Medical shaping instrument disinfection device and method
Technical Field
The invention relates to the technical field of medical equipment, in particular to a medical shaping instrument disinfection device and a medical shaping instrument disinfection method.
Background
The medical instrument surface has residues such as blood stain, stains, adhesive, and the like, and the current instrument is placed in the flowing water for cleaning through manual holding, and because flowing water can only partially treat the instrument surface, the stains adhered on the instrument surface can not be effectively cleaned, so that cross infection is caused to a patient when the instrument is used for the second time, and meanwhile, medical staff directly contacts the used instrument during cleaning, so that infection is easy to cause.
Disclosure of Invention
The invention discloses a medical shaping instrument disinfection device and a medical shaping instrument disinfection method, which aim to solve the technical problems that in the prior art, residues such as blood stains, adhesives, tooth filling materials and the like exist on the surface of an instrument after treatment are finished, the existing instrument is placed under flowing water for cleaning by manual hand, and the flowing water only can partially treat the surface of the instrument and can not effectively clean the stains adhered on the surface of the instrument, so that cross infection is caused to a patient when the instrument is used for the second time, and meanwhile, medical staff directly contact the used instrument during cleaning, so that the infection is easy to cause.
The invention provides an instrument disinfection device for medical reshaping, which comprises a movable base, wherein one side of the movable base is fixedly connected with connecting columns at equal intervals, the outer parts of a plurality of connecting columns are fixedly connected with two mounting plates, one side of each mounting plate is provided with a mounting round hole, the inner parts of the two mounting round holes are fixedly connected with the same cleaning cylinder, one side of the cleaning cylinder is provided with a taking and placing opening, one side of the taking and placing opening is connected with a transparent observation window through a hinge, the inner part of the cleaning cylinder is provided with a cleaning assembly, and the cleaning assembly comprises a hollow mounting rod.
In a preferred scheme, the equal distance fixedly connected with telescopic link of multiple sides of cavity installation pole, and the one side fixedly connected with same installation stock of a plurality of telescopic links that are located same one side, the equal distance fixedly connected with flexible cleaning board in one side of a plurality of installation stocks, the equal distance fixedly connected with telescopic spring in multiple sides of cavity installation pole, telescopic spring's opposite side is connected with one side of installation stock, the equal equidistance in one side of a plurality of installation stocks leaves and is equipped with the installing port, the equal fixedly connected with sprinkler head in inside of every installing port, round hole one has been seted up to the equal distance in multiple sides of cavity installation pole, the equal fixedly connected with water supply pipe in inside of every round hole one, the equal fixedly connected with flexible regulation pipe in water outlet of every water supply pipe.
In a preferred scheme, the equal fixedly connected with round guide rail in opposite one side of a cleaning cylinder, and the equal sliding connection in inside of two round guide rails has the round sliding block, and the one side fixedly connected with installation round frame that is located the round sliding block of top installs the outside fixedly connected with installation diaphragm of round frame, installs two sliding openings in one side of diaphragm, and the equal sliding connection in inside of two sliding openings has reciprocal slide, and the equal fixedly connected with bactericidal lamp stick in one side of two reciprocal slide installs the equal fixedly connected with firm pole in one side of round frame.
In a preferred scheme, two round holes II are formed in one side of the installation transverse plate, the rotating shafts II are connected to the inner parts of the two round holes II through bearings, adjusting gears are fixedly connected to the outer parts of the two rotating shafts II, a limiting round gear frame is fixedly connected to the inner wall of the cleaning cylinder and meshed with the adjusting gears, rotary circular plates are fixedly connected to the outer parts of the two rotating shafts II, round holes III are formed in one sides of the two rotary circular plates, deflection shafts are connected to the inner parts of the two round holes III through bearings, round holes IV are formed in one sides of the two reciprocating sliding plates, the rotating shafts I are connected to the inner parts of the two round holes IV through bearings, and one push-pull rod is movably connected to the outer parts of the rotating shafts I and the deflection shafts.
In a preferred scheme, a round hole five is formed in one side of the cleaning cylinder, a rotating shaft is connected to the inside of the round hole five through a bearing, a driving gear is fixedly connected to the outside of the rotating shaft, a linkage gear is fixedly connected to one side of the mounting round frame and meshed with the driving gear, a mounting seat is fixedly connected to one side of the cleaning cylinder, a driving motor is fixedly connected to one side of the mounting seat, a driving end of the driving motor is connected to one side of the rotating shaft through a coupling, a pump body is fixedly connected to one side of the cleaning cylinder, a water outlet end of the pump body is connected to the inside of the hollow mounting rod through a water inlet pipe, and a hose is fixedly connected to a water inlet end of the pump body.
Through being provided with clean subassembly, when cleaning the apparatus, at first place the apparatus in proper order in clean section of thick bamboo, fix the apparatus, then through starting the pump body, the pump body absorbs the washing liquid, then wash the apparatus through a plurality of sprinkler heads on the cavity installation pole, start driving motor when abluent, drive epaxial drive gear through driving motor and rotate, thereby make driving gear drive linkage gear make the installation circle frame rotate, thereby make the apparatus be the circumference removal, thereby make the clean soft board on the installation stock carry out frictional cleaning to the apparatus outside, make clean soft board closely laminate in the apparatus surface through the elasticity of extension spring, install circle frame rotation in-process, through the bactericidal lamp stick that is located both sides to the apparatus, simultaneously through the adjusting gear at installation diaphragm both ends under spacing round tooth frame, make adjusting gear rotation, thereby make reciprocating in the sliding plate drive reciprocating motion in the sliding port on the installation diaphragm through rotatory plectrum, thereby make the bactericidal lamp stick evenly carry out the treatment in the clean section of thick bamboo, can be to the surface of an apparatus and effectively paste the spot that has, thereby cause the infection when the apparatus is directly used to the medical care personnel to avoid this medical personnel to use when cross-infection when the apparatus is directly avoiding this to use.
In a preferred scheme, the bottom of a cleaning cylinder is provided with energy-saving components, and energy-saving components is including collecting the circle frame, collect the equal distance fixedly connected with fixed block of the inner wall of circle frame, the equal fixedly connected with of one side of a plurality of fixed blocks rocks the spring, the outside fixedly connected with of a plurality of springs that rocks is same cross the sieve, cross one side equidistance of sieve and leave and be equipped with the sieve mesh, the apopore has been seted up to one side of collecting the circle frame, the inside fixedly connected with valve group of apopore, one side fixedly connected with connecting pipe of valve group.
In a preferred scheme, the perforation has been seted up to one side of collecting round frame, and the spacing pipe of fenestrate inside fixedly connected with, the inside sliding connection of spacing pipe has the impact post, one side fixedly connected with ratch of impact post, one side fixedly connected with U type pole of removal base, the same reset spring of opposite side fixedly connected with of U type pole and ratch, the round hole six has all been seted up to the both sides of removal base, the inside of two round holes six is connected with same pivot three through the bearing, the outside fixedly connected with half gear of pivot three, the tooth piece end and the ratch of half gear mesh mutually, one side fixedly connected with servo motor of removal base.
Through being provided with energy-saving component, when using the washing liquid to wash the apparatus, the washing liquid that flows at this moment flows into through the cleaning cylinder below and collects the circle frame inside, through sieving the washing liquid after the sieve is handled, thereby make the washing liquid after sieving the processing carry out the recycle, thereby reduce clear loss, the sieve is sieving the in-process simultaneously, the starting servo motor in clearance drives the last half gear rotation of pivot three through servo motor, when the tooth piece end and the rack bar meshing of half gear, the rack bar drives the impact post and descends in spacing pipe inside this moment, reset spring receives the extrusion simultaneously, when half gear and rack bar are separated from each other, reset spring rebound rapidly at this moment, thereby make the impact post carry out intermittent type to the sieve board, avoid sieving the board to produce the jam.
In a preferred scheme, the installation circle frame is fixedly connected with the adjusting cylinder with equal distance from one side of the round sliding block positioned below, and the ejection ends of the adjusting cylinders are fixedly connected with the clamping frames.
In a preferred scheme, a plurality of the equal distance in both sides of centre gripping frame is connected with extrusion spring, and the outside fixedly connected with same extrusion soft board of a plurality of extrusion springs that are located same one side, the equal fixedly connected with telescopic cylinder in one side of a plurality of centre gripping frames, telescopic cylinder's ejecting end and one side of one of them extrusion soft board are fixedly connected.
Through being provided with adjusting cylinder, clamping frame, extrusion spring, extrusion soft board and flexible cylinder, when cleaning the apparatus, at first place the apparatus in two clamping frames, make the extrusion soft board carry out fixed centre gripping to the apparatus through extrusion spring's elasticity, simultaneously through starting flexible cylinder, exert clamping force through the secondary, make its centre gripping more stable.
A method of using a medical orthopaedic instrument sterilization apparatus, using a medical orthopaedic instrument sterilization apparatus as described above, comprising the steps of:
Firstly, when the instrument is cleaned, the instrument is firstly placed in a cleaning cylinder in sequence, the instrument is fixed, then the pump body is started to absorb cleaning liquid, and then the instrument is cleaned through a plurality of spray heads on a hollow mounting rod;
step two, starting a driving motor while cleaning, and driving a driving gear on a rotating shaft to rotate through the driving motor, so that the driving gear drives a linkage gear to enable a mounting round frame to rotate, and the instrument moves circumferentially, so that a cleaning soft plate on a mounting long rod rubs and cleans the outside of the instrument, and the cleaning soft plate is tightly attached to the surface of the instrument through the elasticity of a telescopic spring;
and thirdly, in the rotation process of the mounting round frame, the sterilizing lamp rods positioned at two sides sterilize the instrument, and meanwhile, the adjusting gears are rotated under the limit of the limiting round gear frame through the adjusting gears at two ends of the mounting transverse plate, so that the reciprocating slide plate can reciprocate in the sliding opening on the mounting transverse plate by driving the push-pull rod through the rotating round plate, and the sterilizing lamp rods uniformly sterilize the cleaning cylinder.
Therefore, the medical shaping instrument disinfection device provided by the invention has the beneficial effects that the sticky stains on the surface of the instrument can be effectively cleaned, so that cross infection to a patient caused by secondary use of the instrument is avoided, and meanwhile, medical staff is prevented from directly contacting the used instrument during cleaning, so that infection is easy to cause.
Drawings
Fig. 1 is a schematic main structure diagram of a medical shaping instrument sterilizing device according to the present invention;
FIG. 2 is a schematic side view of a sterilizing device for medical devices according to the present invention;
FIG. 3 is a schematic view of a cleaning assembly of a medical orthopedic instrument sterilization apparatus according to the present invention;
FIG. 4 is a schematic view of a part of a cleaning assembly of a sterilizing device for medical devices according to the present invention;
FIG. 5 is an enlarged schematic view of the portion A of FIG. 4;
FIG. 6 is a schematic view of a hollow mounting rod of a medical orthopedic instrument sterilizing apparatus according to the present invention;
Fig. 7 is a schematic structural diagram of an energy-saving assembly of the disinfecting device for medical shaping equipment according to the present invention;
fig. 8 is a schematic view of a part of the energy-saving assembly of the disinfecting device for medical shaping equipment according to the present invention;
FIG. 9 is an enlarged schematic view of portion C of FIG. 8;
Fig. 10 is an enlarged schematic view of the portion B of fig. 4.
In the figure, 1, a base is moved; 2, connecting the columns; 3, mounting plate, 4, cleaning cylinder, 5, transparent observation window, 6, cleaning component, 601, round guide rail, 602, round slider, 603, mounting round frame, 604, hollow mounting rod, 605, telescopic rod, 606, telescopic spring, 607, mounting long rod, 608, spray head, 609, cleaning soft plate, 610, water supply pipe, 611, telescopic adjusting pipe, 612, water inlet pipe, 613, pump body, 614, hose, 615, mounting seat, 616, driving motor, 617, rotating shaft, 618, driving gear, 619, linkage gear, 620, mounting cross plate, 621, sterilizing lamp rod, 622, fixing rod, 623, reciprocating slide plate, 624, limiting round gear frame, 625, rotating shaft one, 626, rotating shaft two, 627, rotating round plate, 628, adjusting gear, 629, deflection shaft, 630, push-pull rod, 7, energy saving component, 701, collecting round frame, 702, fixing block, 703, rocking spring, 704, sieving plate, 705, valve group, 706, connecting pipe, servo motor, 708, limiting round pipe, 709, impact cylinder, 709, three, gear, semi-fixing rod, 623, reciprocating slide plate, 624, limiting round gear, housing, rotary shaft, 707, and flexible cylinder, 714, 11, push-pull rod, and 11.
Detailed Description
The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments.
The invention discloses an instrument disinfection device for medical reshaping, which is mainly applied to the situation that residues such as blood stains, adhesives, tooth filling materials and the like exist on the surface of an instrument after treatment, the existing instrument is placed under flowing water for cleaning by manual hand, and the flowing water only can partially treat the surface of the instrument and can not effectively clean the adhered stains on the surface of the instrument, so that the instrument can cause cross infection to a patient when being used for the second time, and medical staff directly contact the used instrument during cleaning, thereby easily causing an infection scene.
Referring to fig. 1-6, an apparatus for medical shaping, including moving base 1, remove equidistant fixedly connected with spliced pole 2 in one side of base 1, and the outside fixedly connected with of a plurality of spliced poles 2 two mounting panels 3, and the installation round hole has all been seted up to one side of two mounting panels 3, and the inside fixedly connected with of two installation round holes is the same clean section of thick bamboo 4, take and put the mouth has been seted up to one side of clean section of thick bamboo 4, and get and put one side of mouth and have transparent observation window 5 through hinge connection, the inside of clean section of thick bamboo 4 is provided with clean subassembly 6, and clean subassembly 6 includes cavity installation pole 604.
Referring to fig. 1-6, the telescopic rods 605 are fixedly connected to the sides of the hollow installation rods 604 at equal distances, one side of the telescopic rods 605 on the same side is fixedly connected with the same installation long rod 607, one side of the installation long rods 607 is fixedly connected with the cleaning soft board 609, the telescopic springs 606 are fixedly connected to the sides of the hollow installation rods 604 at equal distances, the other sides of the telescopic springs 606 are connected with one side of the installation long rod 607, one sides of the installation long rods 607 are uniformly separated from the installation openings at equal distances, the sprinkler heads 608 are fixedly connected to the inside of each installation opening, round holes I are formed in the sides of the hollow installation rods 604 at equal distances, the water delivery pipes 610 are fixedly connected to the inside of each round hole I, and the water outlet ends of the water delivery pipes 610 are fixedly connected with the telescopic adjusting pipes 611.
Referring to fig. 1-6, opposite sides of the cleaning cylinder 4 are fixedly connected with circular guide rails 601, the insides of the two circular guide rails 601 are fixedly connected with circular sliders 602, one side of each circular slider 602 located above is fixedly connected with a mounting circular frame 603, the outside of each mounting circular frame 603 is fixedly connected with a mounting cross plate 620, two sliding openings are formed in one side of each mounting cross plate 620, reciprocating sliding plates 623 are fixedly connected in the insides of the two sliding openings, sterilizing lamp rods 621 are fixedly connected to one sides of the two reciprocating sliding plates 623, and stabilizing rods 622 are fixedly connected to one side of each mounting circular frame 603 at equal distances.
Referring to fig. 1-6, two round holes are formed in one side of the mounting cross plate 620, two rotating shafts 626 are connected to the inner portions of the two round holes through bearings, adjusting gears 628 are fixedly connected to the outer portions of the two rotating shafts 626, a limiting round gear frame 624 is fixedly connected to the inner wall of the cleaning barrel 4, the limiting round gear frame 624 is meshed with the adjusting gears 628, rotating circular plates 627 are fixedly connected to the outer portions of the two rotating shafts 626, round holes III are formed in one side of the two rotating circular plates 627, deflection shafts 629 are connected to the inner portions of the two round holes III through bearings, round holes IV are formed in one side of the two reciprocating sliding plates 623, a rotating shaft 625 is connected to the inner portions of the two round holes IV through bearings, and one push-pull rod 630 is movably connected to the outer portion of the rotating shaft 625 located on one side and the deflection shaft 629.
Referring to fig. 1-6, a round hole five is formed in one side of the cleaning cylinder 4, a rotating shaft 617 is connected to the inside of the round hole five through a bearing, a driving gear 618 is fixedly connected to the outside of the rotating shaft 617, a linkage gear 619 is fixedly connected to one side of the mounting round frame 603, the linkage gear 619 is meshed with the driving gear 618, a mounting seat 615 is fixedly connected to one side of the cleaning cylinder 4, a driving motor 616 is fixedly connected to one side of the mounting seat 615, a driving end of the driving motor 616 is connected to one side of the rotating shaft 617 through a coupling, a pump body 613 is fixedly connected to one side of the cleaning cylinder 4, a water outlet end of the pump body 613 is connected to the inside of the hollow mounting rod 604 through a water inlet pipe 612, and a hose 614 is fixedly connected to a water inlet end of the pump body 613.
In a specific application scenario, when cleaning an apparatus, the apparatus is firstly placed in the cleaning barrel 4 in sequence, the apparatus is fixed, then the pump body 613 is started, the pump body 613 absorbs cleaning liquid, then the apparatus is cleaned through a plurality of spray heads 608 on the hollow mounting rod 604, the driving motor 616 is started while cleaning, the driving motor 616 drives the driving gear 618 on the rotating shaft 617 to rotate, thereby the driving gear 618 drives the linkage gear 619 to rotate, the apparatus is enabled to move circumferentially, the cleaning soft plate 609 on the mounting long rod 607 is enabled to perform friction cleaning on the outside of the apparatus, the cleaning soft plate 609 is enabled to be tightly attached to the surface of the apparatus through the retractility of the telescopic spring 606, the apparatus is sterilized through the sterilizing lamp rods 621 positioned on two sides in the rotation process of the mounting round frame 603, and meanwhile the regulating gear 628 is enabled to be under the limit of the limit round gear frame 624 through the regulating gears 628 on two ends of the mounting cross plate 620, and the reciprocating slide plate 623 is enabled to reciprocate in the sliding port 621 on the mounting cross plate 620 by rotating the round plate 627, and thus the self-rotating lamp rod 623 is enabled to perform uniform sterilization treatment on the cleaning barrel 4.
Referring to fig. 1, fig. 7, fig. 8 and fig. 9, the bottom of the cleaning cylinder 4 is provided with an energy-saving assembly 7, and the energy-saving assembly 7 comprises a collecting circular frame 701, the inner wall of the collecting circular frame 701 is fixedly connected with a fixed block 702 at equal intervals, one side of each fixed block 702 is fixedly connected with two shaking springs 703, the outer parts of each shaking spring 703 are fixedly connected with the same sieving plate 704, one side of each sieving plate 704 is equidistantly separated from a sieve hole, a water outlet hole is formed in one side of the collecting circular frame 701, a valve group 705 is fixedly connected to the inner part of the water outlet hole, and a connecting pipe 706 is fixedly connected to one side of the valve group 705.
Referring to fig. 1, fig. 7, fig. 8 and fig. 9, a perforation is formed on one side of the collecting circular frame 701, a limiting circular tube 708 is fixedly connected to the perforated inside, an impact column 709 is slidably connected to the inside of the limiting circular tube 708, a toothed bar 712 is fixedly connected to one side of the impact column 709, a U-shaped bar 713 is fixedly connected to one side of the moving base 1, the same reset spring 714 is fixedly connected to the opposite side of the U-shaped bar 713 and the toothed bar 712, round holes six are formed on two sides of the moving base 1, the same rotating shaft three 710 is connected to the inside of the two round holes six through bearings, a half gear 711 is fixedly connected to the outside of the rotating shaft three 710, the toothed block end of the half gear 711 is meshed with the toothed bar 712, and a servo motor 707 is fixedly connected to one side of the moving base 1.
In a specific application scene, when cleaning the instrument by using the cleaning solution, the flowing cleaning solution flows into the collecting circular frame 701 through the lower part of the cleaning cylinder 4, and the cleaning solution after the sieving treatment is sieved through the sieving plate 704, so that the cleaning solution after the sieving treatment is recycled, and the cleaning loss is reduced, meanwhile, the sieving plate 704 is used for intermittently impacting the sieving plate 704 in the sieving process, the servo motor 707 is started in a gap, the servo motor 707 drives the half gear 711 on the rotating shaft three 710 to rotate, when the tooth block end of the half gear 711 is meshed with the tooth bar 712, the tooth bar 712 drives the impact column 709 to descend in the limiting circular pipe 708, the reset spring 714 is extruded simultaneously, and when the half gear 711 is separated from the tooth bar 712, the reset spring 714 rapidly rebounds, so that the impact column 709 intermittently impacts the sieving plate 704, and the blocking caused by the sieving plate 704 is avoided.
Referring to fig. 4 and 10, an adjusting cylinder 8 is fixedly connected to one side of the circular slider 602 positioned below by an equal distance, and clamping frames 9 are fixedly connected to the ejection ends of the adjusting cylinders 8.
Referring to fig. 10, the two sides of the plurality of clamping frames 9 are fixedly connected with the extrusion springs 10 at equal distances, the outer parts of the plurality of extrusion springs 10 positioned on the same side are fixedly connected with the same extrusion soft board 11, one sides of the plurality of clamping frames 9 are fixedly connected with the telescopic cylinders 12, and the ejection ends of the telescopic cylinders 12 are fixedly connected with one side of one extrusion soft board 11.
In specific application scenario, when cleaning the apparatus, at first place the apparatus in two centre gripping frames 9, make the flexible board 11 of extrusion carry out fixed centre gripping to the apparatus through the elasticity of extrusion spring 10, simultaneously through starting flexible cylinder 12, through the secondary application clamping force, make its centre gripping more stable.
The reciprocating motion of the sterilizing lamp rod has important technical significance, and is characterized in that 1, aiming at complex structures such as grooves and gaps of medical shaping instruments, the reciprocating motion can achieve multi-angle irradiation, eliminate sterilizing blind areas and ensure that all parts of the instruments can be effectively sterilized, 2, structures such as instrument placing racks, cleaning assemblies and the like in the cleaning cylinder can shield ultraviolet rays, the reciprocating motion can enable the ultraviolet rays to be uniformly distributed in the cleaning cylinder, local illumination deficiency is avoided, 3, the reciprocating motion can increase the contact time of the surfaces of the instruments and the ultraviolet rays, ensure that the sterilizing rate reaches more than 99.9%, and meet the strict standard of medical sterilization.
A method of using a medical orthopaedic instrument sterilization apparatus, using a medical orthopaedic instrument sterilization apparatus as described above, comprising the steps of:
Firstly, when cleaning the instrument, firstly, placing the instrument in a cleaning cylinder 4 in sequence, fixing the instrument, then starting a pump body 613, sucking cleaning liquid by the pump body 613, and then cleaning the instrument through a plurality of spray heads 608 on a hollow mounting rod 604;
step two, starting a driving motor 616 while cleaning, driving a driving gear 618 on a rotating shaft 617 to rotate through the driving motor 616, so that the driving gear 618 drives a linkage gear 619 to rotate a mounting round frame 603, the apparatus moves circumferentially, a cleaning soft board 609 on a mounting long rod 607 rubs and cleans the outside of the apparatus, and the cleaning soft board 609 is tightly attached to the surface of the apparatus through the retractility of a telescopic spring 606;
Step three, during the rotation process of the mounting round frame 603, the apparatus is sterilized by the sterilizing lamp rods 621 located at two sides, and meanwhile, the adjusting gears 628 at two ends of the mounting transverse plate 620 are rotated under the limit of the limiting round frame 624, so that the push-pull rod 630 is driven by the rotating round plate 627 to make the reciprocating sliding plate 623 reciprocate in the sliding opening on the mounting transverse plate 620, and the sterilizing lamp rods 621 uniformly sterilize the cleaning cylinder 4.
Working principle: when cleaning the apparatus, firstly, the apparatus is placed in the cleaning cylinder 4 in turn, the apparatus is placed in the two clamping frames 9, the extrusion soft board 11 is used for fixing and clamping the apparatus through the elasticity of the extrusion spring 10, meanwhile, the clamping force is applied for the second time through starting the telescopic cylinder 12, the clamping force is more stable, then the pump body 613 is started to absorb cleaning liquid, then the plurality of spray heads 608 on the hollow mounting rod 604 are used for cleaning the apparatus, the driving motor 616 is started, the driving gear 618 on the rotating shaft 617 is driven to rotate through the driving motor 616, the driving gear 618 is driven to drive the linkage gear 619 to rotate the mounting round frame 603, the apparatus is in circular movement, the cleaning soft board 609 on the mounting long rod 607 is used for friction cleaning the outside of the apparatus, the cleaning soft plate 609 is tightly attached to the surface of the apparatus through the retractility of the telescopic springs 606, the apparatus is sterilized through the sterilizing lamp rods 621 positioned at two sides in the rotating process of the mounting round frame 603, meanwhile, the regulating gears 628 are rotated under the limit of the limit round gear frames 624 through the regulating gears 628 arranged at two ends of the mounting transverse plate 620, so that the reciprocating sliding plate 623 is driven to reciprocate in the sliding opening on the mounting transverse plate 620 through the rotating round plate 627 by driving the push-pull rod 630, the sterilizing lamp rods 621 uniformly sterilize the cleaning cylinder 4, when the apparatus is cleaned by using cleaning liquid, the flowing cleaning liquid flows into the collecting round frame 701 through the lower part of the cleaning cylinder 4 at the moment, the used cleaning liquid is screened through the screening plate 704, so that the cleaning liquid after the screening treatment is recycled, thereby reducing cleaning loss, and meanwhile, the screening plate is used in the screening process, the servo motor 707 is started in the gap, the half gear 711 on the rotating shaft III 710 is driven to rotate through the servo motor 707, when the tooth block end of the half gear 711 is meshed with the tooth bar 712, the tooth bar 712 drives the impact post 709 to descend in the limiting round tube 708, the return spring 714 is extruded simultaneously, and when the half gear 711 is separated from the tooth bar 712, the return spring 714 rebounds rapidly, so that the impact post 709 intermittently impacts the screen plate 704, and the screen plate 704 is prevented from being blocked.
The foregoing is only a preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art, who is within the scope of the present invention, should make equivalent substitutions or modifications according to the technical scheme of the present invention and the inventive concept thereof, and should be covered by the scope of the present invention.