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Working principle and performance characteristics of helical gear hard tooth surface FAF67-2.2KW-27 reducer

Working principle

The FAF67 reducer is mainly composed of input shaft, output shaft, gear pair, housing and other components. Its working principle is to convert the high-speed rotational motion of the input shaft into the low-speed rotational motion of the output shaft through the meshing transmission of the gear pair, thereby achieving the purpose of deceleration. During the transmission process, power is transmitted from the input shaft to the gear pair, and then from the gear pair to the output shaft. By changing the number of teeth and module of the gears, different reduction ratios can be achieved.



Performance characteristics

Parallel axis output: The output axis is parallel to the input axis, with a compact structure, small space occupation, and easy installation and layout.

High torque transmission: High strength alloy steel is used to manufacture gears, which undergo precision machining and heat treatment to have high load-bearing capacity and torque transmission ability, and can meet the requirements of different working conditions.

Stable operation: The gear pair adopts helical gear transmission, with high coincidence, smooth operation, low vibration and noise, and can provide stable power transmission for the equipment.

Low noise: By optimizing gear design and manufacturing processes, as well as using high-quality bearings and seals, the operating noise of the gearbox has been effectively reduced, improving the comfort of the working environment.

Long lifespan: Key components such as gears and bearings are made of high-quality materials and undergo strict quality control and testing. They have high wear resistance and fatigue resistance, ensuring the reliability and stability of the gearbox during long-term operation and extending its service life.

Diverse installation methods: There are various installation methods available, such as base type, flange type, small flange type, torsion arm type, etc., which can be selected according to different equipment requirements and installation space, with high flexibility.

Flexible input methods: There are various forms of input methods such as direct connected motors, solid shafts, and connecting flanges, which can be matched with various types of motors for easy selection and configuration according to actual situations.

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