China OEM Agricultural Farm Greenhouse Automatic Sprinkling Irrigation Worm Gearbox for Center CZPT Irrig gearbox engine

Product Description

Agricultural Farm Greenhouse Automatic sprinkling Irrigation Worm Gearbox For Center CHINAMFG Irrig

725 Series Gearbox:
Application: Final Drive Wheel boxes for all electric drive and Hydraulic powered Center CHINAMFG / lateral move Systems
Models Include:
725 – U, 50:1 worm gear ratio: Standard gear ratio for most systems.
725 – UV, 52:1 Worm gear ratio: Select gear ratio to match those provided by original equipment manufacturer.
725 – UT , Towable 50:1 worm gear ratio: For use on Towable systems to provide free wheeling hubs.
725 UHYD 50:1 Worm gear ratio: For Use on Hydraulic powered systems only

730 Series Gearbox:
Application; Heavy Duty Final drive wheel boxes with 2 1/2″ output shaft for Longer spans, Larger wheels, and heavier towers on all electric drive and Hydraulic powered Center CHINAMFG and lateral/linear move Systems
Models Include:
730 – U, 50:1 worm gear ratio: Standard gear ratio for most systems.
730 – UT , 50: worm drive ratio: For use on Towable systems to provide free wheeling hubs

740 and 745 Series Gearbox:
Application: Ultimate Duty Final drive wheel boxes with larger bearings and available with 2 1/4″ or 2 1/2″ output shaft for Longer spans, Larger wheels, and heavier towers on all electric drive and Hydraulic powered Center CHINAMFG / lateral move Systems

725 T-NT (Tow – Non Tow) Series Gearbox
Application: Towable Final drive wheel box, provide the ability to disengage the worm gear and allows users of all electric drive and Hydraulic powered Center CHINAMFG Systems and lateral/linear move systems to move systems from 1 area to another
Models Include:
725 – TNT, 50:1 worm gear ratio Standard gear ratio for most systems.
725 – TNT, 52:1 worm gear ratio: Select gear ratio to match those provided by original equipment manufacturer

740 T-NT (Tow – Non Tow) Series Gearbox
Application: Towable Final drive wheel box, provide the ability to disengage the worm gear and allows users of all electric drive and Hydraulic powered Center CHINAMFG Systems and lateral/linear move systems to move systems from 1 area to another
Models Include:
740 – TNT-U, 50:1 worm gear ratio Standard gear ratio for most systems.
740 – TNT-UV , 50:1 worm gear ratio: Select gear ratio to match those provided by original equipment manufacturer

GEAR MATERIALS
20CrMnTi/20CrMnMo for your choice

CASTINGS MATERIALS
Gray cast iron HT250 according to standard GB/T 1348-2009 Ductile iron QT450-10 according to standard GB/T 1348-2009 Cast steel ZG310-570 according to standard GB/T 5613-2014

SHAFTS MATERIALS
40Cr,45#,20CrMnTi,20CrMnMo for your choice according to your request.

POWER To ensure the correct use of the product we recommand to pay attention to the specifications mentioned on our technical sheet.Consider also the input rotation speed,the power input and the transmission ratios.Where the rotation or other working conditions are different,please contact LongQuan technical department.

LUBRICATION
The reducer is usually supplied without lubricant.The recommended quantity of lubricant is indicated on our catalogue and the first replaced must be done after 50-60 hours of running,then replaced after 600-800 working hours. The emptying of the gearbox should be made immediately after the working,with the oil still hot,in order to avoid the deposition of sludge.Check frequently the oil level and top up the oil whenever necessary.

 

Related Products

Factory

Extensive use for agricultural machines
Guarantee: High precision, high wear resistance, low noise, smooth and steady, high strength

Our factory

 

 

Type: Agricultural Gearbox
Usage: Agricultural Products Processing, Farmland Infrastructure, Tillage, Harvester, Planting and Fertilization, Grain Threshing, Cleaning and Drying, Agricultural Machine
Material: Carbon Steel
Power Source: Electricity
Weight: OEM
After-sales Service: Installation Guide
Samples:
US$ 999/Piece
1 Piece(Min.Order)

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worm gearbox

Self-Locking Properties in a Worm Gearbox

Yes, worm gearboxes exhibit self-locking properties, which can be advantageous in certain applications. Self-locking refers to the ability of a mechanism to prevent the transmission of motion from the output shaft back to the input shaft when the system is at rest. Worm gearboxes inherently possess self-locking properties due to the unique design of the worm gear and worm wheel.

The self-locking behavior arises from the angle of the helix on the worm shaft. In a properly designed worm gearbox, the helix angle of the worm is such that it creates a mechanical advantage that resists reverse motion. When the gearbox is not actively driven, the friction between the worm threads and the worm wheel teeth creates a locking effect.

This self-locking feature makes worm gearboxes particularly useful in applications where holding a load in position without external power is necessary. For instance, they are commonly used in situations where there’s a need to prevent a mechanism from backdriving, such as in conveyor systems, hoists, and jacks.

However, it’s important to note that while self-locking properties can be beneficial, they also introduce some challenges. The high friction between the worm gear and worm wheel during self-locking can lead to higher wear and heat generation. Additionally, the self-locking effect can reduce the efficiency of the gearbox when it’s actively transmitting motion.

When considering the use of a worm gearbox for a specific application, it’s crucial to carefully analyze the balance between self-locking capabilities and other performance factors to ensure optimal operation.

worm gearbox

Energy Efficiency of a Worm Gearbox: What to Expect

The energy efficiency of a worm gearbox is an important factor to consider when evaluating its performance. Here’s what you can expect in terms of energy efficiency:

  • Typical Efficiency Range: Worm gearboxes are known for their compact size and high gear reduction capabilities, but they can exhibit lower energy efficiency compared to other types of gearboxes. The efficiency of a worm gearbox typically falls in the range of 50% to 90%, depending on various factors such as design, manufacturing quality, lubrication, and load conditions.
  • Inherent Losses: Worm gearboxes inherently involve sliding contact between the worm and worm wheel. This sliding contact generates friction, leading to energy losses in the form of heat. The sliding action also contributes to lower efficiency when compared to gearboxes with rolling contact.
  • Helical-Worm Design: Some manufacturers offer helical-worm gearbox designs that combine elements of helical and worm gearing. These designs aim to improve efficiency by incorporating helical gears in the reduction stage, which can lead to higher efficiency compared to traditional worm gearboxes.
  • Lubrication: Proper lubrication plays a significant role in minimizing friction and improving energy efficiency. Using high-quality lubricants and ensuring the gearbox is adequately lubricated can help reduce losses due to friction.
  • Application Considerations: While worm gearboxes might have lower energy efficiency compared to other types of gearboxes, they still offer advantages in terms of compactness, high torque transmission, and simplicity. Therefore, the decision to use a worm gearbox should consider the specific requirements of the application, including the trade-off between energy efficiency and other performance factors.

When selecting a worm gearbox, it’s essential to consider the trade-offs between energy efficiency, torque transmission, gearbox size, and the specific needs of the application. Regular maintenance, proper lubrication, and selecting a well-designed gearbox can contribute to achieving the best possible energy efficiency within the limitations of worm gearbox technology.

worm gearbox

Preventing Backlash in a Worm Gearbox

Backlash in a worm gearbox can lead to reduced accuracy, positioning errors, and decreased overall efficiency. Here are steps to prevent or minimize backlash:

  • High-Quality Components: Use high-quality worm gears and worm wheels with tight manufacturing tolerances. Precision components will help reduce backlash.
  • Proper Meshing: Ensure the worm gear and worm wheel are properly aligned and meshed. Improper meshing can lead to increased backlash.
  • Preload: Applying a small amount of preload to the worm gear can help reduce backlash. However, excessive preload can increase friction and wear.
  • Anti-Backlash Mechanisms: Consider using anti-backlash mechanisms, such as spring-loaded systems or adjustable shims, to compensate for any inherent backlash.
  • Lubrication: Proper lubrication can reduce friction and play a role in minimizing backlash. Use a lubricant that provides good film strength and reduces wear.
  • Maintenance: Regularly inspect and maintain the gearbox to identify and address any changes in backlash over time.

It’s important to strike a balance between reducing backlash and maintaining smooth operation. Consulting with gearbox experts and following manufacturer guidelines will help you optimize your worm gearbox’s performance while minimizing backlash.

China OEM Agricultural Farm Greenhouse Automatic Sprinkling Irrigation Worm Gearbox for Center CZPT Irrig   gearbox engineChina OEM Agricultural Farm Greenhouse Automatic Sprinkling Irrigation Worm Gearbox for Center CZPT Irrig   gearbox engine
editor by CX 2023-10-08

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