Remote Control Scaffold Electric Wire Rope Hoist

Product Description

Remote Control Scaffold Electric Wire Rope Hoist, Scaffolding Hoist
- Dawson Group Ltd. - China Manufacturer, Supplier, Factory
   

Duty cycle: S3 20%-10min

IP54


Technique parameter

Specification DS-JZX-200/400-YK DS-JZX-250/500-YK DS-JZX-300/600-YK DS-JZX-400/800-YK
Method of use Single-hook Double-hook Single-hook Double-hook Single-hook Double-hook Single-hook Double-hook
Rated volt(v) 230V/50Hz 230V/50Hz 230V/50Hz 230V/50Hz
Input power(w) 1000 1000 1050 1300
Rated lifting weight(kg) 200 400 250 500 300 600 400 800
Lifting speed(m/min) 8 4 8 4 8 4 8 4
Lifting height(m) 38 19 38 19 34 17 32 16
Qty/CNT(pcs) 1 1 1 1
Measurement(cm) 51×41×46 51×41×46 51×41×46 51×41×46
G/N(kg) 43/42 43/42 45/44 45/44

Fast Speed: single line-22m/min, 50m height is avaliable


Welcome to buy the newest and competitive price DAWSON Remote Control Scaffold Electric Wire Rope Hoist from our factory. We're one of the leading China manufacturers and suppliers, offering you the wholesale service and the OEM service at a discount. With CE certification, our products made in China in stock are high in quality and low in price. Please be free to get the free sample from us.

 

For further information, please contact us. Email:info@dawson-group.com


 
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Products Show:

Wireless Remote Control and Wired Handle Control


One wired or wireless operating handle can control multiple hoists to start/ stop simultaneously.


Electric Wire Rope Hoist Crane Fittings:





A wire rope hoist is a hoist that utilizes wire rope as the lifting medium. It is often powered electrically or pneumatically. This lifting device is made up of a rope storage drum, motor(s), gear box and braking system, and is suspended from a monorail or bridge beam(s) by means of a trolley. It may also be stationary mounted. 
A crane is a machine used for lifting and lowering a load, and moving it horizontally. A crane's drives may be manual, powered or a combination of both. Cranes are typically used when there is insufficient (or intermittent) flow volume such that the use of a conveyor cannot be justified. They provide more flexibility in movement than conveyors, and less flexibility in movement than industrial trucks. Loads handled by cranes are more varied with respect to their shape and weight than those handled by a conveyor. Most cranes utilize hoists for vertical movement, although manipulators can be used if precise positioning of the load is required.

 

Many different types of cranes are used for material handling applications. These include overhead cranes as well as cherry picker type boom lifts, mobile and self-propelled cranes, straddle and counterbalanced (cantilevered) cranes. Portable and mobile floor cranes can be equipped with fixed or telescopic booms as well as mast rotation when equipped with outriggers. Lifting can be performed with the boom itself or a winch operated cable lift. 
Selection Criteria

 

The size of the hoist is determined by the load spectrum, average operating time, safe working load and rope revving.

 

1. What are the operating conditions ?
2. What is the specified safe working load ?
3. To what height must the load be lifted ?
4. What is the required lifting speed ?
5. Do the loads need to be lifted and lowered with great accuracy ?
6. Is horizontal load travel necessary ?
7. How the hoist to be controlled ?

 

Duty Factor Mean Effective Loads Average operating time per day in hours
Light Duty   K0.125
Hoist units which are usually subject to very small loads and in exceptional cases only to maximum loads
2 2-1 4-8 8-16
Medium Duty   0.125<k0.25
Hoist units which are usually subject to small loads but rather often to maximum loads
1 1-2 2-4 4-8
Heavy Duty   0.25<k0.5
Hoist units which are usually medium loads but frequently to maximum loads
0.5 0.5-1 1-2 2-4
Very Heavy Duty   0.5<k1
Hoist units which are usually subject to maximum or almost maximum loads
0.25 0.25-0.5 0.5-1 1-2
Working Group ISO M3 M4 M5 M6
FEM 1Bm 1Am 2m 3m
The average operating time per working day is estimated or calculated as follows:

  2  ×average hook path(m)  × number of cycles/hour  × number of working time/day
Operating time/day=  ------------------------------------------------------------------------------------------------------------
                                                                                  60 ×lifting speed(m/min)
Production and Equipment:


Application of related products:

 
Factory & Package Show:

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