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In this case, CNT deformation is a consequence of the electrostatic pressure associated with the charge density.
For a hollow-body photon sail effects including hydrogen diffusion through the solar-sail walls, and electrostatic pressure is considered.
If the tensile strength were lower than this electrostatic pressure some grains would leave the surface, increasing the electrostatic pressure for the now smaller particle, and more grains would be blown off the new surface, resulting in the eventual separation of the entire particle into its individual grains.
A highly accurate analytical deflection shape function that describes the deflection profiles of capacitive micromachined ultrasonic transducers (CMUTs) with rectangular membranes under electrostatic pressure has been formulated.
Electrostatic pressure caused by the electrically charged sail's electric field may require mitigation since sail material tensile strength decreases with elevated temperature.
In the present work, mechanical behavior of a functionally graded cantilever micro-beam subjected to a nonlinear electrostatic pressure and temperature changes has been studied.
Similar(50)
An empirical equation to predict the breakup length for electrostatic pressure-swirl nozzle has been suggested.
An investigation for spray characteristics such as liquid breakup length and spray cone angle of a charge-injected electrostatic pressure-swirl nozzle has been conducted.
These electrostatic pressures correspond to the minimum tensile strength required so that grains at the surface are not blown off the particle due to electrostatic repulsion.
The pressure on a small region of the surface, e.g., a grain in the aggregate particle, is given by: Figure 5 shows the electrostatic pressures calculated for particle diameters ranging from 2.5 to 10 μm and surface potentials ranging from 5 to 20 volts.
A modified model considering the influence of spatial sensitivity of the electrodes is proposed to predict the particle charge density in the fluidized bed, based on the measured induced electrostatic current and pressure drop signals.
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