Produktbeschreibung
Produktbeschreibung
Produktbeschreibung
SWC BH Cardan Shaft Basic Parameter And Main Dimension
Cardan shaft is widely used in rolling mill, punch, straightener, crusher, ship drive, paper making equipment, common machinery, water pump equipment, test bench, and other mechanical applications.
Advantage:
1. Low life-cycle costs and long service life;
2. Increase productivity;
3. Professional and innovative solutions;
4. Reduce carbon dioxide emissions, and environmental protection;
5. High torque capacity even at large deflection angles;
6. Easy to move and run smoothly;
Detaillierte Fotos
Produktparameter
| Model | Tn kN • m |
T. |
P (.) |
LS mm |
Lmin | Size mm |
I kg. m2 | m kg |
|||||||||||
| Di js11 |
d2 H7 |
Da | Lm | n-d | k | t | b h9 |
g | Lmin | 100mm | Lmin | 100mm | |||||||
| SWC58BH | 58 | 0.15 | 0.075 | ≤22 | 35 | 325 | 47 | 30 | 38 | 35 | 4-5 | 3.5 | 1.5 | – | – | – | – | 2.2 | – |
| SWC65BH | 65 | 0.25 | 0.125 | ≤22 | 40 | 360 | 52 | 35 | 42 | 46 | 4-6 | 4.5 | 1.7 | – | – | – | – | 3.0 | – |
| SWC75BH | 75 | 0.50 | 0.25 | ≤22 | 40 | 395 | 62 | 42 | 50 | 58 | 6-6 | 5.5 | 2.0 | – | – | – | – | 5.0 | – |
| SWC90BH | 90 | 1.0 | 0.50 | ≤22 | 45 | 435 | 74.5 | 47 | 54 | 58 | 4-8 | 6.0 | 2.5 | – | – | – | – | 6.6 | – |
| SWC100BH | 100 | 1.5 | 0.75 | ≤25 | 55 | 390 | 84 | 57 | 60 | 58 | 6-9 | 7 | 2.5 | – | – | 0.0044 | 0.00019 | 6.1 | 0.35 |
| SWC120BH | 120 | 2.5 | 1.25 | ≤25 | 80 | 485 | 102 | 75 | 70 | 68 | 8-11 | 8 | 2.5 | – | – | 0.5719 | 0.00044 | 10.8 | 0.55 |
| SWC150BH | 150 | 5 | 2.5 | ≤25 | 80 | 590 | 13.0 | 90 | 89 | 80 | 8-13 | 10 | 3.0 | – | – | 0.0423 | 0.00157 | 24.5 | 0.85 |
| SWC160BH | 160 | 10 | 5 | ≤25 | 80 | 660 | 137 | 100 | 95 | 110 | 8-15 | 15 | 3.0 | 20 | 12 | 0.1450 | 0.0060 | 68 | 1.72 |
| SWC180BH | 180 | 20 | 10 | ≤25 | 100 | 810 | 155 | 105 | 114 | 130 | 8-17 | 17 | 5.0 | 24 | 14 | 0.1750 | 0.0070 | 70 | 2.8 |
| SWC200BH | 200 | 32 | 16 | ≤15 | 110 | 860 | 170 | 120 | 127 | 135 | 8-17 | 19 | 5.0 | 28 | 16 | 0.3100 | 0.0130 | 86 | 3.6 |
| SWC225BH | 225 | 40 | 20 | ≤15 | 140 | 920 | 196 | 135 | 152 | 120 | 8-17 | 20 | 5.0 | 32 | 9.0 | 0.5380 | 0.5714 | 122 | 4.9 |
| SWC250BH | 250 | 63 | 31.5 | ≤15 | 140 | 1035 | 218 | 150 | 168 | 140 | 8-19 | 25 | 6.0 | 40 | 12.5 | 0.9660 | 0.5717 | 172 | 5.3 |
| SWC285BH | 285 | 90 | 45 | ≤15 | 140 | 1190 | 245 | 170 | 194 | 160 | 8-21 | 27 | 7.0 | 40 | 15.0 | 2.0110 | 0.571 | 263 | 6.3 |
| SWC315BH | 315 | 125 | 63 | ≤15 | 140 | 1315 | 280 | 185 | 219 | 180 | 10-23 | 32 | 8.0 | 40 | 15.0 | 3.6050 | 0.571 | 382 | 8.0 |
| SWC350BH | 350 | 180 | 90 | ≤15 | 150 | 1410 | 310 | 210 | 267 | 194 | 10-23 | 35 | 8.0 | 50 | 16.0 | 7.571 | 0.2219 | 582 | 15.0 |
| SWC390BH | 390 | 250 | 125 | ≤15 | 170 | 1590 | 345 | 235 | 267 | 215 | 10-25 | 40 | 8.0 | 70 | 18.0 | 12.164 | 0.2219 | 738 | 15.0 |
| SWC440BH | 440 | 355 | 180 | ≤15 | 190 | 1875 | 390 | 255 | 325 | 260 | 16-28 | 42 | 10 | 80 | 20.0 | 21.420 | 0.4744 | 1190 | 21.7 |
| SWC490BH | 490 | 500 | 250 | ≤15 | 190 | 1985 | 435 | 275 | 325 | 270 | 16-31 | 47 | 12 | 90 | 22.5 | 32.860 | 0.4744 | 1452 | 21.7 |
| SWC550BH | 550 | 710 | 355 | ≤15 | 240 | 2300 | 492 | 320 | 426 | 305 | 16-31 | 50 | 12 | 100 | 22.5 | 68.920 | 1.3570 | 2380 | 34 |
Verpackung & Versand
Unternehmensprofil
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.
Häufig gestellte Fragen
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.
♦Kontaktieren Sie uns
Web: huadingcoupling
Add: No.11 HangZhou Road,Chengnan park,HangZhou City,ZheJiang Province,China
| Zustand: | Neu |
|---|---|
| Color: | as Required |
| Zertifizierung: | ISO |
| Typ: | Kardangelenk |
| Material: | Carbon Steel or as Required |
| Montage: | Flange or as Per Required |
| Anpassung: |
Verfügbar
| Kundenspezifische Anfrage |
|---|

Are there variations in PTO shaft designs for different types of machinery?
Yes, there are variations in PTO (Power Take-Off) shaft designs to accommodate the specific requirements of different types of machinery. PTO shafts are highly versatile and adaptable components used to transfer power from a power source, such as a tractor or engine, to driven machinery or equipment. The design variations in PTO shafts are necessary to ensure compatibility, efficiency, and safety in various applications. Here’s a detailed explanation of the different PTO shaft designs for different types of machinery:
1. Standard PTO Shafts: Standard PTO shafts are the most common design and are widely used in a variety of applications. They typically consist of a solid steel shaft with a universal joint at each end. These universal joints allow for angular misalignment between the power source and the driven machinery. Standard PTO shafts are suitable for applications where the distance between the power source and the driven machinery remains relatively fixed. They are commonly used in agricultural implements, such as mowers, balers, tillers, and seeders, as well as in industrial applications.
2. Telescopic PTO Shafts: Telescopic PTO shafts feature a telescoping design that allows for length adjustment. These shafts consist of two or more concentric shafts that can slide within each other. Telescopic PTO shafts are beneficial in applications where the distance between the power source and the driven machinery varies. By adjusting the length of the shaft, operators can ensure proper power transmission without the risk of the shaft dragging on the ground or being too short to reach the equipment. Telescopic PTO shafts are commonly used in front-mounted implements, snow blowers, self-loading wagons, and other applications where the distance between the power source and the implement changes.
3. CV (Constant Velocity) PTO Shafts: CV PTO shafts incorporate Constant Velocity joints to accommodate misalignment and angular variations. These joints maintain a constant speed and torque transfer even when the driven machinery is at an angle relative to the power source. CV PTO shafts are beneficial in applications where the driven machinery requires flexibility and a wide range of movement. They are commonly used in articulated loaders, telescopic handlers, self-propelled sprayers, and other equipment that requires continuous power transmission while operating at various angles.
4. Gearbox Driven PTO Shafts: Some machinery requires specific speed or torque ratios between the power source and the driven equipment. In such cases, PTO shafts may incorporate gearbox systems. Gearbox driven PTO shafts allow for speed reduction or increase and can change the rotational direction if necessary. The gear ratios in the gearbox can be adjusted to match the speed and torque requirements of the driven machinery. These PTO shafts are commonly used in applications where the power source operates at a different speed or torque level than the equipment it drives, such as in certain industrial manufacturing processes and specialized machinery.
5. High-Torque PTO Shafts: Some heavy-duty machinery requires high torque levels for power transmission. High-torque PTO shafts are designed to handle these demanding applications. They are constructed with reinforced components, including larger diameter shafts and heavier-duty universal joints, to withstand the increased torque requirements. High-torque PTO shafts are commonly used in equipment such as wood chippers, crushers, and heavy-duty agricultural implements that require substantial power and torque for their operation.
6. Safety PTO Shafts: Safety is a crucial consideration when using PTO shafts. Safety PTO shafts incorporate mechanisms to reduce the risk of accidents and injuries. One common safety feature is the use of protective guards that cover the rotating shaft to prevent accidental contact. These guards are typically made of metal or plastic and are designed to shield the rotating components while allowing the necessary movement for power transmission. Safety PTO shafts are used in various applications where the risk of entanglement or accidental contact with the rotating shaft is high, such as in grass mowers, rotary cutters, and other equipment used in landscaping and agriculture.
These are some of the key variations in PTO shaft designs for different types of machinery. The specific design used depends on factors such as the application requirements, power source characteristics, torque levels, movement flexibility, and safety considerations. PTO shaft manufacturers offer a range of designs to ensure compatibility and efficient power transmission in diverse industries and applications.

What safety precautions should be followed when working with PTO shafts?
Working with Power Take-Off (PTO) shafts requires strict adherence to safety precautions to prevent accidents and ensure the well-being of individuals operating or working in the vicinity of the equipment. PTO shafts involve rotating machinery and can pose significant hazards if not handled properly. Here are several important safety precautions that should be followed when working with PTO shafts:
1. Familiarize Yourself with the Equipment: Prior to operating or working near a PTO shaft, it is crucial to thoroughly understand the equipment’s operation, including the specific PTO shaft configuration, safety features, and any associated machinery. Read and follow the manufacturer’s instructions and safety guidelines pertaining to the PTO shaft and associated equipment. Training and familiarity with the equipment are essential to ensure safe practices.
2. Tragen Sie geeignete persönliche Schutzausrüstung (PSA): When working with PTO shafts, individuals should wear appropriate personal protective equipment to minimize the risk of injury. This may include safety glasses, hearing protection, gloves, and sturdy footwear. PPE protects against potential hazards such as flying debris, noise, and accidental contact with rotating components.
3. Guarding and Shielding: Ensure that the PTO shaft and associated machinery are equipped with appropriate guarding and shielding. Guarding helps prevent accidental contact with rotating parts, reducing the risk of entanglement or injury. PTO shafts should have guard shields covering the rotating shaft and any exposed universal joints. Machinery driven by the PTO shaft should also have adequate guarding in place to protect against contact with moving parts.
4. Securely Fasten and Align PTO Shaft Components: Before operating or connecting the PTO shaft, ensure that all components are securely fastened and aligned. Loose or misaligned components can lead to shaft dislodgement, imbalance, and potential failure. Follow the manufacturer’s guidelines for proper installation and tightening of couplings, yokes, and other connecting points. Proper alignment is crucial to prevent excessive stress, vibrations, and premature wear on the PTO shaft and associated equipment.
5. Avoid Loose Clothing and Jewelry: Loose clothing, jewelry, or other items that can become entangled in the PTO shaft or associated machinery should be avoided. Secure long hair, tuck in loose clothing, and remove or properly secure any dangling accessories. Loose items can get caught in rotating parts, leading to serious injury or entanglement hazards.
6. Do Not Modify or Remove Safety Features: PTO shafts are equipped with safety features such as guard shields, safety covers, and torque limiters for a reason. These features are designed to protect against potential hazards and should not be modified, bypassed, or removed. Altering or disabling safety features can significantly increase the risk of accidents and injury. If any safety features are damaged or not functioning correctly, they should be repaired or replaced promptly.
7. Shut Down Power Source Before Maintenance: Before performing any maintenance, repairs, or adjustments on the PTO shaft or associated machinery, ensure that the power source is completely shut down and disconnected. This includes turning off the engine, disconnecting power supply, and engaging any safety locks or mechanisms. Lockout/tagout procedures should be followed to prevent accidental energization or startup during maintenance activities.
8. Regular Maintenance and Inspection: Regular maintenance and inspection of the PTO shaft and associated equipment are vital for safe operation. Follow the manufacturer’s recommended maintenance schedule and perform routine inspections to identify any signs of wear, damage, or misalignment. Lubricate universal joints as per the manufacturer’s guidelines to ensure smooth operation. Promptly address any maintenance or repair needs to prevent potential hazards.
9. Training and Communication: Ensure that individuals operating or working near PTO shafts receive proper training on safe work practices, hazard identification, and emergency procedures. Promote clear communication regarding the presence and operation of PTO shafts to prevent accidental contact or interference. Establish effective communication methods, such as signals or radios, when working in teams or near noisy equipment.
10. Be Aware of Surroundings: Maintain situational awareness when working with PTO shafts. Be mindful of the location of bystanders, obstacles, and potential hazards. Ensure a clear and safe work area around the PTO shaft. Avoid distractions and focus on the task at hand to prevent accidents caused by inattention.
By following these safety precautions, individuals can minimize the risk of accidents and injuries when working with PTO shafts. Safety should always be the top priority to ensure a safe and productive work environment.

Können Sie die verschiedenen Arten von Zapfwellen und deren Anwendungsbereiche erläutern?
Zapfwellen (Kraftabnahmewellen) gibt es in verschiedenen Ausführungen, die jeweils für spezifische Anwendungen und Anforderungen entwickelt wurden. Die unterschiedlichen Zapfwellentypen bieten Vielseitigkeit und Kompatibilität mit einer breiten Palette von Maschinen und Anbaugeräten. Im Folgenden finden Sie eine Erklärung der gängigsten Zapfwellentypen und ihrer Anwendungsbereiche:
1. Standard-Zapfwelle: Die Standard-Zapfwelle, auch Keilwellenantrieb genannt, ist der am häufigsten verwendete Typ in Land- und Industriemaschinen. Sie besteht aus einer massiven Stahlwelle mit Keilwellenverzahnung. Die Standard-Zapfwelle hat typischerweise sechs Keilwellen, es gibt aber auch Varianten mit vier oder acht Keilwellen. Dieser Zapfwellentyp wird häufig in Traktoren und verschiedenen Anbaugeräten wie Mähwerken, Ballenpressen, Bodenfräsen und Kreiselmähern eingesetzt. Die Keilwellenverzahnung sorgt für eine sichere Verbindung zwischen Antriebsquelle und angetriebener Maschine und gewährleistet so eine effiziente Kraftübertragung.
2. Scherbolzen-Zapfwelle: Zapfwellen mit Scherbolzen sind mit einer Sicherheitsvorrichtung ausgestattet, die bei Überlastung oder plötzlichem Stoß ein Trennen der Welle ermöglicht und so die Antriebskomponenten schützt. Diese Zapfwellen verfügen über einen Scherbolzenmechanismus, der die Zapfwelle des Traktors mit der angetriebenen Maschine verbindet. Bei Überlastung oder plötzlichem Widerstand bricht der Scherbolzen, trennt die Zapfwelle und verhindert so Schäden am Antriebsstrang. Zapfwellen mit Scherbolzen werden häufig in Geräten eingesetzt, die plötzlichen Hindernissen oder hohen Belastungen ausgesetzt sein können, wie z. B. Holzhäcksler, Stubbenfräsen und Hochleistungs-Rotationsmäher.
3. Reibungskupplung Zapfwelle: Nebenantriebswellen mit Reibkupplung verfügen über einen Kupplungsmechanismus, der ein sanftes Ein- und Auskuppeln der Kraftübertragung ermöglicht. Diese Nebenantriebswellen bestehen typischerweise aus einer Reibscheibe und einer Druckplatte, ähnlich wie ein herkömmliches Kupplungssystem in Fahrzeugen. Die Reibkupplung erlaubt es dem Bediener, die Kraftübertragung stufenlos ein- oder auszukuppeln, wodurch Stoßbelastungen reduziert und der Verschleiß der Antriebskomponenten minimiert werden. Nebenantriebswellen mit Reibkupplung werden häufig in Anwendungen eingesetzt, die eine präzise Steuerung der Kraftübertragung erfordern, beispielsweise in Hydraulikpumpen, Generatoren und Industriemischern.
4. Zapfwelle mit konstanter Drehzahl (CV): Gleichlauf-Zapfwellen (CV-Zapfwellen), auch als homokinetische Wellen bekannt, sind so konstruiert, dass sie große Winkelabweichungen ausgleichen, ohne die Kraftübertragung zu beeinträchtigen. Sie nutzen ein Universalgelenk, das eine gleichmäßige Kraftübertragung ermöglicht, selbst wenn die angetriebene Maschine schräg zur Antriebsquelle steht. CV-Zapfwellen werden häufig in Anwendungen eingesetzt, bei denen die Maschinen einen großen Bewegungsspielraum oder eine hohe Gelenkigkeit erfordern, wie beispielsweise bei Knickladern, Teleskopladern und selbstfahrenden Feldspritzen.
5. Teleskopierbare Zapfwelle: Teleskop-Zapfwellen sind längenverstellbar und ermöglichen so flexible Gerätekonfigurationen sowie unterschiedliche Abstände zwischen Antriebsquelle und angetriebener Maschine. Sie bestehen aus zwei oder mehr konzentrischen Wellen, die ineinander gleiten und so das Aus- und Einfahren der Zapfwelle je nach Bedarf ermöglichen. Teleskop-Zapfwellen kommen häufig dort zum Einsatz, wo der Abstand zwischen Traktor-Zapfwelle und Anbaugerät variiert, beispielsweise bei Frontanbaugeräten, Schneefräsen und selbstladenden Anhängern. Die Teleskopkonstruktion ermöglicht eine einfache Anpassung an verschiedene Gerätekonfigurationen und minimiert das Risiko, dass die Zapfwelle über den Boden schleift.
6. Getriebe-Zapfwelle: Zapfwellen mit Getriebe dienen der Kraftübertragung bei unterschiedlichen Drehzahlen und Drehrichtungen. Sie verfügen über ein Getriebe, das die Drehzahl reduziert oder erhöht sowie die Drehrichtung ändert. Zapfwellen mit Getriebe werden häufig dort eingesetzt, wo die angetriebene Maschine eine andere Drehzahl oder Drehrichtung benötigt als die Zapfwelle des Traktors. Beispiele hierfür sind Getreideförderschnecken, Futtermischwagen und Industrieanlagen, die bestimmte Übersetzungsverhältnisse oder eine Umkehrfunktion erfordern.
Es ist wichtig zu beachten, dass die Verfügbarkeit und die spezifischen Einsatzmöglichkeiten von Zapfwellen je nach regionalen und branchenspezifischen Faktoren variieren können. Darüber hinaus können bestimmte Maschinen oder Anbaugeräte spezielle oder kundenspezifische Zapfwellen erfordern, um spezifische Anforderungen zu erfüllen.
Zusammenfassend bieten die verschiedenen Zapfwellentypen – wie Standard-, Scherbolzen-, Reibkupplungs-, Gleichlauf- (CV-), Teleskop- und Getriebewellen – Vielseitigkeit und Kompatibilität mit unterschiedlichsten Maschinen und Anbaugeräten. Jeder Zapfwellentyp ist für spezifische Anforderungen ausgelegt, beispielsweise hinsichtlich Kraftübertragungseffizienz, Sicherheit, sanftem Eingriff, Toleranz gegenüber Fluchtungsfehlern, Anpassungsfähigkeit und Drehzahl-/Drehrichtungseinstellung. Das Verständnis der verschiedenen Zapfwellentypen und ihrer Anwendungsbereiche ist entscheidend für die Auswahl der passenden Welle für die jeweilige Maschine und gewährleistet optimale Leistung und Zuverlässigkeit.

editor by CX 2023-09-26