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

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What is the manufacturing method for the starter armature structure?

Release Time:

2023-01-10

   Starter armature The structure can increase the energization time of the starter and avoid the problem of short circuit caused by the ablation of the copper wire winding after the armature is energized for a long time, thus ensuring the safety of the circuit. The starter armature structure includes an armature shaft, an armature winding, an iron core and a commutator. The armature winding includes an end winding i arranged away from the commutator. The end winding i is provided with a U-shaped portion, and the U-shaped portion is provided with an insulating sleeve. The melting point of the insulating sleeve is higher than 200 ℃. The iron core is fitted on the armature shaft, and the iron core is provided with a winding slot i, and the armature winding is embedded in the winding slot i. The insulating piece i is set in the winding slot i to isolate the armature winding from the iron core and the edge of the armature winding components. The insulating piece i has an S-shape structure to wrap the edge of the armature winding components. The commutator is fitted on the armature shaft and is arranged near the end of the armature shaft. The commutator is provided with a winding slot ii. The armature winding also includes an end winding ii, which is arranged near the commutator and embedded in the winding slot ii. The end winding ii is composed of an inner ring layer and an outer ring layer, and the insulating element ii is arranged between the inner ring layer and the outer ring layer to isolate the inner ring layer and the outer ring layer. The tightening ring is also fitted at the position corresponding to the winding slot ii on the commutator. The insulating sleeve is made of glass fiber.

  Compared with the existing technology, the embodiments of the present invention have at least the following effects:

  1. The insulating sleeve is fitted on the U-shaped portion of the end winding i of the starter motor armature structure. The insulating sleeve is high-temperature resistant. The insulating sleeve can isolate the end windings i from each other to avoid short circuits caused by the ablation of the copper wires of the end windings i after the starter armature is energized for a long time, which increases the energization time of the starter armature and thus meets the strict requirements of diesel vehicle manufacturers for long-time energization of the starter.

  2. The winding slot i on the iron core is provided with an insulating piece i, which is S-shaped and can wrap and isolate the edge of the armature winding components, further avoiding the short circuit of the copper wire of the armature winding due to long-term ablation.

  3. The end winding ii is composed of an inner ring layer and an outer ring layer. The insulating part ii is arranged between the inner ring layer and the outer ring layer. The insulating part ii isolates the inner ring layer and the outer ring layer, which can prevent the short circuit of the copper wire of the end winding ii due to long-term ablation.


Starter armature

10-08

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Characteristics and advantages of brushless motor stator and rotor

Features and Advantages of Brushless Motor Stator and Rotor A brushless motor stator and rotor is a motor that uses electronic commutation. Compared with traditional brushed motors, it has many unique features and advantages. This article will detail the features and advantages of brushless motor stators and rotors and discuss their applications in various fields. One of the features of a brushless motor stator and rotor is its high efficiency. Because it uses electronic commutation, the brushless motor avoids the frictional losses of traditional brushes, thereby improving energy utilization efficiency. This means that with the same electrical energy input, a brushless motor can generate greater output power, thus providing stronger power. Secondly, the brushless motor stator and rotor has a long lifespan. Since brushless motors do not have brushes, the problem of brush wear is eliminated. This makes the brushless motor's service life longer, allowing it to maintain high-efficiency operation for a long time, reducing the frequency of maintenance and parts replacement, and lowering the cost of use. In addition, the brushless motor stator and rotor also has high-speed performance. Because the electronic commutation speed of a brushless motor is faster, higher speeds can be achieved. This makes brushless motors perform well in applications requiring high-speed rotation, such as aerospace, automotive, and industrial machinery. At the same time, the brushless motor stator and rotor also has lower noise and vibration levels. Traditional

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The materials and manufacturing processes of brushless motor stators and rotors

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The importance of brushless motor stators and rotors in automotive parts manufacturing

The Importance of Brushless Motor Stators and Rotors in Automotive Parts Manufacturing In automotive parts manufacturing, brushless motor stators and rotors are crucial components. They offer numerous advantages, including high efficiency, low noise, and long lifespan. This article will explore the importance of brushless motor stators and rotors in automotive parts manufacturing and explain their widespread use in the automotive industry. First, let's understand what brushless motor stators and rotors are. Brushless motor stators and rotors are the core components of a brushless motor, consisting of a stator and a rotor. The stator is the stationary part, while the rotor is the rotating part. A brushless motor converts electrical energy into mechanical energy through magnetic fields, driving various automotive components. A key advantage of brushless motor stators and rotors is their high efficiency. Compared to traditional brushed motors, brushless motors are more efficient. This is because brushless motors lack brushes and commutators on the rotor, reducing energy loss. Their high efficiency allows brushless motors to deliver more powerful output, resulting in more stable and faster vehicle operation. Second, brushless motor stators and rotors are characterized by low noise. The absence of brush and commutator friction and noise makes their operation very quiet. This significantly improves driving comfort and passenger experience.

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