A load sensor system uses a transfer function to modify force measurements based on acceleration data.
Automated mechanical measurement replaces subjective human touch evaluation, enabling consistent quality control and early detection of manufacturing drifts.
A new elastic-plastic constitutive model simulates stress-strain relations during unloading and re-tension processes.
Adjustable normal fault simulation device controls dip angles and fracture initiation positions using hydraulic lifting and push rod mechanisms.
A stress cell uses piezoelectric actuators and compliant hinges to apply uniaxial force.
Dynamic mechanical analysis system uses adjustable clamps to maintain strain amplitude at 10 kHz, eliminating indirect time-temperature superposition errors.
A material tester controller segments test conditions into independent units to manage branching logic during tensile testing.
A dent actuator introduces a controlled single dent into a composite cylindrical shell to measure buckling resistance and derive accurate reduction factors.
An optical measurement system captures specimen distortion through a view port, reducing testing time and protecting the camera from shock.
Magnetic bearings eliminate mechanical friction to identify the weakest deflection vector in shafts.
A U-shaped transmission element converts press compression into tensile or shear forces to test adhesive bonds between specimen elements.
A testing device subjects specimens to high-speed thermal mass flow while continuously measuring applied force.