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

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Design rules for automotive armatures

Release Time:

2022-08-22

   Automotive Armature Manufacturer's Statement Single-layer windings are not suitable for large-capacity motors, and small-capacity motors should not be double-layered. The magnetic flux density of the motor core should not be too high or too low. When the frequency and thickness of the silicon steel sheet core material are constant, the iron loss depends on the magnetic flux density. If the magnetic flux density is too high, the iron loss increases, and the motor efficiency decreases. The increased heat from the iron core increases the motor temperature, and the increased excitation power increases the motor power factor, so the magnetic flux density of the core should not be too high. Try to avoid excessive saturation of the magnetization curve. If the magnetic density is too low, it will increase the use of motor materials and increase the cost. The rotor teeth are narrow, the magnetic density is high, and the slot entry wire is large, i.e., the automotive armature slots are large.

  Automotive Armature Manufacturer's Statement Due to poor air conduction, there are many gaps in the slots, affecting the coils and easily damaging the heat dissipation of the insulation material, accelerating the increase in motor temperature. The slot fill factor of the motor slots cannot be too high or too low. Generally, the slot fill factor for low-speed motors is 75% to 85%, which can effectively prevent the enamelled wire from loosening in the slots. The design of the motor rotor slot shape should use parallel trapezoidal recesses as much as possible, and the edges of the recesses should not have sharp corners. Try to use a circular bottom recess, because the circular slot is filled with aluminum, which is easy to injection mold and the stator chip is easy to insert.

  The coil current density should not be too large or too small. The motor coil has a certain resistance, and when current passes through the coil, it will cause losses. The winding temperature increases. The motor design should reduce resistance, reduce losses, and improve efficiency. A thicker wire diameter reduces the current density and can reduce resistance, but increases the amount of coil material. Due to the increase in the recess area, the iron core magnetic density increases, thereby increasing the excitation current and iron loss of the motor. When designing the laminated structure, try to design slots with a large area. Generally, induction motors usually take 37A/mm2.

  The width of the motor slots should not be too large. If the slots are too large, the air gap flux distribution cannot be uniform, the tooth harmonics increase, and the additional losses increase. Usually, the width of the slots is about 3.5 mm. If it is too small, the enamelled wire cannot enter. The number of stator slots should not be too many or too few. Asynchronous motors have a large number of stator slots, a large magnetomotive force, a good electromotive force waveform, small additional losses, and high motor efficiency. The number of slots also increases the contact area between the coil and the core, the coil heating is good, the temperature rise is low, and the performance is good, but the production process is difficult and the cost is high.

   Automotive Armature Manufacturer's Statement The critical speed of the rotor should be greater than 1.2 times or less than 0.8 times the rated speed to avoid resonance. Asynchronous motors have a large air gap, large reluctance, and large excitation ampere-turns, which increase the motor excitation current and reduce the motor power factor. A large air gap weakens the harmonic magnetic field, and reduces the extra losses of the motor. Too small an air gap increases extra losses and reduces motor efficiency. Rotor skewing in asynchronous motors weakens the axial harmonic potential phase, thereby reducing additional synchronous torque and additional asynchronous torque, thereby reducing additional losses in the motor, improving efficiency, and reducing noise and vibration.

Automotive armature

12-27

2023

Provides manufacturing services for a variety of automotive motor armatures

The automotive armature is one of the core components of an automotive motor, playing a crucial role in the entire automotive electric system. As a company providing manufacturing services for a variety of automotive motor armature products, we are committed to providing high-quality armature solutions for automotive and motor manufacturers. In automotive motors, the armature is the key part that converts electrical energy into mechanical energy. It consists of many windings that generate force and motion through interaction with a magnetic field. Therefore, the design and manufacturing quality of the armature directly affect the performance and efficiency of the motor. Our company has advanced manufacturing equipment and a technical team that can customize various types and specifications of automotive armature products according to customer requirements and needs. Whether it is a DC motor or an AC motor, we can provide high-performance armature solutions. Our products are widely used in various vehicle types such as automobiles, motorcycles, and electric bicycles. In the manufacturing process of automotive armatures, we strictly control each link to ensure product quality and reliability. We use high-quality materials and advanced production processes to ensure that the armature has good thermal stability, wear resistance, and corrosion resistance. At the same time, we also conduct strict quality inspections and tests to ensure that each armature meets industry standards and customer requirements.

12-17

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Selection of professional automotive armature design and manufacturing manufacturers

The automotive armature is a crucial component in an automobile engine, responsible for converting electrical energy and mechanical energy. To ensure high quality and reliability, selecting a professional automotive armature design and manufacturing company is critical. This article will discuss how to choose a professional automotive armature design and manufacturing company and its importance. First, choosing a company with extensive experience and expertise in automotive armature design and manufacturing is key. Only those companies with years of experience and in-depth understanding of automotive armatures can provide high-quality products. They are familiar with various design and manufacturing requirements and can customize according to customer needs. Second, given the complexity and criticality of automotive armatures, choosing a company with advanced equipment and technology is also important. Modern automotive armature manufacturing requires high-precision equipment and advanced technologies to ensure accuracy and reliability. Only those companies that keep up with technological advancements can provide the best quality products. In addition, choosing a company that provides a full range of services is also worth considering. This includes support throughout the entire process, from design and manufacturing to after-sales service. A professional company will work closely with clients to understand their needs and provide comprehensive solutions.

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