Heavy Duty Hauling Winch

 

 


Drums are steel fabricated and designed to specific loading capacity. Drums are sized according to ASME B30.7.94 to provide a minimum pitch diameter of 15 times the nominal rope diameter.


A simple, direct-drive design increases the efficiency of the winch and eliminates drive chains or bull gears to maximize power output.


An open-base design permits mounting in horizontal or vertical positions. Loads can be pulled through the base itself, which is particularly useful in limited-space installations.


Friction load loss is reduced to a minimum through the use of ball and roller bearings. No bushings means higher efficiency and more power for pulling.


For added safety, all winches are fully reversible. This gives the operator complete control of the winch load in both directions at all times.


Jeamar winches are designed and manufactured for continuous, heavy-duty operation with a minimum service factor of 1 (one).

All Jeamar hauling winches have high-efficiency helical gear reducers plus high-capacity, anti-friction bearings for long life, low noise and high output torque.


The full range of Jeamar's heavy duty hauling winches is available with 3-phase motors in any standard voltage at 50 or 60 Hz. Winch models NHS 550, NHS 1100 and NHS 1900 are single phase in any standard voltage at 50 or 60 Hz. All motors are TEFC flange mounted and conform to NEMA, EEMAC or IEC specifications.


For detail on pulling railcars or pulling up grades, send for our free railcar pulling brochure or see Railcar Pulling Detail.


When a hauling winch is used to move loads on an incline, it is essential that a brake be used.


Electromagnetic Brake, Grooved Drum, Free Spooling System, Rotary Limit Switches, Controls, Pressure Roller, Corrosion Resistant Package, Explosion Proofing, Variable Speed, Large Drums and Torque Limiters.

Important: Due to Jeamar's policy of continuing development, all specifications are subject to change without notice. Users of these products are responsible for ensuring their suitability for the application in which they are being used.

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