カテゴリー: 製品カタログ

China factory CNC Machining Forged Steel Driving/Worm/Pinion/Screw/Ball Mill//Rotary/Truck/Roll/Transmission/Crank/Axle/Spindle/Roller/ Spline/Gear/Roller Roll Shaft

製品説明

CNC Machining Forged Steel Driving/Worm/Pinion/Screw/Ball Mill//Rotary/Truck/Roll/Transmission/Crank/Axle/Spindle/Roller/ Spline/Gear/Roller Roll Shaft

Product Disply

Process Hot forging, die forging and Free forging
材料 Carbon steel: 1571,1571,1035,1045,1055,Q235,Q345 etc.,
Alloy steel: 40Cr, 20CrMnTi, 20CrNiMo,35CrMn,42CrMo4 etc.,
Stainless steel, SS304,SS316 etc.
アルミニウム
標準 ISO, DIN, ASTM, BS ect.
Weight 5kg – 5000kg
Applicable Machining Process CNC Machining/ Lathing/ Milling/ Turning/ Boring/ Drilling/ Tapping/ Broaching/Reaming etc.
Machining Tolerance 0.02mm-0.1mm
Machined Surface Quality Ra 0.8-Ra3.2 according to customer requirement
Applicable Heat Treatment Normalization , quenching and tempering, Case
Hardening, Nitriding, Carbon Nitriding,
Applicable Finish Surface Treatment Shot/sand blast, polishing, Surface passivation, Powder coating, E- Coating, Chromate Plating, zinc-plate, Dacromat, Painting,
Testing equipment Supersonic inspection machine, Supersonic flaw detecting machine , physics and chemical analysis.
パッキング Wooden cases or according to customers’ needs
MOQ of mass production 10 pieces

Q: What do I need for offering a quote ?
A: Please offer us 2D or 3D drawings (with material, dimension, tolerance, surface treatment and other technical requirement etc.) ,quantity, application or samples. Then we will quote the best price within 24h.
Q: What is your MOQ?
A: MOQ depends on our client’s needs, besides,we welcome trial order before mass-production.
Q: What is the production cycle?
A: It varies a lot depending on product dimension,technical requirements and quantity. We always try to meet customers’ requirement by adjusting our workshop schedule.
Q: What kind of payment terms do you accept?
A.: T/T, L/C, Escrow, Paypal, western union, etc.
Q: Is it possible to know how is my product going on without visiting your company?
A: We will offer a detailed products schedule and send weekly reports with digital pictures and videos which show the machining progress.

材料: Alloy Steel
Load: Drive Shaft
Stiffness & Flexibility: Flexible Shaft
Journal Diameter Dimensional Accuracy: IT01-IT5
Axis Shape: Straight Shaft
Shaft Shape: Real Axis
カスタマイズ:
利用可能

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カスタマイズされたリクエスト

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.

スプラインシャフトは、環境条件の変化にどのように対応するのでしょうか?

Spline shafts are designed to handle variations in environmental conditions and maintain their performance and reliability. Here’s a detailed explanation:

1. 温度変化:

Spline shafts are engineered to withstand a wide range of temperature variations. They are constructed from materials that exhibit good thermal stability, such as high-grade steels or alloys. These materials have low coefficients of thermal expansion, minimizing the effects of temperature changes on the shaft’s dimensional stability. Additionally, proper lubrication with temperature-resistant lubricants helps reduce friction and wear in the spline engagement, even under extreme temperature conditions.

2. 耐湿性および耐腐食性:

Spline shafts can be designed to resist moisture and corrosion, ensuring their performance in humid or corrosive environments. Protective coatings, such as platings or surface treatments, can be applied to the shaft’s surfaces to enhance their resistance to moisture, oxidation, and corrosion. Additionally, selecting materials with inherent corrosion resistance, such as stainless steel or specialized alloys, can further enhance the spline shaft’s ability to handle environmental conditions.

3. 粉塵および汚染物質からの保護:

粉塵、汚れ、または汚染物質のレベルが高い環境で使用されるスプラインシャフトには、保護対策を施すことができます。シール、ガスケット、またはカバーを使用することで、スプラインの噛み合い部への異物の侵入を防ぐことができます。これらの保護対策は、スプライン形状の完全性を維持し、摩耗を最小限に抑え、汚れや粉塵の多い環境でもスムーズな動作を確保するのに役立ちます。

4. 潤滑とメンテナンス:

スプラインシャフトの確実な動作には、特に過酷な環境条件下では、適切な潤滑が不可欠です。適切な粘度と添加剤を含む潤滑剤を選択することで、効果的な潤滑と摩耗、摩擦、腐食からの保護を実現できます。スプラインシャフトの最適な性能と長寿命を確保するためには、定期的なメンテナンスと潤滑間隔を守る必要があります。

5. 耐衝撃性および耐振動性:

スプラインシャフトは、様々な用途で発生する衝撃や振動に耐えられるように設計されています。スプラインの噛み合いやシャフトの設計には、より厳しい公差、接触面積の拡大、または減衰要素などの機能を組み込むことで、衝撃や振動の影響を最小限に抑えることができます。さらに、適切な締結および取り付け方法により、シャフトをしっかりと固定し、動的負荷による緩みや破損のリスクを低減できます。

6. 環境密閉:

スプラインシャフトが水中や化学環境など過酷な環境条件にさらされる用途では、環境シールを使用することができます。Oリング、ガスケット、特殊シールなどのシール方法は、外部からの侵入を防ぐ追加のバリアとなり、スプラインシャフトの完全性と性能を確保します。

7. 規格への準拠:

特定の産業や用途で使用されるスプラインシャフトは、環境条件に関する業界標準や規制に準拠する必要がある場合があります。メーカーは、これらの要件を満たすようにスプラインシャフトを設計およびテストすることで、シャフトが指定された環境条件に耐え、確実に機能することを保証します。

設計上の配慮、適切な材料、保護コーティング、潤滑、およびメンテナンス方法を取り入れることで、スプラインシャフトは環境条件の変化に効果的に対応できます。これにより、過酷な運転環境下でも機能性、性能、および耐久性を維持することが可能になります。

スプラインシャフトの主要な構成要素と設計上の特徴は何ですか?

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. シャフト本体:

スプラインシャフトの主要構成要素はシャフト本体であり、これが構造的な強度を確保し、スプライン形状の基盤となる。シャフト本体は通常円筒形で、鋼、ステンレス鋼、その他の合金金属などの材料で作られる。材料の選択は、用途要件、トルク負荷、環境条件などの要因によって決まる。

2. スプライン:

スプラインは、スプラインシャフトの重要な設計要素です。スプラインとは、シャフト表面に機械加工された突起または歯のことです。スプラインは、相手部品との噛み合い機構を形成し、トルク伝達と相対運動を可能にします。スプラインの数、サイズ、形状は、用途要件や設計仕様によって異なります。

3. スプラインプロファイル:

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 2023-10-06

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