Multifunctional auxiliary monitoring device for cardiovascular medicine department
By designing adjustment and placement mechanisms, limiting mechanisms, evacuation mechanisms and monitoring mechanisms in the auxiliary monitoring equipment of cardiovascular medicine, the heat accumulation problems caused by linear winding and knotting and high frequency use are solved, and the efficient use and safety and stability of the equipment are achieved.
Patent Information
- Application Number
- CN202510257349.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-05
- Publication Date
- 2025-06-06
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing cardiovascular auxiliary monitoring equipment is prone to the problem of linear body winding and knotting during use, and high frequency use will generate a lot of heat, and the existing heat dissipation method is insufficient to deal with in a timely manner.
A multifunctional cardiovascular auxiliary monitoring device is designed, using adjustment and placement mechanisms and limit mechanisms to manage the line body to prevent entanglement; at the same time, through the evacuation mechanism and monitoring mechanism, the use of airflow and single-phase motor technologies can achieve effective heat dissipation and energy evacuation.
Effectively prevent wires from winding and knotting, improving usage efficiency; by timely evacuating heat and energy, avoiding equipment overheating and damage, ensuring the stability and safety of equipment.
Smart Images

Figure CN120093242A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of cardiovascular medicine auxiliary monitoring, and in particular to a multifunctional cardiovascular medicine auxiliary monitoring device. Background Art
[0002] At present, the cardiovascular system is a human structure composed of the heart and blood vessels. The cardiovascular system is a closed circulation pipeline. Its main function is to supply oxygen, various nutrients, endocrine hormones, etc. to organs and tissues, and to transport the waste of tissue metabolism to the excretory organs to maintain the homeostasis of the body's internal environment, the progress of metabolism and maintain normal life activities.
[0003] During the use of existing equipment, there will be many different wires, and the existing equipment does not have the function of bundling multiple wires. If too many wires are used and they are not bundled, they will become entangled and knotted. The frequency of use of this equipment in cardiovascular medicine is very high. If an abnormal situation occurs, it needs to be processed, which affects the efficiency during later use. In addition, if it is used frequently, a large amount of heat will be generated, and the existing heat dissipation methods all use static tests. If an abnormal situation occurs, it cannot be processed in time. Summary of the invention
[0004] The purpose of the present invention is to provide a multifunctional cardiovascular medicine auxiliary monitoring device to solve the problems raised in the above background technology.
[0005] To achieve the above object, the present invention provides the following technical solutions: a multifunctional cardiovascular medicine auxiliary monitoring device, comprising a working frame, a cardiovascular medicine nursing monitor is movably installed on the front side of the working frame;
[0006] An adjustment placement mechanism, the adjustment placement mechanism comprises a movable installation rod and a working rod, the movable installation rod is placed on the top of the working frame, and a plurality of working rods are equidistantly installed on the front and rear sides of the movable installation rod;
[0007] The evacuation mechanism comprises a heat dissipation filter plate and a movable baffle. A movable through groove is provided at the top of the inner cavity of the working frame. The heat dissipation filter plate is installed inside the movable through groove. A movable baffle is movably installed at the top of the heat dissipation filter plate.
[0008] Preferably, a movable base plate is installed at the bottom of the working frame, operating handles are installed on the upper ends of both sides of the working frame, a rectangular notch is opened on the front side of the working frame, a control panel is installed on the rear side of the working frame, the cardiovascular nursing monitor is electrically connected to the control panel, and an evacuation groove is opened on the movable base plate directly below the heat dissipation filter plate.
[0009] Preferably, the adjusting and placing mechanism also includes a pulling spring, a movable cylinder, a moving rod, a moving piston, a working air pump, a connecting plate, an installation opening, an installation slot and a rubber hook. The working frame has an installation opening at the top, a moving rod is installed at the bottom end of the movable installation rod, a movable cylinder is provided in the inner cavity of the working frame, the moving rod extends into the movable cylinder, the top of the movable cylinder is located in the installation opening, a moving piston is installed at the bottom end of the moving rod, a connecting plate is installed at the bottom end of the movable cylinder, pulling springs in a stretched state are installed around the top of the connecting plate, and the top of the pulling spring is connected to the top of the inner cavity of the working frame.
[0010] Preferably, a plurality of installation slots are equidistantly provided at the bottom end of the working rod, a rubber hook is installed in the inner cavity of the installation slot through a hinge, a working air pump is installed at the bottom end of the movable cylinder, the working air pump is electrically connected to the control panel, and a connecting air hole is provided at the bottom end of the movable cylinder.
[0011] Preferably, the device also includes a limiting mechanism, which includes an installation port, a movable limiting block, an installation recess, a working spring, a limiting recess, an extrusion block, a small electric push rod and a fixed electromagnetic block. An installation port is opened on the front side of the inner cavity of the installation port, a small electric push rod is installed on the front side of the inner cavity of the installation port, a rubber layer is installed on the rear side of the inner cavity of the installation port, an extrusion block is installed on the rear end of the small electric push rod, a rubber layer is installed on the rear side of the extrusion block, and the small electric push rod is electrically connected to the control panel.
[0012] Preferably, an installation recess is opened on the rear side of the inner cavity of the installation recess, a fixed electromagnetic block is installed on the rear side of the inner cavity of the installation recess, the fixed electromagnetic block is electrically connected to the control panel, a movable limit block is arranged on the front side of the inner cavity of the installation recess, the cross-section of the movable limit block is a T-shaped structure, a plurality of working springs are installed around the front side of the inner cavity of the installation recess, the rear end of the working spring is connected to the movable limit block, a patch is installed on the rear side of the movable limit block, a round ball is installed on the front end of the movable limit block, and a plurality of limit recesses are opened at equal intervals on the rear side of the movable cylinder.
[0013] Preferably, the evacuation mechanism also includes a rotating rod, a single-phase motor, a turbofan head, a conveying port, an installation spring, an installation slide groove, an installation slider, a movable inclined block, a movable rotating rod and a pushing inclined block. A single-phase motor is installed at the top end of the rear side of the inner cavity of the working frame, and a rotating rod is installed at the output shaft at the bottom end of the single-phase motor. Stable bearings are installed at the upper and bottom ends of the rotating rod, and one end of the stable bearing is connected to the inner cavity of the working frame. A turbofan head is installed at the bottom end of the rotating rod, and a movable rotating rod is installed at the bottom end of the turbofan head. A pushing inclined block is installed on one side of the bottom end of the movable rotating rod, and a movable inclined block is installed on the rear side of the movable baffle.
[0014] Preferably, a plurality of mounting grooves are provided on the front and rear sides of the bottom inner cavity of the working frame, mounting slide blocks are installed on the front side of the bottom end of the movable baffle plate at the relative position of the mounting slide grooves, and mounting slide blocks are installed on the rear side of the bottom end of the movable inclined block. The mounting slide blocks are slidably connected to the inner cavity of the mounting grooves, a mounting spring is installed on the front end of the mounting slide blocks on the front side, and a movable baffle is installed on the rear side of the working frame.
[0015] Preferably, the device includes a monitoring mechanism, which includes a monitoring frame head, an aluminum bar, a moving block and a touch switch. The bottom end of the cardiovascular medicine nursing monitor is equipped with a monitoring frame head, the bottom end of the cardiovascular medicine nursing monitor is equipped with an aluminum bar at a relative position to the monitoring frame head, the bottom end of the aluminum bar is equipped with a moving block, the bottom end of the inner cavity of the monitoring frame head is equipped with a touch switch, a number of round balls are movably installed around the outside of the moving block, and the touch switch is electrically connected to the control panel.
[0016] Compared with the prior art, the present invention has the following beneficial effects:
[0017] 1. The present invention uses a limiting mechanism and an adjusting placement mechanism in coordination. During use, if too many wires are needed, a plurality of limiting components are placed to centrally place the wires and bundle them, thereby increasing protection during use. The height of the bundle can also be adjusted in multiple layers according to the needs during use, thereby increasing applicability during use and reducing limitations during use. This avoids the need for multiple different wires to be placed together in a chaotic manner, which results in the wires being tangled and affecting the efficiency of later use.
[0018] 2. The present invention simultaneously cooperates with the monitoring mechanism and the evacuation mechanism in the use of the cardiovascular medicine nursing monitor. If an unexpected situation occurs and energy accumulates inside the working frame, it can be monitored in time. When detected, it can be processed in time, and airflow is generated inside the working frame. The energy accumulated inside the working frame is evacuated to the outside through the airflow, thereby ensuring stability and protection during use, and avoiding the situation in which energy accumulates in an unexpected situation during use, which will cause overheating and burning if it cannot be evacuated in time. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 Provides an overall structural diagram for an embodiment of the present invention;
[0020] Figure 2 A structural diagram of a horizontal side view of a working frame provided by an embodiment of the present invention;
[0021] Figure 3 A structural diagram of a cross-section of a movable cylinder provided in an embodiment of the present invention;
[0022] Figure 4A structural diagram of a horizontal side view of the top of a working frame provided by an embodiment of the present invention;
[0023] Figure 5 A structural diagram of a horizontal side view of the bottom end of the inner cavity of a working frame provided by an embodiment of the present invention;
[0024] Figure 6 The embodiment of the present invention provides Figure 2 A magnified structural diagram.
[0025] In the figure: 1, working frame; 2, cardiovascular nursing monitor; 3, adjusting placement mechanism; 301, movable mounting rod; 302, working rod; 303, pulling spring; 304, movable cylinder; 305, moving rod; 306, moving piston; 307, working air pump; 308, connecting plate; 309, installation opening; 310, installation notch; 311, rubber hook; 4, limiting mechanism; 401, installation opening; 402, movable limiting block; 403, installation notch; 404, working spring; 405, limiting notch; 406, extrusion block; 407, Small electric push rod; 408, fixed electromagnetic block; 5, evacuation mechanism; 501, rotating rod; 502, single-phase motor; 503, turbofan head; 504, conveying port; 505, heat dissipation filter plate; 506, installation spring; 507, installation slide; 508, installation slide; 509, moving baffle; 510, moving inclined block; 511, movable rotating rod; 512, pushing inclined block; 6, monitoring mechanism; 601, monitoring frame head; 602, aluminum bar; 603, moving block; 604, touch switch; 7, operating handle; 8, moving bottom plate; 9, movable baffle. DETAILED DESCRIPTION
[0026] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0027] See also Figure 1-6 , the present invention provides a technical solution: a multifunctional cardiovascular medicine auxiliary monitoring device, comprising a working frame 1, a cardiovascular medicine nursing monitor 2 is movably installed on the front side of the working frame 1;
[0028] The adjusting and placing mechanism 3 includes a movable mounting rod 301 and a working rod 302. The movable mounting rod 301 is placed on the top of the working frame 1, and a plurality of working rods 302 are equidistantly installed on the front and rear sides of the movable mounting rod 301;
[0029] The evacuation mechanism 5 includes a heat dissipation filter plate 505 and a movable baffle 509. A movable through groove is provided at the top of the inner cavity of the working frame 1. The heat dissipation filter plate 505 is installed inside the movable through groove. A movable baffle 509 is movably installed at the top of the heat dissipation filter plate 505.
[0030] A movable bottom plate 8 is installed at the bottom of the working frame 1, operating handles 7 are installed at the upper ends of both sides of the working frame 1, a rectangular notch is opened at the front side of the working frame 1, a control panel is installed at the rear side of the working frame 1, and the cardiovascular nursing monitor 2 is electrically connected to the control panel. The movable bottom plate 8 is located directly below the heat dissipation filter plate 505 and has an evacuation slot;
[0031] The adjusting placement mechanism 3 also includes a pulling spring 303, a movable cylinder 304, a moving rod 305, a moving piston 306, a working air pump 307, a connecting plate 308, an installation opening 309, an installation notch 310 and a rubber hook 311. The top of the working frame 1 is provided with an installation opening 309, the bottom end of the movable installation rod 301 is provided with a moving rod 305, the inner cavity of the working frame 1 is provided with a movable cylinder 304, the moving rod 305 extends into the inside of the movable cylinder 304, the top end of the movable cylinder 304 is located inside the installation opening 309, the bottom end of the moving rod 305 is provided with a moving piston 306, the bottom end of the movable cylinder 304 is provided with a connecting plate 308, the top of the connecting plate 308 is provided with a pulling spring 303 in a stretched state, and the top end of the pulling spring 303 is connected to the top end of the inner cavity of the working frame 1;
[0032] A plurality of installation slots 310 are equidistantly provided at the bottom of the working rod 302. A rubber hook 311 is installed in the inner cavity of the installation slot 310 through a hinge. A working air pump 307 is installed at the bottom of the movable cylinder 304. The working air pump 307 is electrically connected to the control panel. A connecting air hole is provided at the bottom of the movable cylinder 304.
[0033] The specific implementation method is as follows: when using multiple wires, the movable installation rod 301 and the working rod 302 are driven to move upward through the movable cylinder 304, and then a part of the wire is contacted and fixed with the inside of the rubber hook 311 to fix the wires. When a higher wiring position is required, the working air pump 307 is started to supply air to the inside of the movable cylinder 304 to increase the air pressure at the bottom end of the movable cylinder 304, and push the movable piston 306 and the movable rod 305 to move upward, and continue to drive the movable installation rod 301 and the working rod 302 to move upward, thereby increasing the applicability during use.
[0034] The device also includes a limiting mechanism 4, which includes a mounting port 401, a movable limiting block 402, a mounting recess 403, a working spring 404, a limiting recess 405, an extrusion block 406, a small electric push rod 407 and a fixed electromagnetic block 408. The mounting port 401 is provided at the front side of the inner cavity of the mounting port 309, a small electric push rod 407 is installed at the front side of the inner cavity of the mounting port 401, a rubber layer is installed at the rear side of the inner cavity of the mounting port 401, an extrusion block 406 is installed at the rear end of the small electric push rod 407, a rubber layer is installed at the rear side of the extrusion block 406, and the small electric push rod 407 is electrically connected to the control panel;
[0035] An installation recess 403 is provided at the rear side of the inner cavity of the installation opening 309, a fixed electromagnetic block 408 is installed at the rear side of the inner cavity of the installation recess 403, and the fixed electromagnetic block 408 is electrically connected to the control panel. A movable limit block 402 is provided at the front side of the inner cavity of the installation recess 403, and the cross section of the movable limit block 402 is a T-shaped structure. A plurality of working springs 404 are installed around the front side of the inner cavity of the installation recess 403, and the rear side end of the working spring 404 is connected to the movable limit block 402. A patch is installed at the rear side of the movable limit block 402, and a round ball is installed at the front end of the movable limit block 402. A plurality of limit recesses 405 are equidistantly provided at the rear side of the movable cylinder 304;
[0036] The specific implementation is as follows: when a lot of wires appear during use, the fixed electromagnetic block 408 is started through the control panel to make the fixed electromagnetic block 408 generate magnetism, and the movable limit block 402 is driven to move by magnetic attraction, and the working spring 404 is stretched during movement. Later, the movable limit block 402 is driven to reset by the stretched working spring 404. When the movable limit block 402 moves, it is separated from the inside of the limit recess 405, so that the movable cylinder 304 loses its restraining force, and the movable cylinder 304 is driven to move upward by the pulling spring 303 in a stretched state. Starting the fixed electromagnetic block 408 is indirectly started. When the fixed electromagnetic block 408 is closed, the movable limit block 402 is driven to move by the working spring 404, so that the front end of the movable limit block 402 contacts the rear side of the movable cylinder 304. When the movable cylinder 304 is in contact with the movable cylinder 304, the movable cylinder 304 is in contact with the movable cylinder 304. When 304 drives the limiting recess 405 to move, the front end of the movable limiting block 402 is engaged with the inner cavity of the limiting recess 405 to limit and fix the movable cylinder 304. When there are too many wires in the wire bundle, the small electric push rod 407 is started to drive the extrusion block 406 to move, so that the extrusion block 406 contacts and is extruded and fixed with the outside of the movable cylinder 304. During use, if too many wires are needed, the wires can be placed in a concentrated manner through the placement of several limiting components to increase the protection during use. The height of the wire bundle can also be adjusted in multiple layers according to the needs during use, which increases the applicability during use and reduces the limitations during use. It is avoided that during use, multiple different wires are needed, and the wires are placed together in a chaotic manner, resulting in knots in the wires, affecting the efficiency of later use.
[0037] The evacuation mechanism 5 also includes a rotating rod 501, a single-phase motor 502, a turbofan head 503, a conveying port 504, a mounting spring 506, a mounting slide 507, a mounting slide block 508, a moving inclined block 510, a movable rotating rod 511 and a pushing inclined block 512. The single-phase motor 502 is installed at the top of the rear side of the inner cavity of the working frame 1, and the rotating rod 501 is installed at the output shaft at the bottom end of the single-phase motor 502. Stable bearings are installed at the upper and bottom ends of the rotating rod 501, and one end of the stable bearing is connected to the inner cavity of the working frame 1. The turbofan head 503 is installed at the bottom end of the rotating rod 501, and the movable rotating rod 511 is installed at the bottom end of the turbofan head 503. A pushing inclined block 512 is installed on one side of the bottom end of the movable rotating rod 511, and a moving inclined block 510 is installed at the rear side of the movable baffle 509;
[0038] A plurality of mounting grooves 507 are provided at the front and rear sides of the inner cavity of the working frame 1. A mounting slide block 508 is provided at the front side of the bottom end of the movable baffle 509 at a position relative to the mounting groove 507. A mounting slide block 508 is provided at the rear side of the bottom end of the movable inclined block 510. The mounting slide block 508 is slidably connected with the inner cavity of the mounting groove 507. A mounting spring 506 is provided at the front end of the front mounting slide block 508. A movable baffle 9 is provided at the rear side of the working frame 1, and a heat dissipation hole is provided on the outside of the movable baffle 9.
[0039] The specific implementation is as follows: when the single-phase motor 502 is started, the rotating rod 501 is driven to rotate, and the turbofan head 503 is driven to rotate inside the working frame 1 through the rotating rod 501, and an airflow is generated inside the working frame 1. When the turbofan head 503 rotates, the movable rotating rod 511 is driven to rotate, which drives the pushing inclined block 512 to rotate. When the inclined surface of the pushing inclined block 512 contacts the inclined surface of the moving inclined block 510, the moving inclined block 510 is pushed to move forward, and the moving baffle plate 509 is driven to move on the upper end of the heat dissipation filter plate 505. When the moving baffle plate 509 moves, the installation slider 508 is driven to move inside the installation slide groove 507, thereby increasing the stability of the moving baffle plate 509 when moving. When the installation slider 508 on the front side moves, the installation spring 506 is squeezed. When the pushing inclined block 512 is separated from the moving inclined block 510, the installation spring 506 is squeezed. The spring 506 drives the movable baffle 509 to reset, and the movable baffle 509 moves back and forth on the upper end of the heat dissipation filter plate 505 in this cyclic operation. Since the circular hole opened on the upper end of the movable baffle 509 is in a dislocation structure with the heat dissipation hole inside the heat dissipation filter plate 505, when the movable baffle 509 moves, the circular hole will move to the upper end of the heat dissipation hole for evacuation. During the use of the cardiovascular internal medicine nursing monitor 2, if an unexpected situation occurs and energy accumulates inside the working frame 1, it can be monitored in time. When monitored, it can be processed in time, and airflow is generated inside the working frame 1. The energy accumulated in the working frame 1 is evacuated to the outside through the airflow, thereby ensuring stability and protection during use, and avoiding the situation of over-temperature and burning when energy accumulates in an unexpected situation during use.
[0040] The device includes a monitoring mechanism 6, which includes a monitoring frame head 601, an aluminum bar 602, a moving block 603 and a touch switch 604. The monitoring frame head 601 is installed at the bottom of the cardiovascular internal medicine nursing monitor 2, and the aluminum bar 602 is installed at the bottom of the cardiovascular internal medicine nursing monitor 2 at a relative position to the monitoring frame head 601. The moving block 603 is installed at the bottom of the aluminum bar 602. The touch switch 604 is installed at the bottom of the inner cavity of the monitoring frame head 601. A plurality of round beads are movably installed around the outside of the moving block 603, and the touch switch 604 is electrically connected to the control panel.
[0041] The specific implementation is as follows: during high-frequency use of the cardiovascular nursing monitor 2, a large amount of heat is generated and it will come into contact with the aluminum bar 602. When the aluminum bar 602 comes into contact with the heat, it will expand and drive the moving block 603 to move downward. When the moving block 603 moves downward, the bottom end of the moving block 603 comes into contact with the touch switch 604 and triggers the control panel to start the single-phase motor 502.
[0042] Working principle: When using multiple wires, the present invention drives the movable installation rod 301 and the working rod 302 to move upward through the movable cylinder 304, and then a part of the wire is fixed in contact with the inside of the rubber hook 311, so that the wires are fixed. When a higher wire bundling position is required, the working air pump 307 is started to supply air to the inside of the movable cylinder 304, thereby increasing the air pressure at the bottom end of the movable cylinder 304, and pushing the movable piston 306 and the movable rod 305 to move upward, and continuing to drive the movable installation rod 301 and the working rod 302 to move upward, thereby increasing the applicability during use. When many wires appear during use, the fixed electromagnetic block 408 is started through the control panel to generate magnetism, and the movable limit block 402 is driven to move through magnetic attraction, and the working spring 404 is stretched during movement, and later through stretching The working spring 404 drives the movable limit block 402 to reset. When the movable limit block 402 moves, it separates from the inside of the limit recess 405, so that the movable cylinder 304 loses its restraining force, and the movable cylinder 304 is driven to move upward by the pulling spring 303 in a stretched state. Starting the fixed electromagnetic block 408 is indirectly started. When the fixed electromagnetic block 408 is closed, the movable limit block 402 is driven to move by the working spring 404, so that the front end of the movable limit block 402 contacts the rear side of the movable cylinder 304. When the movable cylinder 304 drives the limit recess 405 to move, the front end of the movable limit block 402 is engaged with the inner cavity of the limit recess 405, and the movable cylinder 304 is limited and fixed. When there are too many wires in the bundle, the small electric push rod 407 is started to drive the extrusion block 406 to move, so that the extrusion block 406 contacts the outside of the movable cylinder 304 and is extruded and fixed;
[0043] During the high-frequency use of the cardiovascular nursing monitor 2, a large amount of heat is generated and it will contact the aluminum bar 602. When the aluminum bar 602 contacts the heat, it will expand and drive the moving block 603 to move downward. When the moving block 603 moves downward, the bottom end of the moving block 603 contacts the touch switch 604, and triggers the control panel to start the single-phase motor 502. When the single-phase motor 502 is started, the rotating rod 501 is driven to rotate, and the turbofan head 503 is driven to rotate inside the working frame 1 through the rotating rod 501, and airflow is generated inside the working frame 1. When the turbofan head 503 rotates, it drives the movable rotating rod 511 to rotate, which drives the pushing inclined block 512 to rotate. When the inclined surface of the pushing inclined block 512 contacts the inclined surface of the moving inclined block 510, the moving inclined block 510 is pushed. 10 moves forward and drives the movable baffle 509 to move on the upper end of the heat dissipation filter plate 505. When the movable baffle 509 moves, it drives the installation slider 508 to move inside the installation slide groove 507, thereby increasing the stability of the movable baffle 509 when moving. When the installation slider 508 on the front side moves, the installation spring 506 is squeezed. When the inclined block 512 is pushed and separated from the movable inclined block 510, the movable baffle 509 is reset by the squeezed installation spring 506. In this cyclic operation, the movable baffle 509 is reciprocated on the upper end of the heat dissipation filter plate 505. Since the circular hole opened at the upper end of the movable baffle 509 is in a dislocation structure with the heat dissipation hole inside the heat dissipation filter plate 505, when the movable baffle 509 moves, the circular hole will move to the upper end of the heat dissipation hole for evacuation.
[0044] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.
[0045] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A multifunctional cardiovascular medicine auxiliary monitoring device, comprising a working frame (1), a cardiovascular medicine nursing monitor (2) being movably mounted on the front side of the working frame (1), characterized in that: An adjusting and placing mechanism (3), the adjusting and placing mechanism (3) comprising a movable mounting rod (301) and a working rod (302), the movable mounting rod (301) being placed on the top of the working frame (1), and a plurality of working rods (302) being equidistantly mounted on the front and rear sides of the movable mounting rod (301); An evacuation mechanism (5), the evacuation mechanism (5) comprising a heat dissipation filter plate (505) and a movable baffle plate (509), a movable through groove being provided at the top of the inner cavity of the working frame (1), the heat dissipation filter plate (505) being installed inside the movable through groove, and a movable baffle plate (509) being movably installed at the top of the heat dissipation filter plate (505).
2. A multifunctional cardiovascular medicine auxiliary monitoring device according to claim 1, characterized in that: A movable base plate (8) is installed at the bottom of the working frame (1), operating handles (7) are installed at the upper ends of both sides of the working frame (1), a rectangular notch is provided on the front side of the working frame (1), a control panel is installed on the rear side of the working frame (1), the cardiovascular nursing monitor (2) is electrically connected to the control panel, and an evacuation slot is provided on the movable base plate (8) directly below the heat dissipation filter plate (505).
3. A multifunctional cardiovascular medicine auxiliary monitoring device according to claim 2, characterized in that: The adjusting placement mechanism (3) further comprises a pulling spring (303), a movable cylinder (304), a moving rod (305), a moving piston (306), a working air pump (307), a connecting plate (308), an installation opening (309), an installation notch (310) and a rubber hook (311); the top of the working frame (1) is provided with an installation opening (309); the bottom of the movable installation rod (301) is provided with a moving rod (305); the inner cavity of the working frame (1) is provided with a movable The movable cylinder (304) is provided with a movable rod (305), the movable cylinder (304) has a top end located inside the mounting opening (309), a movable piston (306) is mounted at the bottom end of the movable rod (305), a connecting plate (308) is mounted at the bottom end of the movable cylinder (304), a tensioning spring (303) is mounted around the top end of the connecting plate (308), and the top end of the tensioning spring (303) is connected to the top end of the inner cavity of the working frame (1).
4. A multifunctional cardiovascular medicine auxiliary monitoring device according to claim 3, characterized in that: The bottom end of the working rod (302) is provided with a plurality of installation slots (310) at equal intervals, and the inner cavity of the installation slot (310) is provided with a rubber hook (311) via a hinge. The bottom end of the movable cylinder (304) is provided with a working air pump (307), and the working air pump (307) is electrically connected to the control panel. The bottom end of the movable cylinder (304) is provided with a connecting air hole.
5. The multifunctional cardiovascular auxiliary monitoring device according to claim 2, characterized in that: The device further comprises a limiting mechanism (4), wherein the limiting mechanism (4) comprises a mounting opening (401), a movable limiting block (402), a mounting recess (403), a working spring (404), a limiting recess (405), an extrusion block (406), a small electric push rod (407) and a fixed electromagnetic block (408); a mounting opening (401) is provided at the front side of the inner cavity of the mounting opening (309); a small electric push rod (407) is installed at the front side of the inner cavity of the mounting opening (401); a rubber layer is installed at the rear side of the inner cavity of the mounting opening (401); a extrusion block (406) is installed at the rear end of the small electric push rod (407); a rubber layer is installed at the rear side of the extrusion block (406); and the small electric push rod (407) is electrically connected to the control panel.
6. The multifunctional cardiovascular auxiliary monitoring device according to claim 5, characterized in that: A mounting recess (403) is provided at the rear side of the inner cavity of the mounting opening (309); a fixed electromagnetic block (408) is installed at the rear side of the inner cavity of the mounting recess (403); the fixed electromagnetic block (408) is electrically connected to the control panel; a movable limit block (402) is provided at the front side of the inner cavity of the mounting recess (403); the cross section of the movable limit block (402) is a T-shaped structure; a plurality of working springs (404) are installed around the front side of the inner cavity of the mounting recess (403); the rear end of the working spring (404) is connected to the movable limit block (402); a patch is installed at the rear side of the movable limit block (402); a round ball is installed at the front end of the movable limit block (402); and a plurality of limit recesses (405) are equidistantly provided at the rear side of the movable cylinder (304).
7. The multifunctional cardiovascular internal medicine auxiliary monitoring device according to claim 2, characterized in that: The evacuation mechanism (5) further comprises a rotating rod (501), a single-phase motor (502), a turbofan head (503), a conveying port (504), a mounting spring (506), a mounting slide groove (507), a mounting slide block (508), a movable inclined block (510), a movable rotating rod (511) and a pushing inclined block (512); a single-phase motor (502) is mounted on the top end of the rear side of the inner cavity of the working frame (1); an output shaft of the single-phase motor (502) is mounted on the bottom end of the output shaft A rotating rod (501) is provided, wherein the upper end and the lower end of the rotating rod (501) are provided with stabilizing bearings, and one end of the stabilizing bearing is connected to the inner cavity of the working frame (1); a turbofan head (503) is provided at the lower end of the rotating rod (501); a movable rotating rod (511) is provided at the lower end of the turbofan head (503); a pushing inclined block (512) is provided at one side of the lower end of the movable rotating rod (511); and a movable inclined block (510) is provided at the rear side of the movable baffle (509).
8. The multifunctional cardiovascular internal medicine auxiliary monitoring device according to claim 7, characterized in that: A plurality of mounting grooves (507) are provided at the front and rear sides of the bottom of the inner cavity of the working frame (1); a mounting slide block (508) is installed at the front side of the bottom of the movable baffle (509) at a relative position to the mounting slide groove (507); a mounting slide block (508) is installed at the rear side of the bottom of the movable inclined block (510); the mounting slide block (508) is slidably connected to the inner cavity of the mounting slide groove (507); a mounting spring (506) is installed at the front end of the mounting slide block (508); and a movable baffle (9) is installed at the rear side of the working frame (1).
9. The multifunctional cardiovascular internal medicine auxiliary monitoring device according to claim 2, characterized in that: The device comprises a monitoring mechanism (6), wherein the monitoring mechanism (6) comprises a monitoring frame head (601), an aluminum bar (602), a moving block (603) and a touch switch (604); the monitoring frame head (601) is installed at the bottom of the cardiovascular nursing monitor (2); the aluminum bar (602) is installed at the bottom of the cardiovascular nursing monitor (2) at a position relative to the monitoring frame head (601); the moving block (603) is installed at the bottom of the aluminum bar (602); the touch switch (604) is installed at the bottom of the inner cavity of the monitoring frame head (601); a plurality of round beads are movably installed around the outside of the moving block (603); and the touch switch (604) is electrically connected to the control panel.