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

EN

The function of the fuel pump armature

Release Time:

2022-07-18

  When it comes to the automotive fuel delivery system, the first thing that comes to mind is the fuel pump, because without the fuel pump, fuel cannot be supplied to the engine, and the previous P0087 fault code also mentioned the fuel pump. So Fuel pump armature What exactly does it do? Let me explain.

  Considering heat dissipation, sound insulation, and air resistance, the current fuel pump armature is built into the fuel tank. Its main function is to draw fuel from the fuel tank, pressurize it and deliver it to the fuel supply pipe, and maintain a certain fuel pressure through the fuel pressure regulator.

  Generally speaking, the fuel pump armature is actually a fuel pump component, a whole component. It contains multiple components, mainly composed of a filter (fuel filter, oil filter), a fuel pressure regulator, a fuel pump, and a fuel level sensor unit (float).

  1. Currently, most vehicle fuel pumps are installed in the fuel tank. The electrically driven fuel pump consists of three parts: the pump body, the permanent magnet motor, and the housing.

  2. Fuel flows through the electric fuel pump, cooling the armature of the permanent magnet motor, also known as a wet fuel pump. The motor part of the electric fuel pump includes a permanent magnet fixed to the housing, an armature that generates electromagnetic torque, and a brush assembly installed on the housing.

  3. The brushes contact the commutator on the armature, and the leads connect to the terminals on the housing, guiding the voltage that controls the electric fuel pump to the armature windings.

  4. The additional functions of the fuel pump are performed by the safety valve and the check valve. The safety valve prevents the fuel pipe from rupturing or the fuel pump from being damaged due to excessive pressure when the fuel pipe is blocked. The pressure regulator has the function of regulating and stabilizing pressure, and controls the fuel pressure at around 0.4 MPa (the specific pressure value may vary depending on the engine model). The pressure regulation method is to open the valve when the fuel pressure exceeds the spring pressure of the pressure regulator, allowing the fuel to flow back to the tank, so that the fuel pressure reaches a constant value.

  The fuel pump armature filter includes an oil filter and a fuel filter, commonly known as a coarse filter and a fine filter, which mainly filter impurities from the fuel. The main function of both is fuel filtration. The structure of the fuel filter consists of an aluminum shell and a stainless steel bracket. A high-efficiency filter paper is installed on the bracket, and the filter paper is in a daisy shape to increase the flow area. Its main function is to remove solid impurities such as iron oxide and dust from the fuel to prevent blockage of the fuel system (especially the injectors). The fuel pump operating time and duration are controlled by the ECU according to the actual vehicle conditions. The fuel pump is directly powered by the battery, and the fuel pump relay controls its on/off. Fuel pump circuit problems are often caused by fuel pump relay failure.

 

Fuel pump armature

03-13

2023

How to properly test a starter armature? Maintenance tips for starter armatures

The starter armature is a key component in the process of converting battery energy into mechanical energy during car starting. It consists of numerous small parts. Due to its complex structure and working environment, its maintenance is relatively complex and requires correct detection to ensure its normal operation and long lifespan. I. Correct methods for detecting the starter armature 1. Check the appearance of the starter armature to ensure that its rotating parts are not worn or deformed, the cable connectors are not damaged, the terminals are not discolored, the armature insulator is not damaged, and there is no abnormal temperature rise in the armature body. 2. Use a professional testing instrument to check its internal circuit to ensure that its resistance value has not changed, the insulation is not damaged, the brush bristles are not shortened, the contact surface of the carbon brush is not discolored, and the armature structure is not deformed. 3. Based on the test results, if problems are found with the starter armature, a new armature should be replaced promptly to ensure that the car can start normally, avoid engine damage, and prevent unnecessary repair costs. II. Starter armature maintenance 1. Regularly check the starter armature, especially after the car has been parked for a long time. Check the armature status promptly, and replace it with a new one if there are any abnormalities. 2. When the car is running, regularly check the engine

03-01

2023

Get to know brushless DC motor stators and rotors in one minute

The stator and rotor of a brushless motor are components of the motor. The two components can coordinate with each other through the action of the magnetic coil to convert electromagnetic energy information into mechanical energy. Simply put, the stator and rotor of a brushless motor are the rotating parts of the motor. Brushless DC motors use semiconductor switching devices to achieve electronic commutation, i.e., electronic switching devices replace traditional contact commutators and brushes. They have advantages such as high reliability, no commutation sparks, and low mechanical noise, and are widely used in high-end tape recorders, video recorders, electronic instruments, and automated office equipment. A brushless DC motor consists of a permanent magnet rotor, a multi-pole winding stator, and a position sensor. The position sensor detects the change in rotor position and switches the current in the stator windings in a certain order (i.e., it detects the position of the rotor magnetic pole relative to the stator windings and generates a position sensing signal at a specific position. After processing by the signal conversion circuit, it controls the power switching circuit and switches the winding current according to a certain logical relationship). The working voltage of the stator winding is provided by the electronic switching circuit controlled by the position sensor output. There are three types of brushless motor stator and rotor position sensors: photoelectric, magnetoresistive, and electromagnetic. In brushless DC motors using magnetoresistive position sensors, the magnetoresistive sensor components (

02-20

2023

How to check the condition of a brushless motor stator and rotor?

The stator and rotor of a brushless motor are important components of motors such as generators and starters. The stator is an important part of the motor. The stator and rotor of a brushless motor consist of a stator core, stator windings, and a frame. The main function of the brushless motor stator and rotor is to generate a rotating magnetic field, while the main function of the rotor is to be cut by electromagnetic lines in the rotating magnetic field to generate (output) current. The rotor is the rotating part of the motor. The motor consists of a rotor and a stator, used to achieve the conversion of electrical energy and mechanical energy, as well as mechanical energy and energy conversion devices. The motor rotor system is divided into two motor rotors and generator rotors. The function of the brushless motor stator and rotor is to rotate the drive shaft and provide electrical energy and mechanical energy conversion. The stator refers to the conductor in the magnetic field, the conductor is fixed, and the rotor refers to the electromagnetic coil, which moves relative to the conductor. This relative motion causes the magnetic lines of force to be cut, thus generating current in the stator coil. The stator and rotor of a brushless motor are made of iron cores and windings, and the windings are made of silicon steel and thick copper conductors. The conductors are insulated and coated with epoxy resin. The stator and rotor of a brushless motor are equivalent to conductors, and the rotor is equivalent to an electromagnet. After the rotor is energized, it is driven to rotate by the engine to form a rotating magnetic field model. Conversely, when the conductor cuts the rotating magnetic field, an induced electromotive force will be formed in the conductor.

< 1...101112...24 >