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This approach therefore gives the damping of the beam when incorporated in machine structures undergoing vibration.
Failure of machine structures is a very common phenomenon in industries.
The study of development of cracks on machine structures thus becomes crucial.
Slip damping is a mechanism exploited for dissipating noise and vibration energy in aerodynamic and machine structures.
A method of calculating EILFs and coupling loss factors (CLFs) for non-conservatively coupled machine structures is introduced.
The identification of efficient dynamic constellations will be shown as basic principle for designing future machine structures.
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Thermal gradients cause heat to flow through the machine structure and results in non-linear structural deformation whether the machine is in operation or in a static mode.
One possible method for increasing precision is to adopt a machine structure with parallel kinematics.
All relevant problems along with their solutions are discussed on the double salient machine structure of FSPM.
The high accelerations occurring in present-day machine tools are likely to excite the vibration modes of the machine structure.
Finite element analysis was also performed to verify the static and dynamic robustness of the machine structure.
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