What causes the heating of the deceleration motor?
2021-12-23
The overheating phenomenon of a deceleration motor generally occurs due to the following situations: power supply failure, motor overload, phase loss operation, winding faults, cooling air passage blockage, and other reasons. Below, Silent Industrial will explain in detail.
How to choose a gear reduction motor?
2021-12-22
The gear reducer is a widely used speed reduction transmission device, mainly driven by a driving motor and a reduction gearbox assembly. There are various types of driving motors, commonly including DC motors, stepper motors, and hollow cup motors. The performance parameters of different types of driving motors vary, so it is necessary to choose a suitable driving motor based on the requirements.
Do you know the three main functions of a deceleration motor?
2021-12-20
A reduction motor refers to the integration of a reducer and a motor (motor), which is often referred to as a gear motor or gear motor. Below, the editor will introduce the three main functions of the reduction motor.
Solutions for gearbox transmission failures
2021-12-20
To ensure the mechanical safety and normal operation, it is necessary to improve the reliability of gear transmission. On one hand, it requires improving the design, enhancing manufacturing precision, and improving assembly quality. On the other hand, it is essential to enhance operational management and maintenance levels, as well as to conduct condition monitoring and fault diagnosis of the gear transmission device.
Application of Deceleration Motors in CNC Machine Tools
2021-12-17
The reduction motor has many advantages such as small size, light weight, compact structure, large load capacity, and high transmission efficiency, and is widely used in various industries. Today, let's learn about the application of reduction motors in CNC machine tools.
What problems may arise during precision gear processing?
2021-12-17
The technical guide that may appear during the precision gear processing is fatigue pitting, which is fatigue wear. After the gear is stressed, the tooth surface will generate battle stress, and the battle stress on the tooth surface will fluctuate and change repeatedly. During operation, under the influence of superimposed battle stress, small fatigue cracks appear on the tooth surface, and the cracks continue to extend and expand, causing metal chips to fall off the tooth surface and form pitted depressions.
When fatigue pitting occurs on the tooth surface, oscillation and noise will increase, which will affect normal production. Non-propagating pitting may also occur during precision gear processing. Once pitting appears, it will continue to expand, eventually forming propagating pitting. For surface hardening through surface quenching.