EP1006310B1 - Pistol for dispensing gaseous fuel - Google Patents
Pistol for dispensing gaseous fuel Download PDFInfo
- Publication number
- EP1006310B1 EP1006310B1 EP99830706A EP99830706A EP1006310B1 EP 1006310 B1 EP1006310 B1 EP 1006310B1 EP 99830706 A EP99830706 A EP 99830706A EP 99830706 A EP99830706 A EP 99830706A EP 1006310 B1 EP1006310 B1 EP 1006310B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- pistol
- filler pipe
- dispensing
- gaseous fuel
- coupling device
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Lifetime
Links
- 239000000446 fuel Substances 0.000 title claims abstract description 47
- 239000000945 filler Substances 0.000 claims abstract description 71
- 230000008878 coupling Effects 0.000 claims abstract description 29
- 238000010168 coupling process Methods 0.000 claims abstract description 29
- 238000005859 coupling reaction Methods 0.000 claims abstract description 29
- 238000003780 insertion Methods 0.000 claims abstract description 14
- 230000037431 insertion Effects 0.000 claims abstract description 14
- 238000000605 extraction Methods 0.000 claims abstract description 4
- 235000001674 Agaricus brunnescens Nutrition 0.000 claims description 13
- 238000004891 communication Methods 0.000 claims description 3
- 238000006073 displacement reaction Methods 0.000 claims description 2
- 238000002347 injection Methods 0.000 abstract description 3
- 239000007924 injection Substances 0.000 abstract description 3
- 210000003128 head Anatomy 0.000 description 29
- 230000009471 action Effects 0.000 description 4
- 230000000903 blocking effect Effects 0.000 description 4
- 210000004894 snout Anatomy 0.000 description 3
- 230000008901 benefit Effects 0.000 description 2
- 239000012530 fluid Substances 0.000 description 2
- 230000007246 mechanism Effects 0.000 description 2
- VNWKTOKETHGBQD-UHFFFAOYSA-N methane Chemical compound C VNWKTOKETHGBQD-UHFFFAOYSA-N 0.000 description 2
- 238000012986 modification Methods 0.000 description 2
- 230000004048 modification Effects 0.000 description 2
- 230000003213 activating effect Effects 0.000 description 1
- 230000004913 activation Effects 0.000 description 1
- 230000001464 adherent effect Effects 0.000 description 1
- 230000006835 compression Effects 0.000 description 1
- 238000007906 compression Methods 0.000 description 1
- 230000003247 decreasing effect Effects 0.000 description 1
- 238000012423 maintenance Methods 0.000 description 1
- 238000007789 sealing Methods 0.000 description 1
- 230000003019 stabilising effect Effects 0.000 description 1
Images
Classifications
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F17—STORING OR DISTRIBUTING GASES OR LIQUIDS
- F17C—VESSELS FOR CONTAINING OR STORING COMPRESSED, LIQUEFIED OR SOLIDIFIED GASES; FIXED-CAPACITY GAS-HOLDERS; FILLING VESSELS WITH, OR DISCHARGING FROM VESSELS, COMPRESSED, LIQUEFIED, OR SOLIDIFIED GASES
- F17C5/00—Methods or apparatus for filling containers with liquefied, solidified, or compressed gases under pressures
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F17—STORING OR DISTRIBUTING GASES OR LIQUIDS
- F17C—VESSELS FOR CONTAINING OR STORING COMPRESSED, LIQUEFIED OR SOLIDIFIED GASES; FIXED-CAPACITY GAS-HOLDERS; FILLING VESSELS WITH, OR DISCHARGING FROM VESSELS, COMPRESSED, LIQUEFIED, OR SOLIDIFIED GASES
- F17C13/00—Details of vessels or of the filling or discharging of vessels
- F17C13/04—Arrangement or mounting of valves
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F17—STORING OR DISTRIBUTING GASES OR LIQUIDS
- F17C—VESSELS FOR CONTAINING OR STORING COMPRESSED, LIQUEFIED OR SOLIDIFIED GASES; FIXED-CAPACITY GAS-HOLDERS; FILLING VESSELS WITH, OR DISCHARGING FROM VESSELS, COMPRESSED, LIQUEFIED, OR SOLIDIFIED GASES
- F17C2205/00—Vessel construction, in particular mounting arrangements, attachments or identifications means
- F17C2205/03—Fluid connections, filters, valves, closure means or other attachments
- F17C2205/0302—Fittings, valves, filters, or components in connection with the gas storage device
- F17C2205/0376—Dispensing pistols
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F17—STORING OR DISTRIBUTING GASES OR LIQUIDS
- F17C—VESSELS FOR CONTAINING OR STORING COMPRESSED, LIQUEFIED OR SOLIDIFIED GASES; FIXED-CAPACITY GAS-HOLDERS; FILLING VESSELS WITH, OR DISCHARGING FROM VESSELS, COMPRESSED, LIQUEFIED, OR SOLIDIFIED GASES
- F17C2265/00—Effects achieved by gas storage or gas handling
- F17C2265/06—Fluid distribution
- F17C2265/065—Fluid distribution for refuelling vehicle fuel tanks
Definitions
- the present invention relates to a pistol for dispensing gaseous fluid, in particular gaseous fuel for motor vehicles.
- Pistols for dispensing gaseous fuel for motor vehicles are known, provided with conduit for the passage of the fuel, which is dispensed through a dispensing head able to couple with a corresponding filler pipe for the injection of the fuel, provided on the motor vehicle.
- the dispensing head is provided with a coupling device able to maintain said dispensing head in position on said filler pipe.
- the present invention relates to a fuel dispensing pistol comprising a coupling device for the new filler pipes which is easy and convenient to activate.
- the dispensing pistol further comprises at its exterior a lever for activating the coupling device and in its interior shutter means which allow to dispense the gaseous fuel when the pistol is coupled to the tank filler pipe.
- the shutter means of the pistol according to the present invention comprise devices and are realised to prevent or in any case minimise the release of the gaseous fuel into the environment during the fuelling operation.
- the coupling device of the pistol comprises a plurality of locking elements, a sleeve associated with the blocking elements, and able to slide between a non operative position, wherein the locking elements are free and allow the insertion of the pistol on the filler pipe, and an operative position wherein said locking elements are locked and do not allow the insertion and extraction of the pistol onto and from said filler pipe.
- a gun for filling tanks of vehicles operating on methane which comprises a valve device and a connection snout , associated with a latch mechanism, the moving members of the device and mechanism are actuated with the aid of a rocking lever which is arranged so that the valve device cannot be open before securely fastening the snout to the end fitting and so that the said snout cannot be unlocked before the internal face of the gun has been decompressed.
- the conduit 4 communicates with a chamber 5 obtained internally to the body 2 and provided with a threaded seat 6, wherein is screwed a dispensing head 7, destined to be coupled with a filler pipe 8 provided on the motor vehicle (not shown herein) to be supplied with the gaseous fuel.
- the head 7 comprises a body 9, realised in two parts: a first part 10 and a second part 11.
- the body 9 internally comprises a cavity 12, which communicates, at an extremity of the body 9, with the chamber 5.
- shutter means 13 are presence, essentially constituted by a piston element 14, which allow the gaseous fuel to be dispensed when the pistol is coupled to the filler pipe 8.
- the second part 11 presents a hole 15 surrounded by an annular ledge 16; within the hole 15 slides with little play the piston element 14.
- the body 9 is divided into the two parts 10 and 11 in such a way as to allow the insertion of the piston element 14 into the cavity 12.
- the piston element 14 presents a first extremity 17 inserted in the body 9 inside the cavity 12, and a second extremity 18, projecting from the body 9, destined to be coupled to the filler pipe 8, which in turn is connected with a conduit for the injection of the fuel in the tank (not shown herein) of the motor vehicle.
- the element 14 further presents a blind axial hole 19 and a plurality of radial holes 20 (for instance four) located in the first extremity 17 and communicating with the axial hole 19.
- the piston element 14 can slide in the hole 15 between two extreme positions: a first position wherein it is extracted with respect to the second part 11 of the body 9, and a second position wherein it is retracted.
- a spring 21 tends to maintain the piston element 14 in the first extracted position.
- the radial holes 20 are in communication with the cavity 12 and allow the passage of the gas from the cavity 12, and hence also from the chamber 5, through the axial hole 19 to the filler pipe 8.
- the radial holes 20 are shut by the wall of the hole 15 not allowing the passage of the gas.
- the first extremity 17 of the piston element 14 comprises a first mushroom head 22, which can is separable and, for instance, is connected by means of a threaded coupling to the central part of the piston element 14 in such a way as to allow the insertion of the piston element 14 into the hole 15.
- the mushroom head 22 co-operates, for preventing the release of the gaseous fuel, with the annular ledge 16 that surrounds the hole 15, and for this purpose it is provided with a sealing gasket 23 oriented towards the annular ledge 16.
- the head 22 has a tendency to be thrust against the annular ledge 16 by the spring 21, so that the gasket 23, which is relatively yielding, by deforming on the annular ledge 16, and in part also around it, guarantees the perfect seal, thereby preventing the gaseous fuel from leaking out when the piston 1 is in non operative conditions. Also the pressure of the gaseous fuel present in the cavity 12 favours the maintenance of the head 22 against the annular ledge 16.
- the second extremity 18 of the element 14 comprises a second mushroom head 24 which can be realised in a single piece with the central part of the element 14.
- the second mushroom head 24 is provided with a gasket 25, also relatively yielding, able to guarantee a hermetically sealed coupling between the element 14 and the filler pipe 8 of the motor vehicle tank.
- the gasket is destined to co-operate with an annular ledge 26 with which the filler pipe 8 is provided.
- the gasket 25 presents an inner diameter that is substantially similar to the inner diameter of the annular ledge 26 and a greater annular width than that of the annular ledge 26.
- the gasket 25, being compressed on a smaller annular surface is deformed in such a way as to encompass the ledge 26 also laterally.
- gas tightness is assured even if the filler pipe 8 is not aligned with the head 7.
- the gasket 25 is housed in a seat 27, obtained in the second mushroom head 24. Some holes 28 are positioned on the bottom wall of the seat 27, i.e. in contact with the side of the gasket 25 opposite to the one destined to bear down on the filler pipe 8. The function of the holes 28 shall be clarified subsequently in the course of the explanation of the operation of the pistol and of the fuel dispensing phases.
- the pistol 1 is also provided with a coupling device 29 to maintain the pistol 1, and in particular the head 7, coupled to the filler pipe 8.
- the coupling device 29 comprises a sleeve 30 inserted to slide on tubular element 31 and on the head 7.
- the tubular element 31 is on the same axis as the head 7 and is separated therefrom for a segment D.
- the tubular element 31 is maintained away from the head 7 by a spring 32.
- the tubular element 31 presents in the inner surface a series of spheres 33 positioned in appropriate seats 34 along a circumference of the inner lateral surface of the tubular element 31.
- the spheres 33 serve to lock the piston 1 on the filler pipe 8, when the piston 1 is inserted for dispensing the gaseous fuel.
- the outer lateral surface of the tubular element 31 presents a seat 35, whereinto is inserted an elastic ring 36, a first ledge 37 and a second ledge 38.
- the elastic ring 36 serves as a first limit stop for the sleeve 30, which presents in correspondence and internally a first annular rib 39.
- the latter and the first ledge 37 constitute the bearing extremities for a spring 40, inserted between the tubular element 31 and the sleeve 30.
- the spring 40 acts in such a way as to maintain the sleeve 30, with its rib 39, set against the elastic ring 36.
- the second ledge 38 co-operates with a second annular rib 41 positioned internally to the sleeve 30, constituting a second limit stop for the sleeve 30.
- the sleeve 30 is therefore movable in the axial direction between a first ledge, constituted by the elastic ring 36, and the second ledge 38.
- the seats 34 traverse the wall of the tubular element 31 and are realised in such a way as to allow the spheres 33 to project with respect to the inner surface of the tubular element 31 for a certain segment in radial direction towards the axis 42.
- the seats 34 In the part 43, oriented towards the axis 42, the seats 34 present a slightly lesser diameter than the diameter of the spheres 33, so that the spheres 33 cannot exit the seat 34, in the direction towards the interior of the tubular element 31, while they can exit in the other direction to allow their introduction in the seats 34.
- the part 43 is shaped as a spherical sector with decreasing diameter.
- this shape presents the advantage of not having the tendency to block the spheres 33 in the seats 34 when the spheres are completely encased in the seat 34, i.e. projecting towards the axis 42.
- the spheres 33 enter the seats 34 to allow the passage of the filler pipe 8 inside the tubular element 31.
- the filler pipe 8 has a diameter that is only slightly lesser than the inner diameter of the tubular pipe 31.
- the spheres 33 having a greater diameter than the thickness of the tubular element 31, in part also enter the annular slot 44.
- the filler pipe 8 presents an outer annular seat 45, within which the spheres 33 can be inserted, when the pistol 1 must be locked onto the filler pipe 8 itself.
- the annular seat 45 is so positioned as to face the spheres 33 when the filler pipe 8 is set against the tubular element 31. By axially moving the sleeve 30, the spheres 33 can no longer enter the annular slot 44.
- the sleeve 30 can be axially displaced by a lever 46 able to rotate about a hinge 47 obtained in the body 2.
- the lever 46 is provided with a fork 48 which co-operates with appropriate seats 49 obtained in the outer part of the sleeve 30.
- the sleeve 30 is able to slide with respect to the tubular element 31, between a non operative positions ( Figures 1 and 3), wherein the spheres 33 can freely enter the annular slot 44 and an operative position ( Figure 5) wherein said spheres 33 are locked on a lesser diameter by the inner wall of the sleeve 30.
- the pistol 1 is further provided with locking and unlocking means 50 for stabilising the sleeve 31 in the operative position and subsequently allowing its release by means of the release push-button 51.
- the locking and unlocking means 50 are of a known type and therefore are not described in detail herein.
- the head 7 (or more precisely the part 11 of the body 9) progressively opens the holes 20 of the piston element 14 placing the conduit 4 for supplying the gaseous fuel in communication with the tank of the motor vehicle to be refuelled, through the chamber 5 of the body 2, the cavity 12 of the head 7, the radial holes 20 and the axial hole 19 of the piston element 14 (see Figure 5).
- the gasket 25 is temporarily unloaded by the pressing action of the piston element 14. Hence it is possible that gasket 25, remaining adherent to the annular ledge 26 of the filler pipe 8, becomes detached from its seat 27. The detachment action is favoured by the pressure of the gaseous fuel which seeps between the seat 27 and the gasket 25 thereby realising an ejection action of the gasket 25 itself.
- some holes 28 are provided on the bottom of the seat 27. The holes 28 allow to unload the pressure of the gaseous fuel which may have seeped behind the gasket 25.
- sequence of operations for inserting the pistol 1 on the filler pipe 8 is such as to minimise the release of the gaseous fuel into the environment.
- the gasket 25 is already bearing on the annular ledge of the filler pipe 8, being pressed by the spring 21, and therefore the gaseous fuel cannot be released into the environment, but only enter the tank to be filled.
- the filler pipe 8 is provided with a valve, not shown because it is of a known type, which opens automatically with the difference between the pressure of the tank to be filled and the pressure of the device for dispensing the gaseous fuel.
- the second mushroom head 24 comprises means 52 for opening a valve 53 with which the filler pipe 8 can be provided.
- the valve 53 is not automatic, but must be opened in a "positive” manner by appropriate means (namely, the means 52), the difference in pressure between the tank and the dispensing device not being sufficient.
- the means 52 comprise a thrust pivot pin 54 positioned along the axis 42.
- the pin 54 is connected to a disk 55 which is inserted, for instance by means of a threaded coupling 56, in the part of the head 24 oriented towards the filler pipe 8.
- the disk 55 presents holes 57 for allowing the passage of the gaseous fuel.
- the pivot pin 54 is made in such a manner as to open the valve 53 when the pistol 1 is inserted on the filler pipe 8.
- the valve 53 comprises a sphere 58 pressed by a spring 59 in such a way as to close the passage of the filler pipe 8.
- the spring 59 develops a force, lesser than that developed by the spring 21, so that the pivot pin 54 presses on the valve 53 and opens it.
- the pivot pin 54 is able to slide with respect to the disk 55, which for this purpose presents a seat 60.
- the pivot pin 54 in turn comprises a mushroom valve 61, fitted with a disk 62 pressed by a spring 63.
- the disk 62 presents a truncated cone shaped surface 64 which couples with a corresponding truncated cone shaped seat 65.
- the spring 63 develops a force whose intensity is comparable to that of the spring 59, so that the spring 53 and the mushroom valve 61 open nearly simultaneously.
- the mushroom valve 61 therefore guarantees a further safety to prevent the release of the gaseous fuel into the environment.
- Figure 6 shows a pistol 100, variation of the pistol 1 of the previous embodiments, and a filler pipe 80 slightly modified with respect to the filler pipe 8 of the previous embodiments. This embodiment does not form part of the invention.
- the pistol 100 is fitted with a head 70, which is in turn fitted with shutter means 66 comprising a ball valve 67.
- the ball valve 67 is similar to the valve 53 and comprises a ball 68 and a spring 69.
- the spring 69 develops a force whose intensity is comparable to that of the spring 59, so that the valve 53 on the filler pipe 80 and the ball valve 66 open nearly simultaneously, preventing any release of gaseous fuel into the environment.
- the head 70 comprises a section 71 able to couple with the filler pipe 80 and a series of spheres 72 housed in seats 73 positioned according to a circumference.
- the seats 73 are identical to the seats 34 of the embodiment of Figure 1.
- a sleeve 74 which is activated by the lever 46 as shown in the embodiment of Figure 2.
- the sleeve 74, the section 71, the spheres 72 and the related seats constitute the coupling device 77 for the pistol 100 on the filler pipe 80.
- the pistol 100 is in an uncoupled condition, with the possibility of its insertion on the filler pipe 80, when the lever 46 is pulled and the sleeve 74 presents an annular slot 75 aligned with the spheres 72. Subsequently, when the lever 46 is released the sleeve 74 advances towards the filler pipe 80 actuated by a spring 76. The annular slot 75 is therefore no longer aligned with the spheres 72, which thus lock the pistol 100 on the filler pipe 80. The pistol 100 therefore does not include the locking and unlocking means 50.
- the sphere 58 of the filler pipe 80 and the sphere 68 of the pistol 100 are in equilibrium under the action of the respective springs 59 and 69 and thus allow the passage and dispensing of the fuel.
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Cooling, Air Intake And Gas Exhaust, And Fuel Tank Arrangements In Propulsion Units (AREA)
- Feeding, Discharge, Calcimining, Fusing, And Gas-Generation Devices (AREA)
- Sampling And Sample Adjustment (AREA)
- Medicinal Preparation (AREA)
- Lighters Containing Fuel (AREA)
- Toys (AREA)
Abstract
Description
- The present invention relates to a pistol for dispensing gaseous fluid, in particular gaseous fuel for motor vehicles.
- Pistols for dispensing gaseous fuel for motor vehicles are known, provided with conduit for the passage of the fuel, which is dispensed through a dispensing head able to couple with a corresponding filler pipe for the injection of the fuel, provided on the motor vehicle. The dispensing head is provided with a coupling device able to maintain said dispensing head in position on said filler pipe.
- Modifications are presently ongoing on the filler pipes for the inflow of the gaseous fuel which are found on the vehicle, such modifications having the purpose of making the connection safer and of unifying the tank attachment fitting in different Nations. The coupling devices currently available for the new types of unified attachment fitting, however, have rather difficult and inconvenient activation.
- The present invention relates to a fuel dispensing pistol comprising a coupling device for the new filler pipes which is easy and convenient to activate. The dispensing pistol further comprises at its exterior a lever for activating the coupling device and in its interior shutter means which allow to dispense the gaseous fuel when the pistol is coupled to the tank filler pipe.
- The shutter means of the pistol according to the present invention comprise devices and are realised to prevent or in any case minimise the release of the gaseous fuel into the environment during the fuelling operation.
- The coupling device of the pistol comprises a plurality of locking elements, a sleeve associated with the blocking elements, and able to slide between a non operative position, wherein the locking elements are free and allow the insertion of the pistol on the filler pipe, and an operative position wherein said locking elements are locked and do not allow the insertion and extraction of the pistol onto and from said filler pipe.
- From document FR-2 686 680 is known a gun for filling tanks of vehicles operating on methane which comprises a valve device and a connection snout , associated with a latch mechanism, the moving members of the device and mechanism are actuated with the aid of a rocking lever which is arranged so that the valve device cannot be open before securely fastening the snout to the end fitting and so that the said snout cannot be unlocked before the internal face of the gun has been decompressed.
- From document EP-0122 404 is known a quick-locking coupling which can be switched to the flow of medium by manual actuation, the valve locking element of which can be shifted into the opened position solely in the coupled position of both coupling halves, for which purpose one coupling half, carrying a pistol grip, has a lever which shifts the valve locking element into the opened position relative to the associated valve seat surface, and, moreover, has a central core piece which carries the valve locking element, continues into the pistol grip and, to an extent limited by a stop, is displaceable relative to an outer housing of this one coupling half, which outer housing accommodates the core piece, which displacement movement of the core piece is initiated only when interlocking means which interlock the core piece together with the other coupling half are engaged with the latter, the lever is designed as a trigger cock of the pistol grip, the core piece is shifted against the force of a compression spring which, for the purpose of blocking, loads the outer sleeve forming the valve seat surface of the valve locking element, and the outer housing carries an interlocking sleeve which is displaceably mounted on it to a limited extent, is spring-loaded in the direction of the other coupling half and, in its retracted release position, is prevented from advancing into the interlocking position by a latch which can be released by the other coupling half, and that the outer housing carries a blocking member which is spring-mounted radially outwards and which, from an inner step of the interlocking sleeve, in the retracted release position of the latter, moves into blocking engagement with the core piece and, in the advanced position of the interlocking sleeve, moves into a deflection space of the latter while moving out of the core piece.
- The technical features of the invention and its advantages shall be made more readily apparent in the detailed description that follows, made with reference to the accompanying drawings, which represent an embodiment provided purely by way of non limiting example, wherein:
- Figure 1 shows a dispensing pistol constituting the subject of the present invention in section view and a fuel filler pipe of a motor vehicle;
- Figure 2 shows the pistol of Figure 1 in a partial side view;
- Figures 3, 4 and 5 shows an enlarged part of a pistol according to a variation of the one in Figure 1, and the respective filler pipe of a motor vehicle, the pistol being shown in successive phases during the insertion of the dispensing head on the filler pipe;
- Figure 6 shows a dispensing pistol according to another variation of the one in Figure 1, shown in section view, in coupled condition on a respective fuel filler pipe of a motor vehicle; and
- Figure 7 shows a variation of a detail of the dispensing head of Figure 3.
In accordance with the figures of the accompanying drawings, the
number 1 indicates a pistol for dispensing gaseous fluid, in particular gaseous fuel for motor vehicles, provided with abody 2 having agrip 3 in whose interior afuel supply conduit 4 is obtained. Theconduit 4 terminates at one of its extremities with a suitable attachment for an inflow pipe from a device for dispensing the gaseous fuel (not shown herein). - At the other extremity, the
conduit 4 communicates with achamber 5 obtained internally to thebody 2 and provided with a threadedseat 6, wherein is screwed a dispensinghead 7, destined to be coupled with afiller pipe 8 provided on the motor vehicle (not shown herein) to be supplied with the gaseous fuel. - The
head 7 comprises a body 9, realised in two parts: afirst part 10 and asecond part 11. The body 9 internally comprises a cavity 12, which communicates, at an extremity of the body 9, with thechamber 5. In the opposite extremity, where thesecond part 11 is located, shutter means 13 are presence, essentially constituted by apiston element 14, which allow the gaseous fuel to be dispensed when the pistol is coupled to thefiller pipe 8. - The
second part 11 presents ahole 15 surrounded by anannular ledge 16; within thehole 15 slides with little play thepiston element 14. The body 9 is divided into the twoparts piston element 14 into the cavity 12. - The
piston element 14 presents afirst extremity 17 inserted in the body 9 inside the cavity 12, and asecond extremity 18, projecting from the body 9, destined to be coupled to thefiller pipe 8, which in turn is connected with a conduit for the injection of the fuel in the tank (not shown herein) of the motor vehicle. Theelement 14 further presents a blindaxial hole 19 and a plurality of radial holes 20 (for instance four) located in thefirst extremity 17 and communicating with theaxial hole 19. - The
piston element 14 can slide in thehole 15 between two extreme positions: a first position wherein it is extracted with respect to thesecond part 11 of the body 9, and a second position wherein it is retracted. Aspring 21 tends to maintain thepiston element 14 in the first extracted position. - When the
piston element 14 is retracted, theradial holes 20 are in communication with the cavity 12 and allow the passage of the gas from the cavity 12, and hence also from thechamber 5, through theaxial hole 19 to thefiller pipe 8. When instead thepiston element 14 is extracted, theradial holes 20 are shut by the wall of thehole 15 not allowing the passage of the gas. - The
first extremity 17 of thepiston element 14 comprises afirst mushroom head 22, which can is separable and, for instance, is connected by means of a threaded coupling to the central part of thepiston element 14 in such a way as to allow the insertion of thepiston element 14 into thehole 15. - The
mushroom head 22 co-operates, for preventing the release of the gaseous fuel, with theannular ledge 16 that surrounds thehole 15, and for this purpose it is provided with a sealinggasket 23 oriented towards theannular ledge 16. Thehead 22 has a tendency to be thrust against theannular ledge 16 by thespring 21, so that thegasket 23, which is relatively yielding, by deforming on theannular ledge 16, and in part also around it, guarantees the perfect seal, thereby preventing the gaseous fuel from leaking out when thepiston 1 is in non operative conditions. Also the pressure of the gaseous fuel present in the cavity 12 favours the maintenance of thehead 22 against theannular ledge 16. - The
second extremity 18 of theelement 14 comprises asecond mushroom head 24 which can be realised in a single piece with the central part of theelement 14. Thesecond mushroom head 24 is provided with agasket 25, also relatively yielding, able to guarantee a hermetically sealed coupling between theelement 14 and thefiller pipe 8 of the motor vehicle tank. In particular, the gasket is destined to co-operate with anannular ledge 26 with which thefiller pipe 8 is provided. Thegasket 25 presents an inner diameter that is substantially similar to the inner diameter of theannular ledge 26 and a greater annular width than that of theannular ledge 26. Hence, thegasket 25, being compressed on a smaller annular surface, is deformed in such a way as to encompass theledge 26 also laterally. Thus, gas tightness is assured even if thefiller pipe 8 is not aligned with thehead 7. - The
gasket 25 is housed in aseat 27, obtained in thesecond mushroom head 24. Someholes 28 are positioned on the bottom wall of theseat 27, i.e. in contact with the side of thegasket 25 opposite to the one destined to bear down on thefiller pipe 8. The function of theholes 28 shall be clarified subsequently in the course of the explanation of the operation of the pistol and of the fuel dispensing phases. - The
pistol 1 is also provided with acoupling device 29 to maintain thepistol 1, and in particular thehead 7, coupled to thefiller pipe 8. Thecoupling device 29 comprises asleeve 30 inserted to slide ontubular element 31 and on thehead 7. Thetubular element 31 is on the same axis as thehead 7 and is separated therefrom for a segment D. Thetubular element 31 is maintained away from thehead 7 by aspring 32. - The
tubular element 31 presents in the inner surface a series ofspheres 33 positioned inappropriate seats 34 along a circumference of the inner lateral surface of thetubular element 31. Thespheres 33 serve to lock thepiston 1 on thefiller pipe 8, when thepiston 1 is inserted for dispensing the gaseous fuel. - The outer lateral surface of the
tubular element 31 presents aseat 35, whereinto is inserted anelastic ring 36, afirst ledge 37 and asecond ledge 38. Theelastic ring 36 serves as a first limit stop for thesleeve 30, which presents in correspondence and internally a firstannular rib 39. The latter and thefirst ledge 37 constitute the bearing extremities for aspring 40, inserted between thetubular element 31 and thesleeve 30. Thespring 40 acts in such a way as to maintain thesleeve 30, with itsrib 39, set against theelastic ring 36. - The
second ledge 38 co-operates with a secondannular rib 41 positioned internally to thesleeve 30, constituting a second limit stop for thesleeve 30. Thesleeve 30 is therefore movable in the axial direction between a first ledge, constituted by theelastic ring 36, and thesecond ledge 38. - As shown in Figures 1 and from 3 to 5, the
seats 34 traverse the wall of thetubular element 31 and are realised in such a way as to allow thespheres 33 to project with respect to the inner surface of thetubular element 31 for a certain segment in radial direction towards theaxis 42. In thepart 43, oriented towards theaxis 42, theseats 34 present a slightly lesser diameter than the diameter of thespheres 33, so that thespheres 33 cannot exit theseat 34, in the direction towards the interior of thetubular element 31, while they can exit in the other direction to allow their introduction in theseats 34. - Preferably, as shown in the detail of Figure 1, the
part 43 is shaped as a spherical sector with decreasing diameter. With respect to the truncated cone shape, this shape presents the advantage of not having the tendency to block thespheres 33 in theseats 34 when the spheres are completely encased in theseat 34, i.e. projecting towards theaxis 42. - The
sleeve 30, on its own inner surface and in correspondence with thespheres 33, presents anannular slot 44. As Figure 4 shows, during the insertion of thepistol 1 on thefiller pipe 8, thespheres 33 enter theseats 34 to allow the passage of thefiller pipe 8 inside thetubular element 31. Thefiller pipe 8 has a diameter that is only slightly lesser than the inner diameter of thetubular pipe 31. Thespheres 33, having a greater diameter than the thickness of thetubular element 31, in part also enter theannular slot 44. - The
filler pipe 8 presents an outerannular seat 45, within which thespheres 33 can be inserted, when thepistol 1 must be locked onto thefiller pipe 8 itself. Theannular seat 45 is so positioned as to face thespheres 33 when thefiller pipe 8 is set against thetubular element 31. By axially moving thesleeve 30, thespheres 33 can no longer enter theannular slot 44. - The
spheres 33 not being aligned with theannular slot 44 itself, are held in theannular seat 45 of thefiller pipe 8, thereby locking the latter with thepistol 1. - As shown in Figure 2, the
sleeve 30 can be axially displaced by alever 46 able to rotate about ahinge 47 obtained in thebody 2. Thelever 46 is provided with afork 48 which co-operates withappropriate seats 49 obtained in the outer part of thesleeve 30. - Hence the
sleeve 30 is able to slide with respect to thetubular element 31, between a non operative positions (Figures 1 and 3), wherein thespheres 33 can freely enter theannular slot 44 and an operative position (Figure 5) wherein saidspheres 33 are locked on a lesser diameter by the inner wall of thesleeve 30. - In the non operative position of Figure 3, the
sleeve 30 is set against theelastic ring 36, and in the operative position of Figure 5 thesleeve 30 bears on thesecond ledge 38. In this latter operative condition, thetubular element 31 is approached to thehead 7, so that thespring 32 is compressed. - The
pistol 1 is further provided with locking and unlockingmeans 50 for stabilising thesleeve 31 in the operative position and subsequently allowing its release by means of the release push-button 51. The locking and unlockingmeans 50 are of a known type and therefore are not described in detail herein. - In use, with reference to Figures 1 and from 3 to 5, when the
pistol 1 is inserted on thefiller pipe 8, thesleeve 30 is in the aforesaid non operative position, wherein thespheres 33 are able to enter theseats 34 and allow the passage of thefiller pipe 8 within thetubular sleeve 31, thepiston element 14 being thrust by thespring 21 to bear on theledge 16. - After the
pistol 1 is inserted on thefiller pipe 8, and thesleeve 30 is brought to bear against it, thespheres 33 are aligned with theannular seat 45 of the filler pipe 8 (see Figure 4). - Subsequently when the
lever 46 is moved towards thegrip 3, thefork 48 starts to move thesleeve 30 towards thegrip 2 so that thespheres 33 are forced to enter into theseat 45 of thefiller pipe 8 and remain therein, preventing any further movement of thetubular element 31 with respect to thefiller pipe 8. - When the
lever 46 continues to be moved towards thegrip 3, thehead 7 slides forward (i.e. leftwards with reference to Figures 3-5), with respect to thetubular element 31 and to thepiston element 14. - The latter, bearing with the
mushroom head 24 and thegasket 25 on theedge 26 of thefiller pipe 8, cannot move, thus the head 7 (or more precisely thepart 11 of the body 9) progressively opens theholes 20 of thepiston element 14 placing theconduit 4 for supplying the gaseous fuel in communication with the tank of the motor vehicle to be refuelled, through thechamber 5 of thebody 2, the cavity 12 of thehead 7, the radial holes 20 and theaxial hole 19 of the piston element 14 (see Figure 5). - When the
lever 46 reaches the stop, themeans 50 lock thesleeve 30 in the operative position. - To extract the
pistol 1 from thefiller pipe 8, it is sufficient to exert a modest pressure on the release push-button 51, disengaging themeans 50 and thereby freeing thesleeve 30. The latter is returned by thespring 32 to the non operative position, allowing thespheres 33 to return into theannular slot 44, and allowing the extraction of thepistol 1 from thefiller pipe 8 itself. - During the operation of extracting the pistol, especially if it is performed with a rapid movement, the
gasket 25 is temporarily unloaded by the pressing action of thepiston element 14. Hence it is possible thatgasket 25, remaining adherent to theannular ledge 26 of thefiller pipe 8, becomes detached from itsseat 27. The detachment action is favoured by the pressure of the gaseous fuel which seeps between theseat 27 and thegasket 25 thereby realising an ejection action of thegasket 25 itself. To prevent this drawback, someholes 28 are provided on the bottom of theseat 27. Theholes 28 allow to unload the pressure of the gaseous fuel which may have seeped behind thegasket 25. - It should be noted that the sequence of operations for inserting the
pistol 1 on thefiller pipe 8 is such as to minimise the release of the gaseous fuel into the environment. - At first the
pistol 1 is locked on thefiller pipe 8 and only afterwards does thehead 7, moving relatively to thepiston element 14, allow the passage of the gaseous fuel. - Moreover, before the opening phase of the passage for the gaseous fuel, the
gasket 25 is already bearing on the annular ledge of thefiller pipe 8, being pressed by thespring 21, and therefore the gaseous fuel cannot be released into the environment, but only enter the tank to be filled. - In the embodiment illustrated in Figure 1, the
filler pipe 8 is provided with a valve, not shown because it is of a known type, which opens automatically with the difference between the pressure of the tank to be filled and the pressure of the device for dispensing the gaseous fuel. - According to an alternative embodiment, illustrated in Figures 3 through 5, the
second mushroom head 24 comprises means 52 for opening avalve 53 with which thefiller pipe 8 can be provided. In thisfiller pipe 8, thevalve 53 is not automatic, but must be opened in a "positive" manner by appropriate means (namely, the means 52), the difference in pressure between the tank and the dispensing device not being sufficient. - The means 52 comprise a
thrust pivot pin 54 positioned along theaxis 42. Thepin 54 is connected to adisk 55 which is inserted, for instance by means of a threadedcoupling 56, in the part of thehead 24 oriented towards thefiller pipe 8. Thedisk 55 presents holes 57 for allowing the passage of the gaseous fuel. - The
pivot pin 54 is made in such a manner as to open thevalve 53 when thepistol 1 is inserted on thefiller pipe 8. Thevalve 53 comprises asphere 58 pressed by aspring 59 in such a way as to close the passage of thefiller pipe 8. Thespring 59 develops a force, lesser than that developed by thespring 21, so that thepivot pin 54 presses on thevalve 53 and opens it. - According to another embodiment illustrated in Figure 7, the
pivot pin 54 is able to slide with respect to thedisk 55, which for this purpose presents aseat 60. Thepivot pin 54 in turn comprises amushroom valve 61, fitted with adisk 62 pressed by aspring 63. Thedisk 62 presents a truncated cone shapedsurface 64 which couples with a corresponding truncated cone shapedseat 65. Thespring 63 develops a force whose intensity is comparable to that of thespring 59, so that thespring 53 and themushroom valve 61 open nearly simultaneously. - The
mushroom valve 61 therefore guarantees a further safety to prevent the release of the gaseous fuel into the environment. - Figure 6 shows a
pistol 100, variation of thepistol 1 of the previous embodiments, and afiller pipe 80 slightly modified with respect to thefiller pipe 8 of the previous embodiments. This embodiment does not form part of the invention. - In this case, the
pistol 100 is fitted with a head 70, which is in turn fitted with shutter means 66 comprising a ball valve 67. The ball valve 67 is similar to thevalve 53 and comprises a ball 68 and aspring 69. - Also in accordance with this embodiment, the
spring 69 develops a force whose intensity is comparable to that of thespring 59, so that thevalve 53 on thefiller pipe 80 and theball valve 66 open nearly simultaneously, preventing any release of gaseous fuel into the environment. The head 70 comprises asection 71 able to couple with thefiller pipe 80 and a series ofspheres 72 housed inseats 73 positioned according to a circumference. Theseats 73 are identical to theseats 34 of the embodiment of Figure 1. - On the outer part of the
seats 73 is present a sleeve 74 which is activated by thelever 46 as shown in the embodiment of Figure 2. The sleeve 74, thesection 71, thespheres 72 and the related seats constitute the coupling device 77 for thepistol 100 on thefiller pipe 80. - Unlike the previous embodiments, the
pistol 100 is in an uncoupled condition, with the possibility of its insertion on thefiller pipe 80, when thelever 46 is pulled and the sleeve 74 presents anannular slot 75 aligned with thespheres 72. Subsequently, when thelever 46 is released the sleeve 74 advances towards thefiller pipe 80 actuated by a spring 76. Theannular slot 75 is therefore no longer aligned with thespheres 72, which thus lock thepistol 100 on thefiller pipe 80. Thepistol 100 therefore does not include the locking and unlockingmeans 50. - The
sphere 58 of thefiller pipe 80 and the sphere 68 of thepistol 100 are in equilibrium under the action of therespective springs
Claims (10)
- Pistol (1; 100) for dispensing gaseous fuel comprising: a body (2), a grip (3) internally provided with a conduit (4) for the passage of gaseous fuel towards a respective tank; a chamber (5) positioned internally to the body (2) communicating with said conduit (4); a dispensing head (7; 70) associated to said body (2), internally provided with a cavity (12) communicating with said chamber (5), said head (7; 70) being able to couple with a corresponding filler pipe (8; 80) for injecting the gaseous fuel; a coupling device (29; 77) to maintain said dispensing head (7; 70) in position on said filler pipe (8; 80), said coupling device (29; 77) being movable between a first non operative position and a second operative position, a lever (46) being provided and able to move the coupling device (29; 77) at least from said non operative position to said operative position, locking and unlocking means (50) being provided and able to stabilise said coupling device (29; 77) in said operative position, the coupling device (29; 77) comprising a plurality of locking elements (33; 72), a sleeve (30; 74) associated to the locking elements (33; 72) and able to slide between a non operative position, wherein the locking elements (33; 72) are free and allow the insertion of the pistol (1; 100) on the filler pipe (8; 80), and an operative position wherein said locking element (33; 72) are locked and do not allow the insertion and the extraction of the pistol (1; 100) on and from said filler pipe (8; 80), shutter means (13; 68, 69) which allow to dispense the gaseous fuel when the coupling device (29; 77) is in operative condition, and prevent the dispensing of the gaseous fuel when the coupling device (29; 77) is in non operative conditioncharacterized in that the shutter means comprises a mushroom head (24) provided with a gasket (25), relatively yielding, being adapted to co-operate with an annular ledge (26) with which the filler pipe (8) is provided, the gasket (25) preseting an inner diameter that is substantially similar to the inner diameter of the annular ledge (26) and a greater annular width than that of the annular ledge (26), whereby the gasket (25), being compressible on a smaller annular surface, is deformable in such a way as to encompass the ledge (26) also laterally.
- Pistol according to claim 1, characterised in that the shutter means (13; 68, 69) comprise an element (14; 68) able to move, following the insertion of the pistol (1; 100) on the filler pipe (8; 80), between a first position and a second position; the first position corresponding to said operative condition for dispensing the fuel, and the second position corresponding to said operative condition wherein the dispensing of the fuel is impeded.
- Pistol according to claims 1 or 2, characterised in that the shutter means (13; 68, 69) are positioned at an extremity of the head (7; 70) and comprise a shutter (14; 68) able to open a passage (19, 20; 68, 70), in said extremity, to place the chamber (5) and the cavity (12) in communication with the filler pipe (8; 80).
- Pistol according to claim 1, characterised in that the coupling device (29) comprises a tubular element (31; 74) able to receive the filler pipe (8; 80) and provided with seats (34; 73) positioned along a circumference of its own inner lateral surface and in that the locking elements of the coupling device (29; 77) are spheres (33; 72) housed in said seats (34; 73).
- Pistol according to claim 4, characterised in that the sleeve (30; 74) associated to the locking elements (33; 72) comprises an annular slot (44; 75) able radially to move the locking elements (33; 72) following an axial displacement of said sleeve (30; 74).
- Pistol according to claim 4, characterised in that the seats (34; 73) comprise a part (43) in the form of spherical sector in proximity to the inner lateral surface of the tubular element (31; 74).
- Pistol according to one of the claims from 1 to 3, characterised in that the shutter is a piston element (14) comprising a first and a second mushroom head (22, 24) fitted with gaskets (23, 25) and in that the second mushroom head (24) comprises a seat (27) for the gasket (25) provided with through holes (28).
- Pistol according to claim 7, characterised in that the piston element (14) comprises holes (19, 20) for allowing the passage of the gaseous fuel during the dispensing operation and in that said piston element (14) is maintained in position wherein it closes said holes (19, 20) by thrusting elements (21).
- Pistol according to one of the claims 7 or 8, characterised in that the piston element (14) comprises a pivot pin (54) able to open a valve (53) which may be positioned in the filler pipe (8), when the pistol is in dispensing condition.
- Pistol according to claim 9, characterised in that the piston element (14) comprises a valve (61) associated to the pivot pin (54) and able to open, following the insertion movement of the pistol (1) on the filler pipe (8) simultaneously with the valve (53).
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
IT1998BO000668A IT1304138B1 (en) | 1998-11-30 | 1998-11-30 | GASEOUS FUEL DISPENSING GUN. |
ITBO980668 | 1998-11-30 |
Publications (3)
Publication Number | Publication Date |
---|---|
EP1006310A2 EP1006310A2 (en) | 2000-06-07 |
EP1006310A3 EP1006310A3 (en) | 2002-03-27 |
EP1006310B1 true EP1006310B1 (en) | 2005-03-02 |
Family
ID=11343537
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP99830706A Expired - Lifetime EP1006310B1 (en) | 1998-11-30 | 1999-11-12 | Pistol for dispensing gaseous fuel |
Country Status (4)
Country | Link |
---|---|
EP (1) | EP1006310B1 (en) |
AT (1) | ATE290187T1 (en) |
DE (1) | DE69923922T2 (en) |
IT (1) | IT1304138B1 (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
EP4023929A4 (en) * | 2018-01-30 | 2023-11-08 | Tatsuno Corporation | FILLING DEVICE |
Families Citing this family (19)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE60108605D1 (en) * | 2001-02-28 | 2005-03-03 | Bn Opw S R L | Fuel nozzle with locking device |
ATE366892T1 (en) * | 2002-12-18 | 2007-08-15 | Witt Gmbh & Co Holding Und Han | QUICK CONNECTION COUPLING WITH ACTUATING DEVICE FOR THE TRANSFER OF A GASEOUS AND/OR LIQUID MEDIUM |
DE10259627B4 (en) * | 2002-12-18 | 2020-08-27 | Weh Gmbh, Verbindungstechnik | Quick-connect coupling with actuating device for the transmission of a gaseous and / or liquid medium |
DE20317914U1 (en) | 2003-11-19 | 2004-12-30 | Weh, Erwin | Actuator for a quick connect coupling |
ITBO20040660A1 (en) * | 2004-10-22 | 2005-01-22 | Bn Opw S R L | GASOUS FUEL DISPENSER GUN WITH EASY OPERATION |
US7270142B2 (en) * | 2005-01-03 | 2007-09-18 | Acosta Carlos R | Inflation device with automatic disconnect |
ITPR20090013A1 (en) * | 2009-03-10 | 2010-09-11 | A T Petroleum S R L | FUEL DISPENSER GUN |
DK2354626T3 (en) | 2010-01-29 | 2013-09-30 | Elaflex Hiby Tanktechnik Gmbh & Co | Filler gun assembly of base filler gun and interface application and modular system of a base filler gun and a plurality of interface applications |
KR101414406B1 (en) * | 2011-12-06 | 2014-07-01 | 김봉이 | Plain sliding type LPG filler |
CN105658941A (en) * | 2013-08-02 | 2016-06-08 | 替代燃料容器有限公司 | Vehicle fuel gas pre-filter unit |
US9527720B2 (en) | 2014-12-18 | 2016-12-27 | Opw Fueling Components Inc. | Nozzle for dispensing pressurized fluid |
US9969605B2 (en) * | 2015-04-15 | 2018-05-15 | Acd, Llc | Liquid natural gas gun-style nozzle |
CN108780593A (en) | 2016-04-11 | 2018-11-09 | 创科(澳门离岸商业服务)有限公司 | Modularized garage door opener |
CA2961090A1 (en) | 2016-04-11 | 2017-10-11 | Tti (Macao Commercial Offshore) Limited | Modular garage door opener |
CN109931498B (en) * | 2019-02-21 | 2024-06-28 | 北京航天试验技术研究所 | Remote hydrogenation device and use method thereof |
EP3767153B1 (en) | 2019-07-16 | 2021-10-13 | Oasis Engineering Ltd | Dispensing nozzle for gaseous or liquefied fuel, with delay between coupling and actuating |
CN110848561B (en) * | 2019-10-16 | 2024-06-28 | 北京航天试验技术研究所 | Liquid hydrogen filling device |
CN112377803A (en) * | 2020-11-10 | 2021-02-19 | 广东奇才阀门科技有限公司 | Hand-operated inflating gun |
DE102022104640A1 (en) | 2022-02-25 | 2023-08-31 | Cryotherm Gmbh & Co. Kg | Introducing a fluid into a port |
Family Cites Families (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
NL8002687A (en) * | 1980-05-09 | 1981-12-01 | Tno | FILLING GUN, ESPECIALLY FOR LPG. |
DE3313258A1 (en) * | 1983-04-13 | 1984-10-18 | Carl Kurt Walther Gmbh & Co Kg, 5600 Wuppertal | QUICK RELEASE COUPLING |
FR2686680B1 (en) * | 1992-01-28 | 1994-08-26 | Staubli Sa Ets | SAFETY APPARATUS FOR LOADING GAS CAPACITIES UNDER HIGH PRESSURE. |
IT1292839B1 (en) * | 1997-04-04 | 1999-02-11 | Franco Frascaroli | A gaseous fluid supply gun, specifically for fuel for vehicles |
-
1998
- 1998-11-30 IT IT1998BO000668A patent/IT1304138B1/en active
-
1999
- 1999-11-12 EP EP99830706A patent/EP1006310B1/en not_active Expired - Lifetime
- 1999-11-12 DE DE69923922T patent/DE69923922T2/en not_active Expired - Lifetime
- 1999-11-12 AT AT99830706T patent/ATE290187T1/en not_active IP Right Cessation
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
EP4023929A4 (en) * | 2018-01-30 | 2023-11-08 | Tatsuno Corporation | FILLING DEVICE |
Also Published As
Publication number | Publication date |
---|---|
ITBO980668A1 (en) | 2000-05-30 |
EP1006310A3 (en) | 2002-03-27 |
ATE290187T1 (en) | 2005-03-15 |
EP1006310A2 (en) | 2000-06-07 |
IT1304138B1 (en) | 2001-03-07 |
DE69923922T2 (en) | 2006-04-06 |
ITBO980668A0 (en) | 1998-11-30 |
DE69923922D1 (en) | 2005-04-07 |
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