Product data sheet:
Slim single-flow air knives RA-3 450
| Range | Blowing |
|---|---|
| Category | Air curtains |
| Kind | Single Stream |
| Series | RA-3 |
| Height (in mm) | 22.1 |
| Length | 482 mm |
| Blowing | 50,972 Nl/min at 5.5 bar |
Variant reference: RA-3 450 ACI
- Matter: 316L Stainless Steel
Variant reference: RA-3 450
- Matter: Anodized aluminum
TECHNICAL INFORMATION
| BENEFITS OF USING THE AIR CURTAIN RA-3 450* (compared with an open pipe) |
Reduction in air consumption (%) |
Noise reduction (%) | ||||||
|---|---|---|---|---|---|---|---|---|
| up to -93% |
up to -31% |
|||||||
| PERFORMANCE OF THE AIR CURTAIN RA-3 450* |
Pressure (bar) | Air consumption (l/min) | Thrust force (N) | Noise level (dB) | Blowing flow (l/min) | |||
| at 150mm | at 450mm | |||||||
| 2 | 945 | 5.3 | 5.3 | 84 | 18900 | |||
| 6 | 2580 | 15.1 | 14.8 | 95 | 51600 | |||
| VS | ||||||||
| OPEN PIPE Ø8 INTERNAL* (cut to 450 mm) |
Pressure (bar) | Air consumption (l/min) | Noise level (dB) | Blowing flow (l/min) | ||||
| 6 | 20100 | 130 | 20100 | |||||
RA-3 450 AIR CURTAIN SPECIFICATIONS*
• Connection: Female G1/4" • Weight: Aluminium: 664g / 316L stainless steel: 1953g
• Maximum operating temperature: Aluminium: 150 °C / 316L stainless steel: 260°C • Maximum pressure: 10 bar
* NOTE: The measurements presented in this technical data sheet were carried out in a laboratory under strictly controlled conditions.
It is important to note that conditions in an actual industrial environment may differ and that pressure instability from an industrial compressor may result in values different from those obtained in the laboratory. This data is provided for information purposes only.
For optimum air curtain performance, we recommend a compressed air supply hose with a minimum internal diameter of 8 mm, cut to 450 mm.
DESCRIPTION
NOVACOM develops and designs single-flow air curtains in France.
Air curtains are used for energy-efficient blowing operations over a wide area, as well as for cleaning or cooling.
The incoming compressed air generates a wide, high-speed, continuous and uniform airflow along the surface. Thanks to the Coanda effect, a phenomenon in fluid mechanics, ambient air is drawn in and added to the initial airflow.
They can also be used to create an air barrier between areas with different temperatures or to prevent cross-contamination.