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  Acceleration,
Force, Pressure,
Torque, FEM





Thermal Analysis

Physical effects like heat conduction, heat transfer and heat radiation can be simulated using FEM. A sequentially coupled thermal-stress analysis can be applied to highly stressed engine components, for example.

Firstly, the temperature field is determined via thermal analysis. The stress/deformation response to the temperature field is found through a subsequent mechanical analysis. In this context constraints have an important effect on the resulting component stress.

Examples of this kind of sequentially coupled thermal-stress analysis are:

• Investigation of the stress-deformation behaviour of exhaust-gas systems

• Prestressing losses in clamping and interference fit assemblies due to temperature changes

 
 
News 10.12.2010
Miniature, cube-shaped, high-sensitivity, low-noise triaxial MEMS capacitive accelerometer with
High-Sensitivity, Miniature Triaxial K-Beam® MEMS Capacitive Accelerometer Family
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