製品説明
Product description
The spline is a kind of linear motion system. When spline motions along the precision ground Shaft by balls, the torque is transferred. The spline has compact structure. It can transfer the Over load and motive power. It has longer lifetime. At present the factory manufacture 2 kinds of spline, namely convex spline and concave spline. Usually the convex spline can take bigger radial load and torque than concave spline.
| Product name | Ball spline |
| モデル | GJZ,GJZA,GJF,GJH,GJZG,GJFG, |
| Dia | 15mm-150mm |
| 材料 | Bearing Steel |
| Precision Class | Normal/ High/ Precise |
| Package | Plastic bag, box, carton |
| MOQ | 1pc |
仕様
Ball type:φ16-φ250
High speed , high accuracy
Heavy load , long life
Flexible movement,low energy consumption
High movement speed
Heavy load and long service life
Applicationgs:semiconductor equipment,tire machinery,monocrystalline silicon furnace,medical rehabilitation equipment
Company profile
HangZhou CHINAMFG has a full performance laboratory of rolling functional components, high-speed ball screw pair 60m/min running noise 70dB, high-speed rolling linear guide pair 60m/min running noise 68dB, for precision horizontal machining center batch matching ball screw pair, rolling guide pair, to achieve each axis fast moving speed 40m/min, positioning accuracy 0.002mm, repeated positioning accuracy 0.001mm. Our equipments import from Japan and Germany and so on.
よくある質問
Why choose AZI China?
With more than 60 years of production experience, quality assurance,factory directly price.
How can I get a sample to check the quality?
We quote according to your drawing, the price is suitable, CHINAMFG the sample list.
What is your main products ?
Our Main products are consist of ball screw,linear guide,arc linear guide,ball spline and ball screw linear guide rail module.
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| 材料: | Gcr15 |
|---|---|
| Load: | カスタマイズされた |
| Stiffness & Flexibility: | Stiffness / Rigid Axle |
| Journal Diameter Dimensional Accuracy: | カスタマイズされた |
| Axis Shape: | Straight Shaft |
| Shaft Shape: | Real Axis |
| サンプル: | US$ 10/Set 1 Set(Min.Order) | |
|---|
| カスタマイズ: | 利用可能 | カスタマイズされたリクエスト |
|---|
What safety considerations should be kept in mind when working with spline shafts?
Working with spline shafts requires adherence to certain safety considerations to ensure the well-being of personnel and the proper functioning of the machinery or equipment. Here’s a detailed explanation:
1. Personal Protective Equipment (PPE):
When working with spline shafts, individuals should wear appropriate personal protective equipment, including safety glasses, gloves, and protective clothing. PPE helps protect against potential hazards such as flying debris, sharp edges, or contact with lubricants.
2. Lockout/Tagout Procedures:
Prior to performing any maintenance or repair work on machinery or equipment involving spline shafts, proper lockout/tagout procedures should be followed. This involves isolating the power source, de-energizing the system, and securing it with lockout devices or tags to prevent accidental startup or release of stored energy.
3. Training and Competence:
Only trained and competent personnel should work with spline shafts. They should have a thorough understanding of the machinery or equipment, including the operation, maintenance, and safety procedures specific to spline shafts. Adequate training and knowledge help minimize the risk of accidents or improper handling.
4. Proper Handling and Lifting Techniques:
When moving or lifting machinery components that include spline shafts, proper techniques should be employed. This includes using appropriate lifting equipment, maintaining a stable posture, and avoiding sudden movements that could cause strain or injury.
5. Inspection and Maintenance:
Spline shafts should be regularly inspected for signs of wear, damage, or misalignment. Any abnormalities should be addressed promptly by qualified personnel. Routine maintenance, such as lubrication and cleaning, should be performed according to the manufacturer’s recommendations to ensure optimal performance and longevity.
6. Correct Installation and Alignment:
During installation or replacement of spline shafts, proper alignment and fit should be ensured. The shafts should be correctly seated and engaged with the mating components, following the manufacturer’s guidelines. Improper installation or misalignment can lead to premature wear, excessive stress, or failure of the spline shafts.
7. Hazardous Environments:
When spline shafts are used in hazardous environments, such as those with flammable substances, extreme temperatures, or high vibrations, additional safety measures may be required. These may include explosion-proof enclosures, temperature monitoring, or vibration damping systems.
8. Emergency Procedures:
Emergency procedures should be established and communicated to all personnel working with spline shafts. This includes knowing the location of emergency stops, emergency shutdown procedures, and the contact information for emergency response personnel.
9. Manufacturer’s Guidelines:
It is essential to follow the manufacturer’s guidelines and recommendations regarding the installation, operation, and maintenance of spline shafts. The manufacturer’s instructions provide specific safety information and precautions tailored to their product.
By taking these safety considerations into account and implementing appropriate measures, the risks associated with working with spline shafts can be minimized. Safety should always be a top priority when dealing with machinery or equipment that incorporates spline shafts.
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.
機械システムにおいてスプラインシャフトを使用する利点は何ですか?
Using spline shafts in mechanical systems offers several advantages. Here’s a detailed explanation:
1. トルク伝達:
スプラインシャフトは、駆動部品と被駆動部品の間で効率的なトルク伝達を実現します。噛み合うスプラインにより、回転力が確実かつ確実に伝達され、機械システムにおける動力と運動の伝達が可能になります。
2. 相対運動調節:
スプラインシャフトは、駆動側と被駆動側の相対的な動きに対応できます。軸方向、半径方向、角度方向の変位を許容することで、ミスアライメント、熱膨張、振動を補正します。この柔軟性により、適切な噛み合いを維持し、応力集中を最小限に抑えることができます。
3. 負荷分散:
シャフトのスプラインは、伝達される荷重を係合面全体に分散させます。これにより、局所的な応力が軽減され、部品の早期摩耗や破損を防ぐことができます。スプラインシャフトの荷重分散能力は、機械システムの全体的な耐久性と寿命に貢献します。
4. 精密な位置決めと制御:
スプラインシャフトは、機械部品の精密な位置決めと制御を可能にします。スプラインは正確な回転アライメントを提供し、精密な角度位置決めとインデックス付けを実現します。これは、動きの精密な制御と同期が求められる用途において非常に重要です。
5. 互換性と標準化:
スプラインシャフトは、標準化された設計と寸法で提供されています。これにより、部品間の互換性が確保され、メンテナンスや交換が容易になります。また、標準化によって設計および製造プロセスが簡素化され、コストとリードタイムの削減につながります。
6. 高出力伝送能力:
スプラインシャフトは、高トルク負荷に耐えられるように設計されています。噛み合うスプラインが広い接触面積を提供し、伝達されるトルクを複数の歯に分散させます。これにより、スプラインシャフトはより高い動力伝達要件に対応でき、重負荷用途に適しています。
7. 汎用性:
スプラインシャフトは、さまざまな用途要件に合わせて設計・製造できます。サイズ、形状、スプライン数、スプラインプロファイルなど、機械システムの特定のニーズに合わせてカスタマイズ可能です。この汎用性により、スプラインシャフトは幅広い産業や用途に対応できます。
8. スリップとバックラッシュの低減:
適切に設計・製造されたスプラインシャフトは、滑りやバックラッシュが最小限に抑えられます。スプライン間の密着性により、トルク伝達時の軸方向または半径方向の大きな動きが防止され、機械システムの効率と精度が向上します。
要約すると、機械システムにおいてスプラインシャフトを使用する利点としては、効率的なトルク伝達、相対運動への対応、荷重分散、精密な位置決めと制御、互換性、高い動力伝達能力、汎用性、そして滑りやバックラッシュの低減などが挙げられます。これらの利点により、スプラインシャフトは、動力伝達、柔軟性、そして精密な動作制御が不可欠な様々な用途において、信頼性が高く効果的な選択肢となります。
editor by CX 2024-02-10