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وصف المنتج
Product Parameters
| product | Nm148 Elastic Shaft Torsional Rubber HRC Coupling for 3D printing equipment |
| material | stainless steel , iron , aluminum ,bronze ,carbon steel ,brass etc . |
| size | ISO standard ,customer requirements |
| BORE | Finished bore, Pilot Bore, Special request |
| surface treatment | Carburizing and Quenching,Tempering ,Tooth suface high quenching Hardening,Tempering |
| Processing Method | Molding, Shaving, Hobbing, Drilling, Tapping, Reaming, Manual Chamfering, Grinding etc |
| Heat Treatment | Quenching & Tempering, Carburizing & Quenching, High-frequency Hardening, Carbonitriding…… |
| Package | Wooden Case/Container and pallet, or made-to-order |
| Certificate | ISO9001 ,SGS |
| Machining Process | Gear Hobbing, Gear Milling, Gear Shaping, Gear Broaching, Gear Shaving, Gear Grinding and Gear Lapping |
| التطبيقات | Toy, Automotive, instrument, electrical equipment, household appliances, furniture, mechanical equipment,daily living equipment, electronic sports equipment, , sanitation machinery, market/ hotel equipment supplies, etc. |
| Testing Equipment | Rockwell hardness tester 500RA, Double mesh instrument HD-200B & 3102,Gear measurement center instrument CNC3906T and other High precision detection equipments |
workshop & equipment
Production process
Certifications
Our Advantages
1 . Prioritized Quality
2 .Integrity-based Management
3 .Service Orientation
4 .150+ advanced equipment
5 .10000+ square meter factory area
6 .200+ outstanding employees
7 .90% employees have more than 10 year- working experience in our factory
8 .36 technical staff
9 .certificate ISO 9001 , SGS
10 . Customization support
11 .Excellent after-sales service
shipping
sample orders delivery time:
10-15 working days as usual
15-20 working days in busy season
large order leading time :
20-30 working days as usual
30-40 working days in busy season
التعليمات
1. why should you buy products from us not from other suppliers?
We are a 32 year-experience manufacturer on making the gear, specializing in manufacturing varieties of gears, such as helical gear ,bevel gear ,spur gear and grinding gear, gear shaft, timing pulley, rack, , timing pulley and other transmission parts . There are 150+ advanced equipment ,200+ excellent employees ,and 36 technical staff . what’s more ,we have got ISO9001 and SGS certificate .
2 .Do you accept small order?
If your order bearings are our standard size, we accept even 1pcs.
3 .How long is the delivery?
A: Small orders usually takes 10-15 working days,big order usually 20-35 days, depending on orders quantity and whether are standard size.
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| قياسي أم غير قياسي: | معيار |
|---|---|
| فتحة العمود: | 8-24 |
| عزم الدوران: | >80 ميلًا بحريًا |
| قطر التجويف: | 14mm |
| سرعة: | 4000 دورة/دقيقة |
| بناء: | Rigid |
| أمثلة: |
US$ 5/Piece
قطعة واحدة (الحد الأدنى للطلب) | |
|---|
| التخصيص: |
متاح
| طلب مخصص |
|---|


How do flexible couplings compare to other types of couplings in terms of performance?
Flexible couplings offer distinct advantages and disadvantages compared to other types of couplings, making them suitable for specific applications. Here is a comparison of flexible couplings with other commonly used coupling types in terms of performance:
- Rigid Couplings:
Rigid couplings are simple in design and provide a solid connection between two shafts, allowing for precise torque transmission. They do not offer any flexibility and are unable to compensate for misalignment. As a result, rigid couplings require accurate shaft alignment during installation, and any misalignment can lead to premature wear and increased stress on connected equipment. Rigid couplings are best suited for applications where shaft alignment is precise, and misalignment is minimal, such as in well-aligned systems with short shaft spans.
- Flexible Couplings:
Flexible couplings, as discussed previously, excel at compensating for misalignment between shafts. They offer angular, parallel, and axial misalignment compensation, reducing stress on connected components and ensuring smooth power transmission. Flexible couplings are versatile and can handle various applications, from light-duty to heavy-duty, where misalignment, vibration damping, or shock absorption is a concern. They provide a cost-effective solution for many industrial, automotive, and machinery applications.
- وصلات أولدهام:
Oldham couplings are effective at compensating for angular misalignment while maintaining constant velocity transmission. They offer low backlash and electrical isolation between shafts, making them suitable for precision motion control and applications where electrical interference must be minimized. However, Oldham couplings have limited capacity to handle parallel or axial misalignment, and they may not be suitable for applications with high torque requirements.
- وصلات التروس:
Gear couplings are robust and can handle high torque levels, making them suitable for heavy-duty applications such as mining and steel mills. They offer good misalignment compensation and have a compact design. However, gear couplings are relatively more expensive and complex than some other coupling types, and they may generate more noise during operation.
- وصلات الأقراص:
Disc couplings provide excellent misalignment compensation, including angular, parallel, and axial misalignment. They have high torsional stiffness, making them ideal for applications where accurate torque transmission is critical. Disc couplings offer low inertia and are suitable for high-speed applications. However, they may be more sensitive to shaft misalignment during installation, requiring precise alignment for optimal performance.
- Conclusion:
The choice of coupling type depends on the specific requirements of the application. Flexible couplings excel in compensating for misalignment and vibration damping, making them versatile and cost-effective solutions for many applications. However, in situations where high torque, precision, or specific electrical isolation is necessary, other coupling types such as gear couplings, disc couplings, or Oldham couplings may be more suitable. Proper selection, installation, and maintenance of the coupling are essential to ensure optimal performance and reliability in any mechanical system.

What are the differences between elastomeric and metallic flexible coupling designs?
Elastomeric and metallic flexible couplings are two distinct designs used to transmit torque and accommodate misalignment in mechanical systems. Each type offers unique characteristics and advantages, making them suitable for different applications.
Elastomeric Flexible Couplings:
Elastomeric flexible couplings, also known as flexible or jaw couplings, employ an elastomeric material (rubber or similar) as the flexible element. The elastomer is typically molded between two hubs, and it acts as the connector between the driving and driven shafts. The key differences and characteristics of elastomeric couplings include:
- Misalignment Compensation: Elastomeric couplings are designed to handle moderate levels of angular, parallel, and axial misalignment. The elastomeric material flexes to accommodate the misalignment while transmitting torque between the shafts.
- Vibration Damping: The elastomeric material in these couplings offers excellent vibration dampening properties, reducing the transmission of vibrations from one shaft to another. This feature helps protect connected equipment from excessive vibrations and enhances system reliability.
- Shock Load Absorption: Elastomeric couplings can absorb and dampen shock loads, protecting the system from sudden impacts or overloads.
- Cost-Effective: Elastomeric couplings are generally more cost-effective compared to metallic couplings, making them a popular choice for various industrial applications.
- Simple Design and Installation: Elastomeric couplings often have a straightforward design, allowing for easy installation and maintenance.
- Lower Torque Capacity: These couplings have a lower torque capacity compared to metallic couplings, making them suitable for applications with moderate torque requirements.
- Common Applications: Elastomeric couplings are commonly used in pumps, compressors, fans, conveyors, and other applications that require moderate torque transmission and misalignment compensation.
Metallic Flexible Couplings:
Metallic flexible couplings use metal components (such as steel, stainless steel, or aluminum) to connect the driving and driven shafts. The metallic designs can vary significantly depending on the type of metallic coupling, but some general characteristics include:
- High Torque Capacity: Metallic couplings have higher torque transmission capabilities compared to elastomeric couplings. They are well-suited for applications requiring high torque handling.
- Misalignment Compensation: Depending on the design, some metallic couplings can accommodate minimal misalignment, but they are generally not as flexible as elastomeric couplings in this regard.
- Stiffer Construction: Metallic couplings are generally stiffer than elastomeric couplings, offering less vibration dampening but higher torsional stiffness.
- Compact Design: Metallic couplings can have a more compact design, making them suitable for applications with limited space.
- Higher Precision: Metallic couplings often offer higher precision and concentricity, resulting in better shaft alignment.
- Higher Cost: Metallic couplings are typically more expensive than elastomeric couplings due to their construction and higher torque capacity.
- Common Applications: Metallic couplings are commonly used in high-speed machinery, precision equipment, robotics, and applications with high torque requirements.
ملخص:
In summary, the main differences between elastomeric and metallic flexible coupling designs lie in their flexibility, torque capacity, vibration dampening, cost, and applications. Elastomeric couplings are suitable for applications with moderate torque, misalignment compensation, and vibration dampening requirements. On the other hand, metallic couplings are chosen for applications with higher torque and precision requirements, where flexibility and vibration dampening are less critical.

هل يمكنك شرح الأنواع المختلفة لتصميمات الوصلات المرنة المتاحة؟
تتوفر أنواع عديدة من تصميمات الوصلات المرنة، لكل منها بنيتها وخصائصها الفريدة. صُممت هذه الوصلات خصيصًا لتلبية متطلبات تطبيقات محددة ومعالجة أنواع مختلفة من عدم المحاذاة واحتياجات نقل عزم الدوران. فيما يلي بعض أكثر أنواع الوصلات المرنة شيوعًا:
- وصلات الفك: تتكون وصلات الفك من محورين بفكين منحنيين، وجزء مرن من مادة مطاطية بينهما. يعمل هذا الجزء كعنصر مرن، ويعوض عن عدم المحاذاة الزاوية والمتوازية. تُستخدم وصلات الفك على نطاق واسع في مختلف التطبيقات الصناعية نظرًا لتصميمها البسيط وفعاليتها في معالجة عدم المحاذاة وتخميد الاهتزازات.
- وصلات الأقراص: تستخدم وصلات الأقراص أقراصًا معدنية رقيقة مزودة بسلسلة من الشقوق والحواف المتناوبة لربط الأعمدة. يتيح تصميم وصلة القرص تعويضًا ممتازًا عن عدم المحاذاة، بما في ذلك عدم المحاذاة الزاوية والمتوازية والمحورية. وتُعرف وصلات الأقراص بصلابتها الالتوائية العالية وقدرتها على نقل عزم الدوران بدقة.
- وصلات التروس: تتكون وصلات التروس من محاور مسننة متصلة بواسطة غلاف خارجي مزود بأسنان تروس. وهي مناسبة تمامًا للتطبيقات التي تتطلب عزم دوران عالٍ وانحرافًا متوسطًا. توفر وصلات التروس تعويضًا جيدًا للانحراف وقدرة عالية على تحمل عزم الدوران، مما يجعلها شائعة الاستخدام في التطبيقات الصناعية الشاقة.
- وصلات الحزمة: تستخدم وصلات العوارض قطعة واحدة من مادة مرنة، غالباً ما تكون عارضة معدنية، لربط الأعمدة. تتيح مرونة المادة تعويض عدم المحاذاة الزاوية والمحورية. تتميز وصلات العوارض بصغر حجمها وخفة وزنها وانخفاض قصورها الذاتي، مما يجعلها مناسبة للتطبيقات التي تتطلب سرعات عالية.
- وصلات منفاخية: تتكون وصلات المنفاخ من هيكل مرن يشبه المنفاخ يربط بين المحورين. وهي قادرة على تعويض عدم المحاذاة الزاوية والمتوازية والمحورية. وتُعرف وصلات المنفاخ بصلابتها الالتوائية العالية وقدرتها على الحفاظ على نقل سرعة ثابتة.
- وصلات أولدهام: تستخدم وصلات أولدهام ثلاثة أقراص، يحتوي القرص الأوسط منها على فتحة عمودية. يتيح هذا التصميم تعويض عدم المحاذاة الزاوية أثناء نقل عزم الدوران بين المحاور. تُستخدم وصلات أولدهام غالبًا عند الحاجة إلى عزل كهربائي بين الأعمدة.
لكل تصميم من تصاميم الوصلات المرنة مزاياه وعيوبه، ويعتمد الاختيار على عوامل مثل متطلبات عزم الدوران للتطبيق، وظروف عدم المحاذاة، وبيئة التشغيل، والسرعة. ويضمن الاختيار الصحيح لنوع الوصلة الأداء الأمثل والكفاءة والموثوقية في مختلف الأنظمة الميكانيكية والآلات الدوارة.


editor by CX 2024-05-03