The total tension needed to move the belt and load horizontally is expressed by E2 = E E1 Operating Tension Operating tension determines the working strength of the belt on a per inch of width basis T = E2 / W Once you gather all the necessary conveyor calculations for proper design you re ready to create your custom conveyor system
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Get PriceL = Conveyor Length feet S = Conveyor Speed RPM MHP = Material HP HP required to convey bulk material CFH = Conveyor Capacity ft 3 /hr W = Bulk Density lbs/ft 3 MF = Material Factor From Bulk Material Table CP = Capacity lbs/hr TSHP = Total Shaft HP e = Drive Efficiency Typical value of is used for a shaft mount reducer/motor
Get PriceBelt Pull = Total Weight x frictional coefficient Belt Pull = 280 lbs x Belt Pull = 140 lbs Then convert this to required power Required Power = Belt Pull x Belt Speed Required Power = 140 lbs x 50 fpm = 7 000 ft lbs/min Convert that to a useful unit of measure One horsepower HP equals 33 000 ft lbs/min
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Get PriceThe belt tension at steady state can be calculated as Tb = f L g [2 mi 2 mb mm cos δ ] H g mm …… Where Tb is in Newton f = Coefficient of friction L = Conveyor length in meters Conveyor length is approximately half of the total belt length g = Acceleration due to gravity = m/sec2 mi = Load due to the idlers in Kg/m
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Get PriceConveyor capacity is determined by the belt speed width and the angle of the belt and can be expressed as Q = ρ A v 1 where Q = conveyor capacity kg/s lb/s ρ = density of transported material kg/m3 lb/ft3 A = cross sectional area of the bulk solid on the belt m2 ft2 v = conveyor belt velocity m/s ft/s
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Get PriceSC = 323 SC = This selection capacity value will be used in the capacity table for calculating correct size and speed In the appropriate column under 30% A loading we find that a 14″ conveyor at the maximum recommended speed will convey 2194 cu ft per hr or cu ft per revolution
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Get PriceCalculate belts power transmission and efficiency Sponsored Links The torque available at the driven wheel or pulley a can be expressed as T = F2 F1 ra 1 where T = torque Nm F = force N r = radius of wheel or pulley The available power can be expressed as
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