Intelligent sterilizing infusion support
The intelligent disinfection infusion stand solves the problem of cross-infection among patients in temporary infusion areas through isolation and disinfection devices and disinfectant release devices, achieving safe infusion isolation and disinfection effects.
Patent Information
- Application Number
- CN202423125374.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-18
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2034-12-18
AI Technical Summary
The lack of isolation measures between patients in the temporary infusion area leads to a high risk of cross-infection.
Design an intelligent disinfection infusion stand equipped with an isolation and disinfection device. It forms an isolation space through high-speed airflow and combines it with a disinfection and sterilization substance release device to isolate and disinfect infectious substances.
It effectively reduces the risk of cross-infection between patients by combining high-speed airflow with disinfectant substances to isolate and eliminate infectious substances in the air, creating a safe infusion environment.
Smart Images

Figure CN223831523U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of infusion stand technology, specifically to an intelligent disinfection infusion stand. Background Technology
[0002] Intravenous infusion is a very important treatment method in Western medicine. For patients who do not require hospitalization, they usually leave the hospital after the infusion is completed. Due to the limited space in hospitals, a special temporary infusion area is usually set up. In the temporary infusion area, one or more rows of chairs and matching IV stands are placed side by side for patients to sit on. There are no isolation measures between patients, which makes it easy for cross-infection to occur among patients (especially respiratory diseases, influenza and other airborne diseases), causing mutual transmission.
[0003] This utility model was proposed in response to the shortcomings of the existing technology. Utility Model Content
[0004] The existing technology, as mentioned above, lacks isolation measures between patients in temporary infusion areas, leading to potential cross-infection and mutual transmission. The technical solution adopted by this utility model to solve this problem is: an intelligent disinfection infusion stand, comprising: an infusion stand body, a suspension assembly for suspending the IV drip on the infusion stand body, and an isolation and disinfection device at the top of the infusion stand body for forming an isolation space composed of high-speed airflow. The isolation and disinfection device has a connection structure connected to the infusion stand body.
[0005] As described above, an intelligent disinfection infusion stand includes an isolation disinfection device comprising: a flow guide shell, an air cavity inside the flow guide shell, an air inlet communicating with the air cavity at the top of the flow guide shell, an air outlet communicating with the air cavity at the bottom of the flow guide shell, the air outlet being inclined towards the ground and being annular, and a blowing assembly in the middle of the air cavity for drawing in outside air from the air inlet and blowing it out from the air outlet to form an isolation hood, wherein the isolation hood and the ground form the isolation space.
[0006] As described above, the intelligent disinfection infusion stand has an air outlet and / or air outlet and / or air cavity equipped with a disinfection substance release device for releasing disinfection and sterilization substances.
[0007] The aforementioned intelligent disinfection infusion stand includes a disinfection substance release device that is one or both of a negative ion generator and a plasma generator.
[0008] As described above, in an intelligent disinfection infusion stand, the upper part of the air cavity and near the air outlet is provided with a gradually downward curved upper arc-shaped guide surface, and the lower part of the air cavity and near the air outlet is provided with a gradually upward curved lower arc-shaped guide surface. The edges of the upper and lower arc-shaped guide surfaces form the air outlet. The vertical width of the upper and lower arc-shaped guide surfaces is d, where d gradually decreases from the air outlet of the blower assembly to the air outlet.
[0009] As described above, the intelligent disinfection infusion stand has multiple guide vanes on the flow guide housing for dividing the air cavity into multiple radially distributed air outlet channels. The blowing assembly includes a fan wheel and a motor that drives the fan wheel to rotate. The fan wheel is located at the center of the air cavity, and the air outlet of the fan wheel faces the inlet of the air outlet channel.
[0010] As described above, an intelligent disinfection infusion stand includes an upper guide shell and a lower guide shell that cooperates with the upper guide shell. The upper arc-shaped guide surface is disposed on the upper guide shell, and the lower arc-shaped guide surface is disposed on the lower guide shell. The air cavity is disposed between the upper guide shell and the lower guide shell. The air inlet is disposed in the middle of the upper guide shell. The edge of the upper guide shell and the edge of the lower upper guide shell form the air outlet. The upper guide shell is provided with a filter screen at the air outlet. A cover screen for locking the filter screen at the air outlet is detachably connected to the air outlet.
[0011] As described above, an intelligent disinfection infusion stand has an air circulation device at the bottom of the flow guide shell for cleaning the space within the isolation space. The air circulation device includes: a circulation shell connected to the bottom of the flow guide shell; a circulation cavity between the circulation shell and the flow guide shell; a first circulation port and a second circulation port on the circulation shell; the first circulation port and the second circulation port respectively communicate with the circulation cavity and the isolation space; and a circulation ventilation component inside the circulation shell for allowing air from the isolation space to enter the circulation cavity through the first circulation port and then return to the isolation space through the second circulation port.
[0012] As described above, an intelligent disinfection infusion stand is provided with a call reminder device on the main body of the infusion stand. The call reminder device includes: an indicator light and / or a horn, and a starter for activating the indicator light and / or the horn. The indicator light and / or the horn are installed on the isolation disinfection device, and the starter is installed on the main body of the infusion stand.
[0013] As described above, an intelligent disinfection infusion stand includes a base and a vertical pole. The vertical pole is connected to the base, a suspension assembly is located on the upper part of the vertical pole, and an isolation disinfection device is located at the top of the vertical pole. The suspension assembly includes a suspension seat and a hook. The suspension seat is located on the vertical pole, and one end of the hook is rotatably connected to the suspension seat. The hook has an arc-shaped limiting groove for limiting its rotation angle. The suspension seat has a folding locking mechanism for temporarily positioning the hook on the suspension seat after it is folded relative to the suspension seat. The folding locking mechanism includes a locking pin and a spring for driving the locking pin. The locking pin is slidably connected to the suspension seat. The hook has a latch that engages with the locking pin. The spring is connected between the locking pin and the suspension seat to drive the locking pin to engage the latch, thereby temporarily positioning the hook. One end of the locking pin has a button for driving the locking pin to disengage from the latch to unlock the hook. The button has a limiting pin that engages with the arc-shaped limiting groove.
[0014] As described above, the intelligent disinfection infusion stand includes an upper upright, a lower upright, and a connector. The isolation and disinfection device is detachably connected to the upper end of the upper upright, the upper upright is detachably connected to the upper end of the connector, the lower end of the connector is detachably connected to the upper end of the lower upright, and the lower end of the lower upright is detachably connected to the base. The base contains a counterweight, and the bottom of the base contains casters.
[0015] The beneficial effects of this utility model are:
[0016] 1. The intelligent disinfection infusion stand of this utility model has an isolation and disinfection device installed on the top of the main body of the infusion stand. The isolation and disinfection device can form an isolation space composed of a downward high-speed airflow. While forming the isolation space, it disinfects the interior and surrounding area of the space. After the isolation and disinfection device is activated, when the patient is receiving infusion in the isolation space, due to the existence of the isolation space composed of the high-speed airflow, viruses, bacteria, unclean airborne particles and other airborne infectious substances outside the isolation space will be isolated and disinfected on the periphery of the space by the high-speed airflow. Therefore, the patient in the isolation space will not come into contact with infectious substances, reducing the risk of mutual infection.
[0017] 2. The isolation and disinfection device of this utility model uses a blower assembly to draw in outside air from the air inlet and blow out a high-speed airflow from the air outlet to form an isolation hood. Because the air outlet is ring-shaped and tilted towards the ground, the high-speed airflow flowing out of the air outlet is also ring-shaped and flows towards the ground. This makes the isolation hood roughly bell-shaped. The isolation hood, together with the ground, can form an isolation space.
[0018] 3. The air blown out from the air outlet of the blower assembly is accelerated and its direction is changed by the combined action of the upper and lower arc-shaped guide surfaces, so that the airflow from the outlet blows towards the ground at a relatively high speed, thus forming an ability to isolate infectious substances transmitted in the air. Attached Figure Description
[0019] Figure 1 A schematic diagram of the structure of the intelligent disinfection infusion stand of this utility model for infusion in patients;
[0020] Figure 2 This is a schematic diagram of the structure of the intelligent disinfection infusion stand of this utility model;
[0021] Figure 3 This is a three-dimensional sectional view of the isolation and disinfection device of this utility model;
[0022] Figure 4 This is a full sectional view of the isolation and disinfection device (hidden parts) of this utility model;
[0023] Figure 5 This is one of the exploded views of the isolation and disinfection device of this utility model;
[0024] Figure 6 This is the second exploded view of the isolation and disinfection device of this utility model;
[0025] Figure 7 This is a structural schematic diagram of the isolation and disinfection device (hidden components) of this utility model;
[0026] Figure 8 This is one of the exploded view diagrams of the intelligent disinfection infusion stand of this utility model;
[0027] Figure 9 This is the second exploded view of the intelligent disinfection infusion stand of this utility model;
[0028] Figure 10 This is one of the exploded schematic diagrams of the suspension assembly and the upper upright in this utility model;
[0029] Figure 11 This is the second exploded view of the suspension assembly and the upper pole in this utility model;
[0030] Figure 12 for Figure 11 An enlarged view of part A marked in the middle;
[0031] Figure 13 This is the third exploded view of the suspension assembly and the upper pole in this utility model. Detailed Implementation
[0032] The embodiments of this utility model will now be described in detail with reference to the accompanying drawings.
[0033] like Figures 1 to 13 As shown in the figure, an intelligent disinfection infusion stand according to this embodiment includes: an infusion stand body 1, a suspension assembly 2 for suspending an IV drip on the infusion stand body 1, and an isolation and disinfection device 3 for forming an isolation space 101 composed of high-speed airflow on the top of the infusion stand body 1. The isolation and disinfection device 3 is provided with a connection structure (the connection structure can be a connection hole, a connection pipe, a connection bayonet, etc.) connected to the infusion stand body 1. This intelligent disinfection infusion stand, by providing an isolation and disinfection device on the top of the infusion stand body, can form an isolation space composed of downward-blowing high-speed airflow. While forming the isolation space, it disinfects the interior and surrounding area. After the isolation and disinfection device is activated, when a patient receives an infusion in the isolation space, due to the existence of the isolation space formed by the high-speed airflow, viruses, bacteria, and unclean airborne particles outside the isolation space are isolated and disinfected by the high-speed airflow. Therefore, the patient in the isolation space will not come into contact with infectious substances, reducing the risk of mutual infection.
[0034] like Figure 3-7 As shown, in this embodiment, the isolation and disinfection device 3 includes: a flow guide shell 31, an air cavity 301 inside the flow guide shell 31, an air inlet 302 communicating with the air cavity 301 at the top of the flow guide shell 31, an air outlet 303 communicating with the air cavity 301 at the bottom of the flow guide shell 31, the air outlet 303 being inclined towards the ground and being annular, and a blowing assembly 32 in the middle of the air cavity 301 for drawing in outside air from the air inlet 302 and blowing it out from the air outlet 303 to form an isolation hood 102, the isolation hood 102 forming the isolation space 101 with the ground. The isolation and disinfection device in this embodiment uses a blower assembly to draw in outside air from the air inlet and blow out a high-speed airflow from the air outlet to form an isolation hood. Because the air outlet 303 is annular and tilted towards the ground, the high-speed airflow flowing out of the air outlet 303 is also annular and flows towards the ground. This makes the isolation hood roughly bell-shaped, and the isolation hood, together with the ground, can form an isolation space.
[0035] To enhance protective capabilities, a disinfection and sterilization substance release device 33 is provided at the air outlet 303 and / or the air outlet 303 and / or the air cavity 301 for releasing disinfection and sterilization substances. The disinfection and sterilization substances released by the disinfection and sterilization substance release device 33 are distributed on the isolation hood formed by the high-speed airflow along with the high-speed airflow, killing the infectious substances transmitted in the air and reducing the risk of transmission.
[0036] In this embodiment, the disinfectant release device 33 is one or both of a negative ion generator and a plasma generator. Of course, a similar disinfectant release device 33 with disinfection and sterilization functions can also be used.
[0037] In this embodiment, the upper part of the air cavity 301, near the air outlet 303, is provided with a gradually downward-curving upper arc-shaped guide surface 3011, and the lower part of the air cavity 301, near the air outlet 303, is provided with a gradually upward-curving lower arc-shaped guide surface 3012. The edges of the upper arc-shaped guide surface 3011 and the lower arc-shaped guide surface 3012 form the air outlet 303. The vertical width of the upper arc-shaped guide surface 3011 and the lower arc-shaped guide surface 3012 is d, where d gradually decreases from the air outlet of the blower assembly 32 to the air outlet 303. With the above design, the air blown from the air outlet of the blower assembly 32, through the combined action of the upper arc-shaped guide surface 3011 and the lower arc-shaped guide surface 3012, can accelerate and change the direction of the airflow, so that the airflow flowing from the air outlet 303 is blown towards the ground at a relatively high speed, thereby forming an ability to isolate infectious substances transmitted in the air.
[0038] In this embodiment, the air guide housing 31 is provided with multiple air guide vanes 311 for dividing the air cavity 301 into multiple radially distributed air outlet channels 3013. The blowing assembly 32 includes a fan wheel 321 and a motor 322 for driving the fan wheel 321 to rotate. The fan wheel 321 is located at the center of the air cavity 301, and the air outlet of the fan wheel 321 faces the inlet of the air outlet channel 3013. By using the combined action of the fan wheel 321 and the air guide vanes 311, a stable and high-speed airflow can be formed. In addition, by dividing the air cavity 301 into multiple radially distributed air outlet channels 3013 by the air guide vanes 311, the high-speed airflow can be prevented from generating swirling air within the circular air cavity 301, thus avoiding the loss of high-speed airflow capacity.
[0039] In this embodiment, the airflow guide housing 31 includes: an upper airflow guide housing 3101 and a lower airflow guide housing 3102 that cooperates with the upper airflow guide housing 3101. The upper arc-shaped airflow guide surface 3011 is disposed on the upper airflow guide housing 3101, and the lower arc-shaped airflow guide surface 3012 is disposed on the lower airflow guide housing 3102. The air cavity 301 is disposed between the upper airflow guide housing 3101 and the lower airflow guide housing. The air inlet 302 is disposed in the middle of the upper airflow guide housing 3101. The edges of the upper airflow guide housing 3101 and the lower upper airflow guide housing 3101 form the air outlet 303. The upper airflow guide housing 3101 is provided with a filter screen 34 at the air outlet 303. A cover screen 35 for locking the filter screen 34 at the air outlet 303 is detachably connected to the air outlet 303 for easy replacement of the filter screen 34. In addition, a decorative housing is also provided on the outside of the upper airflow guide housing 3101.
[0040] To clean the air within the isolation space 101, an air circulation device 36 is provided at the bottom of the guide housing 31. The air circulation device 36 includes: a circulation housing 361 connected to the bottom of the guide housing 31; a circulation cavity 3601 is provided between the circulation housing 361 and the guide housing 31; a first circulation port 3602 and a second circulation port 3603 are provided on the circulation housing 361; the first circulation port 3602 and the second circulation port 3603 are respectively connected to the circulation cavity 3601 and the isolation space 101; and a circulation ventilation assembly 362 is provided inside the circulation housing 361 for allowing air from the isolation space 101 to enter the circulation cavity 3601 through the first circulation port 3602 and then return to the isolation space 101 through the second circulation port 3603.
[0041] To facilitate patients in alerting medical staff during intravenous infusion, a call reminder device is provided on the main body 1 of the infusion stand. The call reminder device includes: an indicator light 41 and / or a horn, and a starter 42 for activating the indicator light 41 and / or the horn. The indicator light 41 and / or the horn are installed on the isolation and disinfection device 3, and the starter 42 is installed on the main body 1 of the infusion stand. When in use, activating the corresponding function can achieve the function of reminding medical staff.
[0042] In this embodiment, the infusion stand body 1 includes a base 11 and a vertical pole 12. The vertical pole 12 is connected to the base 11. The suspension assembly 2 is disposed on the upper part of the vertical pole 12. The isolation and disinfection device 3 is disposed on the top of the vertical pole 12. The suspension assembly 2 includes a suspension seat 21 and a suspension hook 22. The suspension seat 21 is disposed on the vertical pole 12. One end of the suspension hook 22 is rotatably connected to the suspension seat 21. The suspension hook 22 is provided with an arc-shaped limiting groove 220 for limiting the rotation angle of the suspension hook 22. The suspension seat 21 is provided with a folding locking mechanism 23 for temporarily positioning the suspension hook 22 on the suspension seat 21 after it is folded relative to the suspension seat 21. When the suspension hook 22 needs to be used, the folding locking mechanism 23 can be opened to lower the suspension hook 22 for hanging the infusion bottle.
[0043] In this embodiment, the folding and locking mechanism 23 includes: a locking post 231 and a spring 232 for driving the locking post 231. The locking post 231 is slidably connected to the suspension seat 21. The suspension hook 22 is provided with a latch 221 that can cooperate with the locking post 231. The spring 232 is connected between the locking post 231 and the suspension seat 21 to drive the locking post 231 to latch the latch 221 and thus temporarily position the suspension hook 22. One end of the locking post 231 is provided with a button 233 for driving the locking post 231 to disengage from the latch 221 to unlock the suspension hook 22. The button 233 is provided with a limiting post 2331 that cooperates with the arc-shaped limiting groove 220. After the drive hook 22 moves upward and folds into place, the locking pin 231 can be engaged in the slot 221 under the action of the spring 232, so as to temporarily position the hook 22. When the button 233 is pressed, the locking pin 231 can be driven to retract. At this time, the locking pin 231 is no longer engaged in the slot 221, and the hook 22 can fall down.
[0044] In this embodiment, for ease of packaging, the upright 12 includes an upper upright 121, a lower upright 122, and a connector 123. The isolation and disinfection device 3 is detachably connected to the upper end of the upper upright 121, the upper upright 121 is detachably connected to the upper end of the connector 123, the lower end of the connector 123 is detachably connected to the upper end of the lower upright 122, and the lower end of the lower upright 122 is detachably connected to the base 11. The base 11 is provided with a counterweight, and the bottom of the base 11 is provided with casters 111.
[0045] The above examples are merely illustrative of the technical content of this utility model to facilitate reader understanding, but do not imply that the implementation of this utility model is limited to these embodiments. Any technical extensions or re-creations made based on this utility model are protected by this utility model. The scope of protection of this utility model is defined by the claims.
Claims
1. An intelligent disinfection infusion stand, comprising: The infusion stand body (1) is characterized in that the infusion stand body (1) is provided with a suspension assembly (2) for suspending the IV bottle, and the top of the infusion stand body (1) is provided with an isolation and disinfection device (3) for forming an isolation space (101) composed of high-speed airflow, and the isolation and disinfection device (3) is provided with a connection structure connected to the infusion stand body (1).
2. The intelligent disinfection infusion stand according to claim 1, characterized in that, The isolation and disinfection device (3) includes: a flow guide shell (31), a wind chamber (301) is provided inside the flow guide shell (31), an air inlet (302) communicating with the wind chamber (301) is provided at the top of the flow guide shell (31), an air outlet (303) communicating with the wind chamber (301) is provided at the bottom of the flow guide shell (31), the air outlet (303) is inclined towards the ground, the air outlet (303) is annular, and a blowing assembly (32) is provided in the middle of the wind chamber (301) for drawing in outside air from the air inlet (302) and blowing it out from the air outlet (303) to form an isolation hood (102), the isolation hood (102) and the ground form the isolation space (101).
3. The intelligent disinfection infusion stand according to claim 2, characterized in that, The air outlet (303) and / or the air outlet (303) and / or the air cavity (301) are provided with a disinfection substance release device (33) for releasing disinfection and sterilization substances.
4. The intelligent disinfection infusion stand according to claim 3, characterized in that, The upper part of the air cavity (301) and near the air outlet (303) is provided with an upper arc-shaped guide surface (3011) that gradually curves downward, and the lower part of the air cavity (301) and near the air outlet (303) is provided with a lower arc-shaped guide surface (3012) that gradually curves upward. The edges of the upper arc-shaped guide surface (3011) and the lower arc-shaped guide surface (3012) form the air outlet (303). The vertical width of the upper arc-shaped guide surface (3011) and the lower arc-shaped guide surface (3012) is d, where d gradually decreases from the air outlet of the blower assembly (32) to the air outlet (303).
5. The intelligent disinfection infusion stand according to claim 4, characterized in that, The air guide housing (31) is provided with multiple air guide plates (311) for dividing the air cavity (301) into multiple radially distributed air outlet channels (3013). The air blowing assembly (32) includes: a wind wheel (321) and a motor (322) for driving the wind wheel (321) to rotate. The wind wheel (321) is located at the center of the air cavity (301), and the air outlet of the wind wheel (321) is directly opposite the inlet of the air outlet channel (3013).
6. The intelligent disinfection infusion stand according to claim 4, characterized in that, The aforementioned flow guide housing (31) comprises: an upper flow guide housing (3101) and a lower flow guide housing (3102) that cooperates with the upper flow guide housing (3101). The upper arc-shaped flow guide surface (3011) is disposed on the upper flow guide housing (3101), and the lower arc-shaped flow guide surface (3012) is disposed on the lower flow guide housing (3102). The air cavity (301) is disposed between the upper flow guide housing (3101) and the lower flow guide housing. The air inlet... The opening (302) is located in the middle of the upper guide housing (3101). The edge of the upper guide housing (3101) and the edge of the lower upper guide housing (3101) form the air outlet (303). The upper guide housing (3101) is provided with a filter screen (34) at the air outlet (303). A cover screen (35) for locking the filter screen (34) at the air outlet (303) is detachably connected to the air outlet (303).
7. The intelligent disinfection infusion stand according to claim 2, characterized in that, The bottom of the flow guide housing (31) is provided with an air circulation device (36) for cleaning the space in the isolation space (101). The air circulation device (36) includes: a circulation housing (361) connected to the bottom of the flow guide housing (31), a circulation chamber (3601) between the circulation housing (361) and the flow guide housing (31), a first circulation port (3602) and a second circulation port (3603) on the circulation housing (361), the first circulation port (3602) and the second circulation port (3603) respectively communicating with the circulation chamber (3601) and the isolation space (101), and a circulation ventilation component (362) is provided in the circulation housing (361) for entering the circulation chamber (3601) from the first circulation port (3602) and returning to the isolation space (101) from the second circulation port (3603).
8. The intelligent disinfection infusion stand according to claim 2, characterized in that, The infusion stand body (1) is equipped with a call reminder device, which includes an indicator light (41) and / or a horn, and a starter (42) for activating the indicator light (41) and / or the horn. The indicator light (41) and / or the horn are installed on the isolation and disinfection device (3), and the starter (42) is installed on the infusion stand body (1).
9. The intelligent disinfection infusion stand according to claim 2, characterized in that, The infusion stand body (1) includes a base (11) and a pole (12). The pole (12) is connected to the base (11). The suspension assembly (2) is located on the upper part of the pole (12). The isolation and disinfection device (3) is located on the top of the pole (12). The suspension assembly (2) includes a suspension seat (21) and a hook (22). The suspension seat (21) is located on the pole (12). One end of the hook (22) is rotatably connected to the suspension seat (21). The hook (22) is provided with an arc-shaped limiting groove (220) for limiting the rotation angle of the hook (22). The suspension seat (21) is provided with a folding locking mechanism (23) for temporarily positioning the hook (22) on the suspension seat (21) after the hook (22) is folded relative to the suspension seat (21).
10. The intelligent disinfection infusion stand according to claim 9, characterized in that, The pole (12) includes an upper pole (121), a lower pole (122), and a connector (123). The isolation and disinfection device (3) is detachably connected to the upper end of the upper pole (121). The upper pole (121) is detachably connected to the upper end of the connector (123). The lower end of the connector (123) is detachably connected to the upper end of the lower pole (122). The lower end of the lower pole (122) is detachably connected to the base (11).