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مقاس R37 R57 R77 R87 R107
نسبة 3.41-134.82 4.39-782 5.31-1430 5.3-2873 6.66-7583
قوة 0.12KW-3KW 0.12KW-7.5KW 0.12KW-11KW 0.12KW-18.5KW 0.12KW-18.5KW
Output torque 30-205N.M 40-400N.M 50-795N.M 50-1610N.M 80-4870N.M
Output speed(RPM) 0.1-821RPM 0.1-660RPM 0.1-795RPM 0.1-276RPM 0.1-220RPM

R series reducer has the characteristics of small volume and large torque transmission. It is designed and manufactured on the basis of modular combination system. There are many motor combinations,installation forms and structural schemes. R series reducer adopts the modular design principle of unit structure, with high transmission efficiency, low energy consumption and superior performance.

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Application: Motor, Motorcycle, Machinery, Agricultural Machine, Lift
Hardness: Hardened Tooth Surface
Installation: Horizontal Type
Layout: Expansion, Parallel
Gear Shape: Bevel Gear
Step: Single-Step
Samples:
US$ 500/Piece
1 Piece(Min.Order)

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علبة تروس مخروطية

مزايا علب التروس المخروطية في سيناريوهات محددة

توفر علب التروس المخروطية مزايا واضحة في سيناريوهات معينة، مما يجعلها مفضلة على أنواع علب التروس الأخرى:

  • النقل الزاوي: عندما تكون هناك حاجة لنقل الحركة الدورانية بين أعمدة متقاطعة بزوايا مختلفة، تتفوق علب التروس المخروطية نظرًا لقدرتها على تغيير الاتجاه.
  • المساحات الصغيرة: تُعد علب التروس المخروطية مناسبة تمامًا للتطبيقات ذات المساحة المحدودة، حيث يمكن تركيبها في تكوينات ضيقة دون التضحية بالأداء.
  • عزم دوران عالٍ عند 90 درجة: في الحالات التي تتطلب نقل عزم دوران عالٍ بزاوية 90 درجة، تكون علب التروس المخروطية أكثر كفاءة من الأنواع الأخرى.
  • آليات التوجيه: تُستخدم علب التروس المخروطية بشكل شائع في أنظمة توجيه المركبات والآلات، مما يوفر تحكمًا اتجاهيًا سلسًا ودقيقًا.
  • متطلبات الحركة المعقدة: عندما تتطلب الآلات أو المعدات أنماط حركة معقدة تتضمن تغييرات في الاتجاه والسرعة، فإن علب التروس المخروطية توفر التنوع اللازم.
  • تطبيقات الخدمة الشاقة: تتفوق علب التروس المخروطية في البيئات الشاقة حيث تكون المتانة ونقل عزم الدوران والصلابة أموراً بالغة الأهمية.

إن التصميم والقدرات المحددة لصناديق التروس المخروطية تجعلها الخيار المفضل في هذه السيناريوهات، مما يساهم في الأداء الأمثل والكفاءة في مختلف التطبيقات الصناعية.

علبة تروس مخروطية

Proper Installation and Alignment of Bevel Gearboxes

Installing and aligning a bevel gearbox correctly is essential to ensure its optimal performance and longevity. Here are the steps typically involved in the process:

  1. Preparation: Before installation, thoroughly clean the mounting surfaces of both the gearbox and the driven equipment to ensure proper contact. Check that all components are in good condition and free from damage.
  2. Positioning: Carefully position the gearbox and the driven equipment according to the manufacturer’s specifications and the intended orientation of the bevel gears.
  3. تنسيق: Use precision alignment tools, such as dial indicators or laser alignment systems, to ensure accurate alignment of the bevel gears. The goal is to achieve proper concentricity and parallelism between the input and output shafts of the gearbox.
  4. Bolt and Fasten: Securely bolt and fasten the gearbox to the mounting surface. Use appropriate torque settings as recommended by the manufacturer to ensure proper clamping force without overloading the fasteners.
  5. تشحيم: Apply the recommended lubricant to the bevel gears and other relevant components according to the manufacturer’s guidelines. Proper lubrication is crucial for reducing friction and wear during operation.
  6. Testing: After installation, perform a thorough functional test of the bevel gearbox. Check for any abnormal noise, vibration, or overheating during operation. Ensure that the gearbox operates smoothly and efficiently under different load conditions.
  7. Monitoring: Regularly monitor the performance of the bevel gearbox through routine inspections and maintenance. Keep an eye out for any signs of misalignment, wear, or other issues that may affect performance.

It’s important to follow the manufacturer’s installation and alignment guidelines closely, as proper installation practices contribute to the reliable and efficient operation of the bevel gearbox.

علبة تروس مخروطية

Transmission of Motion at an Angle with Bevel Gearboxes

Bevel gearboxes are designed to transmit motion between intersecting shafts that are positioned at an angle to each other. They accomplish this by using a set of bevel gears, which have teeth that are cut in a conical shape.

When two bevel gears mesh, their teeth engage at the point of contact. As one gear rotates, it drives the other gear, transmitting motion and torque between the shafts. The angle between the shafts and the orientation of the gear teeth determine the direction and speed of motion transfer.

There are two main types of bevel gears commonly used in bevel gearboxes:

  • Straight Bevel Gears: These gears have straight-cut teeth and are used when the intersecting shafts are at a 90-degree angle. They are the simplest form of bevel gears and provide efficient motion transmission.
  • Spiral Bevel Gears: These gears have teeth that are cut at an angle, allowing them to gradually engage and disengage. Spiral bevel gears are used when the intersecting shafts are at angles other than 90 degrees. They provide smoother operation, less noise, and increased load-carrying capacity compared to straight bevel gears.

The precision manufacturing of bevel gear teeth ensures accurate and reliable motion transmission at various angles, making bevel gearboxes suitable for applications that require motion to be transferred between intersecting shafts in non-parallel orientations.

China Professional R Series Helical Bevel Gear Box/Gearbox with Motor/Use of Helical Gear Box   with high quality China Professional R Series Helical Bevel Gear Box/Gearbox with Motor/Use of Helical Gear Box   with high quality
editor by CX 2024-01-15