China factory Helical Worm Geared Motors Speed Reducer Speed Reducer Gear Box Worm Gear Speed Reducer

Product Description

Helical Worm Geared Motors Speed Reducer Speed Reducer Gear Box Worm Gear Speed Reducer

Product Description

Type

Reduction gearbox

Rated power

3KW/4KW/5.5KW/7.5KW/11KW

Product name

Gearbox

Model

NMRV150

Material

Cast iron

Features

Conveyor belt/transportation/industrial, small size, high heat dissipation, smooth transmission, low noise

Technical performance and selection reference

Motor power

Model

speed ratio

output speed

output toruqe

 

0.25kw 1400rpm

RV075

60

24rpm

68.0N.M

RV075

80

18rpm

80.0N.M

RV075

100

14rpm

94.0N.M

 

0.37kw 1400rpm

RV075

40

35rpm

74.0N.M

RV075

50

28rpm

88.0N.M

RV075

60

24rpm

97.0N.M

RV075

80

18rpm

119.0N.M

RV075

100

14rpm

139.0N.M

 

 

 

0.55kw 1400rpm

RV075

25

56rpm

76.0N.M

RV075

30

47rpm

87.0N.M

RV075

40

35rpm

108.0N.M

RV075

50

28rpm

128.0N.M

RV075

60

24rpm

144.0N.M

RV075

80

18rpm

177.0N.M

RV075

100

14rpm

206.0N.M

 

 

 

0.75kw 1400rpm

RV075

15

94rpm

66.0N.M

RV075

20

70rpm

85.0N.M

RV075

25

56rpm

101.0N.M

RV075

30

47rpm

117.0N.M

RV075

40

35rpm

147.0N.M

RV075

50

28rpm

174.0N.M

RV075

60

24rpm

196.0N.M

RV075

80

18rpm

250.0N.M

 

 

 

 

1.1kw 1400rpm

RV075

10

140rpm

66.0N.M

RV075

15

94rpm

95.0N.M

RV075

20

70rpm

122.0N.M

RV075

25

56rpm

148.0N.M

RV075

30

47rpm

171.0N.M

RV075

40

35rpm

216.0N.M

RV075

50

28rpm

263.0N.M

RV075

60

24rpm

297.0N.M

 

 

1.5kw 1400rpm

RV075

7.5

186rpm

68.0N.M

RV075

10

140rpm

89.0N.M

RV075

15

94rpm

129.0N.M

RV075

20

70rpm

166.0N.M

RV075

25

56rpm

202.0N.M

RV075

30

47rpm

233.0N.M

RV075

40

35rpm

299.0N.M

 

 

2.2kw 1400rpm

RV075

7.5

186rpm

99.0N.M

RV075

10

140rpm

131.0N.M

RV075

15

94rpm

189.0N.M

RV075

20

70rpm

249.0N.M

RV075

25

56rpm

304.0N.M

RV075

30

47rpm

247.0N.M

3.0kw 1400rpm

RV075

7.5

186rpm

135.0N.M

RV075

10

140rpm

178.0N.M

RV075

15

94rpm

258.0N.M

4.0kw 1400rpm

RV075

7.5

186rpm

180.0N.M

RV075

10

140rpm

237.0N.M

Specification

Product name

SNRV worm gear reducer

Ratio

5,7.5,10,15,20,25,30,40,50,60,80,100

Input power

0.25~4.0 KW

Color

Blue/Silver/Black or on Request

Weight

9 Kg

 

 

Material

571-105 aluminum alloy, 110-150 cast iron

The worm material is 20Cr carburized and quenched, the surface hardness reaches 58-62 degrees, and after processing, the
carburized layer retains a depth of 0.3-0.5mm

Worm gear hub ductile iron QT500, tooth tin bronze ZQSN10-1

Oil seals

CHINAMFG

 

Input form

SMRV : fitted for motor flanged coupling

SMRV:The tail of the worm has an extension shaft

SRV: with input shaft

SRV-E : With bidirectional input shaft worm

Suitable motor pole

2pole,4pole,6pole

Inch size

Available

Personal customization

Available

Extra service

OEM

Quality Assurance

1 year

 

 

 

Features

High precision, smooth transmission, large output torque, low noise, long service life

Suitable for omni-directional installation

Can be easily mounted with various accessories like torque arms, different types of flanges, shafts and so on

Good rust resistance

 

 

Surface coating

First, the shell is treated by surface particle blasting, and then, through special anticorrosion treatment, RAL5571 blue plastic
powder or A7205 white plastic powder is sprayed in the shell, or the color plastic powder specified by the customer is attached
tothe surface of the box body after high temperature.

After polishing and sanding, it is dried at high temperature and then sprayed with RAL5571 paint in the shell.

 

/* March 10, 2571 17:59:20 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1

Application: Motor, Electric Cars, Motorcycle, Machinery, Agricultural Machinery
Hardness: Hardened Tooth Surface
Installation: Vertical Type
Layout: Coaxial
Gear Shape: Conical – Cylindrical Gear
Step: Stepless
Samples:
US$ 9/Piece
1 Piece(Min.Order)

|

Customization:
Available

|

winch drive

How do electronic or computer-controlled components integrate with winch drives in modern applications?

In modern applications, electronic or computer-controlled components play a crucial role in enhancing the functionality, precision, and safety of winch drives. These components integrate with winch drives to provide advanced control, monitoring, and automation capabilities. Here’s a detailed explanation of how electronic or computer-controlled components integrate with winch drives in modern applications:

  • Control Systems:

Electronic or computer-controlled components are used to create sophisticated control systems for winch drives. These control systems allow operators to precisely control the speed, direction, and position of the winch drive. By integrating sensors, actuators, and feedback mechanisms, the control system can monitor the operating conditions and adjust parameters in real-time to optimize performance. Control systems may include programmable logic controllers (PLCs), microcontrollers, or dedicated electronic control units (ECUs) that communicate with the winch drive to execute commands and maintain desired operating parameters.

  • Human-Machine Interfaces (HMIs):

Electronic components enable the integration of intuitive and user-friendly Human-Machine Interfaces (HMIs) with winch drives. HMIs provide a visual interface for operators to interact with the winch drive system. Touchscreen displays, buttons, switches, and graphical user interfaces (GUIs) allow operators to input commands, monitor system status, and access diagnostic information. HMIs also facilitate the adjustment of control parameters, alarm settings, and operational modes. The integration of HMIs enhances operator control and simplifies the operation of winch drives in modern applications.

  • Sensors and Feedback Systems:

Electronic sensors are employed to gather real-time data about various parameters related to the winch drive and the operating environment. These sensors can measure variables such as load weight, cable tension, speed, temperature, and motor current. The collected data is then fed back to the control system, allowing it to make informed decisions and adjustments. For example, if the load exceeds a predefined limit, the control system can send a signal to stop the winch drive or activate an alarm. Sensors and feedback systems ensure accurate monitoring of operating conditions and enable proactive control and safety measures.

  • Communication Protocols:

Electronic or computer-controlled components facilitate communication between winch drives and other devices or systems. Modern winch drives often support various communication protocols, such as Ethernet, CAN bus, Modbus, or Profibus, which enable seamless integration with higher-level control systems, supervisory systems, or industrial networks. This integration allows for centralized control, remote monitoring, and data exchange between the winch drive and other components or systems, enhancing coordination and automation in complex applications.

  • Automation and Programmability:

Electronic or computer-controlled components enable advanced automation and programmability features in winch drives. With the integration of programmable logic controllers (PLCs) or microcontrollers, winch drives can execute pre-programmed sequences of operations, follow specific load profiles, or respond to external commands and triggers. Automation reduces manual intervention, improves efficiency, and enables synchronized operation with other equipment or systems. Programmability allows customization and adaptation of winch drive behavior to meet specific application requirements.

  • Diagnostics and Condition Monitoring:

Electronic components enable comprehensive diagnostics and condition monitoring of winch drives. Built-in sensors, data logging capabilities, and advanced algorithms can monitor the health, performance, and operating parameters of the winch drive in real-time. This information can be used for predictive maintenance, early fault detection, and performance optimization. Additionally, remote access and network connectivity enable remote monitoring and troubleshooting, reducing downtime and improving maintenance efficiency.

In summary, electronic or computer-controlled components integrate with winch drives in modern applications to provide advanced control, monitoring, automation, and safety features. These components enable precise control, user-friendly interfaces, data-driven decision-making, communication with other systems, automation, and diagnostics. The integration of electronic components enhances the functionality, efficiency, and reliability of winch drives in a wide range of applications.

winch drive

What safety considerations should be taken into account when using winch drives?

Using winch drives involves certain safety considerations to ensure the well-being of operators, prevent accidents, and protect the equipment and the load being lifted. Here’s a detailed explanation of the safety considerations that should be taken into account when using winch drives:

  • Operator Training:

Proper training is essential for operators who will be using winch drives. They should receive comprehensive training on the safe operation of winch drives, including understanding the controls, procedures, safety features, and potential hazards. Training should cover load calculations, safe working loads, and the importance of following safety guidelines and manufacturer’s instructions.

  • Equipment Inspection:

Prior to each use, winch drives should be thoroughly inspected to ensure they are in proper working condition. This includes checking for any signs of damage, wear, or corrosion. The cables or ropes should be inspected for fraying, kinks, or other defects. Any damaged or malfunctioning components should be repaired or replaced before operating the winch drive.

  • Load Capacity:

It is crucial to adhere to the specified load capacity of the winch drive. Exceeding the maximum load capacity can lead to equipment failure, accidents, and injuries. Operators should accurately determine the weight of the load to be lifted and ensure it falls within the winch drive’s rated capacity. If the load exceeds the capacity, alternative lifting methods or equipment should be used.

  • Secure Anchoring:

Winch drives should be securely anchored to a stable and appropriate mounting point. This ensures that the winch drive remains stable during operation and prevents unintended movement. The anchoring point should be capable of withstanding the forces generated during lifting or pulling operations. Proper anchoring minimizes the risk of equipment tipping over or shifting unexpectedly.

  • Personal Protective Equipment (PPE):

Operators should wear appropriate personal protective equipment (PPE) when using winch drives. This may include safety helmets, gloves, eye protection, and high-visibility clothing. PPE helps protect operators from potential hazards such as falling objects, flying debris, or contact with moving parts. The specific PPE requirements should be determined based on the nature of the lifting operation and any applicable safety regulations.

  • Safe Operating Distance:

Operators and other personnel should maintain a safe distance from the winch drive during operation. This prevents accidental contact with moving parts or the load being lifted. Clear warning signs or barriers should be used to define the restricted area around the winch drive. Operators should never place themselves or others in the potential path of the load or in a position where they could be struck by the load in case of a failure or slippage.

  • Emergency Stop and Controls:

Winch drives should be equipped with emergency stop mechanisms or controls that allow operators to quickly halt the operation in case of an emergency. All operators should be familiar with the location and operation of the emergency stop controls. Regular testing and maintenance of these controls are essential to ensure their effectiveness in emergency situations.

  • Proper Rigging and Rigging Techniques:

Correct rigging techniques should be followed when attaching the load to the winch drive. This includes using appropriate slings, hooks, or attachments and ensuring they are properly secured. Improper rigging can lead to load instability, shifting, or falling, posing a significant safety risk. Operators should be trained in proper rigging techniques and inspect the rigging components for wear or damage before each use.

  • Regular Maintenance:

Winch drives should undergo regular maintenance as recommended by the manufacturer. This includes lubrication, inspection of cables or ropes, checking for loose bolts or connections, and verifying the functionality of safety features. Regular maintenance helps identify and address potential issues before they lead to equipment failure or accidents.

By considering these safety measures, operators can ensure the safe and effective use of winch drives, minimizing the risk of accidents, injuries, or equipment damage. It is crucial to prioritize safety at all times and to comply with applicable safety regulations and guidelines.

winch drive

What is a winch drive, and how is it utilized in various applications?

A winch drive is a mechanical system designed to provide controlled pulling or lifting capabilities using a spool or drum around which a cable or rope is wound. It consists of a power source, such as an electric motor or hydraulic system, coupled with a gearbox or transmission mechanism to control the speed and torque output. Winch drives are widely utilized in various applications that require the controlled movement of heavy loads. Here’s a detailed explanation of winch drives and their utilization in different applications:

  • Off-Road Vehicles and Recovery:

Winch drives are commonly used in off-road vehicles, such as trucks, SUVs, and ATVs, for recovery purposes. In situations where a vehicle gets stuck or needs to be pulled out of challenging terrain, a winch drive mounted on the vehicle’s front or rear bumper can be employed. The winch drive’s cable is connected to a secure anchor point, and as the winch motor rotates, it winds the cable onto the drum, exerting a pulling force that helps extract the vehicle from the obstacle. Winch drives provide reliable pulling power and are essential for off-road enthusiasts, emergency services, and military applications.

  • Marine and Boating:

In marine and boating applications, winch drives are utilized for various tasks, including anchoring, mooring, and lifting heavy loads. Winches are commonly found on sailboats and powerboats to control the sails, raise and lower the anchor, or assist in docking. They are also used in larger vessels and ships for cargo handling, launching and recovering small boats or life rafts, and handling equipment on deck. The versatility and strength of winch drives make them indispensable in the maritime industry, providing precise and controlled pulling or lifting capabilities in demanding marine environments.

  • Construction and Industrial:

Winch drives play a vital role in construction and industrial settings, where the controlled movement of heavy materials and equipment is required. They are utilized in cranes, hoists, and lifting systems to perform tasks such as raising and lowering loads, positioning materials, and erecting structures. Winches can also be found in material handling equipment, such as forklifts and telehandlers, to assist in loading and unloading operations. In construction sites, winch drives are valuable for activities like tensioning cables, pulling machinery, and operating temporary lifts. The robustness and reliability of winch drives make them essential tools in the construction and industrial sectors.

  • Recreational and Entertainment:

Winch drives are utilized in various recreational and entertainment applications. In amusement parks and adventure facilities, winches are often used in zip line systems, allowing participants to traverse from one point to another safely. They are also employed in aerial lifts and chairlifts for ski resorts and mountainous areas. Winches provide controlled and reliable movement, ensuring the safety and enjoyment of individuals engaging in recreational activities. Additionally, winches are utilized in stage productions and theatrical settings to create dynamic effects, such as flying performers or moving set pieces.

  • Automotive and Garage:

In automotive and garage settings, winch drives find utility in a variety of applications. They are commonly used in car haulers and trailers to load and unload vehicles onto the platform. Winches are also employed in automotive repair and maintenance, assisting in tasks such as engine removal, vehicle recovery, and frame straightening. In home garages, winch drives can be utilized for lifting heavy objects, such as engines or equipment. The versatility and compactness of winch drives make them valuable tools for automotive enthusiasts, professional mechanics, and DIY enthusiasts.

In summary, a winch drive is a mechanical system that provides controlled pulling or lifting capabilities using a spool or drum and a power source. They are employed in various applications, including off-road vehicle recovery, marine and boating operations, construction and industrial tasks, recreational and entertainment activities, automotive and garage settings. Winch drives offer reliable and controlled movement, allowing for the handling of heavy loads in a wide range of settings and industries.

China factory Helical Worm Geared Motors Speed Reducer Speed Reducer Gear Box Worm Gear Speed Reducer  China factory Helical Worm Geared Motors Speed Reducer Speed Reducer Gear Box Worm Gear Speed Reducer
editor by CX 2024-01-19

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