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The pumped lamp current, Q-switch frequency and scribing rate were optimized.
The input parameters considered are lamp current, pulse frequency, assist air pressure and thickness of the job.
Lamp current, pulse frequency, air pressure and thickness of the job are selected as independent process variables.
The total ion current from the photoionization source was verified as a function of lamp current, sample flow rate, and drift field.
In this study, lamp current, pulse frequency, pulse width, assist air pressure and cutting speed of work piece are considered as laser machining process parameters.
The effects of laser turning process parameters i.e. lamp current, pulse frequency, pulse width, cutting speed (revolution per minute, rpm) and assist gas pressure on the quality of the laser turned micro-grooves have been studied.
Similar(36)
All samples were analysed in an air-acetylene flame using appropriate wavelength, slit length and lamp currents.
A laser beam with lamping current, pulse duration, welding speed and focused position of 145 A, 1.5 ms, 125 mm/min and −0.5 mm respectively were identified as the optimal set of laser welding parameters to obtain a welded area with desirable magnetic properties.
The input process parameters such as lamping current (130 160 A), pulse duration (1.5 3 ms), travel speed (50 200 mm/min) and focused position (−2 to −0.5 mm) were selected suitably in order to obtain the desired output, i.e., the magnetic properties of the welded samples.
A rare few represent discontinuous breakthroughs, such as the incandescent lamp, alternating electric current or the jet engine.
When the surface of poly-MB/GCE was irradiated with a light source (250 W Halogen lamp), the electrocatalytic current increased substantially.
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