Medical garbage recycling device for emergency department
By introducing a separation zone, a disinfection structure, and a pushing structure into the emergency department's medical waste recycling device, the problem of bacterial growth and infection caused by residual liquid in hard waste has been solved, achieving efficient waste treatment and disinfection and reducing resource waste.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-29
- Publication Date
- 2026-04-14
AI Technical Summary
In existing emergency department medical waste recycling devices, the liquid residue left after crushing hard waste may lead to bacterial growth, and long-term storage of waste can easily lead to bacterial infection.
A waste recycling device is designed, comprising an outer shell, a connecting plate, an inner box, first and second disinfection structures, a partition structure, a pushing structure, and a cover plate. The device stores and disinfects waste in separate areas through the partition, disinfection, and pushing structures, reducing the user's contact with long-term stored waste, and improves disinfection efficiency through a vibration structure.
It effectively reduces the possibility of bacterial transmission, improves disinfection efficiency, saves resources, reduces the risk of long-term waste storage, and achieves efficient waste treatment and reuse.
Smart Images

Figure CN224118031U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to an emergency department medical waste recycling device, belonging to the field of medical device technology. Background Technology
[0002] The Department of Emergency Medicine is the department in the hospital with the highest concentration of critically ill patients, the most types of diseases, and the heaviest rescue and management tasks. It is the only way for all emergency patients to be admitted for treatment.
[0003] Medical waste refers to the general term for waste generated by units related to health and medical care, such as hospitals, clinics, health and epidemic prevention, and healthcare. This waste contains a large amount of infectious waste, pathological waste, pharmaceutical waste, sharps waste, and chemical waste. The hazards of medical waste have attracted great attention from countries around the world, and there are strict and clear regulations for each stage of medical waste treatment. At present, the main methods for treating medical waste include incineration, high-pressure sterilization, chemical treatment, microwave radiation, high-temperature decomposition plasma, and electric arc furnace.
[0004] Most existing waste recycling systems have the following drawbacks:
[0005] 1. Garbage bags need to be replaced; using garbage bags only once results in waste.
[0006] 2. When waste remains in the recycling device for a long time, it breeds more germs. Patients and medical staff need to repeatedly open the same recycling compartment, which can easily lead to bacterial transmission.
[0007] Therefore, there is a need for an emergency department medical waste recycling device that can be partitioned to prevent bacterial transmission.
[0008] Chinese Patent Application No. 202022917061.8, entitled "Emergency Department Medical Waste Recycling Device," discloses an emergency department medical waste recycling device, including a bin, a placement plate, a partition, mounting holes, a discharge hole, a discharge sleeve, a drive mechanism, a linkage mechanism, a crushing mechanism, a timer, a lithium battery, a sealing plate, and a sealing door. This emergency department medical waste recycling device can crush hard material waste, thereby preventing large hard material waste from occupying a large amount of internal space of the recycling device. Therefore, by using the device in this application, the internal space of the recycling device is saved, thus improving the efficiency of the recycling device.
[0009] In this application, the hard waste that is crushed may remain in the recycling device for a long time, which may lead to bacterial growth. In addition, the space-saving process of crushing the waste still requires the continued disposal of waste inside the device, which may easily lead to bacterial infection. Utility Model Content
[0010] The technical problem to be solved by this utility model is that hard waste contains residual liquid waste, and the residual liquid after the hard waste is crushed may cause bacteria to grow if it remains in the recycling device for a long time.
[0011] To address the aforementioned technical problems, an emergency department medical waste recycling device is proposed; it is achieved through the following technical solution:
[0012] The device includes an outer shell, a connecting plate, a top plate, an inner box, a first disinfection structure, a second disinfection structure, a partition structure, a pushing structure, and a cover structure. The connecting plate is connected inside the outer shell, and the inner box is snapped onto the connecting plate. The inner box is divided into a first recycling area and a second recycling area by the partition structure. The first disinfection structure is provided on the inner side wall of the outer shell corresponding to the first recycling area, and the second disinfection structure is provided on the inner side wall of the second recycling area. The pushing structure is installed on the side wall of the first recycling area to push the waste in the first recycling area to the second recycling area. The top plate is fixedly connected to the top of the outer shell, and the height-adjustable cover structure is connected below the top plate. A first sealing door is provided on the front surface of the outer shell.
[0013] When the waste collection device is not in use, the cover structure covers the top of the inner bin. When waste needs to be disposed of, the cover body above the first collection area rises, and after the waste is thrown into the first collection area, the cover body descends to its initial position. When waste needs to be processed, the first disinfection structure is activated to disinfect the waste in the first collection area. After disinfection, the cover body descends and squeezes the waste. After squeezing, the cover body rises, the partition structure rises, and the pushing structure pushes the waste into the second collection area. The partition structure closes, and the cover body above the second collection area does not move, activating the sealing function. At this time, waste can continue to be disposed of in the first collection area, reducing the possibility of bacterial transmission. When waste is collected, the first disinfection structure disinfects the waste in the first collection area again, and the second disinfection structure disinfects the compressed waste in the second collection area a second time before lifting the entire cover structure and directly replacing the inner bin. The inner bin can be reused after processing.
[0014] In a preferred embodiment of the present invention, a vibration structure is connected to a connecting plate inside the outer shell. One end of the vibration structure is fixedly connected to the connecting plate, and the other end of the vibration structure is fixedly connected to the base inside the outer shell. The vibration structure includes a vibration motor, an eccentric wheel, a spring, and a limiting telescopic rod. The vibration motor is fixedly installed on the bottom surface inside the outer shell, and the output end of the vibration motor is connected to the eccentric wheel. The lower end of the limiting telescopic rod, which is fitted with a spring, is fixedly connected to the bottom surface inside the outer shell, and the top ends of the spring and the limiting telescopic rod are fixedly connected to the lower surface of the connecting plate. The vibration structure, along with the first and second disinfection structures, simultaneously activates to vibrate the waste inside the inner box, thereby improving the disinfection efficiency of the waste inside the inner box.
[0015] In a preferred embodiment of the present invention, a limiting groove is provided on the connecting plate, and a limiting block is provided below the inner box. The limiting block is installed in the limiting groove to limit the position of the inner box. The inner box can slide out of the outer shell along the limiting groove, making it convenient to replace the inner box for disinfection and cleaning.
[0016] In a preferred embodiment of the present invention, the partition structure includes a fixed frame, an adjusting structure, and a partition block. The fixed frame is fixedly installed in the middle of the inner box, and the partition block is connected to the fixed frame through the adjusting structure. The adjusting structure is used to adjust the position of the partition block to separate the first recycling area and the second recycling area, thereby reducing the possibility of users coming into contact with long-term stored garbage when disposing of garbage.
[0017] In a preferred embodiment of the present invention, the adjustment structure consists of two third electric push rods, which are respectively installed at both ends of the fixed frame. The upper end of each third electric push rod is fixedly connected to a separator block, which controls the up-and-down movement of the separator block to control the connection and separation between the first and second recycling areas.
[0018] In a preferred embodiment of the present invention, the pushing structure includes two telescopic cylinders and a push plate. A limiting groove is provided on the side of the first recycling area inside the inner box. The two telescopic cylinders are fixedly installed in the limiting groove. The end of the telescopic cylinder away from the limiting groove is fixedly connected to the push plate. The push plate is driven to push the waste in the first recycling area to the second recycling area for storage. The telescopic cylinder pushes the push plate to move left and right, thus pushing the waste.
[0019] In a preferred embodiment of the present invention, a first mounting groove and a second mounting groove are respectively provided on the inner side walls of the outer shell corresponding to the first recycling area and the second recycling area. A first disinfection structure is installed in the first mounting groove, and a second disinfection structure is provided in the second mounting groove, so as to disinfect the waste inside the first recycling area and the second recycling area respectively. A fixing groove is respectively provided on the side walls of the first recycling area and the second recycling area corresponding to the first mounting groove and the second mounting groove. A barrier net is provided on the two fixing grooves to prevent the internal waste from falling into the outer shell from the fixing groove. A second sealing door is provided on the front of the inner box corresponding to the first recycling area and the second recycling area respectively to prevent the waste inside the inner box from leaking out.
[0020] In a preferred embodiment of the present invention, the first disinfection structure and the second disinfection structure are identical, including a second power supply and an ultraviolet lamp. The ultraviolet lamp is installed in the second mounting slot corresponding to the second recycling area, and the second power supply is installed at the corresponding position on the side wall of the outer casing. The output shaft of the second power supply is connected to the ultraviolet lamp to disinfect the waste inside the first recycling area.
[0021] In a preferred embodiment of the present invention, the cover structure includes two sets of second electric push rods and a cover body. The cover body is connected to the top plate via the second electric push rods. The second electric push rods control the cover body to seal the inner box or squeeze the garbage. The second electric push rods stretch the cover body to the top of the inner box to achieve sealing of the inner box. The extension of the second electric push rods pushes the cover body to squeeze the garbage in the inner box to save space.
[0022] The advantages of this utility model compared with the prior art are:
[0023] 1. By separating the inner box into a first recycling area and a second recycling area, and by periodically pushing the waste stored in the first recycling area to the second recycling area through a push mechanism, the possibility of users coming into contact with long-term stored waste in the first recycling area is reduced;
[0024] 2. The two disinfection structures, namely the first disinfection structure and the first disinfection structure, disinfect the garbage, which improves the disinfection efficiency of the device and reduces the possibility of bacteria and viruses causing harm to garbage collection personnel.
[0025] 3. The vibration structure causes the waste in the inner chamber to vibrate, improving the drying efficiency and the disinfection efficiency of the first disinfection structure;
[0026] 4. Waste collectors can clean up the processed waste by opening the first sealed door and the second sealed door corresponding to the second recycling area, reducing the possibility of waste being left for a long time and breeding bacteria that may be exposed to waste collectors.
[0027] 5. The inner box can be replaced, disinfected separately, and reused to reduce resource waste. Attached Figure Description
[0028] Figure 1 The figure shown is a three-dimensional structural diagram of an emergency department medical waste recycling device according to this utility model. Figure 1 ;
[0029] Figure 2 The figure shown is a three-dimensional structural diagram of an emergency department medical waste recycling device according to this utility model. Figure 2 ;
[0030] Figure 3 The diagram shown is a schematic representation of the internal structure of an emergency department medical waste recycling device according to this utility model.
[0031] Figure 4 The diagram shown is a schematic representation of the internal structure of the outer shell of an emergency department medical waste recycling device according to this utility model. Figure 1 ;
[0032] Figure 5 The diagram shown is a schematic representation of the internal structure of the outer shell of an emergency department medical waste recycling device according to this utility model. Figure 2 ;
[0033] Figure 6 The diagram shown is a schematic of the inner box structure of an emergency department medical waste recycling device according to this utility model;
[0034] Figure 7 The diagram shown is a schematic diagram of the internal structure of the inner box of an emergency department medical waste recycling device according to this utility model.
[0035] Explanation of reference numerals in the attached drawings: 1. Outer shell; 2. Vibration structure; 201. Vibration motor; 202. Eccentric wheel; 203. Spring; 204. Limiting telescopic rod; 3. Connecting plate; 4. Inner box; 5. Support rod; 6. Top plate; 7. Second electric push rod; 8. Cover plate structure; 81. Cover plate body; 9. First sealing door; 10. First mounting groove; 11. Second mounting groove; 12. First disinfection structure; 14. Second disinfection structure; 141. Second power supply; 142. Ultraviolet lamp; 16. Barrier net; 17. Separation structure; 171. Fixing frame; 172. Adjustment structure; 173. Separating block; 18. First recycling area; 19. Second recycling area; 20. Pushing structure; 211. Telescopic cylinder; 212. Push plate; 21. Limiting groove; 22. Limiting block; 23. Fixing groove; 24. Second sealing door. Detailed Implementation
[0036] The following will refer to the appendix in the embodiments of this utility model. Figures 1-7 The technical solutions in the embodiments of this utility model will be described in detail below. Example 1
[0037] like Figure 1 , 2 As shown in Figure 3, an emergency department medical waste recycling device includes an outer shell 1, a connecting plate 3, a top plate 6, a vibration structure 2, an inner box 4, a first disinfection structure 12, a second disinfection structure 14, a partition structure 17, a pushing structure 20, and a cover plate structure 8.
[0038] The outer shell 1 is a rectangular stainless steel metal shell with an internal space for installing the inner box 4. The top is not sealed and the top plate 6 is fixedly installed by the support rod 5. The front surface of the outer shell 1 is provided with a first sealing door 9 for easy removal of the inner box 4. Support rods are welded to the four corners of the upper surface of the outer shell 1, and the top plate 6 is welded to the upper end of the support rods.
[0039] A vibration structure 2 is fixedly connected to the bottom surface inside the outer shell 1. The upper end of the vibration structure 2 is fixedly connected to the lower surface of the connecting plate 3. The vibration structure 2 is used to vibrate the garbage in the inner box 4, so that the garbage is dispersed and the disinfection efficiency is improved.
[0040] The partition structure 17 divides the interior of the inner box 4 into a first recycling area 18 and a second recycling area 19. Waste that has been stored for a long time is stored in the second recycling area 19, while newly stored waste is stored in the first recycling area 18, reducing the possibility of bacteria from long-term waste accumulation causing infection to users.
[0041] The first disinfection structure 12 and the second disinfection structure 14 are disposed on the inner side of the outer shell 1 corresponding to the first recycling area 18 and the second recycling area 19, respectively, to disinfect the waste inside the first recycling area 18 and the second recycling area 19, thereby improving the disinfection efficiency.
[0042] The push structure 20 moves the garbage from the first recycling zone 18 to the second recycling zone 19, preventing people from throwing away garbage from coming into contact with long-term piled-up garbage in the first recycling zone 18 and causing germ infection.
[0043] Regarding the control of the pushing structure 20 to push the waste from the first recycling area 18 to the second recycling area 19: This embodiment adopts timed pushing. In this embodiment, it is preferred to set the pushing structure 20 to push once every half hour. The control principle is to use a timer to control the extension and retraction of two electric telescopic cylinders 211 to achieve the control of the pushing structure 20 to push once every half hour. Using a timer to control the operation of the telescopic cylinders 211 is existing technology, which is well known to those skilled in the art and can be used directly.
[0044] When the cover structure 8 is on top of the inner box 4, it serves to seal and isolate the garbage inside the inner box 4. When the cover structure 8 moves to the inner box 4, it squeezes the garbage inside to save time.
[0045] like Figure 4 As shown, the vibration structure 2 includes a vibration motor 201, an eccentric wheel 202, a spring 203, and a limiting telescopic rod 204. The vibration motor 201 is fixedly installed on the bottom surface inside the outer casing 1 by screws. The output end of the vibration motor 201 is connected to the eccentric wheel 202. The vibration motor 201 drives the eccentric wheel 202 to rotate. When the area of the eccentric wheel 202 above the output shaft of the vibration motor 201 is greater than the area below the output shaft of the vibration motor 201, the eccentric wheel 202 lifts the connecting plate 3. When the eccentric wheel 202 descends, the spring 203 exerts a downward pulling force on the connecting plate 3.
[0046] The lower ends of spring 203 and limiting telescopic rod 204 are welded to the inner bottom surface of outer shell 1, and the top ends of spring 203 and limiting telescopic rod 204 are welded to the lower surface of connecting plate 3. The limiting telescopic rod 204 prevents the connecting plate 3 from horizontal displacement during vibration, drives the inner box 4 to vibrate, increases the contact area between garbage and disinfectant, and improves the disinfection and drying efficiency of garbage inside the inner box 4.
[0047] The connecting plate 3 is provided with an inverted T-shaped limiting groove 21, and the inner box 4 is provided with a limiting block 22 below it. The limiting block 22 is installed in the limiting groove 21 to limit the position of the inner box 4 and prevent horizontal displacement during vibration. The inner box 4 can slide out of the outer shell 1 along the limiting groove 21, making it convenient to replace the inner box 4 for disinfection and cleaning.
[0048] like Figures 1-4 As shown, the cover structure 8 includes two second electric push rods 7 and two cover bodies 81. Two second electric push rods 7 are welded to the lower surface of the top plate 6. The lower end of each second electric push rod 7 is connected to the cover body 81 by screws. The second electric push rods 7 are used to adjust the height of the cover body 81. When garbage needs to be disposed of, the second electric push rods 7 retract, exposing the disposal opening of the inner box 4. Normally, the second electric push rods 7 control the cover body 81 to just cover the disposal opening of the inner box 4. When the inner box 4 is almost full, the second electric push rods 7 extend to squeeze the garbage inside, reducing the space occupied by the garbage. When processing the garbage inside, the second electric push rods extend to crush the container.
[0049] Two second electric push rods 7 are respectively set above the first recycling area 18 and the second recycling area 19. Under normal circumstances, the user only opens the cover structure 8 corresponding to the first recycling area 18 to throw away the garbage. When the inner box needs to be disassembled, the two cover bodies 81 are opened at the same time.
[0050] The inner two side walls of the outer casing 1 are respectively provided with a first mounting groove 10 and a second mounting groove 11. The first disinfection structure 14 and the second disinfection structure 12 for disinfecting garbage are fixedly installed in the first mounting groove 100 and the second mounting groove 11 by screws.
[0051] like Figure 4 As shown, a second disinfection structure 14 is provided in the second mounting slot 11. The first disinfection structure 14 includes a second power supply 141 and an ultraviolet lamp 142. The two ends of the ultraviolet lamp 142 are installed on the two side walls of the second mounting slot 11 corresponding to the second recycling area 19 by screws. The second power supply 141 is installed on the side wall of the outer casing 1 at the position corresponding to the second mounting slot 11. The output shaft of the second power supply 141 passes through the outer casing 1 and connects to the ultraviolet lamp 142. The ultraviolet lamp 142 performs secondary disinfection on the waste.
[0052] The first disinfection structure 12 is fixedly installed in the first installation slot 10, and the installation method is the same as that of the second disinfection structure 14.
[0053] like Figure 7 As shown, the inner box 4 has a barrier net 16 on each side wall corresponding to the first mounting groove 10 and the second mounting groove 11, and a fixing groove 23 on each side wall corresponding to the first mounting groove 10 and the second mounting groove 11. The barrier net 16 is fixedly installed in the fixing groove 23 by screws. The barrier net 16 can be replaced by removing the screws.
[0054] An adjustable partition structure 17 is provided in the middle of the inner box 4 to divide the interior of the inner box 4 into a first recycling area 18 and a second recycling area 19. The partition structure 17 includes a fixing frame 171, an adjusting structure 172 and a partition block 173. The fixing frame 171 is welded to the middle of the inner box 4. The fixing frame 171 is a stainless steel frame with an inverted L-shaped cross section and a slot in the middle. The partition block 173 is installed in the slot. The adjusting structure 172 is welded to both ends of the upper surface of the fixing frame 171. The partition block 173 is welded to the upper end of the adjusting structure 172. The adjusting structure 172 is used to adjust the height of the partition block 173 to separate the first recycling area 18 and the second recycling area 19. People who throw away garbage only need to open the first recycling area 18 to reduce the possibility of contact with garbage that has been stored in the second recycling area 19 for a longer period of time.
[0055] The adjustment structure 172 consists of two third electric push rods. The two third electric push rods are welded to both ends of the fixing frame 171, and the upper end of the third electric push rods is welded to the partition block 173 to control the up and down movement of the partition block 173.
[0056] like Figure 3 As shown, the first recycling area 18 corresponds to the first mounting slot 10. The ultraviolet lamp 142 of the first disinfection structure 12 in the first mounting slot 10 disinfects the inside of the first recycling area 18. The second recycling area 19 corresponds to the second mounting slot 11. The ultraviolet lamp 142 of the second disinfection structure 14 disinfects the waste inside the inner box 4.
[0057] like Figure 7 As shown, the first recycling area 18 is provided with a pushing structure 20, which includes two electric telescopic cylinders 211 and a push plate 212. The bottom side of the first recycling area 18 inside the inner box 4 is provided with a limiting groove 21. The two telescopic cylinders 211 are welded in the limiting groove 21. The end of the telescopic cylinder 211 away from the limiting groove 21 is fixedly connected to the push plate 212 by screws. When not pushing the waste, the push plate 212 retracts into the limiting groove 21 and is flush with the inner side wall of the inner box 4. When pushing the waste, the telescopic cylinder 211 pushes the push plate 212 to move towards the second recycling area 19. Then the telescopic cylinder 211 retracts, driving the push plate 212 back into the limiting groove 21.
[0058] In this embodiment, the two telescopic cylinders 211 work once every half hour, extending to push the push plate 212 to push the garbage in the first recycling area 18.
[0059] The usage process of this embodiment:
[0060] When the waste recycling device is not in use, the cover plate 8 covers the top of the inner container 4. When waste needs to be disposed of, the cover plate 8 above the first recycling area 18 rises, and after the waste is thrown into the first recycling area 18, the cover plate 8 lowers to its initial position. When waste needs to be processed, the vibration structure 2 and the first disinfection structure 14 are activated simultaneously to disinfect the waste in the first recycling area 18. The vibration structure 2 separates the waste by vibration, improving disinfection efficiency. After disinfection, the cover plate 8 lowers and squeezes the waste. After squeezing, the cover plate 8 lifts up. This process is repeated every half hour. When the partition structure 17 is lifted, the pushing structure 20 pushes the garbage into the second recycling area 19. The partition structure 17 is closed, and the cover plate 8 above the second recycling area 19 does not move, thus activating the sealing function. At this time, the first recycling area 18 can continue to throw garbage in, reducing the possibility of bacterial transmission. When garbage is recycled, the first disinfection structure 12 disinfects the garbage in the first recycling area 18 again, and the second disinfection structure 14 disinfects the compacted garbage in the second recycling area 19 a second time before lifting the entire cover plate 8 structure and directly replacing the inner box 4. The inner box 4 can be reused after processing.
[0061] The above embodiments are only for illustrating the technical concept of this utility model and should not be construed as limiting the scope of protection of this utility model. Any modifications made to the technical solution based on the technical concept proposed by this utility model shall fall within the scope of protection of this utility model.
Claims
1. An emergency department medical waste recycling device, characterized in that: The device includes an outer shell (1), a connecting plate (3), a top plate (6), an inner box (4), a first disinfection structure (12), a second disinfection structure (14), a partition structure (17), a pushing structure (20), and a cover structure (8). The connecting plate (3) is connected inside the outer shell (1), and the inner box (4) is snapped onto the connecting plate (3). The inner box (4) is divided into a first recycling area (18) and a second recycling area (19) by the partition structure (17). The inner side wall of the outer shell (1) is provided with a first disinfection structure (12) corresponding to the first recycling area (18) and a second disinfection structure (14) corresponding to the second recycling area (19). The pushing structure (20) is installed on the side wall of the first recycling area (18) to push the garbage in the first recycling area (18) to the second recycling area (19). The top plate (6) is fixedly connected to the top of the outer shell (1), and the height-adjustable cover structure (8) is connected below the top plate (6). The front surface of the outer shell (1) is provided with a first sealing door (9).
2. The emergency department medical waste recycling device according to claim 1, characterized in that: The outer shell (1) is connected to the connecting plate (3) through the vibration structure (2). One end of the vibration structure (2) is fixedly connected to the connecting plate (3), and the other end of the vibration structure (2) is fixedly connected to the base inside the outer shell (1). The vibration structure (2) includes a vibration motor (201), an eccentric wheel (202), a spring (203), and a limiting telescopic rod (204). The vibration motor (201) is fixedly installed on the bottom surface inside the outer shell (1). The output end of the vibration motor (201) is connected to the eccentric wheel (202). The lower end of the limiting telescopic rod (204) fitted with the spring (203) is fixedly connected to the bottom surface inside the outer shell (1). The top ends of the spring (203) and the limiting telescopic rod (204) are fixedly connected to the lower surface of the connecting plate (3). The vibration structure (2) disrupts the garbage inside the inner box (4) to improve the disinfection efficiency.
3. The emergency department medical waste recycling device according to claim 1, characterized in that: A limiting groove (21) is provided on the connecting plate (3), and a limiting block (22) is provided below the inner box (4). The limiting block (22) is installed in the limiting groove (21) to limit the position of the inner box (4).
4. The emergency department medical waste recycling device according to claim 1, characterized in that: The partition structure (17) includes a fixed frame (171), an adjustment structure (172), and a partition block (173). The fixed frame (171) is fixedly installed in the middle of the inner box (4). The partition block (173) is connected to the fixed frame (171) through the adjustment structure (172). The adjustment structure (172) is used to adjust the height of the partition block (173).
5. The emergency department medical waste recycling device according to claim 4, characterized in that: The adjustment structure (172) includes two third electric push rods, which are respectively installed at both ends of the fixed frame (171). The upper end of the third electric push rod is fixedly connected to the partition block (173), and the partition block (173) is installed on the fixed frame (171).
6. The emergency department medical waste recycling device according to claim 1, characterized in that: The pushing structure (20) includes two telescopic cylinders (211) and a push plate (212). The inner box (4) has a limit groove (21) on the side of the first recycling area (18). The two telescopic cylinders (211) are fixedly installed in the limit groove (21). The end of the telescopic cylinder (211) away from the limit groove (21) is fixedly connected to the push plate (212). The push plate (212) is driven to push the garbage in the first recycling area (18) to the second recycling area (19) for storage.
7. The emergency department medical waste recycling device according to claim 1, characterized in that: The inner side walls of the outer shell (1) are provided with a first mounting groove (10) and a second mounting groove (11) corresponding to the first recycling area (18) and the second recycling area (19), respectively. A first disinfection structure (12) is installed in the first mounting groove (10), and a second disinfection structure (14) is installed in the second mounting groove (11) to disinfect the garbage inside the first recycling area (18) and the second recycling area (19), respectively. Fixed grooves (23) are provided on the side walls of the first recycling area (18) and the second recycling area (19) corresponding to the first mounting groove (10) and the second mounting groove (11), respectively. A barrier net (16) is provided on the two fixed grooves (23) to prevent the garbage inside from falling into the outer shell (1) from the fixed grooves (23). A second sealing door (24) is provided on the front of the inner box (4) corresponding to the first recycling area (18) and the second recycling area (19), respectively.
8. The emergency department medical waste recycling device according to claim 7, characterized in that: The first disinfection structure (12) and the second disinfection structure (14) are the same, including a second power supply (141) and an ultraviolet lamp (142). The ultraviolet lamp (142) is installed in the second mounting slot (11) corresponding to the second recycling area (19). The second power supply (141) is installed in the corresponding position on the side wall of the outer casing (1). The output shaft of the second power supply (141) is connected to the ultraviolet lamp (142) to disinfect the garbage inside the first recycling area (18).
9. The emergency department medical waste recycling device according to claim 1, characterized in that: The cover structure (8) includes two sets of second electric push rods (7) and a cover body (81). The cover body (81) is connected to the top plate (6) through the second electric push rods (7). The second electric push rods (7) control the cover body (81) to seal the inner box or squeeze the garbage.
Citation Information
Patent Citations
Medical garbage recycling device for emergency department
CN214288625U