Multifunctional feeding and power distribution device for medical ward
By designing a multifunctional material conveying and power distribution device that includes an internal frame, a drive motor, and an electro-hydraulic strut, the problem that traditional equipment cannot assist in the delivery of drugs and auxiliary materials has been solved, realizing convenient material transportation and positioning, and improving functionality and practicality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- JIANGSU PANASIA MEDICAL TECH GRP CO LTD
- Filing Date
- 2022-10-08
- Publication Date
- 2026-05-15
AI Technical Summary
Traditional wall-mounted multi-functional power and gas distribution equipment has a fixed structure, making it unable to assist in the delivery of drugs and auxiliary materials, and its functionality and practicality are limited.
A multifunctional material conveying and power distribution device was designed, comprising an internal fixed frame, a drive motor, an external mounting socket, LED lights, and an electro-hydraulic support rod. The device enables the conveying and positioning of materials through the electro-hydraulic support rod and the drive motor. It is equipped with a storage box for storing medicines and excipients, and the socket and LED lights can be conveniently adjusted through a flip-up cover.
It has improved the integration and practicality of functions, enabled convenient transportation and positioning of materials, facilitated the distribution of medicines and excipients, simplified the operation process, and reduced costs.
Smart Images

Figure CN115589101B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of medical supply transportation and power distribution technology in wards, and in particular to a multifunctional material transportation and power distribution device for medical wards. Background Technology
[0002] Wards include general wards, intensive care units, tracheotomy bacterial monitoring wards, and infectious disease isolation wards. Some hospitals also have VIP wards, special needs wards, and integrated medical and elderly care wards. Ward space and layout should comply with relevant regulations. Bed spacing and surrounding space should allow for the passage, parking, and maneuvering of trolleys and wheelchairs. The disinfection buffer zone outside the door or fire escape route should not contain excessive clutter. Each ward should have no more than three sets of nursing beds, and each bed should have two all-plastic bedside cabinets and one sheet metal main cabinet. Therefore, to make rational use of ward space, many wall-mounted multi-functional power and gas distribution devices have been installed on the ward walls. Simultaneously, to support treatment, medications need to be provided to patients regularly. The traditional method involves dispensing medications from the pharmacy to the nurses' station, and then nurses sorting and delivering them to the wards. This process is not only inefficient, but in the current pandemic, the increased number of contacts can actually increase the risk of infection for patients. Traditional wall-mounted multi-functional power and gas distribution equipment mostly has a fixed structure and simply installs circuits and gas pipelines inside, which cannot assist in the delivery of drugs and auxiliary materials, resulting in limited functionality and practicality. Summary of the Invention
[0003] The technical problem to be solved by the present invention is to provide an improved multifunctional material conveying and power distribution device for medical wards in order to solve the problems existing in the background art. This solves the problem that most traditional wall-mounted multifunctional power and gas distribution equipment has a fixed structure and simply installs circuits and gas pipelines inside, which cannot assist in the delivery of drugs and auxiliary materials, resulting in limited functionality and practicality.
[0004] The technical solution adopted by this invention to solve its technical problem is: a multifunctional material conveying and power distribution device for medical wards, including an internal fixing frame bolted to the ward wall, an internal power supply line fixed to the ward wall, a drive motor, an external mounting socket for external plug to power medical equipment, an LED light for lighting, and an electro-hydraulic support rod. An external functional cover for installing the internal power supply line, drive motor, and electro-hydraulic support rod is bolted to the outer side of the internal fixing frame. A front assembly groove is provided on the outer side of the external functional cover. An internal adjustment frame is slidably assembled inside the front assembly groove. A flip-up functional cover for connecting the external mounting socket and the LED light is movably assembled outside the internal adjustment frame. A first adjusting screw with an upper threaded mounting seat and a second adjusting screw with a lower threaded mounting seat are provided inside the external functional cover. Storage boxes for storing pharmaceutical excipients are slidably assembled on the upper and lower surfaces of the external functional cover.
[0005] The upper and lower ends of the front assembly slot are fixedly connected with inner conductive plates that are electrically connected to the neutral and live wires of the internal power supply line, respectively. The upper end of the front side wall of the internal adjustment frame has a movable assembly bracket for the movable assembly flipping function cover plate. The flipping function cover plate is observed to be inside the movable assembly bracket and movablely assembled with the internal adjustment frame through the upper assembly shafts on both sides.
[0006] A lateral assembly guide rail is fixedly connected to the side wall of the feed inlet of the external functional cover, and an internal assembly cylinder for mounting the drive motor is slidably assembled inside the lateral assembly guide rail.
[0007] The outer functional housing has a fixed top connection to a side guide frame with a main conveyor belt inside. The side guide frame is movably fitted with a tilting guide plate controlled by an electro-hydraulic strut. The lower end of the tilting guide plate is slidably fitted with an elastic guide control plate near the outer functional housing. The outer surface of the inner assembly cylinder has an integrated linkage control frame at the upper and lower ends of the elastic guide control plate. The tilting guide plate is movably connected to the inner assembly cylinder by inserting the right end of the elastic guide control plate into the linkage control frame.
[0008] The flipping guide plate is fixedly connected to a first limiting extrusion frame and a second arc-shaped extrusion plate at the end away from the elastic guide control plate. The lower end of the flipping guide plate is fixedly connected to a bottom movable mounting bracket that cooperates with the electro-hydraulic support rod. The top of the telescopic rod at the upper end of the electro-hydraulic support rod is movably connected to the flipping guide plate by inserting it into the bottom movable mounting bracket.
[0009] The outer functional cover has a first guide port and a second guide port on its side wall, located inside the side guide frame, which are designed to cooperate with the storage box.
[0010] The upper and lower surfaces of the external functional cover are provided with strip-shaped conduction ports. The bottom of the storage box on the upper surface of the external functional cover and the upper end of the storage box on the lower surface of the external functional cover are provided with guide protrusions that protrude into the strip-shaped conduction ports. The storage box on the upper surface of the external functional cover is fixed to the upper threaded mounting seat bolt by the guide protrusions, and the storage box on the lower surface of the external functional cover is fixed to the lower threaded mounting seat bolt by the guide protrusions.
[0011] The first adjusting screw near the top of the drive motor end, the second adjusting screw near the top of the drive motor end, and the top of the upper and lower shafts of the drive motor are all coaxially fixed with mutually cooperating bevel gears.
[0012] The flip-up cover is elastically fitted with a bottom limiting control sleeve at its lower end. An L-shaped lateral limiting frame that cooperates with the bottom limiting control sleeve is fixedly connected to the outer side of the inner adjustment frame. The flip-up cover is fixedly connected to the inner adjustment frame by inserting the lower end of the bottom limiting control sleeve into the lateral limiting frame.
[0013] The flip-up cover is fixedly connected to a manual control switch on the same side as the LED light mounting surface.
[0014] The beneficial effects of this invention are:
[0015] (1) The multi-functional material conveying and power distribution device for medical wards of the present invention adopts a wall-mounted structure design. A medical material auxiliary guiding device is set up in the ward to match the main conveying device of the medical institution. The material on the main conveying device is guided into the storage box through the electro-hydraulic support rod. Then, the storage box is driven by the drive motor to convey the material from the upper and lower surfaces of the outer functional cover to the designated bed, so that it has the function of material conveying. The functional integration and practicality are greatly improved.
[0016] (2) An internal adjustment frame with an external mounting flip-up function cover is slidably mounted inside the front assembly slot. The external mounting socket and LED light are fixed by flip-up function cover. Then, the inner conductive plates at the upper and lower ends of the front assembly slot are connected to the neutral and live wires of the internal power supply line respectively, making it easy to adjust and supply power. The position is more convenient and the operation is also very convenient.
[0017] (3) The illumination angle of the LED light can be adjusted by flipping the cover, so that the position and range of the illumination can be adjusted;
[0018] (4) The driving position of the drive motor and the material guide position can be adjusted by a single electro-hydraulic strut, making control more convenient and the cost lower. Attached Figure Description
[0019] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0020] Figure 1 This is a schematic diagram of the structure of the present invention.
[0021] Figure 2 This is a side sectional view of the present invention.
[0022] Figure 3 This is a side sectional view of the assembly end of the lateral guide frame in this invention.
[0023] Figure 4 This is a longitudinal sectional view of the lateral guide frame in this invention. Detailed Implementation
[0024] The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic diagrams, illustrating only the basic structure of the invention, and therefore only show the components relevant to the invention.
[0025] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.
[0026] Figure 1 , Figure 2 and Figure 3 The multi-functional material conveying and power distribution device for medical wards shown includes an internal fixed frame 1 bolted to the ward wall, an internal power supply line 2 fixed to the ward wall, a drive motor 3, an external mounting socket 4 for connecting an external plug to power medical equipment, an LED light 5 for lighting, and an electro-hydraulic support rod 6. An external functional cover 7 for installing the internal power supply line 2, drive motor 3, and electro-hydraulic support rod 6 is bolted to the outer side of the internal fixed frame 1. A front assembly groove 8 is provided on the outer side of the external functional cover 7. An internal adjustment frame 9 is slidably assembled inside the front assembly groove 8. A flip-up functional cover 10 for connecting the external mounting socket 4 and the LED light 5 is movably assembled outside the internal adjustment frame 9. A first adjusting screw 12 with an upper threaded mounting seat 11 sleeved on the outside and a second adjusting screw 14 with a lower threaded mounting seat 13 sleeved on the outside are provided inside the external functional cover 7. A storage box 15 for storing pharmaceutical excipients is slidably assembled on the upper and lower surfaces of the external functional cover 7.
[0027] The internal power supply line 2, drive motor 3, external mounting socket 4, LED light for lighting 5, and electro-hydraulic support rod 6 are all existing technologies, obtained through market procurement.
[0028] The working principle is that the medical institution’s main conveying system is connected to the external functional housing 7. The electro-hydraulic struts 6 are used to control the materials to enter the storage boxes in different positions. Then, the drive motor 3 controls the storage box 15 to move to the designated position. The main conveying system, control system and positioning system are all existing technologies.
[0029] To facilitate installation and conduction, the upper and lower ends of the front assembly slot 8 are fixedly connected with inner conductive plates 16 that are respectively connected to the neutral and live wires of the internal power supply line 2. The upper end of the front side wall of the internal adjustment frame 9 has a movable assembly bracket 17 for the movable assembly flipping function cover 10. The flipping function cover 10 can be observed through the upper assembly shafts on both sides to move into the movable assembly bracket and assemble with the internal adjustment frame 9.
[0030] To facilitate installation and sliding adjustment, a lateral assembly guide rail 18 is fixedly connected to the side wall of the feed port of the outer functional cover 7, and an internal assembly cylinder 19 for mounting the drive motor 3 is slidably assembled inside the lateral assembly guide rail 18.
[0031] like Figure 3 and Figure 4 As shown, in order to facilitate the introduction of external materials, a side guide frame 21 with a main conveyor belt 20 inside is fixedly connected to the top of the outer side of the external functional housing 7. The side guide frame 21 is movably equipped with a tilting guide plate 22 controlled by an electro-hydraulic strut 6. An elastic guide control plate 23 is slidably equipped at the lower end of the tilting guide plate 22 near the end of the external functional housing 7. An integrated linkage control frame 24 is located on the outer side of the internal assembly cylinder 19 at the upper and lower ends of the elastic guide control plate 23. The tilting guide plate 22 is movably connected to the internal assembly cylinder 19 by inserting the right end of the elastic guide control plate 23 into the linkage control frame 24.
[0032] The operation of the main conveyor belt 20 is based on existing technology.
[0033] In order to coordinate with the electro-hydraulic strut 6 to tilt the main conveyor belt 20 in a telescopic manner, thereby guiding the material to different positions, the end of the tilting guide plate 22 away from the elastic guide control plate 23 is fixedly connected to the first limiting extrusion frame 25 and the second arc-shaped extrusion plate 26. The lower end of the tilting guide plate 22 is fixedly connected to the bottom movable mounting bracket 27 that cooperates with the electro-hydraulic strut 6. The top of the telescopic rod at the upper end of the electro-hydraulic strut 6 is movably connected to the tilting guide plate 22 by inserting it into the bottom movable mounting bracket 27.
[0034] In order to guide materials into the storage box at different locations as needed, the outer functional cover 7 has a first guide port 28 and a second guide port 29 located inside the side guide frame 21, which cooperate with the storage box 15.
[0035] The electro-hydraulic strut 6 extends to control the flipping guide plate 22 to flip clockwise, the second arc-shaped extrusion plate 26 flips upward to extrude the left side of the main conveyor belt 20, and controls the main conveyor belt 20 to flip, tilt and lift clockwise. The right end of the elastic guide control plate 23 drives the internal assembly cylinder 19 to descend, and controls the lower end of the drive motor 3 to mesh with the second adjusting screw 14 for transmission. At this time, the material at the upper end of the main conveyor belt 20 slides down to the upper end of the flipping guide plate 22 due to tilting, and then slides from the flipping guide plate 22 to the upper surface of the elastic guide control plate 23. The limiting extrusion plate is fixed on the inner wall of the side guide frame 21. When the flipping guide plate 22 and the elastic guide control plate 23 flip downward, and then tilt to one side, an arc-shaped guide groove is set in the tilted section. Then the medicine first falls from the elastic guide control plate 23 into the arc-shaped guide groove, and finally falls from the arc-shaped guide groove into the first guide port 28 and is discharged into the storage box 15.
[0036] Similarly, when the electro-hydraulic strut 6 retracts, it controls the flipping guide plate 22 to flip counterclockwise, the first arc-shaped extrusion plate 25 flips downward, extruding the right side of the main conveyor belt 20, and controls the main conveyor belt 20 to flip and tilt clockwise. The right end of the elastic guide control plate 23 drives the internal assembly cylinder 19 to rise, controlling the upper end of the drive motor 3 to mesh with the first adjusting screw 11 for transmission. At this time, the material on the upper end of the main conveyor belt 20 slides down to the upper end of the flipping guide plate 22 due to tilting, and then slides from the flipping guide plate 22 to the upper surface of the elastic guide control plate 23, and finally is discharged into the storage box 15 from the second guide port 29.
[0037] To facilitate the installation and fixation of the storage box 15, both the upper and lower surfaces of the outer functional cover 7 are provided with strip-shaped transmission ports 30. The bottom of the storage box on the upper surface of the outer functional cover 7 and the upper end of the storage box on the lower surface of the outer functional cover 7 are provided with guide protrusions 31 that protrude into the strip-shaped transmission ports 30. The storage box 15 on the upper surface of the outer functional cover 7 is fixed to the upper threaded mounting seat 11 by bolts through the guide protrusions 31, and the storage box 15 on the lower surface of the outer functional cover 7 is fixed to the lower threaded mounting seat 13 by bolts through the guide protrusions 31.
[0038] To facilitate meshing transmission, the top of the first adjusting screw 12 near the drive motor end, the top of the second adjusting screw 14 near the drive motor 3 end, and the top of the upper and lower shafts of the drive motor 3 are all coaxially fixed with mutually cooperating bevel gears 32.
[0039] The bevel gears 32 on the upper and lower shafts of the drive motor 3 can mesh with the top ends of the first adjusting screw 12 and the second adjusting screw 14, respectively.
[0040] To facilitate the fixed positioning of the angle of the flip-up cover 10, a bottom limiting control sleeve 33 is elastically sleeved at the lower end of the flip-up cover 10. An L-shaped lateral limiting frame 34 that cooperates with the bottom limiting control sleeve 33 is fixedly connected to the outer side of the inner adjusting frame 9. The flip-up cover 10 is fixedly connected to the inner adjusting frame 9 by inserting the lower end of the bottom limiting control sleeve 33 into the lateral limiting frame 34.
[0041] The bottom limit control sleeve 33 includes metal springs located on both sides of the flip function cover 10 and an adjustment sleeve sleeved on the outside of the flip function cover 10. The inner walls on both sides of the adjustment sleeve and the outer walls on both sides of the flip function cover 10 are elastically connected by the metal springs.
[0042] To facilitate control of the LED light 5, a manual control switch 35 is fixedly connected to the flip-up cover 10 on the same side as the mounting surface of the LED light 5.
[0043] The manual control switch 35 is used to manually toggle the LED light 5 to turn it on and off.
[0044] The multi-functional material conveying and power distribution device for medical wards of the present invention adopts a wall-mounted structure design. A medical supply auxiliary guiding device, compatible with the main conveying device of the medical institution, is installed in the ward. Materials from the main conveying device are guided into the storage box 15 via an electro-hydraulic support rod 6. Then, a drive motor 3 drives the storage box 15 to convey materials from the upper and lower surfaces of the outer functional cover 7 to designated beds, thus enabling it to perform material conveying functions. The functional integration and practicality are greatly improved. An externally mounted flip-up functional cover 10 is slidably fitted inside the front assembly slot 8 for internal adjustment. The frame 9 uses a flip-up cover 10 to fix the external mounting socket 4 and LED light 5. Then, the inner conductive plates 16 at the upper and lower ends of the front mounting slot 8 are connected to the neutral and live wires of the internal power supply line 2, respectively, making it easy to adjust and supply power. The position is more convenient and the operation is also very convenient. The lighting angle of the LED light 5 can be adjusted by flipping the cover 10, making the lighting position and range adjustable. The driving position and material guiding position of the drive motor 3 can be adjusted by a single electro-hydraulic support rod 6, making the control more convenient and the cost lower.
[0045] Based on the above-described preferred embodiments of the present invention, and through the foregoing description, those skilled in the art can make various changes and modifications without departing from the inventive concept. The technical scope of this invention is not limited to the contents of the specification, but must be determined according to the scope of the claims.
Claims
1. A multifunctional material conveying and power distribution device for medical wards, comprising an internal fixed frame (1) bolted to the ward wall, an internal power supply line (2) fixed to the ward wall, a drive motor (3), an external mounting socket (4) for supplying power to medical equipment via an external plug, an LED light (5) for lighting, and an electro-hydraulic support rod (6), characterized in that: The outer side of the internal fixed frame (1) is bolted with an external functional cover (7) for installing the internal power supply line (2), drive motor (3) and electro-hydraulic support rod (6). The outer side of the external functional cover (7) is provided with a front assembly groove (8). The front assembly groove (8) is slidably fitted with an internal adjustment frame (9). The outer side of the internal adjustment frame (9) is movably fitted with a flip-up functional cover plate (10) for connecting the external mounting socket (4) and LED light (5). The outer functional cover (7) is provided with a first adjusting screw (12) with an upper threaded mounting seat (11) on the outside and a second adjusting screw (14) with a lower threaded mounting seat (13) on the outside. The upper and lower surfaces of the external functional cover (7) are slidably fitted with a storage box (15) for storing pharmaceutical excipients. The outer functional housing (7) is fixedly connected to a side guide frame (21) with a main conveyor belt (20) inside. The side guide frame (21) is movably fitted with a flip guide plate (22) controlled by an electro-hydraulic strut (6). The lower end of the flip guide plate (22) near the outer functional housing (7) is slidably fitted with an elastic guide control plate (23). The lower end of the flipping guide plate (22) is fixedly connected to a bottom movable mounting bracket (27) that cooperates with the electro-hydraulic support rod (6). The top of the telescopic rod at the upper end of the electro-hydraulic support rod (6) is movably connected to the flipping guide plate (22) by inserting it into the bottom movable mounting bracket (27).
2. The multifunctional material conveying and power distribution device for medical wards according to claim 1, characterized in that: The upper and lower ends of the front assembly slot (8) are fixedly connected with inner conductive plates (16) that are electrically connected to the neutral and live wires of the internal power supply line (2), respectively. The upper end of the front side wall of the internal adjustment frame (9) has an active assembly bracket (17) for the active assembly flipping function cover plate (10). The flipping function cover plate (10) is observed to enter the active assembly bracket (17) through the upper assembly shafts on both sides and is actively assembled with the internal adjustment frame (9).
3. The multifunctional material conveying and power distribution device for medical wards according to claim 1, characterized in that: The external functional housing (7) has a lateral assembly guide rail (18) fixedly connected to the side wall of the feed port. The lateral assembly guide rail (18) has an internal assembly cylinder (19) for mounting the drive motor (3) that is slidably assembled inside.
4. The multifunctional material conveying and power distribution device for medical wards according to claim 3, characterized in that: The inner assembly cylinder (19) has an integrated linkage control frame (24) on the outer side of the elastic guide control plate (23) at the upper and lower ends. The flipping guide plate (22) is movably connected to the inner assembly cylinder (19) by inserting the linkage control frame (24) into the right end of the elastic guide control plate (23).
5. The multifunctional material conveying and power distribution device for medical wards according to claim 4, characterized in that: The flipping guide plate (22) is fixedly connected to the end away from the elastic guide control plate (23) with a first limiting extrusion frame (25) and a second arc-shaped extrusion plate (26).
6. The multifunctional material conveying and power distribution device for medical wards according to claim 4, characterized in that: The external functional cover (7) has a first guide port (28) and a second guide port (29) on its side wall located inside the side guide frame (22) to cooperate with the storage box (15).
7. The multifunctional material conveying and power distribution device for medical wards according to claim 1, characterized in that: The outer functional cover (7) has strip-shaped transmission ports (30) on both its upper and lower surfaces. The bottom of the storage box (15) on the upper surface of the outer functional cover (7) and the upper end of the storage box (15) on the lower surface of the outer functional cover (7) both have guide protrusions (31) that protrude into the strip-shaped transmission ports (30). The storage box (15) on the upper surface of the outer functional cover (7) is bolted to the upper threaded mounting seat (11) by the guide protrusions (31), and the storage box (15) on the lower surface of the outer functional cover (7) is bolted to the lower threaded mounting seat (13) by the guide protrusions.
8. The multifunctional material conveying and power distribution device for medical wards according to claim 1, characterized in that: The first adjusting screw (11) near the top of the drive motor (3), the second adjusting screw (13) near the top of the drive motor (3), and the top of the upper and lower shafts of the drive motor (3) are all coaxially fixed with bevel gears (32).
9. The multifunctional material conveying and power distribution device for medical wards according to claim 1, characterized in that: The flip-up cover (10) is elastically sleeved with a bottom limiting control sleeve (33) at its lower end. An L-shaped lateral limiting frame (34) that cooperates with the bottom limiting control sleeve (33) is fixedly connected to the outer side of the internal adjustment frame (9). The flip-up cover (10) is inserted into the lateral limiting frame (34) through the lower end of the bottom limiting control sleeve (33) and fixedly connected to the internal adjustment frame (9).
10. The multifunctional material conveying and power distribution device for medical wards according to claim 1, characterized in that: The flip-up cover (10) is fixedly connected to a manual control switch (35) on the same side as the mounting surface of the LED light (5).