China Xw10 Electric Operated Worm Gearbox double enveloping worm gearbox

Product Description

Product:XW10 electric operated worm gearbox
 

Product Electric powered Output Torque N·m Ratio Electric  Enter Torque  N·m Input Flange    ISO5210-2001 Regular Foundation Output Flange Thickened Foundation Output Flange Highest Stem Diameter  mm Enter Shaft Diametermm  APPROX. Weight      kg
XW3 800 58 46 F10&solF14 F12 F10&solF12&solF14 43 fifteen 15
XW4 1700 sixty eight 83 F10&solF14 F14 F12&solF14&solF16 52 twenty 23
XW5 3000 67 149 F10&solF14&solF16 F16 F14&solF16&solF25 seventy six twenty fifty
XW6 7000 69 338 F14&solF16 F25 F16&solF25&solF30 87 thirty eighty three
XW7 16000 60 889 F14&solF16&solF25 F25&solF30 F35 a hundred and twenty 30 a hundred and forty four
XW8 28000 sixty 1556 F14&solF16&solF25 F25&solF30&solF35 F40 153 35 254
XW9 40000 sixty 2222 F14&solF16&solF25 F30&solF35 F40&solF48 a hundred and seventy 40 327
XW10 65000 sixty 3611 F16&solF25&solF30 F35&solF40 F48 a hundred ninety 50 493

Introduction
XBURS XW sequence Element-change Worm Gearbox is precison gadget&lparrotary) with substantial quality and basic safety,intended to decrease the pace and increase thetorque. It is easy to approach axis hole and key groove simply because of the detachable sleeve.

Figures
1.Entirely enclosed gearing
two.Grease filled for lengthier daily life
three.Thorough gear ratios for different
applications
four.Detachable output sleeve
five.Optional travelling sleeve
six.Adjustable stopper &lpar&pm 5°)
seven.Optional flange to suit for distinct kind of valve

Application
XW collection part-change worm gearboxes are employed for manual and electric powered &lparelectric actuator) applications of ball valves,butterfly valves, plug valves and dampers.

Functioning Environment
XW sequence element-turn worm gearboxes are with good mechnical quality and constant functioning efficiency which implement to deal with range climate and temperature. We attempt to build RW collection worm gear operator to meet up with increased needs.

Enclosure: IP67
Functioning Temperature: Kind-40ºCto120ºC&lpar-40ºFto248ºF)
Painting: Silver gray &lparcustomization)

Hook up With Valve
The flange connecting to valve is according to ENISO5210 or DIN3210 &lparCustomization)

Primary Items

Worm gearbox, bevel gearbox, valve gear box,worm equipment operator, worm equipment actuator, valve worm gear, valve equipment operator, valve equipment actuator, valve actuator.
Equipment Operator, Valve Gearbox, Bevel Gearbox, Gearbox, Velocity Reducer, Multi-Switch Bevel Gearbox, Bevel Gearbox Provider, Higher Quality Bevel Gearbox, Gearbox company

 

US $545-636
/ Piece
|
1 Piece

(Min. Order)

###

Application: Industry
Type: Worm and Wormwheel
Protection Level: IP67
Working Temperature: -40 to 120 Degrees Celsius
Applications: Ball Valves, Butterfly Valves, Plug Valves, Damper
Painting/Coating: Silver Grey or Customization

###

Customization:

###

Model Electric Output Torque N·m Ratio Electric  Input Torque  N·m Input Flange    ISO5210-2001 Standard Base Output Flange Thickened Base Output Flange Maximum Stem Diameter  mm Input Shaft Diametermm  APPROX. Weight      kg
XW3 800 58 46 F10/F14 F12 F10/F12/F14 43 15 15
XW4 1700 68 83 F10/F14 F14 F12/F14/F16 52 20 23
XW5 3000 67 149 F10/F14/F16 F16 F14/F16/F25 76 20 50
XW6 7000 69 338 F14/F16 F25 F16/F25/F30 87 30 83
XW7 16000 60 889 F14/F16/F25 F25/F30 F35 120 30 144
XW8 28000 60 1556 F14/F16/F25 F25/F30/F35 F40 153 35 254
XW9 40000 60 2222 F14/F16/F25 F30/F35 F40/F48 170 40 327
XW10 65000 60 3611 F16/F25/F30 F35/F40 F48 190 50 493
US $545-636
/ Piece
|
1 Piece

(Min. Order)

###

Application: Industry
Type: Worm and Wormwheel
Protection Level: IP67
Working Temperature: -40 to 120 Degrees Celsius
Applications: Ball Valves, Butterfly Valves, Plug Valves, Damper
Painting/Coating: Silver Grey or Customization

###

Customization:

###

Model Electric Output Torque N·m Ratio Electric  Input Torque  N·m Input Flange    ISO5210-2001 Standard Base Output Flange Thickened Base Output Flange Maximum Stem Diameter  mm Input Shaft Diametermm  APPROX. Weight      kg
XW3 800 58 46 F10/F14 F12 F10/F12/F14 43 15 15
XW4 1700 68 83 F10/F14 F14 F12/F14/F16 52 20 23
XW5 3000 67 149 F10/F14/F16 F16 F14/F16/F25 76 20 50
XW6 7000 69 338 F14/F16 F25 F16/F25/F30 87 30 83
XW7 16000 60 889 F14/F16/F25 F25/F30 F35 120 30 144
XW8 28000 60 1556 F14/F16/F25 F25/F30/F35 F40 153 35 254
XW9 40000 60 2222 F14/F16/F25 F30/F35 F40/F48 170 40 327
XW10 65000 60 3611 F16/F25/F30 F35/F40 F48 190 50 493

What is a worm gear reducer?

A worm gear reducer is a mechanical device that uses a worm gear and a worm to reduce the speed of a rotating shaft. The gear reducer can increase the output torque of the engine according to the gear ratio. This type of gear reducer is characterized by its flexibility and compact size. It also increases the strength and efficiency of the drive.
worm_reducer

Hollow shaft worm gear reducer

The hollow shaft worm gear reducer is an additional output shaft connecting various motors and other gearboxes. They can be installed horizontally or vertically. Depending on size and scale, they can be used with gearboxes from 4GN to 5GX.
Worm gear reducers are usually used in combination with helical gear reducers. The latter is mounted on the input side of the worm gear reducer and is a great way to reduce the speed of high output motors. The gear reducer has high efficiency, low speed operation, low noise, low vibration and low energy consumption.
Worm gear reducers are made of hard steel or non-ferrous metals, increasing their efficiency. However, gears are not indestructible, and failure to keep running can cause the gear oil to rust or emulsify. This is due to moisture condensation that occurs during the operation and shutdown of the reducer. The assembly process and quality of the bearing are important factors to prevent condensation.
Hollow shaft worm gear reducers can be used in a variety of applications. They are commonly used in machine tools, variable speed drives and automotive applications. However, they are not suitable for continuous operation. If you plan to use a hollow shaft worm gear reducer, be sure to choose the correct one according to your requirements.

Double throat worm gear

Worm gear reducers use a worm gear as the input gear. An electric motor or sprocket drives the worm, which is supported by anti-friction roller bearings. Worm gears are prone to wear due to the high friction in the gear teeth. This leads to corrosion of the confinement surfaces of the gears.
The pitch diameter and working depth of the worm gear are important. The pitch circle diameter is the diameter of the imaginary circle in which the worm and the gear mesh. Working depth is the maximum amount of worm thread that extends into the backlash. Throat diameter is the diameter of the circle at the lowest point of the worm gear face.
When the friction angle between the worm and the gear exceeds the lead angle of the worm, the worm gear is self-locking. This feature is useful for lifting equipment, but may be detrimental to systems that require reverse sensitivity. In these systems, the self-locking ability of the gears is a key limitation.
The double throat worm gear provides the tightest connection between the worm and the gear. The worm gear must be installed correctly to ensure maximum efficiency. One way to install the worm gear assembly is through a keyway. The keyway prevents the shaft from rotating, which is critical for transmitting torque. Then attach the gear to the hub using the set screw.
The axial and circumferential pitch of the worm gear should match the pitch diameter of the larger gear. Single-throat worm gears are single-threaded, and double-throat worm gears are double-throat. A single thread design advances one tooth, while a double thread design advances two teeth. The number of threads should match the number of mating gears.
worm_reducer

Self-locking function

One of the most prominent features of a worm reducer is its self-locking function, which prevents the input and output shafts from being interchanged. The self-locking function is ideal for industrial applications where large gear reduction ratios are required without enlarging the gear box.
The self-locking function of a worm reducer can be achieved by choosing the right type of worm gear. However, it should be noted that this feature is not available in all types of worm gear reducers. Worm gears are self-locking only when a specific speed ratio is reached. When the speed ratio is too small, the self-locking function will not work effectively.
Self-locking status of a worm reducer is determined by the lead, pressure, and coefficient of friction. In the early twentieth century, cars had a tendency to pull the steering toward the side with a flat tire. A worm drive reduced this tendency by reducing frictional forces and transmitting steering force to the wheel, which aids in steering and reduces wear and tear.
A self-locking worm reducer is a simple-machine with low mechanical efficiency. It is self-locking when the work at one end is greater than the work at the other. If the mechanical efficiency of a worm reducer is less than 50%, the friction will result in losses. In addition, the self-locking function is not applicable when the drive is reversed. This characteristic makes self-locking worm gears ideal for hoisting and lowering applications.
Another feature of a worm reducer is its ability to reduce axially. Worm gears can be double-lead or single-lead, and it is possible to adjust their backlash to compensate for tooth wear.

Heat generated by worm gears

Worm gears generate considerable amounts of heat. It is essential to reduce this heat to improve the performance of the gears. This heat can be mitigated by designing the worms with smoother surfaces. In general, the speed at which worm gears mesh should be in the range of 20 to 24 rms.
There are many approaches for calculating worm gear efficiency. However, no other approach uses an automatic approach to building the thermal network. The other methods either abstractly investigate the gearbox as an isothermal system or build the TNM statically. This paper describes a new method for automatically calculating heat balance and efficiency for worm gears.
Heat generated by worm gears is a significant source of power loss. Worm gears are typically characterized by high sliding speeds in their tooth contacts, which causes high frictional heat and increased thermal stresses. As a result, accurate calculations are necessary to ensure optimal operation. In order to determine the efficiency of a gearbox system, manufacturers often use the simulation program WTplus to calculate heat loss and efficiency. The heat balance calculation is achieved by adding the no-load and load-dependent power losses of the gearbox.
Worm gears require a special type of lubricant. A synthetic oil that is non-magnetic and has a low friction coefficient is used. However, the oil is only one of the options for lubricating worm gears. In order to extend the life of worm gears, you should also consider adding a natural additive to the lubricant.
Worm gears can have a very high reduction ratio. They can achieve massive reductions with little effort, compared to conventional gearsets which require multiple reductions. Worm gears also have fewer moving parts and places for failure than conventional gears. One disadvantage of worm gears is that they are not reversible, which limits their efficiency.
worm_reducer

Size of worm gear reducer

Worm gear reducers can be used to decrease the speed of a rotating shaft. They are usually designed with two shafts at right angles. The worm wheel acts as both the pinion and rack. The central cross section forms the boundary between the advancing and receding sides of the worm gear.
The output gear of a worm gear reducer has a small diameter compared to the input gear. This allows for low-speed operation while producing a high-torque output. This makes worm gear reducers great for space-saving applications. They also have low initial costs.
Worm gear reducers are one of the most popular types of speed reducers. They can be small and powerful and are often used in power transmission systems. These units can be used in elevators, conveyor belts, security gates, and medical equipment. Worm gearing is often found in small and large sized machines.
Worm gears can also be adjusted. A dual-lead worm gear has a different lead on the left and right tooth surfaces. This allows for axial movement of the worm and can also be adjusted to reduce backlash. A backlash adjustment may be necessary as the worm wears down. In some cases, this backlash can be adjusted by adjusting the center distance between the worm gear.
The size of worm gear reducer depends on its function. For example, if the worm gear is used to reduce the speed of an automobile, it should be a model that can be installed in a small car.

China Xw10 Electric Operated Worm Gearbox     double enveloping worm gearboxChina Xw10 Electric Operated Worm Gearbox     double enveloping worm gearbox
editor by czh 2022-11-30