CN117960655A - Sampling valve circulation sterilizing equipment - Google Patents

Sampling valve circulation sterilizing equipment Download PDF

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Publication number
CN117960655A
CN117960655A CN202410393643.0A CN202410393643A CN117960655A CN 117960655 A CN117960655 A CN 117960655A CN 202410393643 A CN202410393643 A CN 202410393643A CN 117960655 A CN117960655 A CN 117960655A
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China
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gear
fixedly connected
block
switch
chute
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Granted
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CN202410393643.0A
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Chinese (zh)
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CN117960655B (en
Inventor
白俊峰
田立卓
田凤涛
李日宏
赵海燕
马慧彬
段瑞青
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Yanjing Beer Hohhot Co ltd
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Yanjing Beer Hohhot Co ltd
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Priority to CN202410393643.0A priority Critical patent/CN117960655B/en
Priority claimed from CN202410393643.0A external-priority patent/CN117960655B/en
Publication of CN117960655A publication Critical patent/CN117960655A/en
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Publication of CN117960655B publication Critical patent/CN117960655B/en
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Abstract

The invention discloses a sampling valve circulating sterilization device, which belongs to the technical field of beer sampling valve sterilization and comprises a support assembly, wherein the support assembly comprises a wall surface and a pipeline, a three-way valve body is fixedly connected to the pipeline, a valve body switch is connected to the three-way valve body in a threaded manner, a left fixed block is arranged on the three-way valve body, a six-hole sliding ring is rotationally connected to the left fixed block, a plurality of hollow columns are slidingly connected to the six-hole sliding ring, two groups of wiping assemblies, two groups of switch assemblies and two groups of circulating cleaning assemblies are arranged on the hollow columns, and the wiping assemblies, the switch assemblies and the circulating cleaning assemblies are symmetrically arranged. The invention can automatically change the functions of three modes of cleaning and sterilizing; the function of rotating cleaning while cleaning can be completed by moving up and down; the switch of the two valve ports can be independently controlled.

Description

Sampling valve circulation sterilizing equipment
Technical Field
The invention relates to the technical field of beer sampling valve sterilization, in particular to a sampling valve circulating sterilization device.
Background
At present, in order to ensure the quality and safety of beer and ensure that the beer meets production related regulations and standards, the beer can be sampled in the beer production process, a sampling valve on a beer tank body is used during sampling, the sampling valve is used for sampling so as to ensure the accuracy and safety of the sample, the sample is prevented from being polluted by bacteria in the sampling valve during sampling, the sample is polluted, the detection of the subsequent sample is inaccurate, and the product quality is influenced. Therefore, a sampling valve is required to be sterilized, and a circulating sterilization method for the sampling valve is common; however, at present, the circulating sterilization of the sampling valve is basically performed by using a circulating sterilization device manually, so that the circulating sterilization process is complex, the time for replacing the sterilization device is long, the consumption time is long, and the sterilization operation cannot be performed more normally.
CN115978210A provides a steam sterilization stop valve among the prior art, and the advantage of this equipment can reduce the bacterium of external environment and be infected with inside the sample valve, and with high temperature steam automatic discharge after the sterilization, the device's is characterized in that: for plants with high demands, the cost is too high, and the high temperature sterilization may have an influence on the liquid in the tank, for example, the high temperature gas is not discharged in time by the machine, and the explosion risk is caused.
Disclosure of Invention
The technical problems to be solved by the invention are as follows: the sterilizing device is capable of automatically circularly sterilizing, wiping and controlling the closing of the valve port of the sampling valve.
Aiming at the technical problems, the invention adopts the following technical scheme: the utility model provides a sampling valve circulation sterilizing equipment, includes supporting component, supporting component includes wall, pipeline, fixed connection three-way valve body on the pipeline, threaded connection valve body switch on the three-way valve body, the three-way valve body on be provided with left fixed block, the six hole sliding rings of rotation connection on the left fixed block, the six hole sliding rings sliding connection is last a plurality of hollow posts, be provided with two sets of wiping subassembly, two sets of switch assembly, two sets of circulation cleaning assembly on the hollow post, wiping subassembly, switch assembly, circulation cleaning assembly symmetry set up respectively, wiping subassembly is used for wiping the disinfection, switch assembly is used for opening and shutting the valve, circulation cleaning assembly is used for the antiseptic solution circulation to disinfect, rotating assembly is used for rotatory change wiping subassembly, switch assembly, circulation cleaning assembly work, the device frame is used for supporting and mobile device;
The rotary assembly comprises a left fixed block and a right fixed block which are fixedly connected to a three-way valve body, the left fixed block and the right fixed block are rotationally connected with a six-hole sliding ring, the six-hole sliding ring is fixedly connected with two hollow tables and a plurality of cylinder strips, the six-hole sliding ring is slidingly connected with a plurality of hollow columns, the hollow columns are fixedly connected with two sliding blocks, the rotary assembly comprises a right sliding groove body and a left sliding groove body which are rotationally positioned, the right sliding groove body is fixedly connected to a positioning shaft, the left sliding groove body is fixedly connected to a left embedded support body, the right sliding groove body is provided with an inclined notch, a switch pull rod is slidingly connected with the inclined notch on the right sliding groove body, and a valve body switch is meshed with a switch Guan Lagan rack.
Further, rotating assembly include motor I, opposite sex's gear, motor I fixed connection is on the location axle, location axle fixed connection is on the fixed disk, opposite sex's gear fixed connection on motor I, opposite sex's gear and cylinder strip meshing are connected, right spout body, left spout body on be provided with the spout, slider and right spout body, the cooperation of spout on the left spout body.
Further, the wiping component comprises a cylindrical chute and a small cylindrical chute, wherein the cylindrical chute is fixedly connected to a hollow column, the small cylindrical chute is fixedly connected to a hollow table, a motor II is fixedly connected to the small cylindrical chute, a worm is fixedly connected to the motor II and is rotationally connected to the hollow table, the wiping component comprises a round thread block, the round thread block is in threaded connection with the worm, the round thread block is fixedly connected to a supporting bar, and the supporting bar is in sliding connection with the small cylindrical chute.
Further, a plurality of hollow posts are connected to the six-hole slide ring in a sliding way, a cylindrical chute and a switch supporting body are fixedly connected to the hollow posts, and a recovery pipeline and a pump outlet pipeline are connected to the hollow posts in a threaded way.
Further, the wiping component comprises a limiting block, the limiting block is fixedly connected with a supporting bar, a round block central shaft is rotationally connected to the supporting bar, a round block is fixedly connected to the round block central shaft, a baffle is fixedly connected to the limiting block, a transverse bevel gear is rotationally connected to the limiting block, the transverse bevel gear is meshed with a vertical bevel gear, the vertical bevel gear is rotationally connected to the limiting block, the vertical bevel gear is fixedly connected to a cotton clamping disc, a magnet is fixedly connected to the cotton clamping disc, and a belt is rotationally connected to the transverse bevel gear and the round block.
Further, the switch support on fixedly connected with closed block slide, the left gear that has of pivoted connection on the closed block slide, right gear, closed block slide on sliding connection have left closed block, right closed block, fixedly connected with right rack on the right closed block, right rack and right gear rack meshing, left closed block on fixedly connected with left rack, left rack and left gear rack meshing. The gear support is fixedly connected with a gear support frame, the gear support frame is fixedly connected with a motor III, a forward rotating gear and a reverse rotating gear are rotatably connected to the gear support frame, the reverse rotating gear is fixedly connected to the motor III, the left gear and the forward rotating gear are connected and rotated through a left belt, and the right gear and the reverse rotating gear are connected and rotated through a right belt.
Further, the circulating cleaning assembly comprises a high-pressure centrifugal pump, the high-pressure centrifugal pump is fixedly connected to the round supporting body, the recovery pipeline and the pumping pipeline are in threaded connection with the sterilizing liquid circulating device, and the sterilizing liquid circulating device is fixedly connected to the base.
Further, the device frame include the base, base fixed connection circle supporter, have rotary disk, fixed disk to rotate on the circle supporter to be connected, circle supporter on fixed connection left gomphosis supporter, circle supporter fixed connection a plurality of universal wheels.
Compared with the prior art, the invention has the beneficial effects that:
(1) According to the rotating assembly, the plurality of hollow columns are arranged on the six-hole slide ring, the sliding blocks are welded on the hollow columns, so that the hollow columns move along the sliding grooves of the left sliding groove body and the right sliding groove body when rotating, the wiping assembly, the circulating sterilization assembly and the switch assembly are arranged on the hollow columns, and the motor drives the opposite gear to drive the six-hole slide ring to rotate, so that the functions of three modes of cleaning and sterilization can be automatically replaced;
(2) When the wiping component adopts the worm to rotationally drive the round sliding block to move up and down, the round sliding block on the supporting bar can rub with the cylindrical sliding groove to rotate, the belt is utilized to drive the round sliding block to rotate to the transverse bevel gear, and the cotton clamping disc is driven to rotate according to the meshing of the transverse bevel gear and the vertical bevel gear, so that the function of cleaning in a up-and-down moving way and simultaneously rotating and cleaning can be completed;
(3) The switch assembly adopts the motor III to drive the reversing gear, and the reversing gear is meshed with the forward gear, so that the left gear and the right gear reversely rotate to drive the left rack and the right rack to move, the left closing block and the right closing block are controlled to move, and the independent control of the opening and the closing of two valve ports can be realized.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present invention.
Fig. 2 is a schematic diagram of the whole structure of the present invention in front view.
FIG. 3 is a schematic view of the overall structure of the present invention.
FIG. 4 is a schematic view of the right chute body and positioning shaft of the present invention.
FIG. 5 is a schematic view of a rotating assembly according to the present invention.
Figure 6 is a schematic overall view of the wiper assembly and switch assembly.
Fig. 7 is a schematic diagram of a six-hole slide ring movement structure.
Fig. 8 is a schematic diagram of the switch lever engagement.
Fig. 9 is a schematic view of the left fixing block structure.
Figure 10 is an overall schematic view of a wiping assembly.
Figure 11 is a schematic view of the internal structure of the wiping assembly.
Fig. 12 is a schematic view of the structure of a horizontal bevel gear and a vertical bevel gear.
FIG. 13 is a schematic view of a circular slider, circular block center axis.
Fig. 14 is a schematic diagram of a switch assembly.
Fig. 15 is an enlarged schematic view of the structure of the switch assembly.
Fig. 16 is a schematic view of the overall device support.
Fig. 17 is an overall schematic view of the circulation cleaning apparatus.
Reference numerals: 1-a support assembly; 2-a rotating assembly; 3-a wiper assembly; a 4-switch assembly; 5-a device rack; 6-a cycle cleaning assembly; 101-wall surface; 102-a pipeline; 103-valve body switch; 104-a three-way valve body; 201-right chute body; 202-a left chute body; 203-a switch pull rod; 204-six-hole slide ring; 205-left fixed block; 206-motor I; 207-a foreign gear; 208-hollow stage; 209-a cylindrical bar; 210-a slider; 211-right fixed block; 212-positioning a shaft; 213-hollow columns; 301-a cylindrical chute; 302-small cylindrical chute; 303-motor II; 304-a round slide block; 305-supporting bars; 306-a worm; 307-limiting blocks; 308-a belt; 309-transverse bevel gear; 310-vertical bevel gear; 311-cotton clamping disc; 312-magnet; 313-round block central axis; 314-a baffle; 315-a round thread block; 401-a switch support; 402-right closure block; 403-left closure block; 404-right gear; 405-left gear; 406-left rack; 407-right rack; 408-right belt; 409-left belt; 410-a gear support; 411-motor III; 412-a forward gear; 413-closing a block slide; 414-reversing gear; 501-a circular support; 502-universal wheels; 503-left chimeric support; 504-rotating disk; 505-a fixed disk; 506-base; 601-high pressure centrifugal pump; 602-a recovery pipeline; 603-pump out the tubing; 604-a sterilizing fluid circulation device.
Detailed Description
The technical scheme of the invention is further described below by means of specific embodiments in combination with the accompanying drawings.
Wherein the drawings are for illustrative purposes only and are shown in schematic, non-physical, and not intended to be limiting of the present patent; for the purpose of better illustrating embodiments of the invention, certain elements of the drawings may be omitted, enlarged or reduced and do not represent the size of the actual product; it will be appreciated by those skilled in the art that certain well-known structures in the drawings and descriptions thereof may be omitted.
Examples: 1-9, a sample valve circulation sterilizing device, including supporting component 1, supporting component 1 includes wall 101, pipeline 102, fixed connection three-way valve body 104 on the pipeline 102, threaded connection valve body switch 103 on the three-way valve body 104 is provided with left fixed block 205 on the three-way valve body 104, the last six hole sliding rings 204 of rotating connection of left fixed block 205, sliding connection is a plurality of hollow posts 213 on six hole sliding rings 204, be provided with two sets of wiping component 3 on the hollow posts 213, two sets of switch assembly 4, two sets of circulation cleaning assembly 6, wiping component 3, switch assembly 4, circulation cleaning assembly 6 symmetry sets up respectively, wiping component 3 is used for wiping the disinfection, switch assembly 4 is used for opening and shutting the valve, circulation cleaning assembly 6 is used for the disinfection liquid circulation, rotating component 2 is used for rotatory change wiping component 3, switch assembly 4, circulation cleaning assembly 6 work, device frame 5 is used for supporting and moving device, rotating component 2 includes motor I206, anisotropic gear 207, motor I206 fixed connection is on location axle 212 fixed connection is on fixed disk 505, anisotropic gear 207 fixed connection is on motor I206, the opposite side gear 207 is fixed connection is on the fixed disk 202, right side runner 201 and left and right runner 201 are provided with the chute 201, the opposite side runner is connected with right runner 201, chute 201 is provided with. The six-hole slide ring 204 is slidably connected with a plurality of hollow columns 213, the hollow columns 213 are fixedly connected with a cylindrical slide groove 301 and a switch support body 401, and the hollow columns 213 are in threaded connection with a recovery pipeline 602 and a pump-out pipeline 603.
The wall 101 is provided with a pipeline 102, the upper surface of the pipeline 102 is connected with a three-way valve body 104, the upper surface of the three-way valve body 104 is connected with a valve body switch 103, the installation machine firstly installs and fixes a left fixed block 205 and a right fixed block 211 on the three-way valve body 104, the left fixed block 205 and the right fixed block 211 are positioning parts, a left chute body 202 is inserted into a chute of a left embedded support body 503, the right chute body 201 is fixed at a fixed position, the left fixed block 205 and the right fixed block 211 are fixed on a valve needing cleaning and sterilizing, a six-hole sliding ring 204 is sleeved on the left fixed block 205 and the right fixed block 211 to avoid bacteria entering during the cleaning mode, the cleaning modes arranged on a plurality of hollow columns 213 are all used for sealing outlets, the whole body rotates with a foreign gear 207 through a motor I206, the foreign gear 207 rotates with a cylindrical bar 209, the six-hole slide ring 204 rotates together with the plurality of hollow columns 213 to replace the cleaning mode, when the hollow columns 213 rotate along with the six-hole slide ring 204, the sliding blocks 210 on the hollow columns 213 slide with the sliding grooves on the left sliding groove body 202 and the right sliding groove body 201 in a matching way, the sliding blocks slide to the grooves to contact with the valve three-way valve body 104, the opening Guan Lagan 203 is slidably arranged on the slotted hole of the right sliding groove body 201, the drawing switch pull rod 203 is rotatably used for replacing the cleaning method through a switch for opening the three-way valve by rack meshing, the switch pull rod 203 is slidably arranged on the slotted hole of the right sliding groove body 201, the drawing switch pull rod 203 is used for opening the switch of the three-way valve by rack meshing, the recovery pipeline 602 and the pumping pipeline 603 are hoses connected with the hollow columns 213, and the switch support body 401 is an opening and closing device base connected with the hollow columns 213.
As shown in fig. 10-13, the wiping component 3 comprises a cylindrical chute 301 and a small cylindrical chute 302, the cylindrical chute 301 is fixedly connected to the hollow column 213, the small cylindrical chute 302 is fixedly connected to the hollow table 208, a motor ii 303 is fixedly connected to the small cylindrical chute 302, a worm 306 is fixedly connected to the motor ii 303, the worm 306 is rotatably connected to the hollow table 208, the wiping component 3 comprises a circular thread block 315, the circular thread block 315 is in threaded connection with the worm 306, the circular thread block 315 is fixedly connected to the support bar 305, and the support bar 305 is slidably connected to the small cylindrical chute 302. The wiping component 3 comprises a limiting block 307, the limiting block 307 is fixedly connected with a supporting bar 305, a round block central shaft 313 is rotatably connected to the supporting bar 305, a round slider 304 is fixedly connected to the round block central shaft 313, a baffle 314 is fixedly connected to the limiting block 307, a transverse bevel gear 309 is rotatably connected to the round block central shaft, the transverse bevel gear 309 is meshed with a vertical bevel gear 310 in a gear mode, the vertical bevel gear 310 is rotatably connected to the limiting block 307, the vertical bevel gear 310 is fixedly connected to a cotton clamping disc 311, a magnet 312 is fixedly connected to the cotton clamping disc 311, and a belt 308 is rotatably connected to the transverse bevel gear 309 and the round slider 304.
The cylindrical chute 301 and the small cylindrical chute 302 are supported, the motor II 303 rotates to drive the worm 306 to rotate, at the moment, the circular thread block 315 is provided with a thread groove, the circular thread block 315 rotates along with the thread of the worm 306, but only one open groove circular thread block 315 on the small cylindrical chute 302 moves up and down along with the open groove, the supporting bar 305 is fixed on the circular thread block 315, the supporting bar 305 also moves along with the up and down movement of the circular thread block 315, the supporting bar 305 moves up and down and drives the circular slider 304 to move, the circular slider 304 slides and rotates on the wall of the cylindrical chute 301 to drive the belt 308 to rotate, the belt 308 rotates along with the transverse bevel gear 309, the transverse bevel gear 309 is meshed with the vertical bevel gear 310 to rotate, the cotton clamping disc 311 rotates along with the driving of the vertical bevel gear 310, alcohol cotton is placed on the cotton clamping disc 311, the inner wall of the cylindrical chute 301 is prevented from moving up and down and the six-hole sliding ring 204 is prevented from moving when the magnet 312 rotates.
As shown in fig. 14-15, a closing block slide 413 is fixedly connected to the switch support 401, a left gear 405 and a right gear 404 are rotatably connected to the closing block slide 413, a left closing block 403 and a right closing block 402 are slidably connected to the closing block slide 413, a right rack 407 is fixedly connected to the right closing block 402, the right rack 407 is meshed with the right gear 404, a left rack 406 is fixedly connected to the left closing block 403, and the left rack 406 is meshed with the left gear 405. The closing block slide 413 is fixedly connected with a gear support frame 410, the gear support frame 410 is fixedly connected with a motor III 411, the gear support frame 410 is rotationally connected with a forward rotation gear 412 and a reverse rotation gear 414, the reverse rotation gear 414 is fixedly connected with the motor III 411, the left gear 405 and the forward rotation gear 412 are connected and rotated through a left belt 409, and the right gear 404 and the reverse rotation gear 414 are connected and rotated through a right belt 408.
When the motor III 411 is started, the reversing gear 414 is meshed with the forward rotating gear 412 to rotate, the reversing gear 414 rotates in the reverse direction to drive the right belt 408 to rotate, the right belt 408 drives the right gear 404 to rotate, the right gear 404 is meshed with the right rack 407 in a rack mode, the right gear 404 rotates to drive the right rack 407 to move to open the half outlet, the forward rotating gear 412 drives the left belt 409 to rotate, the left belt 409 drives the left gear 405 to rotate, the left gear 405 is meshed with the left rack 406 in a rack mode, and the left gear 405 rotates to drive the right rack 407 to move to open the other half outlet.
As shown in fig. 16-17, the device frame 5 includes a base 506, the base 506 is fixedly connected with a circular support 501, a rotating disk 504 and a fixed connection fixing disk 505 are rotatably connected on the circular support 501, a left embedded support 503 is fixedly connected on the base 506, the base 506 is fixedly connected with a plurality of universal wheels 502, the circulating cleaning assembly 6 includes a high-pressure centrifugal pump 601, the high-pressure centrifugal pump 601 is fixedly connected on the circular support 501, a recovery pipeline 602 and a pump-out pipeline 603 are in threaded connection on a disinfectant circulating device 604, and the disinfectant circulating device 604 is fixedly connected on the base 506.
When the six-hole slide ring 204 rotates to the pumping-out pipeline 603 and the recycling pipeline 602, the high-pressure centrifugal pump 601 starts to work, disinfectant is pumped out from the disinfectant circulation device 604, the disinfectant flows into the disinfectant circulation device 604 along with the pumping-out pipeline 603 to circularly work and disinfect, the left embedded support body 503 supports the left slide groove body 202, the round support body 501 supports the rotary disk 504 and the fixed disk 505, the fixed disk 505 supports the positioning shaft 212, and four universal wheels 502 are arranged below the base 506 and used for replacing and cleaning other valves.
Working principle: the universal wheel 502 is moved to adjust the position, the device is installed, the motor I206 rotates, the opposite gear 207 is driven, the opposite gear 207 rotates with the cylindrical bar 209, the cylindrical bar 209 is fixed on the six-hole slide ring 204, the six-hole slide ring 204 rotates along with the hollow column 213, the slide block 210 fixed on the hollow column 213 rotates along with the slide groove position of the left slide groove body 202, the slide groove notch position is rotated to be contacted with the valve port, at the moment, the recovery pipeline 602, the pumping pipeline 603 and the high-pressure centrifugal pump 601 are in threaded connection on the hollow column 213, the pump body works, the disinfectant inside the disinfectant circulation device 604 starts to be used for flushing the valve body, the disinfectant is pumped out from the pumping pipeline 603 and the high-pressure centrifugal pump 601, the disinfectant after flushing returns to the disinfectant circulation device 604 for filtration and is pumped out again, until the flushing is completed, the six-hole slide ring 204 rotates to the wiping component 3, the motor II 303 starts to work to rotate the worm 306 so that the round thread block 315 and the supporting bar 305 move up and down, when the supporting bar 305 moves up and down, the round slider 304 rotates on the inner wall of the cylindrical chute 301 in a friction way, the round slider is transmitted to the horizontal bevel gear 309 through the belt 308, the horizontal bevel gear 309 transmits power to the vertical bevel gear 310 through the bevel gear, the wiping device rotates up and down to wipe the inside of the valve body, after the operation is carried out twice, the motor I206 starts to rotate so as to drive the six-hole slide ring 204 to be replaced to the circular cleaning assembly 6, the high-pressure centrifugal pump 601 works again to wash the inside, after the end, the motor I206 works so as to drive the six-hole slide ring 204 to be replaced to the device switch assembly 4, the motor III works to rotate so as to drive the reversing gear 414 to rotate reversely, the reversing gear 414 meshes with the reversing gear 412, the reversing gear 412 rotates positively, the left gear 405 and the right gear 404 are rotated through the power transmitted by the right belt 408 and the left belt 409, the left gear 405 and the right gear 404 slide with the left rack 406 and the right rack 407 to open the outlet of the device, at this time, the switch pull rod 203 on the right chute body 201 is pulled out, and the valve body switch is opened due to the engagement of the racks, so that the detection liquid sample can be taken at this time.
The present invention is not limited to the above-described embodiments, and various modifications are possible within the scope of the present invention without inventive labor, as those skilled in the art will recognize from the above-described concepts.

Claims (8)

1. The utility model provides a sampling valve circulation sterilizing equipment, includes supporting component (1), supporting component (1) include wall (101), pipeline (102), fixed connection three-way valve body (104) on pipeline (102), threaded connection valve body switch (103) on three-way valve body (104), its characterized in that: the three-way valve is characterized in that a left fixed block (205) is arranged on the three-way valve body (104), a six-hole slide ring (204) is rotationally connected to the left fixed block (205), a plurality of hollow columns (213) are slidingly connected to the six-hole slide ring (204), two groups of wiping components (3), two groups of switch components (4) and two groups of circulating cleaning components (6) are arranged on the hollow columns (213), the wiping components (3), the switch components (4) and the circulating cleaning components (6) are symmetrically arranged respectively, the wiping components (3) are used for wiping sterilization, the switch components (4) are used for opening and closing valves, the circulating cleaning components (6) are used for sterilizing liquid circulation, the rotating components (2) are used for rotating and replacing the wiping components (3), the switch components (4) and the circulating cleaning components (6) to work, and the device frame (5) is used for supporting and moving devices;
Rotating assembly (2) include left fixed block (205), right fixed block (211) fixed connection on three-way valve body (104), left fixed block (205), right fixed block (211) on rotate six hole slide rings (204) of connection, six hole slide rings (204) on two hollow platforms (208) of fixed connection, a plurality of cylinder strip (209), six hole slide rings (204) on sliding connection a plurality of hollow posts (213), two sliders (210) of fixed connection on hollow post (213), rotating assembly (2) on including rotating locating component right spout body (201), left spout body (202), right spout body (201) fixed connection on locating shaft (212), left spout body (202) fixed connection on left gomphosis supporter (503), right spout body (201) on be provided with the chute mouth, chute mouth sliding connection on switch pull rod (203) and right spout body (201), switch body (103) and switch (203) rack meshing.
2. The sampling valve circulation sterilization apparatus of claim 1, wherein: the rotary assembly (2) comprises a motor I (206) and a foreign gear (207), wherein the motor I (206) is fixedly connected to a positioning shaft (212), the positioning shaft (212) is fixedly connected to a fixed disc (505), the foreign gear (207) is fixedly connected to the motor I (206), the foreign gear (207) is meshed with a cylindrical bar (209), a right chute body (201) and a left chute body (202) are provided with chutes, and the sliding block (210) is matched with the chutes on the right chute body (201) and the left chute body (202).
3. The sampling valve circulation sterilization apparatus of claim 1, wherein: the cleaning component (3) comprises a cylindrical chute (301) and a small cylindrical chute (302), wherein the cylindrical chute (301) is fixedly connected to a hollow column (213), the small cylindrical chute (302) is fixedly connected to a hollow table (208), a motor II (303) is fixedly connected to the small cylindrical chute (302), a worm (306) is fixedly connected to the motor II (303), the worm (306) is rotationally connected to the hollow table (208), the cleaning component (3) comprises a circular thread block (315), the circular thread block (315) is in threaded connection with the worm (306), the circular thread block (315) is fixedly connected to a supporting bar (305), and the supporting bar (305) is in sliding connection with the small cylindrical chute (302).
4. The sampling valve circulation sterilization apparatus of claim 1, wherein: the six-hole sliding ring (204) is connected with a plurality of hollow columns (213) in a sliding mode, the hollow columns (213) are fixedly connected with a cylindrical sliding groove (301) and a switch supporting body (401), and the hollow columns (213) are connected with a recovery pipeline (602) and a pump-out pipeline (603) in a threaded mode.
5. A sample valve cycling sterilization device in accordance with claim 3, wherein: the wiping component (3) comprises a limiting block (307), the limiting block (307) is fixedly connected with a supporting bar (305), a round block central shaft (313) is rotationally connected to the supporting bar (305), a round block (304) is fixedly connected to the round block central shaft (313), a baffle (314) is fixedly connected to the limiting block (307), a transverse bevel gear (309) is rotationally connected to the limiting block, the transverse bevel gear (309) is meshed with a vertical bevel gear (310) in a gear mode, the vertical bevel gear (310) is rotationally connected to the limiting block (307), the vertical bevel gear (310) is fixedly connected to a cotton clamping disc (311), a magnet (312) is fixedly connected to the cotton clamping disc (311), and a belt (308) is rotationally connected to the transverse bevel gear (309) and the round block (304).
6. The sample valve cycling sterilization device according to claim 4, wherein: the switch support body (401) on fixedly connected with closed block slide (413), the closed block slide (413) on rotate and be connected with left gear (405), right gear (404), closed block slide (413) on sliding connection have left closed block (403), right closed block (402) on fixedly connected with right rack (407), right rack (407) and right gear (404) rack engagement, left closed block (403) on fixedly connected with left rack (406), left rack (406) and left gear (405) rack engagement, closed block slide (413) on fixedly connected with gear support frame (410), gear support frame (410) on fixedly connected with motor III (411), gear support frame (410) on rotationally connected with corotation gear (412), counter gear (414) fixed connection is on motor III (411), left gear (405) and corotation gear (412) are connected through left belt (409) and are rotated, right gear (414) are connected through corotation gear (408).
7. The sample valve cycling sterilization device according to claim 4, wherein: the circulating cleaning assembly (6) comprises a high-pressure centrifugal pump (601), the high-pressure centrifugal pump (601) is fixedly connected to the round supporting body (501), the recovery pipeline (602) and the pumping pipeline (603) are in threaded connection with a disinfectant circulating device (604), and the disinfectant circulating device (604) is fixedly connected to the base (506).
8. The sample valve cycling sterilization device in accordance with claim 7, wherein: the device frame (5) include base (506), base (506) fixed connection circle supporter (501), have rotary disk (504), fixed disk (505) of rotating connection on circle supporter (501), circle supporter (501) on fixed connection left gomphosis supporter (503), circle supporter (501) fixed connection a plurality of universal wheels (502).
CN202410393643.0A 2024-04-02 Sampling valve circulation sterilizing equipment Active CN117960655B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202410393643.0A CN117960655B (en) 2024-04-02 Sampling valve circulation sterilizing equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202410393643.0A CN117960655B (en) 2024-04-02 Sampling valve circulation sterilizing equipment

Publications (2)

Publication Number Publication Date
CN117960655A true CN117960655A (en) 2024-05-03
CN117960655B CN117960655B (en) 2024-06-07

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Citations (10)

* Cited by examiner, † Cited by third party
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CH549743A (en) * 1972-02-07 1974-05-31 Whitey Research Tool Co VALVE.
WO2008011132A2 (en) * 2006-07-21 2008-01-24 Amgen, Inc. Rupture valve
KR100982505B1 (en) * 2010-05-20 2010-09-15 김미선 Table sterilizer having dryer having steam valve
CN115193785A (en) * 2022-07-15 2022-10-18 特阀江苏流体机械制造有限公司 Valve belt cleaning device is used in valve production
CN115363164A (en) * 2022-08-11 2022-11-22 昆明冬冬食品有限公司 High-temperature high-pressure conditioning type sterilizing device for double-layer water bath spraying
CN115978210A (en) * 2022-11-28 2023-04-18 温州金鑫生化阀门有限公司 Steam sterilization stop valve
CN117398211A (en) * 2023-11-17 2024-01-16 中国人民解放军陆军军医大学第一附属医院 Medical oral instrument disinfection sorter
CN117553135A (en) * 2023-12-03 2024-02-13 青岛伟隆阀门股份有限公司 Cylinder-driven gas valve assembly
CN117704140A (en) * 2024-01-12 2024-03-15 浙江中德自控科技股份有限公司 Long-life forced sealing ball valve
CN117722510A (en) * 2024-02-06 2024-03-19 成都成高阀门股份有限公司 Ball valve with sphere self-cleaning mechanism

Patent Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CH549743A (en) * 1972-02-07 1974-05-31 Whitey Research Tool Co VALVE.
WO2008011132A2 (en) * 2006-07-21 2008-01-24 Amgen, Inc. Rupture valve
KR100982505B1 (en) * 2010-05-20 2010-09-15 김미선 Table sterilizer having dryer having steam valve
CN115193785A (en) * 2022-07-15 2022-10-18 特阀江苏流体机械制造有限公司 Valve belt cleaning device is used in valve production
CN115363164A (en) * 2022-08-11 2022-11-22 昆明冬冬食品有限公司 High-temperature high-pressure conditioning type sterilizing device for double-layer water bath spraying
CN115978210A (en) * 2022-11-28 2023-04-18 温州金鑫生化阀门有限公司 Steam sterilization stop valve
CN117398211A (en) * 2023-11-17 2024-01-16 中国人民解放军陆军军医大学第一附属医院 Medical oral instrument disinfection sorter
CN117553135A (en) * 2023-12-03 2024-02-13 青岛伟隆阀门股份有限公司 Cylinder-driven gas valve assembly
CN117704140A (en) * 2024-01-12 2024-03-15 浙江中德自控科技股份有限公司 Long-life forced sealing ball valve
CN117722510A (en) * 2024-02-06 2024-03-19 成都成高阀门股份有限公司 Ball valve with sphere self-cleaning mechanism

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