Description du produit
Nontelescopic Welded Cardan Shaft Coupling (SWC WH)
SWC-WH-type cross shaft universal coupling can be widely used in metallurgy, lifting, engineering, transportation, mining, oil, shipbuilding, coal, rubber, paper machinery and other heavy machinery industry, mechanical shafting transmitting torque.
♦The Main Features Of SWC-WH-type Cross Shaft Universal Coupling
1. The ability to have a large angle compensation. Axis angle, SWC-WH type axis angle up to 15 degrees to 25 degrees.
2. The structure is compact and reasonable. SWC type with integral fork, so carrying more reliable.
3. The carrying capacity. Compared with other types of the same diameter rotary joint axis, it delivers more torque, the turning diameter of restricted mechanical equipment, the complete range is more advantageous.
4. High transmission efficiency. Its transmission efficiency of 98-99.8% for high-power transmission, energy-saving effect.
5. Carrying smooth, low noise, easy maintenance, assembly and disassembly.
♦Basic Parameter And Main Dimension
| Model | D mm |
Tn (KN.m) |
Tf (KN.m) |
<β |
Size (mm) | I (kg.m²) |
M (kg) |
|||||||||||
| Lmin | D1 (js11) |
D (H7) |
D3 | Lm | n-d | k | t | B (h9) |
g | Lmin | 100mm |
Lmin | 100mm |
|||||
| SWC100WH | 100 | 1.25 | 0.63 | 25° | 243 | 84 | 57 | 60 | 55 | 6-9 | 7 | 2.5 | – | – | 0.0039 | 0.00019 | 4.5 | 0.35 |
| SWC120WH | 120 | 2.5 | 1.25 | 25° | 307 | 102 | 75 | 70 | 65 | 8-11 | 8 | 2.5 | – | – | 0.0096 | 0.00044 | 7.7 | 0.55 |
| SWC150WH | 150 | 5 | 25 | 25° | 350 | 130 | 90 | 89 | 80 | 8-13 | 10 | 3.0 | – | – | 0.371 | 0.00157 | 18 | 24.5 |
| SWC180WH | 180 | 12.5 | 6.3 | 25° | 180 | 155 | 105 | 114 | 110 | 8-17 | 17 | 5.0 | – | – | 0.1500 | 0.0070 | 48 | 2.8 |
| SWC225WH | 225 | 40 | 20 | 15° | 520 | 196 | 135 | 152 | 120 | 8-17 | 20 | 5.0 | 32 | 9.0 | 0.3650 | 0.5714 | 78 | 4.9 |
| SWC250WH | 250 | 63 | 31.5 | 15° | 620 | 218 | 150 | 168 | 140 | 8-19 | 25 | 6.0 | 40 | 12.5 | 0.8170 | 0.5717 | 124 | 5.3 |
| SWC285WH | 285 | 90 | 45 | 15° | 720 | 245 | 170 | 194 | 160 | 8-21 | 27 | 7.0 | 40 | 15.0 | 1.7560 | 0.571 | 185 | 6.3 |
| SWC315WH | 315 | 125 | 63 | 15° | 805 | 280 | 185 | 219 | 219 | 10-23 | 32 | 8.0 | 40 | 15.0 | 2.8930 | 0.571 | 262 | 8.0 |
| SWC350WH | 350 | 180 | 90 | 15° | 875 | 310 | 210 | 267 | 194 | 10-23 | 35 | 8.0 | 50 | 16.0 | 5.0130 | 0.2219 | 374 | 15.0 |
| SWC390WH | 390 | 250 | 125 | 15° | 955 | 345 | 235 | 267 | 215 | 10-25 | 40 | 8.0 | 70 | 18.0 | 8.4060 | 0.2219 | 506 | 15.0 |
| SWC440WH | 440 | 355 | 180 | 15° | 1155 | 390 | 255 | 325 | 260 | 16-28 | 42 | 10.0 | 80 | 20.0 | 15.790 | 0.4744 | 790 | 21.7 |
| SWC490WH | 490 | 500 | 250 | 15° | 1205 | 435 | 275 | 325 | 270 | 16-31 | 47 | 12.0 | 90 | 22.5 | 26.540 | 0.4744 | 1014 | 21.7 |
| SWC550WH | 550 | 710 | 355 | 15° | 1355 | 492 | 320 | 426 | 325 | 16-31 | 50 | 12.0 | 100 | 22.5 | 48.320 | 1.3570 | 1526 | 34.0 |
Detailed Photos
Emballage et expédition
Profil de l'entreprise
HangZhou CHINAMFG Machinery Manufacturing Co., Ltd. is a high-tech enterprise specializing in the design and manufacture of various types of coupling. There are 86 employees in our company, including 2 senior engineers and no fewer than 20 mechanical design and manufacture, heat treatment, welding, and other professionals.
Advanced and reasonable process, complete detection means. Our company actively introduces foreign advanced technology and equipment, on the basis of the condition, we make full use of the advantage and do more research and innovation. Strict to high quality and operate strictly in accordance with the ISO9000 quality certification system standard mode.
Our company supplies different kinds of products. High quality and reasonable price. We stick to the principle of “quality first, service first, continuous improvement and innovation to meet the customers” for the management and “zero defect, zero complaints” as the quality objective.
Our Services
1. Design Services
Our design team has experience in Cardan shafts relating to product design and development. If you have any needs for your new product or wish to make further improvements, we are here to offer our support.
2. Product Services
raw materials → Cutting → Forging →Rough machining →Shot blasting →Heat treatment →Testing →Fashioning →Cleaning→ Assembly→Packing→Shipping
3. Samples Procedure
We could develop the sample according to your requirement and amend the sample constantly to meet your need.
4. Research & Development
We usually research the new needs of the market and develop new models when there are new cars in the market.
5. Quality Control
Every step should be a particular test by Professional Staff according to the standard of ISO9001 and TS16949.
FAQ
Q 1: Are you a trading company or a manufacturer?
A: We are a professional manufacturer specializing in manufacturing
various series of couplings.
Q 2:Can you do OEM?
Yes, we can. We can do OEM & ODM for all customers with customized PDF or AI format artwork.
Q 3:How long is your delivery time?
Generally, it is 20-30 days if the goods are not in stock. It is according to quantity.
Q 4: Do you provide samples? Is it free or extra?
Yes, we could offer the sample but not for free. Actually, we have an excellent price principle, when you make the bulk order the cost of the sample will be deducted.
Q 5: How long is your warranty?
A: Our Warranty is 12 months under normal circumstances.
Q 6: What is the MOQ?
A: Usually our MOQ is 1pcs.
Q 7: Do you have inspection procedures for coupling?
A:100% self-inspection before packing.
Q 8: Can I have a visit to your factory before the order?
A: Sure, welcome to visit our factory.
Q 9: What’s your payment?
A:1) T/T.
♦Contact Us
Web: huadingcoupling
Add: No.11 HangZhou Road,Chengnan park,HangZhou City,ZheJiang Province,China
/* 22 janvier 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| Condition: | New |
|---|---|
| Color: | as Required |
| Taper: | Universal Joint |
| Matériel: | Carbon Steel or as Required |
| Size: | Standard Size |
| Application: | Tractors, Trucks and Agricultural Use |
| Personnalisation : |
Disponible
| Demande personnalisée |
|---|

Quels facteurs faut-il prendre en compte lors du choix de l'arbre de prise de force adapté à une application ?
Lors du choix d'un arbre de prise de force (PDF) adapté à une application, plusieurs facteurs doivent être pris en compte afin de garantir des performances optimales, la sécurité et la compatibilité. Les arbres de PDF sont des composants essentiels qui transmettent la puissance d'une source d'énergie à la machine ou à l'équipement entraîné. Voici les principaux facteurs à considérer lors du choix d'un arbre de PDF adapté à une application :
1. Besoins en énergie : Les besoins en puissance de la machine entraînée sont déterminants pour le choix de l'arbre de prise de force (PDF) approprié. Il convient de tenir compte de la puissance nominale (en chevaux-vapeur ou en kilowatts) de la source d'énergie et de s'assurer que l'arbre de PDF peut supporter la transmission de puissance requise. Il est essentiel d'adapter la capacité de puissance de l'arbre de PDF à la puissance de sortie de la source d'énergie pour garantir un fonctionnement efficace et fiable.
2. Exigences en matière de vitesse et de couple : Tenez compte des exigences de vitesse et de couple de la machine entraînée. Déterminez les niveaux de vitesse de rotation et de couple nécessaires au bon fonctionnement de l'équipement. Certaines applications requièrent des rapports de vitesse ou de couple spécifiques, tandis que d'autres peuvent nécessiter des vitesses variables. Assurez-vous que l'arbre de prise de force sélectionné puisse supporter la plage de vitesse et de couple requise pour assurer la transmission de puissance nécessaire.
3. Type et conception de l'arbre : Évaluez le type et la conception de l'arbre de prise de force afin d'assurer sa compatibilité avec l'application. Tenez compte de facteurs tels que la distance entre la source d'énergie et la machine entraînée, la nécessité d'un désalignement angulaire et la flexibilité de mouvement requise. Différents types d'arbres, comme les arbres standard, télescopiques ou à vitesse constante (CV), offrent des capacités variables pour répondre aux exigences de diverses applications.
4. Considérations relatives à la sécurité : La sécurité est un facteur primordial lors du choix d'un arbre de prise de force. Évaluez les dispositifs de sécurité intégrés à l'arbre, tels que les protections, les boulons de cisaillement et autres dispositifs de sécurité. Les protections doivent empêcher tout contact accidentel avec l'arbre en rotation. Les boulons de cisaillement protègent les composants de la transmission en cas de couple excessif ou de résistance soudaine. Privilégiez les dispositifs de sécurité adaptés aux dangers et risques spécifiques liés à l'application.
5. Spécificités de l'application : Tenez compte des exigences spécifiques de l'application. Des facteurs tels que le type de machine, le secteur industriel, les conditions environnementales et les conditions d'exploitation doivent être pris en considération. Par exemple, les applications agricoles peuvent nécessiter des arbres de prise de force capables de supporter l'accumulation de débris et de saletés, tandis que les applications industrielles peuvent exiger des arbres de prise de force à haute résistance à la corrosion ou dotés d'une étanchéité spéciale pour se protéger contre les contaminants.
6. Compatibilité et interchangeabilité : Assurez-vous que l'arbre de prise de force sélectionné est compatible avec la source d'alimentation et la machine entraînée. Tenez compte de facteurs tels que le diamètre de l'arbre, la taille des cannelures et le type de raccordement. Vérifiez que l'arbre de prise de force est conforme aux normes industrielles et qu'il peut être facilement remplacé ou mis à niveau par d'autres composants compatibles. La compatibilité et l'interchangeabilité simplifient la maintenance et réduisent les temps d'arrêt.
7. Fabricant et qualité : Choisissez un fabricant ou un fournisseur réputé pour garantir la qualité et la fiabilité de votre arbre de prise de force. Privilégiez les fabricants ayant fait leurs preuves dans la production d'arbres de prise de force de haute qualité, conformes aux normes et réglementations en vigueur. Lors de votre sélection, tenez compte de critères tels que la garantie, le service après-vente et la disponibilité des pièces détachées.
En tenant compte de ces facteurs, vous pouvez sélectionner l'arbre de prise de force adapté à vos besoins en termes de puissance, de vitesse, de couple, de sécurité et d'application. Il est conseillé de consulter des experts, tels que des fabricants d'équipements ou des spécialistes des arbres de prise de force, afin de garantir une adéquation optimale entre l'arbre de prise de force et l'application.

Can you provide real-world examples of equipment that use PTO shafts?
Power Take-Off (PTO) shafts are extensively used in various industries, particularly in agriculture and construction. They provide a reliable power source for a wide range of equipment, enabling efficient operation and increased productivity. Here are some real-world examples of equipment that commonly use PTO shafts:
1. Agricultural Machinery:
- Tractor Implements: A wide array of tractor-mounted implements rely on PTO shafts for power transfer. These include:
- Mowers and rotary cutters
- Balers and hay equipment
- Tillers and cultivators
- Seeders and planters
- Sprayers
- Manure spreaders
- Harvesters, such as combine harvesters and forage harvesters
- Stationary Equipment: PTO shafts are also used in stationary agricultural equipment, including:
- Feed grinders and mixers
- Silo unloaders
- Grain augers and elevators
- Irrigation pumps
- Wood chippers and shredders
- Stump grinders
2. Construction and Earthmoving Equipment:
- Backhoes and Excavators: PTO shafts can be found in backhoes and excavators, powering attachments such as augers, hydraulic hammers, and brush cutters.
- Post Hole Diggers: Post hole diggers used for fence installation often rely on PTO shafts to transfer power to the digging mechanism.
- Trenchers: Trenching machines equipped with PTO shafts efficiently dig trenches for utility installations, drainage systems, or irrigation lines.
- Stump Grinders: Stump grinders used in land clearing and tree removal operations often utilize PTO shafts to power their cutting blades.
- Soil Stabilizers and Road Reclaimers: These machines use PTO shafts to drive the rotor and milling drums, which pulverize and mix materials for road construction and maintenance.
3. Forestry Equipment:
- Wood Chippers: Wood chippers used for processing tree branches and logs into wood chips are commonly powered by PTO shafts.
- Brush Cutters and Mulchers: PTO-driven brush cutters and mulchers are employed to clear vegetation and maintain forested areas.
- Log Splitters: Log splitters that split logs into firewood often utilize PTO shafts to power the splitting mechanism.
4. Utility Equipment:
- Generators: Some generators are designed to be driven by PTO shafts, providing an auxiliary power source for various applications in remote locations or during power outages.
- Pumps: PTO-driven pumps are commonly used for agricultural irrigation, water transfer, and dewatering applications.
5. Specialty Equipment:
- Ice Resurfacers: PTO shafts are employed in ice resurfacing machines used in ice rinks to maintain a smooth ice surface for ice hockey and figure skating.
- Air Compressors: Some air compressors are driven by PTO shafts, providing a source of compressed air for various applications.
These examples represent a range of equipment that extensively relies on PTO shafts for power transfer. PTO shafts enable the efficient operation of these machines, increasing productivity and versatility across various industries.

Which industries commonly use PTO shafts for power transmission?
PTO shafts (Power Take-Off shafts) are widely used in various industries where power transmission is required to drive machinery and equipment. Their versatility, efficiency, and compatibility with different types of machinery make them valuable components in several sectors. Here’s a detailed explanation of the industries that commonly use PTO shafts for power transmission:
1. Agriculture: The agricultural industry extensively relies on PTO shafts for power transmission. Tractors equipped with PTOs are commonly used to drive a wide range of agricultural implements and machinery. PTO-driven equipment includes mowers, balers, tillers, seeders, sprayers, grain augers, harvesters, and many more. PTO shafts allow for the efficient transfer of power from the tractor’s engine to these implements, enabling various agricultural operations such as cutting, baling, tilling, planting, spraying, and harvesting. The agricultural sector heavily depends on PTO shafts to enhance productivity and streamline farming processes.
2. Construction and Earthmoving: In the construction and earthmoving industry, PTO shafts find applications in machinery used for excavation, grading, and material handling. PTO-driven equipment such as backhoes, loaders, excavators, trenchers, and stump grinders utilize PTO shafts to transfer power from the prime movers, typically hydraulic systems, to drive the necessary attachments. These attachments require the high torque and power provided by PTO shafts to perform tasks like digging, loading, trenching, and grinding. PTO shafts allow for versatile and efficient power transmission in construction and earthmoving operations.
3. Forestry: The forestry industry utilizes PTO shafts for power transmission in various logging and timber processing equipment. PTO-driven machinery such as wood chippers, sawmills, log splitters, and debarkers rely on PTO shafts to transfer power from tractors or dedicated power units to perform tasks like chipping, sawing, splitting, and debarking wood. PTO shafts provide the necessary power and torque to drive the cutting and processing mechanisms, enabling efficient and productive forestry operations.
4. Landscaping and Groundskeeping: PTO shafts play a crucial role in the landscaping and groundskeeping industry. Equipment like lawn mowers, rotary cutters, flail mowers, and aerators utilize PTO shafts to transfer power from tractors or dedicated power units to drive the cutting or grooming mechanisms. PTO shafts enable efficient power transmission, allowing operators to maintain lawns, parks, golf courses, and other outdoor spaces with precision and productivity.
5. Mining and Quarrying: PTO shafts have applications in the mining and quarrying industry, particularly in equipment used for material extraction, crushing, and screening. PTO-driven machinery such as crushers, screeners, and conveyors rely on PTO shafts to transfer power from engines or motors to drive the crushing and screening mechanisms, as well as the material handling systems. PTO shafts provide the necessary power and torque to process and transport bulk materials effectively in mining and quarrying operations.
6. Industrial Manufacturing: PTO shafts are utilized in various industrial manufacturing processes that require power transmission to drive specific machinery and equipment. Industries such as food processing, textile manufacturing, paper production, and chemical processing may use PTO-driven machinery for tasks like mixing, blending, cutting, extruding, and conveying. PTO shafts enable efficient power transfer to these machines, ensuring smooth and reliable operation in industrial manufacturing settings.
7. Utilities and Infrastructure Maintenance: PTO shafts find applications in utilities and infrastructure maintenance operations. Equipment like street sweepers, sewer cleaners, road maintenance machines, and drain augers utilize PTO shafts to transfer power from trucks or dedicated power units to perform tasks like sweeping, cleaning, and maintenance of roads, sewers, and other public infrastructure. PTO shafts enable efficient power transmission, ensuring effective and reliable operation of these utility and maintenance machines.
8. Others: PTO shafts are also used in several other industries and sectors where power transmission is required. This includes applications in the transportation industry for powering refrigeration units, fuel pumps, and hydraulic systems in trucks and trailers. PTO shafts also find applications in the marine industry for powering winches, pumps, and other equipment on boats and ships.
In summary, PTO shafts are commonly used in a wide range of industries for power transmission. These industries include agriculture, construction and earthmoving, forestry, landscaping and groundskeeping, mining and quarrying, industrial manufacturing, utilities and infrastructure maintenance, transportation, and marine sectors. PTO shafts play a critical rolein enhancing productivity, enabling efficient operation of machinery, and facilitating various tasks in these industries.

editor by CX 2024-04-17