CN113680747A - An integrated ultrasonic cleaning device for cleaning surgical instruments - Google Patents

An integrated ultrasonic cleaning device for cleaning surgical instruments Download PDF

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Publication number
CN113680747A
CN113680747A CN202110972933.7A CN202110972933A CN113680747A CN 113680747 A CN113680747 A CN 113680747A CN 202110972933 A CN202110972933 A CN 202110972933A CN 113680747 A CN113680747 A CN 113680747A
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pipe
fixedly connected
cleaning
water
hole
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刘明峰
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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
    • B08B3/08Cleaning involving contact with liquid the liquid having chemical or dissolving effect
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B90/00Instruments, implements or accessories specially adapted for surgery or diagnosis and not covered by any of the groups A61B1/00 - A61B50/00, e.g. for luxation treatment or for protecting wound edges
    • A61B90/70Cleaning devices specially adapted for surgical instruments
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L2/00Disinfection or sterilisation of materials or objects, in general; Accessories therefor
    • A61L2/16Disinfection or sterilisation of materials or objects, in general; Accessories therefor using chemical substances
    • A61L2/18Liquid substances
    • 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
    • B08B3/12Cleaning 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 by sonic or ultrasonic vibrations
    • 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
    • B08B3/14Removing waste, e.g. labels, from cleaning liquid
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B9/00Cleaning hollow articles by methods or apparatus specially adapted thereto
    • B08B9/08Cleaning containers, e.g. tanks
    • B08B9/20Cleaning containers, e.g. tanks by using apparatus into or on to which containers, e.g. bottles, jars, cans are brought
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B9/00Cleaning hollow articles by methods or apparatus specially adapted thereto
    • B08B9/08Cleaning containers, e.g. tanks
    • B08B9/20Cleaning containers, e.g. tanks by using apparatus into or on to which containers, e.g. bottles, jars, cans are brought
    • B08B9/28Cleaning containers, e.g. tanks by using apparatus into or on to which containers, e.g. bottles, jars, cans are brought the apparatus cleaning by splash, spray, or jet application, with or without soaking
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B9/00Cleaning hollow articles by methods or apparatus specially adapted thereto
    • B08B9/08Cleaning containers, e.g. tanks
    • B08B9/20Cleaning containers, e.g. tanks by using apparatus into or on to which containers, e.g. bottles, jars, cans are brought
    • B08B9/36Cleaning containers, e.g. tanks by using apparatus into or on to which containers, e.g. bottles, jars, cans are brought the apparatus cleaning by using brushes
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F9/00Multistage treatment of water, waste water or sewage
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B21/00Arrangements for supplying or controlling air or other gases for drying solid materials or objects
    • F26B21/001Air generating units, e.g. movable or independent of drying enclosure
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B21/00Arrangements for supplying or controlling air or other gases for drying solid materials or objects
    • F26B21/50Ducting arrangements from the source of air or other gases to the materials or objects being dried
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L2103/00Materials or objects being the target of disinfection or sterilisation
    • A61L2103/15Laboratory, medical or dentistry appliances, e.g. catheters or sharps
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L2103/00Materials or objects being the target of disinfection or sterilisation
    • A61L2103/23Containers other than laboratory or medical, e.g. bottles or mail
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L2202/00Aspects relating to methods or apparatus for disinfecting or sterilising materials or objects
    • A61L2202/10Apparatus features
    • A61L2202/17Combination with washing or cleaning means
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/001Processes for the treatment of water whereby the filtration technique is of importance
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/28Treatment of water, waste water, or sewage by sorption
    • C02F1/283Treatment of water, waste water, or sewage by sorption using coal, charred products, or inorganic mixtures containing them
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/30Treatment of water, waste water, or sewage by irradiation
    • C02F1/32Treatment of water, waste water, or sewage by irradiation with ultraviolet light
    • C02F1/325Irradiation devices or lamp constructions
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F2001/007Processes including a sedimentation step
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F2303/00Specific treatment goals
    • C02F2303/20Prevention of biofouling

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  • Engineering & Computer Science (AREA)
  • Health & Medical Sciences (AREA)
  • Mechanical Engineering (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Veterinary Medicine (AREA)
  • Surgery (AREA)
  • General Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • General Engineering & Computer Science (AREA)
  • Medical Informatics (AREA)
  • Oral & Maxillofacial Surgery (AREA)
  • Pathology (AREA)
  • Epidemiology (AREA)
  • Biomedical Technology (AREA)
  • Heart & Thoracic Surgery (AREA)
  • Nuclear Medicine, Radiotherapy & Molecular Imaging (AREA)
  • Molecular Biology (AREA)
  • Hydrology & Water Resources (AREA)
  • Environmental & Geological Engineering (AREA)
  • Water Supply & Treatment (AREA)
  • Organic Chemistry (AREA)
  • Cleaning By Liquid Or Steam (AREA)

Abstract

本发明公开了一种外科手术器械清洁的一体式超声波清洗装置,包括净水消毒机构、输送机构、储存烘干机构、清洗机构、顶部盖板、万向轮、机构固定挡板、排水管Ⅰ,所述净水消毒机构一侧设有输送机构,净水消毒机构一侧设有机构固定挡板,净水消毒机构另一侧设有万向轮,输送机构一侧设有储存烘干机构,输送机构另一侧设有机构固定挡板,所述储存烘干机构一侧设有清洗机构,储存烘干机构另一侧设有机构固定挡板,清洗机构一侧设有顶部盖板,清洗机构另一侧设有机构固定挡板,排水管Ⅰ位于各机构内侧,排水管Ⅰ顶端位于清洗机构,能够在全程无菌的情况下完成清洗和烘干过程,并且能够对试管和和生化检验容器等进行针对性清理,省时省力。

Figure 202110972933

The invention discloses an integrated ultrasonic cleaning device for cleaning surgical instruments. One side of the water purification and disinfection mechanism is provided with a conveying mechanism, one side of the water purification and disinfection mechanism is provided with a mechanism fixing baffle, the other side of the water purification and disinfection mechanism is provided with a universal wheel, and one side of the conveying mechanism is provided with a storage drying mechanism , the other side of the conveying mechanism is provided with a mechanism fixing baffle, one side of the storage drying mechanism is provided with a cleaning mechanism, the other side of the storage drying mechanism is provided with a mechanism fixing baffle, and one side of the cleaning mechanism is provided with a top cover, The other side of the cleaning mechanism is provided with a mechanism fixing baffle, the drain pipe I is located inside each mechanism, and the top of the drain pipe I is located in the cleaning mechanism. Targeted cleaning of inspection containers, etc., saves time and effort.

Figure 202110972933

Description

Clean integral type ultrasonic cleaning device of surgical instruments
Technical Field
The invention belongs to the technical field of medical instrument cleaning, and particularly relates to an integrated ultrasonic cleaning device for cleaning surgical instruments.
Background
In order to improve the cleaning efficiency of medical instruments, special medical cleaning equipment is adopted in large and medium hospitals for cleaning.
The existing medical instrument cleaning equipment has the following defects: 1) after the cleaning equipment is used for cleaning, water stains are left on the surface of the medical instrument, so that the medical instrument can be in a relatively humid environment and bacteria are easy to breed; 2) the existing cleaning equipment is mainly used for cleaning instruments such as scalpels, hemostatic forceps and the like, and can adopt manual cleaning to ensure the cleanness of the inner side wall of a glass container when cleaning the glass containers such as test tubes, biochemical examination containers and the like, so that the labor intensity of workers is increased, and the cleaning efficiency is reduced.
Disclosure of Invention
It is an object of the present invention to provide an integrated ultrasonic cleaning device for cleaning surgical instruments that overcomes the above-mentioned deficiencies in the art.
In order to achieve the purpose, the invention adopts the technical scheme that:
an integrated ultrasonic cleaning device for cleaning surgical instruments comprises a water purification and disinfection mechanism, a conveying mechanism, a storage and drying mechanism, a cleaning mechanism, a top cover plate, universal wheels, a mechanism fixing baffle and a drain pipe I, wherein the conveying mechanism is arranged on one side of the water purification and disinfection mechanism, the mechanism fixing baffle is arranged on one side of the water purification and disinfection mechanism, the universal wheels are arranged on the other side of the water purification and disinfection mechanism, the storage and drying mechanism is arranged on one side of the conveying mechanism, the mechanism fixing baffle is arranged on the other side of the conveying mechanism, the mechanism fixing baffle is arranged on one side of the storage and drying mechanism, the mechanism fixing baffle is arranged on the other side of the storage and drying mechanism, the top cover plate is arranged on one side of the cleaning mechanism, the mechanism fixing baffle is arranged on the other side of the cleaning mechanism, the drain pipe I is positioned on the inner side of each mechanism, and the top end of the drain pipe I is positioned on the cleaning mechanism;
the water purification and disinfection mechanism comprises a shell I, a water inlet hole I, a water outlet hole I, a cover plate I, a pipeline through hole I, an ultraviolet sterilization bin, a water filtering mechanism, a water supply pipe II and a water inlet pipe, wherein the cover plate I is arranged on one side of the shell I; the ultraviolet sterilization bin is fixedly connected to the shell I, the water filtering mechanism is fixedly connected to the water inlet pipe, and the other water filtering mechanism is fixedly connected to the water supply pipe II;
the ultraviolet sterilization bin comprises a water supply pipe I, a shell II, a flow dividing pipe, an ultraviolet lamp, a flow dividing bin and a drain pipe II, wherein the ultraviolet lamp is arranged on one side of the shell II, the flow dividing pipe is arranged on one side of the ultraviolet lamp, the flow dividing bin is arranged on one side of the flow dividing pipe, the water supply pipe I is arranged on one side of one of the two flow dividing bins, and the drain pipe II is arranged on one side of the other flow dividing bin; ultraviolet lamp and II fixed connection of shell, shell and reposition of redundant personnel storehouse fixed connection, reposition of redundant personnel storehouse and shunt tubes fixed connection, reposition of redundant personnel storehouse and I fixed connection of feed pipe, reposition of redundant personnel storehouse and II fixed connection of drain pipe.
Ultraviolet sterilization storehouse during operation, water gets into the reposition of redundant personnel storehouse from feed pipe I, divide into the tiny rivers of stranded, get into shell II through the shunt tubes, the irradiation through ultraviolet lamp is disinfected, get into another reposition of redundant personnel storehouse and backward converge afterwards, it finishes the process of disinfecting to water to get into next mechanism from drain pipe II at last, water purification disinfection mechanism during operation, external water gets into the inlet tube from inlet opening I, get into water filter mechanism by the inlet tube, get into the ultraviolet sterilization storehouse by water filter mechanism, get into another water filter mechanism after disinfecting by the ultraviolet sterilization storehouse, the water after will purifying and disinfecting at last carries next mechanism through feed pipe II, I outflow feed pipe II of pipeline through-hole and the space that drain pipe I arrived next mechanism, and provide supporting role.
The conveying mechanism comprises a shell III, a cover plate II, a pipeline through hole II, a sterilization cleaning liquid conveying mechanism, a water supply pipe V, a water pump II, a water discharge pipe III, a motor, a bevel gear I and a bevel gear II, wherein the cover plate II is arranged on one side of the shell III; the utility model discloses a sterilization cleaning solution conveying mechanism, including shell III and apron II fixed connection, shell III and sterilization cleaning solution conveying mechanism fixed connection, shell III and feed pipe V fixed connection, feed pipe V and II fixed connection of water pump, water pump II and III fixed connection of drain pipe, motor and I fixed connection of bevel gear, bevel gear I and II meshing of bevel gear, pipeline through-hole II and II fixed connection of apron, conveying mechanism during operation, water is driven by II of water pump, absorbs water to drain pipe III from feed pipe V, carries and reachs next mechanism, and compound cleaning enzyme and antiseptic solution carry wiper mechanism through sterilization cleaning solution conveying mechanism.
The storage and drying mechanism comprises a shell IV, air holes, a cover plate III, a pipeline through hole III, a water storage mechanism, a drying mechanism and a water supply pipe VI, wherein the cover plate III is arranged on one side of the shell IV, and the pipeline through hole III is positioned on one side of the cover plate III; a water storage mechanism is arranged on one side of the shell IV, a drying mechanism is arranged on one side of the water storage mechanism, the air holes are formed in one side of the shell IV, and the water supply pipe VI is located on one side of the water storage mechanism; the drying mechanism is fixedly connected with the shell IV, the air holes are fixedly connected onto the shell IV, and the water supply pipe VI is fixedly connected with the water storage mechanism; pipeline through-hole III provides the space that reaches next mechanism for drain pipe I, drain pipe III, washing axis of rotation, feed pipe III, inferior fluid-discharge tube I, provides certain supporting role.
The cleaning mechanism comprises a glass container cleaning mechanism, a multiplexing cleaning mechanism, an ultrasonic wave generating mechanism I, an ultrasonic wave generating mechanism II, a drain pipe IV and a shell VIII, wherein the glass container cleaning mechanism is arranged on the inner side of the shell VIII; the drain pipe IV is fixedly connected with the glass container cleaning mechanism, the glass container cleaning mechanism is fixedly connected with the multiplexing cleaning mechanism, the glass container cleaning mechanism is fixedly connected with the shell VIII, the multiplexing cleaning mechanism is fixedly connected with the shell VIII, the glass container cleaning mechanism is connected with the ultrasonic generation mechanism I, and the multiplexing cleaning mechanism is connected with the ultrasonic generation mechanism II.
The glass container cleaning mechanism comprises a cleaning mechanism, an inner wall hairbrush, a cleaning rotating shaft, a shell VI, a flow divider, a water outlet pipe I, a telescopic rod mechanism, a wind outlet pipe II and a wind outlet II, wherein the inner wall hairbrush is arranged on one side of the shell VI, the cleaning rotating shaft is arranged on the other side of the shell VI, the wind outlet pipe II is arranged on one side of the shell VI, the wind outlet II is arranged on one side of the wind outlet pipe II, the flow divider is arranged on one side of the cleaning rotating shaft, the water outlet pipe I is arranged on one side of the flow divider, the telescopic rod mechanism is arranged on the other side of the flow divider, and the cleaning mechanism is arranged on one side of the telescopic rod mechanism; inner wall brush and shell VI fixed connection, wash axis of rotation and shell VI fixed connection, shell VI and play II fixed connection of tuber pipe, go out II fixed connection air outlets on the tuber pipe II, shunt and I fixed connection of outlet pipe, shunt and telescopic link mechanism fixed connection, telescopic link mechanism and cleaning mechanism fixed connection.
The multiplexing cleaning mechanism comprises a cleaning screen frame, an air outlet I, a water outlet hole, a water outlet pipe II, an air outlet pipe I and a shell VII, wherein the air outlet I is arranged on one side of the shell VII, the water outlet hole is arranged on one side of the shell VII, the cleaning screen frame is arranged on one side of the shell VII, the water outlet pipe II is arranged on one side of the cleaning screen frame, and the air outlet pipe I is also arranged on one side of the cleaning screen frame; air outlet I and shell VII fixed connection, apopore and shell VII fixed connection wash the screen frame and be connected with shell VII, outlet pipe II with wash screen frame fixed connection, go out tuber pipe I and wash screen frame fixed connection.
When multiplexing wiper mechanism was used, the disinfection washing liquid got into shell VII by outlet pipe II to the apopore, under rivers and ultrasonic wave generating mechanism II's combined action, will place the surgical equipment sanitization in wasing the screen frame, and waste water passes through I discharge cleaning machine of drain pipe.
The stoving process, from the compressed air that stoving mechanism produced, through air feed pipe I and air feed pipe II, through going out tuber pipe I and play tuber pipe II again, from the mechanism that air outlet I and II entering of air outlet need be dried, compressed air passes through drain pipe I and the discharge of drain pipe IV discharge cleaning machine at last.
Preferably, the water filtering mechanism comprises a water inlet hole II, a filtering bin, a filter screen filtering bin, a precipitation bin, an adsorption bin, a water outlet hole II, an activated carbon material and a filtering membrane, wherein the filtering bin is arranged on one side of the water inlet hole II, the filter screen filtering bin is arranged on one side of the filtering bin, the precipitation bin is arranged on one side of the filter screen filtering bin, the adsorption bin is arranged on one side of the precipitation bin, the water outlet hole II is arranged on one side of the adsorption bin, the activated carbon material is located on the inner side of the adsorption bin, and the filtering membrane 137 is located on the inner side of the filter screen filtering bin; the water inlet hole II is fixedly connected with the filtering bin, the filter screen filtering bin is fixedly connected with the filtering membrane, the settling bin is fixedly connected with the filtering bin, the settling bin is fixedly connected with the adsorption bin, the adsorption bin is fixedly connected with the activated carbon material, and the adsorption bin is fixedly connected with the water outlet hole II;
the during operation of water filtering mechanism, external water gets into the inlet tube by inlet opening I, lead to water filtering mechanism by the inlet tube, get into inlet opening II, it filters to get into the filtration storehouse afterwards, filter the great impurity in aquatic, later get into the filter screen and filter the storehouse, further become more meticulous with water under the effect of filter screen and filter, it deposits the storehouse to filter back water entering, the little impurity that will pass through the filter screen under the action of gravity sinks to the bottom, water reachs the absorption storehouse afterwards, adsorb by the active carbon material, get rid of all impurity, get rid of various peculiar smells simultaneously, water arrives II completions filter processes of wash port at last.
Preferably, the sterilizing cleaning fluid conveying mechanism comprises a storage cabinet, a water supply pipe III, a water pump I, a pipette, a main liquid discharge pipe, a secondary liquid discharge pipe I, a control switch I, a secondary liquid discharge pipe II and a water supply pipe IV, wherein the pipette is positioned on one side of the storage cabinet, the water pump I is arranged on one side of the pipette, the main liquid discharge pipe is arranged on one side of the water pump I, the secondary liquid discharge pipe I is arranged on one side of the main liquid discharge pipe, the secondary liquid discharge pipe II is arranged on the other side of the main liquid discharge pipe, the water supply pipe IV is arranged on one side of the secondary liquid discharge pipe II, the water supply pipe III is arranged on the other side of the secondary liquid discharge pipe II, and the control switch I is arranged on one side of the secondary liquid discharge pipe I; store cabinet and pipette fixed connection, pipette and I fixed connection of water pump, water pump I and main fluid-discharge tube fixed connection, I fixed connection of main fluid-discharge tube and inferior fluid-discharge tube, main fluid-discharge tube and II fixed connection of inferior fluid-discharge tube, inferior fluid-discharge tube II and I fixed connection of control switch, inferior fluid-discharge tube II and IV fixed connection of feed pipe.
When the sterilizing cleaning liquid conveying mechanism works, the water pump I works, the liquid suction pipe sucks compound cleaning enzyme and disinfectant from the storage cabinet, the sterilizing cleaning liquid is pumped to the main liquid discharge pipe, the main liquid discharge pipe conveys the sterilizing cleaning liquid to the secondary liquid discharge pipe I and the secondary liquid discharge pipe II, the control switch I controls the secondary liquid discharge pipe II to be opened and output when the glass container cleaning mechanism works, the control switch II controls the water supply pipe III to be opened and output when the glass container cleaning mechanism works, and the two switches control the circulation of water and the sterilizing cleaning liquid to prevent the waste of the water and the sterilizing cleaning liquid when the glass container cleaning mechanism does not work; the pipeline through hole II flows out of the drain pipe I, the water supply pipe III, the water supply pipe V, the drain pipe III, the secondary drain pipe I and the cleaning rotating shaft to reach the space of the next mechanism, and a supporting effect is provided.
Preferably, the water storage mechanism comprises a shell V, a control switch III, a water storage bin and a control switch II, the water storage bin is positioned on the inner side of the shell V, the control switch III is arranged on one side of the shell V, and the control switch II is arranged on the other side of the shell V; the water storage bin is positioned inside the shell V and is fixedly connected with the shell V, the control switch III is fixedly connected with the shell V, and the control switch II is connected with the shell V through a water supply pipe III; when the water storage mechanism works, water enters the water storage bin from the water discharge pipe III, and is discharged from the water supply pipe VI or not under the control of the control switch III and is discharged from the water supply pipe III or not under the control of the control switch II.
Preferably, the drying mechanism comprises an air compressor, a ventilation pipe, an air supply fan I, an air supply fan II, an air supply pipe I, an air supply pipe II, a control switch IV, a gas storage bin, a gas pressure reduction cooling bin and a partition plate, wherein the ventilation pipe is arranged on one side of the air compressor, the gas storage bin is arranged on one side of the ventilation pipe, the partition plate is arranged on one side of the gas storage bin, the gas pressure reduction cooling bin is arranged on one side of the partition plate, the control switch IV is positioned on one side of the gas storage bin, the air supply fan I is arranged on one side of the gas pressure reduction cooling bin, the air supply pipe I is arranged on one side of the air supply fan I, the air supply fan II is arranged on the other side of the gas pressure reduction cooling bin, and the air supply pipe II is arranged on one side of the air supply fan II; air compressor and ventilation pipe fixed connection, ventilation pipe and gas storage storehouse fixed connection, gas storage storehouse and baffle fixed connection, baffle and gaseous step-down cooling bin fixed connection, gaseous step-down cooling bin is connected with air supply fan I, gaseous step-down cooling bin and II fixed connection of air supply fan, air supply fan I and I fixed connection of air supply pipe, air supply fan II and II fixed connection of air supply pipe, control switch IV and gas storage storehouse fixed connection.
When the stoving mechanism during operation, at first provide the air for air compressor by the bleeder vent, produce the highly compressed air of high temperature through air compressor, compressed air gets into the gas storage storehouse by the ventilation pipe, and the compressed air that acts on under control switch IV's control gets into gaseous step-down cooling storehouse, carries out the step-down cooling with compressed air, and gaseous step-down cooling storehouse is through air supply fan I and air supply fan II, through air supply pipe I and air supply pipe II, sends into next mechanism suitable step-down cooling compressed air.
Preferably, the cleaning mechanism comprises a water outlet, a top brush, a side brush, a bottom support and a cleaning shaft, wherein the cleaning shaft is arranged on one side of the bottom support, the side brush is arranged on one side of the cleaning shaft, the top brush is arranged on the other side of the cleaning shaft, and the water outlet is formed in the cleaning shaft; the bottom support is fixedly connected with the cleaning shaft, the cleaning shaft is fixedly connected with the side brush, the cleaning shaft is fixedly connected with the top brush, and the water outlet is fixed in the cleaning shaft.
Preferably, the telescopic rod mechanism comprises a fixed rod, a telescopic rod fixing shell, a spring, a limiting block and a movable rod, wherein the telescopic rod fixing shell is arranged on one side of the fixed rod, the spring is arranged on one side of the fixed rod, the limiting block is arranged on the other side of the fixed rod, and the movable rod is arranged on the other side of the telescopic rod fixing shell; the fixed rod and the limiting block are fixedly connected, the telescopic rod fixing shell is connected with the fixed rod, the telescopic rod fixing shell is connected with the movable rod, and the spring is fixedly connected with the fixed rod.
Preferably, the top cover plate comprises a hinge, a downward-pressing brush head, an electric pushing cylinder I, a top cover and a handle, the hinge is arranged on one side of the top cover, the handle is arranged on one side of the top cover, the electric pushing cylinder I is arranged on the other side of the top cover, and the downward-pressing brush head is arranged on one side of the electric pushing cylinder I; the hinge is fixedly connected with the top cover, the handle is fixedly connected with the top cover, the top cover is fixedly connected with the electric pushing cylinder I, and the electric pushing cylinder I is fixedly connected with the downward-pressing brush head; the hinge is fixed on the top cover, when the handle is moved, the top cover drives the electric pushing cylinder I and the downward-pressing brush head to rotate along the hinge, and when the electric pushing cylinder I acts, the downward-pressing brush head is driven to move downwards to complete cleaning in cooperation with the glass container cleaning mechanism.
When the glass container cleaning mechanism acts, the cylindrical instrument is reversely buckled on the cleaning mechanism, water and sterilization cleaning liquid are conveyed by the cleaning rotating shaft, and then reach the water outlet pipe I through the flow divider to flow out of the outer wall of the cleaning instrument, and part of mixed liquid flows from the flow divider to the telescopic rod mechanism to reach the cleaning mechanism and flow out of the water outlet to clean the inner wall of the cleaning instrument; simultaneously the motor drives bevel gear I, bevel gear I and II meshing synchronous motion of bevel gear, it rotates to drive the washing axis of rotation, wash axis of rotation and the fixed synchronous motion of shunt, drive the telescopic link mechanism motion fixed with the shunt, make washing mechanism rotatory at last, wash the inside of cylindrical instrument, the spring is outwards pushed the movable rod, make cylindrical instrument outer wall press close to the outer wall brush, cylindrical instrument self is rotatory equally under the effect of centrifugal force, wash cylindrical instrument outer wall, push down the brush head downstream, wash cylindrical instrument bottom, simultaneously under the effect of ultrasonic wave generating mechanism I, accomplish the class cylinder instrument and do not have the dead angle and wash, waste water passes through drain pipe IV and the cleaning machine of I discharge of drain pipe.
Preferably, the drainage pipe I comprises a drainage hole III, a drainage hole IV, an electric pushing cylinder II, a baffle, a drainage through hole and a drainage pipe, wherein the drainage through hole is formed in one side of the drainage pipe, the drainage hole III is formed in one side of the drainage through hole, the drainage hole IV is formed in one side of the drainage through hole, the baffle is arranged on the other side of the drainage through hole, and the electric pushing cylinder II is arranged on one side of the baffle; the electric pushing cylinder II is fixedly connected with the baffle, the baffle is connected with the water drainage through hole, the baffle is fixedly connected to the water drainage pipe I, the water drainage hole III is fixedly connected with the water drainage pipe, and the water drainage hole IV is fixedly connected with the water drainage pipe.
The universal wheels facilitate the movement of the cleaning machine; the mechanism fixing baffle is used for fixedly connecting each mechanism, when the cleaned waste water and waste gas are discharged, the electric pushing cylinder II contracts to drive the baffle to leave the drainage through hole, and the waste water and the waste gas from the drainage hole III and the drainage hole IV are discharged through the drainage pipeline.
Compared with the prior art, the invention has the beneficial effects that:
1) the water filtering mechanism filters large-particle impurities from the external force water through the filtering bin, the external force water is finely filtered through the filtering net in the filtering bin of the filtering net, then physical sedimentation is carried out in the sedimentation bin, tiny impurities which cannot be filtered out are precipitated, the tiny impurities are adsorbed by the activated carbon material in the adsorption bin to remove peculiar smell and other impurities, the filtered water is shunted by the ultraviolet sterilization mechanism, then sterilization is carried out by ultraviolet irradiation, then microbial debris is removed through the water filtering mechanism after confluence, the whole process is carried out with purification and sterilization treatment before the water for cleaning the medical equipment, so that the medical equipment is really clean and sterile after the cleaning is finished;
produce high-temperature high-pressure compressed air through air compressor simultaneously, through ventilation pipe to gas storage storehouse, the gas storage storehouse is under control, with compressed air transfer to step-down cooling storehouse, the cooling step-down reaches the regulation requirement, carry the wiper mechanism through air feed fan and pipeline afterwards and dry, guaranteed that whole washing stoving process is aseptic to advance, and then solved the problem that the medical instrument surface leaves the water stain and breed the bacterium easily from the source, the in-process of transferring to the stoving by the washing has also been prevented, the contaminated condition of medical instrument takes place.
2) The cylindrical instrument is reversely buckled on the cleaning mechanism, water and sterilization cleaning liquid are conveyed through the cleaning rotating shaft, and then reach the water outlet pipe I through the flow divider to flow out of the outer wall of the cleaning instrument, and part of mixed liquid flows to the telescopic rod mechanism from the flow divider to flow out of the cleaning mechanism from the water outlet to clean the inner wall of the instrument; simultaneously the motor drives bevel gear I, bevel gear I and bevel gear II mesh synchronous motion, it rotates to drive the washing axis of rotation, wash axis of rotation and the fixed synchronous motion of shunt, drive the telescopic link mechanism motion fixed with the shunt, make washing mechanism rotatory at last, wash the inside of cylindrical instrument, the spring is outwards pushed the movable rod, make cylindrical instrument outer wall press close to the outer wall brush, cylindrical instrument self is rotatory equally under the effect of centrifugal force, wash cylindrical instrument outer wall, push down the brush head downstream, wash cylindrical instrument bottom, simultaneously under the effect of ultrasonic wave generating mechanism I, accomplish the class cylinder instrument and do not have the dead angle and wash, waste water passes through drain pipe IV and drain pipe I discharge cleaning machine, and then make the container inner wall can obtain abundant cleanness, artificial intensity of labour has also been reduced.
Drawings
FIG. 1 is a schematic view of an integrated ultrasonic cleaning apparatus for cleaning surgical instruments according to the present invention.
FIG. 2 is a schematic view of the internal structure of an integrated ultrasonic cleaning device for cleaning surgical instruments according to the present invention.
FIG. 3 is a schematic structural diagram of a water purification and disinfection mechanism in the integrated ultrasonic cleaning device for cleaning surgical instruments according to the invention.
FIG. 4 is a schematic view of the internal structure of a water filtering mechanism in the integrated ultrasonic cleaning device for cleaning surgical instruments according to the present invention.
FIG. 5 is a schematic structural view of an ultraviolet sterilization chamber in the integrated ultrasonic cleaning device for cleaning surgical instruments according to the present invention.
FIG. 6 is a schematic view of a top cover plate of an integrated ultrasonic cleaning device for cleaning surgical instruments according to the present invention.
FIG. 7 is a schematic view of a conveying mechanism of an integrated ultrasonic cleaning device for cleaning surgical instruments according to the present invention.
FIG. 8 is a schematic structural view of a storage and drying mechanism in the integrated ultrasonic cleaning apparatus for cleaning surgical instruments according to the present invention.
FIG. 9 is a schematic view of a cleaning mechanism of the integrated ultrasonic cleaning apparatus for cleaning surgical instruments according to the present invention.
FIG. 10 is a schematic view of the internal structure of the cleaning mechanism of the integrated ultrasonic cleaning device for cleaning surgical instruments according to the present invention.
FIG. 11 is a schematic structural diagram of a glass container cleaning mechanism in the integrated ultrasonic cleaning device for cleaning surgical instruments according to the invention.
FIG. 12 is a schematic structural diagram of a cleaning mechanism of the integrated ultrasonic cleaning apparatus for cleaning surgical instruments according to the present invention.
FIG. 13 is a schematic structural view of a drainage pipe I of the integrated ultrasonic cleaning device for cleaning surgical instruments according to the present invention.
FIG. 14 is a schematic structural view of an air outlet pipe II in the integrated ultrasonic cleaning device for cleaning surgical instruments according to the present invention.
In the figure: 1. a water purification and disinfection mechanism; 10. a shell I; 101. a water inlet hole I; 102. a drain hole I; 11. a cover plate I; 110. a pipeline through hole I; 12. an ultraviolet sterilization bin; 120. a water supply pipe I; 121. a shell II; 122. a shunt tube; 123. an ultraviolet lamp; 124. a flow distribution bin; 125. a water discharge pipe II; 13. a water filtration mechanism; 130. a water inlet hole II; 131. a filtering bin; 132. a filter screen filtering bin; 133. a settling bin; 134. an adsorption bin; 135. a water drainage hole II; 136. an activated carbon material; 137. a filtration membrane; 14. a water supply pipe II; 15. a water inlet pipe; 2. a conveying mechanism; 21. a housing III; 22. a cover plate II; 220. a pipeline through hole II; 23. a sterilizing cleaning liquid conveying mechanism; 230. a storage cabinet; 231. a water supply pipe III; 232. a water pump I; 233. a pipette; 234. a main liquid discharge pipe; 235. a secondary liquid discharge pipe I; 236. a control switch I; 237. a secondary liquid discharge pipe II; 238. a water supply pipe IV; 24. a water supply pipe V; 25. a water pump II; 26. a water discharge pipe III; 27. a motor; 28. a bevel gear I; 29. a bevel gear II; 3. a storage drying mechanism; 31. a housing IV; 310. air holes are formed; 32. a cover plate III; 320. a pipeline through hole III; 33. a water storage mechanism; 330. a housing V; 331. a control switch III; 332. a water storage bin; 333. A control switch II; 34. a drying mechanism; 340. An air compressor; 341. a vent pipe; 342. An air supply fan I; 343. an air supply fan II; 344. an air supply pipe I; 345. an air supply pipe II; 346. a control switch IV; 347. a gas storage bin; 348. a gas decompression cooling bin; 349. a partition plate; 35. a water supply pipe VI; 4. a cleaning mechanism; 41. a glass container cleaning mechanism; 410. a scrubbing mechanism; 4101. a water outlet; 4102. a top brush; 4103. a side brush; 4104. a bottom support; 4105. cleaning the shaft; 411. an inner wall brush; 412. cleaning the rotating shaft; 413. a housing VI; 414. a flow divider; 415. a water outlet pipe I; 416. a telescopic rod mechanism; 4161. fixing the rod; 4162. the telescopic rod is fixed on the shell; 4163. a spring; 4164. a limiting block; 4165. a movable rod; 417. an air outlet pipe II; 418. an air outlet II; 42. reusing the cleaning mechanism; 420. cleaning the screen frame; 421. an air outlet I; 422. a water outlet hole; 423. a water outlet pipe II; 424. an air outlet pipe I; 425. the outer shell VII; 43. an ultrasonic generating mechanism I; 44. an ultrasonic generating mechanism II; 45. a drain pipe IV; 46. an outer shell VIII; 5. a top cover plate; 51. a hinge; 52. pressing down the brush head; 53. an electric pushing cylinder I; 54. a top cover; 55. a handle; 6. a universal wheel; 7. a mechanism fixing baffle; 8. a drain pipe I; 81. a drain hole III; 82. a drain hole IV; 83. an electric pushing cylinder II; 84. a baffle plate; 85. a drain through hole; 86. and (4) a water drainage pipeline.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to fig. 1 to 14 in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
An integrated ultrasonic cleaning device for cleaning surgical instruments comprises a water purifying and disinfecting mechanism 1, a conveying mechanism 2, a storage and drying mechanism 3, a cleaning mechanism 4, a top cover plate 5, universal wheels 6, a mechanism fixing baffle 7 and a drain pipe I8, wherein the conveying mechanism 2 is arranged on one side of the water purifying and disinfecting mechanism 1, the mechanism fixing baffle 7 is arranged on one side of the water purifying and disinfecting mechanism 1, the universal wheels 6 are arranged on the other side of the water purifying and disinfecting mechanism 1, the storage and drying mechanism 3 is arranged on one side of the conveying mechanism 2, the mechanism fixing baffle 7 is arranged on the other side of the conveying mechanism 2, the cleaning mechanism 4 is arranged on one side of the storage and drying mechanism 3, the mechanism fixing baffle 7 is arranged on the other side of the storage and drying mechanism 3, the top cover plate 5 is arranged on one side of the cleaning mechanism 4, and the mechanism fixing baffle 7 is arranged on the other side of the cleaning mechanism 4, drain pipe I8 is located each inboard of mechanism, and I8 tops of drain pipe are located wiper mechanism 4.
The water purification and disinfection mechanism 1 comprises a shell I10, a water inlet hole I101, a water discharge hole I102, a cover plate I11, a pipeline through hole I110, an ultraviolet sterilization bin 12, a water filtering mechanism 13, a water supply pipe II 14 and a water inlet pipe 15, wherein the cover plate I11 is arranged on one side of the shell I10, the water inlet hole I101 is arranged on one side of the shell I10, the water discharge hole I102 is arranged on one side of the water inlet hole I101, the pipeline through hole I110 is positioned on one side of the cover plate I11, the pipeline through hole I110 is fixed on the cover plate I11, the ultraviolet sterilization bin 12 is arranged on the inner side of the shell I10, the water filtering mechanism 13 is arranged on one side of the ultraviolet sterilization bin 12, the water inlet pipe 15 is arranged on one side of the water filtering mechanism 13, and the water supply pipe II 14 is arranged on the other side of the water filtering mechanism 13; the ultraviolet sterilization cabinet is characterized in that one side of the shell I10 is fixedly connected with a water inlet hole I101 and a water drain hole I102, the other side of the shell I10 is fixedly connected with a cover plate I11, one side of the cover plate I11 is fixedly connected with a pipeline through hole I110, the ultraviolet sterilization cabinet 12 is fixedly connected onto the shell I10, the water filtering mechanism 13 is fixedly connected with a water inlet pipe 15, and the other water filtering mechanism 13 is fixedly connected with a water supply pipe II 14.
The water filtering mechanism 13 comprises a water inlet II 130, a filtering bin 131, a filter screen filtering bin 132, a settling bin 133, an adsorbing bin 134, a water outlet II 135, an activated carbon material 136 and a filtering membrane 137, wherein the filtering bin 131 is arranged on one side of the water inlet II 130, the filter screen filtering bin 132 is arranged on one side of the filtering bin 131, the settling bin 133 is arranged on one side of the filter screen filtering bin 132, the adsorbing bin 134 is arranged on one side of the settling bin 133, the water outlet II 135 is arranged on one side of the adsorbing bin 134, the activated carbon material 136 is positioned on the inner side of the adsorbing bin 134, and the filtering membrane 137 is positioned on the inner side of the filter screen filtering bin 132; the water inlet II 130 is fixedly connected with the filtering bin 131, the filter screen filtering bin 132 is fixedly connected with the filtering membrane 137, the precipitating bin 133 is fixedly connected with the filtering bin 131, the precipitating bin 133 is fixedly connected with the adsorbing bin 134, the adsorbing bin 134 is fixedly connected with the activated carbon material 136, and the adsorbing bin 134 is fixedly connected with the water outlet II 135.
The ultraviolet sterilization bin 12 comprises a water supply pipe I120, a shell II 121, a shunt pipe 122, an ultraviolet lamp 123, shunt bins 124 and a drain pipe II 125, wherein the ultraviolet lamp 123 is arranged on one side of the shell II 121, the shunt pipe 122 is arranged on one side of the ultraviolet lamp 123, the shunt bins 124 are arranged on one side of the shunt pipe 122, the water supply pipe I120 is arranged on one side of one of the shunt bins 124, and the drain pipe II 125 is arranged on one side of the other shunt bin 124; the ultraviolet lamp 123 is fixedly connected with the shell II 121, the shell is fixedly connected with the shunt bin 124, the shunt bin 124 is fixedly connected with the shunt tube 122, the shunt bin 124 is fixedly connected with the water supply pipe I120, and the shunt bin 124 is fixedly connected with the water discharge pipe II 125.
The conveying mechanism 2 comprises a shell III 21, a cover plate II 22, a pipeline through hole II 220, a sterilization cleaning solution conveying mechanism 23, a water supply pipe V24, a water pump II 25, a water discharge pipe III 26, a motor 27, a bevel gear I28 and a bevel gear II 29, wherein the cover plate II 22 is arranged on one side of the shell III 21, the sterilization cleaning solution conveying mechanism 23 is arranged on the inner side of the shell III 21, the water supply pipe V24 is arranged on one side of the shell III 21, the water pump II 25 is arranged on one side of the water supply pipe V24, the water discharge pipe III 26 is arranged on one side of the water pump II 25, the motor 27 is arranged on one side of the shell III 21, the bevel gear I28 is arranged on one side of the motor 27, the bevel gear II 29 is arranged on one side of the bevel gear I28, and the pipeline through hole II 220 is positioned on one side of the cover plate II 22; the outer shell III 21 is fixedly connected with the cover plate II 22, the outer shell III 21 is fixedly connected with the sterilizing cleaning liquid conveying mechanism 23, the outer shell III 21 is fixedly connected with the water supply pipe V24, the water supply pipe V24 is fixedly connected with the water pump II 25, the water pump II 25 is fixedly connected with the water discharge pipe III 26, the motor 27 is fixedly connected with the bevel gear I28, the bevel gear I28 is meshed with the bevel gear II 29, and the pipeline through hole II 220 is fixedly connected with the cover plate II 22.
The sterilizing cleaning liquid conveying mechanism 23 comprises a storage cabinet 230, a water supply pipe III 231, a water pump I232, a liquid suction pipe 233, a main liquid discharge pipe 234, a secondary liquid discharge pipe I235, a control switch I236, a secondary liquid discharge pipe II 237 and a water supply pipe IV 238, wherein the liquid suction pipe 233 is positioned on one side of the storage cabinet 230, the water pump I232 is arranged on one side of the liquid suction pipe 233, the main liquid discharge pipe 234 is arranged on one side of the water pump I232, the secondary liquid discharge pipe I235 is arranged on one side of the main liquid discharge pipe 234, the secondary liquid discharge pipe II 237 is arranged on the other side of the main liquid discharge pipe 234, the water supply pipe IV 238 is arranged on one side of the secondary liquid discharge pipe II 237, the water supply pipe III 231 is arranged on the other side of the secondary liquid discharge pipe II 237, and the control switch I236 is arranged on one side of the secondary liquid discharge pipe I235; the storage cabinet 230 is fixedly connected with the liquid suction pipe 233, the liquid suction pipe 233 is fixedly connected with the water pump I232, the water pump I232 is fixedly connected with the main liquid discharge pipe 234, the main liquid discharge pipe 234 is fixedly connected with the secondary liquid discharge pipe I235, the main liquid discharge pipe 234 is fixedly connected with the secondary liquid discharge pipe II 237, the secondary liquid discharge pipe II 237 is fixedly connected with the control switch I236, and the secondary liquid discharge pipe II 237 is fixedly connected with the water supply pipe IV 238.
The storage drying mechanism 3 comprises a shell IV 31, an air hole 310, a cover plate III 32, a pipeline through hole III 320, a water storage mechanism 33, a drying mechanism 34 and a water supply pipe VI 35, wherein the cover plate III 32 is arranged on one side of the shell IV 31, and the pipeline through hole III 320 is positioned on one side of the cover plate III 32; a water storage mechanism 33 is arranged on one side of the shell IV 31, a drying mechanism 34 is arranged on one side of the water storage mechanism 33, the air holes 310 are formed in one side of the shell IV 31, and the water supply pipe VI 35 is arranged on one side of the water storage mechanism 33; the shell IV 31 is fixedly connected with the cover plate III 32, the pipeline through hole III 320 is fixedly connected with the cover plate III 32, the water storage mechanism 33 is fixedly connected with the shell IV 31, the drying mechanism 34 is fixedly connected with the shell IV 31, the air hole 310 is fixedly connected onto the shell IV 31, and the water supply pipe VI 35 is fixedly connected with the water storage mechanism 33; the pipeline through hole III 320 provides a space for the drain pipe I8, the drain pipe III 26, the cleaning rotating shaft 412, the water supply pipe III 231 and the secondary drain pipe I235 to reach the next mechanism, and provides a certain supporting effect.
The water storage mechanism 33 comprises a shell V330, a control switch III 331, a water storage bin 332 and a control switch II 333, wherein the water storage bin 332 is positioned at the inner side of the shell V330, the control switch III 331 is arranged at one side of the shell V330, and the control switch II 333 is arranged at the other side of the shell V330; the water storage bin 332 is positioned inside the shell V330 and is fixedly connected with the shell V330, the control switch III 331 is fixedly connected with the shell V330, and the control switch II 333 is connected with the shell V330 through a water supply pipe III 231.
The drying mechanism 34 comprises an air compressor 340, a ventilation pipe 341, an air supply fan I342, an air supply fan II 343, an air supply pipe I344, an air supply pipe II 345, a control switch IV 346, an air storage bin 347, a gas pressure reduction cooling bin 348 and a partition 349, wherein the ventilation pipe 341 is arranged on one side of the air compressor 340, the air storage bin 347 is arranged on one side of the ventilation pipe 341, the partition 349 is arranged on one side of the air storage bin 347, the gas pressure reduction cooling bin 348 is arranged on one side of the partition 349, the control switch IV 346 is positioned on one side of the air storage bin 347, the air supply fan I342 is arranged on one side of the gas pressure reduction cooling bin 348, the air supply pipe I344 is arranged on one side of the air supply fan I342, the air supply fan II 343 is arranged on the other side of the gas pressure reduction cooling bin 348, and the air supply pipe II 345 is arranged on one side of the air supply fan II 343; the air compressor 340 is fixedly connected with the ventilation pipe 341, the ventilation pipe 341 is fixedly connected with the air storage bin 347, the air storage bin 347 is fixedly connected with the partition 349, the partition 349 is fixedly connected with the gas pressure reduction cooling bin 348, the gas pressure reduction cooling bin 348 is connected with the air supply fan I342, the gas pressure reduction cooling bin 348 is fixedly connected with the air supply fan II 343, the air supply fan I342 is fixedly connected with the air supply pipe I344, the air supply fan II 343 is fixedly connected with the air supply pipe II 345, and the control switch IV 346 is fixedly connected with the air storage bin 347.
The cleaning mechanism 4 comprises a glass container cleaning mechanism 41, a multiplexing cleaning mechanism 42, an ultrasonic wave generation mechanism I43, an ultrasonic wave generation mechanism II 44, a drain pipe IV 45 and a shell VIII 46, wherein the glass container cleaning mechanism 41 is arranged on the inner side of the shell VIII 46, the multiplexing cleaning mechanism 42 is arranged on one side of the glass container cleaning mechanism 41, the ultrasonic wave generation mechanism I43 is arranged on one side of the glass container cleaning mechanism 41, the ultrasonic wave generation mechanism II 44 is arranged on one side of the multiplexing cleaning mechanism 42, the drain pipe IV 45 is arranged on one side of the glass container cleaning mechanism 41, and the drain pipe IV 45 is arranged on one side of the multiplexing cleaning mechanism 42; the drain pipe IV 45 is fixedly connected with the glass container cleaning mechanism 41, the glass container cleaning mechanism 41 is fixedly connected with the multiplexing cleaning mechanism 42, the glass container cleaning mechanism 41 is fixedly connected with the shell VIII 46, the multiplexing cleaning mechanism 42 is fixedly connected with the shell VIII 46, the glass container cleaning mechanism 41 is connected with the ultrasonic wave generating mechanism I43, and the multiplexing cleaning mechanism 42 is connected with the ultrasonic wave generating mechanism II 44.
The glass container cleaning mechanism 41 comprises a cleaning mechanism 410, an inner wall brush 411, a cleaning rotating shaft 412, a shell VI 413, a flow divider 414, a water outlet pipe I415, a telescopic rod mechanism 416, a water outlet pipe II 417 and a water outlet II 418, wherein the inner wall brush 411 is arranged on one side of the shell VI 413, the cleaning rotating shaft 412 is arranged on the other side of the shell VI 413, a water outlet pipe II 417 is arranged on one side of the shell VI 413, the water outlet II 418 is arranged on one side of the water outlet pipe II 417, the flow divider 414 is arranged on one side of the cleaning rotating shaft 412, the water outlet pipe I415 is arranged on one side of the flow divider 414, the telescopic rod mechanism 416 is arranged on the other side of the flow divider 414, and the cleaning brush mechanism 410 is arranged on one side of the telescopic rod mechanism 416; inner wall brush 411 and shell VI 413 fixed connection, wash axis of rotation 412 and shell VI 413 fixed connection, shell VI 413 and play tuber pipe II 417 fixed connection, go out the last fixed connection air outlet II 418 of tuber pipe II 417, shunt 414 and outlet pipe I415 fixed connection, shunt 414 and telescopic link mechanism 416 fixed connection, telescopic link mechanism 416 and the scrubbing mechanism 410 fixed connection.
The cleaning mechanism 410 comprises a water outlet 4101, a top brush 4102, a side brush 4103, a bottom support 4104 and a cleaning shaft 4105, wherein one side of the bottom support 4104 is provided with the cleaning shaft 4105, one side of the cleaning shaft 4105 is provided with the side brush 4103, the other side of the cleaning shaft 4105 is provided with the top brush 4102, and the inside of the cleaning shaft 4105 is provided with the water outlet 4101; the bottom support 4104 is fixedly connected with the cleaning shaft 4105, the cleaning shaft 4105 is fixedly connected with the side hairbrush 4103, the cleaning shaft 4105 is fixedly connected with the top hairbrush 4102, and the water outlet 4101 is fixed in the cleaning shaft 4105.
The telescopic rod mechanism 416 comprises a fixed rod 4161, a telescopic rod fixing shell 4162, a spring 4163, a limit block 4164 and a movable rod 4165, wherein the telescopic rod fixing shell 4162 is arranged on one side of the fixed rod 4161, the spring 4163 is arranged on one side of the fixed rod 4161, the limit block 4164 is arranged on the other side of the fixed rod 4161, and the movable rod 4165 is arranged on the other side of the telescopic rod fixing shell 4162; the fixed rod 4161 is fixedly connected with the limit block 4164, the telescopic rod fixing shell 4162 is connected with the fixed rod 4161, the telescopic rod fixing shell 4162 is connected with the movable rod 4165, and the spring 4163 is fixedly connected with the fixed rod 4161.
The top cover plate 5 comprises a hinge 51, a downward-pressing brush head 52, an electric pushing cylinder I53, a top cover 54 and a handle 55, wherein the hinge 51 is arranged on one side of the top cover 54, the handle 55 is arranged on one side of the top cover 54, the electric pushing cylinder I53 is arranged on the other side of the top cover 54, and the downward-pressing brush head 52 is arranged on one side of the electric pushing cylinder I53; the hinge 51 is fixedly connected with the top cover 54, the handle 55 is fixedly connected with the top cover 54, the top cover 54 is fixedly connected with the electric pushing cylinder I53, and the electric pushing cylinder I53 is fixedly connected with the lower pressing brush head 52; hinge 51 is fixed on top cover 54, and when removing handle 55, top cover 54 drives electric push cylinder I53 and pushes down brush head 52 and rotates along hinge 51, and when electric push cylinder I53 acted, drives and pushes down brush head 52 and down the motion, accomplishes the washing in coordination with glass container wiper mechanism 41.
The multiplex cleaning mechanism 42 comprises a cleaning screen frame 420, an air outlet I421, a water outlet hole 422, a water outlet pipe II 423, an air outlet pipe I424 and a shell VII 425, wherein the air outlet I421 is arranged at one side of the shell VII 425, the water outlet hole 422 is arranged at one side of the shell VII, the cleaning screen frame 420 is arranged at one side of the shell VII, the water outlet pipe II 423 is arranged at one side of the cleaning screen frame 420, and the air outlet pipe I424 is also arranged at one side of the cleaning screen frame 420; air outlet I421 and shell VII 425 fixed connection, apopore 422 and shell VII fixed connection, wash screen frame 420 and shell VII connected, outlet pipe II 423 and washing screen frame 420 fixed connection, outlet pipe I424 and washing screen frame 420 fixed connection.
The drainage pipe I8 comprises a drainage hole III 81, a drainage hole IV 82, an electric pushing cylinder II 83, a baffle 84, a drainage through hole 85 and a drainage pipe 86, wherein the drainage through hole 85 is formed in one side of the drainage pipe 86, the drainage hole III 81 is formed in one side of the drainage through hole 85, the drainage hole IV 82 is formed in one side of the drainage through hole 85, the baffle 84 is formed in the other side of the drainage through hole 85, and the electric pushing cylinder II 83 is formed in one side of the baffle 84; the electric pushing cylinder II 83 is fixedly connected with a baffle 84, the baffle 84 is connected with a water drainage through hole 85, the baffle 84 is fixedly connected to a water drainage pipe I8, the water drainage hole III 81 is fixedly connected with a water drainage pipe 86, and the water drainage hole IV 82 is fixedly connected with the water drainage pipe 86.
An integrated ultrasonic cleaning device for cleaning surgical instruments works as follows:
the during operation of water filtering mechanism 13, external water gets into inlet tube 15 by inlet opening I101, lead to water filtering mechanism 13 by inlet tube 15, get into inlet opening II 130, it filters to get into filter bin 131 afterwards, filter the great impurity in aquatic, later get into filter screen filter bin 132, further refine the filtration with water under the effect of filter screen, water gets into and deposits storehouse 133 after filtering, the little impurity that will pass through the filter screen sinks to the bottom under the action of gravity, water reachs and adsorbs storehouse 134 afterwards, adsorb by activated carbon material 136, get rid of all impurities, get rid of various peculiar smells simultaneously, water reachs wash port II 135 at last and accomplishes the filtering process.
When the ultraviolet sterilization bin 12 works, water enters the diversion bin 124 from the water supply pipe I120, is divided into a plurality of strands of fine water flows, enters the shell II 121 through the diversion pipe 122, is sterilized by irradiation of the ultraviolet lamp 123, then enters the other diversion bin 124 for reverse confluence, and finally enters the next mechanism from the drainage pipe II 125 to finish the sterilization process of the water.
The working process of the water purifying and sterilizing mechanism 1 is that outside water enters the water inlet pipe 15 from the water inlet hole I101, enters the water filtering mechanism 13 from the water inlet pipe 15, enters the ultraviolet sterilizing bin 12 from the water filtering mechanism 13, enters the other water filtering mechanism 13 after being sterilized by the ultraviolet sterilizing bin 12, finally, the purified and sterilized water is conveyed to the next mechanism through the water supply pipe II 14, and the pipeline through hole I110 flows out of the water supply pipe II 14 and the water discharge pipe I8 to reach the space of the next mechanism and provide a supporting effect.
When the sterilizing cleaning liquid conveying mechanism 23 works, the water pump works, the liquid suction pipe 233 sucks compound cleaning enzyme and disinfectant from the storage cabinet 230, the sterilizing cleaning liquid is pumped to the main liquid discharge pipe 234, the main liquid discharge pipe 234 conveys the sterilizing cleaning liquid to the secondary liquid discharge pipe I235 and the secondary liquid discharge pipe II 237, the control switch I236 controls the secondary liquid discharge pipe II 237 to be opened and output when the glass container cleaning mechanism 41 works, the control switch II 333 controls the water supply pipe III 231 to be opened and output when the glass container cleaning mechanism 41 works, and the two switches control the circulation of water and the sterilizing cleaning liquid to prevent the waste of the water and the sterilizing cleaning liquid when the glass container cleaning mechanism 41 does not work; the pipe through hole II 220 flows out of the drain pipe I8, the water supply pipe III 231, the water supply pipe V24, the drain pipe III 26, the secondary drain pipe I235 and the cleaning rotating shaft 412 to reach the space of the next mechanism and provides a supporting function.
When the conveying mechanism 2 works, water is driven by a water pump II 25 to be sucked from a water supply pipe V24 to a water discharge pipe III 26 and conveyed to the next mechanism; the compound cleaning enzyme and the disinfection solution are conveyed to the cleaning mechanism 4 through the sterilization cleaning solution conveying mechanism 23.
When the water storage mechanism 33 works, water enters the water storage bin 332 from the water discharge pipe III 26, whether the working water is discharged from the water supply pipe VI 35 or not is controlled by the control switch III 331, and whether the working water is discharged from the water supply pipe III 231 or not is controlled by the control switch II 333.
When the drying mechanism 34 works, firstly, air is provided for the air compressor 340 through the air holes 310, high-temperature and high-pressure compressed air is generated by the air compressor 340, the compressed air enters the air storage bin 347 through the ventilation pipe 341, the compressed air enters the air pressure reduction cooling bin 348 under the control of the control switch iv 346 and is subjected to pressure reduction cooling, and the air pressure reduction cooling bin 348 sends the compressed air subjected to pressure reduction cooling to the next mechanism through the air supply fan i 342 and the air supply fan ii 343 and the air supply pipe i 344 and the air supply pipe ii 345.
During the working process of the glass container cleaning mechanism 41, the cylindrical instrument is reversely buckled on the cleaning mechanism 410, water and sterilization cleaning liquid are conveyed by the cleaning rotating shaft 412 and flow out of the outer wall of the cleaning instrument from the water outlet pipe I415 through the flow divider 414, and part of mixed liquid flows from the flow divider 414 to the telescopic rod mechanism 416 and flows out of the water outlet 4101 to the cleaning mechanism 410 to clean the inner wall of the cleaning instrument; meanwhile, the motor 27 drives the bevel gear I28, the bevel gear I28 and the bevel gear II 29 are in meshed synchronous motion to drive the cleaning rotating shaft 412 to rotate, the cleaning rotating shaft 412 and the shunt 414 are in fixed synchronous motion to drive the telescopic rod mechanism 416 fixed with the shunt 414 to move, finally, the cleaning mechanism 410 is made to rotate to clean the inside of the cylindrical instrument, the movable rod 4165 is pushed outwards by the spring 4163 to enable the outer wall of the cylindrical instrument to be close to the outer wall brush, the cylindrical instrument rotates similarly under the action of centrifugal force to clean the outer wall of the cylindrical instrument, the lower press brush head 52 moves downwards to clean the bottom of the cylindrical instrument, meanwhile, under the action of the ultrasonic generation mechanism I43, dead-angle-free cleaning of the cylindrical instrument is completed, and wastewater is discharged out of the cleaning machine through the drainage pipe IV 45 and the drainage pipe I8.
Reuse wiper mechanism 42 working process, disinfection washing liquid gets into shell VII 425 from outlet pipe II 423 to apopore 422, under the combined action of rivers and ultrasonic wave generation mechanism II 44, will place the surgical equipment sanitization in wasing screen frame 420, and waste water passes through drain pipe I8 discharge cleaning machine.
During the drying process of the instrument, compressed air generated by the drying mechanism 34 passes through the air supply pipe I344, the air supply pipe II 345, the air outlet pipe I424 and the air outlet pipe II 417, enters the mechanism needing drying from the air outlet I421 and the air outlet II 418, and finally is discharged out of the cleaning machine through the water discharge pipe I8 and the water discharge pipe IV 45.
The universal wheels 6 facilitate the movement of the cleaning machine; the mechanism fixing baffle 7 is used for fixedly connecting the mechanisms.
When the cleaning mechanism 4 discharges clean waste water and waste gas, the electric pushing cylinder II 83 contracts to drive the baffle to leave the drainage through hole 85, and the waste water and the waste gas from the drainage hole III 81 and the drainage hole IV 82 are discharged through the drainage pipeline 86 in the working process of the drainage pipe I8.
While embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made herein without departing from the principles of the invention, and it is intended to cover all such modifications, alterations and adaptations that fall within the scope of the invention, as defined by the appended claims.

Claims (9)

1.一种外科手术器械清洁的一体式超声波清洗装置,包括净水消毒机构、输送机构、储存烘干机构、清洗机构、顶部盖板、万向轮、机构固定挡板、排水管Ⅰ,其特征在于所述净水消毒机构一侧设有输送机构,净水消毒机构一侧设有机构固定挡板,净水消毒机构另一侧设有万向轮,所述输送机构一侧设有储存烘干机构,输送机构另一侧设有机构固定挡板,所述储存烘干机构一侧设有清洗机构,储存烘干机构另一侧设有机构固定挡板,所述清洗机构一侧设有顶部盖板,清洗机构另一侧设有机构固定挡板,所述排水管Ⅰ位于各机构内侧,排水管Ⅰ顶端位于清洗机构;1. An integrated ultrasonic cleaning device for cleaning surgical instruments, comprising a water purification and disinfection mechanism, a conveying mechanism, a storage drying mechanism, a cleaning mechanism, a top cover, a universal wheel, a mechanism fixing baffle, and a drain pipe I, which It is characterized in that one side of the water purification and disinfection mechanism is provided with a conveying mechanism, one side of the water purification and disinfection mechanism is provided with a mechanism fixing baffle, the other side of the water purification and disinfection mechanism is provided with a universal wheel, and one side of the conveying mechanism is provided with a storage device. Drying mechanism, the other side of the conveying mechanism is provided with a mechanism fixing baffle, one side of the storage drying mechanism is provided with a cleaning mechanism, the other side of the storage drying mechanism is provided with a mechanism fixing baffle, and one side of the cleaning mechanism is provided with a mechanism fixing baffle. There is a top cover, the other side of the cleaning mechanism is provided with a mechanism fixing baffle, the drain pipe I is located inside each mechanism, and the top of the drain pipe I is located in the cleaning mechanism; 所述净水消毒机构包括外壳Ⅰ、进水孔Ⅰ、排水孔Ⅰ、盖板Ⅰ、管道通孔Ⅰ、紫外线杀菌仓、水过滤机构、给水管Ⅱ、进水管,所述外壳Ⅰ一侧设有盖板Ⅰ,外壳Ⅰ一侧设有进水孔Ⅰ,进水孔Ⅰ一侧设有排水孔Ⅰ,管道通孔Ⅰ位于盖板Ⅰ一侧,管道通孔Ⅰ固定在盖板Ⅰ之上,外壳Ⅰ内侧设有紫外线杀菌仓,紫外线杀菌仓一侧设有水过滤机构,水过滤机构一侧设有进水管,水过滤机构另一侧设有给水管Ⅱ;所述外壳Ⅰ一侧固定连接有进水孔Ⅰ和排水孔Ⅰ,外壳Ⅰ另一侧固定连接盖板Ⅰ,盖板Ⅰ一侧固定连接管道通孔Ⅰ,所述紫外线杀菌仓固定连接在外壳Ⅰ上,所述水过滤机构固定连接在外壳Ⅰ上,所述水过滤机构与进水管固定连接,另一个水过滤机构与给水管Ⅱ固定连接;The water purification and disinfection mechanism includes a casing I, a water inlet hole I, a drainage hole I, a cover plate I, a pipe through hole I, an ultraviolet sterilization chamber, a water filter mechanism, a water supply pipe II, and a water inlet pipe. There is a cover plate I, one side of the shell I is provided with a water inlet hole I, one side of the water inlet hole I is provided with a drain hole I, the through hole I of the pipeline is located on the side of the cover plate I, and the through hole I of the pipeline is fixed on the cover plate I , the inner side of the shell I is provided with an ultraviolet sterilization chamber, one side of the ultraviolet sterilization chamber is provided with a water filter mechanism, one side of the water filter mechanism is provided with a water inlet pipe, and the other side of the water filter mechanism is provided with a water supply pipe II; one side of the shell I is fixed A water inlet hole I and a drain hole I are connected, the other side of the casing I is fixedly connected to the cover plate I, one side of the cover plate I is fixedly connected to the pipe through hole I, the ultraviolet sterilization chamber is fixedly connected to the casing I, and the water filter The mechanism is fixedly connected to the shell I, the water filtering mechanism is fixedly connected to the water inlet pipe, and the other water filtering mechanism is fixedly connected to the water supply pipe II; 所述紫外线杀菌仓包括给水管Ⅰ、外壳Ⅱ、分流管、紫外线灯、分流仓、排水管Ⅱ,所述外壳Ⅱ一侧设有紫外线灯,紫外线灯一侧设有分流管,分流管一侧设有分流仓,两个分流仓其中一个分流仓一侧设有给水管Ⅰ,另一个分流仓一侧设有排水管Ⅱ;所述紫外线灯与外壳Ⅱ固定连接,外壳与分流仓固定连接,分流仓与分流管固定连接,分流仓与给水管Ⅰ固定连接,分流仓与排水管Ⅱ固定连接;The ultraviolet sterilization chamber includes a water supply pipe I, an outer casing II, a shunt pipe, an ultraviolet lamp, a shunt chamber, and a drainage pipe II. One side of the outer casing II is provided with an ultraviolet lamp, one side of the ultraviolet lamp is provided with a shunt pipe, and one side of the shunt pipe is provided. There is a diversion bin, one of the two diversion bins is provided with a water supply pipe I on one side, and one side of the other diversion bin is provided with a drain pipe II; the ultraviolet lamp is fixedly connected with the shell II, and the shell is fixedly connected with the diversion bin, The shunt chamber is fixedly connected with the shunt pipe, the shunt chamber is fixedly connected with the water supply pipe I, and the shunt chamber is fixedly connected with the drain pipe II; 所述输送机构包括外壳Ⅲ、盖板Ⅱ、管道通孔Ⅱ、杀菌清洗液输送机构、给水管Ⅴ、水泵Ⅱ、排水管Ⅲ、电机、锥齿轮Ⅰ、锥齿轮Ⅱ,所述外壳Ⅲ一侧设有盖板Ⅱ,外壳Ⅲ内侧设有杀菌清洗液输送机构,外壳Ⅲ一侧设有给水管Ⅴ,给水管Ⅴ一侧设有水泵Ⅱ,水泵Ⅱ一侧设有排水管Ⅲ,所述外壳Ⅲ一侧设有电机,所述电机一侧设有锥齿轮Ⅰ,锥齿轮Ⅰ一侧设有锥齿轮Ⅱ,所述管道通孔Ⅱ位于盖板Ⅱ一侧;所述外壳Ⅲ与盖板Ⅱ固定连接,外壳Ⅲ与杀菌清洗液输送机构固定连接,外壳Ⅲ与给水管Ⅴ固定连接,给水管Ⅴ与水泵Ⅱ固定连接,水泵Ⅱ与排水管Ⅲ固定连接,所述电机与锥齿轮Ⅰ固定连接,锥齿轮Ⅰ与锥齿轮Ⅱ啮合,所述管道通孔Ⅱ与盖板Ⅱ固定连接;The conveying mechanism includes a casing III, a cover plate II, a pipe through hole II, a sterilizing and cleaning liquid conveying mechanism, a water supply pipe V, a water pump II, a drain pipe III, a motor, a bevel gear I, and a bevel gear II. One side of the casing III is There is a cover plate II, a sterilizing cleaning liquid conveying mechanism is arranged on the inner side of the casing III, a water supply pipe V is arranged on one side of the casing III, a water pump II is arranged on one side of the water supply pipe V, and a drainage pipe III is arranged on the side of the water pump II. One side of III is provided with a motor, one side of the motor is provided with a bevel gear I, one side of the bevel gear I is provided with a bevel gear II, the pipe through hole II is located on the side of the cover plate II; the casing III and the cover plate II Fixed connection, housing III is fixedly connected to the sterilizing cleaning liquid conveying mechanism, housing III is fixedly connected to water supply pipe V, water supply pipe V is fixedly connected to water pump II, water pump II is fixedly connected to drain pipe III, and the motor is fixedly connected to bevel gear I. , the bevel gear I meshes with the bevel gear II, and the pipe through hole II is fixedly connected to the cover plate II; 所述储存烘干机构包括外壳Ⅳ、透气孔、盖板Ⅲ、管道通孔Ⅲ、储水机构、烘干机构、给水管Ⅵ,所述外壳Ⅳ一侧设有盖板Ⅲ,所述管道通孔Ⅲ位于盖板Ⅲ一侧;外壳Ⅳ一侧设有储水机构,储水机构一侧设有烘干机构,所述透气孔位于外壳Ⅳ一侧,所述给水管Ⅵ位于储水机构一侧;所述外壳Ⅳ与盖板Ⅲ固定连接,管道通孔Ⅲ固定连接在盖板Ⅲ上,所述储水机构与外壳Ⅳ固定连接,所述烘干机构与外壳Ⅳ固定连接,透气孔固定连接于外壳Ⅳ之上,所述给水管Ⅵ与储水机构固定连接;The storage and drying mechanism includes a casing IV, a ventilation hole, a cover plate III, a pipe through hole III, a water storage mechanism, a drying mechanism, and a water supply pipe VI. The hole III is located on the side of the cover plate III; the side of the casing IV is provided with a water storage mechanism, the side of the water storage mechanism is provided with a drying mechanism, the ventilation hole is located on the side of the casing IV, and the water supply pipe VI is located on the side of the water storage mechanism one. side; the casing IV is fixedly connected to the cover plate III, the pipe through hole III is fixedly connected to the cover plate III, the water storage mechanism is fixedly connected to the casing IV, the drying mechanism is fixedly connected to the casing IV, and the ventilation holes are fixed Connected on the shell IV, the water supply pipe VI is fixedly connected with the water storage mechanism; 所述清洗机构包括玻璃容器清洗机构、复用清洗机构、超声波发生机构Ⅰ、超声波发生机构Ⅱ、排水管Ⅳ、外壳Ⅷ,所述外壳Ⅷ内侧设有玻璃容器清洗机构,玻璃容器清洗机构一侧设有复用清洗机构,玻璃容器清洗机构一侧设有超声波发生机构Ⅰ,所述复用清洗机构一侧设有超声波发生机构Ⅱ,所述玻璃容器清洗机构一侧设有排水管Ⅳ,所述复用清洗机构一侧设有排水管Ⅳ;排水管Ⅳ与玻璃容器清洗机构固定连接,玻璃容器清洗机构与复用清洗机构固定连接,玻璃容器清洗机构和外壳Ⅷ固定连接,复用清洗机构与外壳Ⅷ固定连接,玻璃容器清洗机构与超声波发生机构Ⅰ连接,复用清洗机构与超声波发生机构Ⅱ连接;The cleaning mechanism includes a glass container cleaning mechanism, a multiplexing cleaning mechanism, an ultrasonic generating mechanism I, an ultrasonic generating mechanism II, a drain pipe IV, and an outer shell VIII. The inner side of the outer shell VIII is provided with a glass container cleaning mechanism. There is a multiplexing cleaning mechanism, one side of the glass container cleaning mechanism is provided with an ultrasonic generating mechanism I, one side of the multiplexing cleaning mechanism is provided with an ultrasonic generating mechanism II, and one side of the glass container cleaning mechanism is provided with a drain pipe IV. One side of the reusable cleaning mechanism is provided with a drain pipe IV; the drain pipe IV is fixedly connected with the glass container cleaning mechanism, the glass container cleaning mechanism is fixedly connected with the reused cleaning mechanism, the glass container cleaning mechanism and the shell VIII are fixedly connected, and the reused cleaning mechanism It is fixedly connected with the shell VIII, the glass container cleaning mechanism is connected with the ultrasonic generating mechanism I, and the multiplexing cleaning mechanism is connected with the ultrasonic generating mechanism II; 所述玻璃容器清洗机构包括淸刷机构、内壁毛刷、清洗转动轴、外壳Ⅵ、分流器、出水管Ⅰ、伸缩杆机构、出风管Ⅱ、出风口Ⅱ,所述内壁毛刷设于外壳Ⅵ一侧,所述清洗转动轴设于外壳Ⅵ另一侧,外壳Ⅵ一侧设有出风管Ⅱ,出风管Ⅱ一侧设有出风口Ⅱ,所述清洗转动轴一侧设有分流器,分流器一侧设有出水管Ⅰ,分流器另一侧设有伸缩杆机构,伸缩杆机构一侧设有淸刷机构;所述内壁毛刷与外壳Ⅵ固定连接,所述清洗转动轴与外壳Ⅵ固定连接,外壳Ⅵ与出风管Ⅱ固定连接,出风管Ⅱ上固定连接出风口Ⅱ,所述分流器与出水管Ⅰ固定连接,分流器与伸缩杆机构固定连接,伸缩杆机构与淸刷机构固定连接;The glass container cleaning mechanism includes a brush mechanism, an inner wall brush, a cleaning rotating shaft, a casing VI, a flow divider, a water outlet pipe I, a telescopic rod mechanism, an air outlet pipe II, and an air outlet II, and the inner wall brush is provided in the casing. On one side of VI, the cleaning rotating shaft is arranged on the other side of the casing VI, one side of the casing VI is provided with an air outlet II, one side of the air outlet pipe II is provided with an air outlet II, and one side of the cleaning rotating shaft is provided with a shunt One side of the diverter is provided with a water outlet pipe I, the other side of the diverter is provided with a telescopic rod mechanism, and one side of the telescopic rod mechanism is provided with a brush mechanism; the inner wall brush is fixedly connected with the shell VI, and the cleaning rotating shaft It is fixedly connected with the shell VI, the shell VI is fixedly connected with the air outlet pipe II, the air outlet pipe II is fixedly connected with the air outlet II, the diverter is fixedly connected with the water outlet pipe I, the diverter is fixedly connected with the telescopic rod mechanism, and the telescopic rod mechanism Fixed connection with the brushing mechanism; 所述复用清洗机构包括清洗网框、出风口Ⅰ、出水孔、出水管Ⅱ、出风管Ⅰ、外壳Ⅶ,外壳Ⅶ一侧设有出风口Ⅰ,外壳Ⅶ一侧设有出水孔,外壳Ⅶ一侧设有清洗网框,清洗网框一侧设有出水管Ⅱ,清洗网框一侧还设有出风管Ⅰ;出风口Ⅰ与外壳Ⅶ固定连接,出水孔与外壳Ⅶ固定连接,清洗网框和外壳Ⅶ连接,出水管Ⅱ与清洗网框固定连接,出风管Ⅰ与清洗网框固定连接。The multiplexing cleaning mechanism includes a cleaning screen frame, an air outlet I, a water outlet hole, a water outlet pipe II, an air outlet pipe I, and a casing VII. One side of the casing Ⅶ is provided with an air outlet I, one side of the casing Ⅶ is provided with a water outlet hole, and the casing is One side of the Ⅶ is provided with a cleaning screen frame, one side of the cleaning screen frame is provided with a water outlet pipe II, and one side of the cleaning screen frame is also provided with an air outlet pipe I; The cleaning screen frame is connected with the shell VII, the water outlet pipe II is fixedly connected with the cleaning screen frame, and the air outlet pipe I is fixedly connected with the cleaning screen frame. 2.根据权利要求1所述的一种外科手术器械清洁的一体式超声波清洗装置,其特征在于所述水过滤机构包括进水孔Ⅱ、过滤仓、滤网过滤仓、沉淀仓、吸附仓、排水孔Ⅱ、活性炭材料、过滤膜,所述进水孔Ⅱ一侧设有过滤仓,过滤仓一侧设有滤网过滤仓,滤网过滤仓一侧设有沉淀仓,沉淀仓一侧设有吸附仓,吸附仓一侧设有排水孔Ⅱ,所述活性炭材料位于吸附仓内侧,所述过滤膜位于滤网过滤仓内侧;所述进水孔Ⅱ和过滤仓固定连接,所述滤网过滤仓和过滤膜固定连接,所述沉淀仓和过滤仓固定连接,沉淀仓和吸附仓固定连接,吸附仓和活性炭材料固定连接,吸附仓和排水孔Ⅱ固定连接。2. An integrated ultrasonic cleaning device for cleaning surgical instruments according to claim 1, characterized in that the water filtering mechanism comprises a water inlet hole II, a filter chamber, a filter screen filter chamber, a sedimentation chamber, an adsorption chamber, Drainage hole II, activated carbon material, filter membrane, one side of the water inlet hole II is provided with a filter chamber, one side of the filter chamber is provided with a filter screen filter chamber, one side of the filter screen filter chamber is provided with a sedimentation chamber, and one side of the sedimentation chamber is provided with a filter chamber. There is an adsorption chamber, one side of the adsorption chamber is provided with a drainage hole II, the activated carbon material is located inside the adsorption chamber, and the filter membrane is located at the inner side of the filter screen filter chamber; the water inlet hole II is fixedly connected with the filter chamber, and the filter screen The filtration chamber is fixedly connected to the filter membrane, the precipitation chamber is fixedly connected to the filter chamber, the sedimentation chamber is fixedly connected to the adsorption chamber, the adsorption chamber is fixedly connected to the activated carbon material, and the adsorption chamber is fixedly connected to the drainage hole II. 3.根据权利要求1所述的一种外科手术器械清洁的一体式超声波清洗装置,其特征在于所述杀菌清洗液输送机构包括储存柜、给水管Ⅲ、水泵Ⅰ、吸液管、主排液管、次排液管Ⅰ、控制开关Ⅰ、次排液管Ⅱ、给水管Ⅳ,所述吸液管位于储存柜一侧,吸液管一侧设有水泵Ⅰ,水泵Ⅰ一侧设有主排液管,主排液管一侧设有次排液管Ⅰ,主排液管另一侧设有次排液管Ⅱ,次排液管Ⅱ一侧设有给水管Ⅳ,次排液管Ⅱ另一侧设有给水管Ⅲ,所述次排液管Ⅰ一侧设有控制开关Ⅰ;所述储存柜和吸液管固定连接,吸液管和水泵Ⅰ固定连接,水泵Ⅰ和主排液管固定连接,主排液管和次排液管Ⅰ固定连接,主排液管和次排液管Ⅱ固定连接,次排液管Ⅱ和控制开关Ⅰ固定连接,次排液管Ⅱ和给水管Ⅳ固定连接。3. The integrated ultrasonic cleaning device for cleaning surgical instruments according to claim 1, wherein the sterilizing cleaning liquid conveying mechanism comprises a storage cabinet, a water supply pipe III, a water pump I, a suction pipe, a main drain Pipe, secondary drain pipe I, control switch I, secondary drain pipe II, water supply pipe IV, the suction pipe is located on one side of the storage cabinet, the suction pipe side is provided with a water pump I, and the pump I side is provided with a main The drain pipe, one side of the main drain pipe is provided with a secondary drain pipe I, the other side of the main drain pipe is provided with a secondary drain pipe II, one side of the secondary drain pipe II is provided with a water supply pipe IV, and the secondary drain pipe The other side of II is provided with a water supply pipe III, and one side of the secondary discharge pipe I is provided with a control switch I; the storage cabinet is fixedly connected to the suction pipe, the suction pipe is fixedly connected to the water pump I, and the water pump I is connected to the main discharge pipe. The liquid pipe is fixedly connected, the main discharge pipe and the secondary discharge pipe I are fixedly connected, the main discharge pipe and the secondary discharge pipe II are fixedly connected, the secondary discharge pipe II is fixedly connected with the control switch I, and the secondary discharge pipe II is fixed with the water supply Pipe IV fixed connection. 4.根据权利要求1所述的一种外科手术器械清洁的一体式超声波清洗装置,其特征在于所述储水机构包括外壳Ⅴ、控制开关Ⅲ、储水仓、控制开关Ⅱ,所述储水仓位于外壳Ⅴ内侧,外壳Ⅴ一侧设有控制开关Ⅲ,外壳Ⅴ另一侧设有控制开关Ⅱ;储水仓位于外壳Ⅴ内部并与外壳Ⅴ固定连接,控制开关Ⅲ与外壳Ⅴ固定连接,控制开关Ⅱ通过给水管Ⅲ与外壳Ⅴ连接。4. An integrated ultrasonic cleaning device for cleaning surgical instruments according to claim 1, characterized in that the water storage mechanism comprises a casing V, a control switch III, a water storage bin, and a control switch II, and the water storage bin is located in the Inside the shell V, there is a control switch III on one side of the shell V, and a control switch II on the other side of the shell V; II is connected with the shell V through the water supply pipe III. 5.根据权利要求1所述的一种外科手术器械清洁的一体式超声波清洗装置,其特征在于所述烘干机构包括空气压缩机、通风管、供风风扇Ⅰ、供风风扇Ⅱ、供风管Ⅰ、供风管Ⅱ、控制开关Ⅳ、储气仓、气体降压冷却仓、隔板,所述空气压缩机一侧设有通风管,通风管一侧设有储气仓,储气仓一侧设有隔板,隔板一侧设有气体降压冷却仓,所述控制开关Ⅳ位于储气仓一侧,所述气体降压冷却仓一侧设有供风风扇Ⅰ,供风风扇Ⅰ一侧设有供风管Ⅰ,气体降压冷却仓另一侧设有供风风扇Ⅱ,供风风扇Ⅱ一侧设有供风管Ⅱ;所述空气压缩机与通风管固定连接,通风管与储气仓固定连接,储气仓与隔板固定连接,隔板与气体降压冷却仓固定连接,气体降压冷却仓与供风风扇Ⅰ连接,气体降压冷却仓与供风风扇Ⅱ固定连接,供风风扇Ⅰ与供风管Ⅰ固定连接,供风风扇Ⅱ与供风管Ⅱ固定连接,所述控制开关Ⅳ与储气仓固定连接。5. The integrated ultrasonic cleaning device for cleaning surgical instruments according to claim 1, wherein the drying mechanism comprises an air compressor, a ventilation duct, an air supply fan I, an air supply fan II, an air supply Pipe I, air supply pipe II, control switch IV, gas storage bin, gas depressurization cooling bin, partition, one side of the air compressor is provided with a ventilation pipe, one side of the ventilation pipe is provided with an air storage bin, and an air storage bin One side is provided with a partition, one side of the partition is provided with a gas depressurization and cooling bin, the control switch IV is located on one side of the gas storage bin, and one side of the gas depressurization and cooling bin is provided with an air supply fan I, and the air supply fan One side of I is provided with an air supply pipe I, the other side of the gas pressure reduction cooling bin is provided with an air supply fan II, and one side of the air supply fan II is provided with an air supply pipe II; the air compressor is fixedly connected with the ventilation pipe, and the ventilation The pipe is fixedly connected to the gas storage bin, the gas storage bin is fixedly connected to the partition, the partition is fixedly connected to the gas pressure reduction cooling bin, the gas pressure reduction cooling bin is connected to the air supply fan I, and the gas pressure reduction cooling bin is connected to the air supply fan II Fixed connection, the air supply fan I is fixedly connected with the air supply pipe I, the air supply fan II is fixedly connected with the air supply pipe II, and the control switch IV is fixedly connected with the air storage bin. 6.根据权利要求1所述的一种外科手术器械清洁的一体式超声波清洗装置,其特征在于所述淸刷机构包括出水口、顶部毛刷、侧面毛刷、底部支撑、清洗轴,所述底部支撑一侧设有清洗轴,清洗轴一侧设有侧面毛刷,清洗轴另一侧设有顶部毛刷,清洗轴内部设有出水口;所述底部支撑与清洗轴固定连接,清洗轴与侧面毛刷固定连接,清洗轴与顶部毛刷固定连接,所述出水口固定于清洗轴之内。6. The integrated ultrasonic cleaning device for cleaning surgical instruments according to claim 1, wherein the brushing mechanism comprises a water outlet, a top brush, a side brush, a bottom support, and a cleaning shaft, and the A cleaning shaft is arranged on one side of the bottom support, a side brush is arranged on one side of the cleaning shaft, a top brush is arranged on the other side of the cleaning shaft, and a water outlet is arranged inside the cleaning shaft; the bottom support is fixedly connected with the cleaning shaft, and the cleaning shaft It is fixedly connected with the side brush, the cleaning shaft is fixedly connected with the top brush, and the water outlet is fixed in the cleaning shaft. 7.根据权利要求1所述的一种外科手术器械清洁的一体式超声波清洗装置,其特征在于所述伸缩杆机构包括固定杆、伸缩杆固定外壳、弹簧、限位块、活动杆,所述固定杆一侧设有伸缩杆固定外壳,固定杆一侧设有弹簧,固定杆另一侧设有限位块,伸缩杆固定外壳另一侧设有活动杆;所述固定杆和限位块固定连接,伸缩杆固定外壳与固定杆连接,伸缩杆固定外壳与活动杆连接,弹簧与固定杆固定连接。7 . The integrated ultrasonic cleaning device for cleaning surgical instruments according to claim 1 , wherein the telescopic rod mechanism comprises a fixed rod, a telescopic rod fixed casing, a spring, a limit block, and a movable rod, 7 . One side of the fixed rod is provided with a telescopic rod fixed casing, one side of the fixed rod is provided with a spring, the other side of the fixed rod is provided with a limit block, and the other side of the telescopic rod fixed shell is provided with a movable rod; the fixed rod and the limit block are fixed The telescopic rod fixed casing is connected with the fixed rod, the telescopic rod fixed casing is connected with the movable rod, and the spring is fixedly connected with the fixed rod. 8.据权利要求1所述的一种外科手术器械清洁的一体式超声波清洗装置,其特征在于所述顶部盖板包括合页、下压毛刷头、电推缸Ⅰ、顶盖、把手,顶盖一侧设有合页,顶盖一侧设有把手,顶盖另一侧设有电推缸Ⅰ,电推缸Ⅰ一侧设有下压毛刷头;所述合页与顶盖固定连接,所述把手与顶盖固定连接,顶盖与电推缸Ⅰ固定连接,电推缸Ⅰ与下压毛刷头固定连接;合页固定于顶盖上,当移动把手时,顶盖带动电推缸Ⅰ和下压毛刷头沿合页旋转,电推缸Ⅰ作用时,带动下压毛刷头往下运动,协同玻璃容器清洗机构完成清洗。8. An integrated ultrasonic cleaning device for cleaning surgical instruments according to claim 1, characterized in that the top cover plate comprises a hinge, a downward pressing brush head, an electric push cylinder I, a top cover, and a handle, One side of the top cover is provided with a hinge, one side of the top cover is provided with a handle, the other side of the top cover is provided with an electric push cylinder I, and one side of the electric push cylinder I is provided with a downward pressing brush head; Fixed connection, the handle is fixedly connected with the top cover, the top cover is fixedly connected with the electric push cylinder I, and the electric push cylinder I is fixedly connected with the downward pressing brush head; the hinge is fixed on the top cover, when the handle is moved, the top cover is fixedly connected. It drives the electric push cylinder I and the downward pressing brush head to rotate along the hinge. When the electric push cylinder I acts, it drives the downward pressing brush head to move downward, and cooperates with the glass container cleaning mechanism to complete the cleaning. 9.根据权利要求1所述的一种外科手术器械清洁的一体式超声波清洗装置,其特征在于所述排水管Ⅰ包括排水孔Ⅲ、排水孔Ⅳ、电推缸Ⅱ、挡板、排水通孔、排水管道,所述排水管道一侧设有排水通孔,排水通孔一侧设有排水孔Ⅲ,排水通孔一侧设有排水孔Ⅳ,排水通孔另一侧设有挡板,挡板一侧设有电推缸Ⅱ;电推缸Ⅱ与挡板固定连接,挡板与排水通孔连接,挡板固定连接在排水管Ⅰ上,所述排水孔Ⅲ与排水管道固定连接,所述排水孔Ⅳ与排水管道固定连接。9 . The integrated ultrasonic cleaning device for cleaning surgical instruments according to claim 1 , wherein the drainage pipe I comprises a drainage hole III, a drainage hole IV, an electric push cylinder II, a baffle plate, and a drainage through hole. 10 . , Drainage pipe, one side of the drainage pipe is provided with a drain hole, one side of the drain hole is provided with a drain hole III, one side of the drain hole is provided with a drain hole IV, and the other side of the drain hole is provided with a baffle plate to block There is an electric push cylinder II on one side of the plate; the electric push cylinder II is fixedly connected to the baffle plate, the baffle plate is connected to the drainage through hole, the baffle plate is fixedly connected to the drainage pipe I, and the drainage hole III is fixedly connected to the drainage pipe. The drainage hole IV is fixedly connected with the drainage pipe.
CN202110972933.7A 2021-08-24 2021-08-24 An integrated ultrasonic cleaning device for cleaning surgical instruments Withdrawn CN113680747A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113909213A (en) * 2021-12-14 2022-01-11 江苏华系医疗器械股份有限公司 Dry integrative medical scope cleaning and sterilizing device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113909213A (en) * 2021-12-14 2022-01-11 江苏华系医疗器械股份有限公司 Dry integrative medical scope cleaning and sterilizing device
CN113909213B (en) * 2021-12-14 2022-03-08 江苏华系医疗器械股份有限公司 Dry integrative medical scope cleaning and sterilizing device

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