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China OEM Industrial Transmission Gearbox Double Enveloping Worm Reduction Gearbox Appilcation for Mixer differential gearbox

Product Description

Industrial Transmission Gearbox Double Enveloping Worm Reduction Gearbox Appilcation For Mixer

Series C  double enveloping worm gear
Model: 100 – 500
Ratio: 10 -63
Output Torque : 683 – 51180 N.m
Rating Power : 47/25HP(1.41Kw) – 597HP(448Kw)

As 1 of  famous double enveloping worm gear manufacturers,SGR’s double throated worm gear has advantage of High efficiency, low noise, smooth operation , it increase output torque that mean increasing loading capacity , improved gear accuracy, and extended Long life service period . in SGR double enveloping worm gear design ,based on different ratio, it has Multi-tooth meshed, allowed bigger CHINAMFG load . with the increase of  number of driven gear teeth , that mean in contact with the worm significantly increases output  torque force. except increasing the number of driven gear teeth in contact with the worm,  double enveloping worm gear also increase the contact surface on every gear tooth. The actual gear surface of instantaneous contact between the double throated  and the driven gear tooth are in-lines. These lines of contact move across the face of the gear tooth as it progresses through its total time of mesh with the worm. The lines of contact in double enveloping worm gear are configured to increase the  force and decrease the stress on every gear tooth.

In term of  difference of double enveloping worm gear design and  traditional worm gear design ,  double enveloping worm gear design has higher driving efficiency than traditional worm gear ,  High torque double enveloping worm gear adjust toughest working condition , Increasing loading capacity .  Long life service period than traditional worm gear , and customized design for various application  .

Datasheet on CUW double enveloping worm gear reducer :

Model ShaftDia. (mm) Center Height (CUW) (CUW) Output shaft Dia. Power Ratio Permitted Torque Weight
(CUW) input Solid(h6) (mm) (mm) (kw) (Nm) (KGS)
100 28 190 48 1.41~11.5 10 .25~ 62 683-1094 42
125 32 225 55 2.42~19.7 10 .25 ~ 62 1170~2221 65
140 38 255 65 3.94~25.9 10 .25 ~ 62 1555 ~ 3473 85
160 42 290 70 4.39~35.7 10 .25 ~ 62 2143 ~4212 120
180 48 320 80 5.83~47.5 10 .25 ~ 62 2812 ~ 5387 170
200 55 350 90 7.52 ~61.2 10 .25 ~ 62 3624 ~6859 220
225 60 390 100 9.9~81.4 10 .25 ~ 62 4872 ~ 9224 290
250 65 430 110 12.9 ~105 10 .25~ 62 6284~11892 380
280 70 480 120 16.9 ~ 138 10 .25 ~ 62 8347 ~ 15820 520
315 75 530 140 22.5 ~183 10 .25 ~ 62 11068~ 19450 700
355 80 595 150 30~245 10 .25 ~ 62 14818 ~28014  1030
400 90 660 170 32.1 ~261 10 .25 ~ 62 15786~29918 1400
450 100 740 190 42.6 ~347 10 .25 ~ 62 2571~39881 1980
500 110 815 210 54.9 ~ 448 10 .25 ~ 62 27097~51180 2700

 

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    Application: Motor, Machinery
    Hardness: Hardened Tooth Surface
    Installation: Horizontal Type
    Layout: Coaxial
    Gear Shape: Bevel Gear
    Step: Single-Step
    Samples:
    US$ 2000/Piece
    1 Piece(Min.Order)

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    Request Sample

    Customization:
    Available

    |

    Customized Request

    worm gearbox

    Is it Possible to Reverse the Direction of a Worm Gearbox?

    Yes, it is possible to reverse the direction of a worm gearbox by changing the orientation of either the input or output shaft. However, reversing the direction of a worm gearbox can have some implications that need to be considered:

    • Efficiency: Reversing the direction of a worm gearbox can potentially affect its efficiency. Worm gearboxes are typically more efficient in one direction of rotation due to the design of the worm and worm wheel.
    • Backlash: Reversing the direction of rotation might lead to increased backlash or play in the gearbox, which can impact precision and smooth operation.
    • Lubrication: Depending on the gearbox’s design, reversing the direction could affect lubrication distribution and lead to uneven wear on the gear teeth.
    • Load: Reversing the direction might also impact the gearbox’s load-carrying capacity, especially if it’s designed for predominantly one-way operation.
    • Noise and Vibration: Direction reversal can sometimes result in increased noise and vibration due to changes in gear engagement and meshing behavior.

    If you need to reverse the direction of a worm gearbox, it’s advisable to consult the gearbox manufacturer’s guidelines and recommendations. They can provide insights into whether the specific gearbox model is suitable for reversible operation and any precautions or adjustments needed to ensure proper functioning.

    worm gearbox

    Diagnosing and Fixing Oil Leakage in a Worm Gearbox

    Oil leakage in a worm gearbox can lead to reduced lubrication, increased friction, and potential damage to the gearbox components. Here’s a step-by-step process to diagnose and fix oil leakage:

    1. Inspect the Gearbox: Perform a visual inspection of the gearbox to identify the source of the leakage. Check for oil stains, wet spots, or oil pooling around the gearbox.
    2. Check Seals and Gaskets: Inspect the seals, gaskets, and O-rings for any signs of wear, cracks, or damage. These components are common points of leakage.
    3. Tighten Bolts and Fasteners: Ensure that all bolts, screws, and fasteners are properly tightened. Loose fasteners can create gaps that allow oil to escape.
    4. Replace Damaged Seals: If you find damaged seals or gaskets, replace them with new ones. Use seals that are compatible with the operating conditions and lubricant.
    5. Check Breather Vent: A clogged or malfunctioning breather vent can cause pressure buildup inside the gearbox, leading to leakage. Clean or replace the breather vent if necessary.
    6. Examine Shaft Seals: Check the shaft seals for wear or damage. If they’re worn out, replace them with seals of the appropriate size and material.
    7. Use Proper Lubricant: Ensure that you’re using the correct lubricant recommended for the gearbox. Using the wrong type of lubricant can cause leaks.
    8. Apply Sealants: In some cases, applying a suitable sealant to the joints and connections can help prevent leaks. Follow the manufacturer’s instructions for proper application.
    9. Monitor Leakage: After addressing the issues, monitor the gearbox for any signs of continued leakage. If leakage persists, further investigation may be required.
    10. Regular Maintenance: Implement a regular maintenance schedule that includes checking seals, gaskets, and other potential leakage points. Timely maintenance can prevent future leakage issues.

    If you’re unsure about diagnosing or fixing oil leakage in a worm gearbox, consider consulting with a professional or gearbox manufacturer to ensure proper resolution.

    worm gearbox

    How Does a Worm Gearbox Compare to Other Types of Gearboxes?

    Worm gearboxes offer unique advantages and characteristics that set them apart from other types of gearboxes. Here’s a comparison between worm gearboxes and some other common types:

    • Helical Gearbox: Worm gearboxes have higher torque multiplication, making them suitable for heavy-load applications, while helical gearboxes are more efficient and offer smoother operation.
    • Bevel Gearbox: Worm gearboxes are compact and can transmit motion at right angles, similar to bevel gearboxes, but worm gearboxes have self-locking capabilities.
    • Planetary Gearbox: Worm gearboxes provide high torque output and are cost-effective for applications with high reduction ratios, whereas planetary gearboxes offer higher efficiency and can handle higher input speeds.
    • Spur Gearbox: Worm gearboxes have better shock load resistance due to their sliding motion, while spur gearboxes are more efficient and suitable for lower torque applications.
    • Cycloidal Gearbox: Cycloidal gearboxes have high shock load capacity and compact design, but worm gearboxes are more cost-effective and can handle higher reduction ratios.

    While worm gearboxes have advantages such as high torque output, compact design, and self-locking capability, the choice between gearbox types depends on the specific requirements of the application, including torque, efficiency, speed, and space limitations.

    China OEM Industrial Transmission Gearbox Double Enveloping Worm Reduction Gearbox Appilcation for Mixer   differential gearbox	China OEM Industrial Transmission Gearbox Double Enveloping Worm Reduction Gearbox Appilcation for Mixer   differential gearbox
    editor by CX 2024-02-28

    China OEM RV Type Good Quality Gearbox Gear Boxes Motor Unit cvt gearbox

    Product Description

    RV Type Good Quality Gearbox Gear Boxes Motor Unit. Aluminum right angle worm reducers size 25,30,40,50,63,75,90,110,130 & 150.Manufactured in aluminium case from 25-90 size and cast iron for 110,130 & 150.Acceptable power 0.06KW to 15KW. Kinds of option mounting: torque arm, feet mounting, output flange, output shaft, double-stage.

       

     

    RICHMAN UNIVERSAL SOURCING CO LIMITED is located in HangZhou ZheJiang . With more than 10 years experience in gear transmission area, we have our owned factory and product lines. Worm reducer (WP series; RV series; VF series), screw jack reducer (WSH series) and helical gearbox (K,S,R,F series) are current mainly products. Strict and precision quality control procedure makes the final products meet demands of our customers.

    We try to develop different markets, cooperate with kinds of customers, which can makes us keep moving forward, keep innovative and international vision. Richman Universal Sourcing is your best partner of transmission resolutions.

     

    /* 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, Machinery
    Function: Change Drive Torque, Change Drive Direction, Speed Reduction
    Layout: Coaxial
    Hardness: Hardened Tooth Surface
    Installation: Vertical Type
    Step: Three-Step
    Customization:
    Available

    |

    Customized Request

    worm gearbox

    Can a Worm Gearbox Be Used in Heavy-Duty Machinery?

    Yes, a worm gearbox can be used in heavy-duty machinery and is often chosen for such applications due to its inherent characteristics and advantages:

    • High Torque Transmission: Worm gearboxes are known for their ability to transmit high torque loads, making them suitable for heavy-duty machinery that requires significant power transmission.
    • Load Distribution: The design of worm gears provides robust load distribution and excellent contact between the worm and worm wheel teeth. This enhances their load-carrying capacity, making them capable of handling heavy loads without premature wear or failure.
    • Compact Design: Worm gearboxes are compact and offer high reduction ratios in a single stage. This allows for the reduction of high input speeds to lower output speeds, often required in heavy-duty machinery.
    • Overload Protection: Worm gears have a natural self-locking feature, which means the gear cannot be easily back-driven by external forces. This feature provides inherent overload protection, preventing damage to the gearbox and machinery in cases of sudden load spikes.
    • Smooth Operation: Worm gearboxes offer smooth and steady operation, which is crucial for heavy-duty machinery where precision and controlled movement are essential.

    However, when considering the use of a worm gearbox in heavy-duty applications, it’s important to ensure proper engineering and sizing. The design should account for factors such as load, speed, duty cycle, lubrication, and temperature to ensure optimal performance and longevity.

    Overall, worm gearboxes are well-suited for heavy-duty machinery across various industries, including mining, construction, manufacturing, and more.

    worm gearbox

    How to Calculate the Efficiency of a Worm Gearbox

    Calculating the efficiency of a worm gearbox involves determining the ratio of output power to input power. Efficiency is a measure of how well the gearbox converts input power into useful output power without losses. Here’s how to calculate it:

    • Step 1: Measure Input Power: Measure the input power (Pin) using a power meter or other suitable measuring equipment.
    • Step 2: Measure Output Power: Measure the output power (Pout) that the gearbox is delivering to the load.
    • Step 3: Calculate Efficiency: Calculate the efficiency (η) using the formula: Efficiency (η) = (Output Power / Input Power) * 100%

    For example, if the input power is 1000 watts and the output power is 850 watts, the efficiency would be (850 / 1000) * 100% = 85%.

    It’s important to note that efficiencies can vary based on factors such as gear design, lubrication, wear, and load conditions. The calculated efficiency provides insight into how effectively the gearbox is converting power, but it’s always a good practice to refer to manufacturer specifications for gearbox efficiency ratings.

    worm gearbox

    What is a Worm Gearbox and How Does It Work?

    A worm gearbox, also known as a worm gear reducer, is a mechanical device used to transmit rotational motion and torque between non-parallel shafts. It consists of a worm screw and a worm wheel, both of which have helical teeth. The worm screw resembles a threaded cylinder, while the worm wheel is a gear with teeth that mesh with the worm screw.

    The working principle of a worm gearbox involves the interaction between the worm screw and the worm wheel. When the worm screw is rotated, its helical teeth engage with the teeth of the worm wheel. As the worm screw rotates, it translates the rotational motion into a perpendicular motion, causing the worm wheel to rotate. This perpendicular motion allows the worm gearbox to achieve a high gear reduction ratio, making it suitable for applications that require significant speed reduction.

    One of the key features of a worm gearbox is its ability to provide a high gear reduction ratio in a compact design. However, due to the sliding nature of the meshing teeth, worm gearboxes may exhibit higher friction and lower efficiency compared to other types of gearboxes. Therefore, they are often used in applications where efficiency is not the primary concern but where high torque and speed reduction are essential, such as conveyor systems, elevators, automotive steering systems, and certain industrial machinery.

    China OEM RV Type Good Quality Gearbox Gear Boxes Motor Unit   cvt gearbox	China OEM RV Type Good Quality Gearbox Gear Boxes Motor Unit   cvt gearbox
    editor by CX 2024-01-05

    China OEM 35mm Hollow Shaft Reducer Nmrv 090 Worm Gearbox with Good quality

    Product Description

    Introduction of Worm Gearbox

    1. Made of high-quality aluminum alloy or stainless steel, light in weight and non-rusting

    2. Smooth in running and low in noise, can work long time in dreadful conditions

    3. High in radiating efficiency

    4. Good-looking in appearance, durable in service life and small in volume

    5. Suitable for omni-bearing installation

    6. Inch size and metric size are both available

    Worm Gearbox Main Materials

    1. Housing: Die-cast aluminum alloy(frame size 571-090); cast iron(frame size 110-150 )

    2. Worm shaft: 20CrMnTi, carbonize heat treatment make the hardness of gear’s surface up to 56-62 HRC. Retain carburization layer’s thickness between 0.3 and 0.5mm after precise grinding

    3. Worm wheel: Wearable tin bronze alloy

     

    Detailed Specification

     

    Type: Worm Gear Speed Reducer
    Model: NMRV571-150
    Ratio: 5,7.5,10,15,20,25,30,40,50,60,80,100
    Color: Blue/silver or on customer request
    Material: Housing: Aluminium alloy or cast iron
    Worm Gear: Copper-10-3#
    Worm: 20CrMn Ti with carburizing and quenching, surface harness is 56-62HRC
    Shaft: Chromium steel-45#
    Lubricant: Synthetic & Mineral
    Bearing: C&U bearing
    Seal: KSK & SKF
    Temperature: -30-40°C
    IEC Flange B5/B14
    Rated Power 0.06kw~15kw
    Application Metallurgical machinery, food machinery, stage machinery,
    welding machinery, road machinery, amusement machines,
    packaging machinery, rubber and plastic machinery,
    environmental protection machinery, engineering machinery,
    construction machinery, machine tool industry,
    automotive industry, logistics and transportation and so on

    Mounting Method

    Company Overview
     

    Certificates

    Exhibitions

    FAQ

    1 Q: What’s your MOQ for Worm Gearbox?
       A: 1 unit is ok for different types. 

    2 Q: What about your warranty for your Worm Gearbox?
       A: One year.

    3 Q: Do you provide OEM service with customer-logo?
       A: Yes, we could do OEM orders, but we mainly focus on our own brand.

    4 Q: How about your payment terms ?
       A: TT, western union and paypal. 100% payment in advanced for orders less $5,000. 30% deposit and balance before delivery for orders over $5,000.

    5 Q: How about your packing ?
       A: Carton, Plywood case. If you need more, we can pack all goods with pallet 

    6 Q: What information should be given, if I buy Worm Gearbox from you ?
       A: Rated power, gearbox ratio, input speed, mounting position. More details, better!

    7 Q: How do you deliver the Worm Gearbox?
       A: We will compare and choose the most suitable ways of delivery by sea, air or express courier.

    We hope you will enjoy cooperating with us.

    How to Install and Align a Worm Reducer Properly

    Proper installation and alignment of a worm reducer are crucial for ensuring optimal performance and longevity. Follow these steps to install and align a worm reducer:

    1. Preparation: Gather all the necessary tools, equipment, and safety gear before starting the installation process.
    2. Positioning: Place the worm reducer in the desired location, ensuring that it is securely mounted to a stable surface. Use appropriate fasteners and mounting brackets as needed.
    3. Shaft Alignment: Check the alignment of the input and output shafts. Use precision measurement tools to ensure that the shafts are parallel and in line with each other.
    4. Base Plate Alignment: Align the base plate of the reducer with the foundation or mounting surface. Ensure that the base plate is level and properly aligned before securing it in place.
    5. Bolt Tightening: Gradually and evenly tighten the mounting bolts to the manufacturer’s specifications. This helps ensure proper contact between the reducer and the mounting surface.
    6. Check for Clearance: Verify that there is enough clearance for any rotating components or parts that may move during operation. Avoid any interference that could cause damage or performance issues.
    7. Lubrication: Apply the recommended lubricant to the worm reducer according to the manufacturer’s guidelines. Proper lubrication is essential for smooth operation and reducing friction.
    8. Alignment Testing: After installation, run the worm reducer briefly without a load to check for any unusual noises, vibrations, or misalignment issues.
    9. Load Testing: Gradually introduce the intended load to the worm reducer and monitor its performance. Ensure that the reducer operates smoothly and efficiently under the load conditions.

    It’s important to refer to the manufacturer’s installation guidelines and specifications for your specific worm reducer model. Proper installation and alignment will contribute to the gearbox’s reliability, efficiency, and overall functionality.

    Application: Motor, Machinery
    Hardness: Hardened Tooth Surface
    Installation: Flange Mounting
    Layout: Right Angle Shaft
    Step: Three-Step
    Type: Worm Reducer
    Samples:
    US$ 50/Piece
    1 Piece(Min.Order)

    |
    Request Sample

    Customization:
    Available

    |

    Customized Request

    Advantages of Using a Worm Reducer in Mechanical Systems

    Worm reducers offer several advantages that make them suitable for various mechanical systems:

    • High Gear Reduction Ratio: Worm gearboxes provide significant speed reduction, making them ideal for applications that require a high gear reduction ratio without the need for multiple gears.
    • Compact Design: Worm reducers have a compact and space-saving design, allowing them to be used in applications with limited space.
    • Self-Locking: Worm gearboxes exhibit self-locking properties, which means that the worm screw can prevent the worm wheel from reversing its motion. This is benefic

      How to Calculate the Input and Output Speeds of a Worm Gearbox?

      Calculating the input and output speeds of a worm gearbox involves understanding the gear ratio and the principles of gear reduction. Here’s how you can calculate these speeds:

      • Input Speed: The input speed (N1) is the speed of the driving gear, which is the worm gear in this case. It is usually provided by the manufacturer or can be measured directly.
      • Output Speed: The output speed (N2) is the speed of the driven gear, which is the worm wheel. To calculate the output speed, use the formula:

        N2 = N1 / (Z1 * i)

      Where:
      N2 = Output speed (rpm)
      N1 = Input speed (rpm)
      Z1 = Number of teeth on the worm gear
      i = Gear ratio (ratio of the number of teeth on the worm gear to the number of threads on the worm)

      It’s important to note that worm gearboxes are designed for gear reduction, which means that the output speed is lower than the input speed. Additionally, the efficiency of the gearbox, friction, and other factors can affect the actual output speed. Calculating the input and output speeds is crucial for understanding the performance and capabilities of the worm gearbox in a specific application.

      ial for applications where the gearbox needs to hold a load in place without external braking mechanisms.

    • Smooth and Quiet Operation: Worm gearboxes operate with a sliding motion between the teeth, resulting in smoother and quieter operation compared to some other types of gearboxes.
    • High Torque Transmission: Worm gearboxes can transmit high torque levels, making them suitable for applications that require powerful torque output.
    • Heat Dissipation: The sliding action between the worm screw and the worm wheel contributes to heat dissipation, which can be advantageous in applications that generate heat during operation.
    • Stable Performance: Worm reducers offer stable and reliable performance, making them suitable for continuous operation in various industrial and mechanical systems.

    Despite these advantages, it’s important to note that worm gearboxes also have limitations, such as lower efficiency compared to other gear types due to the sliding motion and potential for higher heat generation. Therefore, selecting the appropriate type of gearbox depends on the specific requirements and constraints of the application.

    China OEM 35mm Hollow Shaft Reducer Nmrv 090 Worm Gearbox   with Good quality China OEM 35mm Hollow Shaft Reducer Nmrv 090 Worm Gearbox   with Good quality
    editor by CX 2023-08-14