The reliability of MEMS-based sensors for automotive applications critically depends on their high-cycle load-bearing capacity. To investigate the influence of high-frequency cyclic loading on mechanical properties of polycrystalline silicon, a statistically based investigation with the use of novel rotational specimens (90 kHz) has been conduced. Either fatigue fracture (above 3 GPa) or strengthening of the material at cyclic loading below 3 GPa has been observed
Nowadays, silicon wafers are widely used in a number of areas, in particular in the semiconducting a...
With advances in silicon microfabrication techniques, electromechanical sensors are shrunk to nanom...
Although bulk silicon is not susceptible to fatigue, micron-scale silicon is. Several mechanisms hav...
The long-term mechanical behavior of 3.5 µm thick and 50 µm wide polysilicon tensile specimens under...
10 and 20µm thick n-doped, epitaxially deposited, Bosch polysilicon layers of columnar structure wer...
Fatigue failure in micron-scale polycrystalline silicon structural films, a phenomenon that is not o...
Although bulk silicon is not known to exhibit susceptibility to cyclic fatigue, micron-scale struct...
Reported nearly a decade ago, cyclic fatigue failure in silicon thin films has remained a mystery. S...
Fatigue failure knowledge of polycrystalline silicon (polysilicon) thin films is crucial for the des...
A study has been made of high-cycle fatigue in 2um thick structural films of n+- type, polycrystalli...
Understanding the mechanisms for fatigue crack initiation and propagation in micron-scale silicon (S...
Despite fatigue failure in polysilicon microstructures has been reported by many research groups, i...
We have studied influence of silicon crystal size on tensile and high-cycle fatigue properties for h...
Previous studies on very high-cycle fatigue behavior of thin silicon films suggest a strong environm...
Fatigue failure in micron-scale polycrystalline silicon structural films, a phenomenon that is not o...
Nowadays, silicon wafers are widely used in a number of areas, in particular in the semiconducting a...
With advances in silicon microfabrication techniques, electromechanical sensors are shrunk to nanom...
Although bulk silicon is not susceptible to fatigue, micron-scale silicon is. Several mechanisms hav...
The long-term mechanical behavior of 3.5 µm thick and 50 µm wide polysilicon tensile specimens under...
10 and 20µm thick n-doped, epitaxially deposited, Bosch polysilicon layers of columnar structure wer...
Fatigue failure in micron-scale polycrystalline silicon structural films, a phenomenon that is not o...
Although bulk silicon is not known to exhibit susceptibility to cyclic fatigue, micron-scale struct...
Reported nearly a decade ago, cyclic fatigue failure in silicon thin films has remained a mystery. S...
Fatigue failure knowledge of polycrystalline silicon (polysilicon) thin films is crucial for the des...
A study has been made of high-cycle fatigue in 2um thick structural films of n+- type, polycrystalli...
Understanding the mechanisms for fatigue crack initiation and propagation in micron-scale silicon (S...
Despite fatigue failure in polysilicon microstructures has been reported by many research groups, i...
We have studied influence of silicon crystal size on tensile and high-cycle fatigue properties for h...
Previous studies on very high-cycle fatigue behavior of thin silicon films suggest a strong environm...
Fatigue failure in micron-scale polycrystalline silicon structural films, a phenomenon that is not o...
Nowadays, silicon wafers are widely used in a number of areas, in particular in the semiconducting a...
With advances in silicon microfabrication techniques, electromechanical sensors are shrunk to nanom...
Although bulk silicon is not susceptible to fatigue, micron-scale silicon is. Several mechanisms hav...