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

EN

What is the function of the fuel pump armature?

Release Time:

2022-07-25

   Fuel pump armature It is a device that continuously draws fuel from the fuel tank and provides fuel at a specified and specified flow rate. Based on the function of the fuel pump armature, the performance of the fuel pump armature directly affects the performance of the engine.

  The fuel pump armature is the "heart" of the electronic fuel injection engine. The fuel pump armature has two ways of supplying fuel. One is external, that is, the fuel pump is connected in series on the pipeline outside the fuel tank. The other is built-in, that is, the fuel pump is installed in the fuel tank and immersed in gasoline, so the fuel pump is easy to heat, low noise, and long service life, so it is widely used.

  In the fuel, the electric fuel pump is responsible for supplying a certain amount of fuel, and its unit fuel consumption is more than 8 times between the rated power operating conditions of the engine. A large amount of fuel continuously returns to the fuel tank through the oil pressure regulator, and the oil pressure regulator controls the oil pressure and cools the fuel pipe to avoid air blockage.

  The function of the fuel pump armature:

  1. The main components of the fuel pump armature motor include permanent magnets fixed on the body and armature reaction that generates an electromagnetic torque, as well as a brush device installed on the body. The brush contacts the armature on the commutator;

  Connect the wires to the outside of the terminal, wrap the armature of the pressure-controlled fuel pump armature, rivet the coil on the outside of the fuel pump armature, and assemble the components into a non-dismountable component;

  3. The additional service functions of the fuel pump are completed by the safety valve and the check valve. The safety valve can prevent excessive pressure caused by blockage of the traditional fuel system pipeline, resulting in oil pipe rupture or fuel pump damage.

  4. The role of the check valve is to seal the fuel pipe when the fuel pump stops working, keeping the fuel at a certain level, so that the next engine can start easily.

  The fuel pump armature consists of a pump body, a DC system motor, and a pump. Its basic management work analysis principle is that the DC motor drives the rotor in the pump to rotate at high speed by energizing time. The cross-section of the rotor shaft at the lower end is combined with the cross-section design of the impeller inner hole, so that the rotor rotates, and the rotor shaft drives other impellers to continuously rotate in the same direction. During the high-speed rotation of the impeller, a vacuum low pressure is generated between the oil inlet parts. Then, the filtered fuel is sucked in from the inlet of the pump cover, the sucked fuel is pressurized by the fuel pump impeller into the pump, and then pressed out from the outlet, providing a certain amount of fuel quality. The structure of the DC motor mainly includes permanent magnets fixed on the inner wall of the pump, a rotor that can generate magnetic torque when energized, and a graphite carbon brush assembly installed on the top of the pump. The carbon brush is in an elastic non-contact state with the commutator on the armature rotor, and the plug wiring electrode of the lead connection body. The two ends outside the fuel pump armature are riveted with coils, becoming a non-dismountable component.


Fuel pump armature

01-03

2023

What are the structural hotspots of a starter armature?

The starter armature moves the entire armature through the magnetic force of the magnetic poles, causing the drive gear to mesh with the flywheel gear ring. The armature of the starter is offset from the magnetic pole by a certain distance under the action of the reset spring, and the commutator is relatively long. The starter housing is equipped with an electromagnetic switch. Its magnetizing coil is controlled by the starter switch S. The movable contact is the contact bridge. The upper end of the contact bridge is longer and the lower end is shorter, so the starter circuit can be connected in two stages. The starter has three magnetic field windings. Among them, the main magnetic field winding with fewer turns is made of flat copper bars, and the other two fine wire windings are the series auxiliary magnetic field winding and the parallel auxiliary magnetic field winding (also called the holding coil). The starter one-way clutch generally uses a friction plate clutch. The working process of the starter armature is divided into two stages. The series auxiliary excitation winding mainly works in the first stage, and in the second stage it is almost short-circuited due to being in parallel with the main excitation winding; the parallel auxiliary excitation winding works in both stages, which not only increases the magnetic force attracting the armature, but also limits the no-load speed. (1) Engagement When the starter switch S is turned on, the electromagnet generates suction to attract the contact bridge. However, because the pawl rests against the blank, the contact bridge can only close at the upper end, and the series and parallel auxiliary magnetic field winding circuits are turned on. The current circuit is:

12-21

2022

Starter armature: What is an armature?

The starter armature manufacturer states that motors play a key and crucial role in the process of achieving mutual conversion between mechanical energy and electrical energy. For generators, it is the component that generates electromotive force, such as the rotor in a DC generator and the stator in an AC generator; for motors, it is a component that generates electromagnetic force, such as the rotor in a DC motor. The starter armature manufacturer states that the armature is the relative motion of the coil relative to the magnetic field of the coil-carrying component in the motor. In a generator, an induced electromotive force is generated in a forced rotating coil to generate electricity. In a motor, the energized coil is subjected to Ampere force in the magnetic field, causing it to rotate in the magnetic field. In the mid-19th century, the term "armature" was early used for inductors, i.e., holders of magnets. Part of an alternator or related equipment can be represented by any mechanical or electrical aspect. Although these two sets of terms are clearly separated, they are often used interchangeably, or a combination of mechanical and electrical terms is included. This can cause confusion when using composite motors such as brushless alternators, or when talking to people accustomed to using different configurations of motors. The starter armature manufacturer states that in most generators, the field magnet is rotating and is part of the rotor, while the armature is stationary.

12-12

2022

Starter armature: armature knowledge points

The armature manufacturer states that the armature plays a key and crucial role in the process of converting mechanical energy and electrical energy into each other. For generators, it is the component that generates electromotive force, such as the rotor in a DC generator and the stator in an AC generator; for motors, it is a component that generates electromagnetic force, such as the rotor in a DC motor. The armature is the part of a motor that has coils, and the coils move relative to the magnetic field. In a generator, an induced electromotive force is generated in the forced rotating coil to generate electricity. In a motor, the energized coil is subjected to the Ampere force in the magnetic field, causing it to rotate in the magnetic field. The armature manufacturer states that 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 composed of a stationary armature and a rotating magnetic field or a rotating armature and a stationary magnetic field. The pole shoes and moving iron parts of permanent magnets or electromagnets and solenoids (especially when the latter are used as switches or relays) can also be called armatures. The armature manufacturer states that armatures are divided into two categories: DC armature windings and AC armature windings. They are used in DC motors and AC motors respectively. Including the armature core and the armature winding, the armature winding is the circuit part of the DC motor,

< 1...121314...24 >