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Pneumatic turbine vibrator

  • Essai
  • Plan d'accès
Pneumatic turbine vibrator - Bulk material and powder handling
Description

Flow aid for difficult materials


Turbine pneumatic vibrators prevent materials from adhering to the sieve or hoppers walls. Their application is suitable for food and pharmaceutical industries.

layout vibrator palamatic process

 

The vibrators generate multi-directional vibrations. They are used for emptying silos, intermediate hoppers, activating vibrating trays, sifters and vibrating tables, and generally to transport, compact, and separate bulk materials and reduce friction. Suitable for explosive or humid environments and may also be used outside. Frequency and centrifugal force are determined by pressure service. All our vibrators (ball, roller, or turbine) correspond to the Machine Directive (89/392/EEC EN 292 standards). For activation, a 2/2 solenoid valve and filtered air are required.

 

Technical characteristics of the pneumatic turbine vibrators
Vibrator OT8 Technical characteristics of the pneumatic vibrator OT8 : fixing centers of the vibrator: 68 mm - Attachment Ø of the vibrator: 7 mm - Feeding Ø d'alimentation of the vibrator: 1/8" - Weight: 0,250 kg
Feed pressure (bar) 2 4 6
Vibrations per minute (vpm) 34,000 38,000 42,000
Centrifugal force max. (kg) 110 205 292
Air consumption (dm³/min) 45 81 110
Vibrator OT10 Technical characteristics of the pneumatic vibrator OT10 : fixing centers of the vibrator: 68 mm - Attachment Ø of the vibrator: 7 mm - Feeding Ø d'alimentation of the vibrator: 1/8" - Weight: 0,255 kg
Feed pressure (bar) 2 4 6
Centrifugal force max. (kg) 26,000 33,000 38,000
Centrifugal force max. (kg) 105 171 252
Air consumption (dm³/min) 45 81 110
Vibrator OT10S Technical characteristics of the pneumatic vibrator OT10S: fixing centers of the vibrator: 68 mm - Attachment Ø of the vibrator: 7 mm - Feeding Ø d'alimentation of the vibrator: 1/8" - Weight: 0,263 kg
Feed pressure (bar) 2 4 6
Vibrations per minute (vpm) 17,200 28,500 31,000
Centrifugal force max. (kg) 202 263 300
Air consumption (dm³/min) 122 204 285
Vibrator OT13 Technical characteristics of the pneumatic vibrator OT13: fixing centers of the vibrator: 90 mm - Attachment Ø of the vibrator: 7 mm - Feeding Ø d'alimentation of the vibrator: 1/4" - Weight: 0,565 kg
Feed pressure (bar) 2 4 6
Vibrations per minute (vpm) 24,500 28,500 31,000
Centrifugal force max. (kg) 202 263 300
Air consumption (dm³/min) 122 204 285
Vibrator OT16 Technical characteristics of the pneumatic vibrator OT16: fixing centers of the vibrator: 90 mm - Attachment Ø of the vibrator: 9 mm - Feeding Ø d'alimentation of the vibrator: 1/4" - Weight: 0,580 kg
Feed pressure (bar) 2 4 6
Vibrations per minute (vpm) 18,000 20,000 21,000
Centrifugal force max. (kg) 129 196 234
Air consumption (dm³/min) 122 204 285
Vibreur OT 16 S Technical characteristics of the pneumatic vibrator OT16S: fixing centers of the vibrator: 90 mm - Attachment Ø of the vibrator: 9 mm - Feeding Ø d'alimentation of the vibrator: 1/4" - Weight: 0,614 kg
Feed pressure (bar) 2 4 6
Vibrations per minute (vpm) 11,500 15,000 23,000
Centrifugal force max. (kg) 129 196 234
Air consumption (dm³/min) 122 204 285
Vibrator OT20 Technical characteristics of the pneumatic vibrator OT20: fixing centers of the vibrator: 104 mm - Attachment Ø of the vibrator: 9 mm - Feeding Ø d'alimentation of the vibrator: 1/4" - Weight: 1,090 kg
Feed pressure (bar) 2 4
Vibrations per minute (vpm) 14,500 19,000 23,000
Centrifugal force max. (kg) 251 404 526
Air consumption (dm³/min) 184 318 452
Vibrator OT25 Technical characteristics of the pneumatic vibrator OT25: fixing centers of the vibrator: 104 mm - Attachment Ø of the vibrator: 9 mm - Feeding Ø d'alimentation of the vibrator: 1/4" - Weight: 1,120 kg
Feed pressure (bar) 2 4 6
Vibrations per minute (vpm) 13,200 15,500 17,000
Centrifugal force max. (kg) 244 336 508
Air consumption (dm³/min) 184 318 452
Vibrator OT25S Technical characteristics of the pneumatic vibrator OT25S: fixing centers of the vibrator: 104 mm - Attachment Ø of the vibrator: 9 mm - Feeding Ø d'alimentation of the vibrator: 1/4" - Weight: 1,200 kg
Feed pressure (bar) 2 4 6
Vibrations per minute (vpm) 9,000 11,000 13,500
Centrifugal force max. (kg) 214 335  483
Air consumption (dm³/min) 184 318 452
Vibrator OT30 Technical characteristics of the pneumatic vibrator OT30: fixing centers of the vibrator: 130 mm - Attachment Ø of the vibrator: 11 mm - Feeding Ø d'alimentation of the vibrator: 3/8" - Weight: 2,200 kg
Feed pressure (bar) 2 4 6
Vibrations per minute (vpm) 11,000 12,500 14,500
Centrifugal force max. (kg) 351 721 781
Air consumption (dm³/min) 322 542 749
Vibrator OT36 Technical characteristics of the pneumatic vibrator OT36: fixing centers of the vibrator: 130 mm - Attachment Ø of the vibrator: 11 mm - Feeding Ø d'alimentation of the vibrator: 3/8" - Weight: 2,300 kg
Feed pressure (bar) 2 4 6
Vibrations per minute (vpm) 8,500 11,500 12,000
Centrifugal force max. (kg) 341 698 749
Air consumption (dm³/min) 322  542 749
Vibrator OT36S Technical characteristics of the pneumatic vibrator OT36S: fixing centers of the vibrator: 130 mm - Attachment Ø of the vibrator: 11 mm - Feeding Ø d'alimentation of the vibrator: 3/8" - Weight: 2,530 kg
Feed pressure (bar) 2 4 6
Vibrations per minute (vpm) 6,000 7,000 8,500
Centrifugal force max. (kg) 406 706 754
Air consumption (dm³/min) 322 542 749
 

 

 

  • Efficiency
    5
  • Air consumption
    4
  • Noise level
    4

Equipment advantages

- No lubrication

- No maintenance

- Explosion proof

- Operating temperature: 20°C to 120°C (4°F to 250°F)

- Robustness

- Price

 

Media

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Features

Technical specification

12 models :

  • No lubrication
  • No maintenance
  • Explosion proof
  • Operating temperature: 20°C to 120°C (4°F to 250°F)
  • Robustness
  • Price

The vibrations obtained are generated by a turbine in which weights have been inserted. Even with low pressure, the amplitude remains significant.

 

Dimensions : 

pneumatic turbine vibrator Palamatic Process

 

TYPE A B C D E F IN-OUT Weight
mm mm mm mm mm mm   Kg
OT 8 50 86 68 12 33 7 1/8" 0.25
OT 10 0.255
OT 10S 0.263
OT 13 65 113 90 16 42 9 1/4" 0.565
OT 16 0.58
OT 16S 0.614
OT 20 80 128 104 16 56 9 1/4" 1.09
OT 25 1.12
OT 25S 1.2
OT 30 100 160 130 20 73 11 3/8" 2.2
OT 36 2.3
OT 36S 2.53

 

TypeYPE Vibrations Max Force Air consumption
Vpm 2 bar 4 bar 6 bar 2 bar 4 bar 6 bar
2 bar 4 bar 6 bar DaN DaN DaN dm³/min dm³/min dm³/min
OT 8 34,000 38,000 42,000 110 205 292 45 81 110
OT 10 26,000 33,000 38,000 105 171 252 45 81 110
OT 10S 17,200 23,400 26,000 72 147 187 45 81 110
OT 13 24,500 28,500 31,000 202 263 300 122 204 285
OT 16 18,000 20,000 21,000 194 239 264 122 204 285
OT 16S 11,500 15,000 17,500 129 196 234 122 204 285
OT 20 14,500 19,000 23,000 251 404 526 184 318 452
OT 25 13,200 15,500 17,000 244 336 508 184 318 452
OT 25S 9,000 11,000 13,500 214 335 483 184 318 452
OT 30 11,000 12,500 14,500 351 721 781 322 542 749
OT 36 8,500 11,500 12,000 341 698 749 322 542 749
OT 36S 6,000 7,000 8,500 406 706 754 322 542 749

The data comes from a spring vibration bench, perfectly simulating most possible applications. More the structure where the vibrators are applied is rigid, more frequency and centrifugal force are important.

Case studies
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