Fixed-orifice compensé en pression contrôle de débit Valve avec Clapet de By-Pass
Fixed-orifice, pressure-compensated flow controls with reverse-flow check provide precise flow regulation for meter-in or meter-out applications where there may be wide pressure fluctuations. An integral high-capacity check valve provides unrestricted flow from port 2 to port 1. The flow range is specified by the user and is set at the factory.
- Factory set flow valve ratings are within +/- 15% of the nominal range/setting.
- Le gicleur à paroi mince minimise les variations de débit dues aux variations de viscosité.
- The tuneable control option provides +/- 20% variation from the nominal factory pre-set flow. Turn the adjustment clockwise to increase and counterclockwise to decrease.
- Toutes les cartouches de contrôle de débit à 2 orifices, sont physiquement et fonctionnellement interchangeables (c’est-à-dire le même sens de débit, la même cavité pour une taille donnée). Cependant, les dimensions extérieures de la cartouche peuvent varier.
- Cette valve intègre le concept Sun de la cartouche à visser "flottante" qui permet de minimiser les contraintes internes dues à un couple de serrage excessif de la cartouche et/ou à des écarts d’usinage des cavités ou des cartouches.
Cavité | T-162A |
Taille | 0 |
Capacité | 3 gpm11 L/min. |
Pression maximale de fonctionnement | 5000 psi350 bar |
Dimensions du six pans de la valve | 3/4 in.19,1 mm |
Couple de serrage de la valve | 20 à 25 lbf ft27 - 33 Nm |
Taille du 6 Pans Creux de la Vis de Réglage | 5/32 in.4 mm |
Dimension du contre-écrou sur plat | 9/16" in.15 mm |
Couple de serrage du contre écrou | 80 - 90 lbf in.9 - 10 Nm |
Poids du composant | 0,30 lb0,15 kg |
Seal kit - Cartridge | Buna: 990162007 |
Seal kit - Cartridge | Polyurethane: 990162002 |
Seal kit - Cartridge | Viton: 990162006 |
All flow is blocked, hence the term priority. The priority flow has to be satisfied.
The valve acts as a 2 port restrictive flow control.
The spring force in our flow controls equates to about 100 psi (7 bar). This is high enough to give the valves acceptable capacity and not too high for proper circuit operation. 100 psi (7 bar) is the spring force; at the upper end of the flow control's range, the drop through the valve will be as high as 250 psi (17 bar) before it starts modulating.
Il y a exactement 15 gouttes Sun dans un centimètre cube.
In a meter-in flow control circuit if the pump is set at 3000 psi and the load is 2000 psi the drop through the flow control is 1000 psi. In a meter-out circuit with the load at 2000 psi the drop through the flow control is 2000 psi.
We claim +/- 10%. We set to +/- 5% in production testing to allow for differences in customers' conditions. If you want accuracy, stay in the bottom 2/3rds of the range. Our 12 gpm (45 L/min.) flow controls are quite flat at 9 gpm (34 L/min.) and dead flat below 6 gpm (23 L/min.), until you get to the bottom of the range. Below about .25 gpm (1 L/min.), spool leakage and orifice conditions start to limit accuracy.
I am afraid not. Unless you are overflowing your current valve and correctly size ours, you are not likely to notice any improvement. Priority flow controls are not efficient devices. They are an easy way to get more than 1 source of oil from 1 pump but they can generate a lot of heat. Try to size your actuators so the pressures are similar on both the priority and the bypass circuits. If you can't do that, try to have the lower flow leg be the lower pressure. The pump pressure is determined by whichever leg is higher and if there is flow that is taking a pressure drop that is not doing work it is creating heat.
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