Blasting
- Excellent quality at sharp prices
- More than 1.000 tons of abrasives on stock in Holland
- Own production steel shot and grit
Nozzle Holders (Nylon and Aluminium)
The Airblast nozzle holders are available in nylon and aluminium.
All nozzle holders are manufactured to fit externally over the blast hose. Internal grip rings bite into the blast hose for a safe and secure fit and retaining screws provide additional holding power without penetrating the inner hose layer.
Airblast offers a full selection of nozzle holders with fine or large thread. Contact Airblast to discuss which holder is most suitable for your specific application.
Do you have questions about how we can help your company? Send us an email and we’ll get in touch shortly.
Part no. | Description |
NYLON WITH FINE 41MM THREAD | |
2123100 | NNH-0 Fits to 27 mm O.D. – 13 mm I.D. hose (½”) – ¾” thread |
2123600 | NNH-¾ Fits to 33 mm O.D. – 19 mm I.D. hose (¾”) |
2124100 | NNH-1 Fits to 39 mm O.D. – 25 mm I.D. hose (1”) |
2125100 | NNH-2 Fits to 48 mm O.D. – 32 mm I.D. hose (1¼”) |
2126100 | NNH-3 Fits to 56 mm O.D. – 38 mm I.D. hose (1½”) |
NYLON WITH LARGE 50MM THREAD | |
2123000 | NNH-0/50 Fits to 27 mm O.D. – 13 mm I.D. hose (½”) – ¾” thread |
2123500 | NNH-¾/50 Fits to 33 mm O.D. – 19 mm I.D. hose (¾”) |
2124000 | NNH-1/50 Fits to 39 mm O.D. – 25 mm I.D. hose (1”) |
2125000 | NNH-2/50 Fits to 48 mm O.D. – 32 mm I.D. hose (1¼”) |
2126000 | NNH-3/50 Fits to 56 mm O.D. – 38 mm I.D. hose (1½”) |
ALUMINIUM WITH FINE 41MM THREAD | |
2133100 | CHE-0 Fits to 27 mm O.D. – 13 mm I.D. hose (½”) – ¾” thread incl. adaptor |
2133200 | CHE-¾ Fits to 33 mm O.D. – 19 mm I.D. hose (¾”) |
2134000 | CHE-1 Fits to 39 mm O.D. – 25 mm I.D. hose (1”) |
2135000 | CHE-2 Fits to 48 mm O.D. – 32 mm I.D. hose (1¼”) |
ALUMINIUM WITH LARGE 50MM THREAD | |
2137000 | CHE-1/50 Fits to 39 mm O.D. – 25 mm I.D. hose (1”) |
2138000 | CHE-2/50 Fits to 48 mm O.D. – 32 mm I.D. hose (1¼”) |
ORIFICE (mm) (“) | 60 PSI | 4.2 BAR | 70 PSI | 4.9 BAR | 80 PSI | 5.6 BAR | 90 PSI | 6.3 BAR | 100 PSI | 7.0 BAR | 120 PSI | 8.5 BAR | |||
5.0 mm 3/16” | 30.0 171.0 7 | 0.85 77.00 5.3 | 33.0 196.0 8 | 0.93 89.00 5.6 | 38.0 216.0 9 | 1.08 96.00 6.4 | 41.0 238.0 10 | 1.16 108.00 7.1 | 45.0 264.0 10 | 1.27 120.00 7.5 | 58.0 375.0 12 | 1.64 170.00 9.0 | Air Abrasive Power | CFM Lbs./hr. hp | m³/min KG/hr. * kw |
6,5 mm 4/16” | 54.0 312.0 12 | 1.53 141.00 9.0 | 61.0 354.0 14 | 1.73 160.00 10.1 | 68.0 408.0 16 | 1.93 185.00 11.6 | 74.0 448.0 17 | 2.10 203.00 12.4 | 81.0 494.0 18 | 2.29 224.00 13.5 | 105.0 660.0 22 | 2.97 300.00 16.2 | Air Abrasive Power | CFM Lbs./hr. hp | m³/min KG/hr. * kw |
8.0 mm 5/16” | 89.0 534.0 20 | 2.52 242.00 15.0 | 101.0 604.0 23 | 2.86 274.00 19.1 | 113.0 672.0 26 | 3.20 305.00 20.2 | 126.0 740.0 28 | 3.57 335.00 21.0 | 137.0 850.0 31 | 3.88 385.00 22.9 | 160.0 1.050.0 37 | 4.53 476.00 27.5 | Air Abrasive Power | CFM Lbs./hr. hp | m³/min KG/hr. * kw |
9.5 mm 6/16” | 126.0 764.0 28 | 3.57 346.00 21.0 | 143.0 864.0 32 | 4.05 392.00 24.0 | 161.0 960.0 36 | 4.56 425.00 27.0 | 173.0 1.052.0 39 | 4.90 477.00 28.9 | 196.0 1.152.0 44 | 5.55 523.00 33.0 | 235.0 1.475.0 52 | 6.65 669.00 39.6 | Air Abrasive Power | CFM Lbs./hr. hp | m³/min KG/hr. * kw |
11.0 mm 7/16” | 170.0 1.032.0 38 | 4.81 468.00 28.5 | 184.0 1.176.0 44 | 5.21 533.00 32.6 | 217.0 1.312.0 49 | 6.14 595.00 36.4 | 240.0 1.448.0 54 | 6.80 657.00 40.1 | 254.0 1.584.0 57 | 7.19 719.00 42.4 | 315.0 2.050.0 69 | 8.92 930.00 50.9 | Air Abrasive Power | CFM Lbs./hr. hp | m³/min KG/hr. * kw |
12.5 mm 8/16” | 224.0 1.336.0 50 | 6.34 606.00 37.5 | 252.0 1.512.0 56 | 7.14 686.00 42.0 | 280.0 1.680.0 63 | 7.93 762.00 46.9 | 309.0 1.856.0 69 | 8.75 842.00 51.8 | 338.0 2.024.0 75 | 9.57 918.00 56.3 | 410.0 2.650.0 90 | 11.61 1.202.00 67.6 | Air Abrasive Power | CFM Lbs./hr. hp | m³/min KG/hr. * kw |
Chart shows calculated consumption rates of air and abrasive for new nozzles. When slecting a compressor add 50% to above figures to allow for normal nozzle wear and friction loss.
* Based on abrasive density of 1,5 kgs. per liter.
NOTE: Figures may vary depending upon working conditions. To maintain desired air pressure as nozzle orifice wears, air consumption increases.
The effects of nozzle wear on air consumption must be considered when selecting nozzles and the compressors that support them.