What is the difference between mechanical and electronic fuel dispensers?

Jan 29,2024

Fuel pumps were not necessary for internal combustion engines to function in the early days of vehicles. Instead, gasoline was fed by gravity via a fuel storage tank that was raised above the engine’s carburetor. These tanks were located behind the front seat, on the dash, and on the cowl, among other places. Gasoline pumps […]

Fuel pumps were not necessary for internal combustion engines to function in the early days of vehicles. Instead, gasoline was fed by gravity via a fuel storage tank that was raised above the engine’s carburetor. These tanks were located behind the front seat, on the dash, and on the cowl, among other places. Gasoline pumps were necessary to provide a steady flow of gasoline to the engine, but as vehicles encountered difficulties on steep inclines and safety concerns, it led to the removal of fuel tanks to the back.

AC-220 Big Fuel Dispenser

The Transition to Fuel Pumps

It is a common misconception that the fuel pumps used in early carbureted engines were all mechanical. However, in the late 1920s, both external and in-tank electric fuel pumps were available. However, electric fuel pump use did not become widely widespread until the mid-to-late 1980s electronic fuel injection (EFI) period. Until EFI took over as the primary fuel delivery method for internal combustion engines in the 20th century, the durable mechanical fuel pump remained in use.

Differentiating Mechanical and Electric Fuel Pumps

Mechanical Fuel Pump:

  • Operation: Mechanical fuel dispensers are attached to the engine of the car and are operated by a lever that is mounted on a fuel pump eccentric or cam lobe. By creating suction, this lever draws gasoline from the tank and feeds it to the carburetor.
  • Fuel Pressure: The fuel pressure of mechanical pumps is pre-set and appropriate for standard two- and four-barrel carburetors. They don’t need a return pipe for gasoline to the tank.
  • Quiet Operation: When pumping, mechanical gasoline pumps are usually silent and imperceptible. Without removing them, they are simple to test using a vacuum and fuel pump tester.
  • Limitations: Fuel injection conversions may find it difficult to provide the necessary pressure and volume using mechanical pumps. A car that sits for a long time may need longer cranking times to start because the gasoline in the carburetor bowls evaporates.

Electric Fuel Pump:

  • Operation: For both fuel-injected and carbureted applications, electronic fuel dispensers come in a variety of configurations. In contrast to mechanical pumps, they force gasoline into the engine and need a location near the fuel tank to ensure enough feeding.
  • Fuel Pressure: Electric fuel pumps, particularly in fuel injection systems, need a return or bypass-style regulator for adequate control because of their higher operating pressures.
  • Audible Operation: In-tank fuel pumps are quieter than external fuel pumps; however, both produce audible operating noise during operation. Upon receiving electricity, they immediately begin to pump, making it simple to prime the vehicle before starting it.
  • Mounting Considerations: For electric pumps to avoid starving and overheating, proper installation is essential. In-tank pumps provide cooling advantages and are quieter.
  • Versatility: Electric gasoline pumps are adaptable, offering choices for various uses, such as in-tank retrofits and frame/body-mounted inline pumps.

Filtration Needs and Fuel Pressure Regulation

  • Mechanical Pump Filtration: When using a 40-micron filter media inline gasoline filter between the pump and carburetor, mechanical pumps are available. Pre-filters are often not required.
  • Electric Pump Filtration: To safeguard the delicate internals of injectors, electric pumps, particularly for fuel injection, need a 100-micron pre-filter and a 10-micron post-filter.
  • Fuel Pressure Regulation: Regulators of fuel pressure are necessary for both electric and mechanical pumps. The settings may change; therefore, it’s best to tune them thoroughly on an engine or chassis dyno.

Transitioning from gravity-fed systems to advanced fuel delivery techniques is a crucial facet of automotive advancement. Depending on the use, complexity of the fuel system, and individual desire, one may choose to use an electronic fuel pump or stick with a mechanical fuel pump with its historical resonance. Fuel delivery systems are still a dynamic area as technology develops, with mechanical and electric pumps being essential to the operation of internal combustion engines.

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