Description du produit
Description du produit
1. Single yoke for pairing with another yoke using a centering kit to make a universal joint
2.Forged steel for strength and durability
3.For assembly with UJSC center kit
4.Keyway and set screws for secure attachment to shaft
Here is our advantages when compare to similar products from China:
1.Forged yokes make PTO shafts strong enough for usage and working;
2.Internal sizes standard to confirm installation smooth;
3.CE and ISO certificates to guarantee to quality of our goods;
4.Strong and professional package to confirm the good situation when you receive the goods.
Product Specifications
| SPLINED YOKE | PLAIN BORE YOKE |
Packaging & Shipping
Profil de l'entreprise
HangZhou Hanon Technology Co.,ltd is a modern enterprise specilizing in the development,production,sales and services of Agricultural Parts like PTO shaft and Gearboxes and Hydraulic parts like Cylinder , Valve ,Gearpump and motor etc..
We adhere to the principle of ” High Quality, Customers’Satisfaction”, using advanced technology and equipments to ensure all the technical standards of transmission .We follow the principle of people first , trying our best to set up a pleasant surroundings and platform of performance for each employee. So everyone can be self-consciously active to join Hanon Machinery.
FAQ
1.WHAT’S THE PAYMENT TERM?
When we quote for you,we will confirm with you the way of transaction,FOB,CIFetc.<br> For mass production goods, you need to pay 30% deposit before producing and70% balance against copy of documents.The most common way is by T/T.
2.HOW TO DELIVER THE GOODS TO US?
Usually we will ship the goods to you by sea.
3.How long is your delivery time and shipment?
30-45days
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| Taper: | Yoke |
|---|---|
| Usage: | Agricultural Products Processing, Farmland Infrastructure, Tillage, Harvester, Planting and Fertilization, Grain Threshing, Cleaning and Drying |
| Matériel: | 45cr Steel |
| Power Source: | Pto Dirven Shaft |
| Weight: | 0.7-3.5kg |
| Service après-vente : | Online Support |
| Exemples : |
US$ 20/Piece
1 pièce (commande minimale) | |
|---|
| Personnalisation : |
Disponible
| Demande personnalisée |
|---|

What maintenance practices are essential for prolonging the lifespan of PTO drive shafts?
To prolong the lifespan and ensure the optimal performance of PTO (Power Take-Off) drive shafts, regular maintenance practices are essential. By following these maintenance practices, operators can prevent premature wear, identify potential issues early on, and maximize the longevity of the drive shaft. Here are some key maintenance practices to consider:
1. Lubrication:
Proper lubrication is crucial for the smooth operation and longevity of PTO drive shafts. Regularly lubricate the drive shaft’s universal joints, splines, and other moving parts as per the manufacturer’s recommendations. Choose a high-quality lubricant suitable for the specific application and environmental conditions. Lubrication helps reduce friction, prevent excessive wear, and protect against corrosion.
2. Inspection:
Regular visual inspections are important for identifying any signs of wear, damage, or misalignment in the PTO drive shaft. Inspect the drive shaft and its components for cracks, dents, loose bolts, or signs of excessive wear. Pay attention to the universal joints, splines, shielding, and safety features. If any issues are detected, take prompt action to rectify them to prevent further damage and ensure safe operation.
3. Torque Checks:
Periodically check the torque on fasteners, such as bolts and nuts, that secure the PTO drive shaft and its components. Vibrations and normal operation can cause these fasteners to loosen over time, potentially leading to misalignment or damage. Use a torque wrench to ensure that the fasteners are properly tightened according to the manufacturer’s specifications. Regular torque checks help maintain the integrity and stability of the drive shaft assembly.
4. Alignment:
Maintaining proper alignment between the PTO drive shaft, the primary power source, and the implement is essential for efficient power transfer and preventing excessive wear. Check the alignment of the drive shaft regularly, ensuring that it is straight and properly seated in its connections. Misalignment can cause vibration, increased stress, and premature failure. Make adjustments as necessary to achieve proper alignment.
5. Shear Pin or Torque Limiter Replacement:
If the PTO drive shaft is equipped with a shear pin or torque limiter as a safety feature, it is important to replace these components when they have been activated or damaged. Shear pins are sacrificial components that break under excessive torque, protecting the drive shaft and connected equipment. Replace the shear pin or torque limiter with the correct type and specifications recommended by the manufacturer to ensure continued safety and proper function.
6. Shielding and Guarding:
Inspect the shielding and guarding of the PTO drive shaft regularly to ensure they are intact and in good condition. These protective covers are designed to prevent contact with moving parts and reduce the risk of entanglement or injury. Replace any damaged or missing shielding promptly to maintain operator safety and prevent debris from entering the drive shaft assembly.
7. Environmental Protection:
Consider the environmental conditions in which the PTO drive shaft operates and take appropriate measures to protect it. If the drive shaft is exposed to moisture, dirt, or corrosive substances, clean it regularly and apply appropriate coatings or protective measures to prevent rust and corrosion. Additionally, ensure that the drive shaft is stored in a dry and clean environment when not in use.
8. Manufacturer’s Guidelines:
Follow the maintenance guidelines provided by the manufacturer of the PTO drive shaft. These guidelines may include specific maintenance intervals, recommended lubricants, torque specifications, and other important instructions. Adhering to the manufacturer’s guidelines ensures that the drive shaft is maintained in accordance with its design and engineering specifications, maximizing its lifespan and performance.
By implementing these essential maintenance practices, operators can significantly prolong the lifespan of PTO drive shafts. Regular lubrication, inspections, torque checks, alignment checks, timely replacement of safety features, proper shielding and guarding, environmental protection, and adherence to manufacturer’s guidelines all contribute to the drive shaft’s longevity, reliability, and safe operation.

Comment les arbres de transmission à prise de force améliorent-ils les performances des tracteurs et des machines agricoles ?
Les arbres de transmission à prise de force (PDF) jouent un rôle essentiel dans l'amélioration des performances des tracteurs et des machines agricoles. Ils constituent un mécanisme de transmission de puissance fiable et efficace, permettant diverses fonctions et améliorant la productivité globale. Voici comment les arbres de transmission à prise de force améliorent les performances des tracteurs et des machines agricoles :
1. Polyvalence et compatibilité :
Les arbres de transmission à prise de force (PDF) sont conçus pour être polyvalents et compatibles avec une large gamme d'outils et de machines agricoles. Disponibles en tailles et configurations standardisées, ils permettent un raccordement et un débranchement faciles des outils. Cette compatibilité permet aux agriculteurs et aux opérateurs de passer rapidement d'un outil à l'autre, tels que charrues, faucheuses, presses à balles et semoirs, sans nécessiter de modifications importantes de l'équipement. La polyvalence des arbres de transmission à prise de force améliore la flexibilité et l'efficacité des machines agricoles, leur permettant d'effectuer de multiples tâches avec aisance.
2. Transfert de puissance :
L'une des principales fonctions des arbres de transmission à prise de force (PDF) est de transmettre la puissance du moteur du tracteur aux différents outils agricoles. Ils transmettent la puissance de rotation à une vitesse constante, permettant ainsi aux outils d'accomplir efficacement leurs tâches. Cette transmission directe de puissance élimine le besoin de moteurs électriques sur chaque outil, ce qui représente un gain de temps et de ressources. Les arbres de transmission à prise de force constituent un moyen fiable et efficace de transmission de puissance, garantissant des performances optimales du matériel agricole.
3. Productivité accrue :
En permettant le raccordement de différents outils, les prises de force contribuent significativement à l'augmentation de la productivité. Les tracteurs équipés de prises de force peuvent passer rapidement d'une tâche à l'autre, comme le labour, le semis et la récolte, sans interruption prolongée ni changement d'équipement. Les agriculteurs peuvent ainsi optimiser l'utilisation de leur matériel et réaliser leurs travaux dans les délais impartis. La facilité de raccordement et de débranchement des outils grâce aux prises de force améliore la productivité globale des opérations agricoles.
4. Gain de temps :
Les prises de force (PDF) jouent un rôle crucial dans le gain de temps lors des travaux agricoles. Elles éliminent le besoin de main-d'œuvre manuelle ou animale, permettant ainsi des opérations plus rapides et plus efficaces. Grâce aux prises de force, les machines agricoles peuvent effectuer des tâches telles que le labour, le binage et la tonte à un rythme constant et performant. Ce gain de temps accroît la productivité globale de l'exploitation et permet aux agriculteurs de couvrir de plus grandes surfaces en moins de temps.
5. Contrôle précis de la puissance :
Les arbres de transmission à prise de force (PDF) offrent un contrôle précis de la puissance, permettant aux opérateurs d'ajuster la vitesse de rotation des outils en fonction des exigences de la tâche. Ce contrôle est particulièrement précieux pour des travaux tels que la tonte ou la pulvérisation, où différents types de végétation ou de cultures peuvent nécessiter des réglages de puissance spécifiques. Grâce aux arbres de transmission à prise de force, les opérateurs peuvent optimiser la puissance délivrée pour obtenir des résultats optimaux, garantissant ainsi le bon fonctionnement et l'efficacité des machines agricoles.
6. Réduction de la fatigue de l'opérateur :
L'utilisation de la prise de force (PDF) réduit la pénibilité physique des opérateurs. Au lieu de s'appuyer sur la force manuelle ou la traction animale pour actionner les outils, les opérateurs peuvent exploiter la puissance transmise par la PDF. Cela réduit la fatigue et leur permet de travailler plus longtemps sans épuisement excessif. La réduction de la fatigue des opérateurs contribue à une productivité accrue et à une meilleure performance globale des travaux agricoles.
7. Intégration aux technologies modernes :
Les arbres de transmission de la prise de force (PDF) s'intègrent aux technologies et systèmes de commande des tracteurs modernes. Cette intégration permet un contrôle précis et aisé de l'engagement et du désengagement de la PDF, de la vitesse de rotation et d'autres paramètres. Les tracteurs équipés d'arbres de transmission de PDF peuvent être intégrés aux systèmes de guidage GPS, aux technologies d'agriculture de précision et aux systèmes de gestion des données, optimisant ainsi les performances et l'efficacité des opérations agricoles.
8. Facilité d'entretien :
Les arbres de transmission de la prise de force sont généralement conçus pour faciliter l'entretien. Ils comportent souvent des points de lubrification accessibles, des orifices d'inspection et des composants remplaçables, ce qui simplifie leur maintien en bon état de fonctionnement. Un entretien régulier garantit des performances optimales, réduit les risques de pannes inattendues et maximise l'efficacité des tracteurs et des machines agricoles.
En résumé, les arbres de transmission à prise de force (PDF) améliorent les performances des tracteurs et des machines agricoles en leur offrant une grande polyvalence, en permettant la transmission de la puissance, en augmentant la productivité, en faisant gagner du temps, en assurant un contrôle précis de la puissance, en réduisant la fatigue de l'opérateur, en s'intégrant aux technologies modernes et en facilitant la maintenance. Grâce aux capacités offertes par les arbres de transmission à prise de force, les agriculteurs et les opérateurs peuvent optimiser l'utilisation de leurs machines, ce qui se traduit par une amélioration de la productivité et de la rentabilité agricoles.

How do PTO drive shafts handle variations in speed, torque, and angles of rotation?
PTO (Power Take-Off) drive shafts are designed to handle variations in speed, torque, and angles of rotation, allowing for efficient power transmission between the primary power source and the implement or machinery. These variations can occur due to differences in equipment sizes, operating conditions, and the specific tasks being performed. Here’s a detailed explanation of how PTO drive shafts handle these variations:
1. Speed Variations:
PTO drive shafts are engineered to accommodate speed variations between the primary power source and the implement. They achieve this through a combination of factors:
- Splined Connections: PTO drive shafts are equipped with splined connections at both ends, allowing for a secure and precise connection to the PTO output shaft and the implement input shaft. These splines provide flexibility to adjust the length of the drive shaft and accommodate different speed requirements.
- Telescoping or Sliding Mechanism: Some PTO drive shafts feature a telescoping or sliding mechanism that allows for length adjustment. This mechanism enables the drive shaft to handle speed variations by extending or retracting to maintain proper alignment and prevent excessive tension or binding. It allows the drive shaft to operate efficiently even when the distance between the primary power source and the implement changes.
- Shear Pins or Clutch Mechanism: In situations where there is a sudden increase in speed or an overload, PTO drive shafts may incorporate shear pins or a clutch mechanism. These safety features are designed to disconnect the drive shaft from the primary power source, preventing damage to the drive shaft and associated equipment.
2. Torque Variations:
PTO drive shafts are built to handle variations in torque, which are often encountered when powering different types of implements and machinery. Here’s how they manage torque variations:
- Splined Connections: The splined connections on the drive shaft and the PTO output shaft provide a secure and robust connection that can transmit high levels of torque. The splines ensure proper alignment and torque transfer between the two shafts, allowing the drive shaft to handle varying torque demands.
- Shear Pins or Clutch Mechanism: Similar to handling speed variations, shear pins or a clutch mechanism can be incorporated into PTO drive shafts to protect them from excessive torque. In the event of an overload or sudden increase in torque, these safety features disengage the drive shaft from the primary power source, preventing damage to the drive shaft and the connected equipment.
- Reinforced Construction: PTO drive shafts are typically constructed using durable materials such as steel or composite alloys. This robust construction allows them to withstand high torque levels and handle variations without compromising their structural integrity.
3. Angles of Rotation:
PTO drive shafts are designed to accommodate variations in angles of rotation between the primary power source and the implement. Here’s how they address these variations:
- Flexible Design: PTO drive shafts are flexible in nature, allowing them to adapt to different angles of rotation. The splined connections and telescoping or sliding mechanisms mentioned earlier provide the necessary flexibility to handle angular variations without compromising power transmission.
- Universal Joints: In situations where there are significant angular variations, PTO drive shafts may incorporate universal joints. Universal joints allow for smooth power transmission even when the input and output shafts are misaligned or at different angles. They accommodate the changes in rotational direction and compensate for angular variations, ensuring efficient power transfer.
By incorporating features such as splined connections, telescoping or sliding mechanisms, shear pins or clutch mechanisms, reinforced construction, and universal joints, PTO drive shafts can handle speed variations, torque variations, and angles of rotation. These design elements enable efficient power transmission and ensure the smooth operation of implements and machinery across different tasks and operating conditions.


editor by CX 2024-04-04