Categories: Katalog Produk

China high quality CZPT Factory Price High Performance Brass Helical Spline Gear Shaft for Transmission Parts

Deskripsi Produk

Ihf Factory Price Custom High Performance Brass Spline Helical Gears for Transmission Parts

Main Features:
Poros Gigi
1. Produce strictly in accordance with ANSI or DIN standard dimension
2. Material: 1045 Carbon Steel
3. Bore: Finished bore
4. Module: 1~3

Parameter Produk

Product name Spur Gear & Helical Gear & Gear Shaft
Customized service OEM, drawings or samples customize
Materials Available Stainless Steel, Carbon Steel, S45C, SCM415, 20CrMoTi, 40Cr, Brass, SUS303/304, Bronze, Iron, Aluminum Alloy etc
Perlakuan Panas Quenching & Tempering, Carburizing & Quenching, High-frequency Hardening, Carbonitriding……
Perawatan Permukaan Conditioning, Carburizing and Quenching,Tempering ,High frequency quenching, Tempering, Blackening, QPQ, Cr-plating, Zn-plating, Ni-plating, Electroplate, Passivation, Picking, Plolishing, Lon-plating, Chemical vapor deposition(CVD), Physical vapour deposition(PVD)…
BORE Finished bore, Pilot Bore, Special request
Processing Method Molding, Shaving, Hobbing, Drilling, Tapping, Reaming, Manual Chamfering, Grinding etc
Pressure Angle 20 Degree
Hardness 55- 60HRC
Ukuran Customer Drawings & ISO standard
Kemasan Wooden Case/Container and pallet, or made-to-order
Sertifikat ISO9001:2008
Machining Process Gear Hobbing, Gear Milling, Gear Shaping, Gear Broaching, Gear Shaving, Gear Grinding and Gear Lapping
Aplikasi Printing Equipment Industry, Laser Equipment Industry, Automated Assemblyline Industry, Woodening Industry, Packaging Equipment Industry, Logistics storage Machinery Industry, Robot Industry, Machine Tool Equipment Industry

Profil Perusahaan

 

Pertanyaan yang Sering Diajukan (FAQ)

Main Markets? North America, South America, Eastern Europe , West Europe , North Europe, South Europe, Asia
How to order? * You send us drawing or sample
* We carry through project assessment
* We give you our design for your confirmation
* We make the sample and send it to you after you confirmed our design
* You confirm the sample then place an order and pay us 30% deposit
* We start producing
* When the goods is done, you pay us the balance after you confirmed pictures or tracking numbers.
* Trade is done, thank you!!

 

If you are interested in our products, please tell us which materials, type, width, length u want.

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Aplikasi: Motor, Electric Cars, Motorcycle, Machinery, Marine, Toy, Agricultural Machinery, Car, Automation Equipment
Hardness: Hardened Tooth Surface
Gear Position: External Gear
Manufacturing Method: Rolling Gear
Toothed Portion Shape: Spur Gear
Bahan: Baja tahan karat
Samples:
US$ 10/Piece
1 Piece(Min.Order)

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Request Sample

Kustomisasi:
Tersedia

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Permintaan Khusus

Bagaimana poros spline berkontribusi pada transmisi daya yang efisien?

Spline shafts play a vital role in enabling efficient power transmission in various mechanical systems. Here’s a detailed explanation of how spline shafts contribute to efficient power transmission:

1. Transmisi Torsi:

Poros spline dirancang untuk mentransmisikan torsi dari satu komponen ke komponen lainnya. Poros ini menyediakan koneksi yang kuat dan tidak selip yang memungkinkan transfer daya yang efisien tanpa selip atau kehilangan energi. Spline pada poros terhubung dengan spline yang sesuai pada komponen pasangannya, menciptakan koneksi mekanis yang kuat untuk transmisi torsi.

2. Distribusi Beban:

Spline shafts distribute the applied load evenly across the engagement surfaces. The teeth or grooves on the shaft’s spline profile ensure that the load is shared across multiple contact points. This even load distribution helps prevent localized stress concentrations and reduces the risk of premature wear or failure. Efficient load distribution ensures that power is transmitted smoothly and reliably.

3. Kompensasi Ketidaksejajaran:

Poros spline dapat mengakomodasi tingkat ketidaksejajaran tertentu antara komponen yang saling berpasangan. Desain profil spline memungkinkan ketidaksejajaran sudut atau paralel tanpa mengganggu kemampuan transmisi daya. Kemampuan kompensasi ketidaksejajaran ini sangat penting dalam menjaga transmisi daya yang efisien dalam situasi di mana penyelarasan sempurna sulit dilakukan atau rentan terhadap variasi.

4. Kapasitas Torsi Tinggi:

Poros spline dirancang untuk menahan tingkat torsi yang tinggi. Profil spline, panjang pengait, dan pemilihan material dioptimalkan untuk menangani kebutuhan torsi yang diharapkan. Kapasitas torsi yang tinggi ini memastikan bahwa poros dapat mentransmisikan daya secara efisien tanpa mengalami defleksi berlebihan atau kegagalan dalam kondisi operasi normal.

5. Kekakuan Torsional:

Spline shafts exhibit high torsional stiffness, which means they resist twisting or torsional deflection when subjected to torque. The shaft’s design, including its diameter, spline profile, and material properties, contributes to its torsional stiffness. High torsional stiffness minimizes power loss due to deformation or flexing of the shaft, allowing for efficient power transmission.

6. Koneksi yang Andal:

Poros spline memberikan koneksi yang andal dan berulang antara komponen penggerak dan yang digerakkan. Setelah terpasang dengan benar, poros spline mempertahankan koneksinya, memastikan transmisi daya yang konsisten dari waktu ke waktu. Keandalan ini sangat penting dalam menjaga efisiensi dan mencegah kehilangan daya atau gangguan selama pengoperasian.

7. Reaksi Negatif Minimal:

Backlash mengacu pada sedikit kelonggaran atau celah rotasi antara komponen yang saling berpasangan. Poros spline, jika dirancang dan diproduksi dengan benar, dapat meminimalkan backlash dalam sistem transmisi daya. Pengurangan backlash memastikan pengoperasian yang lebih lancar, akurasi yang lebih baik, dan efisiensi dengan meminimalkan kehilangan daya yang terkait dengan pembalikan arah atau perubahan arah.

8. Desain Ringkas:

Poros spline menawarkan solusi yang ringkas dan hemat ruang untuk transmisi daya. Desainnya memungkinkan ukuran yang relatif kecil sekaligus memberikan kemampuan transmisi torsi yang kuat. Desain yang ringkas sangat menguntungkan dalam aplikasi di mana ruang terbatas, seperti sistem penggerak otomotif atau mesin kompak.

Dengan menggabungkan poros spline ke dalam sistem mekanis, para insinyur dapat mencapai transmisi daya yang efisien, memastikan bahwa daya ditransfer secara efektif dari sumber penggerak ke komponen yang digerakkan. Fitur desain unik dari poros spline memungkinkan transmisi torsi yang andal, distribusi beban yang merata, kompensasi ketidaksejajaran, kapasitas torsi tinggi, kekakuan torsional, koneksi yang andal, celah minimal, dan kekompakan.

Can spline shafts be applied in aerospace and aviation equipment?

Yes, spline shafts are commonly applied in aerospace and aviation equipment due to their ability to transmit torque and provide precise rotational motion. Here’s how spline shafts are used in the aerospace and aviation industry:

1. Aircraft Engines:

Spline shafts are utilized in aircraft engines for various purposes. They can be found in the engine’s accessory gearbox, where they transmit torque from the engine to drive auxiliary components such as fuel pumps, hydraulic pumps, generators, and engine starters. Spline shafts are also present in the engine’s variable geometry systems, which control the position of components like variable stator vanes or variable inlet guide vanes.

2. Flight Control Systems:

Spline shafts play a vital role in aircraft flight control systems. They are employed in the actuators and control mechanisms that operate the flaps, ailerons, elevators, rudders, and other control surfaces. Spline shafts enable precise and efficient transfer of control inputs from the cockpit to the respective control surfaces, contributing to the maneuverability and stability of the aircraft.

3. Landing Gear:

Spline shafts are used in the landing gear systems of aircraft. They can be found in components such as the landing gear actuator, which extends and retracts the landing gear, and the steering mechanism that controls the nose wheel. Spline shafts in landing gear systems need to withstand high loads, provide reliable operation, and ensure precise movement for safe and smooth landings and takeoffs.

4. Helicopter Rotors:

Helicopters rely on spline shafts in the main rotor assembly. The main rotor shaft, which transfers power from the helicopter’s engine to the rotor blades, often incorporates splines to ensure a secure connection and efficient torque transmission. Spline shafts are critical for maintaining stable and precise rotation of the rotor blades, allowing for controlled lift and maneuverability.

5. Auxiliary Systems:

Spline shafts are also applied in various auxiliary systems in aerospace and aviation equipment. These include systems such as power transmission for onboard generators, environmental control systems, fuel control systems, and hydraulic systems. Spline shafts in these applications contribute to the reliable operation and efficient functioning of the auxiliary equipment.

In aerospace and aviation applications, spline shafts are designed to meet stringent requirements for strength, durability, precision, and weight reduction. They are often made from high-strength materials such as titanium or alloy steel to withstand the demanding operating conditions and weight constraints of aircraft. Additionally, advanced manufacturing techniques are employed to ensure the dimensional accuracy and quality of spline shafts for critical aerospace applications.

The use of spline shafts in aerospace and aviation equipment enables precise control, efficient power transmission, and reliable operation, contributing to the safety, performance, and functionality of aircraft and related systems.

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 2024-04-16

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