Ultrasonic probe cleaning device

By designing a rotating positioning, lifting, and water absorption component for the ultrasonic probe cleaning device, the problem of residual water after probe cleaning was solved, achieving thorough cleaning and rapid drying, thus improving cleaning effect and protection.

CN120984602APending Publication Date: 2025-11-21BEIJING JISHUITAN HOSPITAL
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Patent Information

Application Number
CN202511165831.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-20
Publication Date
2025-11-21

AI Technical Summary

Technical Problem

Existing ultrasonic probe cleaning devices leave cleaning water residue on the probe after cleaning, which affects subsequent drying processes, and conventional cleaning methods have limited effectiveness.

Method used

An ultrasonic probe cleaning device was designed, comprising a cleaning box, a rotating positioning component, a lifting component, and a telescopic water absorption component. The probe is positioned by the rotating positioning component, the lifting component drives the cleaning component to perform spray cleaning, and the telescopic water absorption component removes residual water, achieving thorough cleaning and drying.

Benefits of technology

It effectively reduces residual cleaning water on the probe, improves cleaning effect, shortens drying time, and protects the internal structure and environment of the cleaning chamber.

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Patent Text Reader

Abstract

The invention discloses an ultrasonic probe cleaning device in the technical field of ultrasonic auxiliary equipment.The ultrasonic probe cleaning device comprises a cleaning box and a notch located in the top of the front side of the cleaning box, a rotary positioning assembly, an arc-shaped sealing cover and a driving assembly are arranged at the notch, a lifting assembly and a cleaning assembly are arranged on the lower portion of the front side of the cleaning box, and a telescopic water absorption assembly is arranged on the rear side of the cleaning box; a notch and a rotary positioning assembly are arranged at the top of the front side of the cleaning box, the positioning and placing effect can be achieved, the interior and the outer side of the cleaning box are separated through an arc-shaped sealing cover, and the protection effect on the structure in the cleaning box, cleaning water and the like is improved; the cleaning assembly is moved upwards through the lifting assembly to make contact with the probe and conduct cleaning operation. The probe is rotated to the position of the telescopic water absorption assembly through the rotary positioning assembly, the telescopic water absorption assembly moves to make contact with the probe, water absorption treatment is conducted on the probe, and residual cleaning water on the probe is reduced.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of ultrasonic auxiliary equipment, in particular to an ultrasonic probe cleaning device. BACKGROUND

[0002] When the ultrasonic probe is used, a lot of coupling agent will be adhered, and after contacting with the human skin, oil, dandruff and the like may also be adhered, so that the ultrasonic probe needs to be cleaned after each use. However, the conventional cleaning generally adopts wiping and disinfecting, which has limited cleaning effect, and coupling agent and the like may be left in the corners and the like after long-time use.

[0003] The patent with the publication number CN216500982U discloses a probe cleaning and disinfecting device for an ultrasonic department, which mainly comprises a cleaning box body and a wastewater storage box body. A limiting pressing plate is arranged on the top of the cleaning box body, and an electric push rod, a supporting hole plate, a driving mechanism and a cleaning rotating drum are arranged on the bottom of the cleaning box body. First and second nozzles are arranged on the two sides of the cleaning rotating drum. The external part of the probe can be wrapped, cleaned and disinfected through the cooperation of the electric push rod, the supporting hole plate, the driving mechanism, the cleaning rotating drum and the cleaning brush.

[0004] However, after the cleaning work is completed by the cleaning rotating drum and the nozzles, a lot of cleaning water remains on the probe. When the probe is taken off from the limiting pressing plate, the cleaning water on the probe will drop to the outside of the box body, which affects the subsequent drying process of the probe.

[0005] Therefore, the present application designs an ultrasonic probe cleaning device to solve the above problems. SUMMARY

[0006] The present application aims to provide an ultrasonic probe cleaning device to solve the problems raised in the background.

[0007] To achieve the above-mentioned purpose, the present application provides the following technical scheme: An ultrasonic probe cleaning device comprises a cleaning box. A drain pipe and a valve are arranged on the bottom of the rear side wall of the cleaning box. A notch is arranged at the top corner of the front side wall of the cleaning box. A rotating positioning assembly is arranged at the notch. An arc-shaped cover is arranged at the position corresponding to the notch inside the cleaning box. The rotating positioning assembly is located outside the arc-shaped cover. Arc-shaped sliding rails are arranged on the two side walls of the cleaning box. The two side edges of the arc-shaped cover are slidingly connected in the sliding rails. A plate groove is arranged on the top of the cleaning box. The top end of the arc-shaped cover passes through the plate groove and is connected with a driving assembly. A lifting assembly is arranged on the lower part of the front side wall of the cleaning box. A cleaning assembly is arranged on the inner side of the lifting assembly below the rotating positioning assembly. The rear side wall of the cleaning box is provided with a notch in the upper part, and a mounting plate is fixedly installed at the notch, and an extendable water suction assembly is arranged on the inner side of the mounting plate.

[0008] Preferably, the rotating positioning assembly comprises a rotating seat arranged on the upper part of the front side of the cleaning box, and end shafts are symmetrically fixed at both ends of the rotating seat and are rotatably connected to the side wall of the cleaning box through the end shafts, and the outer end of one of the end shafts is connected to an electric motor. The front side of the rotating seat is provided with a positioning groove in the middle part, the inner end of the positioning groove is V-shaped, and extendable grooves are correspondingly arranged on the two side walls of the positioning groove, and positioning blocks are connected to the extendable grooves through springs, the opposite side surfaces of the two positioning blocks are both inclined surfaces, the inclined surfaces face the inner end of the positioning groove, and electromagnets are fixed on the inner end of the positioning groove and the positioning blocks respectively, and the electromagnets are electrically connected to a power source and a switch.

[0009] Preferably, the outer side of the end part of the positioning block is fixed with an outwardly inclined guide plate, and the guide plates on the two positioning blocks are symmetrically arranged.

[0010] Preferably, the V-shaped end surface of the positioning groove and the inclined surface of the positioning block are both provided with rubber pads.

[0011] Preferably, the lifting assembly comprises two vertical racks which are symmetrically arranged and are slidingly connected to the lower part of the outer side of the cleaning box, a vertical moving plate is fixedly arranged at the inner side of the top ends of the two racks, the moving plate is slidingly connected to the front side of the inner cavity of the cleaning box, a bottom plate is fixedly arranged at the bottom end of the moving plate, and the cleaning assembly is arranged on the bottom plate. A second driving box is fixedly arranged on the outer side of the cleaning box, and notches are arranged at the positions corresponding to the racks at the top and bottom of the second driving box, and the bottom ends of the racks pass through the notches of the second driving box. A second rotating shaft is rotatably arranged in the second driving box, two second gears are symmetrically fixed on the second rotating shaft, the two second gears are respectively engaged with the two racks, a third bevel gear is fixedly arranged at the middle of the second rotating shaft, a fourth bevel gear is engaged with the front side of the third bevel gear, and the fourth bevel gear is connected to an electric motor.

[0012] Preferably, the cleaning assembly comprises two support frames which are symmetrically fixed to the top surfaces of the two sides of the bottom plate, a horizontal water spraying pipe is fixedly arranged on the two support frames, a plurality of spray heads are uniformly fixed to the top of the water spraying pipe, the two ends of the water spraying pipe extend out of the support frames, one of the two ends is provided with a connecting pipe, the other end of the connecting pipe is connected to a pump body, and the pump body is arranged at the bottom of the inner cavity of the cleaning box. Two rotating cylinders are symmetrically arranged on the two sides of the water spraying pipe and are rotatably connected to the water spraying pipe, an annular rotating plate is fixedly arranged at the inner end of each rotating cylinder, a plurality of brush plates are uniformly fixed between the two rotating plates in the circumferential direction, brush hairs are uniformly arranged on the outer side of each brush plate, a third gear is fixedly arranged on one of the rotating cylinders, a fourth gear is engaged with one side of the third gear, and the fourth gear is connected to an electric motor.

[0013] Preferably, the motor of the fourth gear is a waterproof motor, and a waterproof shell is fixed on the moving plate, the third gear and the fourth gear are located in the waterproof shell, and the two ends of the rotating cylinder extend out of the waterproof shell and are rotatably connected with the side wall of the waterproof shell.

[0014] Preferably, the water absorption assembly comprises two symmetrical and parallel triangular telescopic frames, the front side of the telescopic frame is provided with an inclined side, the rear side of the telescopic frame is connected with the mounting plate through an electric telescopic rod, a pay-off drum is rotatably connected between the top portions of the two telescopic frames, a winding drum is rotatably connected between the bottom rear sides of the two telescopic frames, and the ends of the pay-off drum and the winding drum are connected with motors. A guide roller is rotatably connected between the bottom front sides of the two telescopic frames, a water absorption cloth is wound on the winding drum, one end of the water absorption cloth passes around the guide roller and is connected with the pay-off drum, a plurality of disinfection lamps are uniformly fixed on the front sides of the telescopic frames, and the water absorption cloth between the pay-off drum and the guide roller is located in front of the plurality of disinfection lamps.

[0015] Preferably, the inside of the cleaning box is provided with a squeezing roller corresponding to the bottom position of the winding drum, the two ends of the squeezing roller are symmetrically provided and rotatably connected with two parallel spring rods, the spring rods are inclined towards the front side below the winding drum, and the two side walls of the cleaning box are correspondingly provided with inclined spring grooves, the ends of the spring rods are slidably connected in the spring grooves, and the spring rods are connected with the inner side ends of the spring grooves through springs.

[0016] Preferably, the driving assembly comprises a first driving box fixed to the top of the cleaning box, the front side of the first driving box is provided with an opening, and a first rotating shaft is rotatably connected in the first driving box, two first gears are symmetrically fixed on the first rotating shaft, two arc-shaped grooves are correspondingly provided on the arc-shaped cover, a plurality of teeth are uniformly fixed in the arc-shaped grooves and are engaged with the first gears, a first bevel gear is fixed to the middle portion of the first rotating shaft, a second bevel gear is engaged with the rear side of the first bevel gear, and the second bevel gear is connected with a motor.

[0017] Preferably, an inclined baffle is fixed between the two side walls in the inside of the cleaning box, the top ends of the two sides of the baffle are connected with the bottom portions of the two sliding rails, and the cleaning assembly and the telescopic water absorption assembly are located on the two sides of the baffle.

[0018] Compared with the prior art, the present application has the following advantages: 1. The slot and the rotating positioning assembly are arranged on the front top of the cleaning box, which can provide positioning and placing functions during daily use of the probe, and the arc-shaped cover separates the inside and the outside of the cleaning box, thereby improving the protection of the structure in the cleaning box and cleaning water; 2. The cleaning assembly is moved upward by the lifting assembly to contact and clean the probe, and the cleaning effect of the probe is improved by the spraying treatment of the cleaning water; 3、The probe is rotated to the telescopic water suction assembly through the rotation of the positioning assembly after the probe is cleaned, the telescopic water suction assembly is moved to contact the probe, and the probe is subjected to water suction treatment, so that the remaining cleaning water on the probe is reduced, and the drying of the subsequent probe is accelerated. BRIEF DESCRIPTION OF DRAWINGS

[0019] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings needed for the embodiment description will be briefly introduced as follows. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without creative labor.

[0020] Figure 1 Structure diagram of the present application; Figure 2 Structure diagram of the present application in a semi-section state; Figure 3 Structure diagram of the present application; Figure 2 Structure diagram of the present application at A; Figure 4 Structure diagram of the cleaning box of the present application; Figure 5 Structure diagram of the internal structure of the positioning seat of the present application; Figure 6 Structure diagram of the telescopic frame of the present application; Figure 7 Structure diagram of the moving plate of the present application; Figure 8 Structure diagram of the rack of the present application; Figure 9 Structure diagram of the water spraying pipe of the present application.

[0021] In the drawings, the component list represented by each mark is as follows: 100 - cleaning box, 101 - second drive box, 102 - first drive box, 103 - drain pipe, 104 - sliding rail, 105 - baffle, 106 - extrusion roller, 107 - spring rod, 108 - spring groove; 200 - arc-shaped cover, 201 - arc-shaped groove, 202 - convex strip, 203 - first rotating shaft, 204 - first bevel gear, 205 - second bevel gear, 206 - first gear; 300 - rotating seat, 301 - positioning groove, 302 - telescopic groove, 303 - positioning block, 304 - guide plate, 305 - electromagnet; 400 - moving plate, 401 - bottom plate, 402 - pump body, 403 - connecting pipe, 404 - rack, 405 - second gear, 406 - second rotating shaft, 407 - third bevel gear, 408 - fourth bevel gear; 500-mounting plate, 501-electric telescopic rod, 502-telescopic frame, 503-unwinding drum, 504-winding drum, 505-guide roller, 506-disinfecting lamp; 600-water spraying pipe, 601-supporting frame, 602-waterproof shell, 603-rotating drum, 604-rotating plate, 605-brush plate, 606-third gear, 607-fourth gear. DETAILED DESCRIPTION

[0022] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative work fall within the protection scope of the present application.

[0023] Embodiment one Please refer to the drawings, the present application provides a technical solution: An ultrasonic probe cleaning device, comprising a cleaning box 100, a drain pipe 103 and a valve are arranged at the bottom of the rear side wall of the cleaning box 100; A notch is arranged at the top corner of the front side wall of the cleaning box 100, a rotating positioning assembly is arranged at the notch, an arc-shaped cover 200 is arranged at the position corresponding to the notch in the interior of the cleaning box 100, and the rotating positioning assembly is located outside the arc-shaped cover 200; Arc-shaped slide rails 104 are arranged on the two side walls of the cleaning box 100, the two side edges of the arc-shaped cover 200 are slidingly connected in the slide rails 104, a plate groove is arranged on the top of the cleaning box 100, the top end of the arc-shaped cover 200 passes through the plate groove, and a driving assembly is connected to the arc-shaped cover 200; A lifting assembly is arranged at the lower part of the front side wall of the cleaning box 100, and a cleaning assembly is arranged at the position corresponding to the lower part of the rotating positioning assembly inside the lifting assembly; A notch is arranged at the middle upper part of the rear side wall of the cleaning box 100, a mounting plate 500 is fixedly installed at the notch, and a telescopic water suction assembly is arranged on the inner side surface of the mounting plate 500.

[0024] After the use of the probe is completed, the handle is placed on the rotating positioning assembly, and the handle and the probe are positioned and fixed, so as to provide the placing effect.

[0025] When the probe needs to be cleaned, the arc-shaped cover 200 is moved outward along the slide rail 104 by the driving assembly, so that the bottom side edge of the arc-shaped cover 200 is staggered with the position of the cleaning assembly, then the cleaning assembly is moved upward to contact the bottom of the probe by the lifting assembly, so that the bottom of the probe is cleaned by the cleaning assembly, and the cleaning box 100 stores cleaning water at the bottom, so that the cleaning water is sprayed to the bottom of the probe by the cleaning assembly, so as to achieve the effect of spraying and cleaning.

[0026] When the cleaning is completed, the arc-shaped cover 200 continues to move outward, so that the bottom side thereof is staggered with the position of the telescopic water suction assembly, then the probe is rotated to the telescopic water suction assembly through the rotation positioning assembly, the telescopic water suction assembly is moved to the probe through the telescopic drive, and is in close contact with the probe, so that the probe is subjected to water suction treatment, and the residual cleaning water on the probe is reduced, and the subsequent drying speed of the probe is accelerated.

[0027] When the cleaning assembly and the telescopic water suction assembly inside the cleaning box 100 are not used, the slot of the cleaning box 100 is closed by the arc-shaped cover 200, so that the structure and the cleaning water inside the cleaning box 100 are separated from the external environment, and dustproof protection and the like are provided.

[0028] The rotation positioning assembly comprises a rotating seat 300 located on the upper part of the front side of the cleaning box 100, end shafts are symmetrically fixed at both ends of the rotating seat 300, and the rotating seat 300 is rotationally connected with the side wall of the cleaning box 100 through the end shafts, and the outer end of one of the end shafts is connected with a motor. A positioning groove 301 is arranged in the middle of the front side of the rotating seat 300, the inner end of the positioning groove 301 is V-shaped, telescopic grooves 302 are correspondingly arranged on the two side walls of the positioning groove 301, positioning blocks 303 are connected in the telescopic grooves 302 through springs, the opposite side surfaces of the two positioning blocks 303 are both inclined surfaces, the inclined surfaces face the inner end of the positioning groove 301, and electromagnets 305 are fixed on the inner end of the positioning block 303 and the telescopic groove 302 respectively, and the electromagnets 305 are electrically connected with a power supply and a switch.

[0029] When the handle of the ultrasonic probe is positioned, the handle is placed in the positioning groove 301, the inclined surfaces of the positioning blocks 303 are in contact with the two sides of the handle, then the switch of the electromagnet 305 is turned on, the motor is connected, the two electromagnets 305 in the same telescopic groove 302 repel each other, the positioning blocks 303 stretch the springs to move outward of the telescopic groove 302, so that the handle is positioned by the two positioning blocks 303 on the two sides, and the positioning of the handle is realized by cooperating with the V-shaped end surface of the positioning groove 301. When the ultrasonic probe is rotated to the telescopic water suction assembly after the jet cleaning of the ultrasonic probe is completed, the end shaft is driven to rotate by the motor, then the probe is rotated by the rotating seat 300, the angle position of the probe is adjusted, and the position of the probe corresponds to the position of the telescopic water suction assembly.

[0030] The lifting assembly comprises two vertical racks 404 which are symmetrically arranged and are slidingly connected to the lower part of the outer side of the cleaning box 100, a vertical moving plate 400 is fixed at the inner side of the top ends of the two racks 404, the moving plate 400 is slidingly connected with the front side of the inner cavity of the cleaning box 100, a bottom plate 401 is fixed at the bottom end of the moving plate 400, and the cleaning assembly is located on the bottom plate 401. A second driving box 101 is fixed on the outer side of the cleaning box 100, and the top and bottom of the second driving box 101 are provided with notches corresponding to the positions of the two racks 404, and the bottom end of the rack 404 passes through the notch of the second driving box 101; A second rotating shaft 406 is rotatably connected in the second driving box 101, two second gears 405 are symmetrically fixed on the second rotating shaft 406, and the two second gears 405 are respectively engaged with the two racks 404, a third bevel gear 407 is fixed in the middle of the second rotating shaft 406, a fourth bevel gear 408 is engaged with the front side of the third bevel gear 407, and the fourth bevel gear 408 is connected with a motor.

[0031] When it is needed to move the cleaning assembly upward, the second rotating shaft 406 drives the two second gears 405 to rotate through the driving of the motor and the transmission of the third bevel gear 407 and the fourth bevel gear 408, thereby driving the rack 404 to move in the vertical direction, so as to adjust the height position of the cleaning assembly.

[0032] The cleaning assembly comprises two support frames 601 which are symmetrically fixed on the top surface of the bottom plate 401, and a horizontal water spraying pipe 600 is commonly fixed on the two support frames 601, a plurality of nozzles are uniformly fixed on the top of the water spraying pipe 600, the two ends of the water spraying pipe 600 extend out of the support frames 601, and one end is provided with a connecting pipe 403, the other end of the connecting pipe 403 is connected with a pump body 402, and the pump body 402 is located at the bottom of the inner cavity of the cleaning box 100. Two rotating cylinders 603 are symmetrically arranged and rotatably connected on the two sides of the water spraying pipe 600, an annular rotating plate 604 is fixed on the inner side of the rotating cylinder 603, a plurality of brush plates 605 are uniformly fixed in the circumferential direction between the two rotating plates 604, and brush hairs are uniformly distributed on the outer side of the brush plate 605, a third gear 606 is fixed on one of the rotating cylinders 603, a fourth gear 607 is engaged with one side of the third gear 606, and the fourth gear 607 is connected with a motor. The motor of the fourth gear 607 is a waterproof motor, a waterproof shell 602 is fixed on the moving plate 400, the third gear 606 and the fourth gear 607 are located in the waterproof shell 602, and the two ends of the rotating cylinder 603 extend out of the waterproof shell 602 and are rotatably connected with the side wall of the waterproof shell 602.

[0033] When the cleaning assembly is moved upward by the lifting assembly, the brush hairs on the brush plate 605 contact the bottom of the probe, the rotating cylinder 603 drives the rotating plate 604 and the plurality of brush plates 605 to rotate through the driving of the waterproof motor and the transmission of the third gear 606 and the fourth gear 607, so as to clean the probe through the brush hairs on the brush plate 605, at the same time, the pump body 402 and the connecting pipe 403 deliver cleaning water into the water spraying pipe 600, and the nozzles spray the cleaning water to the probe, through the cooperation of the spray cleaning and the brush cleaning, the cleaning effect of the probe is improved.

[0034] The water absorption assembly comprises two symmetrical and parallel triangular telescopic frames 502, the front side of the telescopic frame 502 is provided with an inclined side, and the rear side of the telescopic frame 502 is connected with the mounting plate 500 through the electric telescopic rod 501, the top of the two telescopic frames 502 is rotatably connected with a pay-off drum 503, the bottom rear side of the two telescopic frames 502 is rotatably connected with a take-up drum 504, and one end of the pay-off drum 503 and the take-up drum 504 is connected with a motor. The bottom front side of the two telescopic frames 502 is rotatably connected with a guide roller 505, the take-up drum 504 is wound with a water absorption cloth, one end of the water absorption cloth is wound around the guide roller 505 and connected with the pay-off drum 503, and the front side of the telescopic frame 502 is uniformly provided with a plurality of disinfection lamps 506, and the water absorption cloth between the pay-off drum 503 and the guide roller 505 is located in front of the plurality of disinfection lamps 506.

[0035] When the ultrasonic probe rotates to the telescopic water absorption assembly, the telescopic frame 502 and the structure thereon are moved outward by the electric telescopic rod 501, so that the water absorption cloth is in close contact with the probe, so as to absorb the residual water on the probe, then the water absorption cloth is moved by the pay-off operation of the pay-off drum 503 and the take-up operation of the take-up drum 504, the position of the water absorption cloth relative to the probe is switched, and the probe is continuously dried by the water absorption cloth, then the telescopic water absorption assembly is reset and is separated from the probe, so that the probe can be rotated back to the original position.

[0036] During the use of the water absorption cloth, the disinfection lamp 506 is used for disinfecting the water absorption cloth to avoid pollution of the probe, and the water absorption cloth used for water absorption is gradually taken up on the take-up drum 504, when the use of the water absorption cloth on the pay-off drum 503 is completed, the mounting plate 500 is disassembled, and the telescopic water absorption assembly is taken out, so that the water absorption cloth and the like can be replaced.

[0037] The driving assembly comprises a first driving box 102 fixed to the top of the cleaning box 100, the front side of the first driving box 102 is provided with an opening, and a first rotating shaft 203 is rotatably connected in the first driving box 102, two first gears 206 are symmetrically fixed on the first rotating shaft 203, two arc-shaped grooves 201 are provided on the arc-shaped cover 200, a plurality of teeth are uniformly fixed in the arc-shaped grooves 201, and the teeth are engaged with the first gears 206, a first bevel gear 204 is fixed to the middle part of the first rotating shaft 203, a second bevel gear 205 is engaged with the rear side of the first bevel gear 204, and the second bevel gear 205 is connected with a motor.

[0038] When the arc-shaped cover 200 needs to be moved, the first rotating shaft 203 is rotated through the driving of the motor and the transmission of the first bevel gear 204 and the second bevel gear 205, and then the two first gears 206 are rotated, and the arc-shaped cover 200 is moved outward or inward along the slide rail 104 through the cooperation of the first gear 206 and the teeth.

[0039] Embodiment two The structure of this embodiment is basically the same as that of Embodiment one, except that the end of the positioning block 303 is fixed with an outwardly inclined guide plate 304, and the guide plates 304 on the two positioning blocks 303 are symmetrically arranged, so that when the ultrasonic probe is positioned, the handle of the ultrasonic probe moves inward through the position of the guide plate 304 to the inside of the positioning groove 301, and in the process of moving, the positioning block 303 is moved to both sides through the pushing action, and then the handle smoothly enters the positioning groove 301 and contacts the inclined surface of the two positioning blocks 303, so as to carry out subsequent positioning operation.

[0040] The V-shaped end surface of the positioning groove 301 and the inclined surface of the positioning block 303 are both provided with rubber pads, which increase the friction when contacting the handle of the ultrasonic probe and improve the positioning effect.

[0041] Embodiment three The structure of this embodiment is basically the same as that of Embodiment one, except that the inside of the cleaning box 100 is provided with a squeezing roller 106 corresponding to the bottom position of the winding drum 504, the two ends of the squeezing roller 106 are symmetrically provided and rotatably connected with two parallel spring rods 107, the spring rods 107 are inclined to the front lower side of the winding drum 504, and the two side walls of the cleaning box 100 are correspondingly fixed with inclined spring grooves 108, the end of the spring rod 107 is slidingly connected in the spring groove 108, and the end of the spring rod 107 is connected with the inside end of the spring groove 108 through a spring.

[0042] In the process of winding the absorbent cloth by the winding drum 504, the squeezing roller 106 is in close contact with the bottom of the winding drum 504 through the guiding action of the spring groove 108 and the spring rod 107 and the pushing action of the spring, and the absorbent cloth is squeezed, which plays a role of squeezing out water and reducing the water of the absorbent cloth, facilitating subsequent processing.

[0043] Embodiment four The structure of this embodiment is basically the same as that of Embodiment one, except that the inside of the cleaning box 100 is fixed with an inclined baffle 105 between the two side walls, the top end of the baffle 105 is connected with the bottom of the two slide rails 104 on both sides, and the cleaning assembly and the telescopic water absorption assembly are located on both sides of the baffle 105, so that when the probe is cleaned, the telescopic water absorption assembly is separated from the cleaning assembly through the cooperation of the arc-shaped cover 200 and the baffle 105, avoiding the cleaning water from splashing on the telescopic water absorption assembly.

[0044] In the description of the application, references to "one embodiment", "an example", "certain examples" etc. mean that a particular feature, structure, material or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the application. The appearances of the phrases "in one embodiment", "an example", "certain examples" etc. in various places in the specification are not necessarily referring to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics can be combined in any suitable manner in one or more embodiments or examples.

[0045] The preferred embodiments of the application disclosed above are only used to help explain the application. The preferred embodiments do not describe all of the details of the application and limit the application to the specific embodiments. Obviously, many modifications and variations of the application can be made in light of the teachings above. The embodiments are chosen and described in order to best explain the principles of the application and its practical application and to enable others skilled in the art to best utilize the application. The application is limited only by the claims and their full scope and equivalents.

Claims

1. An ultrasonic probe cleaning device, comprising a cleaning box (100), the bottom of the rear side wall of the cleaning box (100) is provided with a drain pipe (103) and a valve, characterized in that: a notch is arranged at the top corner of the front side wall of the cleaning box (100), a rotating positioning assembly is arranged at the notch, the inside of the cleaning box (100) is provided with an arc-shaped cover (200) corresponding to the position of the notch, and the rotating positioning assembly is located outside the arc-shaped cover (200); arc-shaped slide rails (104) are arranged on the two side walls of the cleaning box (100) correspondingly, the two side edges of the arc-shaped cover (200) are slidably connected in the slide rails (104), and the top of the cleaning box (100) is provided with a plate groove, the top end of the arc-shaped cover (200) penetrates through the plate groove and is connected with a driving assembly; a lifting assembly is arranged at the lower part of the front side wall of the cleaning box (100), and the inside of the lifting assembly is provided with a cleaning assembly corresponding to the position below the rotating positioning assembly; a notch is arranged at the middle upper part of the rear side wall of the cleaning box (100), and a mounting plate (500) is fixedly installed at the notch, and a telescopic water suction assembly is arranged on the inner side surface of the mounting plate (500). The rotating positioning assembly comprises a rotating seat (300) arranged at the upper part of the front side wall of the cleaning box (100), end shafts are symmetrically fixed at the two ends of the rotating seat (300) and are rotatably connected with the side walls of the cleaning box (100) through the end shafts, and the outer end of one of the end shafts is connected with a motor; The front side surface of the rotating seat (300) is provided with a positioning groove (301), the inner end of the positioning groove (301) is V-shaped, telescopic grooves (302) are arranged on the two side walls of the positioning groove (301) correspondingly, positioning blocks (303) are connected in the telescopic grooves (302) through springs, the opposite side surfaces of the two positioning blocks (303) are both inclined surfaces, the inclined surfaces face the inner end of the positioning groove (301), electromagnets (305) are fixed on the inner ends of the positioning blocks (303) and the telescopic grooves (302) respectively, and the electromagnets (305) are electrically connected with a power supply and a switch. The end part of the positioning block (303) is fixed with an outwardly inclined guide plate (304), and the guide plates (304) on the two positioning blocks (303) are symmetrically arranged. Rubber pads are arranged on the V-shaped end surface of the positioning groove (301) and the inclined surface of the positioning block (303).

2. The ultrasonic probe cleaning apparatus of claim 1, wherein: The lifting assembly comprises two vertical racks (404) which are symmetrically arranged and slidably connected to the lower part of the outer side surface of the cleaning box (100), a vertical moving plate (400) is fixed on the inner side of the top ends of the two racks (404) together, the moving plate (400) is slidably connected with the front side surface of the inner cavity of the cleaning box (100), a bottom plate (401) is fixed on the bottom end rear side of the moving plate (400), and the cleaning assembly is arranged on the bottom plate (401); A second driving box (101) is fixed on the outer side surface of the cleaning box (100), grooves are arranged at the top and bottom of the second driving box (101) corresponding to the positions of the racks (404), and the bottom end of the rack (404) penetrates through the groove of the second driving box (101).

3. The ultrasonic probe cleaning apparatus of claim 2, wherein: ​ 4. The ultrasonic probe cleaning apparatus of claim 2, wherein: ​ 5. The ultrasonic probe cleaning apparatus of claim 1, wherein: ​ ​ The second driving box (101) is rotatably connected with a second rotating shaft (406), two second gears (405) are symmetrically fixed on the second rotating shaft (406), and the two second gears (405) are respectively engaged with two racks (404), a third bevel gear (407) is fixed in the middle of the second rotating shaft (406), a fourth bevel gear (408) is engaged with the front side of the third bevel gear (407), and the fourth bevel gear (408) is connected with a motor.

6. The ultrasonic probe cleaning apparatus of claim 5, wherein: The cleaning assembly comprises support frames (601) symmetrically fixed on the top surface of the bottom plate (401), and a horizontal water spraying pipe (600) is fixed on the two support frames (601), a plurality of nozzles are uniformly fixed on the top of the water spraying pipe (600), the two ends of the water spraying pipe (600) extend out of the support frames (601), one end of the water spraying pipe (600) is provided with a connecting pipe (403), the other end of the connecting pipe (403) is connected with a pump body (402), and the pump body (402) is located at the bottom of the inner cavity of the cleaning box (100). The two sides of the water spraying pipe (600) are symmetrically provided with rotatable cylinders (603), the inner side of the rotatable cylinder (603) is fixed with an annular rotating plate (604), a plurality of brush plates (605) are uniformly fixed between the two rotating plates (604) in the circumferential direction, brush hairs are uniformly distributed on the outer side of the brush plate (605), one of the rotating cylinders (603) is fixed with a third gear (606), one side of the third gear (606) is engaged with a fourth gear (607), and the fourth gear (607) is connected with a motor.

7. The ultrasonic probe cleaning apparatus of claim 1, wherein: The water absorbing assembly comprises two symmetrically and parallel arranged triangular telescopic frames (502), the front side of the telescopic frame (502) is provided with an inclined side, the rear side of the telescopic frame (502) is connected with a mounting plate (500) through an electric telescopic rod (501), a pay-off cylinder (503) is rotatably connected between the top of the two telescopic frames (502), a winding cylinder (504) is rotatably connected between the bottom rear sides of the two telescopic frames (502), and one end of the pay-off cylinder (503) and the winding cylinder (504) is connected with a motor. A guide roller (505) is rotatably connected between the front sides of the bottoms of the two telescopic frames (502), a water absorbing cloth is wound on the winding cylinder (504), one end of the water absorbing cloth passes through the guide roller (505) and is connected with the pay-off cylinder (503), a plurality of disinfection lamps (506) are uniformly fixed on the front sides of the telescopic frames (502), and the water absorbing cloth between the pay-off cylinder (503) and the guide roller (505) is located in front of the plurality of disinfection lamps (506).

8. The ultrasonic probe cleaning apparatus of claim 7, wherein: An extrusion roller (106) is arranged at the bottom of the winding cylinder (504) in the cleaning box (100), two parallel spring rods (107) are symmetrically arranged at the two ends of the extrusion roller (106) and are rotatably connected, the spring rods (107) are inclined towards the front side below the winding cylinder (504), and inclined spring grooves (108) are fixed on the two side walls of the cleaning box (100), the ends of the spring rods (107) are slidably connected in the spring grooves (108), and the ends of the spring rods (107) are connected with the inner side of the spring grooves (108) through springs.

9. The ultrasonic probe cleaning apparatus of claim 1, wherein: The driving assembly comprises a first driving box (102) fixed to the top of the cleaning box (100), the front side of the first driving box (102) is provided in an open shape, and a first rotating shaft (203) is rotatably connected in the first driving box (102); two first gear wheels (206) are symmetrically fixed to the first rotating shaft (203); two arc-shaped grooves (201) are correspondingly provided on the arc-shaped cover (200), a plurality of teeth are uniformly fixed in the arc-shaped grooves (201) and engaged with the first gear wheels (206); a first bevel gear (204) is fixed to the middle part of the first rotating shaft (203); the rear side of the first bevel gear (204) is engaged with a second bevel gear (205), and the second bevel gear (205) is connected with a motor.

10. The ultrasonic probe cleaning apparatus according to any one of claims 1 to 9, characterized in that: An inclined baffle (105) is fixed between the two side walls in the cleaning box (100), the top ends of the two sides of the baffle (105) are connected with the bottoms of two slide rails (104), and the cleaning assembly and the telescopic water suction assembly are respectively arranged on the two sides of the baffle (105).

Citation Information

Patent Citations

  • Probe cleaning and disinfecting device for ultrasonic department

    CN216500982U