A teaching aid storage device based on medical images
By designing a teaching aid storage device that includes blowing, cleaning, and static elimination components, the problem of residual bacteria and dust on the film was solved, achieving comprehensive cleaning and drying of the film and ensuring safe use.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-05
- Publication Date
- 2026-04-03
AI Technical Summary
Existing technologies are insufficient to effectively clean residual germs, dirt, and sweat from film, and film easily attracts dust and germs, making it impossible to guarantee safe use.
A teaching aid storage device based on medical imaging was designed, comprising an electric roller, a ring support, a rotating shaft, a storage frame, an electric rotating plate, a blower assembly, an anti-static assembly, and a cleaning assembly. The blower, cleaning, and anti-static assemblies enable comprehensive cleaning and drying of the film.
It eliminates static electricity, removes dirt, and dries the film surface, ensuring the film is clean and safe to use.
Smart Images

Figure CN116803857B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of medical devices, and more particularly to a teaching aid storage device based on medical images. Background Technology
[0002] Although current technology is quite advanced, hospitals still find it difficult to digitize film. While electronic versions exist, hospitals struggle to provide them. One issue is the inability to guarantee the USB drive is virus-free, which could paralyze the hospital's system. Therefore, hospitals do not transmit images to patients via USB drives. Even if images are copied to USB drives, other hospitals lack access to them. Another option is to copy them onto optical discs, which is cumbersome, and other hospitals may not have the equipment to play them. Consequently, doctors still need physical film to view the images.
[0003] Therefore, medical students now need to learn how to view medical films. Since medical students will intern in regular hospitals, they will learn through real patient cases. This requires specialized equipment to preserve the films. After being used and viewed by many people, a large number of germs and sweat will adhere to the films. In addition, static electricity generated by the human body will be transferred to the films, causing the films to attract dirt and dust from the air, which are not easy to remove. Therefore, they need to be cleaned in time to ensure safe use. The existing storage devices ventilate by blowing directly on a certain position on one side of the film, which cannot effectively blow on the entire side, and the other side cannot be ventilated and dried. Summary of the Invention
[0004] To overcome the shortcomings of medical imaging teaching aid storage device, which is difficult to clean due to the large amount of germs, dirt and sweat left on the film after being used and viewed by many people, and the static electricity generated by the human body is transferred to the film, causing the film to attract dirt and dust from the air and making it difficult to remove, the present invention provides a teaching aid storage device.
[0005] The technical solution of this invention is as follows: a teaching aid storage device based on medical imaging, comprising a second outer frame and an electric roller; the electric roller is fixedly connected to the second outer frame; it also includes an annular bracket, a rotating shaft, a second connecting frame, a storage frame, an electric rotating plate, an air inlet pipe, a first air outlet, a second air outlet, a blowing assembly, an anti-static assembly, and a cleaning assembly; the electric roller is fixedly connected to two annular brackets; each of the two annular brackets has several rotating shafts fixedly connected to its side facing the center of the electric roller, and the annular brackets have several air holes; each rotating shaft is rotatably connected to a second connecting frame, and each second connecting frame has an annular air inlet groove, and the air holes of the annular brackets correspond to the annular air inlets. The slots are connected; each annular air inlet slot is fixedly connected to an air inlet pipe; two adjacent second connecting frames on the left and right are jointly fixedly connected to a storage frame; each storage frame is connected to an electric rotating plate, and each electric rotating plate has an empty slot; the air inlet pipe is connected to the empty slot; the electric rotating plate is fixedly connected to several first air outlets; each first air outlet is fixedly connected to a second air outlet, and the first air outlet and the second air outlet are connected; two Y-shaped brackets are respectively provided on the front and rear parts of the second outer frame, and each is connected to a blower assembly for blowing air; a cleaning assembly for cleaning dirt on the film is provided on the right side of the second outer frame; an antistatic assembly for eliminating static electricity on the film is connected to the cleaning assembly.
[0006] Furthermore, the blower assembly includes a vent pipe, an annular pipe, short tubes, and an annular plate; each Y-shaped bracket of the second outer frame has a vent pipe fixed to its left and right sides; both vent pipes of each Y-shaped bracket of the second outer frame are fixed to an annular pipe; several short tubes are fixed to the annular pipe; all the short tubes on the same annular pipe are fixed to an annular plate, and the annular plate has air holes corresponding to the number of short tubes; the annular bracket is in close contact with the adjacent annular plate.
[0007] Furthermore, the storage frame has an S-shaped circulating air groove.
[0008] Furthermore, it also includes guide plates; a guide plate is fixedly attached to the fourth and sixth slots from the front in the circulating air slot.
[0009] Furthermore, it also includes cameras and baffles; each storage box has a camera fixed to the front; and each storage box has two baffles fixed to the left.
[0010] Furthermore, counting from front to back, the first and second air outlets at the first and fourth positions are both designed to be angled towards the center of the storage frame. Counting from back to front, the first and second air outlets at the first and fourth positions are both designed to be angled towards the center of the storage frame.
[0011] Furthermore, each annular support has several vent holes spaced equidistantly in a ring.
[0012] Furthermore, the cleaning assembly includes a first outer frame, a first infrared detector, a second infrared detector, a first connecting plate, a first guide rail, a first moving block, a first push rod, a suction cup, a second connecting plate, a first alcohol tube, a first push plate, a first cleaning block, a third connecting plate, a second cleaning block, a trash can, a second push plate, a second alcohol tube, a fourth connecting plate, a scraper, a first power assembly, a second power assembly, and a support assembly; the first outer frame is fixedly connected to the first infrared detector; the first outer frame is fixedly connected to the second infrared detector; the first outer frame is fixedly connected to two first connecting plates; the upper part of the two first connecting plates is jointly fixedly connected to the first guide rail; the first guide rail is slidably connected to the first moving block; the first moving block is fixedly connected to a first push rod; the telescopic part of the first push rod is fixedly connected to a suction cup; the side of the two first connecting plates near the center of the first outer frame is jointly connected to the first power assembly; the first power assembly is connected to the second connecting plate, each second connecting plate has several first alcohol tanks; each second connecting plate is fixedly connected to a first alcohol tank. The system comprises: a pipe; a first push plate fixedly connected to the front second connecting plate; another first push plate fixedly connected to the rear second connecting plate; a first cleaning block fixedly connected to the lower part of each second connecting plate; a second power assembly connected to the first outer frame; a third connecting plate connected to the second power assembly, each third connecting plate having several second alcohol tanks; a second cleaning block fixedly connected to each third connecting plate; a second alcohol pipe fixedly connected to the right side of each third connecting plate; a trash can fixedly connected to each third connecting plate; a second push plate fixedly connected to the front third connecting plate; another second push plate fixedly connected to the rear third connecting plate; a support assembly connected to both the front and rear third connecting plates; a fourth connecting plate fixedly connected to the upper front and rear sides of the first outer frame; a scraper movably connected to each fourth connecting plate, each scraper having a first protrusion at the upper part and a second protrusion at the lower part; a torsion spring at the connection between the fourth connecting plate and the scraper, the torsion spring being used to drive the scraper to reset.
[0013] Furthermore, the support assembly includes an eighth connecting plate, a spring, a top plate, and a first connecting frame; the eighth connecting plate is fixedly connected to the rear side of the second garbage bin from the front, and the eighth connecting plate has a through groove; the first connecting frame is fixedly connected to the front side of the third garbage bin from the front, and the eighth connecting plate is slidably connected to the first connecting frame; a spring is fixedly connected in the through groove; and the top plate is fixedly connected to the upper end of the spring.
[0014] The working principle of the above embodiment is as follows: Further, the static elimination component includes water pipes and nozzles; several water pipes are fixedly connected to the upper part of the first outer frame; and a nozzle is fixedly connected to the bottom of each water pipe.
[0015] The beneficial effects are: the present invention achieves the elimination of static electricity on the surface of the film; when the film passes under the first infrared detector, the pump connected to the water pipe is started, so that water is sprayed from the nozzle onto the film through the water pipe, causing the film to lose static electricity, thereby causing the dirt and germs attracted by static electricity to adhere to the surface of the film by the water mist.
[0016] This invention achieves the removal of dirt from the upper and lower surfaces of a film. A first power assembly drives two first cleaning blocks to scrape away the dirt from the upper part of the film, and then two scrapers shake the dirt off into the corresponding trash can. A second power assembly drives two second cleaning blocks to scrape away the dirt from the lower part of the film, and then two scrapers shake the dirt off into the corresponding trash can.
[0017] This invention achieves ventilation and drying of the upper and lower surfaces of the film. When the electric rotating plate is reset, the air ejected from the first air outlet blows into the circulating air groove. After rebounding from the bottom of the film, the air flows through the entire bottom of the film via the circulating air groove. The air ejected from the second air outlet blows towards the upper part of the film, drying the alcohol on the upper surface of the film and providing ventilation and drying for the upper part of the film. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the structure of the teaching aid storage device based on medical imaging disclosed in this invention;
[0019] Figure 2 This is a schematic diagram of the first partial structure of the cleaning component and the anti-static component of the medical imaging-based teaching aid storage device of the present invention.
[0020] Figure 3 This is a schematic diagram of the second part of the cleaning component and the anti-static component of the teaching aid storage device based on medical imaging disclosed in this invention;
[0021] Figure 4 This is a schematic diagram of the first partial structure of the cleaning component of the teaching aid storage device based on medical imaging disclosed in this invention;
[0022] Figure 5 This is a schematic diagram of a second part of the cleaning component of the medical imaging-based teaching aid storage device of the present invention;
[0023] Figure 6 This is a schematic diagram of the third part of the cleaning component of the medical imaging-based teaching aid storage device of the present invention;
[0024] Figure 7 This is a schematic diagram of the structure of the second connecting plate disclosed in the medical imaging-based teaching aid storage device of the present invention;
[0025] Figure 8This is a schematic diagram of the third connecting plate of the medical imaging-based teaching aid storage device of the present invention;
[0026] Figure 9 This is a schematic diagram of the fourth part of the cleaning component of the medical imaging-based teaching aid storage device of the present invention;
[0027] Figure 10 This is a schematic diagram of the first partial structure of the teaching aid storage device based on medical imaging disclosed in this invention;
[0028] Figure 11 This is a schematic diagram of the second partial structure of the teaching aid storage device based on medical imaging disclosed in this invention;
[0029] Figure 12 This is a schematic diagram of the third structure of the teaching aid storage device based on medical imaging disclosed in this invention;
[0030] Figure 13 This is a schematic diagram of the fourth structure of the teaching aid storage device based on medical imaging disclosed in this invention;
[0031] Figure 14 This is an exploded view of the annular tube, short tube, annular plate, and annular support disclosed in the present invention, which is a teaching aid storage device based on medical imaging.
[0032] The components in the attached diagram are labeled as follows: 101-First outer frame, 103-First connecting plate, 104-Second guide rail, 105-Second moving block, 106-Fifth connecting plate, 107-Second push rod, 108-Sixth connecting plate, 109-Second connecting plate, 1010-First alcohol tube, 1011-First push plate, 1012-First cleaning block, 1013-First infrared detector, 1014-Second infrared detector, 1015-Third guide rail, 1016-Third moving block, 1017-Seventh connecting plate, 1018-Third push rod, 1019-Third connecting plate, 1020-Second cleaning block, 1021-Trash can, 1022-Second push plate, 1023-Eighth connecting plate, 1024-Spring, 1025-Top plate, 1026-First connecting frame, 1027-Second alcohol tube, 1028-Fourth connecting plate, 1 029-Scraper, 1030-First guide rail, 1031-First moving block, 1032-First push rod, 102-Suction cup, 111-Water pipe, 112-Nozzle, 201-Second outer frame, 202-Ventilation pipe, 203-Annular pipe, 204-Short pipe, 205-Annular plate, 206-Electric roller, 207-Annular bracket, 208-Rotating shaft, 209-Second connecting frame, 2010-Storage frame, 2011 - Camera, 2012- Baffle, 2013- Guide plate, 2014- Electric rotating plate, 2015- Air inlet pipe, 2016- First air outlet, 2017- Second air outlet, 209a- Annular air inlet groove, 2010a- Circulating air groove, 1023a- Through groove, 109a- First alcohol tank, 1019a- Second alcohol tank, 1029a- First protrusion, 1029b- Second protrusion, 2014a- Empty groove. Detailed Implementation
[0033] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings. It is hereby declared that the directional terms such as up, down, left, right, front, back, inside, and outside used in this text are based solely on the accompanying drawings and are not intended to specifically limit the invention.
[0034] Example 1
[0035] A teaching aid storage device based on medical images, such as Figure 1 , Figure 10-14 As shown, it includes a second outer frame 201 and an electric roller 206; the electric roller 206 is fixedly connected to the second outer frame 201.
[0036] It also includes an annular bracket 207, a rotating shaft 208, a second connecting frame 209, a storage frame 2010, an electric rotating plate 2014, an air inlet pipe 2015, a first air outlet 2016, a second air outlet 2017, a blowing assembly, an anti-static assembly, and a cleaning assembly; an annular bracket 207 is fixedly connected to the front and rear of the electric roller 206; at least eight rotating shafts 208 are fixedly connected to the side of each annular bracket 207 facing the center of the electric roller 206, and the annular bracket 207 has at least eight air holes; each rotating shaft 208 is rotatably connected to a second connecting frame 209, each second connecting frame 209 has an annular air inlet groove 209a, and the air holes of the annular bracket 207 communicate with the corresponding annular air inlet groove 209a; an air inlet pipe 2015 is inserted into and communicated with the inner side of each annular air inlet groove 209a; two adjacent left and right sides Each of the second connecting frames 209 is fixedly connected to a storage frame 2010; each storage frame 2010 is rotatably connected to an electric rotating plate 2014 on its right side, and each electric rotating plate 2014 has an empty slot 2014a; an air inlet pipe 2015 is connected to the empty slot 2014a; at least nine first air outlets 2016 are fixedly connected to the bottom of the electric rotating plate 2014; each first air outlet 2016 is fixedly connected to a second air outlet 2017, and the first air outlet 2016 and the second air outlet 2017 are connected, and air is blown onto the film through the first air outlet 2016 and the second air outlet 2017 to dry the water or alcohol at the bottom of the film; a blower assembly is connected to two Y-shaped brackets respectively provided at the front and rear of the second outer frame 201; a cleaning assembly is provided on the right side of the second outer frame 201; an anti-static assembly is connected to the cleaning assembly.
[0037] The blower assembly includes a vent pipe 202, an annular pipe 203, short tubes 204, and an annular plate 205; each Y-shaped bracket of the second outer frame 201 has a vent pipe 202 inserted into and connected to its left and right sides; both vent pipes 202 of each Y-shaped bracket of the second outer frame 201 are inserted into and connected to the annular pipe 203; at least nine short tubes 204 are inserted into and connected to the annular pipe 203; all the short tubes 204 on the same annular pipe 203 are fixedly connected to the annular plate 205, and the annular plate 205 has air holes corresponding to the number of short tubes 204, through which air is introduced into the air holes on the annular bracket 207; the annular bracket 207 is in close contact with the adjacent annular plate 205.
[0038] The storage box 2010 has an S-shaped circulating air groove 2010a. The air ejected from the first air outlet 2016 flows through the circulating air groove 2010a and passes over the entire bottom of the film.
[0039] It also includes a guide plate 2013; a guide plate 2013 is fixedly connected to the fourth and sixth slots from the front in the circulating air tank 2010a; when the film needs to be taken out, the air in the circulating air tank 2010a will be blown upward by the guide plate 2013 for easy taking out.
[0040] It also includes a camera 2011 and a baffle 2012; a camera 2011 is fixedly attached to the front of each storage box 2010; two baffles 2012 are fixedly attached to the left side of each storage box 2010; the camera 2011 detects and adjusts the wind force of the first air outlet 2016 and the second air outlet 2017 according to the leftward movement of the film; the two baffles 2012 prevent the film from flying out from the left side of the storage box 2010 when the first air outlet 2016 and the second air outlet 2017 blow to the left with a strong wind.
[0041] Counting from front to back, the first air outlet 2016 and the second air outlet 2017 at the first and fourth positions are both designed to be angled towards the center of the storage frame 2010. Counting from back to front, the first air outlet 2016 and the second air outlet 2017 at the first and fourth positions are both designed to be angled towards the center of the storage frame 2010. The air ejected at an angle towards the center blows the film toward the center of the storage frame 2010, preventing the film from flying out of the storage frame 2010.
[0042] Each ring-shaped support 207 has several equidistant ventilation holes, allowing air to pass through intermittently. This prevents the air from blowing directly on the film and avoids the film from drying out too much and becoming damaged.
[0043] The working principle of the above embodiment is as follows: When film needs to be stored after manual cleaning, the electric roller 206 rotates, rotating the empty storage frame 2010 to the right. At the same time, the electric rotating plate 2014 rotates upward by ninety degrees, so that the first air outlet 2016 and the second air outlet 2017 face to the left. Then, the pump connected to the vent pipe 202 is started to introduce air into the vent pipe 202, which enters the annular pipe 203. Then, the air enters the short pipe 204 from the annular pipe 203, and then the air is output from the air holes on the annular plate 205 to the air holes on the annular support 207 through the short pipe 204. At this time, the air holes of the annular plate 205 and the annular support 207 are connected. The air vents of the bracket 207 are connected, and then air is introduced through the annular air inlet groove 209a in the second connecting frame 209, and then through the air inlet pipe 2015. Air enters the slot 2014a in the electric rotating plate 2014, and is then ejected from the first air outlet 2016 and the second air outlet 2017. When the film slides down from the top of the electric rotating plate 2014, the air ejected from the first air outlet 2016 and the second air outlet 2017 blows the film to the left. Since water or alcohol may remain on the surface of the film after cleaning, the air ejected from the first air outlet 2016 and the second air outlet 2017 can dry the alcohol and water on the lower surface of the film. This process dries the lower surface of the washed film. As the film falls into the storage frame 2010, the camera 2011 detects this and adjusts the airflow based on the film's leftward movement, ensuring the film is stored at the far left of the storage frame 2010. When the film is stored at the far left of the storage frame 2010, the electric rotating plate 2014 rotates and resets, securing the film in the storage frame 2010 and preventing it from sliding out from the right side. After the electric rotating plate 2014 resets, air from the first air outlet 2016 blows into the circulating air groove 2010a and then bounces off the bottom of the film, allowing air to flow through the circulating air groove 2010a over the entire film. At the bottom, the air ejected from the second air outlet 2017 blows towards the upper part of the film, thereby drying the alcohol or water on the surface of the film, making the surface of the film dry as well. Then, the electric roller 206 drives the two annular supports 207 to rotate in a cycle. When the film needs to be picked up, the person stands on the left side of the annular support 207. When the storage frame 2010 rotates to the upper left, the air hole on the upper left of the annular plate 205 and the ventilation hole on the upper left of the annular support 207 are connected. Air is then introduced into the storage frame 2010, which has rotated to the upper left, through the ventilation hole on the upper left of the annular support 207. This causes the film to be blown up by the air passing through the guide plate 2013, and then it can be picked up.
[0044] Example 2
[0045] Based on Example 1, such as Figure 1-9As shown, the cleaning assembly includes a first outer frame 101, a first infrared detector 1013, a second infrared detector 1014, a first connecting plate 103, a first guide rail 1030, a first moving block 1031, a first push rod 1032, a suction cup 102, a second connecting plate 109, a first alcohol tube 1010, a first push plate 1011, a first cleaning block 1012, a third connecting plate 1019, a second cleaning block 1020, a trash can 1021, a second push plate 1022, a second alcohol tube 1027, a fourth connecting plate 1028, a scraper 1029, a first power assembly, a second power assembly, and a support assembly; the first infrared detector 1013 is fixedly connected to the right side of the first outer frame 101. A second infrared detector 1014 is fixedly connected to the left side of the first outer frame 101; two first connecting plates 103 are fixedly connected to the middle of the upper part of the first outer frame 101; a first guide rail 1030 is fixedly connected to the upper part of the two first connecting plates 103; a first moving block 1031 is slidably connected to the first guide rail 1030; a first push rod 1032 is fixedly connected to the first moving block 1031; a suction cup 102 is fixedly connected to the telescopic part of the first push rod 1032; a first power assembly is connected to the side of the two first connecting plates 103 near the center of the first outer frame 101; the first power assembly is connected to a second connecting plate 109, and the first power assembly drives the two second connecting plates 109 to move. Each of the 9 components has several first alcohol tanks 109a; each second connecting plate 109 is inserted into and connected to a first alcohol tube 1010; a first push plate 1011 is fixedly connected to the front side of the front second connecting plate 109; another first push plate 1011 is fixedly connected to the rear side of the rear second connecting plate 109; a first cleaning block 1012, made of sponge, is fixedly connected to the lower part of each second connecting plate 109; a second power assembly is connected to the bottom of the first outer frame 101; the second power assembly is connected to a third connecting plate 1019, which drives the two third connecting plates 1019 to move, and each third connecting plate 1019 has several second alcohol tanks 1019a. Each third connecting plate 1019 has a second cleaning block 1020 fixedly attached to its upper part, the second cleaning block 1020 being made of sponge; each third connecting plate 1019 has a second alcohol tube 1027 fixedly attached to its right middle side; each third connecting plate 1019 has a trash can 1021 fixedly attached to its front and rear parts; the front of the front third connecting plate 1019 has a second push plate 1022 fixedly attached to its front side; the rear of the rear third connecting plate 1019 has another second push plate 1022 fixedly attached to its rear side; the front and rear third connecting plates 1019 are connected together to a support assembly; the first outer frame 101 has a fourth connecting plate 1028 fixedly attached to its upper front and rear sides;Each fourth connecting plate 1028 is hinged to a scraper 1029. Each scraper 1029 has a first protrusion 1029a on its upper part and a second protrusion 1029b on its lower part. A torsion spring 1024 is provided at the connection between the fourth connecting plate 1028 and the scraper 1029. The torsion spring 1024 is used to drive the scraper 1029 to return to its original position.
[0046] The first power assembly includes a second guide rail 104, a second moving block 105, a fifth connecting plate 106, a second push rod 107, and a sixth connecting plate 108; two first connecting plates 103 are fixedly connected to a second guide rail 104; the second guide rail 104 is slidably connected to two second moving blocks 105; each second moving block 105 is fixedly connected to a fifth connecting plate 106; each fifth connecting plate 106 has a second push rod 107 fixedly connected to its left and right sides; each of the two second push rods 107 has a sixth connecting plate 108 fixedly connected to it; the two sixth connecting plates 108 together... A second connecting plate 109 is fixedly connected to the first outer frame 101; the second power assembly includes a third guide rail 1015, a third moving block 1016, a seventh connecting plate 1017, and a third push rod 1018; the third guide rail 1015 is fixedly connected to the upper part of the first outer frame 101; two third moving blocks 1016 are slidably connected to the third guide rail 1015; each third moving block 1016 is fixedly connected to a seventh connecting plate 1017; two third push rods 1018 are fixedly connected to the seventh connecting plate 1017; the two third push rods 1018 are jointly fixedly connected to a third connecting plate 1019.
[0047] The support assembly includes an eighth connecting plate 1023, a spring 1024, a top plate 1025, and a first connecting frame 1026. The eighth connecting plate 1023 is fixedly connected to the rear side of the second garbage bin 1021 from the front, and the eighth connecting plate 1023 has a through groove 1023a. The first connecting frame 1026 is fixedly connected to the front side of the third garbage bin 1021 from the front. The eighth connecting plate 1023 and the first connecting frame 1026 are slidably connected. The upper surface of the first connecting frame 1026 is made of rubber. After the first connecting frame 1026 moves to the third connecting plate 1019 at the rear, it clamps the rear side of the film. The spring 1024 is fixedly connected in the through groove 1023a. The top plate 1025 is fixedly connected to the upper end of the spring 1024. The upper side of the top plate 1025 is made of rubber. After the top plate 1025 moves to the third connecting plate 1019 at the front, it clamps the front side of the film.
[0048] The working principle of the above embodiment is as follows: When film needs to be stored, the film is inserted from the upper right of the first outer frame 101, so that the film is placed on the upper part of the two third connecting plates 1019. When the film enters, the first infrared detector 1013 will detect the size of the film. Then, the two second moving blocks 105 drive their respective related components to move towards the middle, so that the two second connecting plates 109 come into contact. Then, the two second push rods 107 on each fifth connecting plate 106 push downward, so that the two second connecting plates 109 press the film onto the upper part of the two third connecting plates 1019 and fix it. Then, the pump connected to the rear second alcohol tube 1027 is started, and the alcohol is then pumped through the second alcohol tube on the rear third connecting plate 1019. After the cleaning tank 1019a, the alcohol is sprayed onto the second cleaning block 1020, causing the alcohol to spread throughout the entire rear of the second cleaning block 1020. This causes the rear third moving block 1016 to move the two third push rods 1018 backward, resulting in the rear third connecting plate 1019 moving the second cleaning block 1020 to scrape away dirt from the rear side of the film's lower surface. Since the front of the film is still fixed by the front second connecting plate 109 and third connecting plate 1019, the film does not move with the rear third connecting plate 1019. It then continues to move rearward, causing the surface of the second cleaning block 1020 to be scraped by the scraper 1029, removing dirt from the surface. It then continues to move rearward. This causes the second push plate 1022 at the rear of the third connecting plate 1019 to push the second protrusion 1029b on the scraper 1029, causing the scraper 1029 to bend downwards and hit the inner edge of the garbage bin 1021 behind the rear third connecting plate 1019. This causes the dirt scraped by the scraper 1029 to fall into the garbage bin 1021, preventing dirt from remaining on the scraper 1029. Then, the scraper stops moving backwards. At this time, the rear edge of the film is located on the first connecting frame 1026. After stopping, the rear edge of the film is fixed between the first connecting frame 1026 and the rear second connecting plate 109. Subsequently, the two third push rods 1018 on the front third moving block 1016 retract slightly downwards, causing the front of the film to... The film will not be pressed tightly by the third connecting plate 1019. Subsequently, the front third moving block 1016 drives the relevant components to move towards the center of the film, and crosses the center so that the eighth connecting plate 1023 combines with the first connecting frame 1026, so that the surface of the film not in contact with the second cleaning block 1020 is covered. Then, the pump connected to the front second alcohol tube 1027 is controlled to spray alcohol through several second alcohol tanks 1019a on the front third connecting plate 1019 to the front second cleaning block 1020, so that the alcohol diffuses to the entire second cleaning block 1020. Then, the two third push rods 1018 on the front third moving block 1016 push upward, so that the front third connecting plate 1019 presses the corresponding second cleaning block 1020 tightly against the film.Subsequently, the third moving block 1016 at the front moves the relevant components forward, causing the second cleaning block 1020 to scrape away the dirt on the front of the lower surface of the film. It then continues to move forward, causing the front scraper 1029 to scrape away the dirt on the second cleaning block 1020. It then continues to move forward, causing the second push plate 1022 on the front third connecting plate 1019 to push against the front second protrusion 1029b, causing the front scraper 1029 to bend downwards and impact the inner edge of the trash can 1021 in front of the front third connecting plate 1019. This causes the dirt on the scraper 1029 to fall into the trash can 1021, and then the forward movement stops. At this point, the front edge of the film is above the top plate 1025, thus fixing the front edge of the film between the top plate 1025 and the front second connecting plate 109, preventing the film from losing support and sagging downwards.
[0049] Subsequently, the front third moving block 1016 drives the relevant components to reset towards the center of the film, and then the rear third moving block 1016 drives the relevant components to reset towards the center of the film, so that the two second cleaning blocks 1020 are aligned with the two upper first cleaning blocks 1012. After the reset is completed, the cleaning method of the upper surface of the film is the same as that of the lower surface of the film. The upper surface of the film is cleaned by the first power assembly, the second connecting plate 109, the first alcohol tube 1010, the first push plate 1011 and the first cleaning blocks 1012. After cleaning, the second push rod 107 moves the components to the center of the film. The components are pulled upwards, and then the second moving block 105 drives the relevant components to move to the front and rear edges of the first outer frame 101 and stop, completing the cleaning operation. Then the first push rod 1032 drives the suction cup 102 to move downwards, so that the suction cup 102 contacts and holds the film. Then the first moving block 1031 drives the first push rod 1032 to move to the left, so that the film is driven to the left by the suction cup 102. When the second infrared detector detects the film, the suction cup 102 is released, so that the film slides into the storage frame 2010 that rotates to the right, thus completing the storage of the film.
[0050] Example 3
[0051] Based on Example 2, such as Figure 1-3 As shown, the antistatic assembly includes a water pipe 111 and a nozzle 112; at least two water pipes 111 are inserted into and connected to the upper left and upper right parts of the first outer frame 101; a nozzle 112 is fixedly connected to the bottom of each water pipe 111.
[0052] The working principle of the above embodiment is as follows: when the film passes under the first infrared detector 1013, the pump connected to the water pipe 111 is started, so that water is sprayed out from the nozzle 112 through the water pipe 111 onto the film, causing the film to lose static electricity, and thus the dirt and germs attracted by static electricity are adhered to the surface of the film by the water mist.
[0053] The above embodiments are merely preferred embodiments of the present invention and are not intended to limit the scope of the present invention. Therefore, all equivalent changes made to the content described in the claims of the present invention should be included within the scope of the claims of the present invention.
Claims
1. A teaching aid storage device based on medical images, comprising a second outer frame (201) and an electric roller (206); the electric roller (206) is fixedly connected to the second outer frame (201); characterized in that: It also includes an annular bracket (207), a rotating shaft (208), a second connecting frame (209), a storage frame (2010), an electric rotating plate (2014), an air inlet pipe (2015), a first air outlet (2016), a second air outlet (2017), a blowing assembly, an anti-static assembly, and a cleaning assembly; the electric roller (206) is fixedly connected to two annular brackets (207); each of the two annular brackets (207) has several rotating shafts (208) fixedly connected to the side facing the center of the electric roller (206), and the annular brackets (207) have several air holes; each rotating shaft (208) is rotatably connected to a second connecting frame (209), each second connecting frame (209) has an annular air inlet groove (209a), and the air holes of the annular brackets (207) are connected to the corresponding annular air inlet groove (209a); each annular air inlet groove (209a) is fixedly connected to an air inlet pipe. (2015); two adjacent second connecting frames (209) are fixed together to a storage frame (2010); each storage frame (2010) is connected to an electric rotating plate (2014), and each electric rotating plate (2014) has an empty slot (2014a); the air inlet pipe (2015) is connected to the empty slot (2014a); the electric rotating plate (2014) is fixedly connected to several first air outlets (2016); each first air outlet (2016) is fixedly connected to a second air outlet (2017), and the first air outlet (2016) and the second air outlet (2017) are connected; the front and rear parts of the second outer frame (201) are respectively provided with two Y-shaped brackets, each connected to a blower assembly for blowing air; the right side of the second outer frame (201) is provided with a cleaning assembly for cleaning dirt on the film; the cleaning assembly is connected to an antistatic assembly for eliminating static electricity on the film.
2. The teaching aid storage device based on medical images according to claim 1, characterized in that: The blower assembly includes a vent pipe (202), an annular pipe (203), short tubes (204), and an annular plate (205); each Y-shaped bracket of the second outer frame (201) has a vent pipe (202) fixedly connected to its left and right sides; both vent pipes (202) of each Y-shaped bracket of the second outer frame (201) are fixedly connected to an annular pipe (203); several short tubes (204) are fixedly connected to the annular pipe (203); all the short tubes (204) on the same annular pipe (203) are fixedly connected to an annular plate (205), and the annular plate (205) has air holes corresponding to the number of short tubes (204); the annular bracket (207) is in close contact with the adjacent annular plate (205).
3. The teaching aid storage device based on medical images according to claim 1, characterized in that: The storage box (2010) has an S-shaped circulating air trough (2010a).
4. The teaching aid storage device based on medical images according to claim 3, characterized in that: It also includes guide plates (2013); a guide plate (2013) is fixedly attached to the fourth and sixth slots from the front in the circulating air slot (2010a).
5. The teaching aid storage device based on medical images according to claim 4, characterized in that: It also includes a camera (2011) and a baffle (2012); a camera (2011) is fixed to the front of each storage box (2010); and two baffles (2012) are fixed to the left side of each storage box (2010).
6. The teaching aid storage device based on medical images according to claim 5, characterized in that: Counting from front to back, the first air outlet (2016) and the second air outlet (2017) at the first and fourth positions are both set at the center of the inclined storage frame (2010). Counting from back to front, the first air outlet (2016) and the second air outlet (2017) at the first and fourth positions are both set at the center of the inclined storage frame (2010).
7. A teaching aid storage device based on medical imaging according to claim 2, characterized in that: Each annular support (207) has several vent holes at equal intervals in a ring.
8. The teaching aid storage device based on medical images according to claim 7, characterized in that: The cleaning assembly includes a first outer frame (101), a first infrared detector (1013), a second infrared detector (1014), a first connecting plate (103), a first guide rail (1030), a first moving block (1031), a first push rod (1032), a suction cup (102), a second connecting plate (109), a first alcohol tube (1010), a first push plate (1011), a first cleaning block (1012), a third connecting plate (1019), a second cleaning block (1020), a trash can (1021), a second push plate (1022), a second alcohol tube (1027), a fourth connecting plate (1028), a scraper (1029), a first power assembly, and a second power assembly. The components and support assembly; a first infrared detector (1013) is fixedly connected to the first outer frame (101); a second infrared detector (1014) is fixedly connected to the first outer frame (101); two first connecting plates (103) are fixedly connected to the first outer frame (101); a first guide rail (1030) is fixedly connected to the upper part of the two first connecting plates (103); a first moving block (1031) is slidably connected to the first guide rail (1030); a first push rod (1032) is fixedly connected to the first moving block (1031); a suction cup (102) is fixedly connected to the telescopic part of the first push rod (1032); a first power source is connected to the side of the two first connecting plates (103) near the center of the first outer frame (101). The components include: a first power assembly connected to a second connecting plate (109), each second connecting plate (109) having several first alcohol tanks (109a); each second connecting plate (109) having a first alcohol pipe (1010) fixedly connected to it; a first push plate (1011) fixedly connected to the front second connecting plate (109); another first push plate (1011) fixedly connected to the rear second connecting plate (109); a first cleaning block (1012) fixedly connected to the lower part of each second connecting plate (109); a first outer frame (101) connected to the second power assembly; the second power assembly connected to a third connecting plate (1019), each third connecting plate (1019) having several second alcohol tanks. (1019a); each third connecting plate (1019) is fixedly connected to a second cleaning block (1020); each third connecting plate (1019) is fixedly connected to the right side of a second alcohol tube (1027); each third connecting plate (1019) is fixedly connected to a trash can (1021); the front third connecting plate (1019) is fixedly connected to a second push plate (1022); the rear third connecting plate (1019) is fixedly connected to another second push plate (1022); the front third connecting plate (1019) and the rear third connecting plate (1019) are connected together to a support assembly; a fourth connecting plate (1028) is fixedly connected to the front and rear sides of the upper part of the first outer frame (101).Each fourth connecting plate (1028) is movably connected to a scraper (1029). Each scraper (1029) has a first protrusion (1029a) on its upper part and a second protrusion (1029b) on its lower part. A torsion spring (1024) is provided at the connection between the fourth connecting plate (1028) and the scraper (1029). The torsion spring (1024) is used to drive the scraper (1029) to reset.
9. A teaching aid storage device based on medical images according to claim 8, characterized in that: The support assembly includes an eighth connecting plate (1023), a spring (1024), a top plate (1025), and a first connecting frame (1026); the eighth connecting plate (1023) is fixedly connected to the rear side of the second garbage bin (1021) from the front, and the eighth connecting plate (1023) has a through groove (1023a); the first connecting frame (1026) is fixedly connected to the front side of the third garbage bin (1021) from the front, and the eighth connecting plate (1023) is slidably connected to the first connecting frame (1026); the spring (1024) is fixedly connected in the through groove (1023a); the top plate (1025) is fixedly connected to the upper end of the spring (1024).
10. A teaching aid storage device based on medical images according to claim 9, characterized in that: The static elimination assembly includes water pipes (111) and nozzles (112); several water pipes (111) are fixedly connected to the upper part of the first outer frame (101); and a nozzle (112) is fixedly connected to the bottom of each water pipe (111).
Citation Information
Patent Citations
Medical image film storage device
CN108502318A
Medical image film storage device
CN112056812A