An integrated endoscope cleaning device
By designing an integrated endoscope cleaning equipment, the problem of impurities splashing during manual cleaning is solved by using clad high-speed cleaning and special structural components, and efficient and safe endoscope cleaning is achieved.
Patent Information
- Application Number
- CN202310948467.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-31
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2043-07-31
AI Technical Summary
In the prior art, when manually cleaning the endoscope, impurities may easily splash into the operating room or on human clothing, causing cross infection.
An integrated endoscope cleaning device is designed to perform a cladding high-speed cleaning of the endoscope through the third cylinder and the fourth cylinder. It uses structures such as fixed blocks, positioning blocks and pulling components to avoid splashing impurities, and ensure cleaning effect and safety through the filtering component and the collection component.
It effectively avoids the problem of impurities splashing everywhere during manual rinsing, realizes efficient cleaning, saves cleaning liquid, improves the cleaning effect of the endoscope, and reduces the risk of cross-infection.
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Figure CN116851332B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of endoscope cleaning. More specifically, the present invention relates to an integrated endoscope cleaning device. Background Art
[0002] An endoscope is a detection instrument integrating traditional optics, ergonomics, precision machinery, modern electronics, mathematics, software, etc. It can enter the stomach through the oral cavity or enter the body through other natural orifices. Since the endoscope needs to be placed inside the human body for work, impurities in the human body are contaminated on the surface of the endoscope. After the physician takes out the endoscope from the human body, some impurities are taken out together with the endoscope. And the impurities contain viruses. In order to reduce cross-infection during the process of sending the endoscope to the cleaning station for centralized cleaning, it is necessary to perform preliminary cleaning on the endoscope after the operation. The prior art usually performs preliminary cleaning on it manually. If the wiping method is used for cleaning, it is very easy to have a residue phenomenon. If it is rinsed with clean water, the impurities are easily splashed onto the operating room or human clothing during the rinsing process, causing cross-infection. Summary of the Invention
[0003] The present invention provides an integrated endoscope cleaning device, and its purpose is to overcome the defect that when manually performing preliminary cleaning on the endoscope, impurities will be splashed onto the operating room or human clothing, causing cross-infection.
[0004] In order to achieve the above purpose, the technical solution of the present invention is as follows:
[0005] An integrated endoscope cleaning device includes a first connecting block, a first cylinder and a second cylinder; the first connecting block is fixedly connected with the first cylinder; the lower side of the first cylinder communicates with the second cylinder; it further includes a third cylinder, a first pipe, a fixing block, a first sealing ring, a funnel, a fourth cylinder and a filtering component; the third cylinder is fixedly connected inside the first cylinder; the steel pipe part of the endoscope body is subjected to a wrapped high-speed flushing through the third cylinder; several first pipes are penetrated through the first cylinder; all the first pipes communicate with the third cylinder; the lower side of the first cylinder is fixedly connected with the fixing block through a connecting rod; the upper side of the fixing block is fixedly connected with the first sealing ring; the upper side of the second cylinder is fixedly connected with the funnel; the lower side of the funnel communicates and is rotatably connected with the fourth cylinder; the grip part of the endoscope body is subjected to a wrapped high-speed flushing through the fourth cylinder; the fourth cylinder is rotatably connected with the second cylinder; the lower side of the second cylinder is connected with a filtering component for filtering waste water.
[0006] Further, it further includes a positioning block; two positioning blocks are arranged on the upper side of the fixing block; the upper side surfaces of the two positioning blocks are both conical surfaces.
[0007] Furthermore, it also includes a pulling assembly; the pulling assembly is connected to the first cylinder; the pulling assembly includes a pulling rod, a shifting block and a latch; two pulling rods are slidably connected to the lower side of the first cylinder; the two pulling rods are respectively fixed to the corresponding positioning blocks; a shifting block is fixed to the opposite ends of the two pulling rods, and the shifting block is in contact with the first cylinder; two latches are fixed to the outer side of the first cylinder; the two shifting blocks are respectively plugged into the corresponding latches.
[0008] Furthermore, it also includes a spiral ring; the spiral ring is fixedly connected to the inner side of the fourth cylinder.
[0009] Furthermore, it also includes a pressurizing component; the pressurizing component is connected inside the first cylinder; the pressurizing component includes a second connecting block, a multi-stage hydraulic rod, a push plate, a second sealing ring and a third sealing ring; the second connecting block is fixedly connected to the upper inner side of the first cylinder; the second connecting block is fixedly connected to the third cylinder; the multi-stage hydraulic rod is fixedly connected to the second connecting block; the telescopic end of the multi-stage hydraulic rod is fixedly connected to the push plate; the second sealing ring is fixedly connected to the outer side of the push plate; the second sealing ring slides inside the first cylinder; the third sealing ring is fixedly connected to the inner side of the push plate; the third sealing ring slides on the third cylinder.
[0010] Furthermore, it also includes a toggle assembly; the toggle assembly is connected to the fourth cylinder; the toggle assembly includes a toggle rod and an annular elastic telescopic rod; the toggle rod is fixedly connected to the fourth cylinder; the annular elastic telescopic rod is fixedly connected to the inner side of the second cylinder; the telescopic end of the annular elastic telescopic rod is fixedly connected to the toggle rod.
[0011] Furthermore, it also includes a collecting component; the collecting component is connected to the first cylinder; the collecting component includes a cover shell, a fourth sealing ring, a second pipe and a third pipe; the cover shell is fixedly connected to the upper side of the first cylinder; the fourth sealing ring is fixedly connected to the inner side of the cover shell; the second pipe is passed through one side of the cover shell; the third pipe is passed through the other side of the cover shell; the lower end of the third pipe is connected to and fixedly connected to the first cylinder.
[0012] Furthermore, the collecting assembly also includes a spacer block; two spacers are fixedly connected to the inner side of the cover shell, the spacer block contacts the first cylinder, and the spacer block contacts the third cylinder; one of the spacers is aligned with the middle of the second pipe, and the other spacer is aligned with the middle of the third pipe.
[0013] Furthermore, the filter assembly includes a fifth cylinder, a first filter element and a fourth pipe; the lower side of the fourth cylinder is connected to the fifth cylinder; the fifth cylinder is plugged into the second cylinder; the first filter element is fixedly connected to the inner side of the fifth cylinder; and the lower side of the fifth cylinder is connected to the fourth pipe.
[0014] Furthermore, the filter assembly also includes a second filter element; at least six second filter elements are fixedly connected to the inner side of the fifth cylinder in an annular array.
[0015] Beneficial effects: By adopting the above technical solution, the present invention cooperates the third cylinder and the fourth cylinder to perform a wrapped high-speed cleaning on the endoscope body, flushing the impurities on its surface clean, effectively avoiding the problem of impurities splashing everywhere caused by manual flushing, and only a small amount of cleaning liquid is needed to achieve efficient cleaning, which is beneficial to saving the cleaning liquid. Moreover, the cleaning liquid of the flushing steel pipe is used to flush the grip part, further saving the cleaning liquid;
[0016] When cleaning the steel pipe, the lower end of the steel pipe part is protected by the fixing block to prevent the cleaning liquid from splashing impurities into the inner part of the port of the steel pipe part. At the same time, the steel pipe is limited and guided by the positioning block to smoothly insert it into the fixing block. At the same time, the pull rod drives the two positioning blocks to move away from the fixing block in opposite directions, effectively preventing the cleaning liquid and impurities from remaining in the annular groove formed by the two positioning blocks and the steel pipe part, and further preventing the impurities in the annular groove from re-contaminating the surface of the steel pipe part when the endoscope body is taken out after cleaning;
[0017] When cleaning the grip, the second cavity is separated by the spiral coil, so that the cleaning liquid flows spirally downward along the surface of the grip part, thereby flushing out the impurities in the grooves of the grip part, which is beneficial to improving the cleaning effect. Moreover, after being separated by the spiral coil, the cross-sectional area of the cleaning liquid flow channel decreases, while the total amount of the cleaning liquid and the pressure above it remain unchanged, increasing the flow rate of the cleaning liquid and further improving the cleaning effect on the grip part. At the same time, the spiral coil is driven to rotate by the lever, changing the contact position between the spiral coil and the grip part, effectively avoiding the problem of low cleaning effect caused by the cleaning liquid being unable to directly impact the contact position between the grip part and the spiral coil;
[0018] During filtration, the second filter element intercepts the spirally flowing cleaning liquid multiple times to decelerate the high-speed flowing cleaning liquid, effectively avoiding the problem of the cleaning liquid splashing the impurities back onto the grip part;
[0019] In addition, the impurities remaining on the upper side of the third cylinder are removed through the second pipeline to avoid residue. Moreover, the cleaning liquid is divided into two streams by the partition block and flows into the front side and the rear side of the third cavity respectively, and then flows out through the third pipeline, effectively avoiding the problem of incomplete cleaning caused by the cleaning liquid driving the impurities to swirl inside the third cavity; Description of the Drawings
[0020] Figure 1 Shows the first structural schematic diagram of the integrated endoscope cleaning device of the present invention;
[0021] Figure 2 Shows the second structural schematic diagram of the integrated endoscope cleaning device of the present invention;
[0022] Figure 3 Shows the structural schematic diagram of the endoscope body;
[0023] Figure 4 A schematic structural diagram of a pressurizing assembly of the present invention is shown;
[0024] Figure 5 A schematic structural diagram of the toggle assembly of the present invention is shown;
[0025] Figure 6 A partial structural schematic diagram of the integrated endoscope cleaning device of the present invention is shown;
[0026] Figure 7 A schematic diagram of the structure of the pulling assembly of the present invention is shown;
[0027] Figure 8 A schematic diagram of the structure of the collecting assembly of the present invention is shown;
[0028] Figure 9 A schematic diagram of a first partial structure of a collecting assembly of the present invention is shown;
[0029] Figure 10 A second partial structural schematic diagram of the collecting assembly of the present invention is shown;
[0030] Figure 11 A schematic diagram of the structure of the filter assembly of the present invention is shown;
[0031] Figure 12 A partial structural schematic diagram of the filter assembly of the present invention is shown.
[0032] in:
[0033] 1-first connecting block, 2-first cylinder, 3-second cylinder, 4-third cylinder, 5-first pipeline, 6-fixing block, 7-first sealing ring, 8-funnel, 9-fourth cylinder, 10-endoscope body, 10a-steel pipe part, 10b-handle part, 201-positioning block, 202-pull rod, 203-shift block, 204-latch pin, 205-spiral ring, 206-second connecting block, 207-multi-stage hydraulic rod, 208-push plate, 209-second sealing ring, 2010-third sealing ring, 2011-shift rod, 2012-annular elastic telescopic rod, 2013-cover, 2014-fourth sealing ring, 2015-second pipe, 2016-third pipe, 2017-spacer, 301-fifth cylinder, 302-first filter element, 303-fourth pipe, 304-second filter element, 91-first cavity, 92-second cavity, 93-third cavity. DETAILED DESCRIPTION
[0034] The present invention will now be described more fully hereinafter with reference to the accompanying drawings, in which preferred embodiments of the present invention are shown. However, the present invention may be embodied in many different forms and should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided for thoroughness and completeness and fully convey the scope of the present invention to those skilled in the art.
[0035] Embodiment 1
[0036] An integrated endoscope cleaning device, as Figures 1-7 shown, includes a first connection block 1, a first cylinder 2 and a second cylinder 3; the first connection block 1 is welded with the first cylinder 2; the lower side of the first cylinder 2 is communicated with and inserted with the second cylinder 3; it further includes a third cylinder 4, a first pipe 5, a fixing block 6, a first sealing ring 7, a funnel 8, a fourth cylinder 9 and a filtering assembly; the third cylinder 4 is welded inside the first cylinder 2, and the third cylinder 4 is made of alloy material; the steel pipe part 10a of the endoscope body 10 is subjected to a wrapped high-speed flushing through the third cylinder 4; at least two first pipes 5 are penetrated through the first cylinder 2; all the first pipes 5 are communicated with and fixedly connected to the third cylinder 4; the lower side of the first cylinder 2 is fixedly connected with the fixing block 6 through a connecting rod; the upper side of the fixing block 6 is fixedly connected with the first sealing ring 7; the upper side of the second cylinder 3 is welded with the funnel 8; the lower side of the funnel 8 is communicated with and rotatably connected to the fourth cylinder 9; the handle part 10b of the endoscope body 10 is subjected to a wrapped high-speed flushing through the fourth cylinder 9; the fourth cylinder 9 is rotatably connected to the second cylinder 3; the lower side of the second cylinder 3 is connected with a filtering assembly for filtering waste water.
[0037] It further includes a positioning block 201; two left and right symmetric positioning blocks 201 are arranged on the upper side of the fixing block 6; the upper surfaces of the two positioning blocks 201 are both conical surfaces, and after the steel pipe part 10a of the endoscope body 10 moves downward, it contacts the conical surfaces of the positioning blocks 201, and the steel pipe is limited and guided by the conical surfaces so that it can be smoothly inserted into the fixing block 6.
[0038] It further includes a pulling assembly; the first cylinder 2 is connected with a pulling assembly; the pulling assembly includes a pull rod 202, a dial block 203 and a pin 204; two pull rods 202 are slidably connected to the lower side of the first cylinder 2; the two pull rods 202 are respectively welded to the corresponding positioning blocks 201, and the two positioning blocks 201 are separated and moved away from the fixing block 6 through the pull rods 202, so as to avoid waste water remaining on the upper sides of the two positioning blocks 201; a dial block 203 is welded to the opposite ends of the two pull rods 202, and the dial block 203 contacts the first cylinder 2; two pins 204 are welded to the outer side of the first cylinder 2, and the pins 204 are made of alloy material; the two dial blocks 203 are respectively inserted into the corresponding pins 204.
[0039] It also includes a spiral ring 205; a spiral ring 205 is welded on the inner side of the fourth cylinder 9, and the second cavity 92 is separated by the spiral ring 205, so that the liquid flows downward in a spiral shape in the second cavity 92, and the cross-sectional size of the flow channel is reduced, thereby increasing the flow rate and improving the cleaning efficiency.
[0040] The pressurizing assembly is also included; the pressurizing assembly is connected to the inside of the first cylinder 2; the pressurizing assembly includes a second connecting block 206, a multi-stage hydraulic rod 207, a push plate 208, a second sealing ring 209 and a third sealing ring 2010; the second connecting block 206 is welded to the upper inner part of the first cylinder 2; the second connecting block 206 is welded to the third cylinder 4; the multi-stage hydraulic rod 207 is fixedly connected to the second connecting block 206; the telescopic end of the multi-stage hydraulic rod 207 is fixedly connected to the push plate 208; the outer side of the push plate 208 is fixedly connected to the second The sealing ring 209 and the second sealing ring 209 are made of rubber; the second sealing ring 209 slides on the inner side of the first cylinder 2; the third sealing ring 2010 is fixedly connected to the inner side of the push plate 208, and the third sealing ring 2010 is made of rubber; the third sealing ring 2010 slides on the third cylinder 4, and the upper side of the second cavity 92 is pressurized by the push plate 208, the second sealing ring 209 and the third sealing ring 2010, so as to further increase the flow rate of the liquid in the second cavity 92 and further improve the cleaning efficiency.
[0041] It also includes a toggle assembly; the fourth cylinder 9 is connected to the toggle assembly; the toggle assembly includes a toggle rod 2011 and an annular elastic telescopic rod 2012; the fourth cylinder 9 is welded with a toggle rod 2011, and the fourth cylinder 9 is driven to rotate by the toggle rod 2011, so that the fourth cylinder 9 drives the spiral ring 205 to rotate, thereby changing the contact position between the spiral ring 205 and the gripping portion 10b of the endoscope body 10, further improving the cleaning efficiency; the inner side of the second cylinder 3 is bolted with an annular elastic telescopic rod 2012; the telescopic end of the annular elastic telescopic rod 2012 is fixedly connected to the toggle rod 2011.
[0042] First, manually connect the external water inlet pipe to the first pipe 5, and then pull out the second cylinder 3 and the parts thereon downward to complete the preparation work. During cleaning, manually unscrew the grip part 10b from the endoscope body 10, then screw the grip part 10b under the fixed block 6, and then install the second cylinder 3 and the parts thereon back to their original positions so that the grip part 10b contacts the spiral coil 205. Then insert the steel pipe part 10a of the endoscope body 10 into the third cylinder 4 until the endoscope body 10 is received on the third cylinder 4. At this time, the lower end of the steel pipe part 10a is inserted into the fixed block 6 and contacts the first sealing ring 7. Then the external water inlet pipe conveys the cleaning liquid to the first pipe 5. At this time, a first cavity 91 is formed between the steel pipe part 10a and the third cylinder 4, and the cleaning liquid flows into the first cavity 91 through the first pipe 5. Since the first cavity 91 is relatively narrow, the cleaning liquid fills the first cavity 91 and flows downward at high speed, that is, the steel pipe part 10a is subjected to a high-speed wrapped cleaning, and the impurities on its surface are washed away, effectively avoiding the problem of impurities splashing everywhere caused by manual washing, and only a small amount of cleaning liquid is needed to achieve efficient cleaning, which is conducive to saving the cleaning liquid. At the same time, the lower end of the steel pipe part 10a is protected by the fixed block 6 to prevent the cleaning liquid from splashing impurities into the inner part of the port of the steel pipe part 10a.
[0043] The lower end of the steel pipe part 10a is inserted into the fixed block 6. The steel pipe part 10a moves downward to contact the conical surface of the positioning block 201. The steel pipe is limited and guided by the conical surface so that it can be smoothly inserted into the fixed block 6. Then manually pull the block 203 to move, so that the block 203 moves away from the pin 204. The block 203 drives the pull rod 202 to move, and the pull rod 202 drives the positioning block 201 to move, so that the two positioning blocks 201 move away from each other and away from the fixed block 6, thereby effectively preventing the cleaning liquid and impurities from remaining in the annular groove formed by the two positioning blocks 201 and the steel pipe part 10a, and further preventing the impurities in the annular groove from re-contaminating the surface of the steel pipe part 10a when the endoscope body 10 is taken out after cleaning.
[0044] The cleaning liquid flowing from the steel pipe part 10a after flushing flows to the upper side of the funnel 8. Since the second cavity 92 formed between the fourth cylinder 9 and the grip part 10b is relatively small, a large amount of cleaning liquid quickly accumulates on the upper side of the funnel 8. At this time, the multi-stage hydraulic rod 207 drives the push plate 208 to move downward, and the push plate 208 drives the second sealing ring 209 and the third sealing ring 2010 to move downward, thereby pressurizing the space on the upper side of the funnel 8, so that the cleaning liquid flows downward at high speed from the second cavity 92, so as to perform a high-speed wrapped flushing on the grip part 10b and wash away the impurities on its surface, effectively avoiding the problem of impurities splashing everywhere caused by manual flushing, and using the cleaning liquid for flushing the steel pipe to flush the grip part 10b, further saving the cleaning liquid. After that, the cleaning liquid carries impurities and flows into the filtering assembly, and the filtering assembly filters out the impurities therein.
[0045] When flushing the grip part 10b, the second cavity 92 is separated by the spiral coil 205, so that the cleaning liquid spirally flows downward along the surface of the grip part 10b, thereby flushing out the impurities in the grooves of the grip part 10b, which is beneficial to improving the cleaning effect. And after being separated by the spiral coil 205, the cross-sectional size of the cleaning liquid flow channel decreases, while the total amount of the cleaning liquid and the pressure above it remain unchanged, so that the flow rate of the cleaning liquid increases, further improving the cleaning effect on the grip part 10b.
[0046] When flushing the grip part 10b, the cleaning liquid cannot directly impact the contact position between the grip part 10b and the spiral coil 205. At this time, manually pull the lever 2011 backward to compress the annular elastic telescopic rod 2012. The lever 2011 drives the fourth cylinder 9 to rotate, and the fourth cylinder 9 drives the spiral coil 205 to rotate. Since the spiral coil 205 is spiral, the contact position between the spiral coil 205 and the grip part 10b is changed, effectively avoiding the problem of low cleaning effect caused by the cleaning liquid not being able to directly impact the contact position between the grip part 10b and the spiral coil 205.
[0047] Embodiment 2
[0048] On the basis of Embodiment 1, as Figures 1-3 and Figures 8-10 shown, it further includes a collection component; a collection component is connected to the first cylinder 2; the collection component includes a housing 2013, a fourth sealing ring 2014, a second pipe 2015 and a third pipe 2016; the housing 2013 is welded to the upper side of the first cylinder 2 to collect the impurities remaining on the upper side of the first cylinder 2 through the housing 2013; the fourth sealing ring 2014 is fixedly connected to the inner side of the housing 2013; the second pipe 2015 penetrates through one side of the housing 2013; the third pipe 2016 penetrates through the other side of the housing 2013; the lower end of the third pipe 2016 is communicated with and welded to the first cylinder 2.
[0049] The collection component further includes a partition block 2017; two partition blocks 2017 are welded to the inner side of the housing 2013, the partition block 2017 is in contact with the first cylinder 2, and the partition block 2017 is in contact with the third cylinder 4; one of the partition blocks 2017 is aligned with the middle of the second pipe 2015, and the other partition block 2017 is aligned with the middle of the third pipe 2016. The third cavity 93 is separated into two parts by the partition block 2017, so that the liquid gently flows leftward in the circular third cavity 93, avoiding the problem that the liquid backflows and affects the impurity removal.
[0050] First, the external water inlet pipe is manually connected to the second pipe 2015. During the process of inserting the steel pipe into the third cylinder 4, if the position of the steel pipe is not controlled well, the third cylinder 4 is likely to contact with the steel pipe and scrape the impurities on it to the upper side of the third cylinder 4. At this time, the external water inlet pipe transports cleaning liquid to the second pipe 2015. The cleaning liquid flows from the second pipe 2015 into the inner side of the cover 2013 and the fourth sealing ring 2014, and fills the third cavity 93. Then, it flows into the funnel 8 through the third pipe 2016. During this process, the cleaning liquid flushes the impurities on the upper side of the third cylinder 4 into the funnel 8, thereby removing the impurities remaining on the upper side of the third cylinder 4 to avoid residual phenomenon.
[0051] Since the third cavity 93 is annular, during the process of removing impurities from the upper side of the third cylinder 4, the cleaning liquid will drive the impurities to swirl in the third cavity 93, resulting in incomplete cleaning. At this time, the cleaning liquid is divided into two streams by the spacer block 2017, which flow into the front and rear sides of the third cavity 93 respectively, and then flow out from the third pipe 2016, effectively avoiding the problem of incomplete cleaning caused by the cleaning liquid driving the impurities to swirl inside the third cavity 93.
[0052] Implementation 3
[0053] Based on Implementation Plan 2, Figures 1-3 and Figures 11-12 As shown, the filter assembly includes a fifth cylinder 301, a first filter element 302 and a fourth pipe 303; the lower side of the fourth cylinder 9 is connected and plugged with the fifth cylinder 301; the fifth cylinder 301 is plugged with the second cylinder 3; the first filter element 302 is fixedly connected to the inner side of the fifth cylinder 301; the lower side of the fifth cylinder 301 is connected and welded with the fourth pipe 303.
[0054] The filter assembly also includes a second filter element 304; eight second filter elements 304 are fixedly connected to the inner side of the fifth cylinder 301 in a circular array, and the second filter element 304 can be L-shaped or arc-shaped.
[0055] First, the external drain pipe is connected to the fourth pipe 303. The specific operation of the filter component to filter the cleaning liquid in the implementation scheme is: the cleaning liquid drives the impurities to flow from the second cavity 92 into the fifth cylinder 301, and the impurities therein are intercepted by the first filter element 302. The cleaning liquid flows from the fourth pipe 303 to the external drain pipe to complete the filtering operation. After that, the fourth pipe 303 is manually pulled downward to remove the fifth cylinder 301 and the parts thereon, and then the impurities in the fifth cylinder 301 are removed.
[0056] After being guided by the spiral coil 205, the cleaning liquid flows into the fifth cylinder 301 at high speed in a spiral shape, and the impurities on the first filter element 302 will be splashed onto the grip portion 10b. At this time, the second filter element 304 intercepts the spirally flowing cleaning liquid multiple times to decelerate the high-speed flowing cleaning liquid, effectively avoiding the problem that the cleaning liquid splashes the impurities back onto the grip portion 10b.
[0057] The above embodiments are only used to illustrate the technical concept and characteristics of the present invention, and their purpose is to enable those who are familiar with this technology to understand the content of the present invention and implement it accordingly, and cannot be used to limit the protection scope of the present invention. Any equivalent changes or modifications made according to the spirit and essence of the present invention should be covered within the protection scope of the present invention.
Claims
1. An integrated endoscope cleaning device, comprising a first connecting block (1); a first cylinder (2) is fixedly connected to the first connecting block (1); a second cylinder (3) is communicated with the lower side of the first cylinder (2); characterized in that: A third cylinder (4) is fixedly connected to the inner side of the first cylinder (2); the steel pipe portion (10a) of the endoscope body (10) is subjected to a high-speed flushing by means of the third cylinder (4); a plurality of first pipes (5) are provided on the first cylinder (2); all the first pipes (5) are connected to the third cylinder (4); a fixing block (6) is fixedly connected to the lower side of the first cylinder (2) by means of a connecting rod; a first sealing ring (7) is fixedly connected to the upper side of the fixing block (6); a funnel (8) is fixedly connected to the upper side of the second cylinder (3); a fourth cylinder (9) is connected to the lower side of the funnel (8) and is rotatably connected; a gripping portion (10b) of the endoscope body (10) is subjected to a high-speed flushing by means of the fourth cylinder (9); the fourth cylinder (9) is rotatably connected to the second cylinder (3); a filter assembly for filtering waste water is connected to the lower side of the second cylinder (3); It also includes a positioning block (201); two positioning blocks (201) are arranged on the upper side of the fixed block (6); the upper side surfaces of the two positioning blocks (201) are both conical surfaces; It also includes a pulling assembly; the first cylinder (2) is connected to the pulling assembly; the pulling assembly includes a pulling rod (202); the lower side of the first cylinder (2) is slidably connected to two pulling rods (202); the two pulling rods (202) are respectively fixedly connected to corresponding positioning blocks (201); the two pulling rods (202) are each fixedly connected to a shifting block (203) at the opposite ends of the two pulling rods (202), and the shifting block (203) is in contact with the first cylinder (2); two latches (204) are fixedly connected to the outer side of the first cylinder (2); the two shifting blocks (203) are respectively plugged into the corresponding latches (204); It also includes a pressurizing component; the pressurizing component is connected inside the first cylinder (2); the pressurizing component includes a second connecting block (206); the second connecting block (206) is fixedly connected to the upper inner side of the first cylinder (2); the second connecting block (206) is fixedly connected to the third cylinder (4); a multi-stage hydraulic rod (207) is fixedly connected to the second connecting block (206); a push plate (208) is fixedly connected to the telescopic end of the multi-stage hydraulic rod (207); a second sealing ring (209) is fixedly connected to the outer side of the push plate (208); the second sealing ring (209) slides on the inner side of the first cylinder (2); a third sealing ring (2010) is fixedly connected to the inner side of the push plate (208); the third sealing ring (2010) slides on the third cylinder (4); It also includes a toggle assembly; the toggle assembly is connected to the fourth cylinder (9); the toggle assembly includes a toggle rod (2011); the toggle rod (2011) is fixedly connected to the fourth cylinder (9); an annular elastic telescopic rod (2012) is fixedly connected to the inner side of the second cylinder (3); and the telescopic end of the annular elastic telescopic rod (2012) is fixedly connected to the toggle rod (2011).
2. The one-piece endoscope cleaning device according to claim 1, wherein: It also includes a spiral ring (205); the spiral ring (205) is fixedly connected to the inner side of the fourth cylinder (9).
3. The one-piece endoscope cleaning device according to claim 2, wherein: Further included is a collection component; the collection component is connected to the first cylinder (2); the collection component includes a housing (2013); the housing (2013) is fixedly connected to the upper side of the first cylinder (2); a fourth sealing ring (2014) is fixedly connected to the inner side of the housing (2013); a second pipe (2015) penetrates through one side of the housing (2013); a third pipe (2016) penetrates through the other side of the housing (2013); the lower end of the third pipe (2016) communicates with and is fixedly connected to the first cylinder (2).
4. The one-piece endoscope cleaning device according to claim 3, characterized in that: The collection component further includes a partition block (2017); two partition blocks (2017) are fixedly connected to the inner side of the housing (2013), the partition blocks (2017) are in contact with the first cylinder (2), and the partition blocks (2017) are in contact with the third cylinder (4); one of the partition blocks (2017) is aligned with the middle of the second pipe (2015), and the other partition block (2017) is aligned with the middle of the third pipe (2016).
5. An integrated endoscope cleaning device according to any one of claims 1-4, characterized in that: The filtering component includes a fifth cylinder (301); the fifth cylinder (301) communicates with the lower side of the fourth cylinder (9); the fifth cylinder (301) is inserted into the second cylinder (3); a first filtering element (302) is fixedly connected to the inner side of the fifth cylinder (301); the fourth pipe (303) communicates with the lower side of the fifth cylinder (301).
6. The one-piece endoscope cleaning device according to claim 5, characterized in that: The filtering component further includes a second filtering element (304); at least six second filtering elements (304) are fixedly connected to the inner side of the fifth cylinder (301) in an annular array.
Citation Information
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