Specializing in the design and manufacture of automotive motor armatures and stators.

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Precautions for using automotive armatures?

Release Time:

2022-11-05

   Automotive Armature As a new type of energy-saving, CNC integrated motor, it shoulders the important task of revolutionizing the existing motor structure to achieve the goal of more energy-saving and longer-life motor innovation. Below, we will discuss the precautions for using automotive armatures?

  There are also some precautions when using an automotive armature. For example, before disassembly, use compressed air to blow away dust from the surface of the motor and wipe off surface dirt. Choose a suitable location for disassembling the motor and clean the surrounding environment. It is also necessary to be familiar with the structural characteristics and maintenance technical requirements of the automotive armature. Only in this way can the necessary tools and equipment for disassembly be prepared. To further understand the defects in the operation of the automotive armature, if possible, an inspection test can be carried out before disassembly. For this purpose, the automotive armature is placed under load for a trial run, and the temperature, sound, vibration, etc. of each part of the motor are carefully checked, and the voltage, current, and speed are tested. Then, the load is disconnected, and a no-load test is performed separately to measure the no-load current and no-load loss, and records are made. After all these are completed, the power can be cut off, the external wiring of the motor can be removed, and records should be made.

  When using an automotive armature, a megohmmeter with a suitable voltage must be used to test the insulation resistance of the motor. In order to compare the insulation resistance value measured during the last inspection and judge the change trend and insulation state of the automotive armature, the insulation resistance values measured at different temperatures should be converted to the same temperature, generally 75℃. Next, the absorption ratio K needs to be tested. When the absorption ratio is greater than 1.33, it indicates that the automotive armature insulation has never been damp or the degree of dampness is not serious. In order to compare with previous data, the absorption ratio measured at any temperature also needs to be converted to the same temperature. Regularly check whether the sound of the automotive armature during operation is normal. If there is an abnormal sound, the machine must be stopped immediately for inspection, because the most worn part in the entire brushless motor is the bearing part. If there is an abnormal sound, it is very likely that the bearing is worn. If the wear is excessive, the bearing can be replaced and continued to be used. However, if the bearing is not replaced and continued to be used, the friction during the swinging and rotating process will accelerate the wear of other parts of the brushless motor, which will definitely accelerate the wear of the entire automotive armature.

  After the introduction of the above content, we have a further understanding of the precautions for using automotive armatures. We will no longer feel unfamiliar when we see it again, and problems will not occur frequently during use. Okay, that's all for today's content. I believe there will be more exciting knowledge points to come.

 

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What are the differences between a brushless motor stator and rotor and a car starter armature? Let's discuss this topic today. The brushless motor stator and rotor are key components widely used in automobiles and other electric devices, offering many advantages over traditional car starter armatures. So, why have brushless motor stators and rotors become such a popular choice? First, let's understand how brushless motor stators and rotors work. A brushless motor stator and rotor is a motor that electronically controls the position of the rotor. It uses a set of permanent magnets, usually magnets, fixed to the outside of the motor, called the stator. In contrast, the rotor consists of a set of coils that generate magnetic force through changes in current. This design eliminates the need for brushes and armatures to generate current, which are required in traditional starters, hence the name brushless motor. In contrast, a traditional car starter armature is a motor that generates current through physical contact. The starter armature consists of a set of coils and an armature. The armature is a rotating part containing conductive material and brushes. When the armature rotates, the brushes contact the conductive material and generate magnetic force through current. This design was very common in the past, but with technological advancements and changing needs, brushless motor stators and rotors have gradually replaced them.

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