SLIDE RING SEAL ASSEMBLY SECURED AGAINST DISENGAGEMENT
20230400101 · 2023-12-14
Assignee
Inventors
Cpc classification
F16J15/3464
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
The invention relates to a mechanical seal arrangement comprising a mechanical seal (2) having a rotating sliding ring (3) and a stationary sliding ring (4) defining a sealing gap (5) between the sealing surfaces (30, 40) thereof, a slide ring carrier (6) for holding the stationary sliding ring (4), an axially movable thrust ring (7) arranged on a rear side (43) of the stationary sliding ring (4) between the slide ring carrier (6) and the stationary sliding ring, a pretensioning device (8) arranged between the thrust ring (7) and the slide ring carrier (6) to pretension the stationary sliding ring (4) in the axial direction X-X of the mechanical seal arrangement, and an anti-rotation device (10) to keep the stationary sliding ring (4) rotationally fixed and axially movable, the anti-rotation device (10) having a first transmission device (11) for transmitting force between the sliding ring carrier (6) and the thrust ring (7) and a second transmission device (12) for transmitting force between the thrust ring (7) and the stationary sliding ring (4), and wherein a locking element (13) is arranged on the first transmission device (11) to secure the thrust ring (7) against axial disengagement.
Claims
1. A mechanical seal arrangement comprising: a mechanical seal having a rotating sliding ring and a stationary sliding ring defining a sealing gap between their sealing surfaces, a slide ring carrier for holding the stationary sliding ring, an axially movable thrust ring, which is arranged on a rear side of the stationary sliding ring between the slide ring carrier and the stationary sliding ring a pretensioning device arranged between the thrust ring and the slide ring carrier for pretensioning the stationary slide ring in the axial direction of the mechanical seal arrangement, and an anti-rotation device for keeping the stationary sliding ring in a rotationally fixed and axially movable state, the anti-rotation device having a first transmission device for transmitting force between the slide ring carrier and the thrust ring and a second transmission device for transmitting force between the thrust ring and the stationary sliding ring, and wherein a locking element is arranged on the first transmission device to secure the thrust ring against axial disengagement.
2. The mechanical seal arrangement according to claim 1, wherein the first transmission device includes at least one pin, in particular a cylindrical pin.
3. The mechanical seal arrangement according to claim 2, wherein the locking element is a locking washer.
4. The mechanical seal arrangement according to claim 1, wherein the second transmission device includes at least one pin, in particular a cylindrical pin.
5. The mechanical seal arrangement according to claim 1, wherein the slide ring carrier comprises includes a base region and a first axial extension region, wherein the first axial extension region radially extends outside the stationary sliding ring.
6. The mechanical seal arrangement according to claim 5, wherein the slide ring carrier has a substantially C-shaped cross-section with the base region, the axially outer extension region and an axially inner extension region.
7. The mechanical seal arrangement according to claim 1, wherein the stationary sliding ring comprises includes a first recess for receiving the first transmission device.
8. The mechanical seal arrangement according to claim 1, wherein the thrust ring comprises includes a through hole, wherein the first transmission device is passed through the through hole.
9. The mechanical seal arrangement according to claim 1, wherein a first secondary seal and a second secondary seal is arranged on the thrust ring on the side facing the rear side of the stationary sliding ring.
10. The mechanical seal arrangement according to claim 1, wherein the rotating sliding ring is connected to a sleeve which is configured to be fixable to a rotatable component.
Description
[0017]
[0018]
[0019]
[0020] Hereinafter, a mechanical seal arrangement 1 according to a preferred example embodiment of the invention will be described in detail while reference will be made to
[0021] The mechanical seal arrangement 1 seals a product region 15 from an atmosphere region 16 on a shaft 14 and a housing 19.
[0022] As may be seen from
[0023] The mechanical seal arrangement 1 further comprises a slide ring carrier 6, which has substantially a C-profile in cross-section. The slide ring carrier 6 is attached to the housing 19. In this regard, the slide ring carrier 6 comprises a base portion 60 extending in the radial direction, and a first outer extension portion 61 extending in the axial direction and a second inner extension portion 62 extending in the axial direction. The outer and inner extension portions 61, 62 are parallel to each other and have an equal length in the axial direction. The stationary sliding ring 4 is partially accommodated between the two extension regions 61, 62, as may be seen from
[0024] As may further be seen from the figures, the mechanical seal arrangement 1 comprises an axially movable thrust ring 7. The thrust ring 7 is arranged at a rear side 43 of the stationary slide ring 4 between the slide ring carrier 6 and the stationary slide ring 4. Thereby, the thrust ring 7 is arranged between the two extension regions 61, 62 of the slide ring carrier 6.
[0025] Furthermore, a pretensioning device 8 is provided, which is arranged between the thrust ring 7 and the slide ring carrier 6 and is configured to pretension the stationary sliding ring 4 in the axial direction X-X. The pretensioning device 8 comprises a plurality of separate spring elements, for example cylinder springs, arranged along the circumference.
[0026] Furthermore, the mechanical seal arrangement 1 comprises an anti-rotation device 10 for keeping the thrust ring 7 and the stationary sliding ring 4 rotationally in a fixed and axially movable state. The anti-rotation device 10 comprises a first transmission device 11 for transmitting force between the slide ring carrier 6 and the thrust ring 7, and a second transmission device 12 for transmitting force between the thrust ring 7 and the stationary sliding ring 4. In this example embodiment, the first transmission device 11 and the second transmission device 12 are each formed by a plurality of cylindrical pins.
[0027]
[0028] The second transmission device 12 may be seen in detail in
[0029] As may in particular be seen from
[0030] The thrust ring 7 can be shifted in the axial direction X-X by a maximum length L until a bottom 71a of the second recess 71 rests against the locking element 13.
[0031] In this way, an anti-disengagement device may be realized which prevents the thrust ring 7 and the stationary sliding ring 4 from being outwardly ejected towards the assembly technician during disassembly of the mechanical seal arrangement 1, wherein disassembly is performed from the right side in
[0032] Furthermore, as may be seen from
[0033] The anti-disengagement device 10 also prevents the two secondary seals 17, 18 from being forced out of the slide ring carrier 6. This also allows easy disassembly and, more importantly, proper reassembly of the two secondary seals 17, 18 when revising the mechanical seal arrangement. After replacement of the secondary seals 17, 18, these are held in place by the anti-disengagement device and, by inserting the stationary sliding ring 4, are then moved back together with the thrust ring 7 to the starting position shown in
[0034] Thus, the anti-disengagement device 10 of the mechanical seal arrangement 1 can provide a disengagement device for the mechanical seal arrangement, which is simple in design and which can be produced at low cost. In particular, when assembling or disassembling is performed under severe conditions, for example off-shore or in hot or cold regions, safe and risk-free disassembling and assembling can be performed without ejecting components of the mechanical seal arrangement 1 towards an assembly technician by the action of the pretensioning device 8. Furthermore, the anti-rotation device 10 can ensure that in the event of inspection and replacement of the secondary seals 17, 18, these are not immediately damaged during assembly. No additional assembly aids are required for assembling and disassembling the mechanical seal arrangement. The mechanical seal arrangement 1 can be provided as an assembly and thus as a completely replaceable insert.
Lit of Reference Numbers
[0035] 1 Mechanical seal arrangement [0036] 2 Mechanical seal [0037] 3 Rotating sliding ring [0038] 4 Stationary sliding ring [0039] 5 Sealing gap [0040] 6 Slide ring carrier [0041] 7 Thrust ring [0042] 8 Pretensioning device [0043] 9 Sleeve [0044] 10 Anti-rotation device [0045] 11 First transmission device [0046] 12 Second transmission device [0047] 13 Locking element [0048] 14 Shaft [0049] 15 Product region [0050] 16 Atmosphere region [0051] 17 First secondary seal [0052] 18 Second secondary seal [0053] 19 Housing [0054] 30 Sliding surface [0055] 40 Sliding surface [0056] 41 First recess [0057] 42 Third recess [0058] 43 Back side [0059] 44 Clearance [0060] 51 First press-fit connection [0061] 52 Second press-fit connection [0062] 60 Base region [0063] 61 First axial outer extension region [0064] 62 Second axial inner extension region [0065] 70 Through opening [0066] 71 Second recess [0067] 71a Base [0068] L Displacement length of thrust ring [0069] X-X Axial direction