Telefoon: +31 6 48526658   E-mail: info@dellmeco.nl Â
Telefoon: +31 6 48526658   E-mail: info@dellmeco.nl Â
AODD PUMPS
Polyethylene & PTFE
Chemicals, food and beverages, electroplating, paper production
KEY FEATURES
DELLMECO air-operated diaphragm pumps (AODD) are suitable for a wide range of applications.
They offer high wear resistance and are resistant to aggressive chemicals such as acids, oils, solvents, paints, sludge and even media containing solids, such as wastewater. These pumps can also be used for pumping powders.
All pumps are self-priming and capacity and pressure are easily adjustable.
This pump is a positive displacement pump that moves fluids through the movement of diaphragms driven by compressed air.
The fluid contact parts of the housing are made of PE (polyethylene), conductive PE, PTFE (polytetrafluoroethylene) or conductive PTFE.
Designed for success
- Temperature resistant up to +120 °C
- Pressure-resistant up to 14 bar
- Operates without lubrication
- Low air consumption
- Wear-resistant (PE, conductive PE)
Flexible installation
- BSP connection as standard
- Optional: PN10, PN16, ANSI, NPT, JIS, RJT and split manifold configurations
- Connections 180° rotatable
Sturdy, compact and robust
- Housing milled from solid PE, PTFE and conductive PE or PTFE
- Resistant to aggressive chemicals
- Gentle, controlled pumping
- Suitable for viscous media
Perfect membrane
- Completely smooth liquid contact surface (without openings)
- No metal in contact with the medium
- Material matched to the application
HOW TO INSTALL DELLMECO PUMPS?
Self-priming application
The suction height reaches up to 8 meters. This depends on the construction material used and the application parameters. All data are based on pumping water at 20 °C.
Underwater operation
Our pumps can operate fully submerged. However, the material used must be suitable for the surrounding liquid, and the outlet must be above the liquid level.
Positive suction pressure
Suitable for complete emptying of storage tanks, settling tanks or similar containers. The optimum inlet pressure is between 0.2 and 0.3 bar.
RECOMMENDED INSTALLATION GUIDELINES
To reduce stresses on pipes and pump connections, we recommend the use of flexible couplings on both the suction and discharge sides, as well as at the air connection. For optimal performance, DELLMECO recommends installing a pulsation damper on the discharge side of the pump.
Without pulsation dampeners
With pulsation dampeners
CONNECTION TYPES - PLASTIC SERIES
Standard BSP (internal thread)
This is the standard connection for all plastic and metal pumps.
S - split connections
All pump models can be equipped with split connections (code S). This allows the pump to be converted from a standard double-acting air-driven diaphragm pump to a version with two separate chambers.
The suction and discharge connections are replaced by a split jacket with a separate suction and discharge connection for both chambers. Both chambers function independently, but are driven by one drive system, making it possible to pump two media flows in a 1:1 ratio.
Flange connections PN10
This option makes it possible to use flange connections according to DIN/PN10.
The suction and discharge manifolds are equipped with stainless steel threaded bushings. The supplied O-rings should be placed in the grooves of the manifolds before assembly to ensure optimum sealing.
F1 – Flange connection PN10 with EPDM
F2 – Flange connection PN10 with NBR
F3 – Flange connection PN10 with FEP/FPM
Other types of flange connections
F4 – JIS B2220
F7 – PN10 DIN 2576
F8 – ANSI 150 RF SO
F9 – PN10/16 DIN 2277/2278
Other connections on request.
TECHNICAL DATA
Polyethylene and PTFE materials.
When ATEX is required
DIMENSIONS OF PLASTIC PUMPS
CAPACITY OF PLASTIC PUMPS
The viscosity of the medium affects the pumping capacity.
The capacities listed in the pump characteristics are based on water (1 cPs).
When pumping higher viscosity media, the volume must be reduced accordingly.
HOW TO CHOOSE THE RIGHT PUMP SIZE
1. Enter the desired flow rate and pressure.
(example: 50 l/min and 4 bar)
2. Read the estimated energy consumption in volume and pressure ( example: 0.40 Nm³/min at 6 bar).
PLASTICS PUMP CODE
