Description du produit
CE Certificate Agricultural Machinery Potato Harvester Spare Parts Cardan Pto Drive Shaft and Farm Tractor Pto Shaft
Description du produit
A Power Take-Off shaft (PTO shaft) is a mechanical device utilized to transmit power from a tractor or other power source to an attached implement, such as a mower, tiller, or baler. Typically situated at the rear of the tractor, the PTO shaft is driven by the tractor’s engine through the transmission.
The primary purpose of the PTO shaft is to supply a rotating power source to the implement, enabling it to carry out its intended function. To connect the implement to the PTO shaft, a universal joint is employed, allowing for movement between the tractor and the implement while maintaining a consistent power transfer.
Voici nos avantages par rapport aux produits similaires en provenance de Chine :
1. Les étriers forgés rendent les arbres de prise de force suffisamment robustes pour l'utilisation et le fonctionnement ;
2. Dimensions internes standard pour assurer une installation sans encombre ;
3.Certifications CE et ISO pour garantir la qualité de nos produits ;
4. Emballage solide et professionnel pour garantir le bon état des marchandises à la réception.
Spécifications du produit
In farming, the most common way to transmit power from a tractor to an implement is by a driveline, connected to the PTO (Power Take Off) of the tractor to the IIC(Implement Input Connection). Drivelines are also commonly connected to shafts within the implement to transmit power to various mechanisms.
The following dimensions of the PTO types are available.
Type B:13/8″Z6(540 min)
Type D:13/8″Z21(1000 min)
Coupling a driveline to a PTO should be quick and simple because in normal use tractors must operate multiple implements. Consequently, yokes on the tractor-end of the driveline are fitted with a quick-disconnect system, such as push-pin or ball collar.
Specifications for a driveline, including the way it is coupled to a PTO, depend CHINAMFG the implement.
Yokes on the llc side are rarely disconnected and may be fastened by quick-lock couplings (push-pin or ball collar).
Taper pins are the most stable connection for splined shafts and are commonly used in yokes and torque limiters. Taper pins are also often used to connect internal drive shafts on drivelines that are not frequently disconnected.
Torque limiter and clutches must always be installed on the implement side of the primary driveline.
Emballage et expédition
Profil de l'entreprise
HangZhou Hanon Technology Co., Ltd est une entreprise moderne spécialisée dans le développement, la production, la vente et les services de pièces agricoles telles que les arbres de prise de force et les boîtes de vitesses, ainsi que de pièces hydrauliques telles que les cylindres, les vannes, les pompes à engrenages et les moteurs, etc.
Nous adhérons au principe de « Haute qualité, satisfaction client », en utilisant des technologies et des équipements de pointe pour garantir le respect de toutes les normes techniques de transmission. Nous privilégions l'humain et nous efforçons de créer un environnement de travail agréable et propice à l'épanouissement professionnel de chaque employé. Ainsi, chacun peut s'investir pleinement et en toute conscience chez Hanon Machinery.
FAQ
1.What’re your main products?
we currently product Agricultural Parts like PTO shaft and Gearboxes and Hydraulic parts like Cylinder , Valve ,Gear pump and motor.You can check the specifications for above product on our website and you can email us to recommend needed product per your specification too.
2.What’s your warranty terms?
One year.
3.What’s the lead time for a regular order?
Generally speaking, our regular standard product will need 30-45days, a bit longer for customized products. But we are very flexible on the lead time, it will depend on the specific orders.
4.What’s the payment term?
Lorsque nous vous établirons un devis, nous vous confirmerons les modalités de transaction (FOB, CIF, etc.).<br> Pour les marchandises produites en série, vous devez payer un acompte de 30% avant la production et un solde de 70% contre une copie des documents. Le moyen le plus courant est par T/T.
5.Can you send me a price list?
For all of our product, they are customized based on different requirements like length, ratio,voltage,and power etc. The price also varies according to annual quantity. So it’s really difficult for us to provide a price list. If you can share your detailed requirements and annual quantity, we’ll see what offer we can provide.
6.How to deliver the goods to us?
Habituellement, nous vous expédierons les marchandises par voie maritime.
Autres produits
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| Taper: | Agricultural Spare Part, Agricultural Spare Part |
|---|---|
| Usage: | Agricultural Products Processing, Farmland Infrastructure, Tillage, Harvester, Planting and Fertilization, Grain Threshing, Cleaning and Drying, Agricultural Machinery,Farm Tractor, Agricultural Products Processing, Farmland Infrastructure, Tillage, Harvester, Planting and Fertilization, Grain Threshing, Cleaning and Drying, Agricultural Machinery, Farm Tractor |
| Matériel: | Carbon Steel, 45cr Steel, Carbon Steel |
| Exemples : |
US$ 20/Pièce
1 pièce (commande minimale) | Commander un échantillon |
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| Personnalisation : |
Disponible
| Demande personnalisée |
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Frais d'expédition :
Frais de transport estimés par unité. |
concernant les frais de livraison et le délai de livraison estimé. |
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| Mode de paiement: |
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Paiement initial Paiement intégral |
| Devise: | US$ |
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| Retours et remboursements : | Vous pouvez demander un remboursement jusqu'à 30 jours après la réception des produits. |
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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.

How do PTO shafts contribute to the efficiency of agricultural operations?
Power Take-Off (PTO) shafts play a crucial role in improving the efficiency of agricultural operations by providing a versatile and reliable power source for various farming equipment. PTO shafts allow agricultural machinery to access power from tractors or other prime movers, enabling the efficient transfer of energy to perform a wide range of tasks. Here’s a detailed explanation of how PTO shafts contribute to the efficiency of agricultural operations:
1. Versatility: PTO shafts offer versatility by allowing the connection of different types of implements and machinery to tractors or other power sources. This versatility enables farmers to use a single power unit, such as a tractor, to operate multiple agricultural implements, including mowers, balers, tillers, seeders, sprayers, and more. The ability to quickly switch between various implements using a PTO shaft minimizes downtime and maximizes efficiency in agricultural operations.
2. Power Transfer: PTO shafts efficiently transfer power from the tractor’s engine to the agricultural implements. The rotating power generated by the engine is transmitted through the PTO shaft to drive the machinery connected to it. This direct power transfer eliminates the need for separate engines or motors on each implement, reducing equipment costs and maintenance requirements. PTO shafts ensure a reliable power supply, allowing agricultural operations to be carried out efficiently and effectively.
3. Increased Productivity: By utilizing PTO shafts, agricultural operations can be performed more quickly and efficiently than manual or alternative power methods. PTO-driven machinery typically operates at higher speeds and with greater power compared to human-operated or manual tools. This increased productivity allows farmers to complete tasks such as tilling, seeding, harvesting, and material handling more efficiently, reducing labor requirements and increasing overall farm productivity.
4. Time Savings: PTO shafts contribute to time savings in agricultural operations. The ability to connect and disconnect implements quickly using standardized PTO shafts allows farmers to switch between tasks rapidly. This saves time during equipment setup, as well as when transitioning between different operations in the field. Time efficiency is particularly valuable during critical farming periods, such as planting or harvesting, where timely execution is essential for optimal crop yield and quality.
5. Reduced Manual Labor: PTO shafts minimize the need for manual labor in strenuous or repetitive tasks. By harnessing the power of tractors or other prime movers, farmers can mechanize various operations that would otherwise require significant physical effort. Agricultural implements driven by PTO shafts can perform tasks such as plowing, mowing, and baling with minimal human intervention, reducing labor costs and improving overall efficiency.
6. Precision and Consistency: PTO shafts contribute to precision and consistency in agricultural operations. The consistent power supply from the PTO ensures uniform operation and performance of the connected machinery. This helps in achieving consistent seed placement, even spreading of fertilizers or chemicals, and precise cutting or harvesting of crops. Precision and consistency lead to improved crop quality, enhanced yield, and reduced waste, ultimately contributing to the overall efficiency of agricultural operations.
7. Adaptability to Various Terrain: PTO-driven machinery is highly adaptable to various types of terrain encountered in agricultural operations. Tractors equipped with PTO shafts can traverse uneven or challenging terrain, allowing implements to operate effectively on slopes, rough fields, or hilly landscapes. This adaptability ensures that farmers can efficiently manage their land, regardless of topographical challenges, enhancing operational efficiency and productivity.
8. Integration with Automation and Technology: PTO shafts can be integrated with automation and technology advancements in modern agricultural practices. Automation systems, such as precision guidance and control, can be synchronized with PTO-driven machinery to optimize operations and minimize waste. Additionally, advancements in data collection and analysis allow farmers to monitor and optimize machine performance, fuel efficiency, and productivity, further enhancing the efficiency of agricultural operations.
By providing versatility, efficient power transfer, increased productivity, time savings, reduced manual labor, precision, adaptability to terrain, and integration with automation and technology, PTO shafts significantly contribute to enhancing the efficiency of agricultural operations. They enable farmers to perform a wide range of tasks with ease, ultimately improving productivity, reducing costs, and supporting sustainable farming practices.

What is a PTO shaft and how is it used in agricultural and industrial equipment?
A power take-off (PTO) shaft is a mechanical component used in agricultural and industrial equipment to transfer power from a power source, such as an engine or motor, to another machine or implement. It is a driveline shaft that transmits rotational power and torque, allowing the connected equipment to perform various tasks. PTO shafts are commonly used in agricultural machinery, such as tractors, as well as in industrial equipment, including generators, pumps, and construction machinery. Here’s a detailed explanation of what a PTO shaft is and how it is used:
Structure and Components: A typical PTO shaft consists of a hollow metal tube with universal joints at each end. The hollow tube allows the shaft to rotate freely, while the universal joints accommodate angular misalignments between the power source and the driven equipment. The universal joints consist of a cross-shaped yoke with needle bearings, providing flexibility and allowing the transmission of power at varying angles. Some PTO shafts may also include a telescopic section to adjust the length for different equipment setups or to accommodate varying distances between the power source and the driven machine.
Power Transfer: The primary function of a PTO shaft is to transfer power and torque from the power source to the driven equipment. The power source, typically an engine or motor, drives the PTO shaft through a mechanical connection, such as a gearbox or a clutch. As the power source rotates, it transmits rotational force to the PTO shaft. The PTO shaft, in turn, transfers this rotational power and torque to the driven equipment, enabling it to perform its intended function. The torque and rotational speed transmitted through the PTO shaft depend on the power source’s characteristics and the gear ratio or clutch engagement.
Agricultural Applications: In agriculture, PTO shafts are commonly used in tractors to power various implements and attachments. The PTO shaft is connected to the tractor’s power take-off, a rotating drive shaft located at the rear of the tractor. By engaging the PTO clutch, the tractor’s engine power is transferred through the PTO shaft to the attached implements. Agricultural machinery, such as mowers, balers, tillers, sprayers, and grain augers, often rely on PTO shafts to receive power for their operation. The PTO shaft allows the implements to be powered directly by the tractor’s engine, eliminating the need for separate power sources and increasing the versatility and efficiency of agricultural operations.
Industrial Applications: PTO shafts also find extensive use in various industrial applications. Industrial equipment, such as generators, pumps, compressors, and industrial mixers, often incorporate PTO shafts to receive power from engines or electric motors. The PTO shaft connects the power source to the driven equipment, allowing it to operate and perform its intended function. In construction machinery, PTO shafts can be found in equipment like concrete mixers, hydraulic hammers, and post hole diggers, enabling the transfer of power from the machinery’s engine to the specific attachment or tool being used.
Safety Considerations: It is important to note that PTO shafts can pose safety risks if not handled properly. The rotating shaft can cause serious injuries if operators come into contact with it while it is in operation. To ensure safety, PTO shafts are often equipped with shielding or guards that cover the rotating shaft and universal joints, preventing accidental contact. It is crucial to maintain and inspect these safety features regularly to ensure their effectiveness. Additionally, operators should receive proper training on PTO shaft operation, including safe attachment and detachment procedures, as well as the use of personal protective equipment when working near PTO-driven machinery.
In summary, a PTO shaft is a mechanical component used in agricultural and industrial equipment to transmit power and torque from a power source to a driven machine or implement. It enables the direct power transfer from engines or motors to various equipment, increasing efficiency and versatility in agricultural and industrial operations. While PTO shafts offer significant benefits, operators must be aware of the associated safety considerations and take appropriate precautions to prevent accidents and injuries.


editor by CX 2024-03-15