China factory CZPT SPS SERIES WORM GEAR SCREW ELEVATOR/JACK SERIES WORM /auto parts/motorcycle/1688 with high quality

Product Description

GRANVILLE GEARBOX REDUCER
Work with the largest manufacturers of worm gear reducer and door operators in Asia boasts the best machining and inspecting facilities in the world.

Over years self- development and introduction of technology from Japan, Italy, and Germany with our partner, Granville transmission
products are widely used in the industry of metallurgy, mining, electronics, construction, conveying, chemical, textile, food, medicine, printing, rubber, and nation and defense.

The factory not only has an advanced quality control system but the world a modern production facility.

WHAT WE DO

01 Introduction
Granville manufactures standard and custom gear drives for industrial and specialty applications. The product line is the most extensive line of gear reducers in China and offers a solution for every power transmission need.

02 Advantages
Comprehensive range
The best machining and inspecting facilities
Correcting alignment issues in dock or in operation
Has a large portfolio of various bearings and housings meet the industry’s need
Perfect sealing, minimize risk of leakage and environmental impact
Offers a range of oil and grease lubrication solutions

MAIN PRODUCTS

1 Warm Gear Reducer
2 SKRF Helical Geared Motors
3 Gate Operators
4 Cyclo Drive Reducer
5 Screw Actuater
6 Coupling

GIL SPS SERIES WORM GEAR SCREW ELEVATOR
>> Features

  • 1. SPS series worm gear screw elevator has many functions, such as lifting, lowering, propulsion with auxiliary parts, turnover and various height position adjustment.
  • 2. SPS worm screw elevator is a basic lifting component, which has many advantages
  • 3. It can be used alone or in combination, and can accurately control and adjust the lifting or propulsion height according to a certain program. It can be driven directly by motor or other power, or manually.
  • 4. In order to improve the efficiency and bearing capacity of SPS series worm screw elevator, special and advanced technology has been developed to improve the comprehensive performance of the elevator to meet the requirements of customers.
  • 5. SPS has different structural types and assembly types, and the lifting height can be customized according to the user’s requirements. 

>> Code
>> Overall Structural Dimensions–Type 1 Elevator

No. SPS1 SPS2.5 SPS5 SPS10/15 SPS20 SPS25 SPS35
S1              
S2 148 167 199 241.5 275 325 380
A 135 165 212 235 295 350 430
B 90 120 155 200 215 260 280
E 111 135 168 190 240 280 360
N 66 90 114 155 160 190 210
H 10fl 122 148 168 194.5 233 280
h 40 45 61.5 70 87 102 115
G 15 15 20 20 20 25 30
d1 12 14 17 21 28 35 35
HS 30 36 40 50 50 60 80
d 14 16 20 25 28 32 38
T x V 5×3 5×3 6×3.5 8×4 8×4 10×5 10×5
L 180 205 240 300 330 410 470
D 45 56 70 86 100 130 150
D1 90 110 135 166 185 205 260
D2 33 42 50 J 76   140
A1 35 45 57 67 72 97 120
A2 38 50 58 63.5 95 95 135
A3 50 65 80 86 122.5 130 170
d2 16 20 25 40 50 70 80
F1 28 30 40 50 60 63 80
F2 40 45 51 73.5 80 92 100
F3 – 10 12 18 20 20 25 30
F4 20 25 375 50 60 70 80
F5 40 50 75 100 120 140 160
F6 55 85 E 1535 170 204 240
D3 88 98 122 150 185 205 260
D4 70 75 85 105 140 155 200
5 35 40 50 65 90 100 130
D6 43 50 65 90 110 130 150
M M16x1.5 M22x1.5 M30x2 M42x2 M48x2 M72x3 M80x3
d3 20 25 35 50 60 70 80
S3 163 207 265 321.5 352 429 490
b 25 30 42 60 75 90 105
Z 10 14 17 21 26 27 33

>> Overall Structural Dimensions–Type 2 Elevator
 

No. SPS1 SPS2.5 SPS5 SPS10/15 SPS20 SPS25 SPS35
S              
S1 Route+206 Route+237 Route+288 Route+343 Route+404 Route+476 Route+535
A 135 165 212 235 295 350 430
B 90 120 155 200 215 260 280
E 111 135 168 190 240 280 360
N 66 90 114 155 160 190 210
H 108 122 148 168 194.5 233 280
h 4. 45 615 70 87 102 115
G 15 15 20 20 20 25 30
d1 12 14 17 21 28 35 35
HS 30 3e 40 50 50 60 80
d 14 16 20 25 28 32 38
TxV 5×3 5×3 6Z.5 8×4 0x4 10×5 10×5
L 180 205 240 300 330 410 470
D 45 56 70 86 100 130 150
D1 90 110 135 166 185 205 260
A1 35 45 57 67 72 97 120
A2 38 50 58 63.5 95 95 135
A3 50 65 80 86 122.5 130 170
Safty Margin X 15 20 20 25 25 25 30
F1 28 30 40 50 60 63 80
F2 40 45 60 75 100 120 145
F3 10 15 18 25 30 35 35
D2 55 80 87 110 120 155 190
D3 40 5. 70 90 90 130 150
d2 16 20 25 40 50 70 80
M M16x1.5 M22x1.5 M30x2 M42x2 M48x2 M72x3 M80x3

>> Screw Head Type & Axis Pointing

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Application: Textile Machinery, Garment Machinery, Conveyer Equipment, Packaging Machinery, Electric Cars, Motorcycle, Food Machinery, Marine, Mining Equipment, Agricultural Machinery, Car
Head: Single Head
Factory Warranty: 1 year
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screw gear

What are the advantages and disadvantages of using screw gears?

Using screw gears, also known as worm gears, offers several advantages and disadvantages. These gears have unique characteristics that make them suitable for specific applications but may also present limitations in certain scenarios. Here’s a detailed explanation of the advantages and disadvantages of using screw gears:

Advantages:

  • High Gear Ratio: Screw gears provide high gear ratios, meaning that a small rotation of the worm gear can result in a significant rotation of the worm wheel. This high gear ratio allows for precise control and slow movement, making screw gears suitable for applications that require fine adjustments and positioning accuracy.
  • Self-Locking: Screw gears have a self-locking characteristic, which means that they can hold their position without the need for additional braking mechanisms or external locking devices. This feature is particularly useful in applications where load holding or preventing back-driving is essential, such as in lifting systems or incline conveyors.
  • Compact Design: Screw gears have a compact design due to their single-threaded helical shape. This compactness allows for space-saving installations, making screw gears advantageous in applications with limited space or tight packaging requirements.
  • Quiet Operation: Screw gears typically operate with reduced noise levels compared to other gear types. The sliding contact between the worm gear and the worm wheel results in less gear mesh noise, making screw gears suitable for applications that require low noise levels or quiet operation.

Disadvantages:

  • Lower Mechanical Efficiency: Screw gears generally have lower mechanical efficiency compared to other gear types, such as spur gears or helical gears. The sliding motion between the worm gear and the worm wheel generates more friction, leading to energy losses and reduced efficiency. However, advancements in gear design, materials, and lubrication can help mitigate this disadvantage to some extent.
  • Limited Power Transmission Capacity: Screw gears are typically not suitable for high-power transmission applications. Due to the sliding contact and high gear ratios, they may have limitations in terms of torque capacity. In high-power applications, other gear types, such as spur or helical gears, are often preferred due to their higher load-carrying capabilities.
  • Potential Backlash: Screw gears can exhibit backlash, which refers to the play or clearance between the mating teeth of the worm gear and the worm wheel. Backlash can lead to reduced accuracy, vibration, and inefficient power transmission. Minimizing backlash through precise manufacturing and proper gear meshing is crucial to mitigate this issue.
  • Requires Proper Lubrication: Screw gears rely on adequate lubrication to minimize friction and ensure smooth operation. Proper lubrication is essential to prevent excessive wear, overheating, and premature failure. Regular maintenance and lubrication checks are necessary to maintain the efficiency and lifespan of screw gear systems.
  • Manufacturing Complexity: The manufacturing process of screw gears can be more complex compared to other gear types. Achieving precise gear tooth profiles and maintaining proper gear meshing requires careful machining and specialized equipment. This complexity can increase manufacturing costs and lead times.

When considering the use of screw gears, it is important to evaluate the specific requirements of the application, such as the need for high gear ratios, load capacity, positional accuracy, and noise levels. By carefully assessing the advantages and disadvantages, engineers can determine whether screw gears are the most suitable choice for their particular application.

screw gear

Can screw gears be used in heavy-duty machinery and equipment?

Yes, screw gears, also known as worm gears, can be used in heavy-duty machinery and equipment. Screw gears offer several advantages that make them suitable for such applications. Here’s a detailed explanation of using screw gears in heavy-duty machinery and equipment:

  • High Load Capacity: Screw gears are known for their high load-carrying capacity. The helical design of the gear teeth allows for distributed contact between the worm gear and the worm wheel, enabling them to handle significant loads. This makes screw gears well-suited for heavy-duty applications where large forces and torque need to be transmitted.
  • Self-Locking Capability: Screw gears have a self-locking feature, which means they can hold position without the need for additional braking mechanisms. In heavy-duty machinery and equipment, this self-locking capability can be advantageous, especially when it is necessary to prevent the load from moving or to maintain position under static or dynamic loads.
  • Compact Design: Screw gears have a compact design, which allows for space-saving installations in heavy-duty machinery and equipment. Their axial orientation and the ability to achieve high gear ratios in a single stage contribute to their compactness. This is particularly beneficial in applications where space is limited or where a compact gear system is desirable.
  • Smooth and Quiet Operation: Screw gears generally operate with low noise and vibration levels. The helical nature of the gear teeth engagement results in smooth and continuous contact, reducing noise and minimizing vibrations. This is advantageous in heavy-duty machinery and equipment, where quiet operation is often desired to enhance operator comfort and minimize the impact on surrounding components.
  • High Gear Reduction Ratios: Screw gears can achieve high gear reduction ratios in a single stage, which is beneficial in heavy-duty applications that require significant speed reduction or torque multiplication. This eliminates the need for multiple gear stages or additional components, simplifying the gear system design and reducing the overall complexity.
  • Durability and Longevity: Screw gears are known for their durability and long service life. When properly designed, manufactured, and maintained, they can withstand heavy loads, operate under challenging conditions, and exhibit good resistance to wear and fatigue. This makes them suitable for heavy-duty machinery and equipment that operate in demanding environments.
  • Compatibility with Various Materials: Screw gears can be manufactured from different materials to suit specific application requirements. This flexibility allows for compatibility with various other components and materials used in heavy-duty machinery and equipment. The choice of materials can be tailored to factors such as strength, wear resistance, and compatibility with lubricants or operating conditions.

In summary, screw gears can be effectively used in heavy-duty machinery and equipment due to their high load capacity, self-locking capability, compact design, smooth operation, high gear reduction ratios, durability, and compatibility with different materials. By considering the specific requirements of the application and employing proper design and manufacturing practices, screw gears can provide reliable and efficient power transmission in heavy-duty scenarios.

screw gear

How do screw gears contribute to linear motion and power transmission?

Screw gears, also known as worm gears, play a significant role in achieving linear motion and power transmission in various mechanical systems. Here’s a detailed explanation of how screw gears contribute to these functions:

Linear Motion:

Screw gears can convert rotary motion into linear motion or vice versa through the interaction between the worm and the worm wheel. The helical threads on the worm and the teeth on the worm wheel create a sliding and rolling contact that results in linear displacement along the axis of the screw. This mechanism enables precise control and positioning of linear motion in different applications.

The linear motion contribution of screw gears can be observed in the following scenarios:

  • Lead Screw Mechanisms: When the worm gear is used as a lead screw, it converts the rotary motion of the worm into linear motion along the screw’s axis. By rotating the worm, the worm wheel moves linearly, allowing for controlled and precise linear positioning. Lead screw mechanisms are widely used in applications such as CNC machines, 3D printers, and linear actuators.
  • Linear Motion Conversion: In certain applications, the linear motion of a load can be converted into rotary motion using screw gears. By fixing the worm wheel and applying linear force to the worm, the rotation of the worm can drive the rotary motion of other components. This conversion is utilized in applications such as conveyor systems, lifting mechanisms, and material handling equipment.

Power Transmission:

Screw gears are effective in power transmission due to their unique characteristics. Here’s how they contribute to power transmission:

  • Gear Reduction: Screw gears provide significant gear reduction, which is the ratio between the input speed and the output speed. This reduction allows for a smaller input speed to generate a larger output torque, making screw gears suitable for applications requiring high torque and low-speed rotation. The gear reduction capability of screw gears enables efficient power transmission, especially in scenarios where high torque is necessary.
  • Torque Multiplication: Through the interaction of the helical threads on the worm and the teeth on the worm wheel, screw gears multiply torque. The mechanical advantage gained through the screw gear mechanism enables the transmission of higher torque to drive loads with increased force. This torque multiplication is essential in applications that require heavy lifting, load handling, and power transmission with minimal slippage.

By combining the ability to convert rotary motion into linear motion and providing efficient power transmission, screw gears find widespread use in a range of applications. They are employed in industries such as manufacturing, automation, robotics, material handling, and various other systems that require precise linear motion control and effective power transmission.

China factory CZPT SPS SERIES WORM GEAR SCREW ELEVATOR/JACK SERIES WORM /auto parts/motorcycle/1688 with high qualityChina factory CZPT SPS SERIES WORM GEAR SCREW ELEVATOR/JACK SERIES WORM /auto parts/motorcycle/1688 with high quality
editor by CX 2024-03-01