Multifunctional auxiliary anesthesia device for clinical anesthesiology department
By designing an automatic locking and unlocking control mechanism, the problem of manual locking required in existing anesthesia devices has been solved, enabling rapid and stable support and movement, thus improving the convenience and practicality of the device.
Patent Information
- Application Number
- CN202520273614.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-20
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2035-02-20
AI Technical Summary
Existing multifunctional clinical anesthesia auxiliary devices require staff to manually lock the moving wheels during use, resulting in additional physical burden and potential delays in operation time, thus reducing the convenience of the device.
A device comprising a base, casters, a drive module, a rotating rod, a connecting plate, a bracket, a hinge assembly, an adjustment assembly, and a control mechanism was designed. It achieves automatic locking and unlocking through foot pedal operation, reducing the number of manual locking operations and improving convenience.
The device achieves rapid and stable support and movement through foot pedal operation, reducing locking operation time, improving operational convenience and work efficiency, and enhancing practicality.
Smart Images

Figure CN223799976U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of medical instrument accessory device, especially to a multifunctional clinical anesthesiology department auxiliary anesthetic device. BACKGROUND
[0002] It is known that in modern medical practice, anesthesia equipment is an indispensable important component in the operating room, wherein the multifunctional clinical anesthesiology department auxiliary anesthetic device is a medical equipment specially designed for anesthesiology department, aiming to improve the safety and efficiency of the anesthesia process; this kind of equipment integrates multiple functions to support and optimize the anesthesia process, and the device usually includes a drug delivery system, a vital sign monitoring mechanism, a respiratory support mechanism and a data recording and analysis mechanism;
[0003] The existing multifunctional clinical anesthesiology department auxiliary anesthetic device is found that the existing anesthetic device is usually equipped with casters to facilitate the flexible transfer of the equipment between different operating rooms, and the staff needs to manually bend over or use the feet to lock the bottom casters multiple times to prevent the device from moving accidentally during the operation. It causes additional physical burden to medical staff, and in an emergency, it may delay the locking operation time, thereby reducing the convenience of the device, thus resulting in poor practicability. SUMMARY
[0004] To solve the above technical problems, the utility model provides a multifunctional clinical anesthesiology department auxiliary anesthetic device which can quickly and stably support the staff, reduce the working time of multiple locking operations, and improve the convenience of the device, thus enhancing the practicability.
[0005] The utility model relates to a multifunctional clinical anesthesiology department auxiliary anesthetic device, including device main part, still including base, four groups of casters, drive module, rotating rod, four groups of connecting plate, four groups of connecting block, four groups of support, four groups of bottom plate, hinged component, adjusting assembly, limiting component and control mechanism, device main part bottom and base top connection, base bottom even and four groups of caster top connection, base is provided with working cavity, base bottom and drive module top connection, drive module top output passes through base bottom and rotating rod bottom connection, rotating rod top and base working cavity top rotation connection, rotating rod outside passes through adjusting assembly even and four groups of connecting plate one end connection, four groups of connecting plate top respectively through limiting component and base working cavity bottom connection, four groups of connecting plate the other end respectively and a group of connecting block one end connection, four groups of connecting block bottom respectively through hinged component and support top hinged, base bottom even is provided with four groups of reserved hole, four groups of support outside respectively and a group of base reserved hole sliding sleeve, four groups of support bottom respectively and a group of bottom plate top connection, four groups of support outside top two ends respectively set up a group of fender, and base left end front side is provided with control mechanism.
[0006] Preferably, the control mechanism comprises a fixed block, two sets of pedals, two sets of pressure sensing modules and a buffer assembly, the left end of the base is connected with the right end of the fixed block, the top of the fixed block is uniformly provided with two sets of grooves, the bottom of each set of pressure sensing module is connected with the bottom of each set of groove of the fixed block, the outer side of each set of pedal is slidably sleeved with each set of groove of the fixed block, and the bottom of each set of pedal is connected with the bottom of each set of groove of the fixed block through the buffer assembly.
[0007] Preferably, the buffer assembly comprises a plurality of damping rods and a plurality of connecting springs, the bottom of each set of groove of the fixed block is connected with the bottom of each set of damping rod, the bottom of each set of pedal is connected with the top of each set of damping rod, and the outer side of each set of damping rod is provided with one set of connecting spring.
[0008] Preferably, the adjusting assembly comprises a first gear, four sets of second gears, four sets of mounting blocks, four sets of threaded cylinders and four sets of connecting screws, the outer side of the top of the rotating rod is connected with the inner side of the first gear, the bottom of the working cavity of the base is connected with the bottom of each set of mounting block, each set of mounting block is uniformly provided with one set of reserved hole, the outer side of each set of threaded cylinder is rotatably connected with one set of reserved hole of each set of mounting block, one end of each set of connecting screw is threadedly connected with the other end of each set of threaded cylinder, the outer side of each set of threaded cylinder is connected with the inner side of one set of second gear, one end of each set of second gear is engaged with one end of each set of first gear, and the other end of each set of connecting screw is connected with one end of each set of connecting plate.
[0009] Preferably, the limiting assembly comprises four sets of limiting blocks, the top of the working cavity of the base is uniformly provided with four sets of sliding grooves, the top of each set of limiting block is slidably connected with the sliding groove of the working cavity of the base, and the top of each set of connecting plate is connected with the bottom of one set of limiting block.
[0010] Preferably, the hinged assembly comprises a plurality of hinge seats and a plurality of supporting rods, the top of each set of connecting block is hingedly connected with one end of the supporting rod through two sets of hinge seats, and the bottom of each set of support is hingedly connected with the other end of the supporting rod through two sets of hinge seats.
[0011] Preferably, it further comprises four sets of anti-skid pads, and the bottom of each set of bottom plate is connected with the top of one set of anti-skid pad.
[0012] Preferably, the two sets of pressure sensing modules detect and output pressure signals in opposite directions.
[0013] The multifunctional auxiliary anesthetizing device for clinical anesthesiology department has the beneficial effects that: first, the staff moves the device to a suitable position through the moving wheels, then the staff steps on the control mechanism, the control mechanism sends a signal to the driving module, the rotating rod starts to rotate, then the four connecting plates start to slide outward through the adjusting assembly, and the four supports start to drive the bottom plate to lift through the hinged assembly, until the four bottom plates are in contact with the ground respectively, and the four moving wheels are separated from the ground, so that the supporting is completed, then the staff can start other operations, which can make the staff quickly and stably support the device, reduce the working time of multiple locking operations, and improve the convenience of the device, thus enhancing the practicability. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 is a right view structure perspective view of the utility model;
[0015] Figure 2 is a left view structure perspective view of the utility model;
[0016] Figure 3 is a bottom internal structure perspective view of the utility model;
[0017] Figure 4 is a part front view structure section view of the utility model;
[0018] Figure 5 is a local structure enlarged view of A of the utility model;
[0019] Markings in the drawings: 1, device main body; 2, base; 3, moving wheel; 4, driving module; 5, rotating rod; 6, connecting plate; 7, connecting block; 8, support; 9, bottom plate; 10, fixed block; 11, pedal; 12, pressure sensing module; 13, damping rod; 14, connecting spring; 15, first gear; 16, second gear; 17, mounting block; 18, threaded cylinder; 19, connecting screw; 20, limiting block; 21, hinged seat; 22, supporting rod; 23, non-slip pad. DETAILED DESCRIPTION
[0020] The specific embodiments of the utility model are described in further detail below in combination with the drawings and examples. The following examples are used to illustrate the utility model, but not to limit the scope of the utility model.
[0021] As Figures 1 to 5As shown, the utility model provides a kind of multifunctional clinical anesthesiology department auxiliary anesthetic device, including device main body 1, still including base 2, four groups of moving wheels 3, drive module 4, rotating rod 5, four groups of connecting plates 6, four groups of connecting blocks 7, four groups of supports 8, four groups of bottom plates 9, hinged assembly, adjusting assembly, limiting assembly and control mechanism, device main body 1 bottom and base 2 top connection, base 2 bottom is evenly connected with the top of four groups of moving wheels 3, base 2 is provided with working cavity, base 2 bottom and drive module 4 top connection, drive module 4 top output end passes through base 2 bottom and rotating rod 5 bottom connection, rotating rod 5 top and base 2 working cavity top rotation connection, rotating rod 5 outside is evenly connected with the one end of four groups of connecting plates 6 by adjusting assembly, and the top of four groups of connecting plates 6 is connected with the bottom of base 2 working cavity respectively by limiting assembly, and the other end of four groups of connecting plates 6 is connected with the one end of a group of connecting blocks 7 respectively, and the bottom of four groups of connecting blocks 7 is hinged with the top of support 8 respectively by hinged assembly, base 2 bottom is evenly provided with four groups of reserved holes, and the outside of four groups of supports 8 is slidably sleeved with a group of base 2 reserved holes respectively, and the bottom of four groups of supports 8 is connected with the top of a group of bottom plates 9 respectively, and the outside top of four groups of supports 8 is respectively provided with a group of stoppers, and base 2 left end front side is provided with control mechanism;First, staff moves to suitable position by moving wheel pushing device, then staff presses control mechanism, so that control mechanism sends signal to drive module, starts rotating rod to rotate, then four groups of connecting plates are slid outward by adjusting assembly, and are hinged by hinged assembly, so that four groups of supports start lifting bottom plate, until four groups of bottom plates contact ground respectively, and four groups of moving wheels and ground are disconnected simultaneously, i.e. support can be completed, then staff can start other operation, can make staff to the device stable support quickly, reduce the working time of multiple locking operations, to improve the convenience of device, thus enhance practicality.
[0022] As a preferred of the above embodiment, the control mechanism comprises the fixed block 10, the two sets of pedals 11, the two sets of pressure sensing modules 12 and the buffer assembly, the left end of the base 2 is connected with the right end of the fixed block 10, the top of the fixed block 10 is uniformly provided with the two sets of grooves, the bottom of the two sets of pressure sensing modules 12 is respectively connected with the bottom of one set of the grooves of the fixed block 10, the outer side of the two sets of pedals 11 is respectively sleeved with one set of the grooves of the fixed block 10, and the bottom of the two sets of pedals 11 is respectively connected with the bottom of one set of the grooves of the fixed block 10 through the buffer assembly; when the medical staff steps on one set of the pedals, the pedal starts to slide through the buffer assembly, and starts to extrude the corresponding pressure sensing module below at the same time, the pressure sensing module detects the pressure and generates a signal, the signal is transmitted to the driving module, the driving module drives the rotating rod to rotate in the positive direction according to the received signal, the rotating rod drives the four sets of connecting plates to expand outward through the adjusting assembly until the support is completed, when it is needed to move, another set of the pedals is stepped on, another set of the pressure sensing modules corresponding to the bottom of the pedals detects the pressure and generates an opposite signal, the driving module drives the rotating rod to reverse, the support is retracted into the base, the moving wheels re-contact the ground, and the moving state of the equipment is restored, so that the medical staff can easily control the locking and unlocking of the equipment through the foot pedal operation, without the need for manual operation by bending over, and the operation convenience and work efficiency are greatly improved, and therefore the practicability is enhanced.
[0023] As a preferred of the above embodiment, the buffer assembly comprises the plurality of damping rods 13 and the plurality of connecting springs 14, the bottom of the two sets of grooves of the fixed block 10 is respectively and uniformly connected with the bottom of the plurality of damping rods 13, the bottom of the two sets of pedals 11 is uniformly connected with the top of the plurality of damping rods 13, and the outer side of the plurality of damping rods 13 is respectively provided with one set of the connecting springs 14; the pressure impact during the pedal operation is effectively absorbed, the false triggering or equipment damage caused by the too large instantaneous pressure is avoided, the durability and safety of the equipment are improved, and the practicability is enhanced.
[0024] As the preferred of the above embodiment, the adjusting assembly comprises the first gear 15, four sets of second gears 16, four sets of mounting blocks 17, four sets of threaded barrels 18 and four sets of connecting screws 19, the outer side top of the rotating rod 5 is connected with the inner side of the first gear 15, the bottom of the working cavity of the base 2 is connected with the bottoms of the four sets of mounting blocks 17, the four sets of mounting blocks 17 are uniformly provided with a set of reserved holes, the outer sides of the four sets of threaded barrels 18 are rotationally connected with the reserved holes of a set of the mounting blocks 17 respectively, the other ends of the four sets of threaded barrels 18 are threadedly connected with one end of a set of the connecting screws 19 respectively, the outer sides of the four sets of threaded barrels 18 are connected with the inner sides of a set of the second gears 16 respectively, and one end of a set of the first gear 15 is engaged with a set of the second gears 16 respectively, and the other end of a set of the connecting screws 19 is connected with one end of a set of the connecting plates 6 respectively; the rotating rod drives the first gear to rotate, and through the engagement and clamping of the four sets of second gears and the first gear, the four sets of threaded barrels start to rotate, and the four sets of connecting screws start to drive the clamping plates to slide respectively, so that the stable support and quick recovery of the support can be ensured, and therefore the practicality is enhanced.
[0025] As the preferred of the above embodiment, the limiting assembly comprises four sets of limiting blocks 20, the top of the working cavity of the base 2 is uniformly provided with four sets of sliding grooves, the top of a set of the limiting blocks 20 is slidably connected with the sliding groove of the working cavity of the base 2 respectively, and the top of a set of the connecting plates 6 is connected with the bottom of a set of the limiting blocks 20 respectively; through the cooperation of the limiting blocks and the sliding grooves, the movement range of the connecting plates is limited, so that the connecting plates can keep stable during the unfolding and recovery process, and the equipment damage or instability caused by excessive movement is prevented, and therefore the practicality is enhanced.
[0026] As the preferred of the above embodiment, the hinge assembly comprises a plurality of hinge seats 21 and a plurality of support rods 22, the top of a set of the connecting blocks 7 is hingedly connected with one end of two sets of the hinge seats 21 and the support rods 22 respectively, and the bottom of a set of the supports 8 is hingedly connected with the other end of two sets of the hinge seats 21 and the support rods 22 respectively; through the design of the plurality of hinge seats and the support rods, the hinge assembly realizes the flexible connection between the supports and the connecting blocks, ensures that the supports can be smoothly unfolded and recovered, and provides additional support stability, and therefore the practicality is enhanced.
[0027] As the preferred of the above embodiment, it further comprises four sets of anti-skid pads 23, the bottom of a set of the bottom plates 9 is connected with the top of a set of the anti-skid pads 23 respectively; the anti-skid pads increase the friction between the bottom plates and the ground, so that the equipment cannot slide during use, and therefore the practicality is enhanced.
[0028] As the preferred of the above embodiment, the two sets of pressure sensing modules 12 detect and transmit the pressure signals in opposite directions of the driving module 4 respectively.
[0029] The utility model discloses a multifunctional clinical anesthesiology department supplementary anesthetic device, and when working, first staff moves to the suitable position through the mobile wheel pusher, and medical staff presses down a group of footboards, and the footboard starts to slide through the buffer assembly, and starts to extrude the corresponding pressure sensing module below, and the pressure sensing module detects the pressure and generates the signal, and the signal is transmitted to the drive module, and the drive module drives the rotating rod to rotate according to the received signal, and the rotating rod starts to drive the first gear to rotate, and through the meshing and clamping of four second gears and first gears, four threaded barrels start to rotate, and four connecting screw rods start to slide through the limiting block and drive the clamping plate, and through the hinge and support rod hinging, four supports start to drive the bottom plate to lift, until four bottom plates contact the ground respectively, and four mobile wheels and the ground are separated, and can support, and then staff can start other operations, and first move to the position required by the user before completing the above-mentioned action.
[0030] The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only.
[0031] The "first", "second", "third" in the utility model do not represent the specific quantity and order, and are only used for distinguishing the names.
[0032] The above-mentioned is only the preferred implementation mode of the utility model, and it should be pointed out that for ordinary skilled person in the art, on the premise of not departing from the technical principle of the utility model, a plurality of improvements and variations can be made, and these improvements and variations should be regarded as the protection scope of the utility model.
Claims
1. A multifunctional auxiliary anesthesia device for clinical anesthesiology department, comprising a device main body (1), characterized in that, It also includes the base (2), four groups of mobile wheels (3), drive module (4), rotating rod (5), four groups of connecting plate (6), four groups of connecting block (7), four groups of support (8), four groups of bottom plate (9), hinge assembly, adjusting assembly, limiting assembly and control mechanism, device main part (1) bottom and base (2) top connection, base (2) bottom and four groups of mobile wheels (3) top connection, base (2) is provided with working cavity, base (2) bottom and drive module (4) top connection, drive module (4) top output end through the base (2) bottom and rotating rod (5) bottom connection, rotating rod (5) top and base (2) working cavity top rotation connection, rotating rod (5) outside through adjusting assembly even and four groups of connecting plate (6) one end connection, four groups of connecting plate (6) top are connected through limiting assembly and base (2) working cavity bottom respectively, four groups of connecting plate (6) the other end are connected with a group of connecting block (7) one end respectively, four groups of connecting block (7) bottom are hinged through hinge assembly and support (8) top respectively, the bottom of base (2) is evenly provided with four groups of reserved holes, four groups of support (8) outside are respectively and a group of base (2) reserved hole sliding sleeve, four groups of support (8) bottom are connected with a group of bottom plate (9) top respectively, four groups of support (8) outside top two ends are provided with a group of stopper respectively, and the left side of base (2) front is provided with control mechanism.
2. The multifunctional auxiliary anesthesia device for clinical anesthesiology department according to claim 1, characterized in that, The control mechanism comprises a fixed block (10), two groups of pedals (11), two groups of pressure sensor modules (12) and buffer assembly, the left side of base (2) front and fixed block (10) right end connection, the top of fixed block (10) is evenly provided with two groups of grooves, and the bottom of two groups of pressure sensor modules (12) is connected with a group of fixed block (10) groove bottom respectively, the outside of two groups of pedals (11) is respectively and a group of fixed block (10) groove sliding sleeve, the bottom of two groups of pedals (11) is connected through buffer assembly and a group of fixed block (10) groove bottom respectively.
3. The multifunctional auxiliary anesthesia device for clinical anesthesiology department according to claim 2, characterized in that, The buffer assembly comprises a plurality of damping rods (13) and a plurality of connecting springs (14), the bottom of two groups of fixed block (10) groove is connected with a plurality of damping rods (13) bottom respectively, the bottom of two groups of pedals (11) is connected with a plurality of damping rods (13) top respectively, the outside of a plurality of damping rods (13) is provided with a group of connecting springs (14) respectively.
4. The multifunctional auxiliary anesthesia device for clinical anesthesiology department according to claim 3, characterized in that, The adjusting assembly comprises a first gear (15), four second gears (16), four mounting blocks (17), four threaded barrels (18) and four connecting screws (19), the outer top of the rotating rod (5) is connected with the inner side of the first gear (15), the bottom of the working cavity of the base (2) is connected with the bottoms of the four mounting blocks (17), the four mounting blocks (17) are uniformly provided with a group of reserved holes, the outer sides of the four threaded barrels (18) are rotationally connected with the reserved holes of the mounting blocks (17) respectively, the other ends of the four threaded barrels (18) are threadedly connected with one ends of the connecting screws (19) respectively, the outer sides of the four threaded barrels (18) are connected with the inner sides of the four second gears (16) respectively, the four second gears (16) are engaged with one end of the first gear (15) respectively, and the other ends of the four connecting screws (19) are connected with one end of the connecting plate (6) respectively.
5. The multi-functional auxiliary anesthesia device for clinical anesthesiology department according to claim 4, characterized in that, The limiting assembly comprises four limiting blocks (20), the top of the working cavity of the base (2) is uniformly provided with four sliding grooves, the tops of the four limiting blocks (20) are slidingly connected with the sliding grooves of the working cavity of the base (2) respectively, and the tops of the four connecting plates (6) are connected with the bottoms of the limiting blocks (20) respectively.
6. The multifunctional auxiliary anesthesia device for clinical anesthesiology department according to claim 5, characterized in that, The hinged assembly comprises a plurality of hinge bases (21) and a plurality of supporting rods (22), the tops of the four connecting blocks (7) are hingedly connected with one ends of the two hinge bases (21) and the supporting rods (22) respectively and uniformly, and the bottoms of the four supports (8) are hingedly connected with the other ends of the two hinge bases (21) and the supporting rods (22) respectively and uniformly.
7. The multi-functional auxiliary anesthesia apparatus for clinical anesthesiology department according to claim 6, characterized in that, The two groups of pressure sensing modules (12) detect and output pressure signals in opposite directions respectively.
8. The multifunctional auxiliary anesthesia device for clinical anesthesiology department according to claim 7, characterized in that, The two groups of pressure sensing modules (12) detect and output pressure signals in opposite directions respectively.