[[abstract]]The fatigue behavior of a microcantilever beam loaded by various magnetic forces is investigated. The MEMS fabrication techniques, such as exposure, lithography, etching, etc., are applied to construct the micro structures on a silicon wafer. FEM and SEM are employed to study the relations between fractographies, stresses, and strains. The experimental results indicate that the deformation, stress and strain increase as the magnetic force increases, while the fatigue cycle time decreases with the load. The fatigue life lies in the range of 1-5 × 107 cycles at 12-15 MPa produced by the magnetic flux. Fracture occurs at the location of the maximum stress as predicted by an analytical approach.[[fileno]]2020218010010[[department]]動...
Micro-Electro-Mechanical Systems (MEMS) stand for the integration of mechanical elements, sensors, a...
The mechanical fatigue behavior of gold microbeams is analyzed. Dedicated devices have been designed...
AbstractThe grain microstructure and damage mechanisms at the grain level are the key factors that i...
[[abstract]]The reliability of a microelectromechanical system is an essential issue before the micr...
Mechanical properties of nanoscale structures are needed to design reliable micro/nanoelectromechani...
Mechanical properties of nanoscale structures are needed to design reliable micro/nanoelectromechani...
Mechanical properties of nanoscale structures are needed to design reliable micro/nanoelectromechani...
This paper proposes a new strategy for detecting material strength loss under mechanical fatigue on ...
The mechanical fatigue behavior of gold microbeams is analyzed. Dedicated devices have been designed...
The present work demonstrates a micromechanical technique to investigate the low cycle fatigue (LCF)...
With the advent of microtechnology over the last few decades, designs for new and innovative microsc...
The mechanical fatigue behavior of gold microbeams is analyzed. Dedicated devices have beendesigned ...
The mechanical fatigue behavior of gold microbeams is analyzed. Dedicated devices have been designe...
AbstractThe micro scaled fatigue tests have been conducted using the micro cantilever-shaped specime...
The tensile and fatigue properties of LIGA (Lithographie, Galvanformung, Abformung) nickel microelec...
Micro-Electro-Mechanical Systems (MEMS) stand for the integration of mechanical elements, sensors, a...
The mechanical fatigue behavior of gold microbeams is analyzed. Dedicated devices have been designed...
AbstractThe grain microstructure and damage mechanisms at the grain level are the key factors that i...
[[abstract]]The reliability of a microelectromechanical system is an essential issue before the micr...
Mechanical properties of nanoscale structures are needed to design reliable micro/nanoelectromechani...
Mechanical properties of nanoscale structures are needed to design reliable micro/nanoelectromechani...
Mechanical properties of nanoscale structures are needed to design reliable micro/nanoelectromechani...
This paper proposes a new strategy for detecting material strength loss under mechanical fatigue on ...
The mechanical fatigue behavior of gold microbeams is analyzed. Dedicated devices have been designed...
The present work demonstrates a micromechanical technique to investigate the low cycle fatigue (LCF)...
With the advent of microtechnology over the last few decades, designs for new and innovative microsc...
The mechanical fatigue behavior of gold microbeams is analyzed. Dedicated devices have beendesigned ...
The mechanical fatigue behavior of gold microbeams is analyzed. Dedicated devices have been designe...
AbstractThe micro scaled fatigue tests have been conducted using the micro cantilever-shaped specime...
The tensile and fatigue properties of LIGA (Lithographie, Galvanformung, Abformung) nickel microelec...
Micro-Electro-Mechanical Systems (MEMS) stand for the integration of mechanical elements, sensors, a...
The mechanical fatigue behavior of gold microbeams is analyzed. Dedicated devices have been designed...
AbstractThe grain microstructure and damage mechanisms at the grain level are the key factors that i...