STRESS ANALYSIS

Stress analysis  |  Termomechanics  |  Fatique​

It is important to know the mechanical load capacity of complex parts early in the developemnt, when the time-to-market is short, cost-effectiveness is a must, and the quality requirements are high. With the help of state-of-the-art softwares, we have the possibility to take into account various materials like metals with homogeneous isotropic behavior, or injection-reinforced fiber-reinforced plastics with a high degree of anisotropy, for which consideration of creep and stress relaxation is especially important. With our expertise, we can answer many complex engineering questions. Based on Wöhler curves and Haigh diagrams, it is also possible to determine the service life of parts. Using thermal analysis, the effects of temperature distribution, heat transfer, heat radiation, and heat flow can be taken into account while loading a component. It is also possible to perform coupled thermo-mechanical analyzes on 3D printed parts.

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FINITE ELEMENT ANALYSIS

STATIC  AND DYNAMIC ANALYSIS |  PLASTIC AND METAL PARTS | FEA | ALTAIR

CAD MODEL

SIMULATION MODEL

ANALYSIS

RESULTS

In many cases, in addition to manufacturing process analysis, it is also necessary to examine the mechanical load capacity of the components in order to get an idea of the processes that take place during the use of the product. With our static, strength, dynamic, thermal, topology and shape optimization solutions based on the finite element method, we can efficiently design plastic and metal parts with the help of Altair's simulation software package (Simlab, Inspire, Optistruct, Radioss).

Our analysis portfolio includes the most commonly used procedures in the industry:

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  • Linear and nonlinear static analysis,

  • Examination of natural frequency, excited oscillations and random response,

  • Stationary and transient thermal analysis,

  • Coupled analysis options,

  • Fatigue testing.

 

Contact us and let us analyze and optimize your plastic or metal product!