Description du produit
Description du produit
Warranty
1 an
Applicable Industries
Hotels, Garment Shops, Building Material Shops, Manufacturing Plant, Machinery Repair Shops, Food & Beverage Factory, Farms, Restaurant, Home Use, Retail, Food Shop, Printing Shops, Construction works , Energy & Mining, Food & Beverage Shops, Other, Advertising Company
Weight (KG)
1
Showroom Location
Viet Nam
Video outgoing-inspection
Provided
Machinery Test Report
Provided
Marketing Type
Ordinary Product
Warranty of core components
1 an
Core Components
PLC, Engine, Bearing, Gearbox, Motor, Pressure vessel, Gear, Pump
Matériel
steel
Place of CZPT
ZheJiang , China
Condition
Nouveau
Structure
Shaft
Coatings
Customized
Torque Capacity
Customized
Model Number
Customized
Brand Name
NON
Description
Shaft
Machining equipment
CNC mill,lathe and grind machine
Matériel
stainless steel, aluminium, carbon
Surface
Grinding and polishing
Shape
Customized
Sampling time
10days
Production time
20days
Packing
Protective packing
Tolerance
±0.001
OEM
Welcome
Production Process
Profil de l'entreprise
HangZhou HUANENGDA SPRING CO.,LTD
HangZhou HuaNengDa Spring Co., Ltd. is located in Tong ‘an District, HangZhou City, ZheJiang Province, China. It is a hardware factory specializing in R&D design, manufacture and sales of precision components. The company introduces domestic and foreign advanced equipment and production technology, adopts CNC high-precision computer machine, compression spring machine, CNC five-axis linkage machining center, CNC turning and milling compound, 300 tons of punch and other mechanical equipment,and employs senior engineers with more than 10 years of work experience to debug mechanical equipment and customize production.
With the business philosophy of honesty, pragmatism and excellence, HuaNengDa Spring Company is dedicated to serving customers at home and abroad. We hope that the products of HuaNengDa will help your business to be more brilliant, let us build a bright future in the high-tech era!
The testimony is pragmatic and the attitude of the people. Quality service is the pursuit of the people!
Factory Workshop
Production Procedur
Quality Inspection
Packing And Shipping
Our Service
FAQ
1.Small order quantity is workable
From the initial sample design of the spring to the mass production of the springs, we can quickly reach your manufacturing goals and immediately provide the best products because we have an excellent production management system and expertly trained technical personnel.
2.Committed to high quality production
To keep HuaNengDa Springs at the forefront of the industry, we have implemented a stringent internal quality control system and regularly import the latest manufacturing equipment and instruments. Through our precise manufacturing technology and expert mold making process, we provide our customers with the best products and service.
3.Efficiency in manufacturing
Our company’s machinery and equipment are controlled by CNC computers. In order to respond to international needs and standards, we continuously update and upgrade our equipment every year. Our machines effectively increase production capacity and save on manufacturing costs. The manufacturing department is the most important core of the whole company and by treating it with utmost importance, we reap great benefits in manufacturing efficiency.
4.Excellent customization services
HuaNengDa’s R&D team designs and completes customized products according to the needs of customers. From the selection of materials to the function of the products, we can design and develop products to suite different customers’ requirements. We are constantly involving ourselves in all aspects of the industry because only by having a complete view and analysis of the industry, can there be innovative breakthroughs.
Payment term
*T/T : 30% pre T/T, 70% before delivery.
*Trade Assurance
Service
*Delivery on time.
*Shipped by a convenient and cost-effective way.
*Good after-selling, 24 hours service for you.
Packing
*A: Poly bag, Plstic tray ,small box, carton.
*B: According to customers’ requirements.
Delivery
*Sample: 7-10 days after deposit received.
*Batch goods: 12-15 days after samples approved. /* January 22, 2571 19:08:37 */!function(){function s(e,r){var a,o={};try{e&&e.split(“,”).forEach(function(e,t){e&&(a=e.match(/(.*?):(.*)$/))&&1
| Condition: | Nouveau |
|---|---|
| Certification : | ISO9001 |
| Standard: | DIN, ASTM, GOST, GB, JIS, ANSI, BS |
| Customized: | Customized |
| Matériel: | Steel,Stainless Steel,Iron |
| Application: | Metal Processing Machinery Parts |
| Exemples : |
US$ 10/Piece
1 pièce (commande minimale) | |
|---|
| Personnalisation : |
Disponible
| Demande personnalisée |
|---|

Comment les arbres de transmission de prise de force assurent-ils un transfert de puissance efficace tout en maintenant la sécurité ?
Les arbres de transmission à prise de force (PDF) sont conçus pour garantir un transfert de puissance efficace tout en privilégiant la sécurité. Ces arbres de transmission intègrent divers mécanismes et caractéristiques pour atteindre ces deux objectifs. Voici une explication détaillée du fonctionnement des arbres de transmission à prise de force, qui assurent un transfert de puissance efficace tout en garantissant la sécurité :
1. Construction robuste :
Les arbres de transmission de prise de force sont généralement fabriqués à partir de matériaux de haute qualité, tels que l'acier ou des matériaux composites, qui leur confèrent robustesse et durabilité. Leur construction robuste leur permet de supporter les contraintes de couple et de puissance de l'application, assurant ainsi un transfert de puissance efficace sans flexion ni déformation excessive susceptible d'entraîner une perte d'énergie ou une défaillance prématurée.
2. Alignement précis :
Un transfert de puissance efficace exige un alignement précis entre l'arbre de transmission de la prise de force, la source d'énergie principale (moteur, boîte de vitesses, etc.) et l'outil ou l'équipement entraîné. Un mauvais alignement peut engendrer des pertes de puissance, une usure accrue et des risques pour la sécurité. Les arbres de transmission de la prise de force sont conçus avec des longueurs réglables ou des accouplements flexibles afin de s'adapter aux variations de taille des équipements et d'assurer un alignement optimal, maximisant ainsi l'efficacité de la transmission de puissance.
3. Dispositifs de sécurité de connexion :
Les arbres de transmission de prise de force (PDF) intègrent des dispositifs de sécurité pour prévenir les accidents et minimiser les risques de blessures. Parmi ces dispositifs, on trouve notamment l'utilisation de goupilles de cisaillement ou de limiteurs de couple. Ces composants sont conçus pour se rompre ou glisser sous un couple excessif, protégeant ainsi l'arbre de transmission et les équipements qui y sont raccordés. En cas de surcharge, la goupille de cisaillement se rompt, ce qui permet à l'arbre de transmission de se désengager, garantissant la sécurité des opérateurs et évitant des réparations coûteuses.
4. Protection contre les surcharges :
Les mécanismes de protection contre les surcharges sont essentiels pour garantir la sécurité et prévenir les dommages à l'arbre de transmission de la prise de force et aux équipements associés. Des systèmes d'embrayage ou des embrayages à friction peuvent être utilisés pour désengager l'arbre de transmission en cas de couple ou de vitesse excessifs. Ces mécanismes permettent à l'arbre de transmission de patiner ou de se désengager momentanément, évitant ainsi les dommages et réduisant les risques de blessures pour les opérateurs et les personnes présentes.
5. Protection et garde :
Les arbres de transmission des prises de force sont souvent équipés de protections afin d'éviter tout contact avec les pièces mobiles. Ces protections garantissent la sécurité des opérateurs et des personnes présentes à proximité, les protégeant ainsi des arbres rotatifs, des joints de cardan et autres composants potentiellement dangereux. Une protection adéquate réduit les risques d'enchevêtrement, de coincement ou de contact accidentel, améliorant ainsi la sécurité globale.
6. Respect des normes de sécurité :
Les arbres de transmission de prise de force sont conçus et fabriqués conformément aux normes et réglementations de sécurité en vigueur. Ces normes, telles que l'ISO 500-1, spécifient les exigences relatives aux composants de transmission de puissance, notamment les arbres de transmission de prise de force. Le respect de ces normes garantit que les arbres de transmission répondent aux critères de sécurité nécessaires et subissent des tests rigoureux afin d'assurer leur fiabilité et leurs performances.
7. Entretien et inspection réguliers :
Le maintien de la sécurité et de l'efficacité des arbres de transmission de la prise de force exige un entretien et une inspection réguliers. Les opérateurs doivent respecter les calendriers d'entretien recommandés, incluant la lubrification, l'inspection des composants et le remplacement des pièces usées ou endommagées. Des inspections régulières permettent d'identifier les problèmes de sécurité potentiels, tels que l'usure des roulements, l'endommagement des protections ou le dysfonctionnement des dispositifs de sécurité, et ainsi d'effectuer les réparations ou les remplacements nécessaires en temps opportun.
8. Formation et sensibilisation des opérateurs :
L'efficacité du transfert de puissance et la sécurité dépendent également de la formation et de la vigilance des opérateurs. Ces derniers doivent recevoir une formation adéquate sur le fonctionnement et l'entretien en toute sécurité des arbres de transmission de la prise de force. Cette formation comprend la compréhension des procédures de sécurité, la reconnaissance des dangers potentiels et la prise de conscience des risques liés à une utilisation ou un entretien incorrects. Promouvoir une culture de la sécurité et assurer une formation continue contribuent à garantir une utilisation correcte des arbres de transmission de la prise de force et à minimiser les risques potentiels.
Grâce à une construction robuste, un alignement précis, des dispositifs de sécurité de connexion, une protection contre les surcharges, un blindage et une protection, le respect des normes de sécurité, un entretien et une inspection réguliers, ainsi que la formation et la sensibilisation des opérateurs, les arbres de transmission de prise de force permettent un transfert de puissance efficace tout en garantissant un haut niveau de sécurité. Ces mesures contribuent à prévenir les accidents, à protéger les équipements et les opérateurs, et à assurer une transmission de puissance fiable et performante dans diverses applications.

How do PTO drive shafts contribute to the efficiency of agricultural tasks like plowing?
PTO (Power Take-Off) drive shafts play a crucial role in enhancing the efficiency of agricultural tasks, including plowing. They provide a reliable and efficient power transmission mechanism between a tractor or power source and various implements, such as plows. Here’s how PTO drive shafts contribute to the efficiency of agricultural tasks like plowing:
1. Power Transfer:
PTO drive shafts enable the transfer of power from the tractor’s engine to the plow or other implements used for plowing. They transmit rotational power at a consistent speed from the power source to the implement, allowing it to perform the intended task efficiently. This direct power transfer eliminates the need for separate engines or motors on each implement, saving both time and resources.
2. Versatility:
PTO drive shafts are designed to be versatile and compatible with a wide range of agricultural implements. They come in standardized sizes and configurations, allowing different implements to be easily connected and disconnected. This versatility enables farmers to switch between various tasks, including plowing, without requiring significant equipment changes or modifications.
3. Time Efficiency:
By directly transmitting power from the tractor to the plow, PTO drive shafts help save time during agricultural tasks like plowing. They eliminate the need for manual or animal-driven labor, allowing for faster and more efficient plowing operations. This time efficiency increases overall productivity and enables farmers to cover larger areas in less time.
4. Consistent Power Output:
PTO drive shafts provide a consistent power output to the implement, ensuring uniform performance during plowing. They maintain a steady rotational speed, minimizing variations in power delivery and preventing uneven plowing or crop damage. This consistent power output helps achieve reliable and precise results, leading to improved efficiency in the plowing process.
5. Adjustable Speed and Depth:
Many PTO drive shafts offer adjustable rotational speeds, allowing farmers to control the plowing speed according to the specific soil conditions and requirements. This adjustability enables farmers to optimize the plowing process, ensuring efficient soil turnover and seedbed preparation. Additionally, some plows incorporate mechanisms for adjusting the plowing depth, further enhancing flexibility and efficiency.
6. Réduction de la fatigue de l'opérateur :
The use of PTO drive shafts in plowing reduces the physical strain on operators. Instead of manually exerting force to plow the field, operators can rely on the power transmitted through the drive shaft. This reduces fatigue, allowing operators to work for longer durations without experiencing excessive exhaustion. Reduced operator fatigue contributes to increased productivity and overall efficiency in agricultural tasks.
7. Integration with Tractor Controls:
Modern PTO drive shafts often integrate with the tractor’s control system. This integration enables convenient and precise control of the PTO engagement and disengagement, rotational speed, and other parameters. Such integration enhances the ease of operation, minimizes errors, and improves overall efficiency during plowing and other agricultural tasks.
8. Maintenance and Serviceability:
PTO drive shafts are typically designed for ease of maintenance and serviceability. They often feature accessible lubrication points, inspection ports, and replaceable components, making it easier to keep them in good working condition. Regular maintenance ensures optimal performance, reduces the risk of unexpected breakdowns, and maximizes the efficiency of plowing operations.
In summary, PTO drive shafts significantly contribute to the efficiency of agricultural tasks like plowing. They enable direct and consistent power transfer, offer versatility in implement compatibility, save time, provide adjustable speed and depth control, reduce operator fatigue, integrate with tractor controls, and facilitate maintenance. By leveraging the capabilities of PTO drive shafts, farmers can enhance productivity, streamline operations, and achieve efficient plowing results.

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 2024-04-25