mill volume load
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16 10 2014 Mill volume load
http://www.thecementgrindingoffice.com/mining/fillingdegree.html# 1/3
Thu, 16 October 2014, 18:44:40 UTC
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VOLUME LOAD - Monochamber Mill This calculator gives the volume load (or filling degree in %) after measurements inside the mill
H/D measurement method:
16/10/2014
Company/Plant
Mill N 0 NaN
Shell diameter 0 m
Lining average thickness mm
Internal diameter 0 m NaN
Measured height H1 (*) m NaN
Measured height H2 (*) m
Measured height H3 (*) m
Average height H NaN m 0
H/D NaN NaN
Volume load NaN % 4,6 0
Useful length m NaN
Top size diameter mm
Bulk density of load NaN t/m3
Tonnage NaN t
(*) See where are H1, H2 and H3 on the sketch below
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16 10 2014 Mill volume load
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0
NaN
NaN
www.themininggrindingoffice.com Visible plates method:
0
Shell diameter 0 m NaN NaN
Lining average thickness mm
Internal diameter 0 m
Total number of plates
Visible number of plates at inlet 4,6 0
Visible number of plates at middle NaN
Visible number of plates at outlet
Visible number of plates NaN average
Angle NaN degrees
Angle NaN radians
Height H NaN m
H/D NaN
Volume load NaN %
Useful length m 0
Top size diameter mm
Bulk density of load NaN t/m3
Tonnage NaN t NaN
Central part measurementmethod:
NaN
Shell diameter 0 m
Lining average thickness mm
Internal diameter 0 m Inlet:
Central part diameter mm (inlet trunnion) 0 NaN
Distance to top of balls (*) mm (from bottom of central part) NaN
Height H inlet 0,000 m Outlet:
Central part diameter mm (outlet trunnion or diaphragm)
Distance to top of balls (*) mm (from bottom of central part)
Height H outlet 0,000 m
Height H average 0,000 m
Volume load NaN % 4,6 0 NaN
Useful length m
Top size diameter mm
Bulk density of load NaN t/m3
Tonnage NaN t
(*) If the top of the balls is higher than the bottom of the central part, the distance becomes negative
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16 10 2014 Mill volume load
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becomes negative
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