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Frequently asked questions
About motor loss
Three-phase asynchronous motor will convert electrical energy into mechanical energy at the same time, itself will also lose a part of the energy, the loss can be generally divided into variable loss, fixed loss and stray loss three parts. Here is a simple understanding with Senli Motor Xiaobian!
Torque motor and ordinary motor performance difference
The speed of the ordinary three-phase asynchronous motor is lower than that of the rotating magnetic field, and the electromotive force and current are induced by the relative motion between the rotor winding and the magnetic field, and the electromagnetic torque is generated by the interaction with the magnetic field to achieve energy conversion. So what is the difference between torque motor and ordinary motor in performance? Here is a simple understanding of Senli Motor.
How is the torque motor implemented
Torque motor is a kind of asynchronous motor, the difference is that in some special occasions need to maintain a period of blocked rotation, mainly because its output characteristics are different from other motor products, with soft mechanical characteristics, will automatically change with the load change speed. So how does the torque motor achieve the requirement of lock-rotor? Here is a simple understanding with Senli Motor Xiaobian
Asynchronous motor features
Induction motor is also known as induction motor, it is an AC motor by the air gap rotating magnetic field and the rotor winding induction current interaction to produce electromagnetic torque, so as to achieve the conversion of electromechanical energy into mechanical energy.
Three-phase AC asynchronous motor overcurrent protection
When the three-phase AC asynchronous motor is working, its current exceeds the rated value, we call it overcurrent; If the time is too long, it will cause the motor to overheat and damage, so we need to take necessary protective measures. Here is a simple understanding with Senli Motor Xiaobian!
Stator and rotor losses of three-phase asynchronous motors
How to see if the motor is efficient? It mainly depends on whether its efficiency can meet the corresponding national standards under full load conditions. The factors that affect the efficiency of three-phase asynchronous motors are mainly divided into five aspects, that is, the five major losses of the motor are often said: stator loss, rotor loss, iron loss, wind friction loss and stray loss.
Understand single-phase asynchronous motors
Single-phase asynchronous motor refers to the single-phase AC power supply (AC220V) power supply of low-power asynchronous motor, its power design is relatively small, often made into small motor equipment, as a drive motor, its power only a few watts or hundreds of watts, generally not more than 2kW. Here is a simple understanding with Senli Motor Xiaobian!
Simple understanding of YEJ electromagnetic brake motor
YEJ series electromagnetic brake motor is also called brake motor, loss braking, power off braking and other ways. The working principle of the motor part is the same, the three-phase asynchronous motor will not stop automatically, in order to allow the motor to stop quickly while losing power, this motor is derived.
What is the braking torque of YEJ electromagnetic brake motor
When the machine is in motion, the mechanical parts that stop or slow down are called brake motors, also known as brakes and brakes. In fact, it is to install an electromagnetic brake device at the back end of the ordinary motor, called the brake, which is mainly composed of the brake frame, brake parts and control devices, and some brakes are also equipped with an automatic adjustment device for the brake gap.
The influence of different installation methods on the motor
Our common motor installation methods are mainly horizontal installation, vertical installation; Senli focuses on the development and production of 3KW and below small power motor, in the installation mode of horizontal (B3), vertical horizontal (B34), vertical large flange (B5), vertical small flange (B14).
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