Sickbed capable of being charged safely
By incorporating a charging mechanism and a sliding base plate under the bed frame, the problem of the lack of safe charging sockets for electric hospital beds is solved, enabling safe and convenient charging and improving user safety.
Patent Information
- Application Number
- CN202520064660.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-10
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2035-01-10
AI Technical Summary
The lack of safe charging sockets for existing electric hospital beds poses a safety hazard, especially near the patient's bedside, where there is a risk of explosion.
A charging mechanism is installed under the bed frame of the hospital bed, including mounting components and a charging power strip. The power strip can be stored and extended by sliding a base plate, and a locking component is provided to ensure safe use.
It provides a safe charging solution, avoiding the inconvenience caused by high socket positions, and improving safety and convenience.
Smart Images

Figure CN223817785U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of medical equipment, in particular to safe charging sickbed. BACKGROUND
[0002] The electric sickbed is a kind of modern medical equipment, is widely used in hospital, nursing home and other medical institutions, is mainly used for the rehabilitation and nursing of patient. Its design and function aim at improving the comfort, safety of patient and the work efficiency of medical staff. Electric sickbed is usually composed of bedstead, bed surface, driving system (such as electric push rod), control part (such as controller and handle) and various accessories, and the bed surface part includes backboard, seat plate and other support plates, and the bedstead part includes bed frame, headboard assembly and the like.
[0003] Such as the patent application with the application publication number CN116236358A and the name of a kind of electric sickbed, it includes upper bed beam, bed bottom plate, bed board, front bed board drive mechanism, bed board synchronous mechanism, bed board poking mechanism, head cushion and head cushion drive mechanism;The number of upper bed beam is two, two upper bed beams are arranged at intervals, and the upper bed beam has a front bed board groove, the bed board poking mechanism is connected with the upper bed beam, when the second bed board rotates upwards and the first bed board naturally hangs down, the bed board poking mechanism can poke the first bed board to swing forward or backward, the bed board synchronous mechanism is located in the synchronous mechanism groove and is connected with the second bed board, and the bed board synchronous mechanism can be connected with the first bed board to make the first bed board and the second bed board rotate synchronously.
[0004] The existing electric bed is not provided with the charging socket, plug strip and other devices for equipment, and the socket is usually arranged on the wall of patient's bed head for patients and medical staff to use, however, the oxygen supply device is usually arranged on the bed head of patient, so that there is a safety hazard, and explosion may occur. The position of bed head charging socket is high, which is not conducive to the charging use of accompanying personnel for charging mobile phone. UTILITY MODEL CONTENTS
[0005] The utility model aims at providing a kind of safe charging sickbed to solve the above insufficient place in prior art.
[0006] To achieve the above object, the utility model provides the following technical scheme:
[0007] The utility model provides a safe charging sickbed, including bedstead and bed board set up on the bedstead, the bedstead includes base and the frame body set up on the base, the bed board sets up on the frame body, still be provided with charging mechanism on the frame body, charging mechanism sets up directly below the bed board, charging mechanism includes installation assembly and charging socket, installation assembly includes installation bottom plate and installation shell set up on the installation bottom plate, the installation bottom plate is fixedly installed on the frame body, the installation shell is fixedly installed on the installation bottom plate, the length of installation shell is less than the length of installation bottom plate, the part of installation bottom plate corresponds with installation shell forms the accommodating cavity, the part of installation bottom plate is located in the open part of installation shell, the bottom of charging socket is provided with the sliding bottom plate, the sliding bottom plate is connected on the installation bottom plate, the sliding bottom plate along the installation bottom plate slides and makes charging socket have the collection state of collection to the accommodating cavity and the extension use state in the open part.
[0008] The safe charging sickbed, the charging socket is provided with a charging cord, the installation bottom plate is provided with an installation hole for the charging cord, and the end of the charging cord is provided with a charging plug.
[0009] The safe charging sickbed further comprises a locking assembly arranged on the installation shell and used for locking the charging socket in the collection state or the extension use state.
[0010] The safe charging sickbed, the opposite sides of the sliding bottom plate are provided with locking seats, the charging socket is located between the two locking seats, and the locking seats are provided with locking parts corresponding to the locking assembly.
[0011] The safe charging sickbed, the installation shell is provided with an installation top seat, the installation top seat is provided with a movement cavity, the top of the installation top seat is provided with an operation channel, and the operation channel communicates with the movement cavity.
[0012] The safe charging sickbed, the installation shell is provided with a movement channel, the movement channel communicates with the movement cavity, and the movement channel is coaxially arranged with the operation channel.
[0013] The safe charging sickbed, the locking assembly comprises a locking piece and a locking operation piece, the locking piece is provided with a movement rod, the movement rod is movably connected in the movement channel, the locking operation piece comprises an operation rod and a movement block arranged at the bottom of the operation rod, the movement block is slidably connected in the movement cavity, and the top of the movement rod is connected with the movement block.
[0014] The aforementioned rechargeable hospital bed further includes a locking assembly with a spring member located within the motion cavity. The lower end of the spring member is connected to the motion block, and the upper end of the spring member is connected to the top of the motion cavity.
[0015] The aforementioned rechargeable hospital bed has a locking structure at the bottom of the locking member corresponding to the locking part, a guide rod at the top of the locking member, a guide channel at the bottom of the mounting housing, and the guide rod slidably connected within the guide channel.
[0016] In the above technical solution, the safe charging hospital bed provided by this utility model includes a bed frame and a bed board set on the bed frame. The bed frame includes a base and a frame set on the base. The bed board is set on the frame, and a charging mechanism is also provided on the frame. The charging mechanism includes a mounting component and a charging plug. The mounting component includes a mounting base plate and a mounting shell set on the mounting base plate. The mounting base plate and the mounting shell form a receiving cavity and an open part. The bottom of the charging plug is provided with a sliding base plate. The sliding base plate slides along the mounting base plate so that the charging plug has a retracted state into the receiving cavity and an extended use state in the open part. Thus, when needed, the charging plug can be slid out to the extended use state for use by patients and caregivers. When not needed, the charging plug can be retracted into the receiving cavity, so that the charging plug can be stored away, improving the safety of use. Attached Figure Description
[0017] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in this utility model. For those skilled in the art, other drawings can be obtained based on these drawings.
[0018] Fig. 1 A schematic diagram of the structure of a rechargeable hospital bed provided in an embodiment of this utility model;
[0019] Fig. 2 A schematic diagram of the charging mechanism provided in an embodiment of this utility model;
[0020] Fig. 3 A schematic diagram of the locking component provided in an embodiment of this utility model.
[0021] Explanation of reference numerals in the attached figures:
[0022] 1. Bed frame; 11. Bed board; 12. Base; 13. Frame body; 2. Charging mechanism; 21. Charging strip; 22. Charging cable; 23. Charging plug; 24. Sliding base plate; 25. Locking seat; 26. Locking part; 27. Opening part; 3. Mounting assembly; 31. Mounting base plate; 32. Mounting shell; 321. Movement channel; 33. Receiving cavity; 34. Mounting top seat; 341. Operating channel; 342. Movement cavity; 4. Locking assembly; 41. Locking element; 411. Movement rod; 412. Locking structure; 42. Locking operation element; 421. Operating rod; 422. Movement block; 43. Spring element; 44. Guide rod; 45. Guide channel. Detailed Implementation
[0023] To enable those skilled in the art to better understand the technical solution of this utility model, the present utility model will be further described in detail below with reference to the accompanying drawings.
[0024] like Figs. 1-3 As shown, this utility model provides a safely rechargeable hospital bed, including a bed frame 1 and a bed board 11 mounted on the bed frame 1. The bed frame 1 includes a base 12 and a frame 13 mounted on the base 12. The bed board 11 is mounted on the frame 13, and a charging mechanism 2 is also provided on the frame 13. The charging mechanism 2 is located directly below the bed board 11. The charging mechanism 2 includes a mounting assembly 3 and a charging socket 21. The mounting assembly 3 includes a mounting base plate 31 and a mounting outer shell 32 mounted on the mounting base plate 31. The mounting base plate 31 is fixedly mounted on the frame 13, and the mounting outer shell 21... The housing 32 is fixedly mounted on the mounting base plate 31. The length of the housing 32 is less than the length of the mounting base plate 31. The portion of the mounting base plate 31 corresponding to the housing 32 forms a receiving cavity 33. The portion of the mounting base plate 31 located on one side of the housing 32 forms an open portion 27. A sliding base plate 24 is provided at the bottom of the charging plug 21. The sliding base plate 24 is slidably connected to the mounting base plate 31. The sliding base plate 24 slides along the mounting base plate 31 so that the charging plug 21 has a stored state in the receiving cavity 33 and an extended use state located in the open portion 27.
[0025] Specifically, the bed includes a bed frame 1 and a bed board 11 mounted on the bed frame 1. The bed frame 1 includes a base 12 and a frame 13 mounted on the base 12. The bottom of the base 12 is equipped with casters. The bed board 11 is mounted on the frame 13. The bed frame 1 and the bed board 11 are existing technologies and will not be described in detail. The difference between the bed in this embodiment and the existing technology is that a charging mechanism 2 is provided on the frame 13. The charging mechanism 2 is located directly below the bed board 11. The charging mechanism 2 includes a mounting component 3 and a charging plug 21. The charging plug 21 can be mounted on the frame 13 through the mounting component 3, so that the charging plug 21 is mounted on one side of the frame 13, and the charging plug 21 is arranged horizontally and perpendicular to the bed board 11. The socket of the charging plug 21 faces outward for easy use.
[0026] In this embodiment, the mounting assembly 3 includes a mounting base plate 31 and a mounting housing 32. The mounting base plate 31 is provided with a mounting structure corresponding to the frame 13, and the mounting base plate 31 can be mounted on the frame 13. The mounting housing 32 covers the mounting base plate 31, and the length of the mounting housing 32 is less than the length of the mounting base plate 31. Preferably, the length of the mounting housing 32 is equal to half the length of the mounting base plate 31. Thus, the mounting base plate 31 forms two parts. One part of the mounting base plate 31 is connected to the mounting housing 32, and a receiving cavity 33 that can accommodate the charging socket 21 is formed between the mounting housing 32 and the mounting base plate 31. The other part of the mounting base plate 31 is not equipped with the mounting housing 32, thus forming an open portion. The opening 27 is connected to the receiving cavity 33. A sliding base plate 24 is provided at the bottom of the charging plug 21. The sliding base plate 24 is slidably connected to the mounting base plate 31. The sliding base plate 24 moves along the mounting base plate 31 to different working positions, including two preset working positions: a first working position and a second working position. When the sliding base plate 24 slides to the first working position, the sliding base plate 24 slides completely into the receiving cavity 33, so that the charging plug 21 is stored in the receiving cavity 33 and is in a stored state. When the sliding base plate 24 slides to the second working position, the sliding base plate 24 slides to the opening 27, so that the charging plug 21 is in the opening 27 and is exposed in the extended use state.
[0027] The present invention provides a safe rechargeable hospital bed, comprising a bed frame 1 and a bed board 11 mounted on the bed frame 1. The bed frame 1 includes a base 12 and a frame 13 mounted on the base 12. The bed board 11 is mounted on the frame 13, and a charging mechanism 2 is also provided on the frame 13. The charging mechanism 2 includes a mounting assembly 3 and a charging plug 21. The mounting assembly 3 includes a mounting base plate 31 and a mounting housing 32 mounted on the mounting base plate 31. The mounting base plate 31 and the mounting housing 32 form a receiving cavity 33 and an open portion 27. A sliding base plate 24 is provided at the bottom of the charging plug 21. The sliding base plate 24 slides along the mounting base plate 31, so that the charging plug 21 has a retracted state into the receiving cavity 33 and an extended use state in the open portion 27. Thus, when needed, the charging plug 21 can be slid out into the extended use state for use by patients and caregivers. When not needed, the charging plug 21 can be retracted into the receiving cavity 33, thereby improving the safety of use.
[0028] In this embodiment, preferably, the charging power strip 21 is provided with a charging cable 22, the mounting base plate 31 is provided with mounting holes for the charging cable 22, the end of the charging cable 22 is provided with a charging plug 23, the charging plug 23 can be inserted and connected to the power supply structure, the charging cable 22 is mounted on the frame 13, and the charging cable 22 has a part of unfixed movable section, so that the charging power strip 21 and the sliding base plate 24 can move along the mounting base plate 31.
[0029] In this embodiment, preferably, a locking component 4 is also included, which is disposed on the mounting housing 32, for locking the charging power strip 21 in a stored state or an extended use state. Locking seats 25 are provided on opposite sides of the sliding base plate 24, and the charging power strip 21 is located between the two locking seats 25, that is, the two locking seats 25 are located at both ends of the length direction of the charging power strip 21. The locking seats 25 are provided with locking parts 26 corresponding to the locking component 4. The locking parts 26 are locking grooves provided on the locking seats 25. In this way, when the charging power strip 21 is needed during use, it can be slid into the open part 27 and locked by the locking component 4 and the locking parts 26, thereby facilitating use by patients and medical staff. When the charging power strip 21 is not needed, it can be slid into the receiving cavity 33 and locked by the locking component 4 and the locking parts 26, thus ensuring the safety of the charging power strip 21 when not in use.
[0030] In this embodiment, preferably, a mounting top seat 34 is provided on the mounting housing 32. The mounting top seat 34 and the mounting housing 32 can be an integral structure. A motion cavity 342 is provided inside the mounting top seat 34. An operation channel 341 is provided on the top of the mounting top seat 34. The upper end of the operation channel 341 passes through the mounting top seat 34 and is connected to the motion cavity 342. A motion channel 321 is provided on the mounting housing 32. The motion channel 321 passes through the mounting housing 32 and is connected to the motion cavity 342. The motion channel 321 and the operation channel 341 are coaxially arranged. Thus, the operation channel 341, the motion cavity 342, and the motion channel 321 are connected in sequence.
[0031] In this embodiment, preferably, the locking component 4 includes a locking member 41 and a locking operation member 42. The locking member 41 is located at the bottom of the mounting housing 32 and within the receiving cavity 33. The locking member 41 has a moving rod 411, which is movably connected in the movement channel 321. The locking operation member 42 includes an operation rod 421 and a moving block 422 disposed at the bottom of the operation rod 421. The moving block 422 is slidably connected in the movement cavity 342. The top of the moving rod 411 is connected to the moving block 422. The operation rod 421 is movably connected in the operation channel 341. The top of the operation rod 421 extends out of the operation channel 341 and is connected to an operation head. The lower end of the operation rod 421 is connected to the moving block 422. The lower end of the moving rod 411 is connected to the locking member 41, and the upper end of the moving rod 411 is connected to the moving block 422. Thus, the operation rod 421, the moving block 422, the moving rod 411, and the locking member 41 are connected together in sequence.
[0032] In this embodiment, preferably, the locking assembly 4 further includes a spring 43 located within the motion cavity 342. The lower end of the spring 43 is connected to the motion block 422, and the upper end of the spring 43 is connected to the top of the motion cavity 342. When the spring 43 is in its initial state, the locking member 41 moves to a lower position and locks with the locking part 26 on the locking seat 25, and the locking member 41 and the locking seat 25 are in a locked state. Conversely, if it is necessary to move the charging power strip 21 and the sliding base plate 24, the operating lever 421 is pulled upward, so that the operating lever 421 moves upward along the operating channel 341 and the motion block 422 moves upward within the motion cavity 342. This causes the spring 43 to be pressed against, and the movable rod to move upward along the movable channel, thereby separating the locking member 41 from the locking part 26 on the locking seat 25. The locking member 41 and the locking seat 25 are in an unlocked state, which allows the charging power strip 21 and the sliding base plate 24 to move. When the charging power strip 21 and the sliding base plate 24 move to the preset working position, the pull on the operating rod 421 is released. Under the action of the spring 43, the operating rod 421, the moving block 422, the moving rod 411 and the locking member 41 can be driven to move to the initial position. The locking member 41 locks with the locking part 26 on the locking seat 25, thereby fixing the charging power strip 21 and the sliding base plate 24.
[0033] In this embodiment, preferably, the bottom of the locking member 41 is provided with a locking structure 412 corresponding to the locking part 26. The locking structure 412 can be a locking block. The locking part 26 is provided on the locking member 41. The top of the locking member 41 is provided with a guide rod 44. There are two guide rods 44, which are respectively provided on both sides of the locking member 41. The bottom of the mounting housing 32 is provided with a guide channel 45. The guide rods 44 are slidably connected in the guide channel 45. In this way, during use, when the locking member 41 is driven to move up and down, the guide rods 44 move along the guide channel 45. Through the cooperation of the guide rods 44 and the guide channel 45, the movement of the locking member 41 can be guided and restricted.
[0034] The foregoing description only illustrates certain exemplary embodiments of the present invention. Undoubtedly, those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.
Claims
1. A rechargeable hospital bed, comprising a bed frame and a bed board disposed on the bed frame, characterized in that, The bed frame includes a base and a frame body mounted on the base. The bed board is mounted on the frame body, and a charging mechanism is also mounted on the frame body. The charging mechanism is located directly below the bed board. The charging mechanism includes a mounting assembly and a charging power strip. The mounting assembly includes a mounting base plate and a mounting housing mounted on the mounting base plate. The mounting base plate is fixedly mounted on the frame body, and the mounting housing is fixedly mounted on the mounting base plate. The length of the mounting housing is less than the length of the mounting base plate. The portion of the mounting base plate corresponding to the mounting housing forms a receiving cavity, and the portion of the mounting base plate located on one side of the mounting housing forms an open portion. The bottom of the charging power strip is provided with a sliding base plate, which is slidably connected to the mounting base plate. The sliding base plate slides along the mounting base plate, allowing the charging power strip to be in a retracted state within the receiving cavity and in an extended use state located in the open portion.
2. The rechargeable hospital bed according to claim 1, characterized in that, The charging power strip is provided with a charging cable, the mounting base plate is provided with mounting holes for the charging cable, and the end of the charging cable is provided with a charging plug.
3. The rechargeable hospital bed according to claim 1, characterized in that, It also includes a locking component disposed on the mounting housing for locking the charging power strip in the stored state or the extended use state.
4. The rechargeable hospital bed according to claim 3, characterized in that, Locking seats are provided on both sides of the sliding base plate, and the charging socket is located between the two locking seats. The locking seats are provided with locking parts corresponding to the locking components.
5. The rechargeable hospital bed according to claim 4, characterized in that, The mounting housing is provided with a mounting top, the mounting top is provided with a motion cavity, and the top of the mounting top is provided with an operation channel, which is connected to the motion cavity.
6. The rechargeable hospital bed according to claim 5, characterized in that, The mounting housing is provided with a motion channel, which is connected to the motion cavity and is coaxially arranged with the operation channel.
7. The rechargeable hospital bed according to claim 6, characterized in that, The locking assembly includes a locking member and a locking operating member. The locking member has a moving rod that is movably connected in the movement channel. The locking operating member includes an operating rod and a moving block disposed at the bottom of the operating rod. The moving block is slidably connected in the movement cavity, and the top of the moving rod is connected to the moving block.
8. The rechargeable hospital bed according to claim 7, characterized in that, The locking assembly also includes a spring element located within the motion cavity. The lower end of the spring element is connected to the motion block, and the upper end of the spring element is connected to the top of the motion cavity.
9. The rechargeable hospital bed according to claim 8, characterized in that, The bottom of the locking component is provided with a locking structure corresponding to the locking part, the top of the locking component is provided with a guide rod, the bottom of the mounting housing is provided with a guide channel, and the guide rod is slidably connected in the guide channel.
Citation Information
Patent Citations
Electric sickbed
CN116236358A