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? Type of input energy (electrical motor, internal combustion engine with mechanical or hydraulic drive).
? Type of products to become driven.
? Amount of horsepower demanded to supply suffi cient electrical power to your driven shaft.
? Full load velocity of the fastest working shaft (rpm).
? Desired velocity of your slow running shaft ( or even the necessary velocity ratio). NOTE: If speeds are variable determine the horsepower for being transmitted at every single speed.
? Diameters from the drive and driven shafts . . . This value may well restrict the minimal variety of teeth to the sprockets.
? Center distance with the shafts.
? Note the position and any area limitations that could exist. Ordinarily these limitations are within the optimum diameter of sprockets (this restricts using single strand chains) or even the width on the chain (this restricts the usage of multi-strand chains).
? Conditions of your drive like a determination of the class of load (uniform, moderate or hefty), extreme working temperatures or chemically aggressive environments really should be mentioned.
Abbreviations Utilized in Equations
N Number of teeth to the substantial sprocket.
n Quantity of teeth within the compact sprocket.
R Speed in revolutions per minute (rpm) in the significant sprocket.
r Speed in revolutions per minute (rpm) of your tiny sprocket.
C Shaft center distance in chain pitches.
HP Horsepower rating with the drive motor or engine.
KW Kilowatt electrical power rating of drive motor or engine if working with metric units.
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