Device for removing a valve and cage assembly from a machine

09808922 · 2017-11-07

Assignee

Inventors

Cpc classification

International classification

Abstract

The device comprises an anchoring plate configured for anchoring the device to a machine casing. The device further comprises a terminal plate connected to the anchoring plate at a distance there from, and a slide arranged for movement between the anchoring plate and the terminal plate. The device further includes a connecting arrangement configured for connecting the slide to a valve and cage assembly to be removed from the machine.

Claims

1. A device for removing a valve and cage assembly from a valve housing of a machine casing, the device comprising: an anchoring plate configured for anchoring the device to the machine casing; a terminal plate connected to the anchoring plate at a distance there from; a slide arranged for movement between the anchoring plate and the terminal plate; and a connecting arrangement configured for connecting the slide to a valve and cage assembly to be removed from the valve housing: and a cage blocking member removably engageable to a tie-rod in a position between a first end and a second end, and extending transversely to the tie-rod when mounted thereon, wherein the cage blocking member is provided with threaded holes for auxiliary screws, connecting the cage blocking member to the slide.

2. The device according to claim 1, further comprising a guide extending between the anchoring plate and the terminal plate, the slide being slidingly movable along the guide.

3. The device according to claim 2, wherein the guide comprises a plurality of guiding bars having first ends constrained to the anchoring plate and second ends constrained to the terminal plate, and wherein the slide comprises bushes arranged for sliding movement along the guiding bars.

4. The device according to claim 1, further comprising a slide mover for moving the slide along a guide between the anchoring plate and the terminal plate.

5. The device according to claim 4, wherein the slide mover comprises a threaded bar rotatably supported by the terminal plate and the anchoring plate, and meshing with a nut constrained to the slide.

6. The device according to claim 1, wherein the connecting arrangement comprises the tie-rod with the first end, configured for connection to a valve to be removed, and with the second end, configured for connection to the slide.

7. The device according to claim 1, wherein the slide is provided with an aperture extending through the slide, arranged for receiving and locking the tie-rod to the slide by means of a locking member.

8. The device according to claim 6, wherein the tie-rod has at least a threaded portion extending to the second end.

9. The device according to claim 1, wherein the anchoring plate comprises a plurality of through holes for connection to stud bolts on the machine casing.

10. The device according to claim 1, wherein the anchoring plate comprises a plurality of sets of through holes for alternative connection to different sets of stud bolts.

11. The device according to claim 1, wherein the slide comprises apertures for receiving stud bolts when the slide is moved adjacent the machine casing.

12. The device according to claim 1, further comprising an anti-slip plug configured for insertion into an aperture of a cage, preventing accidental slipping of the valve and cage under the effect of gravity.

13. The device according to claim 1, wherein the anchoring plate has an approximately semi-circular shape.

14. The device according to claim 1, wherein the terminal plate has an approximately semi-circular shape.

15. The device according to claim 1, further comprising at least one eyebolt.

16. The device according to claim 15, wherein the at least one eyebolt is engaged to the slide.

17. The device according to claim 15, comprising two eyebolts engaged to the slide.

18. The device according to claim 1, further comprising a support member arranged and configured to support the valve and cage assembly once the valve and cage assembly is removed from the valve housing.

19. The device according to claim 18, wherein the support member is arranged on the anchoring plate.

20. A system comprising: a reciprocating compressor with at least one valve and cage assembly; and a device for removing a valve and cage assembly from a valve housing of a machine casing, the device comprising: an anchoring plate configured for anchoring the device to the machine casing; a terminal plate connected to the anchoring plate at a distance there from; a slide arranged for movement between the anchoring plate and the terminal plate; a connecting arrangement configured for connecting the slide to a valve and cage assembly to be removed from the valve housing; and a cage blocking member removably engageable to a tie-rod in a position between a first end and a second end, and extending transversely to the tie-rod when mounted thereon, wherein the cage blocking member is provided with threaded holes for auxiliary screws, connecting the cage blocking member to the slide.

Description

BRIEF DESCRIPTION OF THE DRAWINGS

(1) A more complete appreciation of the disclosed embodiments of the invention and many of the attendant advantages thereof will be readily obtained as the same becomes better understood by reference to the following detailed description when considered in connection with the accompanying drawings, wherein

(2) FIG. 1 illustrates a sectional view of a reciprocating compressor with automatic ring valves on the suction side and discharge side;

(3) FIG. 2 illustrates a sectional view of a discharge valve and cage assembly of the compressor of FIG. 1, in a section along line II-II of FIG. 1;

(4) FIG. 3 illustrates a perspective and partially exploded view of a valve and cage removal device according to the present disclosure;

(5) FIG. 4 illustrates a side and partially sectional view of the device of FIG. 3 in the starting position, at the beginning of a valve and cage removal process;

(6) FIG. 5 illustrates a detail of the device of FIG. 4, with the anti-slip plug rotated in the locked position;

(7) FIG. 6 illustrates similarly to FIG. 4 the device in the position reached after complete extraction of the valve and cage assembly from the valve housing provided in the casing of the reciprocating machine; and

(8) FIGS. 7A-7P illustrates a sequence of operations for removing a valve and cage assembly from the relevant housing.

DETAILED DESCRIPTION OF EMBODIMENTS OF THE INVENTION

(9) The following detailed description of the exemplary embodiments refers to the accompanying drawings. The same reference numbers in different drawings identify the same or similar elements. Additionally, the drawings are not necessarily drawn to scale. Also, the following detailed description does not limit the invention. Instead, the scope of the invention is defined by the appended claims.

(10) Reference throughout the specification to “one embodiment” or “an embodiment” or “some embodiments” means that the particular feature, structure or characteristic described in connection with an embodiment is included in at least one embodiment of the subject matter disclosed. Thus, the appearance of the phrase “in one embodiment” or “in an embodiment” or “in some embodiments” in various places throughout the specification is not necessarily referring to the same embodiment(s). Further, the particular features, structures or characteristics may be combined in any suitable manner in one or more embodiments.

(11) In the drawings, a device for removing a valve and cage assembly from the valve housing of a reciprocating compressor is designate 100 as a whole. In the embodiment disclosed in the attached drawings, the device 100 comprises an anchoring plate 101, designed to be attached to the casing of the reciprocating compressor, around a housing of a valve and cage assembly to be removed. The anchoring plate 101 is connected to a terminal plate 103 arranged at a distance D therefrom by means of a distancing element. The anchoring plate 101 is shaped so that it will not obstruct the removal of the valve and cage assembly from the valve housing, once the device is attached to the compressor casing. The anchoring plate has an approximately semi-circular shape. The terminal plate 103 is approximately semi-circular in shape.

(12) The structure of the valve and cage removing device will first be described, reference being made to FIGS. 3 to 6. In these figures the valve and cage assembly, again labeled 27, 41 and the valve housing, labeled 39, are shown in dashed lines. The sequence of FIGS. 7A-7P illustrates the operations carried out with the device of FIGS. 3 to 6, to remove a valve and cage assembly from the relevant housing in the casing of a reciprocating compressor. It shall be understood that the same device can be used to remove similar machine components from other pieces of machinery.

(13) Referring now to FIGS. 3 to 6, in the illustrated embodiment the anchoring plate 101 and the terminal plate 103 are connected to one another by a plurality of rods 105. In the example shown in the drawings four rods 105 are provided. A different number of rods could be envisaged.

(14) Each road 105 comprises a first end 105A constrained to the anchoring plate 101 and a second end 105B constrained to the terminal plate 103. The rods 105 can have for example a circular cross-section. A slide 107 is movably arranged between the anchoring plate 101 and the terminal plate 103. The rods 105 form a guide for said slide 107. The slide 107 comprises bearings or bushings 109 slidingly engaging the rods 105.

(15) A slide mover is provided, for controlling the movement according to double arrow f107 of the slide 107 between the anchoring plate 101 and the terminal plate 103. In the exemplary embodiment disclosed in the drawings, the slide mover comprises a threaded bar 111 which is rotatably supported by a first bearing 113 constrained to the terminal plate 103 and a second bearing 115 constrained to the anchoring plate 101. The end of the threaded bar 111 projecting beyond the bearing 113 is torsionally connected to a crank 117. The threaded bar 111 meshes with a nut 119 constrained to the slide 107. Rotation of the crank 117 in one direction or other causes the slide 107 to move according to double arrow f107 between the anchoring plate 101 and the terminal plate 103.

(16) The anchoring plate 101 is provided with a plurality of through holes 121, 123. As will become clearer from the following description of the manner of using the device 100, the holes 121 and/or the holes 123 are used to lock the anchoring plate 101 and the entire device 100 to the casing of the compressor by means of the stud bolts which are provided on the casing for mounting the cover of the respective valve housing from which the valve and cage assembly must be removed by means of the device 100.

(17) Since the same machine or different machines of the same compressor train can comprise valve housings of different dimensions and/or having different stud bolts arrangements, in some embodiments, as illustrated by way of example in the drawings, the anchoring plate 101 comprises at least two sets of through holes 121 and 123, respectively, which are alternatively used to connect the anchoring plate 101 to either one or the other of different valve housings having differently arranged stud bolts. This allows the same device 100 to be used for removing all valve and cage assemblies of a machine or even of different machines of the same installation. In other, less advantageous embodiments, only one set of through holes 121 or 123 can be provided on the anchoring plate 101.

(18) The device 100 further comprises eyebolts 127 screwed to the slide 107, used for handling the device 100 as will explained later on.

(19) The device 100 further comprises a connecting arrangement for connecting the slide 107 to the valve and cage assembly to be removed from the relevant valve housing. The connecting arrangement is labeled 130. In some embodiments the connecting arrangement 130 comprises a tie rod 131 having a first tie-rod end 131A and a second tie-rod end 131B. The first tie-rod end 131A has an inner threaded hole designed for connection to the central screw 35 of an automatic ring valve, again labeled 27, which may be removed from the relevant valve housing. The opposite second tie-rod end 131B has an outer threading, which extends along a portion of the axial extension of the tie-rod 131, for the purposes which will become clearer later on.

(20) The connecting arrangement 130 further comprises a cage blocking member 133. The cage blocking member 133 is approximately U-shaped or C-shaped and has a central through hole through which the tie-rod 131 can extend. A nut 135 is used to retain the cage blocking member 133 on the tie-rod 131. A further nut 137 is provided for locking the tie-rod 131 to the slide 107 when the device 100 is used for removing a valve and cage assembly from the relevant housing, as will be described in greater detail here below in connection with FIGS. 7A-7P.

(21) The slide 107 has a seat 107A which can be laterally open and into which the terminal portion of the tie-rod 131 can be introduced, projecting beyond the slide 107 towards the anchoring plate 103, so that the nut 137 can be screwed on the second end 131B of the tie-rod 131.

(22) In the embodiment illustrated in the drawings the device 100 further comprises an anti-slip plug 141 designed for insertion into one of the apertures of the cage to be removed, for temporarily retaining the cage in place, after removal of the cover and before the device 100 is properly connected to the compressor casing. The anti-slip plug prevents the valve and cage assembly from accidentally slipping out of the housing under the effect of gravity.

(23) Having described the main components of the device 100, the manner of using it for removing a valve and cage assembly from the relevant housing in the casing of a reciprocating compressor will now be described in detail, reference being made to the sequence of FIGS. 7A-7P. The valve and cage assembly and the valve housing are substantially the same as described here above in connection with FIGS. 1 and 2 and the same reference numbers are used to designate identical or corresponding parts and components.

(24) In FIG. 7A a valve housing 39 provided in a casing 3 of a reciprocating compressor is shown, after removal of the cover. The stud bolts used to lock the cover on the casing 3 of the compressor are labeled 45. In the embodiment shown in FIG. 7A, six stud bolts 45 are provided.

(25) Similarly to what has been described above in connection with FIG. 2, an automatic ring valve 27 is housed in the housing 39, along with the relevant cage 41. The cage 41 is provided with apertures 42 for fluid communication between the delivery duct 25 and the interior of the cage 41.

(26) In FIG. 7A a retaining ring 47 is also shown, which retains the cage 41 and the valve 27 in the housing 39.

(27) In one mode of use, the anti-slip plug 141 is introduced into one of the apertures 42. The anti-slip plug 141 can be provided with elastic projections 141A, extending radially from the anti-slip plug 141 in two diametrically opposed positions. The elastic projections 141A are used to lock the anti-slip plug 141 in the aperture 42 of the cage 41 after insertion, by rotating the anti-slip plug 141 around 90°, compare FIGS. 4 and 5. In FIG. 7B the anti-slip plug 141 is shown in the inserted position, before rotation around 90° according to arrow f141, to achieve the final locked position.

(28) The anti-slip plug 141 is now safely engaged in the aperture 42 of the cage 41 and prevents the valve and cage assembly 27, 41 from slipping out of the housing 39 after removal of the retaining ring 47. The operator can thus perform the subsequent steps of the valve and cage assembly removal under safety conditions.

(29) The next step provides for the removal of the retention ring 47 (see FIG. 7C). The cage 41 is prevented from slipping out of the housing 39 by the interference between the anti-slip plug 141, which projects beyond the outer surface of the cage 41, and the discharge duct 25 provided in the compressor casing 3.

(30) The next step consists in attaching the tie-rod 131 to the screw 35 of the valve 27 arranged inside the valve housing 39. This is obtained by screwing the first end 131A of the tie-rod 131 on the screw 35.

(31) Afterwards (see FIG. 7D), the cage blocking member 133 is mounted on the tie-rod 131 and locked thereon as shown in FIG. 7E by screwing the nut 135. The cage blocking member 133 can be provided with two lateral indentation 133A co-acting with the circular edge 41E of the cage 41 facing outwardly with respect to the housing 39. Thus, the cage blocking member 133 is now locked between the nut 135 and the circular edge 41E of the cage 41 and the valve 27 is constrained to the cage 41 by means of the tie-rod 131.

(32) The next step is shown in FIG. 7F. The unit formed by the anchoring plate 101, the terminal plate 103, the slide 107, the rods 105 and the other members connected thereto is brought towards the housing from which the valve and cage assembly 27, 41 must be removed. A strap S can be used for easily handling the device 100. The strap S can be passed through the eyebolts 127 provided on the slide 107.

(33) As can be seen in the subsequent FIG. 7G, the device 100 is moved against the compressor casing 3 so that the stud bolts 45 are introduced through the holes 121 or 123 of the anchoring plate 101, so as to project therefrom. The anchoring plate 101 is then attached to the compressor casing 3 by screwing the nuts 46 on the stud bolts 45.

(34) During transportation of the device 100 towards the compressor casing 3 the slide 107 is positioned in an intermediate position between the anchoring plate 101 and the terminal plate 103, so that the device 100 is balanced and can easily be suspended on strap S for approaching the compressor casing 3.

(35) As noted above, the anchoring plate 101 is semi-circular in shape and the inner radius thereof is slightly larger than the radius of the valve housing 39. Once the anchoring plate 101 is constrained to the compressor casing 3, the cage blocking member 133 projects through the anchoring plate 101 and the tie rod 141 projects beyond the cage blocking member 133 towards the terminal plate 103 of the device 100.

(36) The slide 107 can now be moved along the guide bars 105, by rotating the crank 117, towards the anchoring plate 101 as shown in FIGS. 7H and 7I. In the final position of FIG. 7I, the slide 107 is positioned at such a distance from the anchoring plate 101 that the second end 131B of the tie-rod 131 projects beyond the slide 107 through the aperture 107A and the nut 137 can be screwed on the end 131B of the tie-rod 131, as shown in FIG. 7J. In this manner the tie-rod 131, the cage blocking member 133, the cage 41 and the valve 27 are connected to the slide 107.

(37) The slide 107 is provided with through holes 107B arranged in the same position as the through holes 121, 123 of the anchoring plate 101, so that the stud bolts 45 can extend through the slide 107 when the latter is positioned adjacent the compressor casing 3.

(38) Since the slide 107 is in turn connected, through the bars 105 and the anchoring plate 101 to the compressor casing 3, the anti-slip plug 141 can now be removed without any risk of the valve and cage assembly slipping out accidentally from the housing 39. This step is illustrated in FIG. 7K.

(39) Subsequently the crank 117 is rotated to move the slide 107 away from the compressor casing 3 as shown in FIG. 7L. The valve and cage assembly 27, 41 is thus drawn out of the housing 39 by the traction applied by the slide 107 through the rotation of the threaded bar 111. If needed, a more stable connection between the slide 107 and the cage blocking member 133 can be obtained by means of auxiliary screws introduced in through holes 107C provided in the slide 107 and screwed into threaded holes 133H provided in the cage blocking member 133. The auxiliary screws, indicated with the reference number 151, are schematically shown in FIG. 7M.

(40) The device 100 can be provided with a pair of supporting members 143 constrained to the anchoring plate 101, as shown in particular in FIGS. 1 and 7N. The supporting members 143 can be comprised of spherical tips on which the cage 41 can rest during the extraction movement, so that the weight of the valve and cage assembly 27, 41 will not be entirely supported by the tie rod 131.

(41) FIGS. 7O and 7P show the final stages of the removal of the valve and cage assembly 27, 41. Once the valve and cage assembly is entirely extracted from the housing 39 (FIG. 7O), the strap S can be used to engage the cage 41 by passing said strap S through apertures 42 of the cage 41 and the nut 137 can be removed so that the valve and cage assembly 27, 41 can be removed from the device 100 along with the tie-rod 131 and the cage blocking member 133 (FIG. 7P).

(42) While the disclosed embodiments of the subject matter described herein have been shown in the drawings and fully described above with particularity and detail in connection with several exemplary embodiments, it will be apparent to those of ordinary skill in the art that many modifications, changes, and omissions are possible without materially departing from the novel teachings, the principles and concepts set forth herein, and advantages of the subject matter recited in the appended claims. Hence, the proper scope of the disclosed innovations should be determined only by the broadest interpretation of the appended claims so as to encompass all such modifications, changes, and omissions. In addition, the order or sequence of any process or method steps may be varied or re-sequenced according to alternative embodiments.