Beasy Software

BEASY Products: Mechanical Design Software


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wheel - Fracture Software

Computer Requirements: Windows 95, 98, NT, 2000 or Unix Workstation.
BEASY is compatible with existing modelling tools such as PATRAN and IDEAS.
Windows users can also use BEASY's own modelling tools.

Integration with BEASY's Crack Growth Analysis

Crack in Pin Hole - Grown with Linear Elastic Fracture Mechanics

For life and durability predictions Cracks can be automatically added and grown using BEASY's Fatigue and Crack Growth software.

A robust computer modelling tool used to help design and predict the structural performance of mechanical components. The BEASY software uses boundary element technology to provide a radically improved approach to predictive computational analysis.

  • Reduced meshing times;
  • Automatic meshing without compromising accuracy;
  • Easier design changes;
  • Increase accuracy of results;
  • Integration with BEASY's crack growth analysis.
  • Contact simulation;

Automatic Meshing Without Compromising Accuracy

Automatic meshing without the need for lower accuracy Tet elements.

Bolt

Easier Design Changes

How many times have you reviewed solution results and found the mesh wasn't refined enough to give you the critical information you needed? BEASY offers a better solution to this problem. With BEASY the mesh can be locally modified without remeshing the entire model.

Reduced Meshing Times

BEASY improves the design process and reduces prototype costs using simplified surface only meshing.
Caliper - Stress

Contact Simulation

BEASY's contact analysis takes advantage of the reduced meshing times and increased accuracy to simplify contact analysis. Both node to node and node to surface contact are supported.

Brackets - Fatigue

Increased Accuracy of Results

BEASY has no match in detailed analysis. Fillet holes and other small features can be effectively modelled since only the surfaces need to be defined. This means the real geometry can be analysed without simplification giving more accurate results and improved fatigue prediction.

Discontinuous elements allow you to accurately capture the behaviour in areas where results are changing quickly

 

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