製品説明
| Product Name | nm結合 |
| 材料 | cast iron |
| タイプ | nm 50-214 |
| Structure | 2 shaft ( 1 / 1a / 1b )+spider |
| Bore size | 7-952mm |
| Weight | About 0.48-35.7 kg / pcs |
| packing | plastic bag +paper box +wooden box +wooden pallet |
Flexible Coupling/Couplings
1. One Piece metallic spring coupling
2. Zero backlash
3. Absorption of parallel, angular misalignment and shaft end-play by spring action
4. Identical clockwise and anticlockwise rotational characteristics
5. Setscrew type or Clamp Type
6. Material: Aluminum Alloy or Stainless steel or other materials per customers’ request.
7. Anti-corrsion,widely used in medical science ,chemistry
8. High flexibilty
9. For servomotor stepmotor
What applications are coupling used for?
Couplings are used in servo drive technology, machine tools, packaging machinery, automation systems, printing presses, industrial robots, control and positioning technology, and general mechanical engineering.
MAIN PRODUCTS:
1) Timing Belt Pulley (Synchronous Pulley), Timing Bar, Clamping Plate;
2) Forging, Casting, Stampling Part;
3) V Belt Pulley and Taper Lock Bush; Sprocket, Idler and Plate Wheel;Spur Gear, Bevel Gear, Rack;
4) Shaft Locking Device: could be alternative for Ringfeder, Sati, Chiaravalli, Tollok, etc.;
5) Shaft Coupling:including Miniature couplings, Curved tooth coupling, Chain coupling, HRC coupling, Normex coupling, Type coupling, GE Coupling, torque limiter, Universal Joint;
6) Shaft Collars: including Setscrew Type, Single Split and Double Splits;
7) Timing Belt: including Rubber and PU timing belts for industrial;
8) Other customized Machining Parts according to drawings (OEM).
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| 標準か非標準か: | 標準 |
|---|---|
| シャフト穴: | 8-24 |
| トルク: | 1.3-300 |
| 穴径: | 7-952 |
| スピード: | 3000-13500 |
| 構造: | Flexible |
| 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 |
|---|


What industries commonly use flexible couplings for power transmission?
Flexible couplings are widely used in various industries for power transmission and motion control applications. Their ability to accommodate misalignment, dampen vibrations, and protect equipment from shock loads makes them valuable components in many industrial processes. Here are some of the industries that commonly utilize flexible couplings:
- Manufacturing: Flexible couplings are extensively used in manufacturing industries such as automotive, aerospace, electronics, and consumer goods production. They play a critical role in transmitting power between motors and various machinery, including conveyor systems, robots, and assembly lines.
- Oil and Gas: In the oil and gas industry, flexible couplings are used in pumps, compressors, turbines, and generators. They help transfer power in offshore platforms, refineries, pipelines, and drilling operations while compensating for the dynamic nature of these applications.
- Power Generation: Power plants, both conventional and renewable, rely on flexible couplings to transmit power from turbines and generators to electrical generators. They are used in coal-fired, natural gas, nuclear, hydroelectric, and wind power plants.
- Mining: In mining operations, flexible couplings are employed in various equipment, including conveyor systems, crushers, and large industrial pumps. They are designed to withstand the heavy loads and harsh conditions commonly found in mining environments.
- Marine: Flexible couplings are essential in marine propulsion systems, connecting engines to propellers or water jets. They also find use in shipboard machinery, auxiliary systems, and offshore applications.
- Pulp and Paper: The pulp and paper industry relies on flexible couplings in machinery used for wood processing, pulp production, papermaking, and printing processes.
- Chemical and Petrochemical: In chemical plants and petrochemical refineries, flexible couplings are utilized in pumps, mixers, agitators, and other rotating equipment to ensure efficient power transmission and protect sensitive machinery.
- Construction: The construction industry employs flexible couplings in various equipment, such as concrete pumps, cranes, excavators, and drilling machines.
- Water and Wastewater: Flexible couplings are used in water treatment plants, wastewater facilities, and irrigation systems to transfer power between motors and pumps.
- Agriculture: In agricultural machinery, flexible couplings are utilized in tractors, harvesters, and irrigation systems, enabling efficient power transmission and operation.
The versatility and adaptability of flexible couplings make them indispensable components in a wide range of industries, contributing to increased equipment reliability, reduced downtime, and improved overall system performance.

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.

フレキシブルカップリングの製造には、一般的にどのような材料が使用されますか?
フレキシブルカップリングは、さまざまな材料を使用して製造され、それぞれの材料は特定の用途に適した異なる特性を備えています。材料の選択は、用途の要件、環境条件、トルク容量、必要な柔軟性などの要因によって決まります。以下に、フレキシブルカップリングの製造によく使用される材料をいくつか示します。
- 鋼鉄: 鋼は、その強度、耐久性、そして優れたトルク伝達能力から、フレキシブルカップリングに広く用いられている材料です。鋼製カップリングは、高トルク要求と過酷な運転条件が求められる重工業用途に適しています。
- ステンレス鋼: ステンレス鋼は、腐食性の高い環境で使用されるフレキシブルカップリングの製造によく用いられます。ステンレス鋼製のカップリングは、錆やその他の腐食性物質に対する優れた耐性を備えているため、船舶、食品加工、化学工業などの用途に最適です。
- アルミニウム: アルミニウム製カップリングは軽量で慣性モーメントが小さく、優れたバランス性能を備えています。そのため、航空宇宙やロボット工学など、軽量化が極めて重要な用途で広く使用されています。
- 真鍮: 真鍮製の継手は電気伝導性に優れていることで知られており、特定の産業機械や電子機器など、電気的接地や電気的絶縁が必要な用途で使用されます。
- 鋳鉄: 鋳鉄製の継手は強度と耐久性に優れており、衝撃荷重や振動に対する耐性が求められる産業用途でよく使用されます。
- プラスチック/ポリマー: フレキシブルカップリングの中には、ポリウレタンやナイロンなどの高性能ポリマーやプラスチックを使用しているものがあります。これらの材料は、優れた柔軟性、低摩擦性、耐薬品性を備えています。プラスチック製カップリングは、耐腐食性と軽量性が不可欠な用途に適しています。
- エラストマー: エラストマーは、多くのフレキシブルカップリングにおいて、柔軟性のある要素として使用されています。天然ゴム、ネオプレン、ウレタンなどの材料は、柔軟性と振動減衰特性を提供するエラストマー製スパイダー要素として一般的に使用されています。
カップリング材の選定は、用途の具体的なニーズによって異なります。例えば、高性能かつ高負荷な用途では、堅牢性を重視して鋼製またはステンレス鋼製のカップリングが必要となる場合があります。一方、軽量化が重要な用途では、アルミニウム製またはポリマー製のカップリングが適している場合があります。さらに、材料の選択は、使用環境における温度範囲、化学物質への曝露、電気的要件などの要因にも影響されます。
メーカーは通常、カップリングの材質仕様を提供しており、ユーザーが用途の具体的な要求に基づいて情報に基づいた意思決定を行えるように支援している。


editor by CX 2024-04-17