DEVICE FOR THE REMOVABLE LOCKING OF A PLUG TO A PIPELINE FITTING
20240044436 ยท 2024-02-08
Inventors
Cpc classification
F16L41/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L55/11
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L55/136
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16L55/136
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The device (1) allows the locking of a plug (2) to a fitting (3) and comprises: two locking blades (10), having the outer edge (10B) in an arc of circumference, arranged symmetrically opposite and coplanar to a annular groove (31) of the plug (2), sliding parallel to the latter; actuation means (4) defined by a toothed pinion (13) with which two racks (120) provided in the locking blades (10) are engaged, determining for the same corresponding and synchronized translations in opposite directions, so that the arched edges (10B) are displaced outwards to engage said annular groove (31), locking the plug (2) to the fitting (3). The toothed pinion (13) has a hexagonal head (130) at the top which is engaged by an operating member (15).
Claims
1.-13. (canceled)
14. A device (1), comprising a plug (2) and a fitting (3) for removable locking together, said fitting (3) applicable for maintenance interventions to a pipe (T) for transport of fluid or gas under pressure and provided with an access mouth (30) arranged with an axis transverse to an axis of the pipe (T); said plug (2) having a substantially cylindrical conformation and a section not greater than that of said access mouth (30); said device (1) further comprising: two locking blades (10), each having an outer edge (10B) shaped as a sector of circumference, arranged symmetrically opposite and slidingly guided by guide means (11) on a plane parallel to an external face (2E) of the plug (2) and coplanar to an annular groove (31) made in an internal cylindrical surface of the access mouth (30), each outer edge (10B) of said locking blades (10) having a curvature with a substantially equal radius to a radius of a bottom of the annular groove (31); actuation means (4) provided to act simultaneously on said two locking blades (10), for causing corresponding and synchronized translations in opposite directions, guided by said guide means (11), such that each outer edge (10B) is simultaneously displaced outwards to engage in said annular groove (31) so as to lock the plug (2) to the connector (3), the actuation means (4) provided to act to simultaneously displace said two locking blades (10) to retract inwards to disengage the outer edges (10B) from the annular groove (31) and release said plug (2) from the fitting (3).
15. The device according to claim 14, wherein each arcuate edge (10B) of the locking blades (10) have an angular development of at least 45.
16. The device according to claim 14, wherein when the plug (2) is locked to the connector (3), each outer edge (10B) of the locking blades (10) are arranged concentric to the annular groove (31) of the connector (3).
17. The device according to claim 14, wherein said actuation means (4) comprise: a rotatable toothed pinion (13), supported by the plug (2); a rack (120), provided with rack gears in each of said two locking blades (10) so as to engage with and on opposite sides of the toothed pinion (13), the rotatable toothed pinion (13) drivable in rotation in locking and unlocking directions by a control member (130) coaxial and integral with said toothed pinion (13) so that rotation of the toothed pinion causes the racks (120) to simultaneously displace said locking blades (10) in opposite directions within the access mouth (30), so that consequent displacements of outer edges (10B), for respective insertion into said annular groove (31), or disengagement from the annular groove (31).
18. The device according to claim 17, wherein said guide means (11) consist, in each of said two locking blades (10), of at least one rectilinear guide slot (12) in which at least two respective pins (14) protruding from the external face (2E) of the plug (2) are engaged, wherein the rack gears of each rack (120) have a rectilinear development parallel to that of a respective at least one guide slot (12) and wherein the locking blades (10) simultaneously displace with rectilinear displacements.
19. The device according to claim 14, wherein said guide means (11) consist, in each of said two locking blades (10), of at least one arc-shaped guide slot (12) in the which at least two respective pegs (14) projecting from the external face (2E) of the plug (2) are engaged, wherein the rack gears of each rack (120) in turn has an arc profile concentric to a respective at least one guide slot (12), and said locking blades (10) simultaneously displace with curvilinear displacements.
20. The device according to claim 14, wherein said control member (130) is defined by a hexagonal head protruding from the toothed pinion (13), having a smaller diameter than the toothed pinion (13).
21. The device according to claim 14, further comprising auxiliary members (110) formed for stabilizing each of the two locking blades (10) when displaced to retract inwards to disengage the outer edges (10B) from the annular groove (31), the auxiliary members (110) consisting of a semicircular loop (111), made in each of the two locking blades (10) for enging in a corresponding fixed abutment (112) protruding from said external face (2E) of the plug (2).
22. Positioner for association with said fitting (3) of claim 20, provided with means for hooking the plug (2) and for placing/removing it in/from said fitting (3), with said positioner acting on the device (1) and comprising an operating member (15) inside and a control stem (16) extended outside the positioner, said operating member (15) comprising a hexagonal bush configured to fit inside said access mouth (30) of the fitting (3), until it abuts a fixed plate (114) of said plug (2), to engage with said hexagonal head (130) integral to the toothed pinion (13), to rotate the toothed pinion in one direction or another opposite direction.
23. The device according to claim 17, further comprising: a rotation locking member (132), protruding from said control member (130); a niche (134), made in a fixed plate (114) located above said toothed pinion (13); elastic members (133), arranged below the toothed pinion (13), with the interposition of an annular disc (135); said rotation locking member (132) for engaging said niche (134) according to a thrust action determined by the elastic members (133); said rotation locking member (132) provided to automatically lock said actuation means (4) when inactive, and also pushable downwards, in keeping with said toothed pinion (13) and control (130), to overcome the thrust action of said elastic members (133) to release and allow maneuvering of the actuation means (4), through the control member (130), to act to simultaneously displace said two blades (10) guided by said guide means (11), said translations being such that the respective outer edges (10B) are simultaneously displaced outwards for engagement in said annular groove (31), thus defining a condition of locking the plug (2) to the connector (3), or retracted inwards to achieve the disengagement of the outer edges (10B) from the annular groove (31) and release said plug (2) from the fitting (3).
24. The device according to claim 23, wherein said rotation locking member (132) consists of a radial pin.
25. The device according to claim 23, wherein said control member (130) is defined by a hexagonal head protruding from the toothed pinion (13), having a smaller diameter than the toothed pinion (13).
26. The device according to claim 23, wherein said guide means (11) consist, in each of said two locking blades (10), of at least one guide slit (12) having an arc-shaped profile in which at least two respective pegs (14) projecting from the external face (2E) of the plug (2) are engaged, wherein the corresponding rack (120) in turn has an arc profile concentric to the respective at least one guide slot (12), and wherein said locking blades (10) simultaneously displace with a curvilinear displacement.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0030] The characteristics of the invention will become evident from the following description of preferred embodiments of a device for locking a plug to a fitting of a pipe of the subject matter, in accordance with what is proposed in the claims and with the aid of the attached tables of drawing, in which:
[0031]
[0032]
[0033]
[0034]
[0035]
DESCRIPTION OF PREFERRED EMBODIMENTS OF THE INVENTION
[0036] In the figures listed above, reference 1 indicates the device object of the present invention, as a whole.
[0037] The device 1 is associated with a plug 2 intended to be affixed to a fitting 3, which is applied for maintenance interventions to a pipe T of the type intended for the transport of fluids or gases under pressure, so that its access mouth 30 is located laterally to the pipe T, with an axis substantially perpendicular to this, as mentioned in the introduction (
[0038] In particular, the plug 2 has an approximately cylindrical shape, with a circular section and a section no greater than that of the aforementioned access mouth 30. The plug 2, according to known technique, is inserted inside the access mouth 30 of the fitting 3, and the device 1 allows it to be locked after its introduction, or frees it from its engagement to allow its removal.
[0039] As described in the introduction, the plug 2 constitutes a closure of the fitting 3 which is temporary in some situations, and at the same time auxiliary to a lid or closing flange (not shown), to be fixed to the fitting 3 when said maintenance interventions on the pipe T are finished.
[0040] To this end, the fitting 3 is provided with a series of threaded holes 32, arranged in a crown around the access mouth 30; a suitable sealing gasket, not shown, is usually interposed between the fitting 3 and said closing cover.
[0041] According to the invention, the device 1 comprises two locking blades 10, having their outer edge 10B shaped like a sector of circumference, arranged symmetrically opposite and slidingly guided by guide means 11 on a plane parallel to the outer face 2E of the aforementioned plug 2 and coplanar with an annular groove 31, made in the internal cylindrical surface of the aforementioned access mouth 30.
[0042] The radius of curvature of the outer edge 10B is substantially equal to that of the bottom of the aforementioned annular groove 31, and extends for an arc with an angular development of at least 45.
[0043] The invention comprises actuation means 4 provided to act simultaneously on said two locking blades 10, determining for the same corresponding and synchronized translations in opposite directions, guided by the respective guide means 11.
[0044] The aforesaid translations are directed so that the arcuate edges 10B of the locking blades 10 are simultaneously displaced outwards to determine their engagement in the annular groove 31 (
[0045] In the aforementioned locking condition of the plug 2, the arcuate edges 10B of the locking blades 10 are advantageously arranged almost concentric with the aforementioned annular groove 31 of the fitting 3, so that the depth with which the arcuate edges 10B engage the annular groove 31 is constant throughout their development and therefore the mechanical grip is at its maximum effectiveness (see again
[0046] To increase the depth of the annular groove 31 and therefore the mechanical grip between it and the locking blades 10, it is possible to provide a modest increase in the diameter of the circumference along which said threaded holes 32 are arranged; this expedient is also advantageous for the purpose of increasing the space between the same holes 32 and the access mouth, so that the relative sealing gasket is increased in those areas and therefore more resistant to pressure coming from the inside.
[0047] Since the threaded holes 32 are provided for fixing to the fitting 3 a closing flange, not shown, which provides corresponding through holes suitable for receiving respective bolts, the movement of the same threaded holes 32 must correspond to an equal outward movement through holes in the flange. Since these can be very close to the external edge of the flange itself, it may be convenient to make in the latter, instead of holes, as many slots open towards the outside, which in any case guarantee excellent locking of the flange.
[0048] In the preferred embodiment illustrated, the guide means 11 consist, in each of said two locking blades 10, of at least one rectilinear guide slot 12, in which at least two respective pins 14 protruding from the outer face 2E of the plug 2 (
[0049] In a variant embodiment not shown, each guide slot 12 has a circular arc profile with a large radius, and carries the aforementioned at least two pegs 14 engaged, in a manner quite similar to the solution with the guide slits 12 straight.
[0050] The guide means 11 advantageously provides auxiliary members 110 suitable for stabilizing the aforementioned retracted position of each of the two locking blades 10, consisting of a semicircular loop 111, made in the latter, intended to engage in a corresponding fixed abutment 112, for example a roller, protruding at the bottom from a disk 113 arranged above the locking blades 10 or associated with the underlying external face 2E of the plug 2.
[0051] The actuation means 4 preferably consist of a toothed pinion 13, rotatably supported by the aforementioned plug 2 in a coaxial position to it, with which two racks 120 provided in the corresponding two locking blades 10 are simultaneously engaged in gear, in diametrically opposite positions.
[0052] The toothed pinion 13 is intended to be rotated in one direction or the other by a control member 130 coaxial and integral with the same toothed pinion 13, to determine, by means of the said racks 120, the aforementioned synchronized translations according to opposite directions of the locking blades 10, and the consequent displacements of their arcuate edges 10B, respectively towards the outside to insert the latter into the annular groove 31, or towards the inside to disengage them from the annular groove 31.
[0053] In accordance with what has just been said, in the presence of said at least one guide slot 12 with rectilinear development, also the corresponding rack 120 has a rectilinear development parallel to that of the guide slot 12, and consequently the aforementioned synchronized translations of the locking blades 10 have straight directions.
[0054] In the aforementioned variant embodiment in which each guide slot 12 has an arc-shaped profile, the corresponding rack 120 also has an arc-shaped profile, concentric to that of the respective guide slot 12, so that the aforementioned synchronized translations of the locking blades 10 have curvilinear directions.
[0055] In the illustrated embodiment, said control member 130 is defined by a hexagonal head protruding above the toothed pinion 13 and having a smaller diameter than the latter.
[0056] According to the invention, the locking device 1 further comprises an anti-rotation device 140 (
[0057] In particular, the anti-rotation device 140 comprises a rotation locking member 132, which in the example illustrated in the aforementioned figures consists of a pin, which protrudes radially from the control member 130. The pin 132 is intended to engage a niche 134 made in a fixed plate 114, located above the aforementioned toothed pinion 13 (
[0058] The rotation locking member 132 is provided to automatically lock the drive means 4 when they are stationary and inactive.
[0059] The control member 130 is designed to be removably engaged by a control member 15 (
[0060] By maintaining the downward thrust, an appropriate rotation is imparted to the toothed pinion 13, to act simultaneously on said two locking blades 10, determining for them the aforementioned corresponding and synchronized translations in opposite directions, guided by said guide means 11.
[0061] With said translations of the two locking blades 10, the respective arcuate edges 10B are simultaneously displaced towards the outside to determine their engagement in said annular groove 31, thus defining a locking condition of the aforementioned plug 2 to the fitting 3, or retracted inwardly to disengage the same arcuate edges 10B from the same annular groove 31 and release said plug 2 from fitting 3.
[0062] At the end of the rotation maneuver of the toothed pinion 13, and with the cessation of the downward thrust, the action of the elastic members 133 makes the same toothed pinion 13 rise together with the control member 130 bringing the radial pin 132 back to engage the niche 134 again, blocking the actuation means 4.
[0063] The control member 130 is designed to be removably engaged by a maneuvering member 15 (
[0064] According to a known technique, the aforementioned control member 15, mentioned above, is comprised in a so-called positioner (not shown) to be mounted on the fitting 3 during the assembly and disassembly operations of a flat valve, known to the experts in the field and also not illustrated.
[0065] The positioner also comprises means (for example a threaded central bar) to hook the center of the aforementioned plug 2 and to place/remove the same in/from said fitting 3, acting from the outside.
[0066] The operating member 15, which, following the assembly of the positioner, is located inside the access mouth 30 of the fitting 3, is constituted, in accordance with the conformation of the control member 130 with a hexagonal head, of a socket wrench with hexagon socket (not shown in detail as it is intuitive to understand), integral with the end of a control rod 16, partially visible in
[0067] The control stem 16 is suitably drilled in the center to allow the passage of said threaded bar (not shown) to be coupled with a central hole 131 in the hexagonal head 130.
[0068] Above said disk 113 is advantageously provided a fixed plate 114 suitably shaped (
[0069] The plug 2, according to the known technique, is equipped with suitable ring seals 40, suitable for adhering to the access mouth 30, visible in
[0070] From what has been described above, the peculiar characteristics of the proposed locking device, intended for the plugs to be positioned and locked inside the access mouth of the fitting, are evident, using for this purpose an annular groove provided in the latter to make the coupling mechanical between plug and fitting.
[0071] The device is advantageously shaped in such a way as to optimize the mechanical resistance of the locking, thus overcoming the limits of the solutions of the known technique.
[0072] From the attached figures it can be seen that the constructive solution that characterizes the device in question, in all the constructive variants proposed, is of simple design, compact and can be operated quickly.
[0073] A further advantageous aspect of the invention resides in the ease and speed of maneuvering of the device, which consists in a rotation of limited excursion both of the toothed pinion and, consequently, of the tool to be used, which, moreover, is advantageously located at the center of said known positioning unit.
[0074] It should be noted that the force required to rotate the toothed pinion is limited, making the movement of the locking blades easier than with other operating mechanisms.
[0075] However, it is understood that what has been described above has an exemplary and non-limiting value, therefore any detailed variations that may be necessary for technical and/or functional reasons, are considered from now on to fall within the same protective scope defined by the following claims.