製品説明
SC Transmission FCL Flange Flexible Coupling
製品説明
CHARACTERISTICS
FCL Coupling Flange Coupling has simple construction that makes it:
Easy to assemble and disassemble, easy parts replacement.
It is able to transmits power smoothly even under vibration and shock due to its ability to absorb shock and load vibration.
It is also able to transmit power under parallel and angular misalignment, and end-floating.
Smooth running.
Permit reverse revolution.
Full range available from Size 90 to 630
アプリケーション
SC Transmission flange flexible coupling has a wide range of applications: pump, blower, compressor, conveyor, crane & hoist, cement mixer, tractor, rolling mill, metal processing machine, spinning and weaving machinery etc.
製品パラメータ
| サイズ | D | D1 | d1 | L | C | n-M | kg | |||
| r/min | ||||||||||
| N.m | ||||||||||
| FCL90 | 4 | 4000 | 90 | 35.5 | 11 | 28 | 3 | 4-M8 | 1.7 | |
| FCL100 | 10 | 4000 | 100 | 40 | 11 | 35.5 | 3 | 4-M10 | 2.3 | |
| FCL112 | 16 | 4000 | 112 | 45 | 13 | 40 | 3 | 4-M10 | 2.8 | |
| FCL125 | 25 | 4000 | 125 | 65 | 50 | 13 | 45 | 3 | 4-M12 | 4 |
| FCL140 | 50 | 4000 | 140 | 71 | 63 | 13 | 50 | 3 | 6-M12 | 5.4 |
| FCL160 | 110 | 4000 | 160 | 80 | 15 | 56 | 3 | 8-M12 | 8 | |
| FCL180 | 157 | 3500 | 180 | 90 | 15 | 63 | 3 | 8-M12 | 10.5 | |
| FCL200 | 245 | 3200 | 200 | 100 | 21 | 71 | 4 | 8-M20 | 16.2 | |
| FCL224 | 392 | 2850 | 224 | 112 | 21 | 80 | 4 | 8-M20 | 21.3 | |
| FCL250 | 618 | 2550 | 250 | 125 | 25 | 90 | 4 | 8-M24 | 31.6 | |
| FCL280 | 980 | 2300 | 280 | 140 | 34 | 100 | 4 | 8-M24 | 44 | |
| FCL315 | 1568 | 2050 | 315 | 160 | 41 | 112 | 4 | 10-M24 | 57.7 | |
| FCL355 | 2450 | 1800 | 355 | 180 | 60 | 125 | 5 | 8-M30 | 89.5 | |
| FCL400 | 3920 | 1600 | 400 | 200 | 60 | 125 | 5 | 10-M30 | 113 | |
| FCL450 | 6174 | 1400 | 450 | 224 | 65 | 140 | 5 | 12-M30 | 145 | |
| FCL560 | 9800 | 1150 | 560 | 250 | 85 | 160 | 5 | 14-M30 | 229 | |
| FCL630 | 15680 | 1000 | 630 | 280 | 95 | 180 | 5 | 18-M30 | 296 | |
会社概要
よくある質問
配送
| 標準か非標準か: | 標準 |
|---|---|
| シャフト穴: | 11-95 |
| 構造: | フレキシブル |
| 材料: | 鋳鉄 |
| タイプ: | FCL Coupling |
| Transport Package: | Plywood Case |
| サンプル: |
US$ 10/Piece
1個(最小注文数) | |
|---|
| カスタマイズ: |
利用可能
| カスタマイズされたリクエスト |
|---|


フレキシブルカップリングは、水平軸配置と垂直軸配置の両方で使用できますか?
はい、フレキシブルカップリングは水平軸配置と垂直軸配置の両方で使用できます。フレキシブルカップリングは、軸間のずれを吸収し、角度、平行、軸方向の変位を補正できる設計になっているため、さまざまな軸の向きに適しています。
水平軸配置:
水平軸配置では、軸が地面または水平面と平行に配置され、2つの回転軸を接続するためにフレキシブルカップリングが一般的に使用されます。これらのカップリングは、運転中に発生する可能性のある軸のずれを吸収しながら、一方の軸からもう一方の軸へトルクを伝達するのに役立ちます。水平軸配置は、ポンプ、コンプレッサー、コンベア、産業機械などの用途でよく見られます。
垂直軸配置:
垂直軸配置、すなわち軸が地面または垂直面に対して垂直な配置においても、フレキシブルカップリングは適用可能です。垂直軸では、重力による追加の重量と力に対応できるカップリングが必要となることがよくあります。垂直用途向けに設計されたフレキシブルカップリングは、回転機器の重量を支えながら、熱膨張やその他の変位に対応するための軸方向の動きをある程度許容します。垂直軸配置は、ポンプ、ギアボックス、タービン、および一部の船舶推進システムなどの用途で一般的に見られます。
垂直軸配置に関する考慮事項:
垂直軸配置でフレキシブルカップリングを使用する場合、留意すべき点がいくつかあります。
- 推力荷重: 垂直軸は、特に上向きまたは下向きの方向に推力荷重を発生させる可能性があります。フレキシブルカップリングは、これらの力に対応するために、半径方向および軸方向の両方の荷重を処理できる能力に基づいて選定する必要があります。
- 潤滑: 垂直カップリングの中には、特に高い軸方向荷重がかかる場合や、垂直軸が長い場合、スムーズな動作を確保し摩耗を低減するために、追加の潤滑が必要となるものがあります。
- 支持と支持: 垂直軸の適切な支持およびベアリング配置は、過度の軸のたわみを防ぎ、フレキシブルカップリングが正しく機能するために不可欠です。
フレキシブルカップリングは、汎用性が高く、様々な軸の向きに対応できるため、効率的な動力伝達と軸ずれ補正を実現します。水平配置でも垂直配置でも、適切なフレキシブルカップリングの設計を採用し、用途に応じた要件を考慮することで、信頼性と効率性の高い運転を確保できます。

Can flexible couplings be used for both motor-to-shaft and shaft-to-shaft connections?
Yes, flexible couplings can be used for both motor-to-shaft and shaft-to-shaft connections in various applications. The versatility of flexible couplings allows them to adapt to different types of connections and meet the specific requirements of the system.
Motor-to-Shaft Connections:
When connecting a motor to a shaft, a flexible coupling serves as an intermediary component that joins the motor shaft and the driven shaft. Flexible couplings are commonly used in motor-driven systems to accommodate misalignment between the motor and the driven load. In motor applications, flexible couplings help reduce stress and wear on the motor bearings, thus extending the motor’s life and enhancing overall system reliability. They also act as vibration dampeners, minimizing vibrations transmitted from the motor to the driven shaft, and subsequently to connected equipment, ensuring smoother operation.
Shaft-to-Shaft Connections:
In many mechanical systems, such as those in the manufacturing, automation, and power transmission industries, shaft-to-shaft connections are required. A flexible coupling can bridge the gap between two shafts and transmit torque while accommodating misalignment. This type of coupling is commonly used to connect shafts that are not perfectly aligned due to factors like manufacturing tolerances, thermal expansion, or foundation settling. By allowing for misalignment, the flexible coupling protects the connected components from excessive stresses and ensures efficient power transmission.
Versatility and Advantages:
The ability of flexible couplings to handle both motor-to-shaft and shaft-to-shaft connections makes them versatile solutions for a wide range of industrial applications. Some of the advantages of using flexible couplings in these connections include:
- Minimizing stress and wear on connected components, such as bearings and seals.
- Compensating for misalignment, ensuring smooth power transmission.
- Damping vibrations and shock loads, reducing the risk of mechanical failures.
- Protecting equipment from excessive forces, enhancing system reliability.
- Simplifying installation and alignment procedures, reducing downtime.
- Improving overall system performance and operational efficiency.
アプリケーション:
Flexible couplings find applications in a wide range of industries, including manufacturing, material handling, automotive, aerospace, robotics, and more. Whether connecting a motor to a shaft or joining two shafts directly, flexible couplings play a crucial role in enhancing the reliability and efficiency of rotating machinery and mechanical systems.
In conclusion, flexible couplings can effectively serve as connectors for both motor-to-shaft and shaft-to-shaft connections, providing essential misalignment compensation and protection for connected equipment in various industrial applications.

Can flexible couplings handle misalignment between shafts?
Yes, flexible couplings are specifically designed to handle misalignment between shafts in rotating machinery and mechanical systems. Misalignment can occur due to various factors, including installation errors, thermal expansion, manufacturing tolerances, or shaft deflection during operation.
Flexible couplings offer the ability to compensate for different types of misalignment, including:
- 角度のずれ: When the shafts are not collinear and have an angular offset, flexible couplings can accommodate this misalignment by flexing or twisting, allowing the two shafts to remain connected while transmitting torque smoothly.
- 平行ずれ: Parallel misalignment occurs when the two shafts are not perfectly aligned along their axes. Flexible couplings can adjust to this misalignment, ensuring that the shafts remain connected and capable of transmitting power efficiently.
- 軸方向のずれ: Axial misalignment, also known as end float or axial displacement, refers to the relative axial movement of the two shafts. Some flexible coupling designs can accommodate axial misalignment, allowing for slight axial movements without disengaging the coupling.
The ability of flexible couplings to handle misalignment is essential in preventing premature wear and failure of the connected equipment. By compensating for misalignment, flexible couplings reduce the stress on the shafts, bearings, and seals, extending the service life of these components and improving overall system reliability.
It is crucial to select the appropriate type of flexible coupling based on the specific misalignment requirements of the application. Different coupling designs offer varying degrees of misalignment compensation, and the choice depends on factors such as the magnitude and type of misalignment, the torque requirements, and the operating environment.
In summary, flexible couplings play a vital role in handling misalignment between shafts, ensuring efficient power transmission and protecting mechanical systems from the adverse effects of misalignment. Their ability to accommodate misalignment makes them indispensable components in various industrial, automotive, aerospace, and marine applications.


editor by CX 2023-10-07