CN113441433B - Cleaning equipment for stainless steel medical tool - Google Patents

Cleaning equipment for stainless steel medical tool Download PDF

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Publication number
CN113441433B
CN113441433B CN202111023792.0A CN202111023792A CN113441433B CN 113441433 B CN113441433 B CN 113441433B CN 202111023792 A CN202111023792 A CN 202111023792A CN 113441433 B CN113441433 B CN 113441433B
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connecting piece
fixedly connected
wiping
column
plate
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CN113441433A (en
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郑旭佳
马梦雨
马思源
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Foshan Dayi Technology Co ltd
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Foshan Dayi Technology Co ltd
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    • 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
    • B08B1/14Wipes; Absorbent members, e.g. swabs or sponges
    • B08B1/143Wipes
    • 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

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  • Accommodation For Nursing Or Treatment Tables (AREA)
  • Cleaning In General (AREA)

Abstract

The invention relates to the field of medical treatment, in particular to a cleaning device for a stainless steel medical tool, which comprises a cleaning water tank, a liquid inlet pipe, a liquid outlet pipe, a support frame, a first mounting plate, a conveying system, a bearing opening and closing system, a moving system and the like; the left side of the rear part of the cleaning water tank is connected with a liquid inlet pipe in a penetrating way. The medical scissors are continuously opened and closed, and the medical scissors are brushed in a linkage manner in the opening and closing process, so that the effect of comprehensively cleaning the shaft joints of the medical scissors is achieved.

Description

Cleaning equipment for stainless steel medical tool
Technical Field
The invention relates to the field of medical treatment, in particular to a cleaning device for a stainless steel medical tool.
Background
The medical appliance is a tool for treating wounds or diseases, and comprises medical scissors which are mainly used for cutting skin, tissues, blood vessels and the like in an operation.
Need carry out cleaning and disinfecting to used medical scissors after the operation is accomplished, current cleaning and disinfecting to medical scissors is usually put into the cleaner with medical scissors earlier, then the manual work is brushed medical scissors with the sponge brush preliminary in the cleaner, but because the hub department of medical scissors easily remains dirty, the manual work is brushed and is opened medical scissors into fixed angle usually, the overlap department of hub still has some to expose completely, then be difficult to clean medical scissors completely, and because some medical scissors are the elbow type, easily injure the cleanup crew and damage to cleaning means great.
In combination with the above problems, there is an urgent need for a cleaning apparatus for stainless steel medical tools to solve the above problems.
Disclosure of Invention
In order to overcome the shortcoming that the medical scissors are difficult to clean completely because the medical scissors are usually only opened to a fixed angle by manual brushing, the technical problem is as follows: a cleaning apparatus for stainless steel medical tools is provided.
The technical implementation scheme of the invention is as follows: a cleaning device for stainless steel medical tools comprises a cleaning water tank, a liquid inlet pipe, a liquid outlet pipe, a support frame, a first mounting plate, a conveying system, a bearing opening and closing system, a moving system and a side wiping system; the left side of the rear part of the cleaning water tank is connected with a liquid inlet pipe in a penetrating way; the right side of the bottom of the cleaning water tank is connected with a liquid outlet pipe in a penetrating way; the left side and the right side of the rear part of the cleaning water tank are respectively and fixedly connected with a support frame; a first mounting plate is fixedly connected between the tops of the two supporting frames; the top of the first mounting plate is connected with a conveying system; the conveying system is used for conveying the medical scissors to the position below the liquid level of the cleaning agent and is linked with the moving system to operate; the middle part below the conveying system is connected with a bearing opening and closing system; the bearing opening and closing system is used for opening and closing the medical scissors after the medical scissors are immersed in the cleaning agent; the four walls in the cleaning water tank are connected with a moving system; the moving system is used for enabling the side wiping system to move close to the medical scissors; the front side and the rear side in the mobile system are connected with side wiping systems; the side wiping system is used for wiping the side of the medical scissors when the medical scissors are unfolded.
Optionally, the conveying system comprises a second mounting plate, a first electric slide rail, a first electric slide block, a first connecting piece, a third mounting plate, a second connecting piece, a third connecting piece and a first linkage block; the left side and the right side of the top of the first mounting plate are respectively fixedly connected with a second mounting plate; the front parts of the two second mounting plates are respectively provided with a first electric slide rail; the front parts of the two first electric sliding rails are respectively connected with a first electric sliding block in a sliding manner; a first connecting piece is fixedly connected between the front parts of the two first electric sliding blocks; the front part of the first connecting piece is fixedly connected with a third mounting plate; the upper side of the rear part of the third mounting plate is fixedly connected with a second connecting piece; the bottom of the second connecting piece is connected with a bearing opening and closing system; the left side and the right side of the front lower part of the third mounting plate are respectively and fixedly connected with a third connecting piece; the bottoms of the two third connecting pieces are respectively and fixedly connected with a first linkage block; the opposite sides of the two first linkage blocks are symmetrical inclined planes.
Optionally, the bearing opening and closing system comprises a second electric sliding rail, a second electric sliding block, a fourth connecting piece, a bearing piece and a rotary brushing assembly; a second electric slide rail is arranged on the front side of the bottom of the second connecting piece; the left side and the right side of the bottom of the second electric sliding rail are respectively connected with a second electric sliding block in a sliding manner; the bottoms of the two second electric sliding blocks are respectively and fixedly connected with a fourth connecting piece; the bottoms of the two fourth connecting pieces are respectively and rotatably connected with a bearing piece; the rear side of the bottom of the second connecting piece is connected with a rotary brushing assembly; the back sides of the outer surfaces of the two bearing pieces are connected with the rotary brushing component.
Optionally, the outer circumferential surface of the carrier has five annular protrusions at equal intervals.
Optionally, the rotary brushing assembly comprises a flat gear, a fifth connecting piece and a toothed plate; one end of each bearing piece positioned at the rear of the fourth connecting piece is fixedly connected with a flat gear; the left side and the right side of the rear part of the second connecting piece are respectively and fixedly connected with a fifth connecting piece; the bottoms of the two fifth connecting pieces are respectively fixedly connected with a pinion plate; the left flat gear is meshed with the left gear tooth plate; the right flat gear is meshed with the right gear tooth plate.
Optionally, the moving system includes a fourth mounting plate, a first connecting slide rail, a first connecting slide block, a sixth connecting piece, an elastic piece and a second linkage block; the front side and the rear side of the inner wall of the cleaning water tank are respectively and fixedly connected with a fourth mounting plate; one opposite side of each of the two fourth mounting plates is fixedly connected with a first connecting slide rail; two first connecting sliding blocks are respectively connected to opposite sides of the two first connecting sliding rails in a sliding manner; a sixth connecting piece is fixedly connected between the two first connecting sliding blocks which correspond to the front and the back; the left side and the right side of the inner wall of the cleaning water tank are respectively connected with one end of two elastic pieces; the outer sides of the two sixth connecting pieces are respectively connected with the other ends of the two corresponding elastic pieces; a second linkage block is fixedly connected between the front elastic piece and the rear elastic piece at the outer sides of the two sixth connecting pieces; the outer sides of the two second linkage blocks are symmetrical inclined planes; and a side wiping system is connected between the inner walls of the two sixth connecting pieces.
Optionally, the side wiping system comprises a first joining column, a first turning plate, a first toggle column, a seventh connecting piece, an eighth connecting piece, a first wiping sponge, a first turning bar, a second joining column, a second turning plate, a second toggle column, a ninth connecting piece, a tenth connecting piece, a second wiping sponge and a second turning bar; the inner left part of the right sixth connecting piece is rotatably connected with a first connecting column; the front end and the rear end of the outer surface of the first connecting column are respectively fixedly connected with a first crutch plate; a first toggle column is fixedly connected to the top between the two first crutch plates; a seventh connecting piece is fixedly connected to the bottom between the two first crutch plates; three eighth connecting pieces are fixedly connected to the seventh connecting piece at equal intervals; the left parts of the three eighth connecting pieces are respectively connected with a first wiping sponge; the bottoms of the front side and the rear side of each first wiping sponge are respectively connected with a first turning strip; the inner right part of the sixth connecting piece on the left side is rotatably connected with a second connecting column; the front end and the rear end of the outer surface of the second connecting column are respectively fixedly connected with a second crutch plate; a second toggle column is fixedly connected to the top between the two second crutch plates; a ninth connecting piece is fixedly connected to the bottom between the two second crutch plates; two tenth connecting pieces are fixedly connected to the ninth connecting piece at equal intervals; the right parts of the two tenth connecting pieces are respectively connected with a second wiping sponge; the bottoms of the front side and the rear side of each second wiping sponge are respectively connected with a second turning strip.
Optionally, the first and second wiping sponges are staggered.
Optionally, the device further comprises an inner side wiping system, the inner side wiping system is connected to the upper side of the front part of the conveying system, and the inner side wiping system comprises a first shaft column, a first rotating plate, an eleventh connecting piece, a twelfth connecting piece, a second shaft column, a second rotating plate, a thirteenth connecting piece, a fourteenth connecting piece, a bearing frame, a second connecting slide block, a second connecting slide rail, a limiting plate, a third connecting column, a fifteenth connecting piece and a wiping cotton column; the right side of the front part of the third mounting plate is rotatably connected with a first shaft column; the first shaft column is fixedly connected with a first rotating plate; the bottom of the first rotating plate is provided with a through groove, and the right bearing piece penetrates through the through groove of the first rotating plate; an eleventh connecting piece is fixedly connected to the upper side of the front part of the first rotating plate; the front part of the eleventh connecting piece is in transmission connection with a twelfth connecting piece; the left lower part of the twelfth connecting piece is in transmission connection with a bearing frame; a second shaft column is rotatably connected to the left side of the front part of the third mounting plate; a second rotating plate is fixedly connected to the second shaft column; the bottom of the second rotating plate is provided with a through groove, and the left bearing piece penetrates through the through groove of the second rotating plate; a thirteenth connecting piece is fixedly connected to the upper side of the front part of the second rotating plate; the front part of the thirteenth connecting piece is in transmission connection with a fourteenth connecting piece; the right lower part of the fourteenth connecting piece is in transmission connection with the bearing frame; the rear part of the bearing frame is fixedly connected with a second connecting slide block; the front middle part of the third mounting plate is fixedly connected with a second connecting slide rail; the second connecting slide block is in sliding connection with the second connecting slide rail; a limiting plate is fixedly connected to the upper side of the front part of the second connecting slide rail; the left side and the right side of the bottom of the bearing frame are respectively and rotatably connected with a third connecting column; the front side and the rear side of each third connecting column are fixedly connected with a fifteenth connecting piece respectively; and a wiping cotton column is fixedly connected between the bottoms of the front and rear corresponding fifteenth connecting pieces.
Optionally, the two wiping cotton columns are symmetrical, and inclined annular bulges are arrayed on the two wiping cotton columns.
The invention has the beneficial effects that: 1. the medical scissors are continuously opened and closed, and the medical scissors are brushed in a linkage manner in the opening and closing process, so that the effect of comprehensively cleaning the shaft joints of the medical scissors is achieved;
2. the medical scissors are opened and closed, the inner walls of the handles of the medical scissors are brushed in a linkage manner, the overlapped inner sides of the medical scissors are brushed in a linkage manner, and the effect of synchronous linkage of multiple brushing is achieved;
3. the medical scissors have the advantages that the sponge brush is adaptive to the medical scissors with the elbows, the abrasion to the sponge brush is reduced, the sponge brush is attached to the surface of the medical scissors to the maximum extent, and the medical scissors are effectively cleaned.
Drawings
Fig. 1 is a first perspective view of the present application;
FIG. 2 is a second perspective view of the present application;
FIG. 3 is a first partial perspective view of the present application;
FIG. 4 is a second partial perspective view of the present application;
FIG. 5 is a third partial perspective view of the present application;
FIG. 6 is a fourth partial perspective view of the present application;
FIG. 7 is a perspective view of a wiping swab of the present application;
FIG. 8 is a fifth partial perspective view of the present application;
FIG. 9 is a sixth partial perspective view of the present application;
FIG. 10 is a perspective view of the combination of the motion system and side wiping system of the present application;
FIG. 11 is a perspective view of the side wiping system of the present application.
Reference numbers in the drawings: 1-a clean water tank, 2-a liquid inlet pipe, 3-a liquid outlet pipe, 4-a support frame, 5-a first mounting plate, 201-a second mounting plate, 202-a first electric slide rail, 203-a first electric slide block, 204-a first connecting piece, 205-a third mounting plate, 206-a second connecting piece, 207-a third connecting piece, 208-a first linkage block, 301-a second electric slide rail, 302-a second electric slide block, 303-a fourth connecting piece, 304-a bearing piece, 305-a flat gear, 306-a fifth connecting piece, 307-a toothed plate, 401-a fourth mounting plate, 402-a first connecting slide rail, 403-a first connecting slide block, 404-a sixth connecting piece, 405-an elastic piece, 406-a second linkage block, 501-a first connecting column, 502-a first corner plate, 503-a first toggle column, 504-a seventh connecting piece, 505-an eighth connecting piece, 506-a first wiping sponge, 507-a first direction changing strip, 508-a second connecting column, 509-a second corner plate, 510-a second toggle column, 511-a ninth connecting piece, 512-a tenth connecting piece, 513-a second wiping sponge, 514-a second direction changing strip, 601-a first shaft column, 602-a first rotating plate, 603-an eleventh connecting piece, 604-a twelfth connecting piece, 605-a second shaft column, 606-a second rotating plate, 607-a thirteenth connecting piece, 608-a fourteenth connecting piece, 609-a bearing frame, 610-a second connecting sliding block, 611-a second connecting sliding rail, 612-a limiting plate, 613-a third connecting column, 614-fifteenth link, 615-wiping cotton column.
Detailed Description
The following description is only a preferred embodiment of the present invention, and does not limit the scope of the present invention.
In an embodiment of the present invention, the resilient member 405 is a spring rod.
Example 1
A cleaning device for stainless steel medical tools is shown in figures 1-2 and 8 and comprises a cleaning water tank 1, a liquid inlet pipe 2, a liquid outlet pipe 3, a support frame 4, a first mounting plate 5, a conveying system, a bearing opening and closing system, a moving system and a side wiping system; the left side of the rear part of the clean water tank 1 is connected with a liquid inlet pipe 2 in a penetrating way; the right side of the bottom of the cleaning water tank 1 is connected with a liquid outlet pipe 3 in a penetrating way; the left side and the right side of the rear part of the cleaning water tank 1 are respectively and fixedly connected with a support frame 4; a first mounting plate 5 is fixedly connected between the tops of the two support frames 4; the top of the first mounting plate 5 is connected with a conveying system; the conveying system is used for conveying the medical scissors to the position below the liquid level of the cleaning agent and is linked with the moving system to operate; the middle part below the conveying system is connected with a bearing opening and closing system; the bearing opening and closing system is used for opening and closing the medical scissors after the medical scissors are immersed in the cleaning agent; the four walls in the cleaning water tank 1 are connected with a moving system; the moving system is used for enabling the side wiping system to move close to the medical scissors; the front side and the rear side in the mobile system are connected with side wiping systems; the side wiping system is used for wiping the side of the medical scissors when the medical scissors are unfolded.
When the equipment is used, the equipment is arranged in a hospital instrument cleaning and disinfecting chamber which needs to be used, cleaning agent is added into a clean water tank 1 through a liquid inlet pipe 2, an operator places four medical scissors to be cleaned in a bearing opening and closing system, the bearing opening and closing system and the medical scissors synchronously move downwards through a conveying system, and when the conveying system operates, a moving system is linked to drive a side wiping system to move, the side wiping system adapts to the bent medical scissors in the moving process, then the medical scissors intermittently open and close through the operation of the bearing opening and closing system, the inner sides of handles of the medical scissors are scrubbed, the side wiping system is linked to scrub the sides of the medical scissors, after the medical scissors are cleaned, sewage after the cleaning in the clean water tank 1 is discharged through a liquid outlet pipe 3, and the equipment achieves the purpose of continuously opening and closing the medical scissors, and the medical scissors are brushed in a linkage manner in the opening and closing process, so that the effect of comprehensively cleaning the shaft joints of the medical scissors is realized.
As shown in fig. 1 and 3, the conveying system includes a second mounting plate 201, a first electric slide rail 202, a first electric slide block 203, a first connecting member 204, a third mounting plate 205, a second connecting member 206, a third connecting member 207, and a first linkage block 208; the left side and the right side of the top of the first mounting plate 5 are respectively welded with a second mounting plate 201; the front parts of the two second mounting plates 201 are respectively connected with a first electric slide rail 202 through bolts; the front parts of the two first electric slide rails 202 are respectively connected with a first electric slide block 203 in a sliding way; a first connecting piece 204 is fixedly connected between the front parts of the two first electric sliding blocks 203; a third mounting plate 205 is welded at the front part of the first connecting piece 204; a second connecting piece 206 is welded on the upper side of the rear part of the third mounting plate 205; the bottom of the second connecting piece 206 is connected with a bearing opening and closing system; the left side and the right side of the front lower part of the third mounting plate 205 are respectively welded with a third connecting piece 207; the bottoms of the two third connecting pieces 207 are respectively welded with a first linkage block 208; the opposite sides of the two first linkage blocks 208 are symmetrically inclined planes.
After the medical scissors are placed by an operator, the two first electric slide rails 202 are controlled to operate, the second mounting plate 201 is used for fixing, the first electric slide rails 202 drive the first connecting pieces 204 to move downwards through the first electric slide blocks 203, the third mounting plate 205, the second connecting pieces 206, the third connecting pieces 207 and the first linkage blocks 208 synchronously move downwards along with the first connecting pieces 204, the bearing opening and closing system is driven to move downwards through the second connecting pieces 206, and then the medical scissors move downwards along with the bearing opening and closing system, so that the medical scissors move downwards to be immersed under the liquid level of the cleaning agent in the cleaning water tank 1.
The two first linkage blocks 208 are inclined at opposite sides.
The interlocking moving system operates when the two first interlocking blocks 208 move down.
As shown in fig. 1 and fig. 4-6, the bearing opening and closing system includes a second electric slide rail 301, a second electric slide block 302, a fourth connecting member 303, a bearing member 304 and a rotary brushing assembly; the front side of the bottom of the second connecting piece 206 is connected with a second electric slide rail 301 through a bolt; the left side and the right side of the bottom of the second electric slide rail 301 are respectively connected with a second electric slide block 302 in a sliding manner; the bottoms of the two second electric sliding blocks 302 are fixedly connected with a fourth connecting piece 303 respectively; the bottoms of the two fourth connecting pieces 303 are respectively connected with a bearing piece 304 in a rotating way; the rear side of the bottom of the second connecting piece 206 is connected with a rotary brushing component; the two carriers 304 are connected to the rotary brush assembly on the backside of the outer surface.
As shown in fig. 1 and 6, the rotary brushing assembly comprises a flat gear 305, a fifth coupling 306 and a cogged plate 307; one flat gear 305 is fixedly connected to each end of the two bearing members 304 behind the fourth connecting member 303; the left side and the right side of the rear bottom of the second connecting piece 206 are respectively welded with a fifth connecting piece 306; the bottom parts of the two fifth connecting pieces 306 are respectively welded with a toothed plate 307; the left flat gear 305 is meshed with the left cogged plate 307; the right flat gear 305 is engaged with the right cogged plate 307.
Firstly, an operator sleeves two handles of the medical scissors on two bearing pieces 304 respectively, the medical scissors are in a folding state at the moment, when the second connecting piece 206 moves downwards, the bearing opening and closing system integrally moves downwards, the medical scissors move downwards along with the bearing opening and closing system, when the medical scissors are cleaned by opening and closing, the second electric slide rail 301 is controlled to drive the two second electric slide blocks 302 to move away from each other, so that the two bearing pieces 304 synchronously move away from each other, the two handles of the medical scissors move away from each other, the medical scissors are opened, when the second electric slide rail 301 is controlled to drive the two second electric slide blocks 302 to move close to each other, the medical scissors are folded, the second electric slide rail 301 is controlled to intermittently open and close the medical scissors, all parts at the shaft joints of the medical scissors can be exposed for cleaning, and when the bearing pieces 304 move, the flat gear 305 moves along with the bearing part 304, the fifth connecting part 306 is used for fixing the toothed plate 307, the flat gear 305 moves on the toothed plate 307, the flat gear 305 rotates in the moving process, the flat gear 305 drives the bearing part 304 to synchronously rotate, and the bearing part 304 brushes the inner annular surface of the handle of the medical scissors.
Five annular protrusions are equally spaced around the outer circumference of the carrier 304.
The handle of the medical scissors is placed between two adjacent annular protrusions on the outer annular surface of the bearing piece 304, so that the medical scissors are limited.
An annular groove is formed between two adjacent annular protrusions on the outer annular surface of the bearing component 304, and a brushing sponge ring is arranged in the annular groove.
When the bearing part 304 rotates, the inner ring surface of the handle of the medical scissors is brushed by the brushing sponge ring.
As shown in fig. 1 and fig. 8-10, the moving system includes a fourth mounting plate 401, a first connecting slide rail 402, a first connecting slider 403, a sixth connecting member 404, an elastic member 405, and a second link block 406; the front side and the rear side of the inner wall of the cleaning water tank 1 are respectively and fixedly connected with a fourth mounting plate 401; one side of each of the two fourth mounting plates 401 opposite to each other is connected with a first connecting slide rail 402 through bolts; two first connecting sliding blocks 403 are respectively connected to opposite sides of the two first connecting sliding rails 402 in a sliding manner; a sixth connecting piece 404 is fixedly connected between the two first connecting sliding blocks 403 which correspond to each other in the front and the back; the left side and the right side of the inner wall of the cleaning water tank 1 are respectively connected with one end of two elastic pieces 405; the outer sides of the two sixth connecting pieces 404 are respectively connected with the other ends of the two corresponding elastic pieces 405; a second linkage block 406 is welded between the front elastic piece 405 and the rear elastic piece 405 outside the two sixth connecting pieces 404; the outer sides of the two second linkage blocks 406 are symmetrical inclined planes; the side wiping system is connected between the inner walls of the two sixth connectors 404.
When the medical scissors are moved downwards by the conveying system, the two first linkage blocks 208 respectively push the two second linkage blocks 406 in the downward moving process, so that the two second linkage blocks 406 move close to each other, and further the two sixth connecting pieces 404 move close to each other synchronously, the two left and right adjacent first connecting sliding blocks 403 move close to each other on the first connecting sliding rails 402 in a sliding manner to match with the movement of the sixth connecting pieces 404, and the four elastic pieces 405 are stretched in a matching manner, so that the two sixth connecting pieces 404 move to drive the side wiping system to move.
As shown in fig. 1 and 11, the side wiping system includes a first connecting column 501, a first crutch plate 502, a first toggle column 503, a seventh connecting piece 504, an eighth connecting piece 505, a first wiping sponge 506, a first direction changing bar 507, a second connecting column 508, a second crutch plate 509, a second toggle column 510, a ninth connecting piece 511, a tenth connecting piece 512, a second wiping sponge 513 and a second direction changing bar 514; a first connecting column 501 is rotatably connected to the left part of the right sixth connecting piece 404 through a torsion spring; the front end and the rear end of the outer surface of the first connecting column 501 are respectively welded with a first crutch plate 502; a first toggle column 503 is welded at the top between the two first crutch boards 502; a seventh connecting piece 504 is welded at the bottom between the two first crutch plates 502; three eighth connecting pieces 505 are fixedly connected with the seventh connecting piece 504 at equal intervals; a first wiping sponge 506 is connected to the left parts of the three eighth connecting pieces 505; the bottoms of the front side and the rear side of each first wiping sponge 506 are respectively connected with a first turning strip 507; a second connecting column 508 is rotatably connected to the inner right part of the left sixth connecting piece 404 through a torsion spring; the front end and the rear end of the outer surface of the second connecting column 508 are respectively welded with a second crutch plate 509; a second toggle column 510 is welded at the top between the two second crutch boards 509; a ninth connecting piece 511 is welded at the bottom between the two second crutch boards 509; two tenth connecting pieces 512 are fixedly connected with the ninth connecting piece 511 at equal intervals; a second wiping sponge 513 is connected to the right parts of the two tenth connecting pieces 512 respectively; the bottoms of the front side and the rear side of each second wiping sponge 513 are respectively connected with a second direction changing strip 514.
When the two sixth connecting pieces 404 move close to each other, the right sixth connecting piece 404 drives the first connecting column 501, the first corner plate 502, the first toggle column 503, the seventh connecting piece 504, the eighth connecting piece 505, the first wiping sponge 506 and the first direction changing bar 507 to move, the left sixth connecting piece 404 drives the second connecting column 508, the second corner plate 509, the second toggle column 510, the ninth connecting piece 511, the tenth connecting piece 512, the second wiping sponge 513 and the second direction changing bar 514 to move, so that the first wiping sponge 506 and the second wiping sponge 513 move to the side of the medical scissors, and the three first wiping sponges 506 and the two second wiping sponges 513 are distributed in a staggered manner that the adjacent first wiping sponges 506 and the second wiping sponges 513 are distributed on two sides of the medical scissors, when the medical scissors are in an elbow shape, the first direction changing bar 507 and the second direction changing bar 514 can shift along the radian of the medical scissors in the moving process, and further the first turning bar 507 drives the bottom of the first wiping sponge 506 to deflect, the second turning bar 514 drives the bottom of the second wiping sponge 513 to deflect, and the first toggle column 503 and the second toggle column 510 move to the outer sides of the two handles of the medical scissors, when the medical scissors are opened, the two handles toggle the first toggle column 503 and the second toggle column 510, so that the first toggle column 503 and the second toggle column 510 move away from each other, the first toggle plate 502 rotates on the first connecting column 501 through the movement of the first toggle column 503, the torsion spring is twisted, and further the first toggle plate 502 drives the eighth connecting piece 505, the first wiping sponge 506 and the first turning bar 507 to move synchronously through the seventh connecting piece 504, so that the second toggle plate 509 drives the second toggle column 510, the ninth connecting piece 511, the tenth connecting piece 512, the second wiping sponge 513 and the second turning bar 514 to move synchronously, and the wiping sponge 506 and the second wiping sponge 513 move in different directions, the two sides of the medical scissors are brushed, the curved cambered surfaces of the elbow-shaped medical scissors are brushed through the first turning strips 507 and the second turning strips 514, and the system achieves the purpose of brushing the sides of the medical scissors.
The first and second wiping sponges 506, 513 are staggered.
The adjacent first and second wiping sponges 506 and 513 are distributed on both sides of a pair of medical scissors.
The left and right ends of the first turning strip 507 and the left and right ends of the second turning strip 514 are both quarter spherical surfaces.
When the medical scissors are in an elbow shape, the spherical surfaces of the first direction changing strip 507 and the second direction changing strip 514 are convenient to shift along the radian of the elbow of the medical scissors in the moving process.
Example 2
On the basis of embodiment 1, as shown in fig. 1, 4-5 and 7, the inside wiping system is further included, the inside wiping system is connected to the upper side of the front part of the conveying system, and the inside wiping system includes a first shaft column 601, a first rotating plate 602, an eleventh connecting member 603, a twelfth connecting member 604, a second shaft column 605, a second rotating plate 606, a thirteenth connecting member 607, a fourteenth connecting member 608, a receiving frame 609, a second connecting slider 610, a second connecting slide rail 611, a limiting plate 612, a third connecting column 613, a fifteenth connecting member 614 and a wiping cotton column 615; a first shaft column 601 is rotatably connected to the right side of the front part of the third mounting plate 205; a first rotating plate 602 is welded on the first shaft column 601; the bottom of the first rotating plate 602 is provided with a through slot, and the right bearing member 304 passes through the through slot of the first rotating plate 602; an eleventh connecting piece 603 is welded on the upper side of the front part of the first rotating plate 602; the front part of the eleventh connecting piece 603 is in transmission connection with a twelfth connecting piece 604; the left lower part of the twelfth connecting piece 604 is in transmission connection with a bearing frame 609; a second shaft column 605 is rotatably connected to the left side of the front part of the third mounting plate 205; a second rotating plate 606 is welded on the second shaft column 605; the bottom of the second rotating plate 606 is provided with a through groove, and the left bearing piece 304 passes through the through groove of the second rotating plate 606; a thirteenth connecting piece 607 is welded on the upper side of the front part of the second rotating plate 606; a fourteenth connecting piece 608 is connected to the front part of the thirteenth connecting piece 607 in a transmission manner; the right lower part of the fourteenth connecting piece 608 is in transmission connection with a bearing frame 609; the rear part of the bearing frame 609 is fixedly connected with a second connecting slide block 610; the front middle part of the third mounting plate 205 is connected with a second connecting slide rail 611 through bolts; the second connecting sliding block 610 is slidably connected with the second connecting sliding rail 611; a limiting plate 612 is fixedly connected to the upper side of the front part of the second connecting slide rail 611; the left side and the right side of the bottom of the bearing frame 609 are respectively rotatably connected with a third connecting post 613 through a torsion spring; a fifteenth connecting piece 614 is fixedly connected to the front side and the rear side of each third connecting column 613; a wiping cotton column 615 is fixedly connected between the bottoms of the front and back corresponding fifteenth connecting pieces 614.
When the conveying system drives the scissors to move downwards, the inner side wiping system synchronously moves downwards along with the third mounting plate 205, when the two carriers 304 move away from each other to open the medical scissors, the right carrier 304 drives the first rotating plate 602 to rotate on the first shaft column 601, the first rotating plate 602 drives the twelfth connecting piece 604 to move through the eleventh connecting piece 603, the left carrier 304 drives the second rotating plate 606 to rotate on the second shaft column 605, the second rotating plate 606 drives the fourteenth connecting piece 608 to move through the thirteenth connecting piece 607, the left part of the twelfth connecting piece 604 and the right part of the fourteenth connecting piece 608 synchronously drive the bearing frame 609 to move downwards, the bearing frame 609 drives the second connecting slide block 610 to slide on the second connecting slide rail 611, the second connecting slide block 610 assists in moving the bearing frame 609, and a torsion spring between the bearing frame 609 and the third connecting column 613 is in a torsion shape, the outer sides of the fifteenth connecting pieces 614 are limited through the limiting plate 612, the third connecting column 613 and the fifteenth connecting member 614 are prevented from rotating, when the receiving frame 609 moves downwards, the third connecting column 613, the fifteenth connecting member 614 and the wiping cotton column 615 move downwards synchronously, the two fifteenth connecting members 614 lose the limit of the limit plate 612, when the two wiping cotton columns 615 contact between the two handles of the medical scissors, the two fifteenth connecting members 614 rotate under the action of the torsion spring, the wiping cotton columns 615 are driven by the fifteenth connecting members 614 to move synchronously, the two wiping cotton columns 615 are opened outwards and respectively abut against the positions between the two handles of the medical scissors, when the medical scissors are opened continuously, the two wiping cotton columns 615 are driven to move downwards continuously, and under the action of the torsion spring, the two wiping cotton columns 615 always abut against the positions between the two handles of the medical scissors to move downwards, and the two symmetrical wiping cotton columns 615 are provided with inclined annular bulges in an array, when the left wiping cotton column 615 moves downwards, the second wiping sponge 513 is pushed, and when the right wiping cotton column 615 moves downwards, the first wiping sponge 506 is pushed, so that the tops of the second wiping sponge 513 and the first wiping sponge 506 are deflected in different directions, and the second wiping sponge 513 and the first wiping sponge 506 are further attached to the opened side faces of the medical scissors.
The bottom of the first rotating plate 602 and the bottom of the second rotating plate 606 are respectively provided with a through groove.
The through slots for the two carriers 304 move within the first and second rotating plates 602 and 606, respectively.
The bottoms of the left side and the right side of the inner wall of the limiting plate 612 are cambered surfaces.
The two fifteenth connecting members 614 are easily gathered in the restraining plate 612.
The two wiping cotton columns 615 are symmetrical, and inclined annular bulges are arrayed on the two wiping cotton columns 615.
When moving downwards, the two wiping cotton columns 615 respectively poke the second wiping sponge 513 and the first wiping sponge 506 through the annular protrusions with the inclined outer surfaces, so that the second wiping sponge 513 and the first wiping sponge 506 are further attached to the opened side surfaces of the medical scissors.
While the disclosure has been described with respect to a limited number of embodiments, those skilled in the art, having benefit of this disclosure, will appreciate that various other embodiments can be devised which do not depart from the scope of the invention as disclosed herein. Accordingly, the scope of the invention should be limited only by the attached claims.

Claims (8)

1. A cleaning device for stainless steel medical tools comprises a cleaning water tank (1), a liquid inlet pipe (2), a liquid outlet pipe (3), a support frame (4) and a first mounting plate (5); the left side of the rear part of the cleaning water tank (1) is connected with a liquid inlet pipe (2) in a penetrating way; the right side of the bottom of the cleaning water tank (1) is connected with a liquid outlet pipe (3) in a penetrating way; the left side and the right side of the rear part of the cleaning water tank (1) are respectively and fixedly connected with a support frame (4); a first mounting plate (5) is fixedly connected between the tops of the two support frames (4); the device is characterized by also comprising a conveying system, a bearing opening and closing system, a moving system and a side wiping system; the top of the first mounting plate (5) is connected with a conveying system; the conveying system is used for conveying the medical scissors to the position below the liquid level of the cleaning agent and is linked with the moving system to operate; the middle part below the conveying system is connected with a bearing opening and closing system; the bearing opening and closing system is used for opening and closing the medical scissors after the medical scissors are immersed in the cleaning agent; the four walls in the cleaning water tank (1) are connected with a moving system; the moving system is used for enabling the side wiping system to move close to the medical scissors; the front side and the rear side in the mobile system are connected with side wiping systems; the side wiping system is used for wiping the side of the medical scissors when the medical scissors are opened;
the conveying system comprises a second mounting plate (201), a first electric sliding rail (202), a first electric sliding block (203), a first connecting piece (204), a third mounting plate (205), a second connecting piece (206), a third connecting piece (207) and a first linkage block (208); the left side and the right side of the top of the first mounting plate (5) are respectively fixedly connected with a second mounting plate (201); the front parts of the two second mounting plates (201) are respectively provided with a first electric slide rail (202); the front parts of the two first electric slide rails (202) are respectively connected with a first electric slide block (203) in a sliding way; a first connecting piece (204) is fixedly connected between the front parts of the two first electric sliding blocks (203); the front part of the first connecting piece (204) is fixedly connected with a third mounting plate (205); a second connecting piece (206) is fixedly connected to the upper side of the rear part of the third mounting plate (205); the bottom of the second connecting piece (206) is connected with a bearing opening and closing system; the left side and the right side of the front lower part of the third mounting plate (205) are respectively and fixedly connected with a third connecting piece (207); the bottoms of the two third connecting pieces (207) are fixedly connected with a first linkage block (208) respectively; one opposite sides of the two first linkage blocks (208) are symmetrical inclined planes;
the bearing opening and closing system comprises a second electric slide rail (301), a second electric slide block (302), a fourth connecting piece (303), a bearing piece (304) and a rotary brushing assembly; a second electric slide rail (301) is arranged on the front side of the bottom of the second connecting piece (206); the left side and the right side of the bottom of the second electric slide rail (301) are respectively connected with a second electric slide block (302) in a sliding way; the bottoms of the two second electric sliding blocks (302) are respectively and fixedly connected with a fourth connecting piece (303); the bottoms of the two fourth connecting pieces (303) are respectively connected with a bearing piece (304) in a rotating way; the rear side of the bottom of the second connecting piece (206) is connected with a rotary brushing component; the two bearings (304) are connected to the rotary brush assembly at the rear of the outer surface.
2. The cleaning apparatus for stainless steel medical tools as claimed in claim 1, wherein the outer circumferential surface of the carrier member (304) has five annular protrusions at equal intervals.
3. A cleaning device for stainless steel medical tools according to claim 2, wherein the rotary brush assembly comprises a spur gear (305), a fifth coupling member (306) and a cogged plate (307); one end of each of the two bearing pieces (304) which are positioned at the rear of the fourth connecting piece (303) is fixedly connected with a flat gear (305); the left side and the right side of the rear part of the second connecting piece (206) are respectively and fixedly connected with a fifth connecting piece (306); the bottoms of the two fifth connecting pieces (306) are respectively fixedly connected with a pinion plate (307); the left flat gear (305) is meshed with the left gear cog plate (307); the right flat gear (305) is meshed with the right toothed wheel plate (307).
4. A cleaning device for stainless steel medical tools according to claim 3, wherein the moving system comprises a fourth mounting plate (401), a first connecting slide rail (402), a first connecting slide block (403), a sixth connecting member (404), an elastic member (405) and a second connecting block (406); the front side and the rear side of the inner wall of the cleaning water tank (1) are respectively and fixedly connected with a fourth mounting plate (401); one opposite side of each of the two fourth mounting plates (401) is fixedly connected with a first connecting slide rail (402); two first connecting sliding blocks (403) are respectively connected to the opposite sides of the two first connecting sliding rails (402) in a sliding manner; a sixth connecting piece (404) is fixedly connected between two first connecting sliding blocks (403) which correspond to each other in the front and the back; the left side and the right side of the inner wall of the cleaning water tank (1) are respectively connected with one end of two elastic pieces (405); the outer sides of the two sixth connecting pieces (404) are respectively connected with the other ends of the two corresponding elastic pieces (405); a second linkage block (406) is fixedly connected between the two elastic pieces (405) which are positioned at the outer sides of the two sixth connecting pieces (404) and are opposite front and back respectively; the outer sides of the two second linkage blocks (406) are symmetrical inclined planes; the inner walls of the two sixth connecting pieces (404) are connected with a side wiping system.
5. The cleaning device for the stainless steel medical tool as claimed in claim 4, wherein the side wiping system comprises a first connecting column (501), a first crutch plate (502), a first toggle column (503), a seventh connecting piece (504), an eighth connecting piece (505), a first wiping sponge (506), a first direction changing strip (507), a second connecting column (508), a second crutch plate (509), a second toggle column (510), a ninth connecting piece (511), a tenth connecting piece (512), a second wiping sponge (513) and a second direction changing strip (514); a first connecting column (501) is rotatably connected to the inner left part of the right sixth connecting piece (404); the front end and the rear end of the outer surface of the first connecting column (501) are respectively fixedly connected with a first crutch plate (502); a first toggle column (503) is fixedly connected to the top between the two first crutch plates (502); a seventh connecting piece (504) is fixedly connected to the bottom between the two first crutch plates (502); three eighth connecting pieces (505) are fixedly connected with the seventh connecting piece (504) at equal intervals; the left parts of the three eighth connecting pieces (505) are respectively connected with a first wiping sponge (506); the bottoms of the front side and the rear side of each first wiping sponge (506) are respectively connected with a first direction changing strip (507); a second connecting column (508) is rotatably connected to the inner right part of the left sixth connecting piece (404); the front end and the rear end of the outer surface of the second connecting column (508) are respectively fixedly connected with a second crutch plate (509); a second toggle column (510) is fixedly connected to the top between the two second crutch boards (509); a ninth connecting piece (511) is fixedly connected to the bottom between the two second crutch plates (509); two tenth connecting pieces (512) are fixedly connected with the ninth connecting piece (511) at equal intervals; the right parts of the two tenth connecting pieces (512) are respectively connected with a second wiping sponge (513); the bottoms of the front side and the rear side of each second wiping sponge (513) are respectively connected with a second direction changing strip (514).
6. A cleaning device for stainless steel medical tools according to claim 5, wherein the first (506) and second (513) wiper sponges are staggered.
7. The cleaning device for the stainless steel medical tool as claimed in claim 6, further comprising an inside wiping system, wherein the inside wiping system is connected to the upper side of the front part of the conveying system, and the inside wiping system comprises a first shaft column (601), a first rotating plate (602), an eleventh connecting piece (603), a twelfth connecting piece (604), a second shaft column (605), a second rotating plate (606), a thirteenth connecting piece (607), a fourteenth connecting piece (608), a bearing frame (609), a second connecting slide block (610), a second connecting slide rail (611), a limiting plate (612), a third connecting column (613), a fifteenth connecting piece (614) and a wiping cotton column (615); a first shaft column (601) is rotatably connected to the right side of the front part of the third mounting plate (205); a first rotating plate (602) is fixedly connected to the first shaft column (601); the bottom of the first rotating plate (602) is provided with a through groove, and the right bearing piece (304) passes through the through groove of the first rotating plate (602); an eleventh connecting piece (603) is fixedly connected to the upper side of the front part of the first rotating plate (602); the front part of the eleventh connecting piece (603) is in transmission connection with a twelfth connecting piece (604); the left lower part of the twelfth connecting piece (604) is in transmission connection with a bearing frame (609); a second shaft column (605) is rotatably connected to the left side of the front part of the third mounting plate (205); a second rotating plate (606) is fixedly connected to the second shaft column (605); the bottom of the second rotating plate (606) is provided with a through groove, and the left bearing piece (304) passes through the through groove of the second rotating plate (606); a thirteenth connecting piece (607) is fixedly connected to the upper side of the front part of the second rotating plate (606); a fourteenth connecting piece (608) is in transmission connection with the front part of the thirteenth connecting piece (607); the right lower part of the fourteenth connecting piece (608) is in transmission connection with a bearing frame (609); the rear part of the bearing frame (609) is fixedly connected with a second connecting slide block (610); the front middle part of the third mounting plate (205) is fixedly connected with a second connecting slide rail (611); the second connecting sliding block (610) is in sliding connection with the second connecting sliding rail (611); a limiting plate (612) is fixedly connected to the upper side of the front part of the second connecting slide rail (611); the left side and the right side of the bottom of the bearing frame (609) are respectively and rotatably connected with a third connecting column (613); the front side and the rear side of each third connecting column (613) are respectively and fixedly connected with a fifteenth connecting piece (614); a wiping cotton column (615) is fixedly connected between the bottoms of the front and back corresponding fifteenth connecting pieces (614).
8. The cleaning device for stainless steel medical tools according to claim 7, wherein the two wiping cotton columns (615) are symmetrical, and inclined annular protrusions are arrayed on each of the two wiping cotton columns (615).
CN202111023792.0A 2021-09-02 2021-09-02 Cleaning equipment for stainless steel medical tool Active CN113441433B (en)

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Application Number Priority Date Filing Date Title
CN202111023792.0A CN113441433B (en) 2021-09-02 2021-09-02 Cleaning equipment for stainless steel medical tool

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Application Number Priority Date Filing Date Title
CN202111023792.0A CN113441433B (en) 2021-09-02 2021-09-02 Cleaning equipment for stainless steel medical tool

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CN113441433B true CN113441433B (en) 2021-11-09

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106983567A (en) * 2017-05-27 2017-07-28 南昌首叶科技有限公司 A kind of scissors for operation equipment for quick washing
CN108420548A (en) * 2018-04-02 2018-08-21 刘美香 A kind of composition of scissors for operation cleaning equipment
CN208810707U (en) * 2018-07-27 2019-05-03 高云燕 A kind of placental forceps cleaning sterilizing device
CN112718765A (en) * 2020-12-14 2021-04-30 郑州工业应用技术学院 Medical instrument is with high-efficient maintenance equipment
CN112890984A (en) * 2021-01-25 2021-06-04 黄权 Surgical medical instrument disinfection treatment method

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106983567A (en) * 2017-05-27 2017-07-28 南昌首叶科技有限公司 A kind of scissors for operation equipment for quick washing
CN108420548A (en) * 2018-04-02 2018-08-21 刘美香 A kind of composition of scissors for operation cleaning equipment
CN208810707U (en) * 2018-07-27 2019-05-03 高云燕 A kind of placental forceps cleaning sterilizing device
CN112718765A (en) * 2020-12-14 2021-04-30 郑州工业应用技术学院 Medical instrument is with high-efficient maintenance equipment
CN112890984A (en) * 2021-01-25 2021-06-04 黄权 Surgical medical instrument disinfection treatment method

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