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Our group is developing chip-scale systems and devices that process electromagnetic, optical, and mechanical fields in qualitatively new ways.
It links the evolution of the local mechanical fields to the leakage rate.
The coupled photo-induced electrical, thermal, and mechanical fields are considered in the formulation.
Classical procedures are restricted to the treatment of homogeneous mechanical fields.
The stress intensity factors of electrical and mechanical fields are dependent.
The aim is to identify many parameters thanks to the heterogeneity of mechanical fields.
Full coupling between the thermal, electrical and mechanical fields is taken into consideration.
The real stress intensity factors of electrical and mechanical fields are then independent.
Piezoceramic materials exhibit different types of nonlinearities under different combinations of electric and mechanical fields.
On the contrary, the Virtual Fields Method (VFM) enables the treatment of inhomogeneous mechanical fields.
Thirdly, a wear algorithm has been programmed using experimental wear data and mechanical fields computed from blanking simulation.
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