A clinical medical care medicine dispensing and disinfection device
Through the combined design of the air guide module and the scraping module, the problem of poor removal of ampoule disinfectant is solved, the rapid collection and efficient removal of disinfectant is achieved, and the efficiency of the disinfectant is improved.
Patent Information
- Application Number
- CN202510449478.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-11
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2045-04-11
AI Technical Summary
In the prior art, the removal effect of ampoule disinfectant is poor, especially when there is less disinfectant, it takes a slow time to form water droplets, and the adhesion disinfectant cannot be fully removed, which increases the removal time of disinfectant.
The combination of the air guide module and the scraping module is adopted to increase the wind power through the air guide module to strengthen the collection and drop effect of disinfectant. The scraping module is used to scrape the disinfectant attached to the outer wall of the ampoule bottle, and collect the disinfectant in combination with the receiving module.
It improves the collection rate and removal efficiency of the disinfectant, ensures that the disinfectant can quickly collect water droplets and fall, reduces the removal time of the disinfectant, and achieves more efficient disinfectant removal.
Smart Images

Figure CN119950786B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of medical care auxiliary equipment, and in particular relates to a clinical medical care medicine dispensing and disinfection device. Background Art
[0002] When caring for patients, infusion is required. Among them, the ampoules used in preparing therapeutic liquids need to be disinfected. In the prior art, in a clinical medical care dispensing and disinfection device with a published application number of 202210627362.8, the atomized disinfectant and the ampoule are restricted to prevent the atomized disinfectant from escaping easily, and the ampoule is turned upside down so that the disinfectant attached to the outer wall of the ampoule is gathered into water droplets and drips under the action of gravity. However, the removal of the disinfectant on the ampoule is only through the action of gravity, and its removal effect is insufficient. That is, when there is less disinfectant, it takes a long time for it to gather into water droplets, or it may even fail to fall and gather into water droplets. Therefore, not only is the removal time of the disinfectant increased, but the attached disinfectant cannot be fully removed. Summary of the Invention
[0003] The purpose of the present invention is to provide a clinical medical care medicine dispensing disinfection device to solve the problems raised in the above background technology.
[0004] To achieve the above object, the present invention provides the following technical solutions:
[0005] A clinical medical care dispensing disinfection device includes a placement plate, a disinfection cavity is opened in a circumferential array in the placement plate, the disinfection cavity passes through the placement plate from top to bottom, an air guide module is provided on the top of the disinfection cavity, the air guide module includes a branch pipe, a main pipe and an air pump, the branch pipe is provided above the disinfection cavity, the main pipe is connected to the top of the branch pipe, the air pump is provided in the middle above the placement plate, a mist release module is provided outside the placement plate, the mist release module includes an inner concave ring, a first conduit and a second conduit, the inner concave ring is provided in the middle of the outer wall of the placement plate, and a circumferential array of conduits is connected to the outside of the placement plate. The wall, two ends of the conduit are respectively connected to the disinfection chamber and the concave ring, the second conduit is connected to the middle part of the right side of the outer wall of the concave ring, the bottom of the mounting plate is connected with a receiving module, the receiving module includes an outer oblique ring, an inner oblique ring and a receiving tube, the outer oblique ring and the inner oblique ring are both connected to the bottom of the mounting plate, the receiving tube is connected to the bottom end of the outer oblique ring, an ampoule bottle is provided in the disinfection chamber, a scraping module is provided on the outside of the ampoule bottle, the scraping module includes a scraper and a fan blade, the scrapers are symmetrically arranged on both sides of the ampoule bottle, and the fan blade is connected to the bottom of the scraper and the ampoule bottle on the opposite side.
[0006] Preferably, the air guiding module further includes a sealing top plate, a hollow circular plate and a connecting pipe fitting. The sealing top plate is arranged on the top of the placement plate in a circumferential array, and the sealing top plate is located at the top of the disinfection chamber. The connecting pipe fitting is connected to the top of the air pump. The hollow circular plate is connected to the top of the connecting pipe fitting, and the connecting pipe fitting is communicated with the inner cavity of the hollow circular plate. One end of the main pipe away from the branch pipe is connected to the hollow circular plate, and the main pipe is communicated with the inner cavity of the hollow circular plate. Both ends of the branch pipe penetrate through the sealing top plate and are communicated with the disinfection chamber. When the air pump is turned on, gas is blown into the disinfection chamber through the connecting pipe fitting, the hollow circular plate, the main pipe and the branch pipe.
[0007] Preferably, the air guiding module further includes a bottom plate, a circular plate member, a circular cavity, an electric telescopic rod, a branch rod and a support rod. The bottom plate is connected to the middle of the bottom of the placement plate. The circular cavity is opened in the middle of the placement plate and penetrates through the placement plate up and down. The electric telescopic rod is arranged in the circular cavity, and the bottom end of the electric telescopic rod is connected to the middle of the top of the bottom plate. The circular plate member is arranged on the top of the placement plate and is located at the top of the circular cavity. The output end of the top of the electric telescopic rod is connected to the circular plate member. The branch rods are connected to the outer wall of the circular plate member in a circumferential array, and one end of the branch rod away from the circular plate member is connected to the sealing top plate. The support rod is connected to the top of the branch rod, and one end of the support rod away from the branch rod is connected to the hollow circular plate. The air pump is connected to the circular plate member through a positioning bolt. When the electric telescopic rod is turned on, the output end of the electric telescopic rod drives the circular plate member, the branch rod and the sealing top plate to rise and fall.
[0008] Preferably, the air guiding module further includes a vertical plate member, a first-level equipment notch, a first-level contact switch, a second-level equipment notch and a second-level contact switch. The vertical plate member is connected to the bottom end of the branch rod on the right side and is located in the circular cavity. The right side of the vertical plate member is attached to the placement plate. The first-level equipment notch is opened at the bottom end of the vertical plate member, and the first-level contact switch is embedded in the first-level equipment notch. The second-level equipment notch is opened below the right side of the vertical plate member, and the second-level contact switch is embedded in the second-level equipment notch. The vertical plate member descends as the branch rod descends. When the first-level contact switch contacts the bottom plate, the first-level contact switch transmits a signal to the external device terminal. The external device terminal receives the signal and controls the electric telescopic rod to close, thereby completing the setting of the air guiding module and the fixing of the ampoule bottle. When the ampoule bottle needs to be taken out, the electric telescopic rod is turned on, and the output end of the electric telescopic rod drives the circular plate member to rise. The vertical plate member rises accordingly. When the second-level contact switch rises to the top of the placement plate and does not contact the placement plate, the second-level contact switch transmits a signal to the external device terminal. The external device terminal receives the signal and controls the electric telescopic rod to close, so that the ampoule bottle is exposed.
[0009] Preferably, the air guide module also includes a mounting rod, an inner groove opening, a push rod, a return spring, a limiting notch, a limiting block and a pressing plate, the mounting rod is connected to the middle of the bottom of the sealing top plate, the inner groove opening is opened at the bottom of the mounting rod, the push rod and the return spring are both arranged in the inner groove opening, the upper and lower ends of the return spring are respectively connected to the mounting rod and the push rod, the pressing plate is arranged under the mounting rod, and the bottom end of the push rod passes through the inner groove opening and is connected to the middle of the top of the pressing plate, the limiting notch is symmetrically opened in the mounting rod, and the limiting notch is connected to the inner groove opening, the limiting block slides in the limiting notch, and the limiting block is connected to the push rod. As the sealing top plate descends, the pressing plate contacts the ampoule bottle, and the return spring causes the push rod and the pressing plate to press the ampoule bottle. The setting of the limiting block and the limiting notch can limit the push rod so that the push rod will not disengage from the inner groove opening.
[0010] Preferably, the mist release module also includes a one-way valve and a first-level assembly plate. The one-way valve is arranged on the first conduit, and the one-way valve is inside the concave ring. The first-level assembly plate is connected to the top and bottom of the concave ring in a circular array, and the first-level assembly plate is connected to the mounting plate through positioning bolts. The setting of the one-way valve prevents the gas blown out by the air guide module from entering the concave ring through the first conduit.
[0011] Preferably, the scraping module also includes a fixed column, an annular groove, an arc-shaped plate, a locking groove and a stabilizing rod. The fixed column is arranged at the middle bottom end inside the disinfection chamber. The circumferential array of the stabilizing rod is connected to the bottom end of the outer wall of the fixed column, and the end of the stabilizing rod away from the fixed column is connected to the mounting plate. The annular groove is opened in the middle of the outer wall of the fixed column. The bottom end of the scraper on the side opposite to the ampoule bottle is locked in the annular groove. The arc-shaped plate is symmetrically arranged in the annular groove, and both ends of the arc-shaped plate are connected to the scraper. The locking groove is opened in the middle of the top of the fixed column, and the head end of the ampoule bottle is locked in the locking groove. The arrangement of the arc-shaped plate and the annular groove can limit the scraper to ensure the stability of the scraper without affecting the rotation effect of the scraper.
[0012] Preferably, the receiving module further comprises a secondary assembly plate and a discharge pipe. The secondary assembly plate is connected to the top of the receiving tube in a circumferential array, and the secondary assembly plate is connected to the outer oblique ring through a positioning bolt. The discharge pipe is connected to the bottom right side of the outer wall of the receiving tube, and the disinfectant in the receiving tube is discharged and collected through the discharge pipe.
[0013] The chamber between the inner side of the outer oblique ring and the outer side of the inner oblique ring is connected to the disinfection chamber. The disinfectant blown out of the disinfection chamber enters the receiving tube through the chamber formed between the inner side of the outer oblique ring and the outer side of the inner oblique ring.
[0014] Compared with the prior art, the beneficial effects of the present invention are as follows: When the present invention is in use, the atomized disinfectant liquid is guided to the inner concave ring through the second conduit, and then guided to the disinfection chamber through the first conduit to disinfect the ampoule bottle. After the disinfection is completed, by adding a wind guiding module, the disinfectant liquid attached to the ampoule bottle is blown downward. In addition to gravity, an additional wind force is applied to strengthen the collection and falling effect of the disinfectant liquid. During the wind guiding process, the wind force acts on the fan blades, and the fan blades drive the scraper to rotate, thereby scraping the disinfectant liquid attached to the outer wall of the ampoule bottle, increasing the collection rate of the disinfectant liquid. At the same time, the disinfectant liquid that converges into water droplets and falls, under the action of the wind force, is blown out of the disinfection chamber and enters the receiving cylinder through the chamber formed between the inner side of the outer inclined ring and the outer side of the inner inclined ring to collect the disinfectant liquid. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a schematic diagram of the overall structure of a clinical medical nursing medicine dispensing and disinfection device.
[0016] Figure 2 It is a schematic diagram of the bottom structure of a clinical medical nursing medicine dispensing and disinfection device.
[0017] Figure 3 It is a schematic diagram of the connecting pipe fittings of a clinical medical nursing medicine dispensing and disinfection device.
[0018] Figure 4 It is a schematic diagram of the sealed top plate of a clinical medical nursing medicine dispensing and disinfection device.
[0019] Figure 5 It is a schematic diagram of the disinfection chamber of a clinical medical nursing medicine dispensing and disinfection device.
[0020] Figure 6 It is a schematic cross-sectional view of the placement plate of a clinical medical nursing medicine dispensing and disinfection device.
[0021] Figure 7 It is a schematic diagram of the bottom plate of a clinical medical nursing medicine dispensing and disinfection device.
[0022] Figure 8 It is a schematic diagram of the circular cavity of a clinical medical nursing medicine dispensing and disinfection device.
[0023] Figure 9 It is a schematic diagram of the vertical plate member of a clinical medical nursing medicine dispensing and disinfection device.
[0024] Figure 10 It is a schematic diagram of the scraper of a clinical medical nursing medicine dispensing and disinfection device.
[0025] Figure 11 It is a schematic diagram of the installation rod of a clinical medical nursing medicine dispensing and disinfection device.
[0026] Figure 12This is a schematic diagram of the secondary assembly panel of a clinical medical care dispensing and disinfection device.
[0027] In the figure: 1. Placement plate; 2. Disinfection chamber; 3. Air guide module; 31. Branch pipe; 32. Main pipe; 33. Air pump; 34. Sealing top plate; 35. Hollow circular plate; 36. Connecting pipe; 37. Bottom plate; 38. Circular plate; 39. Circular cavity; 310. Electric telescopic rod; 311. Branch rod; 312. Support rod; 313. Vertical plate; 314. First-level equipment notch; 315. First-level contact switch; 316. Second-level equipment notch; 317. Second-level contact switch; 318. Mounting rod; 319. Inner groove notch; 320. Stop rod. 321. Return spring; 322. Limiting notch; 323. Limiting block; 324. Pressing plate; 4. Mist release module; 41. Inner concave ring; 42. Conduit one; 43. Conduit two; 44. One-way valve; 45. Primary assembly plate; 5. Receiver module; 51. External oblique ring; 52. Internal oblique ring; 53. Receiver cylinder; 54. Secondary assembly plate; 55. Discharge pipe; 6. Ampoule; 7. Scraper module; 71. Scraper; 72. Fan blade; 73. Fixing column; 74. Annular notch; 75. Arc-shaped plate; 76. Engaging notch; 77. Stabilizing rod. DETAILED DESCRIPTION
[0028] Example 1. Please refer to Figures 1 - 12 As shown, a clinical medical care dispensing disinfection device includes a placement plate 1, a disinfection chamber 2 is opened in a circumferential array in the placement plate 1, the disinfection chamber 2 passes through the placement plate 1 up and down, and an air guide module 3 is provided on the top of the disinfection chamber 2. The air guide module 3 includes a branch pipe 31, a main pipe 32 and an air pump 33. The branch pipe 31 is arranged above the disinfection chamber 2, the main pipe 32 is connected to the top of the branch pipe 31, and the air pump 33 is arranged in the middle above the placement plate 1. A mist release module 4 is provided outside the placement plate 1, and the mist release module 4 includes an inner concave ring 41, a conduit 1 42 and a conduit 2 43. The inner concave ring 41 is sleeved on the middle of the outer wall of the placement plate 1, and the conduit 1 42 is connected to the outer wall of the placement plate 1 in a circumferential array. The two ends of the conduit 1 42 are respectively connected to the disinfection chamber 2 and the concave ring 41. The conduit 2 43 is connected to the middle part of the right side of the outer wall of the concave ring 41. The bottom of the placement plate 1 is connected to the receiving module 5, which includes an outer oblique ring 51, an inner oblique ring 52 and a receiving tube 53. The outer oblique ring 51 and the inner oblique ring 52 are both connected to the bottom of the placement plate 1. The receiving tube 53 is connected to the bottom end of the outer oblique ring 51. An ampoule bottle 6 is provided in the disinfection chamber 2. A scraping module 7 is provided on the outside of the ampoule bottle 6. The scraping module 7 includes a scraper 71 and a fan blade 72. The scrapers 71 are symmetrically arranged on both sides of the ampoule bottle 6. The fan blade 72 is connected to the bottom of the scraper 71 on the opposite side of the ampoule bottle 6.
[0029] refer to Figure 1 , Figure 3 and Figure 4As shown, the air guiding module 3 further includes a sealing top plate 34, a hollow circular plate 35 and a connecting pipe fitting 36. The sealing top plate 34 is arranged in a circumferential array on the top of the placement plate 1, and the sealing top plate 34 is located at the top of the disinfection chamber 2. The connecting pipe fitting 36 is connected to the top of the air pump 33. The hollow circular plate 35 is connected to the top of the connecting pipe fitting 36, and the connecting pipe fitting 36 is communicated with the inner cavity of the hollow circular plate 35. One end of the main pipe 32 away from the branch pipe 31 is connected to the hollow circular plate 35, and the main pipe 32 is communicated with the inner cavity of the hollow circular plate 35. Both ends of the branch pipe 31 penetrate through the sealing top plate 34 and are communicated with the disinfection chamber 2. When the air pump 33 is turned on, gas is blown into the disinfection chamber 2 through the connecting pipe fitting 36, the hollow circular plate 35, the main pipe 32 and the branch pipe 31.
[0030] Reference Figure 1 、 Figures 3 - 8 As shown, the air guiding module 3 further includes a bottom plate 37, a circular plate member 38, a circular cavity 39, an electric telescopic rod 310, a branch rod member 311 and a support rod 312. The bottom plate 37 is connected to the middle of the bottom of the placement plate 1. The circular cavity 39 is opened in the middle of the placement plate 1, and the circular cavity 39 penetrates through the placement plate 1 up and down. The electric telescopic rod 310 is arranged in the circular cavity 39, and the bottom end of the electric telescopic rod 310 is connected to the middle of the top of the bottom plate 37. The circular plate member 38 is arranged on the top of the placement plate 1, and the circular plate member 38 is located at the top of the circular cavity 39. The output end of the top of the electric telescopic rod 310 is connected to the circular plate member 38. The branch rod members 311 are connected to the outer wall of the circular plate member 38 in a circumferential array, and one end of the branch rod member 311 away from the circular plate member 38 is connected to the sealing top plate 34. The support rod 312 is connected to the top of the branch rod member 311, and one end of the support rod 312 away from the branch rod member 311 is connected to the hollow circular plate 35. The air pump 33 is connected to the circular plate member 38 through a positioning bolt. When the electric telescopic rod 310 is turned on, the output end of the electric telescopic rod 310 drives the circular plate member 38, the branch rod members 311 and the sealing top plate 34 to move up and down.
[0031] Reference Figure 5 、 Figure 6 and Figure 9As shown, the air guide module 3 also includes a vertical plate 313, a first-level equipment slot 314, a first-level contact switch 315, a second-level equipment slot 316 and a second-level contact switch 317. The vertical plate 313 is connected to the bottom end of the branch rod 311 on the right side, and the vertical plate 313 is in the circular cavity 39. The right side of the vertical plate 313 is in contact with the placement plate 1. The first-level equipment slot 314 is opened at the bottom end of the vertical plate 313. The first-level contact switch 315 is embedded in the first-level equipment slot 314. The second-level equipment slot 316 is opened at the lower right side of the vertical plate 313. The second-level contact switch 317 is embedded in the second-level equipment slot 316. The vertical plate 313 is lowered as the branch rod 311 descends. When the first-level contact switch 315 contacts the bottom plate 37, the first-level contact switch 315 transmits a signal to the external terminal, the external terminal receives the signal, and controls the electric telescopic rod 310 to close, thereby completing the setting of the air guide module 3 and the fixation of the ampoule bottle 6. When the ampoule bottle 6 needs to be removed, the electric telescopic rod 310 is turned on, so that the output end of the electric telescopic rod 310 drives the circular plate 38 to rise, and the vertical plate 313 rises accordingly. When the second-level contact switch 317 rises to the top of the placement plate 1 and does not contact the placement plate 1, the second-level contact switch 317 transmits a signal to the external terminal, the external terminal receives the signal, and controls the electric telescopic rod 310 to close, thereby exposing the ampoule bottle 6.
[0032] refer to Figure 5 、 Figure 6 、 Figure 10 and Figure 11 As shown, the air guide module 3 also includes a mounting rod 318, an inner groove opening 319, a push rod 320, a return spring 321, a limiting groove 322, a limiting block 323 and a pressing plate 324, the mounting rod 318 is connected to the middle of the bottom of the sealing top plate 34, the inner groove opening 319 is opened at the bottom of the mounting rod 318, the push rod 320 and the return spring 321 are both arranged in the inner groove opening 319, the upper and lower ends of the return spring 321 are respectively connected to the mounting rod 318 and the push rod 320, the pressing plate 324 is arranged below the mounting rod 318, and the bottom end of the push rod 320 passes through the inner groove opening 319, and Connected to the middle of the top of the clamping plate 324, the limiting slot 322 is symmetrically opened in the mounting rod 318, and the limiting slot 322 is communicated with the inner groove slot 319, the limiting block 323 slides in the limiting slot 322, and the limiting block 323 is connected to the push rod 320. As the sealing top plate 34 descends, the clamping plate 324 contacts the ampoule bottle 6, and the return spring 321 is used to make the push rod 320 and the clamping plate 324 press the ampoule bottle 6. The setting of the limiting block 323 and the limiting slot 322 can limit the push rod 320 so that the push rod 320 will not separate from the inner groove slot 319.
[0033] refer to Figures 1 - 8As shown, the mist release module 4 also includes a one-way valve 44 and a first-level assembly plate 45. The one-way valve 44 is arranged on the conduit 1 42, and the one-way valve 44 is inside the concave ring 41. The first-level assembly plate 45 is connected to the top and bottom of the concave ring 41 in a circular array, and the first-level assembly plate 45 is connected to the mounting plate 1 through a positioning bolt. The setting of the one-way valve 44 prevents the gas blown out of the air guide module 3 from entering the concave ring 41 through the conduit 1 42.
[0034] refer to Figures 6 - 8 and Figure 10 When the handle 7 is in the closed position, the locking rib 75 is in the closed position, and the locking rib 75 is in the closed position, so that the locking rib 75 is locked.
[0035] refer to Figures 1 - 6 and Figure 12 As shown, the receiving module 5 also includes a secondary assembly plate 54 and a discharge pipe 55. The secondary assembly plate 54 is connected to the top of the receiving tube 53 in a circumferential array, and the secondary assembly plate 54 is connected to the outer oblique ring 51 through a positioning bolt. The discharge pipe 55 is connected to the bottom right side of the outer wall of the receiving tube 53. The disinfectant in the receiving tube 53 is discharged and collected through the discharge pipe 55.
[0036] The chamber between the inner side of the outer oblique ring 51 and the outer side of the inner oblique ring 52 is connected to the disinfection chamber 2. The disinfectant blown out of the disinfection chamber 2 enters the receiving tube 53 through the chamber formed between the inner side of the outer oblique ring 51 and the outer side of the inner oblique ring 52.
[0037] Working principle: Invert the ampoule bottle 6 and engage the end of the ampoule bottle 6 within the engaging notch 76. After setting up the ampoule bottle 6, turn on the electric telescopic rod 310, and let the output end of the electric telescopic rod 310 drive the circular plate member 38, the branch rod member 311, and the sealing top plate 34 to descend. As the sealing top plate 34 descends, the pressing plate member 324 comes into contact with the ampoule bottle 6. Through the return spring 321, the abutting rod 320 and the pressing plate member 324 press the ampoule bottle 6. At the same time, the vertical plate member 313 descends as the branch rod member 311 descends. When the first-stage contact switch 315 contacts the bottom plate 37, the first-stage contact switch 315 transmits a signal to the peripheral device terminal. The peripheral device terminal receives the signal and controls the electric telescopic rod 310 to turn off, thus completing the setting of the air guiding module 3 and the fixation of the ampoule bottle 6. Guide the atomized disinfectant to the inner concave ring 41 through the second conduit 43, and through the first conduit 42, guide the atomized disinfectant into the disinfection chamber 2 to disinfect the ampoule bottle 6. After disinfection is completed, stop continuously introducing the atomized disinfectant into the disinfection chamber 2. Turn on the air pump 33, and through the connecting pipe fittings 36, the hollow circular plate 35, the main pipe 32, and the branch pipe 31, blow the gas into the disinfection chamber 2. The gas blows the disinfectant on the outer wall of the ampoule bottle 6 downward, so that in addition to gravity, an additional wind force is applied to strengthen the collection and falling effect of the disinfectant and improve the removal efficiency of the disinfectant attached to the outer wall of the ampoule bottle 6. During the air guiding process, the wind force acts on the fan blade 72, and the fan blade 72 drives the scraping plate 71 to rotate, thereby scraping the disinfectant attached to the outer wall of the ampoule bottle 6 and increasing the collection rate of the disinfectant. The settings of the arc-shaped plate member 75 and the annular notch 74 can limit the scraping plate 71, ensuring the stability of the scraping plate 71 while not affecting the rotation effect of the scraping plate 71. At the same time, the disinfectant that gathers into water droplets and falls is blown out of the disinfection chamber 2 under the action of the wind force, and enters the receiving cylinder 53 through the chamber formed between the inner side of the outer inclined ring 51 and the outer side of the inner inclined ring 52, thus completing the collection of the disinfectant. The disinfectant in the receiving cylinder 53 is discharged and collected through the discharge pipe fitting 55;
[0038] When it is necessary to take out the ampoule bottle 6, turn on the electric telescopic rod 310, and let the output end of the electric telescopic rod 310 drive the circular plate member 38 to rise. The vertical plate member 313 rises accordingly. When the second-stage contact switch 317 rises to the top of the mounting plate 1 without contacting the mounting plate 1, the second-stage contact switch 317 transmits a signal to the peripheral device terminal. The peripheral device terminal receives the signal and controls the electric telescopic rod 310 to turn off, so that the ampoule bottle 6 is exposed.
[0039] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A clinical medical nursing medicine dispensing and disinfection device, including a placement board (1), characterized in that, A disinfection cavity (2) is provided in a circumferential array in the inner circumference of the placement plate (1), and the disinfection cavity (2) passes through the placement plate (1) from top to bottom. An air guide module (3) is provided at the top of the disinfection cavity (2), and the air guide module (3) includes a branch pipe (31), a main pipe (32) and an air pump (33). The branch pipe (31) is provided above the disinfection cavity (2), the main pipe (32) is connected to the top of the branch pipe (31), and the air pump (33) is provided in the middle above the placement plate (1). A mist release module (4) is provided outside the placement plate (1), and the mist release module (4) includes an inner concave ring (41), a conduit 1 (42) and a conduit 2 (43). The inner concave ring (41) is sleeved on the middle part of the outer wall of the placement plate (1), the conduit 1 (42) is connected to the outer wall of the placement plate (1) in a circumferential array, and both ends of the conduit 1 (42) are respectively connected to the disinfection cavity (2). The cavity (2) and the concave ring (41) are connected, the second conduit (43) is connected to the middle of the right side of the outer wall of the concave ring (41), the bottom of the placement plate (1) is connected to a receiving module (5), the receiving module (5) includes an outer oblique ring (51), an inner oblique ring (52) and a receiving tube (53), the outer oblique ring (51) and the inner oblique ring (52) are both connected to the bottom of the placement plate (1), the receiving tube (53) is connected to the bottom end of the outer oblique ring (51), an ampoule bottle (6) is provided in the disinfection cavity (2), and a scraping module (7) is provided on the outside of the ampoule bottle (6), the scraping module (7) includes a scraper (71) and a fan blade (72), the scraper (71) is symmetrically arranged on both sides of the ampoule bottle (6), and the fan blade (72) is connected to the bottom of the scraper (71) on the side opposite to the ampoule bottle (6); The scraping module (7) further comprises a fixed column (73), an annular notch (74), an arc-shaped plate (75), a snap-fit notch (76) and a stabilizing rod (77). The fixed column (73) is arranged at the middle bottom end inside the disinfection chamber (2). The stabilizing rod (77) is connected to the bottom end of the outer wall of the fixed column (73) in a circumferential array, and the end of the stabilizing rod (77) away from the fixed column (73) is connected to the placement plate (1). The annular notch (74) is opened in the middle of the outer wall of the fixed column (73). The bottom end of the scraper (71) on the side opposite to the ampoule bottle (6) is snap-fitted into the annular notch (74). The arc-shaped plate (75) is symmetrically arranged in the annular notch (74), and both ends of the arc-shaped plate (75) are connected to the scraper (71). The snap-fit notch (76) is opened in the middle of the top of the fixed column (73), and the head end of the ampoule bottle (6) is snap-fitted into the snap-fit notch (76).
2. The clinical medical care medicine dispensing and disinfection device according to claim 1, wherein: The air guiding module (3) further includes a sealing top plate (34), a hollow circular plate (35) and a connecting pipe fitting (36). The sealing top plate (34) is arranged in a circumferential array on the top of the placement plate (1), and the sealing top plate (34) is located on the top of the disinfection chamber (2). The connecting pipe fitting (36) is communicated with the top of the air pump (33). The hollow circular plate (35) is connected to the top of the connecting pipe fitting (36), and the inner cavity of the connecting pipe fitting (36) is communicated with the inner cavity of the hollow circular plate (35). One end of the main pipe (32) away from the branch pipe (31) is connected to the hollow circular plate (35), and the inner cavity of the main pipe (32) is communicated with the inner cavity of the hollow circular plate (35). Both ends of the branch pipe (31) penetrate through the sealing top plate (34) and are communicated with the disinfection chamber (2).
3. The clinical medical care medicine dispensing and disinfection device according to claim 2, wherein: The air guiding module (3) further includes a bottom plate (37), a circular plate member (38), a circular cavity (39), an electric telescopic rod (310), a branch rod member (311) and a support rod (312). The bottom plate (37) is connected to the middle of the bottom of the placement plate (1). The circular cavity (39) is opened in the middle of the placement plate (1), and the circular cavity (39) penetrates through the placement plate (1) up and down. The electric telescopic rod (310) is arranged in the circular cavity (39), and the bottom end of the electric telescopic rod (310) is connected to the middle of the top of the bottom plate (37). The circular plate member (38) is arranged on the top of the placement plate (1), and the circular plate member (38) is located on the top of the circular cavity (39). The output end of the top of the electric telescopic rod (310) is connected to the circular plate member (38). The branch rod members (311) are connected in a circumferential array to the outer wall of the circular plate member (38), and one end of the branch rod member (311) away from the circular plate member (38) is connected to the sealing top plate (34). The support rod (312) is connected to the top of the branch rod member (311), and one end of the support rod (312) away from the branch rod member (311) is connected to the hollow circular plate (35). The air pump (33) is connected to the circular plate member (38) through a positioning bolt.
4. A clinical medical nursing medicine dispensing and disinfection device according to claim 1, characterized in that: The air guiding module (3) further includes a vertical plate member (313), a first-level equipment notch (314), a first-level contact switch (315), a second-level equipment notch (316) and a second-level contact switch (317). The vertical plate member (313) is connected to the bottom end of the right branch rod member (311), and the vertical plate member (313) is located in the circular cavity (39). The right side of the vertical plate member (313) is in contact with the placement plate (1). The first-level equipment notch (314) is opened at the bottom end of the vertical plate member (313), and the first-level contact switch (315) is embedded in the first-level equipment notch (314). The second-level equipment notch (316) is opened at the lower right side of the vertical plate member (313), and the second-level contact switch (317) is embedded in the second-level equipment notch (316).
5. The clinical medical care medicine dispensing and disinfection device according to claim 2, wherein: The air guide module (3) also includes a mounting rod (318), an inner groove opening (319), a push rod (320), a return spring (321), a limiting groove (322), a limiting block (323) and a pressing plate (324), wherein the mounting rod (318) is connected to the middle of the bottom of the sealing top plate (34), the inner groove opening (319) is opened at the bottom of the mounting rod (318), the push rod (320) and the return spring (321) are both arranged in the inner groove opening (319), and the upper and lower ends of the return spring (321) are respectively connected to the mounting rod (318). The mounting rod (318) and the push rod (320) are connected, the pressing plate (324) is arranged below the mounting rod (318), and the bottom end of the push rod (320) passes through the inner groove opening (319) and is connected to the middle of the top of the pressing plate (324), the limiting groove (322) is symmetrically opened in the mounting rod (318), and the limiting groove (322) is connected to the inner groove opening (319), the limiting block (323) is slidably fitted in the limiting groove (322), and the limiting block (323) is connected to the push rod (320).
6. The clinical medical care medicine dispensing and disinfection device according to claim 1, characterized in that: The mist release module (4) further includes a one-way valve (44) and a first-level assembly plate (45). The one-way valve (44) is provided on the conduit 1 (42), and the one-way valve (44) is located inside the concave ring (41). The first-level assembly plate (45) is connected to the top and bottom of the concave ring (41) in a circumferential array, and the first-level assembly plate (45) is connected to the placement plate (1) via positioning bolts.
7. A clinical medical care medicine dispensing and disinfection device according to claim 1, characterized in that: The receiving module (5) further includes a secondary assembly plate (54) and a discharge pipe (55), wherein the secondary assembly plate (54) is connected to the top of the receiving tube (53) in a circumferential array, and the secondary assembly plate (54) is connected to the outer oblique ring (51) via a positioning bolt, and the discharge pipe (55) is connected to the bottom right side of the outer wall of the receiving tube (53); The chamber between the inner side of the outer oblique ring (51) and the outer side of the inner oblique ring (52) is connected to the disinfection chamber (2).
Citation Information
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