EF Series

The FTI EF Series provides economical, lightweight and sealless drum pumps for light-duty chemical and fluid transfer. Moreover, interchangeable electric, battery and air motors, integral strainers and multiple tube materials make the range a practical replacement for manual hand pumps.

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Product Description

FTI EF Series Economy Drum Pumps

The FTI EF Series consists of economical, sealless drum and barrel pumps designed for light-duty container transfer. Therefore, the range provides a convenient powered alternative to manual hand pumps for drums, barrels and smaller containers.

Depending on the selected motor, maximum flow reaches approximately 64.4 lpm, while maximum head reaches 6.1 metres. Moreover, the range supports fluids with a specific gravity up to 1.6.

EF Series Sealless Drum Pump Design

The sealless design removes the mechanical shaft seal used in many conventional pumps. Consequently, there are fewer seal components requiring maintenance during normal light-duty operation.

In addition, the axial-flow impeller is designed to provide useful transfer rates from a compact pump tube. Therefore, the FTI EF Series can improve speed and convenience when compared with repetitive manual pumping.

Key Features of Finish Thompson EF Pumps

  • Maximum flow up to 64.4 lpm
  • Maximum head up to 6.1 m
  • Maximum specific gravity of 1.6
  • Viscosity up to 300 cP with suitable electric motors
  • Sealless, lightweight construction
  • Axial-flow impeller
  • Integral inlet strainer
  • Electric, battery and air-motor options
  • Interchangeable pump tubes and motors
  • Polypropylene, PVDF and 316 stainless-steel options
  • Several tube lengths
  • ATEX-certified options with selected EFS configurations

Together, these features make the FTI EF Series suitable for straightforward container-to-container transfer where low weight, simple use and economical ownership are important.

Integral Strainer for Pump Protection

The pump includes a built-in strainer at the inlet. Therefore, larger particles are less likely to enter the tube and damage the impeller or internal components.

However, the strainer does not make the pump suitable for heavy slurries or fluids containing significant solids. Consequently, users should confirm that the liquid is appropriate for a light-duty drum pump before operation.

EFP Polypropylene Drum Pump

The EFP uses a polypropylene pump tube and impeller, a 316 stainless-steel shaft and FKM O-rings.

With a suitable electric motor, the EFP delivers up to 64 lpm and 6.1 metres of head. Moreover, it handles viscosities up to 300 cP and temperatures from approximately -18°C to 66°C.

Therefore, the EFP may suit compatible light acids, bases, cleaners, coolants, sodium hypochlorite and DEF or AdBlue.

EFV PVDF Chemical Drum Pump

The EFV provides a PVDF-based construction for applications requiring different chemical resistance from standard polypropylene models.

Moreover, its narrower tube diameter is approximately 33–34 mm, allowing it to fit suitable smaller container openings. Therefore, the EFV may support light-duty transfer of compatible aggressive chemicals where PVDF construction is preferred.

EFS Stainless-Steel Barrel Pump

The EFS uses a 316 stainless-steel tube and shaft with an ETFE impeller. Consequently, it provides a durable metal construction for compatible solvents and industrial liquids.

Maximum published temperature reaches 100°C, while performance with a suitable electric motor reaches approximately 64 lpm and 6.1 metres of head. In addition, selected EFS configurations are available with ATEX-certified options.

Electric, Battery and Air Motors

The FTI EF Series supports several compact drive options.

Suitable configurations include:

  • Dual-speed electric motors
  • 115 V and 230 V electric options
  • Portable 12 V battery motor
  • Pneumatic air motor
  • Explosion-proof or ATEX options on selected assemblies

Electric and air motors can support viscosities up to approximately 300 cP, while the published 12 V package is rated up to 100 cP. However, actual performance depends on the selected pump tube, motor and liquid properties.

EF Series Flow and Head Performance

Published maximum performance includes:

  • Electric motor: Up to 64 lpm and 6.1 m head
  • Air motor: Up to 57 lpm and 5.2 m head
  • 12 V motor: Up to 53 lpm and 4 m head

Therefore, an electric model generally provides the highest performance. Alternatively, the battery motor provides greater portability, while an air motor offers a non-electrical drive option.

Available Tube Lengths

Depending on the model, available lengths include approximately:

  • 41 cm
  • 69 cm
  • 102 cm
  • 122 cm
  • 137 cm

Consequently, users can match the FTI EF Series with different container depths. The EFS range is generally listed up to 122 cm, while EFP and EFV configurations extend to approximately 137 cm.

UAE Applications for Economy Drum Pumps

The range may suit:

  • Light acids and bases
  • Cleaners and detergents
  • Coolants
  • Sodium hypochlorite
  • DEF and AdBlue
  • Compatible solvents
  • Water-treatment chemicals
  • Workshop fluids
  • Container-to-container transfer
  • Replacement of manual hand pumps

For example, a battery-powered model can support mobile fluid transfer. Similarly, a stainless-steel EFS configuration may suit compatible solvent duties when the complete assembly meets the application requirements.

Selecting the Correct FTI EF Series Pump

Correct selection depends on:

  • Liquid name and concentration
  • Required flow and head
  • Viscosity
  • Specific gravity
  • Operating temperature
  • Container depth
  • Pump-tube material
  • Motor type
  • Electrical supply
  • Hazardous-area classification

Therefore, users should configure the FTI EF Series according to the complete transfer duty. Otherwise, incompatible materials or an unsuitable motor may reduce performance and pump life.

Why Choose Finish Thompson EF Drum Pumps?

Finish Thompson EF pumps combine economical pricing, low weight and straightforward operation. Moreover, interchangeable motors and several construction materials provide greater flexibility than a basic hand pump.

As a result, the range is a practical choice for UAE facilities requiring simple, dependable and cost-effective light-duty drum transfer.

Request an EF Series Pump in the UAE

Contact our pump specialists for technical selection, specifications and UAE pricing.

Please provide the liquid, concentration, viscosity, temperature, container depth and preferred motor type. Consequently, our team can recommend the correct FTI EF Series pump, motor and accessories.

  • An economical choice for light duty fluid transfer applications
  • Ideal replacement for hand pumps
  • Axial flow impeller designed to produce higher flow rates
  • Built-in strainer prevents solids from entering the tube and damaging the pump
  • ATEX certified options available with EFS models

Economy Drum Pumps

Sealless • Best Value

  • Economical choice for light duty transfer
  • Ideal replacement for hand pumps
  • Maximum flow*: up to 17 gpm (64.4 lpm)
  • Maximum head*: up to 20 ft (6.1 m)
  • Maximum temperature: – Polypropylene: 150°F (66°C) – PVDF*: 160°F (71°C) – 316SS: 212°F (100°C)
  • Maximum specific gravity: 1.6
  • Maximum viscosity: – up to 300 cP with electric motor – up to 100 cP with air motor
  • 1-1/4 in (3.2 cm) tube diameter (EFP, EFS)
  • 1-5/16 in (3.3 cm) tube diameter (EFV)
  • 3/4 in (1.9 cm) discharge
  • Tube lengths (EFP/EFV): – 16″ (40.6 cm) – 27″ (69 cm) – 40″ (102 cm) – 48″ (122 cm) – 54″ (137 cm)
  • Tube lengths (EFS): – 16″ (40.6 cm) – 27″ (69 cm) – 40″ (102 cm) – 48″ (122 cm)
  • • Pat. US D658,273 S; Pat. US D657,849 S; Pat. ZL 201130042121.X; Pat. ZL 201130042107.X; OHIM Pat. 001839002-0002; OHIM Pat.001839002-0001
  • †When pumping flammables or combustibles, use explosion-proof electric or air drive motors on stainless steel tubes with static protection kit.
  • *All testing performed with water at 68°F (20°C) in a full container with the discharge barb at maximum opening. Actual performance may vary by +/- 10%. Actual performance will decrease with increased fluid viscosity and specific gravity.
  • **Maximum specific gravity is dependent on fluid viscosity; maximum fluid viscosity is dependent upon specific gravity