Description du produit
Quality Shaft Selection: Drive, Gear, Cardan, Transmission, Rotor, Propeller, Motor, Spline, Axle, Steel, Flexible, and PTO Shafts Available
| Materials | Carbon steel: 10#, 18#, 1018, 22#, 1571, 40Cr, 45#, 1045, 50#, 55#, 60#, 65Mn, 70#, 72B, 80#, 82B Alloy Structure Steel: B7, 20CrMo, 42Crmo, SCM415, SCM440, 4140 High-carbon chromium bearing steel: GCr15, 52100, SUJ2 Free-cutting steel: 12L14, 12L15 Stainless steel: 1Cr13, 2Cr13, 3Cr13, 4Cr13, 1Cr17, SUS410, SUS420, SUS430, SUS416, SUS440C, 17-4, 17-4PH, 130M, 200, 201, 202, 205, 303, 303Cu, 304, 316, 316L Aluminum grade: 6061, 6063 Brass: Hpb58-2.5 (C38000), Hpb59-1 (C37710), Hpb61-1 (C37100), Hpb62-0.8 (C35000), Hpb63-0.1 (C34900), Hpb63-3 (C34500), H60, H62, H63, H65 |
| Diameter | Ø0.3-Ø25 |
| Diameter tolerance | 0.002mm |
| Roundness | 0.0005mm |
| Roughness | Ra0.05 |
| Straightness | 0.005mm |
| Hardness: | HRC/HV |
| Length | 2mm-1000mm |
| Heat treatment | 1. Oil Quenching 2. High frequency quenching 3. Carburization 4. Vacuum Heat treatment 5. Mesh belt CZPT heat treatment |
| Surface treatment | 1. Plating nickel 2. Plating zinc 3. Plating passivation 4. Plating phosphating 5. Black coating 6. Anodized treatment |
| Package | Plastic bags inside and standard cartons outside. Shipment by pallets or according to customer’s packing specifications. |
| Warranty Policy | We confirm our qualities satisfy to 99.9%, and have 6-month quality warranty |
| Service après-vente | We will follow up the requst strictly for customers and will help customers solve problems after sale. |
Swiss High-Precision CNC Machining Process
Other Category From Cold Forging Process
Profil de l'entreprise
HangZhou CZPT is an integrated manufacturing and trading enterprise with over 30 years of experience. We specialize in providing customized solutions for non-standard fasteners, CNC machined parts, stamping parts, and other metal products. With a sprawling facility covering an area of 5,500 square meters, we have 3 workshops including cold heading, stamping, and cnc machining.
At Hanyee Metal, we take pride in our commitment to delivering high-quality products and tailor-made solutions to meet our customers’ specific needs. Our team of skilled professionals ensures precision and CZPT in every aspect of the manufacturing process. Whether it’s fasteners for unique applications, intricately machined parts, or precision-stamped components, we have the capabilities to exceed your expectations.
Hanyee’s products exporting to more than 30 countries, especially in North American and European markets. Being the supplier for famous brands like : ITW, Ruen, Infenion, WMG,Fnox, ects. many years.
inspection
Exhibiting
Customer reception
Packaging and transportation
Customer feedback
FAQ
Q: Please send your price list for our reference.
A: We do not have standard price list because we produce according to customer design.
We can provide the quotation for your inquiries in a shortest possible time.
Q:Please quote the price for me
A: Our standard response time is 2 working hours, once you confirm the demand and drawing we shall provide the quote within 12 working hours.
Q:Can I get some sample?
A: Sure. We believe sample order is a good way to start our cooperation.
If it is a standard product, it would be for free but freight on your account.
If customized, we shall prepare the sample after receipt of development cost.
Q: Have FASTENERS 100% assembled well in stock?
A: Some of standard size is in stock. Most is OEM item out of stock.
Q: Could I use my own LOGO or design on goods?
A: Yes, Customized logo and design on mass production are available.
Q: What is the delivery time?
A: Our lead time for samples is 1 week; 15-30 days for mass production. It is usually according to the quantity and items.
Q:What payment do you accept?
A: We accept T/T, West Union,L/C,Trade Assurance in Alibaba.
Q: Can I trust you?
A: Absolutely! We are “Made In China” & “Alibaba” verified supplier.
Q: May I visit your factory?
A: You are welcome to visit us anytime. We can also pick you up from nearest airport and Train station.
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| Matériel: | Acier au carbone |
|---|---|
| Charger: | Transmission Shaft |
| Rigidité et flexibilité : | Arbre flexible |
| Journal Diameter Dimensional Accuracy: | IT01-IT5 |
| Forme de l'axe : | Arbre droit |
| Forme de la tige : | Stepped Shaft |
| Exemples : |
US$ 10/Piece
1 pièce (commande minimale) | |
|---|
| Personnalisation : |
Disponible
| Demande personnalisée |
|---|

How do PTO drive shafts handle variations in length and connection methods?
PTO (Power Take-Off) drive shafts are designed to handle variations in length and connection methods, allowing them to be adaptable to different equipment setups and applications. These variations are accommodated through the following features and mechanisms:
1. Telescoping Design:
Many PTO drive shafts are designed with a telescoping mechanism, which enables the length of the drive shaft to be adjusted. Telescoping allows for flexibility in matching the distance between the power source (e.g., tractor PTO) and the driven equipment. By extending or retracting the telescoping sections of the drive shaft, operators can achieve the desired length and ensure proper alignment. This feature is particularly useful when connecting equipment that may have varying distances from the power source.
2. Overlapping Tubes:
PTO drive shafts often consist of multiple tubes that overlap when the drive shaft is fully collapsed. These overlapping tubes provide structural stability and allow for the length adjustment of the drive shaft. By extending or retracting the drive shaft, the overlapping tubes slide within each other, accommodating variations in length. The overlapping tube design ensures that the drive shaft maintains its integrity and alignment during operation.
3. Splined Connections:
PTO drive shafts typically feature splined connections, which provide a secure and reliable method of joining the drive shaft components. Splines are ridges or teeth machined onto the drive shaft and mating component, such as the yoke or flange. The splined connections allow for angular misalignment and axial movement while transmitting power smoothly. They can accommodate variations in length by allowing the drive shaft to extend or retract without compromising the torque transfer capabilities.
4. Locking Mechanisms:
To ensure the stability and safety of the PTO drive shaft, locking mechanisms are incorporated into the design. These mechanisms secure the telescoping sections or splined connections in place once the desired length is achieved. Common locking mechanisms include spring-loaded pins, quick-release collars, or locking rings. These mechanisms prevent unintentional movement or separation of the drive shaft components during operation, ensuring a secure connection even under dynamic loads.
5. Universal Joints:
Universal joints are integral components of PTO drive shafts that allow for angular misalignment between the driving and driven shafts. They consist of two yokes connected by a cross-shaped bearing. Universal joints accommodate variations in length and connection angles, allowing the drive shaft to transfer power smoothly and efficiently even when the equipment is not perfectly aligned. The flexibility of universal joints helps compensate for any misalignment caused by changes in length or connection methods.
6. Adapters and Couplings:
In situations where there are differences in connection methods or sizes between the power source and the driven equipment, adapters and couplings can be used. These components bridge the gap between different connection types, allowing the PTO drive shaft to be compatible with a wider range of equipment. Adapters and couplings may include flanges, spline adapters, or quick-detach couplers, depending on the specific connection requirements.
7. Customization Options:
Manufacturers of PTO drive shafts often provide customization options to accommodate specific length and connection requirements. Customers can request drive shafts of different lengths or specify the types of connections needed for their particular equipment. Customization allows for precise tailoring of the PTO drive shafts to match the equipment setup, ensuring optimal performance and compatibility.
In summary, PTO drive shafts handle variations in length and connection methods through telescoping designs, overlapping tubes, splined connections, locking mechanisms, universal joints, adapters, couplings, and customization options. These features and mechanisms provide the necessary flexibility and adjustability to accommodate different equipment setups and ensure efficient power transfer. Whether it’s adjusting the length, adapting to varying connection types, or compensating for misalignment, PTO drive shafts are designed to handle the variations encountered in different applications and industries.

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.

Can you explain the components and function of a PTO drive shaft system?
A PTO (Power Take-Off) drive shaft system consists of several components that work together to transfer power from a primary power source, such as a tractor or engine, to various implements or machinery. Each component plays a specific role in ensuring the efficient and reliable transmission of rotational power. Here’s a detailed explanation of the components and their functions within a PTO drive shaft system:
1. Primary Power Source:
The primary power source is typically a tractor or engine equipped with a PTO output shaft. This shaft generates rotational power from the engine’s crankshaft or transmission, acting as the starting point for power transmission.
2. PTO Output Shaft:
The PTO output shaft is a rotating shaft located on the primary power source, specifically designed to transfer power to external devices. It is typically located at the rear of a tractor and may have various spline configurations to accommodate different types of PTO drive shafts.
3. PTO Drive Shaft:
The PTO drive shaft is the main component of the system, responsible for transmitting power from the primary power source to the implement or machinery. It consists of a rotating shaft with splines at both ends. One end connects to the PTO output shaft, while the other end connects to the input shaft of the implement. The drive shaft rotates at the same speed as the primary power source, effectively delivering power to the implement.
4. Splined Connections:
The splined connections on the PTO drive shaft and the PTO output shaft of the primary power source provide a secure and robust connection. These splines ensure proper alignment and torque transmission between the two shafts, enabling efficient power transfer while accommodating varying distances and alignments.
5. Safety Guards and Shields:
PTO drive shaft systems often incorporate safety guards and shields to protect operators from potential hazards associated with rotating components. These guards and shields cover the rotating parts of the drive shaft, reducing the risk of entanglement or contact during operation.
6. Telescoping or Sliding Mechanism:
Some PTO drive shafts feature a telescoping or sliding mechanism. This allows the drive shaft to be adjusted in length, accommodating different distances between the primary power source and the implement. The telescoping or sliding mechanism ensures proper alignment and prevents excessive tension or binding of the drive shaft.
7. Shear Pins or Clutch Mechanism:
To protect the PTO drive shaft and the machinery from excessive loads or sudden shocks, shear pins or a clutch mechanism may be incorporated. These safety features are designed to disconnect the drive shaft from the primary power source in the event of an overload or sudden impact, preventing damage to the drive shaft and associated equipment.
8. Maintenance and Lubrication Points:
PTO drive shaft systems require regular maintenance and lubrication to ensure optimal performance and longevity. Lubrication points are typically provided to allow for the application of grease or oil to reduce friction and wear. Regular inspections and maintenance help identify any issues or wear in the components, ensuring safe and efficient operation.
9. Implement Input Shaft:
The implement input shaft is the counterpart to the PTO drive shaft on the implement or machinery side. It connects to the PTO drive shaft and receives power for driving the specific machinery or performing various tasks. The input shaft is precisely aligned with the drive shaft to ensure efficient power transfer.
In summary, a PTO drive shaft system consists of components such as the primary power source, PTO output shaft, PTO drive shaft, splined connections, safety guards, telescoping or sliding mechanisms, shear pins or clutch mechanisms, maintenance and lubrication points, and the implement input shaft. Together, these components enable the efficient and reliable transfer of rotational power from the primary power source to the implement or machinery, allowing for a wide range of tasks and applications in agricultural and industrial settings.


editor by CX 2024-05-09