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

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What are the components of a starter motor armature?

Release Time:

2023-01-30

   Starter armature The control device includes an electromagnetic switch, a starter relay, and an ignition start switch, etc. The electromagnetic switch is made together with the starter armature.

  I. Electromagnetic switch

  1. Structural characteristics of the electromagnetic switch

  The electromagnetic switch is mainly composed of an electromagnet mechanism and a motor switch. The electromagnet mechanism consists of a fixed core, a movable core, an attracting coil, and a holding coil. The fixed core is fixed, and the movable core can move axially in the copper bushing. The front end of the movable core is fixed with a push rod, and the front end of the push rod is provided with a switch contact plate. The rear end of the movable core is connected to the fork through an adjusting screw and a connecting pin. A reset spring is arranged outside the copper bushing to reset the movable parts, such as the movable core.

  2. Working principle of the electromagnetic switch

  When the directions of the magnetic fluxes generated by energizing the attracting coil and the coil are the same, their electromagnetic attractions overlap each other, and the movable core can be attracted to move forward. The pad at the front end of the push rod until the electrical switch contacts are connected to the main motor circuit. When the magnetic pain caused by the energization of the attracting coil and the coil is in the opposite direction, their electromagnetic attractions cancel each other out. Under the action of the reset spring, the movable core and other movable parts automatically reset, the pads and contacts are disconnected, and the main motor circuit is disconnected.

  II. Starter relay

  The coils are connected to the ignition switch terminals and the connection terminals "E" on the housing respectively, the fixed contacts are connected to the start terminal "S", and the movable contacts are connected to the battery terminal "BAT" through the contact arm and bracket. The starter relay is a normally open contact. When the coil is energized, the relay core generates an electromagnetic force to close its contacts, thereby connecting the pump coil and the coil circuit controlled by the relay.

  1. Control circuit

  The control circuit includes the starter relay control circuit and the starter electromagnetic switch control circuit.

  The starter relay control circuit is controlled by the ignition switch, and the control object is the relay coil circuit. When the ignition switch is turned on, the current flows from the battery to the ammeter through the starter power terminal, then from the ammeter to the ignition switch, and the relay coil returns to the negative pole of the battery. Then the relay core generates a strong electromagnetic attraction, so that the relay contacts are closed, and the control circuit of the starter armature electromagnetic switch is connected.

  2. Main circuit

  After the electromagnetic switch is turned on, the attracting coil 3 and the holding coil 4 will generate strong electromagnetic attraction and turn on the main circuit of the starter armature. The circuit is: positive pole of the battery → starter power terminal → electromagnetic switch → excitation winding → armature winding → ground, ground → negative pole of the battery, so the starter generates electromagnetic torque and starts the engine.

  III. Common faults of starter armature

  1. Reduced-speed starter armature fault

  The battery is fully charged, the wires are connected normally, and the starter does not rotate after the ignition switch is turned on.

  Fault location: Starter, combination relay, connecting wires and switches, etc.

  Troubleshooting:

  (1) Check the wire connections and switch operation.

  (2) Determine whether the fault is in the starter or in the combination relay

  2. Starter does not rotate

  The battery is fully charged, the wires are connected normally, and the starter does not rotate after the ignition switch is turned on.

  Fault location: Starter, combination relay, connecting wires and switches, etc.

  Troubleshooting:

  (1) Check the wire connections and switch operation.

  (2) Determine whether the fault is in the starter or the combination relay: Short-circuit the two terminals on the starter electromagnetic switch with a wire to start the engine. If the starter runs, the fault is in the combination relay; if the motor does not rotate, the fault is in the starter.

  (3) Determine whether the fault is in the motor or in the electromagnetic switch: Short-circuit the two main terminals on the starter with a wire. If the motor is running, the fault is in the electromagnetic switch; otherwise, the fault is in the motor.


Starter armature

11-01

2022

Detailed explanation of the main function of an automotive armature?

Automobile armature manufacturers indicate that the armature is the component in the motor that houses the coil, and the coil's relative movement to the magnetic field. In a generator, an induced electromotive force is generated in the forced rotating coil, causing it to generate electricity. In a motor, the energized coil rotates in the magnetic field under the action of Ampere force. A part of an alternating current generator or related equipment can be represented in either mechanical or electrical terms. Although distinctly separate, these two sets of terminology are often used interchangeably or include a combination of a mechanical term and an electrical term. This can cause confusion when using composite machines such as brushless AC generators, or when conversing between personnel accustomed to using differently configured machines. In most generators, the field magnet is rotating and is part of the rotor, while the armature is stationary and is part of the stator. Motors and generators can be constructed with a stationary armature and a rotating magnetic field or a rotating armature and a stationary magnetic field. The pole shoes of permanent magnets or electromagnets, and the moving iron parts of solenoids (especially if the latter are used as switches or relays) can also be called armatures. Automobile armatures have simple circuitry, low cost, and convenient operation. The disadvantages are high power loss, low efficiency, and reduced motor output. It achieves the conversion between mechanical energy and electrical energy.

11-05

2022

Precautions for using automotive armatures?

As a new type of energy-saving, CNC integrated motor, the automotive armature shoulders the important task of revolutionizing the existing motor structure to achieve the goal of more energy-saving and longer-life motor innovation. Below are some precautions for using an automotive armature. 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 working location for disassembling the motor and clean the site 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. To this end, 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. Load current and no-load losses are recorded. After all this is completed, the power can be cut off, the external wiring of the motor can be removed, and records can 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, the insulation of the automotive armature is judged

10-12

2022

What are the advantages of a fuel pump armature?

As everyone knows, this component plays a key and pivotal role in the process of converting mechanical energy and electrical energy in a fuel pump. For a generator, it is the component that generates electromotive force. Below, we will discuss the advantages of fuel pump armatures. The fuel pump armature is now the part of the motor that houses the coil, and the relative movement of the coil and the magnetic field. In fact, it is mainly a coil group, wound and connected according to certain rules. It is one of the main components that realize electromechanical energy conversion in an electric motor. The fuel pump armature is composed of single-turn or multi-turn coils, and each turn can also be wound with multiple parallel wires. It shows a coil placed in the slot. In particular, it should be able to generate sufficient induced electromotive force and allow a certain armature current to pass through, thereby generating the required electromagnetic torque and electromagnetic power. In addition, it should save non-ferrous metals and insulating materials. Of course, its structure is simple and its operation is reliable. Moreover, the fuel pump armature is composed of many coils (hereinafter referred to as components) connected according to certain rules. It is wound with high-strength enamelled wire or glass fiber-wrapped flat copper wire. It should be known that the coil sides of some different coils are embedded in the armature in two layers. Proper insulation must be provided between the coils in the slots and the iron core and the upper and lower coil sides. In order to prevent the centrifugal force from throwing the edges of the coils out of the slots, the slots are used with slots

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