Disinfecting and cleaning device for color ultrasound probe
By designing a color Doppler ultrasound probe disinfection and cleaning device, and utilizing a rotating drive component and multiple disinfection and cleaning structures, the flat color Doppler ultrasound probe is thoroughly cleaned and disinfected, solving the problem of poor cleaning and disinfection effects in existing technologies and achieving highly efficient cleaning results.
Patent Information
- Application Number
- CN202511172815.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-21
- Publication Date
- 2025-11-07
AI Technical Summary
Existing technologies are insufficient for effectively cleaning and disinfecting flat color Doppler ultrasound probes from all angles, especially since they are difficult to rotate after being clamped, resulting in poor cleaning and disinfection effects.
A color Doppler ultrasound probe disinfection and cleaning device was designed, including a container, a baffle basket, a bottom support, a friction cleaning component, an annular spray component, and a central disinfection component. The baffle basket and the bottom support are driven to rotate in opposite directions by a rotation drive component. Combined with the design of an annular flow channel, a bottom liquid chamber, and an ultraviolet lamp, the device achieves all-round cleaning and disinfection of the color Doppler ultrasound probe.
Stable disinfection of flat color Doppler ultrasound probes is achieved, ensuring cleaning and disinfection effectiveness. Through multiple cleaning and disinfectant spraying, combined with friction and ultraviolet irradiation, cleaning efficiency and effectiveness are improved.
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Figure CN120901010A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of disinfection devices, in particular to a color ultrasound probe disinfection and cleaning device. BACKGROUND
[0002] The color ultrasound probe is a key detection component used on the color ultrasound, which generates ultrasonic signals through the piezoelectric effect principle, and plays a role in generating, collecting, receiving and transmitting ultrasonic signals. When the color ultrasound probe is used, it generally needs to be coated with a coupling agent, so after use, the coupling agent needs to be cleaned and then disinfected.
[0003] A color ultrasound probe automatic cleaning and disinfection device is disclosed in Chinese Patent No. CN118122684B with a publication date of May 6, 2024 and a publication number of CN118122684B. It relates to the technical field of cleaning devices and includes a cleaning tank. Two detachable front plates are fixed to the front end of the cleaning tank by bolts, and three sets of rotating shafts are installed on the inner surface of the front plates. Limiting frames are slidingly installed on the surface of the rotating shafts. The bottom of the front plate is fixed with a supporting plate, and grooves are formed on the inner walls of the two sides and the middle of the cleaning tank. The supporting plate slides along the grooves. Compared with the prior art, the two sets of rotating shafts in the cleaning tank can be adjusted by manually adjusting the positions of the side shafts and the bottom shafts to adapt to different types of probes. At the same time, the space separated by the limiting frames can clean multiple probes simultaneously, improving the cleaning efficiency. After cleaning is completed, the limiting frames are moved by the translation assembly, the probes are sent out along the rotating shafts, and after drying and sterilization, the probes are sent out by the delivery plate. The probe is cleaned by rotation to avoid incomplete cleaning.
[0004] In this technical solution, the color ultrasound probe is clamped by three rotating shafts, and the color ultrasound probe is driven to rotate, so that the probe is fully sprayed and cleaned and disinfected. However, for flat color ultrasound probes, it is difficult to drive the color ultrasound probe to rotate after clamping by the rotating shaft, and it is difficult to ensure that the color ultrasound probe is fully contacted with the cleaning water or disinfectant, resulting in poor cleaning or disinfection effect, which can be further improved. SUMMARY
[0005] (I) Technical problems solved In view of the deficiencies of the prior art, the present application provides a color ultrasound probe disinfection and cleaning device, which has the advantages of facilitating stable disinfection of flat probes and solving the problems of flat probes not being easy to rotate, cleaning and disinfection effect being unstable.
[0006] (II) Technical solutions In order to achieve the above-mentioned purpose of facilitating stable disinfection of the flat probe, the present application provides the following technical scheme: a color ultrasound probe disinfection and cleaning device, comprising a containing cylinder and a cylinder cover, a surrounding basket is rotatably connected in the upper half of the containing cylinder, a bottom support is rotatably connected in the lower half of the containing cylinder, a friction cleaning piece is longitudinally and slidably connected in the gap of the bottom support, the friction cleaning piece is located directly below the surrounding basket, an annular spraying piece is sleeved on the outer side of the bottom support, a central disinfection piece is fixedly installed at the center of the containing cylinder, four peripheral disinfection pieces are fixedly installed on the side wall of the upper half of the containing cylinder, a rotating drive piece is arranged inside the cylinder cover, and the rotating drive piece is used to drive the surrounding basket and the bottom support to rotate in opposite directions.
[0007] Preferably, a positioning ring one is fixedly installed on the inner wall of the top end of the containing cylinder, an annular slide rail and a partition plate are fixedly installed on the inner wall of the lower half of the containing cylinder, the partition plate is fixedly installed with a gathering ring on the top, the annular spraying piece is rotatably connected on the annular slide rail, the annular flow channel is formed between the partition plate, the annular slide rail, the annular spraying piece and the side wall of the containing cylinder, and the bottom liquid cavity is formed between the partition plate and the bottom wall of the containing cylinder; a water inlet pipe is connected to the left side of the bottom end of the containing cylinder, the water inlet pipe is in communication with the annular flow channel and the bottom liquid cavity, a drain pipe is fixedly penetrated through the right side of the bottom end of the containing cylinder, a drain hole is arranged between the partition plate and the drain pipe, and the drain hole is located inside the gathering ring.
[0008] Preferably, the surrounding basket comprises inner blocking rings arranged in the vertical direction, the inner blocking rings are regular polygons, a plurality of the inner blocking rings are fixed together at the corners through L-shaped ribs, the L-shaped ribs are inverted L-shaped, a rotating ring is fixedly installed at the top end of the L-shaped rib, the cross section of the rotating ring is U-shaped, a fixed ring is fixedly installed on the top of the rotating ring, and a plurality of insertion holes are arranged on the top of the fixed ring; an outer blocking ring is sleeved on the outer side of each inner blocking ring, the outer blocking ring is a regular polygon, the number of side lengths of the outer blocking ring is equal to the number of side lengths of the inner blocking ring, a plurality of outer blocking rings are fixed together at the corners through straight-line-shaped ribs, and the straight-line-shaped ribs are fixedly installed at the bottom of the horizontal part of the L-shaped rib at the top end.
[0009] Preferably, the annular spraying piece comprises a water blocking ring, the water blocking ring is attached to the top of the partition plate, an annular slide block is fixedly installed on the outer wall of the water blocking ring, the annular slide block is rotatably connected in the annular slide rail, a plurality of convex strips are fixedly arranged on the inner wall of the water blocking ring, an annular pipe is fixedly installed on the top of the water blocking ring, the top of the annular pipe is inclined, and faces the surrounding basket, a flow guide hole is arranged in the convex strip, the bottom end of the flow guide hole penetrates out of the side of the bottom of the water blocking ring and is in communication with the annular flow channel, the top end of the flow guide hole penetrates through the bottom of the annular pipe and is in communication with the inside of the annular pipe, and a plurality of spray holes one are arranged on the top of the annular pipe.
[0010] Preferably, the bottom support comprises a ring-shaped grid located directly below the containment basket, a top edge of the ring-shaped grid is fixedly installed with an extension ring, the extension ring is attached to the inner wall of the water retaining ring, an edge array of the extension ring is provided with a sliding sleeve, the sliding sleeve is slidingly connected to the convex strip, a downward extending cladding ring is fixedly installed at the inner edge of the extension ring, an elastic support is fixedly installed at the bottom of the extension ring, and a hollow plate is fixedly installed at the inner wall of the bottom end of the ring-shaped grid.
[0011] Preferably, the friction cleaning member comprises a ring-shaped seat sleeved outside the converging ring, the cross section of the ring-shaped seat is inverted L-shaped, a friction ring is fixedly installed at the top of the ring-shaped seat, the top of the friction ring is wave-shaped, the friction ring passes through the gap of the ring-shaped grid, and a cladding ring is sleeved outside the ring-shaped seat; a support is fixedly installed at the bottom end of the outer wall of the ring-shaped seat, a rack plate one is fixedly installed at the top of the support, the rack plate one is engaged with a transmission gear, the transmission gear is rotationally connected to the inner wall of the water retaining ring, the transmission gear is engaged with a rack plate two away from the side of the rack plate one, and the rack plate two is fixedly installed at the bottom of the extension ring.
[0012] Preferably, the central disinfecting member comprises an embedded column fixedly penetrating the center of the partition plate, an ultraviolet lamp one is arranged in an array at the upper half of the embedded column, a flow guide groove is arranged in an array on the circumferential surface of the embedded column, a glass cover is sleeved outside the embedded column, the glass cover seals the top opening and the side opening of the flow guide groove, the bottom opening of the flow guide groove is in communication with the bottom liquid cavity, a plurality of spray holes two are arranged in an array on the circumferential surface of the glass cover, and the spray holes two are in communication with the flow guide groove.
[0013] Preferably, the peripheral disinfecting member comprises a glass ring fixedly installed on the upper half of the side wall of the containing cylinder, the glass ring is attached to the top of the ring-shaped sliding rail and the bottom of the rotating ring, an annular containing cavity is formed between the glass ring and the side wall of the containing cylinder, and an ultraviolet lamp two is arranged in an array in the annular containing cavity.
[0014] Preferably, the rotating driving part comprises a plurality of pads fixedly arranged on the top wall of the barrel cover, a tray is fixedly arranged at the bottom end of the pads, a gear one is rotatably connected to the top center of the tray, a gear two is engaged with the right side of the gear one, an annular gear is engaged with the right side of the gear two, the annular gear is sleeved outside the gear one and the gear two, a motor is fixedly arranged on the top of the barrel cover, and the output end of the motor is connected to the center of the gear two; a clamping ring is fixedly arranged on the top of the annular gear, the clamping ring is in inverted L-shaped cross section, a positioning ring two is fixedly arranged on the side wall of the barrel cover, the clamping ring and the annular gear are clamped on the upper and lower sides of the positioning ring two, an annular groove is formed between the circumferential surface of the tray and the side wall of the barrel cover, a plurality of push rods are fixedly arranged at the bottom of the annular gear, the push rods pass through the annular groove and are inserted into the insertion holes, a rotating disc is rotatably connected to the bottom center of the tray, the rotating disc is coaxially fixed with the gear one, a plurality of connecting rods are fixedly arranged at the bottom of the rotating disc, a pressing ring is fixedly arranged at the bottom of the connecting rods, and a U-shaped buckle is fixedly arranged at the bottom of the pressing ring.
[0015] Preferably, a plurality of cleaning bristles are fixedly arranged at the bottom of the tray, and the cleaning bristles are inserted between the inner and outer retaining rings.
[0016] (Three) beneficial effects Compared with the prior art, the present application provides a color ultrasound probe disinfecting and cleaning device, which has the following beneficial effects: 1. The color ultrasound probe disinfecting and cleaning device, through the water inlet pipe, clean water, disinfectant and clean water are sequentially introduced into the inside of the containing barrel, the first clean water, first clean the color ultrasound probe, prevent the residual coupling agent on the surface of the color ultrasound probe from affecting the disinfection effect of the disinfectant, after the color ultrasound probe is disinfected by the disinfectant, the second clean water washes the residual disinfectant on the surface of the color ultrasound probe; the liquid introduced into the inside of the containing barrel by the water inlet pipe enters the annular flow channel and the bottom liquid cavity respectively; the liquid in the annular flow channel enters the inside of the annular pipe through the flow guide hole and is sprayed onto the outside of the color ultrasound probe through the spray hole one; the liquid in the bottom liquid cavity enters the flow guide groove and is sprayed onto the inside of the color ultrasound probe through the spray hole two; the color ultrasound probe is lifted to ensure that the sprayed liquid can cover the side surface of the color ultrasound probe, and the friction ring and the cleaning bristles rub the two ends of the color ultrasound probe, and the ultraviolet lamp one and the ultraviolet lamp two irradiate ultraviolet rays to ensure the cleaning and disinfection effect of the color ultrasound probe; 2. The color ultrasound probe disinfecting and cleaning device, through the water inlet pipe, air is introduced into the annular flow channel and the bottom liquid cavity, and the spray hole two and the spray hole one spray air onto the surface of the color ultrasound probe; the hollow plate and the annular grid are driven to rotate by the rotating driving part, the annular grid rubs the color ultrasound probe, the color ultrasound probe is shaken between the inner and outer retaining rings, and the residual water on the surface of the color ultrasound probe is easily removed; and the ultraviolet lamp one and the ultraviolet lamp two continuously irradiate ultraviolet rays on the color ultrasound probe to continuously disinfect the color ultrasound probe, so that the color ultrasound probe can be disinfected for a long time. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 A three-dimensional structure schematic diagram of a color ultrasound probe disinfection and cleaning device is provided for the present application; Figure 2 A front view cross-sectional structure schematic diagram of a color ultrasound probe disinfection and cleaning device is provided for the present application; Figure 3 A three-dimensional cross-sectional structure schematic diagram of a containing cylinder of a color ultrasound probe disinfection and cleaning device is provided for the present application; Figure 4 A three-dimensional structure schematic diagram of a surrounding basket of a color ultrasound probe disinfection and cleaning device is provided for the present application; Figure 5 A top view structure schematic diagram of a surrounding basket of a color ultrasound probe disinfection and cleaning device is provided for the present application; Figure 6 A three-dimensional structure schematic diagram of a central disinfection member and a peripheral disinfection member of a color ultrasound probe disinfection and cleaning device is provided for the present application; Figure 7 A three-dimensional structure schematic diagram of a bottom support member, a friction cleaning member and an annular spraying member of a color ultrasound probe disinfection and cleaning device is provided for the present application; Figure 8 A three-dimensional structure schematic diagram of a bottom support member and a friction cleaning member of a color ultrasound probe disinfection and cleaning device in a separated state is provided for the present application; Figure 9 A bottom view structure schematic diagram of a bottom support member and a friction cleaning member of a color ultrasound probe disinfection and cleaning device in a separated state is provided for the present application; Figure 10 A three-dimensional structure schematic diagram of a bottom support member and a friction cleaning member of a color ultrasound probe disinfection and cleaning device is provided for the present application; Figure 11 A three-dimensional cross-sectional structure schematic diagram of an annular spraying member of a color ultrasound probe disinfection and cleaning device is provided for the present application; Figure 12 A three-dimensional exploded structure schematic diagram of a central disinfection member of a color ultrasound probe disinfection and cleaning device is provided for the present application; Figure 13 A bottom view structure schematic diagram of a rotating drive member of a color ultrasound probe disinfection and cleaning device is provided for the present application; Figure 14 A three-dimensional exploded structure schematic diagram of a rotating drive member of a color ultrasound probe disinfection and cleaning device is provided for the present application.
[0018] In the figure: 100, a holding cylinder; 200, a cylinder cover; 300, a surrounding basket; 400, a bottom support; 500, a friction cleaning piece; 600, an annular spraying piece; 700, a central sterilizing piece; 800, a peripheral sterilizing piece; 900, a rotating driving piece; 101, a positioning ring one; 102, an annular slide rail; 103, a partition plate; 104, a gathering ring; 105, a water inlet pipe; 106, a drain pipe; 201, a positioning ring two; 301, an inner blocking ring; 302, an L-shaped rib; 303, a rotating ring; 304, a fixed ring; 305, a insertion hole; 306, an outer blocking ring; 307, a straight rib; 401, an annular grid; 402, an extension ring; 403, a sliding sleeve; 404, a cladding ring; 405, a sliding rod; 406, a sleeve; 407, a spring; 408, a hollow plate; 501, an annular seat; 502, a friction ring; 503, a holder; 504, a rack plate one; 505, a gear; 506, a rack plate two; 601, a water blocking ring; 602, an annular slide block; 603, a convex strip; 604, an annular pipe; 605, a flow guide hole; 606, a spray hole one; 701, an embedded column; 702, a UV lamp one; 703, a flow guide groove; 704, a glass cover; 705, a spray hole two; 801, a glass ring; 802, a UV lamp two; 901, a pad column; 902, a tray; 903, a gear one; 904, a gear two; 905, an annular gear; 906, a clamping ring; 907, a push column; 908, a motor; 909, a rotating disc; 910, a connecting rod; 911, a pressing ring; 912, a U-shaped buckle; 913, a cleaning brush. DETAILED DESCRIPTION
[0019] 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. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.
[0020] Please refer to Figures 1-2The utility model provides a kind of color ultrasonic probe disinfection cleaning device, including containing cylinder 100 and cylinder cover 200, buckle is provided on cylinder cover 200, containing cylinder 100 is provided with clamping strip, clamping strip inserts inside buckle, and cylinder cover 200 is positioned in longitudinal direction, so that cylinder cover 200 is stably covered in the top of containing cylinder 100. Rotatably connected with surrounding basket 300 in the upper half of containing cylinder 100, rotatably connected with bottom support 400 in the lower half of containing cylinder 100, friction cleaning piece 500 is connected with the slit of bottom support 400 in longitudinal direction, and friction cleaning piece 500 is located just below surrounding basket 300, color ultrasonic probe is inserted into surrounding basket 300 inside, and bottom support 400 or friction cleaning piece 500 supports color ultrasonic probe from bottom.
[0021] Annular spray piece 600 is sleeved on the outside of bottom support 400, and central disinfection piece 700 is fixedly installed at the center of containing cylinder 100, and annular spray piece 600 and central disinfection piece 700 are used to spray cleaning water, disinfectant or air to color ultrasonic probe. Four perimeter disinfection pieces 800 are fixedly installed on the sidewall of the upper half of containing cylinder 100, and the four perimeter disinfection pieces 800 are used to further disinfect color ultrasonic probe. Rotating drive 900 is arranged in the inside of cylinder cover 200, and rotating drive 900 is used to drive surrounding basket 300 and bottom support 400 to rotate in opposite directions.
[0022] Please refer to Figure 3 Positioning ring one 101 is fixedly installed on the inner wall of the top end of containing cylinder 100, annular slide rail 102 and baffle 103 are fixedly installed on the inner wall of the lower half of containing cylinder 100, and the top of baffle 103 is fixedly installed with gathering ring 104, annular spray piece 600 is rotatably connected on annular slide rail 102, and annular flow channel is formed between baffle 103, annular slide rail 102, annular spray piece 600 and the sidewall of containing cylinder 100, and bottom liquid cavity is formed between baffle 103 and the bottom wall of containing cylinder 100; Water inlet pipe 105 is connected to the left side of the bottom end of containing cylinder 100, and water inlet pipe 105 is communicated with annular flow channel and bottom liquid cavity simultaneously, so that cleaning water, disinfectant or air can enter annular flow channel and bottom liquid cavity simultaneously when being transported into the inside of containing cylinder 100 through water inlet pipe 105. Drain pipe 106 is fixedly penetrated on the right side of the bottom end of containing cylinder 100, and drainage hole is arranged between baffle 103 and drain pipe 106, and drainage hole is located inside gathering ring 104. Cleaning water and disinfectant gathered inside gathering ring 104 are discharged from drain pipe 106.
[0023] Please refer to Figures 4-5The enclosure basket 300 comprises inner enclosure rings 301 arranged along a vertical direction, the inner enclosure rings 301 are regular polygons, a plurality of the inner enclosure rings 301 are fixed together at corners by L-shaped ribs 302, the L-shaped ribs 302 are inverted L-shaped, the L-shaped ribs 302 are fixedly installed at top ends with rotating rings 303, the rotating rings 303 are U-shaped in cross section, and the rotating rings 303 are rotatably connected to the positioning ring one 101. The rotating rings 303 are fixedly installed at top portions with fixed rings 304, and the fixed rings 304 are arrayed with insertion holes 305 at top portions. Each of the inner enclosure rings 301 is sleeved with an outer enclosure ring 306 outside, the outer enclosure ring 306 is a regular polygon, and the number of sides of the outer enclosure ring 306 is equal to that of the inner enclosure ring 301. In this embodiment, the number of sides of the inner enclosure ring 301 and the outer enclosure ring 306 is eight. A plurality of the outer enclosure rings 306 are fixed together at corners by straight-line ribs 307, and the straight-line ribs 307 are fixedly installed at top ends of horizontal portions of the L-shaped ribs 302. Thus, the inner enclosure rings 301 and the outer enclosure rings 306 enclose a ring-shaped containing cage, and the side edges of the inner enclosure rings 301 and the outer enclosure rings 306 clamp and enclose the color Doppler probe from the inner and outer sides.
[0024] Please refer to Figures 6-7 and Figure 11 The annular spraying member 600 comprises a water blocking ring 601, the water blocking ring 601 is attached to a top portion of the partition plate 103, the water blocking ring 601 is fixedly installed with an annular sliding block 602 at an outer wall, the annular sliding block 602 is rotatably connected in the annular sliding rail 102, and the water blocking ring 601, the partition plate 103, the annular sliding rail 102 and the side wall of the containing cylinder 100 enclose an annular flow channel. The water blocking ring 601 is arrayed with convex strips 603 at an inner wall, the water blocking ring 601 is fixedly installed with an annular pipe 604 at a top portion, the annular pipe 604 is inclined at a top portion and faces the enclosure basket 300, the convex strips 603 are provided with flow guide holes 605 inside, the flow guide holes 605 are penetrated from a side of a bottom portion of the water blocking ring 601 and are communicated with the annular flow channel, the flow guide holes 605 are penetrated through a bottom portion of the annular pipe 604 and are communicated with the inside of the annular pipe 604, and the annular pipe 604 is arrayed with spraying holes one 606 at a top portion. The cleaning water, the disinfectant or the air passes through the flow guide holes 605 into the inside of the annular pipe 604 and is sprayed on the color Doppler probe in the enclosure basket 300 through the spraying holes one 606.
[0025] Please refer to Figures 7-10 The bottom support 400 comprises an annular grid 401, the annular grid 401 is attached with a rubber layer at a top portion to prevent scratching the color Doppler probe. The annular grid 401 is located directly below the enclosure basket 300, the annular grid 401 is fixedly installed with an extension ring 402 at a top edge, the extension ring 402 is attached to an inner side wall of the water blocking ring 601, the extension ring 402 is arrayed with sliding sleeves 403 at edges, and the sliding sleeves 403 are slidably connected to the convex strips 603. Thus, the annular grid 401, the extension ring 402 and the water blocking ring 601 can be synchronously rotated, and the annular grid 401 and the extension ring 402 are lifted and lowered relative to the water blocking ring 601.
[0026] The inner edge of the extension ring 402 is fixedly installed with a downwardly extending covering ring 404, and the bottom of the extension ring 402 is fixedly installed with elastic supports, and the inner wall of the bottom end of the ring-shaped grid 401 is fixedly installed with a hollow plate 408. The elastic supports comprise a sliding rod 405 fixedly installed at the bottom of the extension ring 402, the outer side of the bottom end of the sliding rod 405 is sleeved with a sleeve 406, the bottom end of the sliding rod 405 and the bottom wall of the sleeve 406 are fixedly installed with a spring 407, and the bottom end of the sleeve 406 is attached to the top of the partition plate 103. Through the elasticity of the spring 407, the extension ring 402 and the ring-shaped grid 401 have a tendency to move upward.
[0027] Please refer to Figures 7-10 , the friction cleaning piece 500 comprises a ring-shaped seat 501 sleeved outside the converging ring 104, the cross section of the ring-shaped seat 501 is in inverted L shape, the top of the ring-shaped seat 501 is fixedly installed with a friction ring 502, the top of the friction ring 502 is in wave shape, the friction ring 502 passes through the gap of the ring-shaped grid 401, the top of the friction ring 502 is covered with sponge, or fixedly installed with bristles. The covering ring 404 is sleeved outside the ring-shaped seat 501, the bottom end of the ring-shaped seat 501 is fixedly installed with a plurality of tosas 503 on the outer wall, the tosas 503 are located outside the covering ring 404, the top of the tosa 503 is fixedly installed with a rack plate one 504, the rack plate one 504 is engaged with a transmission gear 505, the transmission gear 505 is rotationally connected to the inner wall of the water retaining ring 601, the side of the transmission gear 505 away from the rack plate one 504 is engaged with a rack plate two 506, and the rack plate two 506 is fixedly installed at the bottom of the extension ring 402. Thus, the ring-shaped grid 401 and the ring-shaped seat 501 move in opposite directions, when the ring-shaped grid 401 descends, the ring-shaped seat 501 rises, and when the extension ring 402 rises, the ring-shaped seat 501 descends.
[0028] Please refer to Figure 6 and Figure 12 , the central disinfecting piece 700 comprises an embedded column 701 fixedly penetrating the center of the partition plate 103, a plurality of ultraviolet lamps one 702 are arranged on the upper half of the embedded column 701, a plurality of flow guide grooves 703 are arranged on the circumferential surface of the embedded column 701, a glass cover 704 is sleeved outside the embedded column 701, the glass cover 704 seals the top opening and the side opening of the flow guide groove 703 and protects the ultraviolet lamp one 702, preventing the ultraviolet lamp one 702 from contacting water. The bottom opening of the flow guide groove 703 is in communication with the bottom liquid cavity, a plurality of spray holes two 705 are arranged on the circumferential surface of the glass cover 704 in an array, and the spray holes two 705 are in communication with the flow guide groove 703. Thus, cleaning water, disinfectant or air enters the flow guide groove 703 from the bottom liquid cavity, and is sprayed onto the color Doppler probe through the spray holes two 705.
[0029] Please refer to Figure 6The four-week disinfection device 800 includes a glass ring 801 fixedly installed on the upper half of the side wall of the containing cylinder 100, which is attached to the top of the annular sliding rail 102 and the bottom of the rotating ring 303, and an annular accommodating cavity is formed between the glass ring 801 and the side wall of the containing cylinder 100, and a plurality of ultraviolet lamps 802 are arranged in the annular accommodating cavity.
[0030] Please refer to Figure 7 and Figures 13-14 The rotating drive 900 includes a plurality of cushion columns 901 fixedly arranged on the top wall of the cylinder cover 200, and a tray 902 is fixedly installed at the bottom end of the cushion column 901, and a sandwich layer is formed between the tray 902 and the top wall of the cylinder cover 200 through the spacing effect of the cushion column 901. A gear one 903 is rotatably connected to the top center of the tray 902, a gear two 904 is engaged on the right side of the gear one 903, and an annular gear 905 is engaged on the right side of the gear two 904. The annular gear 905 is sleeved outside the gear one 903 and the gear two 904, and the gear one 903, the gear two 904 and the annular gear 905 are all in the sandwich layer. A motor 908 is fixedly installed at the top of the cylinder cover 200, and the output end of the motor 908 is connected to the center of the gear two 904. The gear one 903 and the annular gear 905 are simultaneously driven to rotate by the gear two 904, and the gear one 903 and the annular gear 905 rotate in opposite directions.
[0031] The annular gear 905 is fixedly installed at the top of the annular gear 905, and the cross section of the clamping ring 906 is inverted L-shaped. A positioning ring two 201 is fixedly installed on the side wall of the cylinder cover 200, and the clamping ring 906 and the annular gear 905 are clamped on the upper and lower sides of the positioning ring two 201, so as to limit the annular gear 905. An annular groove is formed between the circumferential surface of the tray 902 and the side wall of the cylinder cover 200, and a plurality of push columns 907 are fixedly arranged at the bottom of the annular gear 905. The push columns 907 pass through the annular groove and are inserted into the insertion hole 305. When the annular gear 905 rotates, the insertion hole 305 rotates synchronously.
[0032] A turntable 909 is rotatably connected to the bottom center of the tray 902, and the turntable 909 is coaxially fixed with the gear one 903. A plurality of connecting rods 910 are fixedly arranged at the bottom of the turntable 909, and the connecting rods 910 are located between the central disinfection device 700 and the surrounding barrier basket 300. A pressing ring 911 is fixedly installed at the bottom of the connecting rod 910, and a plurality of U-shaped buckles 912 are fixedly arranged at the bottom of the pressing ring 911. The U-shaped buckle 912 is clamped on the hollow plate 408, and when the gear one 903 rotates, the hollow plate 408 is driven to rotate through the turntable 909, the connecting rod 910, the pressing ring 911 and the U-shaped buckle 912, and the annular grid 401 and the annular seat 501 are further driven to rotate.
[0033] The bottom array of the tray 902 is fixed with cleaning bristles 913 which are inserted between the inner retaining ring 301 and the outer retaining ring 306. When the annular grid 401 and the annular seat 501 rotate, the friction ring 502 rotates synchronously, the inner retaining ring 301 and the outer retaining ring 306 rotate in opposite directions, so that the color Doppler probe moves along the top of the friction ring 502, and the color Doppler probe continuously rises and falls to contact the cleaning bristles 913, thereby cleaning the top of the color Doppler probe by the cleaning bristles 913. During the rotation of the surrounding retaining basket 300, the horizontal part of the L-shaped rib 302 extrudes the cleaning bristles 913, causing the cleaning bristles 913 to bend. After the L-shaped rib 302 and the cleaning bristles 913 are misaligned, the cleaning bristles 913 rebound and reset and act on the top of the color Doppler probe.
[0034] In use, first, the cylinder cover 200 is removed from the containing cylinder 100, the color Doppler probe is inserted between the inner retaining ring 301 and the outer retaining ring 306, and the annular grid 401 supports the color Doppler probe; then the cylinder cover 200 is placed on the top of the containing cylinder 100, the compression ring 911 is sleeved on the outside of the central sterilization member 700, the U-shaped buckle 912 is clamped on the hollow plate 408, and the cylinder cover 200 is pressed downward so that the push column 907 is inserted into the insertion hole 305 and the cylinder cover 200 is fixed on the top of the containing cylinder 100 by the buckle ring and the clamping strip; During the process of pressing the cylinder cover 200 downward, the hollow plate 408 is pushed downward by the compression ring 911, thereby driving the annular grid 401 to move downward, and through the transmission action of the rack plate one 504, the transmission gear 505 and the rack plate two 506, the annular seat 501 and the friction ring 502 are driven to move upward, so that the friction ring 502 is attached to the bottom of the color Doppler probe; The gear two 904 is driven to rotate by the motor 908, thereby driving the gear one 903 and the annular gear 905 to rotate in opposite directions, so that the surrounding retaining basket 300 and the bottom support member 400 rotate in opposite directions, and the color Doppler probe moves along the top of the friction ring 502, so that the color Doppler probe moves up and down between the inner retaining ring 301 and the outer retaining ring 306; Simultaneously, cleaning water, disinfectant, and cleaning water are sequentially introduced into the holding cylinder 100 through the water inlet pipe 105. The first rinse of cleaning water cleans the color Doppler ultrasound probe, and after the disinfectant disinfects the probe, the second rinse of cleaning water washes off any residual disinfectant from the probe's surface. The liquid introduced into the holding cylinder 100 through the water inlet pipe 105 enters the annular flow channel and the bottom liquid chamber, respectively. The liquid inside the annular flow channel enters the annular tube 604 through the guide hole 605 and is sprayed onto the outer surface of the color Doppler ultrasound probe through the first spray hole 606. The liquid inside the bottom liquid chamber enters the guide groove 703 and is sprayed onto the inner surface of the color Doppler ultrasound probe through the second spray hole 705. The color Doppler ultrasound probe is raised and lowered to ensure that the sprayed liquid covers the sides of the probe. At the same time, the friction ring 502 and the cleaning bristles 913 rub the two ends of the probe, and ultraviolet lamps 702 and 802 irradiate the probe with ultraviolet light to ensure the cleaning and disinfection effect. Next, release the limiting structure [buckle and retaining strip] between the cap 200 and the container 100, allowing the extension ring 402 to move upward under the elastic action of the spring 407, and the annular seat 501 to move downward, so that the annular grille 401 is supported at the bottom of the ultrasound probe, facilitating water drainage from the ultrasound probe and separating the ultrasound probe from the cleaning brush bristles 913. The U-shaped buckle 912 remains fastened to the perforated plate 408, and the cap 200 still seals the top of the container 100. The push post 907 is pulled out from the insertion hole 305 and then flows through the water inlet pipe 10. Air is introduced into the annular flow channel and the bottom liquid chamber, and air is sprayed onto the surface of the color ultrasound probe by nozzle 705 and nozzle 606. The perforated plate 408 and the annular grid 401 are driven to rotate by the rotating drive component 900. The annular grid 401 rubs against the color ultrasound probe, causing the color ultrasound probe to vibrate between the inner retaining ring 301 and the outer retaining ring 306, which facilitates the removal of residual water on the surface of the color ultrasound probe. Ultraviolet light 702 and ultraviolet light 802 continuously irradiate the color ultrasound probe with ultraviolet light to continuously disinfect the color ultrasound probe.
[0035] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A color ultrasound probe disinfecting and cleaning device, comprising a containing barrel (100) and a barrel cover (200), characterized in that: The upper half of the containing cylinder (100) is rotationally connected with a surrounding basket (300), the lower half of the containing cylinder (100) is rotationally connected with a bottom support (400), the gap of the bottom support (400) is longitudinally slidably connected with a friction cleaning piece (500), the friction cleaning piece (500) is located directly below the surrounding basket (300), the outer side of the bottom support (400) is sleeved with an annular spraying piece (600), the center of the containing cylinder (100) is fixedly installed with a central sterilizing piece (700), the sidewall of the upper half of the containing cylinder (100) is fixedly installed with a peripheral sterilizing piece (800), the inside of the cylinder cover (200) is provided with a rotary driving piece (900), and the rotary driving piece (900) is used to drive the surrounding basket (300) and the bottom support (400) to rotate in opposite directions.
2. The ultrasonic probe disinfecting and cleaning device according to claim 1, characterized in that: The inner wall of the top end of the containing cylinder (100) is fixedly installed with a positioning ring one (101), the inner wall of the lower half of the containing cylinder (100) is fixedly installed with an annular sliding rail (102) and a partition plate (103), the top of the partition plate (103) is fixedly installed with a gathering ring (104), the annular spraying piece (600) is rotationally connected on the annular sliding rail (102), and the annular flow channel is formed between the partition plate (103), the annular sliding rail (102), the annular spraying piece (600) and the sidewall of the containing cylinder (100). The bottom end of the containing cylinder (100) is connected with a water inlet pipe (105), the water inlet pipe (105) is in communication with the annular flow channel and the bottom liquid cavity, the bottom end of the containing cylinder (100) is fixedly penetrated with a drain pipe (106), and the partition plate (103) and the drain pipe (106) are provided with a drain hole, which is located on the inside of the gathering ring (104).
3. The ultrasonic probe disinfecting and cleaning device according to claim 1, characterized in that: The surrounding basket (300) comprises an inner blocking ring (301) arranged in a vertical direction, the inner blocking ring (301) is a regular polygon, a plurality of L-shaped ribs (302) are fixed together at the corners of the plurality of inner blocking rings (301), the L-shaped rib (302) is inverted L-shaped, a rotating ring (303) is fixedly installed at the top end of the L-shaped rib (302), the rotating ring (303) is U-shaped in cross section, a fixed ring (304) is fixedly installed at the top of the rotating ring (303), and a plurality of insertion holes (305) are arranged at the top of the fixed ring (304). Each outer blocking ring (306) is sleeved with an outer blocking ring (306), the outer blocking ring (306) is a regular polygon, the number of sides of the outer blocking ring (306) is equal to the number of sides of the inner blocking ring (301), a plurality of straight-line ribs (307) are fixed together at the corners of the plurality of outer blocking rings (306), and the top end of the straight-line rib (307) is fixedly installed at the bottom of the horizontal part of the L-shaped rib (302).
4. The ultrasonic probe disinfecting and cleaning device according to claim 1, characterized in that: The annular spraying piece (600) comprises a water baffle ring (601), the bottom of the water baffle ring (601) is attached to the top of the partition plate (103), an annular sliding block (602) is fixedly installed on the outer wall of the water baffle ring (601), the annular sliding block (602) is rotatably connected in the annular sliding rail (102), a plurality of convex strips (603) are fixedly arranged on the inner wall of the water baffle ring (601), an annular pipe (604) is fixedly installed on the top of the water baffle ring (601), the top of the annular pipe (604) is inclined and faces the surrounding basket (300), a flow guide hole (605) is arranged in the convex strip (603), the bottom end of the flow guide hole (605) penetrates out of the side of the bottom of the water baffle ring (601) and communicates with the annular flow channel, the top end of the flow guide hole (605) penetrates through the bottom of the annular pipe (604) and communicates with the inside of the annular pipe (604), and a plurality of spray holes (606) are arranged in the top of the annular pipe (604).
5. The ultrasonic probe disinfecting and cleaning device according to claim 1, characterized in that: The bottom support (400) comprises an annular grid (401), the annular grid (401) is located directly below the surrounding basket (300), an extension ring (402) is fixedly installed on the top edge of the annular grid (401), the extension ring (402) is attached to the inner side wall of the water baffle ring (601), a plurality of sliding sleeves (403) are arranged on the edge of the extension ring (402), the sliding sleeves (403) are slidably connected to the convex strips (603), a downwardly extending cladding ring (404) is fixedly installed on the inner side edge of the extension ring (402), a plurality of elastic support members are fixedly arranged on the bottom of the extension ring (402), and a hollow plate (408) is fixedly installed on the inner wall of the bottom end of the annular grid (401). The elastic support member comprises a sliding rod (405) fixedly installed on the bottom of the extension ring (402), a sleeve (406) is sleeved on the outer side of the bottom end of the sliding rod (405), a spring (407) is fixedly installed between the bottom end of the sliding rod (405) and the bottom wall of the sleeve (406), and the bottom end of the sleeve (406) is attached to the top of the partition plate (103).
6. The ultrasonic probe disinfecting and cleaning device according to claim 5, characterized in that: The friction cleaning member (500) comprises an annular seat (501) sleeved on the outer side of the converging ring (104), the annular seat (501) is in inverted L-shaped cross section, a friction ring (502) is fixedly installed on the top of the annular seat (501), the top of the friction ring (502) is in wave shape, the friction ring (502) penetrates through the gap of the annular grid (401), and the cladding ring (404) is sleeved on the outer side of the annular seat (501). A plurality of brackets (503) are fixedly arranged on the outer wall of the bottom end of the annular seat (501), a rack plate one (504) is fixedly installed on the top of the bracket (503), the rack plate one (504) is engaged with a transmission gear (505), the transmission gear (505) is rotatably connected to the inner wall of the water baffle ring (601), a rack plate two (506) is engaged with the transmission gear (505) away from the rack plate one (504), and the rack plate two (506) is fixedly installed on the bottom of the extension ring (402).
7. The ultrasonic probe disinfecting and cleaning device according to claim 1, characterized in that: The center disinfecting part (700) comprises an embedded column (701) fixed at the center of the partition plate (103), an ultraviolet lamp I (702) is arranged on the upper half of the embedded column (701), a flow guide groove (703) is arranged on the circumference of the embedded column (701), a glass cover (704) is sleeved outside the embedded column (701), the glass cover (704) seals the top opening and the side opening of the flow guide groove (703), the bottom opening of the flow guide groove (703) is communicated with the bottom liquid cavity, a second spray hole (705) is arranged on the circumference of the glass cover (704), and the second spray hole (705) is communicated with the flow guide groove (703).
8. The ultrasonic probe disinfecting and cleaning device according to claim 1, characterized in that: The peripheral disinfecting part (800) comprises a glass ring (801) fixedly installed on the upper half of the sidewall of the containing cylinder (100), the glass ring (801) is attached to the top of the annular slide rail (102) and the bottom of the rotating ring (303), an annular accommodating cavity is formed between the glass ring (801) and the sidewall of the containing cylinder (100), and an ultraviolet lamp II (802) is arranged in the annular accommodating cavity.
9. The ultrasonic probe disinfecting and cleaning device according to claim 1, characterized in that: The rotating driving part (900) comprises a pad column (901) fixedly arranged on the top wall of the cylinder cover (200), a tray (902) is fixedly installed at the bottom end of the pad column (901), a gear I (903) is rotatably connected to the top center of the tray (902), a gear II (904) is engaged on the right side of the gear I (903), an annular gear (905) is engaged on the right side of the gear II (904), the annular gear (905) is sleeved outside the gear I (903) and the gear II (904), a motor (908) is fixedly installed on the top of the cylinder cover (200), and the output end of the motor (908) is connected to the center of the gear II (904). An clamping ring (906) is fixedly installed on the top of the annular gear (905), the clamping ring (906) is in inverted L-shaped cross section, a positioning ring II (201) is fixedly installed on the sidewall of the cylinder cover (200), the clamping ring (906) and the annular gear (905) are clamped on the upper and lower sides of the positioning ring II (201), an annular groove is formed between the circumferential surface of the tray (902) and the sidewall of the cylinder cover (200), push columns (907) are fixedly arranged on the bottom of the annular gear (905), the push columns (907) pass through the annular groove and are inserted into the insertion hole (305). A rotating disc (909) is rotatably connected to the bottom center of the tray (902), the rotating disc (909) is coaxially fixed with the gear I (903), connecting rods (910) are fixedly arranged on the bottom of the rotating disc (909), a pressing ring (911) is fixedly installed on the bottom of the connecting rods (910), and U-shaped buckles (912) are fixedly arranged on the bottom of the pressing ring (911).
10. The ultrasonic probe disinfecting and cleaning device according to claim 9, characterized in that: Cleaning brush hairs (913) are fixedly arranged on the bottom of the tray (902), and the cleaning brush hairs (913) are inserted between the inner blocking ring (301) and the outer blocking ring (306).
Citation Information
Patent Citations
Automatic cleaning and disinfection device for color ultrasound probe
CN118122684B