CN112139132A - Multi-functional ophthalmology medical instrument cleaning equipment - Google Patents

Multi-functional ophthalmology medical instrument cleaning equipment Download PDF

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Publication number
CN112139132A
CN112139132A CN202011005405.6A CN202011005405A CN112139132A CN 112139132 A CN112139132 A CN 112139132A CN 202011005405 A CN202011005405 A CN 202011005405A CN 112139132 A CN112139132 A CN 112139132A
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CN
China
Prior art keywords
cleaning
cavity
shaft
rotating
matched
Prior art date
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Pending
Application number
CN202011005405.6A
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Chinese (zh)
Inventor
郭书姣
唐伟伟
李欣欣
梁亚楠
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Luohe First Peoples Hospital
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Luohe First Peoples Hospital
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Publication date
Application filed by Luohe First Peoples Hospital filed Critical Luohe First Peoples Hospital
Priority to CN202011005405.6A priority Critical patent/CN112139132A/en
Publication of CN112139132A publication Critical patent/CN112139132A/en
Pending legal-status Critical Current

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B3/00Cleaning by methods involving the use or presence of liquid or steam
    • B08B3/04Cleaning involving contact with liquid
    • B08B3/06Cleaning involving contact with liquid using perforated drums in which the article or material is placed
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B1/00Cleaning by methods involving the use of tools
    • B08B1/10Cleaning by methods involving the use of tools characterised by the type of cleaning tool
    • B08B1/12Brushes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B13/00Accessories or details of general applicability for machines or apparatus for cleaning
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B3/00Cleaning by methods involving the use or presence of liquid or steam
    • B08B3/04Cleaning involving contact with liquid
    • B08B3/10Cleaning involving contact with liquid with additional treatment of the liquid or of the object being cleaned, e.g. by heat, by electricity or by vibration

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  • Cleaning In General (AREA)

Abstract

The invention belongs to the technical field of medical instruments, and particularly relates to multifunctional ophthalmic medical instrument cleaning equipment which comprises a cleaning cavity, wherein a cover plate is arranged on the cleaning cavity, and a lifting structure matched with the cover plate is arranged on the cleaning cavity; a lower cleaning device for roughly cleaning the medical instrument is arranged in the cleaning cavity, and an upper cleaning device which is connected with the cover plate and used for thoroughly cleaning the medical instrument is connected to the lower cleaning device in a sliding manner; the upper cleaning device comprises a stirring shaft, and a stirring paddle is arranged on the stirring shaft; a rotating cavity is sleeved on the stirring shaft, a cleaning structure is connected to the rotating cavity, the cleaning structure comprises a rotating assembly, a plurality of cleaning shafts are connected to the rotating assembly, the rotating assembly can drive the plurality of cleaning shafts to revolve along the stirring shaft while rotating, and the revolving direction of the cleaning shafts is opposite to the direction of the stirring structure; the invention effectively solves the problem that the existing cleaning equipment is not completely cleaned.

Description

Multi-functional ophthalmology medical instrument cleaning equipment
Technical Field
The invention belongs to the technical field of medical instruments, and particularly relates to multifunctional ophthalmic medical instrument cleaning equipment.
Background
The general term of ophthalmology is "ophthalmology specialty", which is the discipline for studying diseases occurring in the visual system, including the eyeball and its associated tissues. In ophthalmology, various ophthalmic diseases such as vitreous body, retinal diseases, ocular optics, glaucoma, optic neuropathy, cataract and the like are generally researched.
Cleaning and disinfecting used medical instruments after ophthalmologic treatment is necessary, but at present, the medical instruments are directly put into a disinfection box, so that the adhered substances on the surfaces of the medical instruments are not easy to clean, and the cleaning effect is poor; because the medical instruments are not thoroughly cleaned, secondary damage to the patient may be caused; therefore, corresponding ophthalmological medical instrument cleaning equipment comes along, but most of the existing cleaning equipment can only clean the surface of an instrument and cannot clean the surface of the instrument deeply, so that the medical instrument is not cleaned thoroughly; or after cleaning, the surface of the medical instrument still has adhesive substances, and medical staff are required to carry out secondary cleaning, so that the labor intensity of the medical staff is greatly increased, and equipment capable of thoroughly cleaning the ophthalmic medical instrument is urgently needed.
Disclosure of Invention
Aiming at the situation, in order to overcome the defects of the prior art, the invention provides multifunctional cleaning equipment for ophthalmic medical instruments, which effectively solves the problem that the existing cleaning equipment is not thorough in cleaning.
In order to achieve the purpose, the invention adopts the following technical scheme: a multifunctional cleaning device for ophthalmic medical instruments comprises a cleaning cavity, wherein a cover plate is arranged on the cleaning cavity, and a lifting structure matched with the cover plate is arranged on the cleaning cavity; a lower cleaning device for roughly cleaning the medical instrument is arranged in the cleaning cavity, and an upper cleaning device which is connected with the cover plate and used for thoroughly cleaning the medical instrument is connected to the lower cleaning device in a sliding manner; the upper cleaning device comprises a stirring shaft, and a stirring paddle is arranged on the stirring shaft; the stirring shaft is sleeved with a rotating cavity, the rotating cavity is connected with a cleaning structure, the cleaning structure comprises a rotating assembly, the rotating assembly is connected with a plurality of cleaning shafts, the rotating assembly can drive the plurality of cleaning shafts to revolve along the stirring shaft while rotating, the revolving direction of the cleaning shafts is opposite to that of the stirring structure, and the plurality of cleaning shafts are respectively detachably connected with a first cleaning assembly and a second cleaning assembly for fixing medical instruments; the lower cleaning device comprises a lower transmission structure in sliding connection with the stirring shaft, the lower transmission structure is connected with a lower cleaning structure, the lower cleaning structure is connected with a brush, and the lower cleaning structure can drive the brush to move along a vortex line.
Compared with the prior art, the invention has the following beneficial effects:
when the cleaning device is used, firstly, the medical instrument is roughly cleaned through the lower cleaning device, the adhesive on the surface of the medical instrument is removed, the medical instrument after primary cleaning is put into the first cleaning component and the second cleaning component according to the condition, the medical instrument is thoroughly cleaned through the upper cleaning device, and the cleaning effect of the cleaning device is improved through secondary cleaning; in addition, when cleaning, the lower cleaning device drives the brush to do vortex line motion to roughly clean the medical instrument, and compared with the cleaning of the brush doing circular motion, the effect is better; when the upper cleaning device is used for cleaning, the stirring paddle is driven by the stirring shaft to stir the clean water in the cleaning cavity, so that the medical instruments in the cleaning cavity are cleaned by the clean water; meanwhile, the rotating assembly drives the plurality of cleaning shafts to revolve along the stirring shaft while rotating, and the revolution direction of the cleaning shafts is opposite to the direction of the stirring structure, so that the cleaning effect is better.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic view of the internal structure of the present invention;
FIG. 3 is a schematic view showing the fitting state of the upper cleaning device and the lower cleaning device according to the present invention;
FIG. 4 is a first isometric view of an upper cleaning apparatus of the present invention;
FIG. 5 is a second isometric view of the upper cleaning device of the present invention;
FIG. 6 is a schematic diagram of the engagement of the upper transmission structure and the upper reduction structure in the present invention;
FIG. 7 is a bottom plan view of the upper drive structure and the upper reduction structure of the present invention in their mated condition;
FIG. 8 is a cross-sectional view taken along line A-A of FIG. 7 according to the present invention;
FIG. 9 is an isometric view of an upper cleaning structure of the present invention;
FIG. 10 is an isometric view of a lower cleaning apparatus of the present invention;
FIG. 11 is a first isometric view of the mating condition of the lower drive configuration and the lower cleaning configuration of the present invention;
FIG. 12 is a second isometric view of the mating condition of the lower drive structure and the lower cleaning structure of the present invention;
FIG. 13 is an isometric view of a lower cleaning structure of the present invention;
FIG. 14 is a schematic view of a cleaning tank according to the present invention;
in the figure: 1. universal wheels, 2, a support column, 3, a lifting cavity, 4, a placing cover, 5, a liquid level line, 6, a cleaning cavity, 7, an upper cleaning device, 701, a cleaning motor, 702, an upper transmission structure, 703, a rotating cavity, 704, a first cleaning component, 705, a stirring paddle, 706, a stirring shaft, 707, a second cleaning component, 708, a second steering bevel gear set, 709, a support plate, 710, a rotating shaft, 711, an upper speed reducing structure, 712, a fixed block, 713, a lower connecting gear, 714, an upper connecting gear, 715, a fastening bolt, 716, an upper driving wheel, 717, an upper driven wheel, 718, a sun wheel, 719, a gear ring, 720, a planet carrier, 721, a fixed bevel gear, 722, a fixed shaft, 723 and a driven bevel gear; 8. the lower cleaning device comprises a lower cleaning device, 801, a lower speed reducing structure, 802, a lower transmission structure, 803, a rotating plate, 804, a brush, 805, a guide block, 806, a lower driving wheel, 807, a large gear, 808, a lower driven wheel, 809, a small gear, 810, a transmission chute, 811, a connecting chute, 812, a sliding block, 813, a guide groove, 814 and a spline; 9. the device comprises a cover plate, 10, a nut pressing sleeve, 11, a screw rod, 12, a lifting gear, 13, a lower drainage pipe, 14, a lifting motor, 15, a first steering bevel gear set, 16, an idler wheel, 17, a cleaning groove, 18 and a handle.
Detailed Description
A multifunctional cleaning device for ophthalmic medical instruments is disclosed, as shown in figures 1-14, and comprises a cleaning cavity 6, a cover plate 9 is arranged on the cleaning cavity 6, and a lifting structure matched with the cover plate 9 is arranged on the cleaning cavity 6; the lifting structure is used for driving the upper cleaning device 7 to lift so as to place the medical instrument on the first cleaning component 704 and the second cleaning component 707; the cleaning device is characterized in that a support column 2 is arranged on the cleaning cavity 6, a universal wheel 1 is arranged on the support column 2, the universal wheel 1 is a universal wheel 1 with a foot brake, and the cleaning device is convenient to move by matching the support column 2 with the universal wheel 1; a lower cleaning device 8 for roughly cleaning the medical instrument is arranged in the cleaning cavity 6, an upper cleaning device 7 for thoroughly cleaning the medical instrument and connected with a cover plate 9 is connected on the lower cleaning device 8 in a sliding manner, and a liquid level line 5 corresponding to the upper cleaning device 7 is arranged on the cleaning cavity 6; the upper cleaning device 7 comprises a stirring shaft 706, and a stirring paddle 705 is arranged on the stirring shaft 706; the stirring shaft 706 is sleeved with a rotating cavity 703, the rotating cavity 703 is connected with a cleaning structure, the cleaning structure comprises a rotating assembly, the rotating assembly is connected with a plurality of cleaning shafts, the rotating assembly can drive the plurality of cleaning shafts to revolve along the stirring shaft 706 while rotating, the revolving direction of the cleaning shafts is opposite to that of the stirring structure, and the plurality of cleaning shafts are respectively detachably connected with a first cleaning assembly 704 and a second cleaning assembly 707 for fixing medical equipment; the lower cleaning device 8 comprises a lower transmission structure 802 connected with the stirring shaft 706 in a sliding manner, the lower transmission structure 802 is connected with a lower cleaning structure, the lower cleaning structure is connected with a brush 804, and the lower cleaning structure can drive the brush 804 to move along a vortex line.
When the cleaning device is used, firstly, the medical instrument is roughly cleaned through the lower cleaning device 8, the adhered substances on the surface of the medical instrument are removed, the medical instrument after primary cleaning is put into the first cleaning component 704 and the second cleaning component 707 according to the condition, the medical instrument is thoroughly cleaned through the upper cleaning device, and the cleaning effect of the cleaning device is improved through secondary cleaning; in addition, when cleaning, the lower cleaning device 8 drives the brush 804 to do vortex line motion to generally clean the medical apparatus, and compared with the cleaning of the brush 804 doing circular motion, the effect is better; when the upper cleaning device 7 is used for cleaning, the stirring shaft 706 drives the stirring paddle 705 to stir the clean water in the cleaning cavity 6, so that the clean water can clean the medical instruments in the cleaning cavity 6; meanwhile, the rotating assembly drives the plurality of cleaning shafts to revolve along the stirring shaft 706 while rotating, and the revolution direction of the cleaning shafts is opposite to the rotation direction of the stirring structure, so that the cleaning effect is better.
Further, as shown in fig. 4-9, the upper cleaning device 7 includes an upper transmission structure 702, an upper transmission cavity matched with the upper transmission structure 702 is provided on the cover plate 9, an upper deceleration structure 711 is connected to the upper transmission structure 702, and an output end of the upper deceleration structure 711 is connected to the rotation cavity 703; as shown in fig. 6, the upper transmission structure 702 includes an upper driving wheel 716 connected to the stirring shaft 706, and a cleaning motor 701 connected to the stirring shaft 706 is fixedly connected to the upper transmission cavity; an upper connecting gear 714 is meshed on the upper driving wheel 716, a lower connecting gear 713 is meshed on the upper connecting gear 714, an upper driven wheel 717 coaxially arranged with the upper driving wheel 716 is meshed on the lower connecting gear 713, and the upper driven wheel 717 is connected with the input end of the upper speed reducing structure 711. When the upper cleaning device 7 is used for cleaning, the cleaning motor 701 drives the stirring shaft 706 to rotate, the stirring shaft 706 is matched with the upper driving wheel 716, the upper connecting gear 714, the lower connecting gear 713 and the upper driven wheel 717, the upper speed reducing structure 711 is arranged, the rotating cavity 703 is driven to rotate in the opposite direction to the stirring shaft 706 through the upper speed reducing structure 711, the upper speed reducing structure 711 is arranged, the rotating cavity 703 rotates slowly, and the stability of the cleaning structure is improved.
Further, as shown in fig. 7-9, the rotating assembly includes a fixing shaft 722 sleeved on the stirring shaft 706, and the fixing shaft 722 is provided with a fixing block 712 fixedly connected with the upper transmission cavity; a fixed bevel gear 721 is fixedly connected to the fixed shaft 722, the fixed bevel gear 721 is arranged in the rotating cavity 703, and a plurality of driven bevel gears 723 which are rotatably connected with the rotating cavity 703 are engaged with the fixed bevel gear 721; a plurality of supporting plates 709 corresponding to the driven bevel gear 723 are fixedly connected to the rotating cavity 703, and a rotating shaft 710 rotatably connected with the supporting plates 709 is fixedly connected to the driven bevel gear 723; one end of the rotating shaft 710, which is far away from the driven bevel gear 723, is connected with a second steering bevel gear set 708, and the output end of the second steering bevel gear set 708 is fixedly connected with the cleaning shaft.
When the rotating assembly is used, the rotating cavity 703 drives the cleaning shaft to revolve through the supporting plate 709, and when the cleaning shaft revolves, the driven bevel gear 723 rotates along the rotating cavity 703 because the driven bevel gear 723 is meshed with the fixed bevel gear 721 and the fixed bevel gear 721 is fixed with the upper transmission cavity through the fixed shaft 722 and the fixed block 712; the driven bevel gear 723 drives the cleaning shaft to rotate through the rotating shaft 710 and the second steering bevel gear set 708, so that the cleaning shaft revolves and rotates, medical instruments on the first cleaning assembly 704 and the second cleaning assembly 707 can be fully contacted with water flows in different directions, and the cleaning effect of the cleaning device is improved.
Furthermore, the first cleaning assembly 704 comprises a first sleeve sleeved on the cleaning shaft, the first sleeve is connected with a storage frame, cleaning holes are uniformly distributed on the storage frame, and medical instruments which cannot be hung are placed in the storage frame; the second cleaning component 707 comprises a second sleeve sleeved on the cleaning shaft, a hook is arranged on the second sleeve, and the medical apparatus capable of being hung on the hook is hung on the hook; fastening bolts 715 are screwed at the ends of the first sleeve and the second sleeve, which are far away from the second steering bevel gear set 708, threaded holes matched with the fastening bolts 715 are formed in the cleaning shaft, and extrusion rings matched with the first sleeve and the second sleeve are arranged on the fastening bolts 715; the first sleeve and the second sleeve are detachably connected with the cleaning shaft through the fastening bolts 715, the connection tightness of the first sleeve and the second sleeve is improved through the extrusion rings, the number of the first cleaning assemblies 704 and the number of the second cleaning assemblies 707 can be adjusted according to the number of types of medical instruments, and the cleaning convenience of the cleaning device is improved.
Further, a lower speed reducing structure 801 is connected to the lower transmission structure 802, an output end of the lower speed reducing structure 801 is connected to the lower transmission structure 802, an input end of the lower speed reducing structure 801 is connected to a spline 814, and a spline 814 barrel matched with the spline 814 is arranged on the stirring shaft 706; the lower transmission structure 802 comprises a lower driving wheel 806 connected with the lower speed reducing structure 801, and a lower driven wheel 808 is meshed with the lower driving wheel 806; a pinion 809 is coaxially and fixedly connected to the lower driven wheel 808, a large gear 807 coaxially arranged with the driving wheel is meshed to the pinion 809, and the large gear 807 and the lower driving wheel 806 are connected with a lower cleaning structure; the upper speed reducing structure 711 and the lower speed reducing structure 801 both comprise a sun gear 718, the sun gear 718 is an input end, a plurality of planetary gears are meshed with the sun gear 718, gear rings 719 are meshed with the planetary gears, the gear rings 719 are fixedly connected with the corresponding upper rotating cavity 703 and the corresponding lower rotating cavity 703, planetary gears are rotatably connected with planetary carriers 720, and the planetary carriers 720 are output ends.
The lower cleaning structure comprises a rotating plate 803 coaxially and fixedly connected with a large gear 807, and a guide block 805 is coaxially and fixedly connected with a lower driving wheel 806; a sliding block 812 is connected in the guide block 805 in a sliding manner, the sliding block 812 is connected with the brush 804, a sliding shaft is arranged on the sliding block 812, and a guide groove 813 matched with the sliding shaft is arranged on the guide block 805; a transmission chute 810 matched with the sliding shaft is arranged on the rotating plate 803, the transmission chute 810 is of a circle of volute line structure, the tail end of the transmission chute 810 is connected with a connecting chute 811, and the other end of the connecting chute 811 is communicated with the head end of the transmission chute 810; a cleaning groove 17 matched with the brush 804 is rotatably connected in the cleaning cavity 6, and handles 18 are uniformly distributed on the cleaning groove 17; wash the chamber 6 and be equipped with and wash tank 17 matched with opening, wash and rotate on the chamber 6 and be connected with and place lid 4 with opening matched with, place and be equipped with on the lid 4 and wash chamber 6 matched with tower and detain.
When the lower cleaning device 8 is used, the stirring shaft 706 drives the lower speed reducing structure 801 to act through the spline 814, the lower speed reducing structure 801 drives the lower driving wheel 806 to rotate, and the lower driving wheel 806 drives the large gear 807 to rotate through the lower driven wheel 808 and the small gear 809 to realize speed reduction on the rotating plate 803, so that the rotating speed of the rotating plate 803 is less than that of the guide block 805; the sliding block 812 continuously moves outwards under the action of the transmission sliding chute 810 and the sliding shaft, so that the movement track of the sliding block 812 is in a vortex line structure, when the sliding shaft moves to the tail end of the transmission sliding chute 810, the sliding shaft slides into the connecting sliding chute 811, and slides under the action of the connecting sliding chute 811, and the head end of the transmission sliding chute 810; set up handle 18 and washing tank 17 and cooperate, make medical personnel placing the medical instrument in-process, accessible handle 18 drives washing tank 17 and rotates to conveniently carry out the water injection through the opening in to washing tank 17 with the medical instrument equipartition in washing tank 17.
Furthermore, the lifting structure comprises a lifting cavity 3 connected with the cleaning cavity 6, an idler wheel 16 is rotationally connected in the lifting cavity 3, and a pair of lifting gears 12 are meshed on the idler wheel 16; the lifting gears 12 are fixedly connected with screw rods 11, and the screw rods 11 are respectively in threaded connection with nut pressing sleeves 10 fixedly connected with the cover plate 9; a lifting motor 14 is fixedly connected to the lifting cavity 3, the output end of the lifting motor 14 is connected with a first steering bevel gear set 15, and the output end of the first steering bevel gear set 15 is coaxially and fixedly connected with any one of the screw rods 11; the first and second steering bevel gear sets 15 and 708 each include an input bevel gear on which an output bevel gear is engaged.
When the upper cleaning device 7 is used, the lifting structure is required to drive the upper cleaning device 7 to lift so as to put medical instruments on the first cleaning component 704 and the second cleaning component 707; when the lifting structure is used, the lifting motor 14 drives any one of the screw rods 11 to rotate through the first steering bevel gear set 15, the pair of lifting gears 12 synchronously rotate under the action of the idler wheel 16, and the pair of screw rods 11 rotate to drive the cover plate 9 to lift through the nut pressing sleeve 10.
Furthermore, a partition board for separating the upper cleaning device 7 from the lower cleaning device 8 is arranged in the cleaning cavity 6, and a lower transmission cavity matched with the lower transmission structure 802 and the lower speed reducing structure 801 is arranged on the partition board; the baffle plate is also provided with a fixed cylinder, the fixed cylinder is arranged between the stirring paddle 705 and the cleaning shaft, and connecting holes are uniformly distributed on the fixed cylinder; a liquid feeding port is formed in the cover plate 9, and a sealing cover is screwed on the liquid feeding port; clear water and disinfectant are added into the area above the partition plate through the liquid adding port, and the amount of the clear water and the disinfectant can be observed through the liquid level line 5; an upper drainage pipe matched with the cleaning groove 17 is arranged on the partition plate, a lower drainage pipe 13 is arranged on the cleaning cavity 6, and valves are arranged on the upper drainage pipe and the lower drainage pipe 13. The area of the lower cleaning device 8 can be cleaned and flushed through the upper drainage pipe, so that the water for cleaning the invention is reduced, and the cleaned water is discharged through the lower drainage pipe 13.
The working process of the invention is as follows:
when the medical cleaning device is used, the placing cover 4 is opened, medical instruments are placed in the cleaning groove 17, the cleaning groove 17 is driven to rotate through the handle 18, so that the medical instruments are uniformly distributed in the cleaning groove 17, after placing is finished, water is injected into the cleaning groove 17 through the opening, and the placing cover 4 is closed; the cleaning motor 701 acts, the cleaning motor 701 drives the stirring shaft 706 to rotate, the stirring shaft 706 drives the lower speed reducing structure 801 to act through the spline 814, the lower speed reducing structure 801 drives the lower driving wheel 806 to rotate, the lower driving wheel 806 drives the large gear 807 to rotate through the lower driven wheel 808 and the small gear 809, so that the rotating plate 803 is reduced in speed, and the rotating speed of the rotating plate 803 is smaller than that of the guide block 805; the sliding block 812 continuously moves outwards under the action of the transmission sliding chute 810 and the sliding shaft, so that the movement track of the sliding block 812 is in a vortex line structure, when the sliding shaft moves to the tail end of the transmission sliding chute 810, the sliding shaft slides into the connecting sliding chute 811, and slides under the action of the connecting sliding chute 811, and the head end of the transmission sliding chute 810; the brush 804 is driven by the slider 812 to perform a spiral motion to substantially clean the medical device.
The lifting motor 14 drives any one of the screw rods 11 to rotate through the first steering bevel gear set 15, the pair of lifting gears 12 synchronously rotate under the action of the idler wheel 16, and the pair of screw rods 11 rotate to drive the cover plate 9 to lift through the nut pressing sleeve 10; at the same time, stirring shaft 706 slides along spline 814, and first cleaning assembly 704 and second cleaning assembly 707 rise under the action of rotating cavity 703; taking out the medical instruments from the cleaning tank 17, adjusting the number of the first cleaning assembly 704 and the second cleaning assembly 707 according to the number of the types of the medical instruments, hanging the medical instruments which can be hung on the hook, and putting the medical instruments which can not be hung in the storage frame; the lifting structure acts again to enable the upper cleaning device 7 to descend into the cleaning cavity 6; clear water is added to the area above the partition plate through the liquid adding port, and the amount of the clear water can be observed through the liquid level line 5.
The cleaning motor 701 acts, the cleaning motor 701 drives the stirring shaft 706 to rotate, and the stirring shaft 706 is matched with the upper driving wheel 716, the upper connecting gear 714, the lower connecting gear 713 and the upper driven wheel 717 and drives the rotating cavity 703 to rotate in the opposite direction to that of the stirring shaft 706 through the upper speed reducing structure 711; the stirring shaft 706 stirs the clean water in the cleaning cavity 6 through the stirring paddle 705, so that the clean water cleans the medical instruments in the cleaning cavity 6; meanwhile, the rotating cavity 703 drives the cleaning shaft to revolve through the supporting plate 709, and when the cleaning shaft revolves, the driven bevel gear 723 rotates along the rotating cavity 703 because the driven bevel gear 723 is meshed with the fixed bevel gear 721 and the fixed bevel gear 721 is fixed with the upper driving cavity through the fixed shaft 722 and the fixed block 712; the driven bevel gear 723 drives the cleaning shaft to rotate through the rotating shaft 710 and the second steering bevel gear set 708, so that the cleaning shaft revolves and rotates, medical instruments on the first cleaning assembly 704 and the second cleaning assembly 707 can be fully contacted with water flows in different directions, and the cleaning effect of the cleaning device is improved.

Claims (8)

1. The utility model provides a multi-functional ophthalmology medical instrument cleaning equipment which characterized in that: the cleaning device comprises a cleaning cavity (6), wherein a cover plate (9) is arranged on the cleaning cavity (6), and a lifting structure matched with the cover plate (9) is arranged on the cleaning cavity (6); a lower cleaning device (8) for roughly cleaning the medical instruments is arranged in the cleaning cavity (6), and an upper cleaning device (7) which is connected with the cover plate (9) and used for thoroughly cleaning the medical instruments is connected on the lower cleaning device (8) in a sliding manner; the upper cleaning device (7) comprises a stirring shaft (706), and a stirring paddle (705) is arranged on the stirring shaft (706); a rotating cavity (703) is sleeved on the stirring shaft (706), a cleaning structure is connected to the rotating cavity (703), the cleaning structure comprises a rotating assembly, a plurality of cleaning shafts are connected to the rotating assembly, the rotating assembly can drive the cleaning shafts to revolve along the stirring shaft (706) while rotating, the revolving direction of the cleaning shafts is opposite to that of the stirring structure, and a first cleaning assembly (704) and a second cleaning assembly (707) which are used for fixing medical equipment are detachably connected to the cleaning shafts respectively; the lower cleaning device (8) comprises a lower transmission structure (802) which is in sliding connection with the stirring shaft (706), the lower transmission structure (802) is connected with a lower cleaning structure, the lower cleaning structure is connected with a brush (804), and the lower cleaning structure can drive the brush (804) to move along a vortex line.
2. The multifunctional ophthalmic medical device cleaning apparatus of claim 1, wherein: the upper cleaning device (7) comprises an upper transmission structure (702), an upper transmission cavity matched with the upper transmission structure (702) is arranged on the cover plate (9), an upper speed reducing structure (711) is connected to the upper transmission structure (702), and the output end of the upper speed reducing structure (711) is connected with the rotating cavity (703); the upper transmission structure (702) comprises an upper driving wheel (716) connected with the stirring shaft (706), and a cleaning motor (701) connected with the stirring shaft (706) is fixedly connected to the upper transmission cavity; an upper connecting gear (714) is meshed on the upper driving wheel (716), a lower connecting gear (713) is meshed on the upper connecting gear (714), an upper driven wheel (717) which is coaxial with the upper driving wheel (716) is meshed on the lower connecting gear (713), and the upper driven wheel (717) is connected with the input end of the upper speed reducing structure (711).
3. The multifunctional ophthalmic medical device cleaning apparatus of claim 2, wherein: the rotating assembly comprises a fixed shaft (722) sleeved on the stirring shaft (706), and a fixed block (712) fixedly connected with the upper transmission cavity is arranged on the fixed shaft (722); a fixed bevel gear (721) is fixedly connected to the fixed shaft (722), the fixed bevel gear (721) is arranged in the rotating cavity (703), and a plurality of driven bevel gears (723) which are rotationally connected with the rotating cavity (703) are meshed on the fixed bevel gear (721); a plurality of supporting plates (709) corresponding to the driven bevel gear (723) are fixedly connected to the rotating cavity (703), and a rotating shaft (710) rotatably connected with the supporting plates (709) is fixedly connected to the driven bevel gear (723); one end of the rotating shaft (710) far away from the driven bevel gear (723) is connected with a second steering bevel gear set (708), and the output end of the second steering bevel gear set (708) is fixedly connected with the cleaning shaft.
4. The multifunctional ophthalmic medical device cleaning apparatus of claim 3, wherein: the first cleaning assembly (704) comprises a first sleeve sleeved on the cleaning shaft, the first sleeve is connected with a storage frame, and cleaning holes are uniformly distributed on the storage frame; the second cleaning component (707) comprises a second sleeve sleeved on the cleaning shaft, and a hook is arranged on the second sleeve; and one ends, far away from the second steering bevel gear set (708), of the first sleeve and the second sleeve are respectively screwed with a fastening bolt (715), a cleaning shaft is provided with a threaded hole matched with the fastening bolt (715), and the fastening bolt (715) is provided with a squeezing ring matched with the first sleeve and the second sleeve.
5. The multifunctional ophthalmic medical device cleaning apparatus of claim 1, wherein: the lower transmission structure (802) is connected with a lower speed reducing structure (801), the output end of the lower speed reducing structure (801) is connected with the lower transmission structure (802), the input end of the lower speed reducing structure (801) is connected with a spline (814), and a spline (814) cylinder matched with the spline (814) is arranged on the stirring shaft (706); the lower transmission structure (802) comprises a lower driving wheel (806) connected with the lower speed reducing structure (801), and a lower driven wheel (808) is meshed with the lower driving wheel (806); the lower driven wheel (808) is coaxially and fixedly connected with a small gear (809), the small gear (809) is meshed with a large gear (807) coaxially arranged with the driving wheel, and the large gear (807) and the lower driving wheel (806) are connected with a lower cleaning structure.
6. The multifunctional ophthalmic medical device cleaning apparatus of claim 5, wherein: the lower cleaning structure comprises a rotating plate (803) coaxially and fixedly connected with a large gear (807), and a guide block (805) is coaxially and fixedly connected with a lower driving wheel (806); a sliding block (812) is connected in the guide block (805) in a sliding manner, the sliding block (812) is connected with the brush (804), a sliding shaft is arranged on the sliding block (812), and a guide groove (813) matched with the sliding shaft is arranged on the guide block (805); the rotating plate (803) is provided with a transmission sliding chute (810) matched with the sliding shaft, the transmission sliding chute (810) is of a circle of volute line structure, the tail end of the transmission sliding chute (810) is connected with a connecting sliding chute (811), and the other end of the connecting sliding chute (811) is communicated with the head end of the transmission sliding chute (810); a cleaning groove (17) matched with the brush (804) is rotatably connected in the cleaning cavity (6), and handles (18) are uniformly distributed on the cleaning groove (17); wash be equipped with on chamber (6) with washing tank (17) matched with opening, wash to rotate on chamber (6) to be connected with opening matched with place lid (4), place to be equipped with on lid (4) and wash chamber (6) matched with tower and detain.
7. The multifunctional ophthalmic medical device cleaning apparatus of claim 1, wherein: the lifting structure comprises a lifting cavity (3) connected with the cleaning cavity (6), an idler wheel (16) is rotatably connected in the lifting cavity (3), and a pair of lifting gears (12) are meshed on the idler wheel (16); the lifting gears (12) are fixedly connected with screw rods (11), and the screw rods (11) are respectively in threaded connection with screw nut pressing sleeves (10) fixedly connected with the cover plate (9); lifting motor (14) is fixedly connected to the lifting cavity (3), the output end of the lifting motor (14) is connected with a first steering bevel gear set (15), and the output end of the first steering bevel gear set (15) is coaxially and fixedly connected with any screw rod (11).
8. The multifunctional ophthalmic medical device cleaning apparatus of claim 1, wherein: a partition board for separating the upper cleaning device (7) from the lower cleaning device (8) is arranged in the cleaning cavity (6), a fixed cylinder is arranged on the partition board and is arranged between the stirring paddle (705) and the cleaning shaft, and connecting holes are uniformly distributed in the fixed cylinder; a liquid feeding port is formed in the cover plate (9), and a sealing cover is screwed on the liquid feeding port; the partition plate is provided with an upper drainage pipe matched with the cleaning tank (17), the cleaning cavity (6) is provided with a lower drainage pipe (13), and the upper drainage pipe and the lower drainage pipe (13) are provided with valves.
CN202011005405.6A 2020-09-23 2020-09-23 Multi-functional ophthalmology medical instrument cleaning equipment Pending CN112139132A (en)

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CN112939413A (en) * 2021-03-01 2021-06-11 广州桢森环保科技有限公司 Environment-friendly sludge treatment equipment and method
CN114289392A (en) * 2021-11-29 2022-04-08 蓝山县恒华米业有限公司 A agitating unit for rice processing
CN114798528A (en) * 2022-05-23 2022-07-29 段永明 Maintenance device for medical instrument
CN114903186A (en) * 2022-04-27 2022-08-16 慈溪市农业技术推广中心(慈溪市种子管理站) Belt cleaning device is used in vegetables processing
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Application publication date: 20201229