Categories: Katalog produktów

China Custom Propeller Transmission Spline Planet Transmission Gear Shaft

Opis produktu

Customizations to products

                                                                   specification
WAI No  No Of Teeth Rotation Length(mm) Pinion O.D.(mm) No OF Splines Pinion I.D.(mm) Drive O.D.(mm)
     6/12  CW     126  14    12    
    6/12  CW    117    14    10

Item Spur Gear Axle Shaft
Tworzywo 4140,4340,40Cr,42Crmo,42Crmo4
OEM NO Customize
Certification ISO/TS16949
Test Requirement Magnetic Powder Test, Hardness Test, Dimension Test
Color Paint , Natural Finish ,Machining All Around
Tworzywo Aluminum: 5000series(5052…)/6000series(6061…)/7000series(7075…)
Steel: Carbon Steel,Middle Steel,Steel Alloy,etc.
Stainess Steel: 303/304/316,etc.
Copper/Brass/Bronze/Red Copper,etc.
Plastic:ABS,PP,PC,Nylon,Delrin(POM),Bakelite,etc.
Size According to Customer’s drawing or samples
Process CNC machining,Turning,Milling,Stamping,Grinding,Welding,Wire Injection,Cutting,etc.
Tolerance ≥+/-0.03mm
Surface Treatment (Sandblast)&(Hard)&(Color)Anodizing,(Chrome,Nickel,Zinc…)Plating,Painting,Powder Coating,Polishing,Blackened,Hardened,Lasering,Engraving,etc.
File Formats ProE,SolidWorks,UG,CAD,PDF(IGS,X-T,STP,STL)
Sample Dostępny
Packing Spline protect cover ,Wood box ,Waterproof membrane; Or per customers’ requirements.

Sample service
We provide free sample for confirmation and customer bears the freight charges
OEM service
Having our own factory and professional technicians,we welcome OEM orders as well.We can design and produce the specific product you need according to your detail information
After-sale Service
Our enthusiastic and friendly customer service representatives are ready to assist with any questions or problems /* 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

Material: Alloy Steel
Load: Drive Shaft
Axis Shape: Straight Shaft
Appearance Shape: Round
No of Teeth: 6/12
Rotation: Cw
Samples:
US$ 0/Piece
1 Piece(Min.Order)

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Personalizacja:
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Can spline shafts be used in both mobile and stationary machinery?

Yes, spline shafts can be used in both mobile and stationary machinery. Here’s a detailed explanation:

1. Mobile Machinery:

Spline shafts find extensive use in various types of mobile machinery. For example:

  • In Automotive Applications: Spline shafts are commonly used in automotive drivetrains, where they transmit torque from the engine to the wheels. They are found in components such as the transmission, differential, and axle shafts.
  • In Construction and Earthmoving Equipment: Spline shafts are utilized in construction machinery, such as excavators, loaders, and bulldozers. They are employed in the powertrain systems to transfer torque and drive the hydraulic pumps or propel the machine.
  • In Agricultural Equipment: Spline shafts are used in agricultural machinery like tractors, combines, and harvesters. They help transfer power from the engine to various driven components, such as the wheels, PTO (power take-off), or hydraulic systems.
  • In Off-Road Vehicles: Spline shafts are present in off-road vehicles, including ATVs (all-terrain vehicles) and military vehicles. They enable power transmission to the wheels or drivetrain components, ensuring mobility and performance in challenging terrains.

2. Stationary Machinery:

Spline shafts are also widely employed in stationary machinery across various industries. Some examples include:

  • In Machine Tools: Spline shafts are used in machine tools, such as lathes, milling machines, and grinding machines. They provide torque transmission in the spindle or lead screw mechanisms, enabling precision motion control and material removal operations.
  • In Industrial Gearboxes: Spline shafts play a crucial role in industrial gearboxes used in manufacturing and processing plants. They transmit torque between input and output shafts, enabling speed reduction or increase as required by the application.
  • In Power Generation: Spline shafts are utilized in power generation equipment, including turbines and generators. They help transmit torque between the rotating rotor and the stationary components, facilitating energy conversion.
  • In Pump and Compressor Systems: Spline shafts are present in pumps and compressors used in various industries. They transmit torque from the motor or prime mover to the impeller or compressor elements, enabling fluid or gas transfer.

The versatility of spline shafts makes them suitable for a wide range of applications, both mobile and stationary. Their ability to efficiently transmit torque, accommodate misalignment, distribute loads, and provide reliable connections makes them a preferred choice in diverse machinery across industries.

Czy wałki wielowypustowe można stosować w motoryzacji? Jeśli tak, to w jaki sposób?

Yes, spline shafts are extensively used in automotive applications due to their ability to transmit torque and provide reliable power transmission. Here’s how spline shafts are used in automotive applications:

Wały wielowypustowe odgrywają kluczową rolę w różnych układach i komponentach samochodowych, w tym:

  • Układ napędowy: Wałki wielowypustowe stanowią integralną część układu napędowego w pojazdach. Przenoszą moment obrotowy z silnika na koła, umożliwiając poruszanie się pojazdu. Wałki wielowypustowe występują w takich podzespołach jak skrzynia biegów, mechanizm różnicowy i półosie. W manualnych skrzyniach biegów wałek wielowypustowy łączy wałek wejściowy skrzyni biegów z tarczą sprzęgła, umożliwiając przenoszenie mocy z silnika. W automatycznych skrzyniach biegów wałki wielowypustowe są stosowane w przekładni hydrokinetycznej i wałku wyjściowym.
  • Steering System: Spline shafts are employed in the steering system to transmit torque from the steering wheel to the steering rack or gearbox. They provide a direct connection between the driver’s input and the movement of the wheels, allowing for steering control.
  • Power Take-Off (PTO) Systems: Some vehicles, particularly commercial trucks and agricultural machinery, utilize PTO systems. Spline shafts are used in PTOs to transfer power from the vehicle’s engine to auxiliary equipment, such as hydraulic pumps, generators, or agricultural implements.
  • Skrzynie rozdzielcze: W pojazdach z napędem na cztery koła (4WD) lub na wszystkie koła (AWD) skrzynie rozdzielcze służą do rozdzielania mocy na osie przednią i tylną. Wałki wielowypustowe w skrzyni rozdzielczej służą do przenoszenia momentu obrotowego między skrzynią biegów a przednim i tylnym wałem napędowym.
  • Wały napędowe: Wały wielowypustowe znajdują się w wałach napędowych, które przenoszą moment obrotowy ze skrzyni biegów lub skrzyni rozdzielczej na tylną oś w pojazdach z napędem na tylne koła. Przenoszą one względny ruch między skrzynią biegów a osią wynikający z ruchu zawieszenia.

W zastosowaniach motoryzacyjnych wałki wielowypustowe są projektowane tak, aby wytrzymywały wysokie obciążenia momentem obrotowym, zapewniały precyzyjne przenoszenie momentu obrotowego oraz kompensowały niewspółosiowość i wahania w warunkach pracy. Zazwyczaj są wykonane z wysokowytrzymałej stali lub stopów, aby zapewnić trwałość i odporność na zużycie. Prawidłowe smarowanie jest niezbędne do zminimalizowania tarcia i zapewnienia płynnej pracy.

Zastosowanie wałków wielowypustowych w zastosowaniach motoryzacyjnych umożliwia wydajne przenoszenie mocy, precyzyjną kontrolę i niezawodną pracę, co przyczynia się do ogólnej funkcjonalności i właściwości jezdnych pojazdów.

What are the key components and design features of a spline shaft?

A spline shaft consists of several key components and incorporates specific design features to ensure its functionality and performance. Here’s a detailed explanation:

1. Shaft Body:

The main component of a spline shaft is the shaft body, which provides the structural integrity and serves as the base for the spline features. The shaft body is typically cylindrical in shape and made from materials such as steel, stainless steel, or other alloyed metals. The material selection depends on factors like the application requirements, torque loads, and environmental conditions.

2. Splines:

The splines are the key design feature of a spline shaft. They are ridges or teeth that are machined onto the surface of the shaft. The splines create the interlocking mechanism with mating components, allowing for torque transmission and relative movement. The number, size, and shape of the splines can vary depending on the application requirements and design specifications.

3. Spline Profile:

The spline profile refers to the specific shape or geometry of the splines. Common types of spline profiles include involute, straight-sided, and serrated. The spline profile is chosen based on factors such as the torque transmission requirements, load distribution, and the desired engagement characteristics with mating components. The spline profile ensures optimal contact and torque transfer between the spline shaft and the mating component.

4. Spline Fit:

The spline fit refers to the dimensional relationship between the spline shaft and the mating component. It determines the clearance or interference between the splines, ensuring proper engagement and transmission of torque. The spline fit can be categorized into different classes, such as clearance fit, transition fit, or interference fit, based on the desired level of clearance or interference.

5. Surface Finish:

The surface finish of the spline shaft is crucial for its performance. The splines and the shaft body should have a smooth and consistent surface finish to minimize friction, wear, and the risk of stress concentrations. The surface finish can be achieved through machining, grinding, or other surface treatment methods to meet the required specifications.

6. Lubrication:

To ensure smooth operation and reduce wear, lubrication is often employed for spline shafts. Lubricants with appropriate viscosity and lubricating properties are applied to the spline interface to minimize friction, dissipate heat, and prevent premature wear or damage to the splines and mating components. Lubrication also helps in maintaining the functionality and prolonging the service life of the spline shaft.

7. Machining Tolerances:

Precision machining is critical for spline shafts to achieve the required dimensional accuracy and ensure proper engagement with mating components. Tight machining tolerances are maintained during the manufacturing process to ensure the spline profile, dimensions, and surface finish meet the specified design requirements. This ensures the interchangeability and compatibility of spline shafts in various applications.

In summary, the key components and design features of a spline shaft include the shaft body, splines, spline profile, spline fit, surface finish, lubrication, and machining tolerances. These elements work together to enable torque transmission, relative movement, and load distribution while ensuring the functionality, durability, and performance of the spline shaft.


editor by CX 2024-04-15

odcinek

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