • Lesson 2: "While you are swimming and not sinking you should aim for rough water."
  • Lesson 3: "To forgive yourself for wasting time."
  • Lesson 4: "Learn something about the history of science, or at a minimum the history of your own branch of science."
deep sea

News

New paper coauthored by Dr. Chen on coupled SPH-VCPM for FSI modeling has been accepted by Ocean Engineering

New paper entitled "A Coupled Smoothed Particle Hydrodynamics-Volume Compensated Particle Method (SPH-VCPM) for Fluid Structure Interaction (FSI) Modeling" has been accepted for publication in the Ocean Engineering.

New paper coauthored by Dr. Chen on modeling elastoplastic materials using nonlocal lattice method has been accepted by IJNME

New paper entitled "A Nonlocal Lattice Particle Model for J2 Plasticity" has been accepted for publication in the International Journal for Numerical Methods in Engineering.

New paper on peridynamics models using irregular spatial discretization has been accepted by CMAME!

New paper entitled "A Comparison Study on Peridynamic Models Using Irregular Non-uniform Spatial Discretization" has been accepted for publication in the Computer Methods in Applied Mechanics and Engineering journal.

New paper on stability and convergence of bond-associated correspondence model has been accepted by IJNME!

New paper entitled "Peridynamic Bond-Associated Correspondence Model: Stability and Convergence Properties" has been accepted for publication in the International Journal for Numerical Methods in Engineering.

Welcome new group member Wailam Chan!

WaiLam Chan joins the group. Welcome, WaiLam!

Group website is online!

Our research group website is online.