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gradient between the central and second finger pad temperature.
The results show the frequencies to be independent of pad temperature and disc rotating speed.
Experimental data collected include removal rate, coefficient of friction, shear force variance, pad temperature and dynamic mechanical analyzer measurements.
Results show that all of the pads polish wafers in boundary lubrication mode with unique friction coefficient, shear force variance and pad temperature characteristics.
Each test was conducted for 500 start stop cycles up to 810 °C foil pad temperature under 13.8 kPa normal loading.
We also measured the gradient between the central and second finger pad temperature (ΔT°) as an estimate of the extent of skin perfusion.
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Using an experimental apparatus, measurements of pad temperatures, unbalance response and stability are compared with modeling predictions for two tilting pad bearing designs.
Based on finger pad temperatures in the study of O'Brien (2005), differences in onset time of 25 s and differences in peak temperature of 1.5°C can be detected.
Mice were anesthetized in an isofluorane chamber and then transferred in supine position to a custom-built stage with heating pad, rectal temperature probe (FHC Inc ., and nose cone for isoflurane inhalation.
Tilting pad bearing temperatures exceeding their design limits may cause unit downtime or failure.
This trial showed that cooling by a novel non-invasive surface cooling pad to temperatures < 35°C is feasible and safe in healthy volunteers.
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