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Selection of FLUDEX couplingIn accordance with the requirements catalog various series, sizes and types of FLUDEX coupling are available. The FLUDEX coupling series is characterized by various flow chamber configurations, fitted delay chambers or fittings in the flow chamber. The types are determined by the design of the add-on coupling. This results in different starting factors and characteristics which can be used for the most varied applications. The size is specified by stating the flow outside diameter. When selecting, the series required for the application, taking into account the starting factor and the characteristic, must be selected. Selection of FLUDEX seriesFLUDEX couplings which are to be used without special conditions solely as an aid to starting the motor can be selected using the assignment tables on page 13/12 (for n = 1500 rpm) or on page 13/14 (for n = 3000 rpm). If special requirements, based on the operating method of the prime mover or driven machine, are made of the coupling or the coupling is to be used in extreme environmental conditions, please give specific details in the enquiry or order. The form “Technical specifications for the selection of type and size” can be used for this purpose. Description of the FLUDEX seriesFA series – drive via the hollow shaft (impeller drive) FLUDEX FA series couplings are basic couplings (without delay chamber) which are driven via the hollow shaft (106) with attached blade wheel (105). This enables the advantages of the compensating chamber and the working chamber to be used to best effect. Combinations with brake drums/disks and pulleys can also be easily achieved. When the coupling is started, part of the oil filling in the area of greatest slip is forced into the radially inner chambers and the compensating chamber by the strong rotational flow. This causes the effective oil filling in the working chamber to be reduced and the desired torque limitation (approx. twice TN) to be achieved during starting. By means of additional fittings the coupling torque at the start of the starting operation can be limited to approx. 1.5 times of the rated value. During run-up to speed the compensating chamber again empties into the working chamber, and this helps to reduce slip. FG and FV series – drive via the housing FLUDEX FG and FV series couplings are designed for drive via the coupling housing. In the FV series (coupling with delay chamber), the motor drives the coupling housing, comprising a blade wheel (101) and a cover (102), via the flexible N-EUPEX coupling (part 2/3) and the delay chamber (115). The rotational flow of the coupling filling drives the blade wheel (105) and the hollow shaft (106) on the output side, which is mounted on the gear unit or driven machine shaft. In the FG series (basic coupling), there is no delay chamber, and the flexible coupling is directly flange-mounted on the blade wheel. When the coupling is started up, part of the oil filling is forced into the damming chamber. This enables the desired torque limitation (approx. twice TN) to be achieved during starting. In the FV series the delay chamber also receives part of the oil filling in accordance with the fluid level when the coupling is stationary. During starting the effective oil filling in the working chamber is reduced by the amount of fluid in the delay chamber, thus considerably reducing the starting torque (approx. 1.5 times TN). From the delay chamber located on the drive side, the oil is fed back time-dependently to the working chamber via small holes and the coupling torque is raised, even if the output is blocked. This replenishing function enables a drive to be soft-started with a very low starting torque and with an almost load-free motor. At the same time, however, increased load torques can be overcome by the torque increase in the coupling. The property of the coupling with delay chamber can be used advantageously, for example, to soft-start empty, partly loaded and fully loaded conveyor belts. FG series couplings are used for normal starting torque limitation, as a starting clutch for isolating vibration and for overload limitation in the event of drive blockage. FN series – drive via housing FLUDEX FN series couplings have a larger delay chamber than the FV series. The delay chamber is designed as a hub carrier (120) and is mounted on the motor shaft. The hub carrier is flange-fitted to the housing (101, 102) of the FLUDEX coupling. Output is via the blade wheel (105) and the shaft (106) to the flexible N-EUPEX coupling connecting to the gear unit or driven machine. With types FND, FNDB and FNDS the coupling can be dismounted radially without moving the coupled machines. Because of the larger delay chamber, FN couplings enable even softer starting than FV couplings. Torque limitation during starting is approx. 1.3 times TN. A further advantage of types FNDB and FNDS is the favorable weight distribution. The normally stronger motor shaft bears the weight of the hub carrier (cast version) and the main coupling. The gear unit shaft carries only the brake drum or disk and the output-side part of the flexible coupling. At the same time, the principle of the drive-side delay chamber with the capacity for increasing torque time-dependently is retained. FN couplings have the same fields of application as FV couplings. However, they offer special advantages in the brake disk design because of the weight distribution. Depending on the series selected, different starting characteristics arise during starting. FLUDEX series: Series | Description | FA../FG.. | Basic coupling without delay chamber | FV.. | Coupling with delay chamber | FN.. | Coupling with large delay chamber |
Selection of FLUDEX typeListed in the catalog are FLUDEX couplings with pulley, brake drum, brake disk and flexible N-EUPEX coupling. Further types, e.g. in combination with a torsionally rigid steel membrane coupling of the ARPEX series or a highly flexible coupling of the ELPEX or ELPEX-S series, are available. Series | Type | Add-on coupling | Characteristic feature |
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FA - without delay chamber
- impeller-driven
- Starting torque: Tmax = 2,0 x Teff
- Starting aid for standard motors and torsional vibration isolation
| FAO | Without | Basic coupling with connecting flange | FAR | Without | with attached pulley | FAD | N-EUPEX D | 1) | FAE | N-EUPEX E | enables larger bores on the output side | FAM | N-EUPEX M | enables a short fitting length | FADB | N-EUPEX D | with brake drum | FADS SB | N-EUPEX D | 1) with brake disk for stopping brakes | FADS HB | N-EUPEX D | 1) with brake disk for blocking brakes | FG - without delay chamber
- Housing-driven
- Starting torque: Tmax = 2,0 x Teff
- Starting aid for standard motors, for torsional vibration isolation and for overload limitation in the event of drive blockage
| FGO | Without | Basic coupling with connecting flange | FGD | N-EUPEX D | 1) | FGE | N-EUPEX E | enables larger bores on the output side | FGM | N-EUPEX M | enables a short fitting length | FV - with delay chamber
- Housing-driven
- Starting torque: Tmax = 1,5 x Teff
- Starting aid for motors and soft-starting of conveyor equipment
| FVO | Without | Coupling with connecting flange | FVD | N-EUPEX D | 1) | FVE | N-EUPEX E | enables larger bores on the output side | FVM | N-EUPEX M | enables a short fitting length | FN - with large delay chamber
- Housing drive via hub carrier
- Starting torque: Tmax = 1,3 x Teff
- Starting aid for motors with very unfavorable characteristic and soft-starting of empty and full conveying equipment
- favorable weight distribution on brake-drum variant
| FNO | Without | Coupling with connecting shaft | FNA | N-EUPEX A | 1) enables a short fitting length | FND | N-EUPEX D | 1)2) | FNDB | N-EUPEX D | 1)2) with brake drum | FNDS SB | N-EUPEX D | 1)2) with brake disk for stopping brakes | FNDS HB | N-EUPEX D | 1)2) with brake disk for stopping brakes |
1) Enables change of flexible elements without moving the machines axially. 2) Enables the coupling to be fitted or dismounted without displacing the coupled machines. The maximum shaft displacements permissible for an N-EUPEX add-on coupling are shown in catalog section 7. For greater shaft displacements FLUDEX couplings can be combined with cardan shafts or other displacement couplings. Selection of FLUDEX sizeThe FLUDEX size is determined by the output to be transmitted in comparison with the rated outputs listed in the following tables. No application factors or additional safety factors need be taken into consideration. The rated outputs stated in the tables normally require the maximum permissible filling (80 % bis 85 %) of the coupling and because of operating slip, lead to the coupling heating up by approx. 50 °C relative to the ambient (cooling air) temperature. With lower outputs, coupling heating will be proportionately lower. If for continuous operation of the coupling an absolute temperature (ambient temperature + coupling heating) of >85 °C is expected, the coupling must be fitted with FPM seals and 160 °C fusible safety plugs. FA series Speed in rpm |
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600 | 740 | 890 | 980 | 1180 | 1350 | 1470 | 1600 | 1770 | 2000 | 2300 | 2600 | 2950 | 3550 | | Rated output PN in kW | Size | | | 1,2 | 1,6 | 2,8 | 4,2 | 5,5 | 6,9 | 8,7 | 11,7 | 15 | 19 | 24 | 33 | 222 | 1,2 | 2,3 | 4 | 5,5 | 9 | 14 | 18,5 | 23 | 29 | 37 | 48 | 60 | 70 | 90 | 297 | 2,6 | 4,8 | 8,7 | 11,5 | 18 | 27 | 34 | 40 | 51 | 65 | 82 | 97 | 120 | 145 | 342 | 5,7 | 10 | 16 | 21 | 36 | 49 | 61 | 74 | 87 | 105 | 135 | 165 | 180 | | 395 | 11 | 21 | 32 | 41 | 65 | 90 | 110 | 127 | 155 | 190 | 230 | 290 | 370 | | 450 | 19 | 36 | 60 | 75 | 115 | 154 | 190 | 215 | 260 | 310 | 395 | | | | 516 | 37 | 69 | 109 | 134 | 200 | 260 | 320 | 360 | 435 | 540 | | | | | 590 |
FG, FV and FN series Speed in rpm |
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600 | 740 | 890 | 980 | 1180 | 1350 | 1470 | 1600 | 1770 | 2000 | 2300 | 2600 | 2950 | 3550 | | Rated output PN in kW | Size | 4 | 7,5 | 12 | 16 | 26 | 38 | 48 | 61 | 85 | 110 | 140 | 170 | 220 | 290 | 370 | 7,5 | 15 | 23 | 30 | 48 | 70 | 90 | 115 | 140 | 175 | 220 | 280 | 340 | | 425 | 15 | 30 | 45 | 58 | 95 | 140 | 180 | 210 | 245 | 300 | 380 | 480 | | | 490 | 28 | 55 | 85 | 110 | 180 | 255 | 300 | 350 | 420 | 525 | 660 | | | | 565 | 55 | 110 | 170 | 220 | 350 | 450 | 520 | 600 | 730 | 900 | | | | | 655 | 110 | 210 | 330 | 440 | 600 | 760 | 870 | 1010 | 1220 | | | | | | 755 | 240 | 440 | 700 | 810 | 1130 | 1440 | 1660 | | | | | | | | 887 | 480 | 880 | 1400 | 1600 | 2000 | 2350 | 2500 | | | | | | | | 887D1) |
1) D = double-flow variant on request.
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Арматура DENDOR
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Датчики и измерители
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Регуляторы и регистраторы
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Пневматическое оборудование
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Краны и Клапаны
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Измерительные приборы
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Системы беспроводного управления «умный дом»
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Бесконтактные выключатели Конечные выключатели Оптические датчики Энкодеры
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SKW-FS - Установка умягчения
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SKW-FK - Установка обезжелезивания
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