The invention refers to a governor device for monitoring a supply pressure and controlling a compressor, in particular in an pressurized air system of a vehicle, and such a pressurized air system to be used in a vehicle.
Pressurized air systems in vehicles in general comprise a compressor to be driven by the motor or engine of the vehicle. The compressor supplies pressurized air to a supply tank or supply tank system, which in turn supplies consumer circuits, e. g. air brake circuits or suspension circuits of said compressed air system. Thus the compressor is to be controlled in dependence of the supply pressure stored in the supply tank.
A pressure monitoring device known as “governor” is provided for monitoring the supply pressure; the governor comprises a supply port to be connected to the supply tank, an exhaust port and a control output port for outputting a pressure signal to an unloader valve of the compressor. If the pressure of the supply tank exceeds a first pressure threshold, the cut-out-pressure, then the governor outputs a pressure signal to switch the compressor into its off-load-state, which may be a switched-off state or an idle state, in which the compressor is not switched off. In general, governors comprise a spring mechanism to compare the supply pressure with a spring force of the spring mechanism; thus a movable piston of the governor is charged with the supply pressure on its bottom (active) face and biased by the spring mechanism on its top face (back face).
In the basic position of the governor its control output port is connected to its exhaust port thereby exhausting the control conduit between the control output port and the compressor. If the supply pressure exceeds the cut-out-pressure, the governor switches and connects its supply port to its control output port thereby pressurizing (venting) the control conduit, which realizes the pressure signal to the compressor.
GB 1,006,806 A, U.S. Pat. Nos. 3,834,837, 3,545,887 disclose governors realized as mechanical devices comprising mechanical parts.
US 2014/0116534 A1 describes a heat-exchange dryer apparatus comprising a compressed-air conduit and a purge-air reservoir, which purge-air reservoir comprises a material having a heat transfer coefficient that is at least about 100 W/mK.
Thus the governor device comprises a piston to be charged at its bottom surface (active surface) by said supply pressure, said piston being biased by a spring. Thus a cut_out pressure for switching between a basic state and an actuated state can be realized by a spring, in particular a helical spring, by balancing the spring force and the supply pressure force acting on the piston.
The inlet valve and outlet valve are realized by a valve arrangement provided at or fixed to said piston, said valve arrangement comprising a fixed means fixed to said piston and a valve plate displaceable with respect to said fixed means.
Thus a compact design with small size is realized, in which the inlet valve and outlet valve can be integrated into the main parts, in particular the piston. The weight can be reduced with respect to systems using more external elements.
According to a specific embodiment the piston is slidably provided inside an insert screwed into a dome; the dome is any part to be fixed at an external part, in particular an external casing, as e.g. an air dryer casing. Thus main functional parts of the governor can be realised in the insert. The insert can be pre-assembled and adjusted and afterwards the insert can be screwed into the dome, which in turn can be screwed into the external casing.
Pre-assembling is therefore ease to handle, since most parts can be adjusted and pre-assembled in the insert. Mounting of the governor can be done in one screwing operation with an axial automotive socket tool. In particular mounting is possible without additional fasteners. The governor comprising the complete valve arrangement can already be pre-set and pre-tested before mounting it.
The valve arrangement typically comprises an exhaust passage formed in the fixed means, which exhaust passage is sealable by the valve plate, which can be realized as a valve disc. These parts thereby form the outlet valve.
Thus the piston can be charged with the supply pressure to be compared with the spring force; the axial position of the piston within the insert thus depends on the supply pressure. The valve arrangement can thereby be switched either into its basic position with open outlet valve and closed inlet valve or into its an actuated position with closed outlet valve and open inlet valve, only in dependence of the position of the piston.
Furthermore external part comprising a material with low heat transfer factor can be used for insulating internal (elastomer parts) parts of the governor from heat stress.
The invention is explained in more detail below by means of exemplary embodiments shown in the drawings, wherein
A governor 1 is provided in a pressurised air system of a vehicle in order to switch a compressor on and off in dependence of a supply pressure p21 provided in a supply tank 22. Thus the governor 1 detects a system pressure p21 of the supply tank 22 and outputs a control pressure p1 as a pressure signal to the control input of the compressor 24; this control input can be realised for example as part of an unloader valve of the compressor 24.
The governor 1 comprises a dome 2 serving as a cover and being fixed, in particular screwed with its outer thread 2a into a casing 30, further an insert 3 screwed into the dome 1, a piston 4 slidably provided inside the insert 3, a spring 5 and a spring cap 6, wherein the spring 5 is provided between the spring cap 6 and the piston 4 and acts upon the top surface 4b of the piston 4.
Thus main parts of the governor 1 are realised in the insert 3, which is fixed in the dome by an insert thread connection 13. Pre-assembling is therefore ease to handle, since most parts can be adjusted and pre-assembled in the insert 3.
Further the governor 1 comprises a regulation screw 7 for adjusting a bias force of the spring 5 by pushing the spring cap 6. The piston 4 is sealed inside the insert 3 by a dynamic O-ring 8; further a static O-ring 9 and a protection cover 10 are provided; the regulation screw 7 is screwed into a screw thread part 11 fixed to the protection cover 10.
A valve arrangement 12 is provided inside the piston 4 and extends under the piston 4; said valve arrangement 12 is explained more in detail with respect to
The valve plate 15 surrounds a smaller top part 14a of the stem 14 and is biased by the valve spring 16. The stem 14 comprises a blind hole 14c starting from the top face 14e, extending through the smaller top part 14a and ending in the thicker bottom part 14b. A drilling 14d extends vertically to the axis A from the outside through the wall of the smaller top part 14a to the blind hole 14c.
The valve plate 15 comprises a central hole 15a surrounding the smaller top part 14a of the stem; thus the valve plate 15 is displaceable (shiftable) in the top part 14a of the stem 14 along the axis A. The valve plate 15 further comprises at its bottom face a ring-shaped sealing surface 15b surrounding the central hole 15a. Furthermore the valve plate 15 comprises a lip seal 15c at the top of the central hole 15a.
These features enable the valve arrangement 12 to realize the following valve functions:
a) inlet valve between control port 20 and supply port 21
The sealing surface 15b of the valve plate 15 and a casing sealing surface 25 of the casing 30 serving as an inlet valve (The casing 30 is e.g. part of an air dryer body):
Closed inlet valve,
is in the basic position of
Open inlet valve,
The control port 20 is provided in the casing 30 under the bottom part 14b of the stem 14; air can pass the bottom part 14b in axial direction along passages surrounding the bottom part 14b. Thus if the valve plate 15 detaches according to the actuated position of
b) outlet valve between control port 20 and exhaust chamber 17
The second valve function realises an outlet valve between the control port 20 and the exhaust chamber 17 provided above the piston 4: the control port 20 is connected to the passages surrounding the bottom part 14b of the stem 14; these passages extend to the drilling 14d of the stem 14.
Closed outlet valve,
If the drilling 14d is closed by the lip seal 15c and the sealing surface 15b of the valve plate 15 is pressed to the sealing seat 14f of the stem 14, then the control port 20 is disconnected from the exhaust chamber 17; the outlet valve is closed.
Open outlet valve,
If the drilling 14d is not sealed, the control port 20 can exhaust through the passages around the bottom part 14b, the drilling 14d and the blind hole 14c of the stem 14, upward to the exhaust chamber 17, which is connected to the outer space via exhaust holes 17a. Thus the drilling 14d and the blind hole 14c realize an exhaust passage formed in the stem 14.
In this idle condition or basic position the control port 20 is connected via the passages surrounding the bottom part 14b of the stem 14 to the area surrounding the smaller top part 14a of the stem 14 and via the drilling 14d to the blind hole 14c and to the exhaust chamber 17. Therefore the control port 20 is exhausted, and the compressor receives the pressure signal p1=0 (1 bar) for continuing pressurising air.
If the supply pressure p21 in the supply port 21 rises, see the diagram of
Thus the two valve functions are realized by the relative position of the valve plate 15, with respect to the fixed insert 3 (insert valve), and the relative position of the valve plate 15 with respect to the stem 14, which is fixed to the piston 4.
1 governor
2 dome
2
a outer thread of the dome 2
3 insert
4 piston
4
a bottom face of the piston 4
4
b top surface of the piston 4
5 spring
6 spring cap
7 regulation screw
8 dynamic o-ring
9 static o-ring
10 protection cover
11 screw thread part fixed to protection cover 10
12 valve arrangement
13 insert thread connection between dome 2 and insert 3
14 stem
14
a smaller top part
14
b thicker bottom part
14
c blind hole
14
d drilling vertical to the blind hole and the axis A
14
e top face of the stem
14
f sealing seat of the stem
15 valve plate, valve disc
15
a central hole
15
b sealing surface
15
c lip seal
16 valve spring for biasing said valve plate 15
17 exhaust chamber
17
a exhaust hole
20 control port
21 supply port, supply port to the supply chamber
22 supply tank
23 control channel in the casing 30
24 compressor
25 casing sealing surface
30 casing 30
A axis p21 supply pressure p1 control pressure
P_cut_in cut-in pressure
P_cut_out cut-out pressure
Number | Date | Country | Kind |
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17198185.5 | Oct 2017 | EP | regional |
This application is the National Stage of International Application No. PCT/EP2018/073972, filed on 6 Sep. 2018, which claims priority to and all advantages of European Patent Application No. 17198185.5, filed on 25 Oct. 2017, the contents of which are hereby incorporated by reference.
Filing Document | Filing Date | Country | Kind |
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PCT/EP2018/073972 | 9/6/2018 | WO | 00 |