Multifunctional cardiovascular medicine detector
The design of the multifunctional cardiovascular medicine testing instrument utilizes a drive device and integrated structure to achieve automated operation, solving the problem of the inflexibility of traditional equipment and improving the convenience and accuracy of testing.
Patent Information
- Application Number
- CN202511139658.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-14
- Publication Date
- 2025-11-07
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Traditional cardiovascular testing equipment has limited functionality and cannot flexibly adjust its position, angle, and height, leading to increased difficulty in testing, inaccurate results, and poor comfort.
A multifunctional cardiovascular diagnostic instrument was designed, which uses a telescopic electric cylinder, a drive component and a rotary electric cylinder to achieve the angle adjustment of the height frame, the lifting and lowering of the movable seat and the flipping of the tilting table. It integrates a storage rack and a hanging frame, providing automated operation and multifunctional use.
It improves the convenience and accuracy of testing, meets the needs of different patients and testing scenarios, and enhances the flexibility and comfort of the equipment.
Smart Images

Figure CN120899200A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of cardiovascular detection equipment, in particular to a multifunctional cardiovascular medicine detection instrument. BACKGROUND
[0002] In the clinical detection work of cardiovascular medicine, the convenience, efficiency, accuracy and comfort of detection are crucial for the diagnosis and treatment of patients. Traditional cardiovascular medicine detection equipment has relatively single function, and can only realize single detection function, which cannot meet the diversified detection needs of medical staff.
[0003] The previous detection equipment lacks effective adjustment mechanism, and the position, angle and height of the detection instrument are fixed, so that medical staff cannot flexibly adjust according to the specific situation and detection needs of patients. This not only increases the difficulty of detection operation, but also may lead to inaccurate detection results. For example, when detecting patients in different body positions, the detection instrument cannot be accurately adjusted to the appropriate position and angle, which may affect the collection of detection data and further affect the doctor's diagnosis.
[0004] In addition, most of the traditional detection equipment relies on manual operation for adjustment, which is tedious and prone to errors. In some detection scenarios that require accurate adjustment, manual operation cannot guarantee the accuracy and stability of adjustment, cannot meet the diversified needs of different patients and detection scenarios, and also reduces the comfort of patients in the detection process. SUMMARY
[0005] In order to achieve the effects of automatic operation, convenient movement and easy and efficient detection, the present application provides a multifunctional cardiovascular medicine detection instrument.
[0006] The present application is realized as follows: A multifunctional cardiovascular medicine detection instrument, comprising an instrument seat, the instrument seat comprising a seat box and a movable outer frame, the movable outer frame being fixedly installed on four corners of the outer side of the seat box, a height frame being further vertically installed on the outer side of the seat box, the height frame being rotatably connected with the seat box on both sides, and a telescopic electric cylinder for adjusting the angle of the height frame being further installed on the lower end surface of the seat box, an activity seat being further installed on the height frame in a sleeved manner, a driving piece one for driving the rotation of the activity seat being further arranged in the height frame, a turnover table being further rotatably installed on the front end surface of the activity seat, a rotary electric cylinder for driving the rotation of the turnover table being further fixedly installed on the activity seat, a detection instrument being further installed on the turnover table, and a multifunctional operation frame being further fixedly installed on the rear end surface of the height frame.
[0007] By adopting the above technical scheme, the seat box and the movable outer frame are used to provide stable support and convenient movement structure for the entire detection instrument during use. The seat box is used to install various components and store articles, and the detection instrument can be safely stored in the seat box for protection when not in use, ensuring safety in use. The universal wheels on the movable outer frame can easily move the detection instrument to the desired position. The height frame is provided to facilitate the installation of the movable seat and can be slid on the height frame to adjust the use height. The height frame is rotatably connected to the seat box and adjusted in angle by the telescopic electric cylinder. The inclination angle of the height frame can be flexibly adjusted according to the body position of the patient and the detection requirement, so that the detection instrument is in the best detection position and is more easily operated by the operator. The movable seat is sleeved on the height frame and is driven to rotate by the driving member, so that the position of the detection instrument in the height direction can be adjusted, which is convenient for medical staff to operate. At the same time, it is also convenient to land to the lowest part for storage when not in use. The turnover table is rotatably installed at the front end face of the movable seat and is driven to turn by the rotary electric cylinder, so that the angle of the detection instrument can be changed to adapt to different detection scenes and improve the detection accuracy. In this way, the detection instrument can be turned to the upper side of the turnover table when needed, and can be turned to the lower side of the turnover table when not in use, so that the detection instrument can be stably stored in the seat box when landing. The multifunctional operation frame is provided to provide an operation handle for medical staff, which is convenient for pushing the detection instrument to move. At the same time, some detection-related articles can also be hung and placed, improving the convenience of operation.
[0008] Further, side grooves are formed on both sides of the seat box, a storage rack is fixedly installed in the side grooves, a turnover shell is installed in the middle of the storage rack, both sides of the turnover shell are rotatably connected to the storage rack, a plurality of auxiliary lamp beads are fixedly installed in the turnover shell, and a side lug seat for rotatably installing the height frame is arranged on the upper end face of the seat box.
[0009] By adopting the above technical scheme, the side grooves on both sides of the seat box are used to stably install the storage rack, which facilitates the installation of the turnover shell through the storage rack, so that the turnover shell can be stored in the storage rack when not in use, and can be turned up for use when needed. The design of the turnover shell enables the auxiliary lamp beads to be turned out to provide illumination when needed, and to be stored when not needed, without occupying space. The side lug seat is provided to support the rotatable installation of the height frame, ensuring the stability of the height frame during turning and adjusting.
[0010] Further, the movable outer frame comprises an inclined frame rod, a connecting plate and universal wheels, the inclined frame rod is fixedly installed on the outer side face of the seat box, the connecting plate is fixedly installed on the outer end of the inclined frame rod, and the universal wheels are fixedly installed on the lower end face of the connecting plate.
[0011] By adopting the above technical scheme, the combination structure of the inclined frame rod, the connecting plate and the universal wheel of the mobile outer frame increases the overall support range of the lower end of the equipment, so that the detector is more stable during movement. The inclined frame rod extends the overall support size, the connecting plate connects the inclined frame rod and the universal wheel together, and the universal wheel provides flexible movement performance. The two are fixed by bolt connection, which facilitates better replacement of the universal wheel after damage. The universal wheel adopts a universal wheel group structure with a brake structure, which can be quickly locked when not moving, facilitating stable use of the equipment.
[0012] Further, the height frame comprises a frame shell and a plug-in cover, a guide groove is formed in the middle of the front end face of the frame shell, the plug-in cover is installed at the head of the frame shell, and the plug-in cover is clamped and fixed with the frame shell, a positioning groove is arranged between the plug-in cover and the frame shell, an adjustable suspension is slidably installed in the positioning groove, and a second driving piece for driving the adjustable suspension to lift is further arranged in the frame shell.
[0013] By adopting the above technical scheme, the design of the frame shell and the plug-in cover of the height frame ensures that the frame shell is designed as a shell structure, facilitating better installation of other components in the frame shell. The plug-in cover is fixedly installed on the upper end of the frame shell, facilitating better protection of the top of the frame shell by the plug-in cover, and ensuring auxiliary support of the adjustable suspension, facilitating more stable lifting of the adjustable suspension in the frame shell. The guide groove provides guidance for the movement of the movable seat, ensuring the stability of the movement of the movable seat. The positioning groove and the adjustable suspension are arranged, so that the adjustable suspension can be lifted in the height frame, further increasing the height adjustment range of the detection instrument. The second driving piece drives the adjustable suspension to lift, realizing automatic height adjustment, and the second driving piece is installed in the frame shell, without affecting the normal use of the components sleeved on the outer side face of the frame shell.
[0014] Further, the adjustable suspension comprises a top cover plate and a longitudinal sliding plate slidably installed in the positioning groove, the longitudinal sliding plate is symmetrically installed at the lower end face of the top cover plate, and the longitudinal sliding plate is fixedly connected with the top cover plate, a receiving groove is formed in the outer side face of the longitudinal sliding plate, a suspension rod is installed in the receiving groove, the lower end of the suspension rod is rotatably connected with the longitudinal sliding plate, and the upper end of the suspension rod is connected with the longitudinal sliding plate through a connecting rope.
[0015] By adopting the technical scheme, the structure of the adjustable suspension's top cover plate and longitudinal slide plate ensures the stability of the adjustable suspension sliding in the positioning groove. The longitudinal slide plate is completely stored in the frame shell when not in use, and the top cover plate can protect the top of the frame shell. The top cover plate can be used to fix some display devices, which makes the detection instrument more widely applicable. The design of the storage groove and the suspension rod makes the suspension rod stored in the storage groove when not in use, reducing the occupied space. The suspension rod can be rotated to hang objects when needed, improving the utilization rate of space. The connection rope ensures the stability of the suspension rod during rotation, preventing excessive rotation or shaking. When the longitudinal slide plate moves downward, the suspension rod can be automatically stored, making it very convenient to use.
[0016] Further, the second driving member includes a top shaft, a bottom shaft, a second motor, and a synchronous belt connecting the top shaft and the bottom shaft. The top shaft and the bottom shaft are both rotatably installed in the frame shell, and a pulley for installing the synchronous belt is fixedly sleeved on the top shaft and the bottom shaft. The second motor is fixedly installed in the frame shell, and the output end of the second motor is connected with the bottom shaft. The synchronous belt is fixed with the longitudinal slide plate on one side.
[0017] By adopting the above technical scheme, the second driving member adopts the combined structure of the top shaft, the bottom shaft, the second motor, and the synchronous belt. When in use, the second motor drives the bottom shaft to rotate, and the bottom shaft drives the top shaft to rotate through the synchronous belt, thereby realizing the transmission of the synchronous belt and driving the adjustable suspension to lift and lower. This transmission mode has the advantages of stable transmission and high precision, can accurately control the lifting position of the adjustable suspension, and has a simple overall structure, which is convenient for better integrated installation in the frame shell.
[0018] Further, the movable seat includes a sleeve shell, an outer shaft tube, and a threaded tube cooperating with the first driving member. A plurality of connecting rods connected with the sleeve shell are arranged on the outer side of the outer shaft tube in the circumferential direction. The connecting rods are integrally formed with the outer shaft tube. The threaded tube is vertically installed at the center of the sleeve shell and is fixedly connected with the sleeve shell. The first driving member includes a first motor and a longitudinal screw rod cooperating with the threaded tube. The first motor is fixedly installed in the frame shell. The lower end of the longitudinal screw rod is connected with the output end of the first motor.
[0019] By adopting the above technical scheme, the structure of the sleeve shell, the outer shaft tube, and the threaded tube of the movable seat allows the movable seat to be sleeved on the height frame through the sleeve shell and to lift and lower through the cooperation of the threaded tube and the longitudinal screw rod of the first driving member. The arrangement of the connecting rods ensures the stability of the connection between the outer shaft tube and the sleeve shell. When in use, the combination of the first motor and the longitudinal screw rod of the first driving member drives the longitudinal screw rod to rotate through the first motor. The longitudinal screw rod cooperates with the threaded tube to convert the rotary motion into linear motion, thereby realizing the lifting and lowering of the movable seat. The transmission efficiency is high, and the control precision is good.
[0020] Further, the turnover table comprises a main table plate, a corner seat shell and a bent bracket, the corner seat shell is arranged at four corners of the main table plate, and the corner seat shell is integrally formed with the main table plate, an elastic tape stopper is installed above the corner seat shell, and a plug-in groove is formed at the lower end of the corner seat shell, the bent bracket is fixedly installed at the lower end surface of the main table plate, and a connecting shaft is plug-in fixed on the bent bracket, the connecting shaft is rotatably installed on an outer shaft tube, and one end of the connecting shaft is connected with the output end of the rotary cylinder.
[0021] By adopting the above technical scheme, the design of the main table plate, the corner seat shell and the bent bracket of the turnover table provides a stable platform for the installation of the detection instrument, ensures that the detection instrument can be stably fixed on the main table plate and then can be synchronously turned over and the height can be adjusted, increases the flexibility of the use of the detection instrument, and facilitates the placement of accessories used by the corresponding detection instrument through the arrangement of the corner seat shell. The elastic tape stopper on the corner seat shell can prevent the hand and foot detection band from slipping off, and it is also very convenient to operate when taking and placing. The plug-in groove can cooperate with the plug-in block of the detection table, so as to facilitate the installation and disassembly of the detection table. The bent bracket is arranged to facilitate the stable support of the main table plate. The connecting shaft on the bent bracket is rotatably connected with the outer shaft tube and is connected with the output end of the rotary cylinder. The connecting shaft is driven to rotate by the rotary cylinder, so as to realize the turnover of the turnover table. The structure is simple and the operation is convenient.
[0022] Further, the detection instrument comprises an instrument main body and a hand and foot detection band, the instrument main body is fixedly installed on the upper end surface of the main table plate, and the hand and foot detection band is wound and placed in the corner seat shell.
[0023] By adopting the above technical scheme, the combination of the instrument main body and the hand and foot detection band of the detection instrument can comprehensively detect the cardiovascular related indexes of the patient. The hand and foot detection band is wound and placed in the corner seat shell, which is convenient for storage and use, and keeps the detection instrument clean.
[0024] Further, the multifunctional operation frame comprises a frame seat, an operation handle, a hanging bracket and a hanging frame, the frame seat is fixedly installed on the outer side surface of the frame shell, the operation handle is fixedly installed on the outer end of the frame seat, the hanging bracket is vertically fixed on the lower end surface of the frame seat, the hanging frame is symmetrically installed on both sides of the hanging bracket, and a detection table is detachably installed in the hanging frame, and a plug-in block matched with the plug-in groove is integrally arranged on one side of the detection table.
[0025] By adopting the technical scheme, the structure of the base, the operation handle, the hanging frame and the suspension frame of the multifunctional operation frame provides convenience for medical staff to operate and place articles. The operation handle facilitates the movement of the detector, the detachable detection table in the suspension frame can be replaced and used as needed, ensuring that the detection table can be placed in the suspension frame when not in use, and can be directly taken out for installation and use when needed. The cooperation of the plug-in block and the plug-in slot ensures the stability of the detection table installation, and the detection table is an acrylic plate structure, which facilitates the cooperation of the auxiliary lamp beads to better observe the use.
[0026] Compared with the prior art, the beneficial effects of the present application are: (1) The present application integrates detection, adjustment, lighting, storage and suspension functions, effectively improving the convenience and efficiency of cardiovascular medicine detection. Medical staff can flexibly adjust the position, angle and height of the detection instrument according to the specific situation and detection needs of the patient, use the storage rack and suspension rod to store and hang articles, make the detection process more smooth, move the universal wheels on the outer frame to make the detector move conveniently between different wards or detection areas, and improve the use flexibility of the equipment.
[0027] (2) The present application realizes angle adjustment of the height frame, lifting and rotation of the movable seat, turning of the turning table and lifting of the adjustable suspension frame through multiple driving devices such as telescopic electric cylinders, driving members one and two and rotary electric cylinders, ensuring that various adjustment modes can be automatically operated without manual operation, achieving the purpose of convenient operation and use, meeting the needs of different patients and detection scenarios, and improving the accuracy and comfort of detection.
[0028] (3) The present application installs two groups of suspension frames on the multifunctional operation frame, which can clamp and fix the detection table on the suspension frame when not in use, and can support and place the detection table through the turning table when the detector is stored in the seat box. When the detection table is needed, it is taken out from the suspension frame and directly inserted into the plug-in slot of the turning table. By combining the two groups of detection tables together, the purpose of placing the corresponding detection instruments on the detection table is achieved, and the auxiliary lamp beads are used to provide lighting from the lower end to facilitate the detection process. BRIEF DESCRIPTION OF DRAWINGS
[0029] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiments. It should be understood that the following drawings only show some embodiments of the present application, and should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can also be obtained without creative labor.
[0030] Figure 1is a perspective view of the overall structure in the embodiment of the present application; Figure 2 is a perspective view of the cooperation of the instrument stand and the height stand in the embodiment of the present application; Figure 3 is Figure 2 a side view of the device shown; Figure 4 is Figure 1 a perspective view of the device shown when using the detection table; Figure 5 is Figure 4 a front view of the device shown; Figure 6 is Figure 4 a side view of the device shown; Figure 7 is a lower side perspective view of the cooperation of the movable stand, the turnover table and the detection instrument in the embodiment of the present application; Figure 8 is an upper side perspective view of the cooperation of the movable stand, the turnover table and the detection instrument in the embodiment of the present application; Figure 9 is Figure 8 a side view of the device shown; Figure 10 is a perspective view of the detection table in the embodiment of the present application; Figure 11 is a perspective view of the cooperation of the adjustable suspension and the driving member in the embodiment of the present application; Figure 12 is Figure 11 a front view of the device shown.
[0031] In the figure: 1, instrument seat; 10, telescopic electric cylinder; 11, seat box; 111, side groove; 112, storage rack; 113, turnover shell; 114, auxiliary lamp bead; 115, side ear seat; 12, moving outer frame; 121, inclined frame rod; 122, connecting plate; 123, universal wheel; 2, height frame; 21, frame shell; 211, guide groove; 22, plug-in cover; 221, positioning groove; 3, movable seat; 30, rotary electric cylinder; 31, sleeve shell; 32, outer shaft tube; 321, connecting rod; 33, threaded tube; 4, driving part one; 41, motor one; 42, longitudinal screw rod; 5, turnover table; 51, main table plate; 52, angle seat shell; 521, elastic blocking tape; 522, plug-in groove; 53, bent bracket; 531, connecting shaft; 6, detection instrument; 61, instrument main body; 62, hand and foot detection bandage; 7, multifunctional operation frame; 71, frame seat; 72, operation handle; 73, hanging frame; 74, suspension frame; 75, detection table; 751, plug-in block; 8, adjustable suspension frame; 81, top cover plate; 82, longitudinal sliding plate; 821, storage groove; 83, suspension rod; 831, connecting rope; 9, driving part two; 91, top shaft; 911, belt pulley; 92, bottom shaft; 93, motor two; 94, synchronous belt. DETAILED DESCRIPTION
[0032] In order to make the purpose, technical scheme and advantages of the embodiments of the present application clearer, the technical scheme in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are some of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative labor fall within the protection scope of the present application. Therefore, the following detailed description of the embodiments of the present application provided in the drawings is not intended to limit the scope of the claimed present application, but only represents selected embodiments of the present application.
[0033] Example 1 Reference Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5As shown, a multifunctional cardiovascular internal medicine detector, including instrument seat 1, instrument seat 1 including seat box 11 and mobile outer frame 12, mobile outer frame 12 is fixedly installed on the four corners of the outer side of seat box 11, seat box 11 is made of high strength plastic or aluminum alloy material, has good strength and corrosion resistance. The outer side of the seat box 11 is also vertically installed with a height frame 2, the height frame 2 is rotatably connected with the seat box 11 on both sides, and the lower end surface of the seat box 11 is also provided with an extension cylinder 10 for adjusting the angle of the height frame 2, the height frame 2 is sleeved and installed with a movable seat 3, and the height frame 2 is provided with a driving part 4 for driving the movable seat 3 to rotate, the front end surface of the movable seat 3 is also rotatably installed with a turnover table 5, and the movable seat 3 is fixedly installed with a rotary cylinder 30 for driving the turnover table 5 to rotate, the detector 6 is installed on the turnover table 5, and the rear end surface of the height frame 2 is also fixedly installed with a multifunctional operation frame 7. When in use, the seat box 11 and the mobile outer frame 12 of the instrument seat 1 provide stable support and convenient movement structure for the entire detector. The seat box 11 is used to install various components and store articles, and the detector 6 can be safely stored in the seat box 11 for protection when not in use, ensuring the safety of use, and the universal wheels 123 on the mobile outer frame 12 can easily move the detector to the desired position. The height frame 2 is provided to facilitate the installation of the movable seat 3, and can be slid on the height frame 2 to adjust the use height, and the height frame 2 is rotatably connected with the seat box 11 and adjusted in angle by the extension cylinder 10, so that the inclination angle of the height frame 2 can be flexibly adjusted according to the body position of the patient and the detection requirement, so that the detector 6 is in the best detection position, and it is easier for the operator to operate. The movable seat 3 is sleeved on the height frame 2 and driven to rotate by the driving part 4, which can realize the position adjustment of the detector 6 in the height direction, which is convenient for medical staff to operate, and also convenient for landing to the lowest part for storage when not in use. The turnover table 5 is rotatably installed on the front end surface of the movable seat 3 and is driven to rotate by the rotary cylinder 30, which can change the angle of the detector 6, adapt to different detection scenes, and improve the accuracy of detection. In this way, when it is needed to use, the detector is turned over to the upper side of the turnover table 5, and when it is not in use, the detector is turned over to the lower side of the turnover table 5, and then it can be stably stored in the seat box 11 when landing. The multifunctional operation frame 7 provides an operation handle 72 for medical staff, which is convenient for pushing the detector to move, and also can hang and place some detection related articles, improving the convenience of operation.
[0034] Referring to Figure 1 and Figure 2As shown, the mobile outer frame 12 includes a slope frame rod 121, a connecting plate 122 and a universal wheel 123, the slope frame rod 121 is fixedly installed on the outer side of the seat box 11, the connecting plate 122 is fixedly installed on the outer end of the slope frame rod 121, and the universal wheel 123 is fixedly installed on the lower end face of the connecting plate 122. The slope frame rod 121 is made of metal pipe material, the connecting plate 122 is made of metal plate material, and the type of the universal wheel 123 can be selected according to the actual load requirement. The combination structure of the slope frame rod 121, the connecting plate 122 and the universal wheel 123 of the mobile outer frame 12 increases the overall support range of the lower end of the equipment, so that the detection instrument is more stable during movement. The slope frame rod 121 extends the overall support size, the connecting plate 122 connects the slope frame rod 121 and the universal wheel 123 together, and the universal wheel 123 provides flexible movement performance. They are fixed by bolt connection, which is convenient for better replacement after the universal wheel 123 is damaged. The universal wheel 123 adopts a universal wheel 123 group structure with a brake structure, which can be quickly locked when not moving, and the equipment can be stably used.
[0035] With reference to Figure 2 As shown, the height frame 2 includes a frame shell 21 and a plug-in cover 22, the middle part of the front end face of the frame shell 21 is provided with a guide groove 211, the plug-in cover 22 is installed at the head of the frame shell 21, and the plug-in cover 22 is clamped and fixed with the frame shell 21. The frame shell 21 and the plug-in cover 22 are both made of high-strength plastic or aluminum alloy material.
[0036] With reference to Figure 7 and Figure 9As shown, the movable seat 3 comprises a sleeve 31, an outer shaft tube 32 and a threaded tube 33 matched with the driving member 4, the outer side of the outer shaft tube 32 is provided with a plurality of connecting rods 321 connected with the sleeve 31 in the circumferential direction, the connecting rods 321 are integrally formed with the outer shaft tube 32, the threaded tube 33 is vertically installed at the center of the sleeve 31, and the threaded tube 33 is fixedly connected with the sleeve 31. The sleeve 31, the outer shaft tube 32 and the threaded tube 33 can be made of plastic or metal. The driving member 4 comprises a motor 41 fixedly installed in the frame 21 and a longitudinal screw 42 matched with the threaded tube 33, the lower end of the longitudinal screw 42 is connected with the output end of the motor 41. The motor 41 can be a servo motor, which has the advantages of fast response speed and high control precision. The structure of the sleeve 31, the outer shaft tube 32 and the threaded tube 33 of the movable seat 3 enables the movable seat 3 to be sleeved on the height frame 2 through the sleeve 31, and the lifting of the movable seat 3 is realized through the cooperation of the threaded tube 33 and the longitudinal screw 42 of the driving member 4. The connecting rods 321 ensure the stability of the connection between the outer shaft tube 32 and the sleeve 31. In use, the combination of the motor 41 and the longitudinal screw 42 of the driving member 4 drives the longitudinal screw 42 to rotate through the motor 41, the longitudinal screw 42 is matched with the threaded tube 33 to convert the rotary motion into linear motion, thereby realizing the lifting of the movable seat 3, which has high transmission efficiency and good control precision.
[0037] Referring to Figure 7 and Figure 8 As shown, the turnover table 5 comprises a main table plate 51, a corner seat shell 52 and a bent bracket 53, the corner seat shell 52 is arranged at the four corners of the main table plate 51 and is integrally formed with the main table plate 51, an elastic blocking band 521 is installed above the corner seat shell 52, the bent bracket 53 is fixedly installed at the lower end surface of the main table plate 51, and a connecting shaft 531 is fixedly inserted into the bent bracket 53, the connecting shaft 531 is rotatably installed on the outer shaft tube 32 and is connected with the output end of the rotary cylinder 30 at one end. The main table plate 51, the corner seat shell 52 and the bent bracket 53 can be made of plastic or metal. The design of the main table plate 51, the corner seat shell 52 and the bent bracket 53 of the turnover table 5 provides a stable platform for the installation of the detection instrument 6, ensures that the detection instrument 6 can be stably fixed on the main table plate 51 and then can be synchronously turned over and adjusted in height, thereby increasing the flexibility of the use of the detection instrument 6. The corner seat shell 52 is arranged to facilitate the placement of accessories used by the corresponding detection instrument 6, the elastic blocking band 521 on the corner seat shell 52 can prevent the hand and foot detection band 62 from falling off, and is also very convenient to operate when taking and placing. The bent bracket 53 is arranged to facilitate the stable support of the main table plate 51, the connecting shaft 531 on the bent bracket 53 is rotatably connected with the outer shaft tube 32 and is connected with the output end of the rotary cylinder 30, the rotation of the connecting shaft 531 is driven by the rotary cylinder 30, thereby realizing the turnover of the turnover table 5, which has a simple structure and is convenient to operate.
[0038] Referring to Figure 8 As shown in the figure, the detection instrument 6 includes an instrument body 61 and a hand and foot detection band 62, the instrument body 61 is fixedly installed on the upper end face of the main table plate 51, and the hand and foot detection band 62 is wound and placed in the corner seat shell 52. The instrument body 61 of the detection instrument 6 can be selected from common cardiovascular medical detection instruments on the market, such as an electrocardiograph, a sphygmomanometer, etc. The combination of the instrument body 61 and the hand and foot detection band 62 of the detection instrument 6 can comprehensively detect cardiovascular related indicators of the patient. The hand and foot detection band 62 is wound and placed in the corner seat shell 52, which is convenient for storage and use, keeps the detection instrument clean, and is easy to synchronize with the instrument body 61 for adjustment.
[0039] Embodiment 2 Referring to Figure 1 , Figure 2 and Figure 3 As shown in the figure, the seat box 11 is provided with a side groove 111 on both sides, and a storage rack 112 is fixedly installed in the side groove 111. The storage rack 112 can be made of plastic or metal. A turnover shell 113 is installed in the middle of the storage rack 112, and the two sides of the turnover shell 113 are rotationally connected with the storage rack 112. A plurality of auxiliary lamp beads 114 are fixedly installed in the turnover shell 113. The auxiliary lamp beads 114 can be selected from LED lamp beads, which have the advantages of energy saving and high brightness. The upper end face of the seat box 11 is provided with a side ear seat 115 for rotationally installing the height rack 2, and the side ear seat 115 is fixedly connected with the seat box 11. The side grooves 111 on both sides of the seat box 11 are used to stably install the storage rack 112, which is convenient for installing the turnover shell 113 through the storage rack 112, so that the turnover shell 113 can be stored in the storage rack 112 when not in use, and can be turned over for use when needed. The design of the turnover shell 113 makes the auxiliary lamp beads 114 turn over to provide lighting when needed, and be stored when not needed, without occupying space. The side ear seat 115 provides support for the rotational installation of the height rack 2, ensuring the stability of the height rack 2 during turnover adjustment.
[0040] Referring to Figure 7 and Figure 8 As shown in the figure, the turnover table 5 includes a main table plate 51, a corner seat shell 52 and a bent bracket 53. The corner seat shell 52 is arranged at the four corners of the main table plate 51, and the corner seat shell 52 is integrally formed with the main table plate 51. An elastic blocking band 521 is installed above the corner seat shell 52, and a plug-in groove 522 is formed at the lower end of the corner seat shell 52. The corner seat shell 52 is provided to facilitate the placement of accessories used by the corresponding detection instrument 6. The elastic blocking band 521 on the corner seat shell 52 can prevent the hand and foot detection band 62 from falling off, and is also very convenient to operate when taking out and putting in. The plug-in groove 522 can cooperate with the plug-in block 751 of the detection table 75 to facilitate the installation and disassembly of the detection table 75.
[0041] Referring to Figure 1, Figure 6 and Figure 10 As shown, the multi-functional operating frame 7 includes a base 71, an operating handle 72, a hanger 73, and a suspension frame 74. The base 71 is fixedly installed on the outer side of the frame housing 21, the operating handle 72 is fixedly installed on the outer end of the base 71, the hanger 73 is vertically fixed on the lower end of the base 71, and the suspension frame 74 is symmetrically installed on both sides of the hanger 73. A testing platform 75 is detachably installed in the suspension frame 74, and one side of the testing platform 75 is integrally formed with a plug-in block 751 that mates with the plug-in slot 522. The base 71, operating handle 72, hanger 73, and suspension frame 74 can be made of plastic or metal. The structure of the base 71, operating handle 72, hanger 73, and suspension frame 74 of the multi-functional operating frame 7 provides convenience for medical personnel to operate and place items. The operating handle 72 facilitates the movement of the detector. The detachable detection platform 75 in the suspension frame 74 can be replaced and used as needed, ensuring that the detection platform 75 can be placed in the suspension frame 74 when not in use, and can be directly removed for installation when needed. The cooperation between the plug block 751 and the plug slot 522 ensures the stability of the installation of the detection platform 75. The detection platform 75 is an acrylic plate structure, which facilitates better observation and use with the auxiliary lamp bead 114.
[0042] Example 3 Reference Figure 1 , Figure 2 and Figure 11 As shown, the height frame 2 includes a frame housing 21 and a plug-in cover 22. A guide groove 211 is provided in the middle of the front end face of the frame housing 21. The plug-in cover 22 is installed at the head of the frame housing 21 and is engaged and fixed to the frame housing 21. A positioning groove 221 is provided between the plug-in cover 22 and the frame housing 21. An adjustable suspension 8 is slidably installed in the positioning groove 221. A drive component 29 for driving the adjustable suspension 8 to rise and fall is also provided in the frame housing 21. The design of the frame housing 21 and the plug-in cover 22 of the height frame 2 ensures that the frame housing 21 is designed as a shell structure, facilitating better installation of other components within the frame housing 21. The plug-in cover 22, fixedly installed at the upper end of the frame housing 21, provides better protection for the top of the frame housing 21 and provides auxiliary support for the adjustable suspension 8, making the adjustable suspension 8 more stable when rising and falling within the frame housing 21. The guide groove 211 provides guidance for the movement of the movable seat 3, ensuring the stability of the movable seat 3's movement. The positioning groove 221 and the adjustable suspension 8 allow the adjustable suspension 8 to be raised and lowered within the height frame 2, further increasing the height adjustment range of the testing instrument 6. The function of the second drive component 9 is to drive the adjustable suspension 8 to rise and fall, realizing automated height adjustment. Furthermore, the second drive component 9 is installed in the frame housing 21 and does not affect the normal use of the components fitted on the outer surface of the frame housing 21.
[0043] Reference Figure 4 , Figure 11and Figure 12 As shown in the figure, the adjustable suspension 8 comprises a top cover plate 81 and a longitudinal sliding plate 82 slidingly installed in the positioning groove 221, the longitudinal sliding plate 82 is symmetrically installed at the lower end surface of the top cover plate 81, and the longitudinal sliding plate 82 is fixedly connected with the top cover plate 81, and the top cover plate 81 and the longitudinal sliding plate 82 can be made of plastic or metal. A receiving groove 821 is formed on the outer side surface of the longitudinal sliding plate 82, and a hanging rod 83 is installed in the receiving groove 821, the lower end of the hanging rod 83 is rotatably connected with the longitudinal sliding plate 82, and the upper end of the hanging rod 83 is connected with the longitudinal sliding plate 82 through a connecting rope 831. The structure of the top cover plate 81 and the longitudinal sliding plate 82 of the adjustable suspension 8 ensures the stability of the sliding of the adjustable suspension 8 in the positioning groove 221. When not in use, the longitudinal sliding plate 82 is completely stored in the shelf shell 21, and the top cover plate 81 can protect the top of the shelf shell 21, and the setting of the top cover plate 81 can be used to fixedly install some display devices, so that the use range of the detection instrument 6 is more extensive, the design of the receiving groove 821 and the hanging rod 83 enables the hanging rod 83 to be stored in the receiving groove 821 when not in use, reduces the occupied space, and can be rotated out for hanging articles when needed, improving the space utilization rate, and the setting of the connecting rope 831 ensures the stability of the hanging rod 83 during rotation, preventing excessive rotation or shaking of the hanging rod 83, and the hanging rod 83 can be automatically stored when the longitudinal sliding plate 82 moves downward, which is very convenient to use.
[0044] With reference to Figure 11 and Figure 12 As shown in the figure, the driving member two 9 comprises a top shaft 91, a bottom shaft 92, a motor two 93 and a synchronous belt 94 connecting the top shaft 91 and the bottom shaft 92, the top shaft 91 and the bottom shaft 92 are both rotatably installed in the shelf shell 21, and a belt pulley 911 for installing the synchronous belt 94 is fixedly sleeved on the top shaft 91 and the bottom shaft 92, the motor two 93 is fixedly installed in the shelf shell 21, the output end of the motor two 93 is connected with the bottom shaft 92, and the synchronous belt 94 is fixedly connected with the longitudinal sliding plate 82 on one side. The motor two 93 can be a stepping motor, which has the advantage of high control precision. The driving member two 9 adopts the combined structure of the top shaft 91, the bottom shaft 92, the motor two 93 and the synchronous belt 94, in use, the motor two 93 drives the bottom shaft 92 to rotate, the bottom shaft 92 drives the top shaft 91 to rotate through the synchronous belt 94, thereby realizing the transmission of the synchronous belt 94 and driving the adjustable suspension 8 to lift. This transmission mode has the advantages of stable transmission and high precision, can accurately control the lifting position of the adjustable suspension 8, and has a simple overall structure, which is convenient for better integrated installation in the shelf shell 21.
[0045] In actual use, medical staff can move the detector around the patient by pushing the operating handle 72 and using the universal wheel 123. According to the patient's position and detection needs, the telescopic cylinder 10 is started to adjust the angle of the height frame 2, the motor one 41 is started to drive the movable seat 3 to lift, the rotary cylinder 30 is started to drive the turnover table 5 to overturn, and the detector 6 is in the best detection position. At the same time, the motor two 93 can be started to drive the adjustable suspension 8 to lift according to the needs, and the suspension rod 83 is rotated to hang the items. After the detection is completed, the detector 6 is overturned and stored in the seat box 11. When the platform needs to be placed with corresponding instruments, the detection table 75 can be disassembled and inserted and installed in the insertion slot 522 of the turnover table 5. In this way, the corresponding instruments can be easily placed through the detection table 75, which is very suitable for use in some scenes without suitable space for placement, and in the case of insufficient light, the turnover shell 113 is turned over, and the auxiliary lamp bead 114 is opened to provide illumination.
[0046] The above only describes the preferred embodiments of the present application and is not used to limit the present application. For those skilled in the art, the present application can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. A multifunctional cardiovascular medicine testing instrument, comprising an instrument base (1), characterized in that: The instrument seat (1) comprises a seat box (11) and a movable outer frame (12), the movable outer frame (12) is fixedly installed on four corners of the outer side of the seat box (11), a height frame (2) is also vertically installed on the outer side of the seat box (11), the height frame (2) is rotatably connected with the seat box (11) on both sides, and a telescopic electric cylinder (10) for adjusting the angle of the height frame (2) is also installed on the lower end surface of the seat box (11), a movable seat (3) is sleeved and installed on the height frame (2), and a driving part one (4) for driving the movable seat (3) to rotate is arranged in the height frame (2), a turnover table (5) is also rotatably installed on the front end surface of the movable seat (3), a rotary electric cylinder (30) for driving the turnover table (5) to rotate is fixedly installed on the movable seat (3), and a detection instrument (6) is installed on the turnover table (5), and a multifunctional operation frame (7) is also fixedly installed on the rear end surface of the height frame (2).
2. The multi-functional cardiovascular detector according to claim 1, characterized in that, The seat box (11) is provided with a side slot (111) on both sides, the side slot (111) is fixedly installed with a storage frame (112), the middle part of the storage frame (112) is installed with a turnover shell (113), the both sides of the turnover shell (113) are rotatably connected with the storage frame (112), and a plurality of auxiliary lamp beads (114) are fixedly installed in the turnover shell (113), and the upper end surface of the seat box (11) is provided with a side lug seat (115) for rotatably installing the height frame (2), and the side lug seat (115) is fixedly connected with the seat box (11).
3. The multi-functional cardiovascular detector according to claim 2, characterized in that, The movable outer frame (12) comprises an inclined frame rod (121), a connecting plate (122) and a universal wheel (123), the inclined frame rod (121) is fixedly installed on the outer side of the seat box (11), the connecting plate (122) is fixedly installed on the outer end of the inclined frame rod (121), and the universal wheel (123) is fixedly installed on the lower end surface of the connecting plate (122).
4. The multi-functional cardiovascular detector according to claim 3, characterized in that, The height frame (2) comprises a frame shell (21) and a plug-in cover (22), the middle part of the front end surface of the frame shell (21) is provided with a guide slot (211), the plug-in cover (22) is installed on the head of the frame shell (21), and the plug-in cover (22) is clamped and fixed with the frame shell (21), a positioning groove (221) is arranged between the plug-in cover (22) and the frame shell (21), an adjustable suspension frame (8) is slidably installed in the positioning groove (221), and a driving part two (9) for driving the adjustable suspension frame (8) to ascend and descend is further arranged in the frame shell (21).
5. The multi-functional cardiovascular detector according to claim 4, wherein, The adjustable suspension frame (8) comprises a top cover plate (81) and a longitudinal sliding plate (82) slidably installed in the positioning groove (221), the longitudinal sliding plate (82) is symmetrically installed on the lower end surface of the top cover plate (81), and the longitudinal sliding plate (82) is fixedly connected with the top cover plate (81), a storage groove (821) is formed in the outer side of the longitudinal sliding plate (82), a suspension rod (83) is installed in the storage groove (821), the lower end of the suspension rod (83) is rotatably connected with the longitudinal sliding plate (82), and the upper end of the suspension rod (83) is connected with the longitudinal sliding plate (82) through a connecting rope (831).
6. The multi-functional cardiovascular detector according to claim 5, wherein, The driving member two (9) comprises a top shaft (91), a bottom shaft (92), a motor two (93) and a synchronous belt (94) connecting the top shaft (91) and the bottom shaft (92), the top shaft (91) and the bottom shaft (92) are both rotatably installed in the frame shell (21), and a belt pulley (911) for installing the synchronous belt (94) is fixedly sleeved on the top shaft (91) and the bottom shaft (92); the motor two (93) is fixedly installed in the frame shell (21), and the output end of the motor two (93) is connected with the bottom shaft (92); and the synchronous belt (94) is fixed with the longitudinal slide plate (82) on one side.
7. The multi-functional cardiovascular detector according to claim 6, wherein, The movable seat (3) comprises a sleeve shell (31), an outer shaft tube (32) and a threaded tube (33) matched with the driving member one (4), a plurality of connecting rods (321) connected with the sleeve shell (31) are arranged on the outer side of the outer shaft tube (32) in the circumferential direction, the connecting rods (321) are integrally formed with the outer shaft tube (32), the threaded tube (33) is vertically installed at the center of the sleeve shell (31), and the threaded tube (33) is fixedly connected with the sleeve shell (31), the driving member one (4) comprises a motor one (41) and a longitudinal screw rod (42) matched with the threaded tube (33), and the motor one (41) is fixedly installed in the frame shell (21); and the lower end of the longitudinal screw rod (42) is connected with the output end of the motor one (41).
8. The multi-functional cardiovascular detector according to claim 7, characterized in that, The turnover table (5) comprises a main table plate (51), a corner seat shell (52) and a bending bracket (53), the corner seat shell (52) is arranged at four corners of the main table plate (51), and the corner seat shell (52) is integrally formed with the main table plate (51), an elastic baffle (521) is installed above the corner seat shell (52), and a plug-in groove (522) is formed in the lower end of the corner seat shell (52), the bending bracket (53) is fixedly installed on the lower end surface of the main table plate (51), and a connecting shaft (531) is plug-in fixedly arranged on the bending bracket (53), the connecting shaft (531) is rotatably installed on the outer shaft tube (32), and one end of the connecting shaft (531) is connected with the output end of the rotary cylinder (30).
9. The multi-functional cardiovascular detector according to claim 8, wherein, The detection instrument (6) comprises an instrument main body (61) and a hand and foot detection bandage (62), the instrument main body (61) is fixedly installed on the upper end surface of the main table plate (51), and the hand and foot detection bandage (62) is wound and placed in the corner seat shell (52).
10. The multi-functional cardiovascular detector according to claim 9, wherein, The multifunctional operation frame (7) comprises a frame seat (71), an operation handle (72), a hanging frame (73) and a hanging frame (74), the frame seat (71) is fixedly installed on the outer side surface of the frame shell (21), the operation handle (72) is fixedly installed on the outer end of the frame seat (71), the hanging frame (73) is vertically fixed on the lower end surface of the frame seat (71), the hanging frame (74) is symmetrically installed on both sides of the hanging frame (73), and a detection table (75) is detachably installed in the hanging frame (74), and a plug-in block (751) matched with the plug-in groove (522) is integrally arranged on one side of the detection table (75).