Mechanical Seal for Liquid with an Axially Floating Tray Sleeve Inside
20190383396 ยท 2019-12-19
Inventors
Cpc classification
F16J15/3492
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A mechanical seal for liquid with an axially floating tray sleeve inside, comprising a movable ring, a static ring, a locking ring and a tray sleeve, wherein the static ring is connected to a cover and a shell to be stationary, the movable ring is fixed with a shaft or a shaft sleeve through the locking ring and rotates, and the contact end faces of the movable ring and the static ring form a sealing face which is vertical to and slides against the shaft; the tray sleeve is between a sealing ring and the shaft or shaft sleeve in the direction vertical to the shaft; the tray sleeve is connected to the movable ring or the static ring near an inner end of the liquid in the axial direction; the tray sleeve extends out of the cover in the axial direction near the air end.
Claims
1. A mechanical seal for liquid with an axially floating tray sleeve inside, comprising a static ring (2), a movable ring (1), a locking ring (9) and a tray sleeve (3), wherein the static ring (2) is connected to a cover (12) and a shell (13) to be stationary, the movable ring (1) is fixed with a shaft or a shaft sleeve (7) through the locking ring (9) and rotates, and the contact end faces of the movable ring (1) and the static ring (2) form a sealing face which is vertical to and slides against the shaft; the tray sleeve (3) is between a sealing ring and the shaft or shaft sleeve in the direction vertical to the shaft, and parallel to the axis along the axial direction; the tray sleeve (3) is connected to the movable ring (1) or the static ring (2) near an inner end of the liquid in the axial direction; the tray sleeve (3) extends out of the cover (12) in the axial direction near the air end.
2. The mechanical seal for liquid with an axially floating tray sleeve inside according to claim 1, wherein a portion of the tray sleeve (3) except the portion extending out of the cover (12) in the axial direction near the air end is provided with a warning sign, scale or color band or projection.
3. The mechanical seal for liquid with an axially floating tray sleeve inside according to claim 1, wherein axial and radial displacements of the tray sleeve (3) in the mechanical seal are fixed by a rigid connection between the end of the tray sleeve (3) near the liquid inner side in the axial direction and the movable ring (1) or the static ring (2), and the rigid connection is inlaid, or bonded or a boss connection provided between the sealing ring and a spring (6).
4. The mechanical seal for liquid with an axially floating tray sleeve inside according to claim 1, wherein the movable ring (1) and the static ring (2) are integral or separate, or one ring is integral and the other ring is separate.
5. The mechanical seal for liquid with an axially floating tray sleeve inside according to claim 1, wherein the mechanical seal for liquid with an axially floating tray sleeve inside comprises a cover, a shaft sleeve, a shaft sleeve locking ring and a detachable positioning block (11) between the shaft sleeve and the cover, thereby forming a cartridge mechanical seal.
6. The mechanical seal for liquid with an axially floating tray sleeve inside according to claim 1, wherein the spring (6) is any one of a large cylindrical spring, a small coil spring, a wave plate spring, a bellows spring or a disc spring.
7. The mechanical seal for liquid with an axially tray sleeve inside according to claim 1, wherein the tray sleeve (3) is made from hard materials.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
DESCRIPTION OF NUMBERS IN THE FIGURE
[0027] 1movable ring, 2static ring, 3tray sleeve, 4anti-rotation pin, 5baffle ring, 6spring, 7sleeve, 8sign band, 9locking ring, 10shaft, 11positioning block, 12cover, 13shell, 14guide rod, 15rotating seat, 16fastening bolt.
DETAILED DESCRIPTION
[0028] The invention will be further described below in conjunction with the attached drawings. The following embodiments are only intended to illustrate the technical solution of the invention more clearly, and are not intended to limit the scope of the present invention.
Embodiment I
[0029] As shown in
[0030] Specifically, as shown in
[0031] The movable ring 1 is an integral or separate structure; The static ring 2 is an integral or separate structure. The integral structure means that the movable ring 1 or the static ring 2 is integral and inseparable; The separate structure means that the movable ring 1 or the static ring 2 is a combination of two separate semi-rings.
[0032] The bottom of the tray of the floating tray sleeve 3 of the embodiment is inlaid with the static ring 2, and the anti-rotation pin 4 is arranged in the reverse direction; one end of the spring 6 is connected to the cover 12, and the other end presses the tray of the tray sleeve 3, to prevent the anti-rotation pin 4 from extending through the spring 6 into the inside of the cover 12. The tray sleeve 3 is made from hard metal, plastic, silicon carbide, composite material or any combination of the above materials.
[0033] When the exposed part of the tray sleeve enters the sealing body due to the wear of the sealing ring during operation, the axial width of the warning sign band is partly exposed or unexposed, which warns the actual operating condition of the sealing, effectively monitoring the safety performance of the sealing and giving early warning of the sealing failure.
Embodiment II
[0034] As shown in
[0035] Specifically, as shown in
[0036] the tray sleeve 3 extends out of the mechanical seal cap 12 near the air end in the axial direction, and the circumference of the exposed portion of the tray sleeve 3 is observed to be provided with a raised warning sign band 8, and the bandwidth corresponds to the effective wear amount between the movable ring 1 and the static ring 2.
[0037] When the exposed portion of the tray sleeve 3 enters the sealing body due to the wear of the sealing ring during the operation, the axial width of the warning sign band is partly exposed or unexposed, which warns the actual operating condition of the sealing, effectively monitoring the safety performance of the sealing and giving early warning of the sealing failure.
[0038] Embodiment II is a cartridge structure. In this structure, the components of the mechanical seal are assembled in advance. During use, they are installed integrally, the rotating sealing components are connected and fixed with the rotating shaft, and the static sealing components are connected and fixed with the shell. The cartridge mechanical seal has high assembly precision and is easy to install. The effect of monitoring safety performance of seal and giving early warning of seal is superior to that in Embodiment I.
Embodiment III
[0039] As shown in
[0040] The inner side end of the floating tray sleeve 3 of the embodiment is provided with a boss, which connects the floating tray sleeve 3 with the movable ring 1 and the spring 6. The spring 6 presses the boss against the movable ring 1, the boss is provided with a rotation preventing pin 4 toward the movable ring 1. The anti-rotation pin 4 extends into the movable ring 1 so that the movable ring 1 and the tray sleeve 3 do not rotate relative to each other. A guide rod 14 is arranged in the opposite direction. The guide rod 14 passes through the spring 6 and extends into the movable ring seat 15. The front end of the spring 6 is provided with a baffle ring 5 for balancing elastic force or preventing falling off, and the floating tray 3 is made from hard metal, plastic, silicon carbide, composite material or any combination of the above materials.
[0041] When the portion of the tray sleeve 3 close to the air in axial direction extends out of the sealing body due to the wear of the sealing ring during operation, the axial width of the warning sign band is partly exposed or all exposed, which warns the actual operating condition of the sealing, effectively monitoring the safety performance of the sealing and giving early warning of the sealing failure.
Embodiment IV
[0042] As shown in
[0043] The inner side end of the tray sleeve 3 is provided with a boss, which connects the floating tray sleeve 3 with the movable ring 1 and the spring 6. The spring 6 presses the boss against the movable ring 1, the boss is provided with a rotation preventing pin 4 toward the movable ring 1. The anti-rotation pin 4 extends into the movable ring 1 so that the movable ring 1 and the tray sleeve 3 do not rotate relative to each other. A guide rod 14 is arranged in the opposite direction. The guide rod 14 passes through the spring 6 and extends into the movable ring seat 15. The front end of the spring 6 is provided with a baffle ring 5 for balancing elastic force or preventing falling off, and the floating tray 3 is made from hard metal, plastic, silicon carbide, composite material or any combination of the above materials.
[0044] When the portion of the tray sleeve close to the air end in axial direction extends out of the sealing body due to the wear of the sealing ring during operation, the axial width of the warning sign band is partly exposed or all exposed, which warns the actual operating condition of the sealing, effectively monitoring the safety performance of the sealing and giving early warning of the sealing failure.
[0045] Embodiments III and IV are movable ring compensating structures in which the tray sleeve is connected to the movable ring for rotation. When the portion of the tray sleeve close to the air in axial direction extends out of the sealing body due to the wear of the sealing ring during operation, the axial width of the warning mark band is partly exposed or all exposed, which warns the actual operating condition of the sealing, effectively monitoring the safety performance of the sealing and giving early warning of the sealing failure.
[0046] The embodiments described above are only preferred embodiments of the invention, and it should be noted that those skilled in the art can also make several modifications and variations without departing from the technical principles of the present invention, and such modifications and variations are also considered to be within the scope of the present invention.