What are Electric Diaphragm Pumps?

What’s the Key Difference Between Electric and Air-Operated Diaphragm Pumps? The biggest difference lies in their power source. Electric diaphragm pumps use electricity, while air-operated diaphragm (AOD) pumps are powered by compressed air. By switching to electric diaphragm pumps, users can save up to 80% on operating and energy costs. These pumps, often referred to as sealless process pumps in specific designs, are highly efficient and reliable for fluid transfer applications.

Electric diaphragm pumps can handle a wide range of liquids, including those with low, medium, or high viscosities, as well as liquids containing suspended solids. They are well-suited for aggressive chemicals such as acids due to the variety of body materials available—like polypropylene, stainless steel, and aluminum—and diaphragm options such as Santoprene and PTFE.

These pumps are available with two- or three-diaphragm chamber configurations. The ARO EVO Series™, awarded the 2023 Pump Industry Awards’ Product of the Year, exemplifies innovation in electric diaphragm pump technology. Its design combines the benefits of air-operated diaphragm pumps and positive displacement pumps, offering superior efficiency, control, and performance. With a three-diaphragm setup and advanced features, the EVO Series provides a comprehensive, all-in-one solution.

“100% electric drive for energy efficiency: with zero compressed air needed. This eliminates costly compressed air, increasing cost savings and tremendously decreasing energy consumption.”

How Do Electric Diaphragm Pumps Work?

These pumps operate using a linear back-and-forth motion through a crankshaft system. This creates suction and discharge of the fluid. Let’s explore their working mechanism:

  1. Suction Stroke: The diaphragm moves away from the pump chamber, creating a low-pressure area. This draws fluid into the pump through an inlet valve, filling the chamber.
  2. Discharge Stroke: As the diaphragm returns to its original position it compresses the fluid in the chamber, increasing pressure. Then pushing the fluid out through a discharge valve and into the outlet or discharge pipe.
  3. Valves: They use a ball check valves to control flow direction. The inlet valve allows fluid to enter the pump during the suction stroke. The discharge valve ensures one-way flow during the discharge stroke.

Electric Motor and VFD: An electric motor powers the crankshaft of the pump. Power supply depends on designs and technologies. EVO Series™ electric diaphragm pumps of ARO provide the following voltage and frequency options: 3-phase dual frequency 50/60Hz with 200–240V, 380–500V or 525–600V.

In Figure 1, the left diaphragm has been forced towards the fluid chamber, and in doing so has displaced the liquid through the open valve at the top of the discharge port. At the same time liquid is drawn into the right-hand chamber via the right diaphragm. At the end of the stroke, the positions are reversed and the cycle repeats in the opposite direction, as shown in Figure 2.


Figure 1: Diaphragms which moves to the left

Figure 2: Diaphragms which moves to the right

What are Electric Diaphragm Pumps Used for?

Electric diaphragm pumps have a wide range of applications:

  1. Chemical Transfer: the pump’s seamless design is ideal for handling chemicals safely, and delivering precise fluid transfer.
  2. Paint and Ink: delivers high-quality finishes of paints, varnishes and coatings because of the pump’s ability to provide consistent flow rates for these viscous liquids. The EVO Series™ 3-chamber design pumps material without shear or pulsation, compared to traditional 2-chamber designs.
  3. Cardboard, Pulp and Paper: these pumps deliver the highest reliability and efficiency solution for pumping starch glue. The sealless design removes leakage and product loss. Control features allow the pump to deliver the exact flow and pressure to meet demand. A 3-chamber electric diaphragm pump delivers longer intervals between routine maintenance and low pulsation.
  4. Lithium-ion Battery Manufacturing: these pumps can handle abrasive materials and powders. This makes them great for carbon black and slurry applications, where durability and reliability are crucial.
  5. Industrial Wastewater: able to pump activated carbon fluids by maintaining constant operation at multiple speeds. Control features allow the pumps to quickly increase flow to discharge large volumes of wastewater based on your requirements.
  6. Construction Wastewater: filter press filling is a common application with electric diaphragm pumps, used in various industries like ceramic production or construction material manufacturing. By holding sufficient deadhead pressure they properly dry out and control the desired density of the filtered material. Electric diaphragm pump’s torque limit control allows them to increase flow rate and deliver maximum filter press filling, better than conventional pumps of the same size. Pump control features allow users to control the pump from the PLC interface to avoid manual operation.

 

What are the Advantages of Electric Diaphragm Pumps?

Electric diaphragm pumps offer several advantages:

  1. Self-Priming: electric diaphragm pumps are self-priming. They draw fluid from a lower level, lifting it to a higher elevation without the need for additional priming equipment.
  2. Run Dry Capability: ability to operate without fluid. Protecting pumps from damage in case of fluid shortage or power interruption.
  3. Compatible with a Wide Range of Fluids: including corrosive and abrasive substances. They can also handle different viscosities and temperatures, making them suitable for diverse applications.
  4. Simple and Compact Design: with fewer moving parts, electric diaphragm pumps have a straightforward design, enhancing reliability and simplifying installation, maintenance and repairs.
  5. Easy to Transport: often lightweight and compact, allowing for easy transport and ability to move around.
  6. Additional benefits only available on the EVO Series™ from ARO:
    • High efficiency with exceptional energy savings compared to other positive displacements pumps
    • Extremely low pulsation because of the unique three chamber design, no need for pulsation dampener
    • True Deadhead thanks to closed loop control that automatically stops pump’s spinning and hold pressure
    • Leak Free because of the secondary containment for fluid and oil, and automatic leak detection
    • IIoT ready — Full integration through PLC or HMI devices
    • Control features — more controllable than any other positive displacement pump in its range
    • All-in-one design — no need to buy extra accessories
      • Pump designed for long life even during high load conditions
      • High resistant diaphragms
      •  Low maintenance cost
    • Hazardous duty certifications attending the most exigent worldwide safety standards covering environments with presence of hazardous liquids and gasses

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