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The analyses were carried out to determine racking and static torsion resistance.
Push pull, torsion and tension-compression with a superimposed static torsion fatigue test results are presented.
Based on the theory of elasticity, exact analytical and numerical solutions of piezoelectric rods under static torsion are studied.
The median device yield strength was 10,117 N for static axial compression, 3680 N for static compression-shear, and 8.6 N m for static torsion.
An over-populated spot weld distribution is then built in order to satisfy the remaining design criteria, such as static torsion angle and modal behavior.
In the second part, experimental results are shown, considering four different types of tests: static proof and ultimate tests, fatigue tests and static torsion tests.
Similar(49)
In this design, a theoretical model is developed to demonstrate the static characteristics of the electrostatic torsion micromirror.
The results show that the torsion capacity is significantly affected by changing the winding angle and the presence of aluminum in the static torque test capacity properties.
The nonlinear boundary value problem related to quasi-static elastoplastic torsion of a beam, given by monotone increasing values of the angle of twist per unit length, is modeled in view of monotone potential operators.
The superposition of static tension on cyclic torsion causes notch weakening.
The torsion static tests were conducted with a static axial compression preload (20 N), in angular displacement control at a rate of 1°/sec, collecting torque and angular displacement data.
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