Categorie: Catalogo prodotti

Cina professionale personalizzato Ingranaggio a vite senza fine in ottone e acciaio inossidabile per cambio albero di uscita del cambio

Descrizione del prodotto

Descrizione del prodotto

    The gearbox output shaft is a shaft in the automobile gearbox. It is directly connected to the drive shaft (propeller shaft). It outputs torque and speed, and then drives the car through the differential.
  Since different models of cars are equipped with gearboxes from different manufacturers, the specifications are different. Generally, the length is used to distinguish the output shaft and the input shaft. The shorter 1 is the input shaft and the longer 1 is the output shaft.

 

Detailed Photos

 

 

Parametri del prodotto

Product Name Customized Stainless Carbon Steel Brass Worm Gear Spline Truck Gearbox Output Shaft
Model number 2159304001
Place of Origin ZheJiang ,China
Quality Prime Quality
Inspection 100% Inspection
Specification 20*20*65cm
Keyword Gearbox Accessories
Materiale Standard
Supply Ability 10000 Piece/Pieces per Month
OEM Accpetable
Transport Package Wooden Pallet
Confezione Wooden box or customized
Port HangZhou or ZheJiang
MOQ 100 Piece
Service OEM Customized Services
Payment T/T

I nostri vantaggi

1. We have been committed to the heavy truck accessories industry for more than 10 years. The company’s professional team can quickly match any products you need, saving you purchasing time;

2. Excellent product quality is the foundation of our company and the cornerstone on which our company has always relied for survival;

3.Our company has formed a complete supply chain, which can process customer orders within 2 hours, arrange production plans and ship goods as soon as possible;

4. Our company has complete after-sales guarantee, and excellent after-sales service is the main factor for us to reach follow-up cooperation with customers.

Profilo Aziendale

Imballaggio e spedizione

Customer Visit

FAQ

1. About the condition of the truck:
Each product will have a test report.We guarantee that the product is in good condition.
2. About delivery:
Divided into flat frame container, bulk carrier, roll-on – roll ship
3.MOQ:
1 group
4. About OEM:
Welcome, you can send your own designed LOGO, we can open a new mold for you to print or emboss any LOGO.
5. Terms of payment:
For sample orders, you can use telegraphic transfer, sight L/C, Western Union, Paypal, MoneyGram, Alipay or credit card.
6. About delivery time:
The exact delivery time depends on the item you order and the quantity.
7. About Us:
We have a professional vehicle renewal team, 1 for every truck Test report.

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After-sales Service: Good
Warranty: 12 Months
Type: Gearbox
Personalizzazione:
Disponibile

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Richiesta personalizzata

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Shipping Cost:

Estimated freight per unit.







about shipping cost and estimated delivery time.
Payment Method:









Initial Payment



Full Payment
Currency: US$
Return&refunds: You can apply for a refund up to 30 days after receipt of the products.

How do spline shafts handle variations in torque and rotational force?

Spline shafts are designed to handle variations in torque and rotational force in mechanical systems. Here’s a detailed explanation:

1. Interlocking Splines:

Spline shafts have a series of interlocking splines along their length. These splines engage with corresponding splines on the mating component, such as gears or couplings. The interlocking design ensures a secure and robust connection, capable of transmitting torque and rotational force.

2. Distribuzione del carico:

When torque is applied to a spline shaft, the load is distributed across the entire engagement surface of the splines. This helps to minimize stress concentrations and prevents localized wear or failure. The load distribution capability of spline shafts allows them to handle variations in torque and rotational force effectively.

3. Material Selection:

Spline shafts are typically made from materials with high strength and durability, such as alloy steels. The material selection is crucial in handling variations in torque and rotational force. It ensures that the spline shaft can withstand the applied loads without deformation or failure.

4. Spline Profile:

The design of the spline profile also contributes to the handling of torque variations. The spline profile determines the contact area and the distribution of forces along the splines. By optimizing the spline profile, manufacturers can enhance the load-carrying capacity and improve the ability of the spline shaft to handle variations in torque.

5. Surface Finish and Lubrication:

Proper surface finish and lubrication play a crucial role in the performance of spline shafts. A smooth surface finish reduces friction and wear, while suitable lubrication minimizes heat generation and ensures smooth operation. These factors help in handling variations in torque and rotational force by reducing the impact of friction and wear on the spline engagement.

6. Considerazioni di progettazione:

Engineers take several design considerations into account to ensure spline shafts can handle variations in torque and rotational force. These considerations include appropriate spline dimensions, tooth profile geometry, spline fit tolerance, and the selection of mating components. By carefully designing the spline shaft and its mating components, engineers can optimize the system’s performance and reliability.

7. Overload Protection:

In some applications, spline shafts may be equipped with overload protection mechanisms. These mechanisms, such as shear pins or torque limiters, are designed to disconnect the drive temporarily or slip when the torque exceeds a certain threshold. This protects the spline shaft and other components from damage due to excessive torque.

Overall, spline shafts handle variations in torque and rotational force through their interlocking splines, load distribution capability, appropriate material selection, optimized spline profiles, surface finish, lubrication, design considerations, and, in some cases, overload protection mechanisms. These features ensure efficient torque transmission and enable spline shafts to withstand the demands of various mechanical systems.

È possibile utilizzare alberi scanalati in applicazioni automobilistiche? Se sì, in che modo?

Sì, gli alberi scanalati sono ampiamente utilizzati nelle applicazioni automobilistiche grazie alla loro capacità di trasmettere coppia e garantire una trasmissione di potenza affidabile. Ecco come vengono utilizzati gli alberi scanalati nelle applicazioni automobilistiche:

Gli alberi scanalati svolgono un ruolo cruciale in diversi sistemi e componenti automobilistici, tra cui:

  • Trasmissione: Gli alberi scanalati sono parte integrante del sistema di trasmissione dei veicoli. Trasmettono la coppia dal motore alle ruote, consentendo al veicolo di muoversi. Gli alberi scanalati sono presenti in componenti come la trasmissione, il differenziale e gli alberi di trasmissione. Nelle trasmissioni manuali, l'albero scanalato collega l'albero di ingresso della trasmissione al disco della frizione, consentendo il trasferimento di potenza dal motore. Nelle trasmissioni automatiche, gli alberi scanalati sono utilizzati nel convertitore di coppia e nell'albero di uscita.
  • Sistema di sterzo: Gli alberi scanalati vengono utilizzati nel sistema di sterzo per trasmettere la coppia dal volante alla cremagliera o al riduttore. Forniscono un collegamento diretto tra l'input del conducente e il movimento delle ruote, consentendo il controllo dello sterzo.
  • Sistemi di presa di forza (PTO): Alcuni veicoli, in particolare autocarri commerciali e macchine agricole, utilizzano sistemi di presa di forza (PTO). Gli alberi scanalati vengono utilizzati nei sistemi PTO per trasferire la potenza dal motore del veicolo ad apparecchiature ausiliarie, come pompe idrauliche, generatori o attrezzi agricoli.
  • Riduttori di coppia: Nei veicoli a quattro ruote motrici (4WD) o a trazione integrale (AWD), i riduttori di coppia vengono utilizzati per distribuire la potenza agli assi anteriore e posteriore. Nel riduttore di coppia vengono utilizzati alberi scanalati per trasferire la coppia tra la trasmissione e gli alberi di trasmissione anteriore e posteriore.
  • Alberi di trasmissione: Gli alberi scanalati sono presenti negli alberi di trasmissione, che trasmettono la coppia dal cambio o dal riduttore all'asse posteriore nei veicoli a trazione posteriore. Essi compensano il movimento relativo tra il cambio e l'asse dovuto all'escursione delle sospensioni.

Nelle applicazioni automobilistiche, gli alberi scanalati sono progettati per resistere a carichi di coppia elevati, garantire una trasmissione precisa della coppia e compensare disallineamenti e fluttuazioni delle condizioni operative. Sono generalmente realizzati in acciaio ad alta resistenza o materiali in lega per garantire durata e resistenza all'usura. Una lubrificazione adeguata è essenziale per ridurre al minimo l'attrito e garantire un funzionamento regolare.

L'utilizzo di alberi scanalati nelle applicazioni automobilistiche consente una trasmissione di potenza efficiente, un controllo preciso e prestazioni affidabili, contribuendo alla funzionalità complessiva e alla guidabilità dei veicoli.

How does a spline shaft differ from other types of shafts?

A spline shaft differs from other types of shafts in several ways. Here’s a detailed explanation:

1. Spline Structure:

A spline shaft features a series of ridges or teeth (splines) that are machined onto its surface. These splines create a precise and controlled interface with mating components, allowing for torque transmission and relative movement. In contrast, other types of shafts, such as plain shafts or keyed shafts, do not have the splines and rely on different mechanisms for torque transmission.

2. Torque Transmission and Relative Movement:

Unlike plain shafts or keyed shafts, which transmit torque through a frictional or mechanical connection, spline shafts allow for both torque transmission and relative movement between the shaft and mating components. The splines on the shaft engage with corresponding splines on the mating component, creating an interlock that transfers rotational force while accommodating axial or radial displacement. This feature provides flexibility and is particularly useful in applications where misalignment or relative movement needs to be accommodated.

3. Distribuzione del carico:

One of the advantages of spline shafts is their ability to distribute loads over a larger surface area. The multiple contact points created by the splines help distribute the applied load evenly along the shaft’s length. This load distribution minimizes stress concentrations and reduces the risk of premature wear or failure. In contrast, other types of shafts may rely on a single keyway or frictional contact, which can result in higher stress concentrations and limited load distribution.

4. Design Flexibility:

Spline shafts offer greater design flexibility compared to other types of shafts. The number, size, and shape of the splines can be customized to meet specific design requirements. This allows for optimization of torque transmission, load-bearing capacity, and relative movement characteristics based on the application’s needs. Other types of shafts may have more standardized designs and limited customization options.

5. Application Variability:

Spline shafts find widespread use in various industries and applications where torque transmission, relative movement, and load distribution are crucial. They are commonly employed in gearboxes, power transmission systems, steering mechanisms, and other rotational systems. Other types of shafts, such as plain shafts or keyed shafts, may be more suitable for applications that require simpler torque transmission without the need for relative movement.

6. Installation and Maintenance:

When compared to other types of shafts, spline shafts may require more precise machining and alignment during installation. The mating components must be accurately matched to ensure proper engagement and torque transfer. Additionally, spline shafts may require periodic inspection and maintenance to ensure the integrity of the splines and optimal performance.

In summary, spline shafts differ from other types of shafts due to their spline structure, ability to accommodate relative movement, load distribution capability, design flexibility, application variability, and specific installation and maintenance requirements. These characteristics make spline shafts well-suited for applications that demand precise torque transmission, flexibility, and load distribution.


editor by CX 2024-04-24

ep

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