Description du produit
Parameter specifications
| Certification | Expédition | Qualité | material | Certification du système d'entreprise |
| IATF16949 | in time | high | steel | ISO9001 |
Profil de l'entreprise
HangZhou Xihu (West Lake) Dis. East Port Gear Manufacturing factory is located in Zhoujia Industrial Zone, CHINAMFG Town, HangZhou, 3km away from Xihu (West Lake) Dis.qian Lake. It focuses on precision gear research, development, production and sales. The factory has obtained ISO9001: 2015 certificate, IATF16949:2016. The main export markets were North America, South America and Europe. Products can be customized and mainly includes: New Energy Motor Shaft, Oil Pump Gear, Agricultural Machinery Gear, Transmission Gear, Electric Vehicle gear, etc. We are sincerely willing to cooperate with enterprises from all over the world.
Equipment And Main Products
Certifications
FAQ
Q1:How is the quality of your product?
A:Our product has reliable quality, high wear life
Q2:Customization process/work flow?
Advisory – Material selection – 2D/3D Drawing – Quotation – Payment – Production – Quality Control – Package – Delivery
Q3: What is your terms of packing?
A:Generally, we pack our goods in wooden cases, If you have special request about packing, pls negotiate with us in advance, we can pack the goods as your request.
Q4:Price?
A:We will offer competitive price after receiving your drawing
Q5:What is your terms of payment?
A:30% T/T advanced, 70% T/T before shipping
Q6:What is your terms of delivery?
A: FOB
Q7:What drawing software does your company use?
A:CAXA
Q8:Do you test all your goods before delivery?
A: Yes, we have 100% test before delivery
Q9:How about your delivery time?
A:Product can often be delivered within 40-90 days
Q10:Sample?
A:We offer paid sample.If you have sample requirements, please feel free to contact us at any time
Q11:What logistics packaging does your company use?
A:Express for urgent orders. UPS, FedEx, DHL, TNT, EMS.
Q12:Application range?
A:Automotive, medical, automation, agricultural, marine, etc.
Q13: How do you make our business long-term and good relationship?
A:1. We keep good quality and competitive price to ensure our customers benefit ;
2. We respect every customer as our friend and we sincerely do business and make friends with them,
no matter where they come from.
/* 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(/(.*?):(.*)$/))&&1
| Application: | Motor, Electric Cars, Motorcycle, Machinery, Agricultural Machinery, Car |
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| Hardness: | Hardened Tooth Surface |
| Gear Position: | External Gear |
| Exemples : |
US$ 50/Piece
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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Quelles sont les pratiques d'entretien essentielles pour prolonger la durée de vie des arbres de prise de force ?
Un entretien régulier et approprié des arbres de prise de force (PDF) est essentiel pour prolonger leur durée de vie et garantir des performances optimales. En suivant les bonnes pratiques d'entretien, vous pouvez prévenir l'usure prématurée, identifier rapidement les problèmes potentiels et maximiser la longévité de vos arbres de PDF. Voici quelques points clés à prendre en compte :
1. Inspection régulière : Effectuez des inspections visuelles régulières de l'arbre de prise de force afin de détecter tout signe de dommage, d'usure ou de désalignement. Recherchez les fissures, les bosses, les sections tordues ou les composants desserrés. Inspectez les joints universels, les mécanismes d'accouplement, les protections et les autres pièces associées. Soyez attentif à tout bruit inhabituel, vibration ou changement de performance, car cela peut indiquer des problèmes sous-jacents nécessitant une intervention.
2. Lubrification : Une lubrification adéquate est essentielle au bon fonctionnement et à la longévité des arbres de prise de force. Respectez les recommandations du fabricant concernant les intervalles de lubrification et utilisez le type de lubrifiant recommandé. Lubrifiez les joints de cardan, les joints homocinétiques (le cas échéant) et les autres pièces mobiles conformément aux spécifications. Contrôlez régulièrement le niveau de lubrifiant et faites l'appoint si nécessaire. Assurez-vous que le lubrifiant utilisé est compatible avec le matériau de l'arbre et qu'il n'attire pas la saleté ou les débris susceptibles de provoquer des abrasions ou des dommages.
3. Nettoyage : Veillez à ce que l'arbre de prise de force reste propre et exempt de saletés, de débris et autres contaminants. Nettoyez-le régulièrement à l'aide d'une brosse ou d'air comprimé afin d'éliminer toute accumulation de saletés, de graisse ou de résidus. Portez une attention particulière au nettoyage des joints de cardan et des zones de jonction de l'arbre avec d'autres composants. Ce nettoyage prévient l'accumulation de particules abrasives susceptibles d'accélérer l'usure et de nuire aux performances de l'arbre.
4. Inspection et entretien des gardes : Vérifiez régulièrement les protections et les écrans afin de vous assurer qu'ils sont bien en place et en bon état. Ces protections sont essentielles pour prévenir tout contact accidentel avec l'arbre rotatif et minimiser les risques de blessure. Réparez ou remplacez rapidement toute protection endommagée ou manquante. Assurez-vous que les protections sont correctement alignées et couvrent suffisamment toutes les pièces mobiles de l'arbre de prise de force.
5. Contrôles du couple et des fixations : Inspectez et vérifiez périodiquement le couple de serrage des fixations, telles que les boulons et les écrous, qui maintiennent l'arbre de prise de force et ses composants. Avec le temps, les vibrations et l'utilisation normale peuvent desserrer ces fixations et compromettre l'intégrité de l'arbre. Respectez les couples de serrage préconisés par le fabricant pour un serrage correct. Contrôlez régulièrement le serrage des fixations et resserrez-les si nécessaire.
6. Entretien du boulon de cisaillement ou de l'embrayage à friction : Si votre arbre de prise de force comporte des boulons de cisaillement ou un embrayage à friction, assurez-vous de leur bon fonctionnement. Inspectez les boulons de cisaillement afin de déceler toute usure ou tout dommage et remplacez-les si nécessaire. Vérifiez le réglage et le bon fonctionnement de l'embrayage à friction. Suivez les recommandations du fabricant concernant l'entretien et le réglage de ces dispositifs de sécurité afin de garantir leur efficacité dans la protection des composants de la transmission.
7. Stockage approprié : Lorsque l'arbre de prise de force n'est pas utilisé, rangez-le dans un endroit propre et sec. Protégez-le de l'humidité, des températures extrêmes et des substances corrosives. Si possible, rangez-le en position verticale pour éviter toute déformation. Pensez à utiliser des protections (capuchons, étuis, etc.) pour le préserver de la poussière, des saletés et autres sources potentielles de dommages.
8. Formation des opérateurs : Assurez une formation adéquate aux opérateurs sur le fonctionnement, l'entretien et les procédures de sécurité relatifs aux arbres de prise de force. Sensibilisez-les à l'importance des inspections régulières, de la lubrification et du respect des pratiques d'entretien recommandées. Encouragez-les à signaler rapidement toute anomalie ou tout problème afin de prévenir d'autres dommages et de garantir des réparations ou des réglages dans les meilleurs délais.
9. Conseils du fabricant et d'experts : Consultez les instructions et recommandations du fabricant concernant l'entretien spécifique à votre modèle d'arbre de prise de force. Par ailleurs, sollicitez l'avis d'experts ou de techniciens agréés spécialisés dans l'entretien des arbres de prise de force. Ils pourront vous apporter des conseils précieux et vous aider à mettre en œuvre les meilleures pratiques d'entretien pour vos arbres de prise de force.
En suivant ces pratiques d'entretien, vous prolongerez la durée de vie de vos arbres de prise de force, optimiserez leurs performances et réduirez les risques de pannes inattendues ou de réparations coûteuses. Inspections régulières, lubrification, nettoyage, entretien des protections, contrôles du couple de serrage et stockage adéquat sont essentiels pour garantir la longévité et la fiabilité de vos arbres de prise de force.

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.

How do PTO shafts handle variations in speed and torque requirements?
PTO shafts (Power Take-Off shafts) are designed to handle variations in speed and torque requirements between the power source (such as a tractor or engine) and the driven machinery or equipment. They incorporate various mechanisms and components to ensure efficient power transmission while accommodating the different speed and torque demands. Here’s a detailed explanation of how PTO shafts handle variations in speed and torque requirements:
1. Gearbox Systems: PTO shafts often incorporate gearbox systems to match the speed and torque requirements between the power source and the driven machinery. Gearboxes allow for speed reduction or increase and can also change the rotational direction if necessary. By using different gear ratios, PTO shafts can adapt the rotational speed and torque output to suit the specific requirements of the driven equipment. Gearbox systems enable PTO shafts to provide the necessary power and speed compatibility between the power source and the machinery they drive.
2. Shear Bolt Mechanisms: Some PTO shafts, particularly in applications where sudden overloads or shock loads are expected, use shear bolt mechanisms. These mechanisms are designed to protect the driveline components from damage by disconnecting the PTO shaft in case of excessive torque or sudden resistance. Shear bolts are designed to break at a specific torque threshold, ensuring that the PTO shaft separates before the driveline components suffer damage. By incorporating shear bolt mechanisms, PTO shafts can handle variations in torque requirements and provide a safety feature to protect the equipment.
3. Friction Clutches: PTO shafts may incorporate friction clutch systems to enable smooth engagement and disengagement of power transfer. Friction clutches use a disc and pressure plate mechanism to control the transmission of power. Operators can gradually engage or disengage the power transfer by adjusting the pressure on the friction disc. This feature allows for precise control over torque transmission, accommodating variations in torque requirements while minimizing shock loads on the driveline components. Friction clutches are commonly used in applications where smooth power engagement is essential, such as in hydraulic pumps, generators, and industrial mixers.
4. Constant Velocity (CV) Joints: In cases where the driven machinery requires a significant range of movement or articulation, PTO shafts may incorporate Constant Velocity (CV) joints. CV joints allow the PTO shaft to accommodate misalignment and angular variations without affecting power transmission. These joints provide a smooth and constant power transfer even when the driven machinery is at an angle relative to the power source. CV joints are commonly used in applications such as articulated loaders, telescopic handlers, and self-propelled sprayers, where the machinery requires flexibility and a wide range of movement.
5. Telescopic Designs: Some PTO shafts feature telescopic designs that allow for length adjustment. These shafts consist of two or more concentric shafts that slide within each other, providing the ability to extend or retract the PTO shaft as needed. Telescopic designs accommodate variations in the distance between the power source and the driven machinery. By adjusting the length of the PTO 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 applications where the distance between the power source and the implement varies, such as in front-mounted implements, snow blowers, and self-loading wagons.
By incorporating these mechanisms and designs, PTO shafts can handle variations in speed and torque requirements effectively. They provide the necessary flexibility, safety, and control to ensure efficient power transmission between the power source and the driven machinery. PTO shafts play a critical role in adapting power to meet the specific needs of various equipment and applications.


editor by CX 2024-05-16