Integrated health examination machine
Patent Information
- Application Number
- CN202611211665.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-08-11
- Publication Date
- 2026-09-25
AI Technical Summary
然而,这种使用方式存在明显的卫生隐患:部分使用者的足部患有脚气(足癣)等传染性皮肤病,其脱鞋后直接接触测重台面,容易将真菌、细菌等病原体残留于台面
在使用时,用户站立于体重测量仪上完成体重、身高等数据检测;测量结束后,消毒机构可自动或一键启动,驱动板带动辊刷从消毒箱内升起并向前移动,辊刷沿体重测量仪上端面滚动,将吸附的消毒液均匀涂布进行消毒,同时后端的刮水板将废液推入收集箱;当辊刷移至前端时,在轨道槽引导下自动抬离台面,并与挤压板配合刮除表面沾附的杂质,随后驱动板向后复位,辊刷保持抬升状态返回至消毒箱上方并下降浸入消毒液内,为下次消毒做好准备。该设计使消毒机构与体检机主体一体化融合,结构紧凑,不额外占用空间且不影响测量精度;每次使用后能及时对台面进行快速消毒,有效灭杀真菌、细菌等病原体,从源头切断脚气等疾病的交叉传播,显著提升公共卫生安全水平;同时消毒过程自动完成,无需人工值守擦拭,大幅降低日常维护的人力成本,尤其适合人流量大的公共场所长期使用,让每一位使用者都安心、卫生,整体改善了健康体检机的使用体验。
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Figure CN122805228A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of health checkup machines, and in particular to an integrated health checkup machine. Background Technology
[0002] With the increasing awareness of public health management, integrated health check-up machines are widely used in communities, businesses, gyms, and other places for quickly measuring basic vital signs such as height and weight. To ensure measurement accuracy, users usually need to remove their shoes and stand barefoot or wearing only thin socks on the weighing platform. However, this usage poses significant hygiene risks: some users have infectious skin diseases such as athlete's foot, and their direct contact with the weighing platform after removing their shoes can easily leave fungi, bacteria, and other pathogens on the platform. In public places where multiple people frequently use the machine, subsequent users touching the same platform barefoot or in thin socks can easily cause cross-infection, posing a threat to the health of other users.
[0003] Currently, most health checkup machines on the market lack automatic disinfection functions, relying mainly on intermittent manual wiping by cleaning staff for table cleaning and disinfection. This disinfection method is not only slow and cannot ensure disinfection after each use, but also makes it difficult to guarantee the frequency of wiping and the duration of disinfectant action. In high-traffic scenarios, the cleanliness of the table is often unsatisfactory, posing a significant public health and safety hazard. Therefore, it is necessary to improve existing health checkup machines to solve the problem of cross-infection when multiple people use them. Summary of the Invention
[0004] This invention addresses the issue of cross-infection during the use of traditional health check-up machines by providing an integrated health check-up machine that can quickly disinfect the contact area of the work surface after each user completes the measurement. This effectively kills residual fungi, bacteria, and other pathogens, cutting off the cross-transmission route of infectious diseases such as athlete's foot at the source, significantly improving public health safety, and effectively solving the problems mentioned in the background art.
[0005] The technical solution adopted by the present invention to solve the above problems is as follows: An integrated health checkup machine includes a base with a testing platform at its upper end. The testing platform includes a surrounding platform and a protrusion. A weight measuring instrument is installed inside the protrusion. A disinfection mechanism is also provided at the upper end of the protrusion. The disinfection mechanism includes a drive plate that can move back and forth. A roller brush that cooperates with the weight measuring instrument is provided at the lower end of the drive plate. When the drive plate moves forward, the roller brush can roll along the upper surface of the weight measuring instrument. When the drive plate moves backward, the roller brush can disengage from the weight measuring instrument. The disinfection mechanism also includes a disinfection chamber. When the drive plate moves backward to the top, the roller brush can move downward and enter the disinfection chamber.
[0006] The base has a column at the top, a central control display at the top of the column, a blood pressure measuring device on one side of the column, and a height measuring device at the top of the column.
[0007] The disinfection mechanism also includes an L-shaped plate with multiple telescopic rods inside. The telescopic ends of the multiple telescopic rods are equipped with main sliders, which are slidably connected to the inner wall of the L-shaped plate. A scissor-type telescopic frame is provided at the front end of the L-shaped plate, and a drive plate is installed at the front end of the scissor-type telescopic frame. When the main slider moves, it can control the extension of the scissor-type telescopic frame. When the scissor-type telescopic frame extends, it can make the drive plate move forward.
[0008] Both ends of the drive plate are slidably connected to short guide rods on their inner walls. A U-shaped plate is fixedly connected to the lower end of the two short guide rods. A long rotating shaft is provided inside the roller brush. The long rotating shaft is rotatably connected to the inner wall of the lower end of the U-shaped plate. Both ends of the U-shaped plate are provided with coil springs that cooperate with the long rotating shaft. A scraper is provided at the rear end of the U-shaped plate.
[0009] Both sides of the U-shaped plate are provided with long boxes, and the inner walls of the long boxes are provided with retractable movable pins. Both sides of the boss are provided with track plates, and the inner walls of the track plates are provided with track grooves that cooperate with the movable pins.
[0010] The track groove includes a lower horizontal groove, a first inclined groove, an upper horizontal groove, a long inclined groove, a short horizontal groove, and a short inclined groove. When the movable pin moves from back to front, it can slide from the inner wall of the short horizontal groove into the inner walls of the short inclined groove, the lower horizontal groove, and the first inclined groove in sequence. When the movable pin moves from front to back, it can slide from the inner wall of the upper horizontal groove into the inner wall of the long inclined groove. The inner wall of the first inclined groove is provided with a first wedge block that cooperates with the movable pin, and the inner wall of the long inclined groove is provided with a second wedge block that cooperates with the movable pin.
[0011] The front end of the platform is equipped with a detachable collection box, the upper end of which is equipped with a movable sealing cover. Inside the collection box, there is also a pressing plate that cooperates with the roller brush. When the sealing cover moves forward to open, the pressing plate can move upward and forward at the same time.
[0012] The sealing cover is slidably connected to the upper end of the collection box. The front end of the sealing cover is provided with ear plates on both sides, and each ear plate is provided with a tension spring that cooperates with the sealing cover. The inner walls of both sides of the collection box are slidably connected with support plates. The extrusion plate is installed on the upper end of the two support plates. The lower end of the sealing cover is fixedly connected with track frames on both sides. The inner walls of the support plates are provided with positioning pins. The track frames are provided with bottom horizontal grooves and upper inclined grooves that cooperate with the positioning pins.
[0013] The upper surface of the tray is slidably connected to a sandwich seat, and the extrusion plate is installed on the inner wall of the two sandwich seats. The left and right ends of the extrusion plate are provided with guide pins, and the left and right ends of the collection box are provided with guide plates. The guide plates are provided with oblique keyways that cooperate with the guide pins.
[0014] The inner walls at both ends of the platform are provided with pins, and baffles are fixed to the outer surfaces of the pins. The inner walls at both ends of the platform are also provided with elastic elements that cooperate with the baffles. The end faces of both sides of the collection box are provided with insertion holes that cooperate with the pins.
[0015] Compared with the prior art, the present invention has the following advantages: During use, the user stands on the weighing scale to complete the measurement of weight, height, and other data. After the measurement, the disinfection mechanism can be started automatically or with one button. The drive plate drives the roller brush to rise from the disinfection box and move forward. The roller brush rolls along the upper surface of the weighing scale, evenly spreading the absorbed disinfectant solution for disinfection. At the same time, the scraper at the rear pushes the waste liquid into the collection box. When the roller brush moves to the front, it is automatically lifted off the table under the guidance of the track groove and works with the squeezing plate to scrape off the impurities adhering to the surface. Then the drive plate resets to the rear, and the roller brush returns to the top of the disinfection box while maintaining the raised state and descends to be immersed in the disinfectant solution, preparing for the next disinfection. This design integrates the disinfection mechanism with the main body of the health check machine, resulting in a compact structure that does not occupy additional space or affect measurement accuracy. After each use, the work surface is quickly disinfected, effectively killing pathogens such as fungi and bacteria, cutting off the cross-transmission of diseases like athlete's foot at the source, and significantly improving public health and safety. At the same time, the disinfection process is completed automatically, eliminating the need for manual wiping and greatly reducing the labor costs of daily maintenance. It is especially suitable for long-term use in public places with high traffic, ensuring peace of mind and hygiene for every user, and improving the overall user experience of the health check machine. Attached Figure Description
[0016] Figure 1 This is a first axonometric drawing of an integrated health checkup machine according to the present invention; Figure 2 This is a second axonometric drawing of an integrated health checkup machine according to the present invention; Figure 3 This is a schematic diagram of the installation of an integrated health checkup machine according to the present invention. Figure 4 This is a schematic diagram of the L-shaped plate installation of an integrated health checkup machine according to the present invention; Figure 5 This is a schematic diagram of the installation of a scissor-type telescopic frame for an integrated health checkup machine according to the present invention; Figure 6 This is a cross-sectional view of the drive board of an integrated health checkup machine according to the present invention; Figure 7 This is a schematic diagram of the roller brush installation of an integrated health checkup machine according to the present invention; Figure 8 This is a cross-sectional view of the U-shaped plate of an integrated health checkup machine according to the present invention; Figure 9This is a schematic diagram of the track plate structure of an integrated health checkup machine according to the present invention; Figure 10 This is a schematic diagram of the first wedge-shaped block structure of an integrated health checkup machine according to the present invention; Figure 11 This is a schematic diagram of the second wedge-shaped block structure of an integrated health checkup machine according to the present invention; Figure 12 This is a cross-sectional view of the platform of an integrated health checkup machine according to the present invention; Figure 13 This is a schematic diagram of the installation of the sealing cover of an integrated health checkup machine according to the present invention; Figure 14 This is a schematic diagram of the driven pin installation of an integrated health checkup machine according to the present invention; Figure 15 This is a schematic diagram of the guide plate installation of an integrated health checkup machine according to the present invention; Figure 16 This is a schematic diagram of the track frame installation of an integrated health checkup machine according to the present invention.
[0017] Numbering in the diagram: 1-Base, 2-Square, 3-Boss, 4-Weight measuring instrument, 5-Column, 6-Blood pressure measuring instrument, 7-Display, 8-Height measuring instrument, 9-L-shaped plate, 10-Scissor-type telescopic frame, 11-Multi-stage telescopic rod, 12-Main slider, 13-Drive plate, 14-Secondary slider, 15-U-shaped plate, 16-Roller brush, 17-Scraper blade, 18-Long rotating shaft, 19-Coil spring, 20-Short guide rod, 21-Long box, 22-Spring, 23-Lifting pin, 24-Track plate, 25-Lower horizontal groove, 26-Upper horizontal groove, 27-First inclined groove 28-Long inclined groove, 29-Short horizontal groove, 30-Short inclined groove, 31-First wedge block, 32-Second wedge block, 33-Collection box, 34-Insertion hole, 35-Handle, 36-Pin, 37-Elastic element, 38-Baffle plate, 39-Extension seat, 40-Sealing cover, 41-Driven pin, 42-Ear plate, 43-Tension spring, 44-Guide plate, 45-Inclined keyway, 46-Pattern plate, 47-Clad seat, 48-Extrusion plate, 49-Guide pin, 50-Positioning pin, 51-Rail frame, 52-Bottom horizontal groove, 53-Upper inclined groove, 54-Disinfection box. Detailed Implementation
[0018] Example 1 like Figures 1-16As shown, the present invention provides an integrated health checkup machine, including a base 1. The upper end of the base 1 is provided with a testing platform, which includes a surrounding platform 2 and a boss 3. A weight measuring instrument 4 is provided inside the boss 3. A disinfection mechanism is also provided at the upper end of the boss 3. The disinfection mechanism includes a drive plate 13 that can move back and forth. The lower end of the drive plate 13 is provided with a roller brush 16 that cooperates with the weight measuring instrument 4. When the drive plate 13 moves forward, the roller brush 16 can roll along the upper surface of the weight measuring instrument 4. When the drive plate 13 moves backward, the roller brush 16 can disengage from the weight measuring instrument 4. The disinfection mechanism also includes a disinfection box 54. When the drive plate 13 moves backward to the top, the roller brush 16 can move downward and enter the disinfection box 54.
[0019] like Figures 1-6As shown, base 1 supports the entire device, platform 2 is fixed to the upper end of base 1, boss 3 is fixed to the upper end of platform 2, and weighing device 4 is fixed inside boss 3. Weighing device 4 is used to measure the user's weight. Weighing device 4 is existing technology and will not be described in detail. In use, the user can measure weight, height, and other data by standing on the upper surface of weighing device 4. After use, to prevent cross-infection, the upper surface of weighing device 4 can be disinfected in a timely manner through the disinfection mechanism. Roller brush 16 is normally in the disinfection chamber 54. Inside, the disinfection box 54 contains disinfectant solution, in which the roller brush 16 is immersed. The outer surface of the roller brush 16 is covered with absorbent cotton to absorb and store the disinfectant solution. When the drive plate 13 moves forward, the roller brush 16 rolls forward along the upper surface of the weight measuring instrument 4, thus disinfecting the upper surface. After timely disinfection, the scraper 17 removes any remaining disinfectant solution from the upper surface of the weight measuring instrument 4, preventing slippage during use. When the drive plate 13 moves backward, it drives the roller brush 16 backward. The roller brush 16 can move and disengage from the upper surface of the weight measuring instrument 4, meaning it no longer needs disinfection. When the drive plate 13 moves backward to the top, the roller brush 16 can move downward into the disinfection box 54, where it absorbs and stores disinfectant again, preparing for the next disinfection. This allows for rapid disinfection of the contact area after each user's measurement, effectively killing residual fungi, bacteria, and other pathogens, cutting off the cross-transmission routes of infectious diseases like athlete's foot, and significantly improving public health safety. The disinfection mechanism features an integrated design, tightly integrated with the main body of the health check machine, without occupying additional external space or affecting the original measurement accuracy and overall appearance, resulting in a compact structure. The disinfection operation can be automatically triggered or started with a single button, making the process convenient and efficient. It eliminates the need for dedicated staff or frequent manual wiping, ensuring timely disinfection and significantly reducing daily maintenance costs. Suitable for public places with high traffic and frequent use, it can maintain a clean and hygienic surface during long-term operation, giving users greater peace of mind and improving the overall user experience of the health check machine.
[0020] The base 1 has a column 5 on its upper end, a central control display 7 on the upper end of the column 5, a blood pressure measuring instrument 6 on one side of the column 5, and a height measuring instrument 8 on the upper end of the column 5.
[0021] like Figure 2 As shown, the central control display 7 is used to control the entire circuit of the physical examination machine. The central control display 7, the height measuring instrument 8 and the blood pressure measuring instrument 6 are all existing technologies and will not be described in detail.
[0022] The disinfection mechanism also includes an L-shaped plate 9, inside which is provided a multi-stage telescopic rod 11. The telescopic end of the multi-stage telescopic rod 11 is provided with a main slider 12, which is slidably connected to the inner wall of the L-shaped plate 9. A scissor-type telescopic frame 10 is provided at the front end of the L-shaped plate 9, and a drive plate 13 is installed at the front end of the scissor-type telescopic frame 10. When the main slider 12 moves, it can control the extension of the scissor-type telescopic frame 10. When the scissor-type telescopic frame 10 extends, it can make the drive plate 13 move forward.
[0023] like Figures 3-6 As shown, a secondary slider 14 is slidably connected to the inner wall of the drive plate 13, such as... Figure 5 As shown, one front end of the scissor-type telescopic frame 10 is hinged to the drive plate 13, and the other front end of the scissor-type telescopic frame 10 is hinged to the auxiliary slider 14. One rear end of the scissor-type telescopic frame 10 is hinged to the inner wall of the L-shaped plate 9, and the other rear end of the scissor-type telescopic frame 10 is hinged to the main slider 12. The main slider 12 can slide left and right on the inner wall of the L-shaped plate 9. When the multi-stage telescopic rod 11 is working, it can drive the main slider 12 to move left and right, thereby driving the scissor-type telescopic frame 10 to unfold or retract. When the scissor-type telescopic frame 10 unfolds, the auxiliary slider 14 can slide along the inner wall of the drive plate 13 and drive the drive plate 13 to move forward. When the scissor-type telescopic frame 10 retracts, it can cause the drive plate 13 to move backward, that is, control the forward and backward movement of the drive plate 13.
[0024] Both ends of the drive plate 13 are slidably connected to short guide rods 20. The lower ends of the two short guide rods 20 are fixed to a U-shaped plate 15. The roller brush 16 is provided with a long rotating shaft 18 inside. The long rotating shaft 18 is rotatably connected to the lower end of the inner wall of the U-shaped plate 15. Both ends of the inner wall of the U-shaped plate 15 are provided with coil springs 19 that cooperate with the long rotating shaft 18. The rear end of the U-shaped plate 15 is provided with a scraper 17.
[0025] like Figures 6-8 As shown, the short guide rod 20 can slide up and down on the inner wall of the drive plate 13, that is, the limiting U-shaped plate 15 can move up and down at the lower end of the drive plate 13, and when the drive plate 13 moves back and forth, it can drive the U-shaped plate 15 to move back and forth, that is, drive the roller brush 16 to move back and forth; the installation and shape of the coil spring 19 are as follows Figure 8As shown, one end of the coil spring 19 is fixed to the outer surface of the long rotating shaft 18, and the other end of the coil spring 19 is fixed to the inner wall of the U-shaped plate 15. When the roller brush 16 moves forward, it can rotate under frictional contact with the upper end face of the weight measuring instrument 4. When the roller brush 16 and the long rotating shaft 18 rotate, they can compress the coil spring 19. When the U-shaped plate 15 and the roller brush 16 move upward and disengage from the weight measuring instrument 4, the roller brush 16 can rotate in the opposite direction and reset under the elastic force of the coil spring 19. The scraper 17 is fixed to the rear end of the U-shaped plate 15. When the roller brush 16 moves forward, it can squeeze out disinfectant along the upper end face of the weight measuring instrument 4. At the same time, the scraper 17 can scrape the disinfectant, that is, scrape the disinfectant, germs, etc. into the designated position, that is, into the collection box 33.
[0026] Both sides of the U-shaped plate 15 are provided with long boxes 21, and the inner wall of each long box 21 is provided with retractable movable pins 23. Both sides of the boss 3 are provided with track plates 24, and the inner wall of each track plate 24 is provided with track grooves that cooperate with the movable pins 23.
[0027] like Figures 8-9 As shown, the long boxes 21 are all fixed to the two end faces of the U-shaped plate 15, and the movable pins 23 are all slidably connected to the inner wall of the long boxes 21, so that the movable pins 23 can move left and right, that is, move inward to retract or move outward to extend. The inner wall of the bottom end of the long boxes 21 is provided with springs 22 that cooperate with the movable pins 23. The springs 22 exert an outward elastic force on the movable pins 23 under normal conditions, so that the movable pins 23 are in the extended state under normal conditions. The track plate 24 is fixed to the two end faces of the boss 3. Through the cooperation of the set track groove with the movable pins 23, it can... The movable pin 23 moves along the track groove. That is, when the U-shaped plate 15, roller brush 16, movable pin 23, etc. move forward to the top, they can move upward, so that the roller brush 16 is disengaged from the upper end surface of the weight measuring instrument 4. When the roller brush 16 moves backward to reset, it no longer applies disinfectant to the upper end surface of the weight measuring instrument 4. When the U-shaped plate 15, roller brush 16, movable pin 23, etc. move backward to the top to reset, the roller brush 16 can move backward and downward at the same time, so that the roller brush 16 can enter the disinfection box 54 for immersion.
[0028] The track groove includes a lower horizontal groove 25, a first inclined groove 27, an upper horizontal groove 26, a long inclined groove 28, a short horizontal groove 29, and a short inclined groove 30. When the movable pin 23 moves from back to front, it can slide from the inner wall of the short horizontal groove 29 into the inner walls of the short inclined groove 30, the lower horizontal groove 25, and the first inclined groove 27 in sequence. When the movable pin 23 moves from front to back, it can slide from the inner wall of the upper horizontal groove 26 into the inner wall of the long inclined groove 28. The inner wall of the first inclined groove 27 is provided with a first wedge block 31 that cooperates with the movable pin 23, and the inner wall of the long inclined groove 28 is provided with a second wedge block 32 that cooperates with the movable pin 23.
[0029] like Figures 9-10As shown, when the movable pin 23 moves from back to front, it is positioned inside the short transverse groove 29, meaning the corresponding roller brush 16 is inside the disinfection chamber 54. When the drive plate 13 moves forward, the engagement of the movable pin 23 with the short transverse groove 29 and the short inclined groove 30 allows the movable pin 23 and roller brush 16 to move upward, moving the roller brush 16 out into the disinfection chamber 54. After the movable pin 23 moves forward and enters the inner wall of the lower transverse groove 25, the roller brush 16 can move to the upper end face of the weight measuring instrument 4, meaning the roller brush 16 begins normal operation. When the movable pin 23, roller brush 16, etc., continue to move forward to the designated position, the movable pin 23 enters the inner wall of the first inclined groove 27, allowing the movable pin 23, roller brush 16, etc., to move upward. When the roller brush 16 moves upward, it disengages from contact with the upper end face of the weight measuring instrument 4. The installation and shape of the first wedge block 31 and the second wedge block 32 are as follows: Figures 10-11As shown, both the first wedge block 31 and the second wedge block 32 have inclined surfaces and right-angled surfaces. By using the first wedge block 31 and the second wedge block 32, the movable pin 23 can only move along a specified trajectory direction, meaning the movable pin 23 can only move in the order of short transverse groove 29, short inclined groove 30, lower transverse groove 25, first inclined groove 27, upper transverse groove 26, and long inclined groove 28. When the movable pin 23 moves upwards and meets the first wedge block 31, under the action of the inclined surface of the first wedge block 31, the movable pin 23 can move inwards to compress the spring 22. When the movable pin 23 moves upwards to enter... When the pin 23 moves backward along the inner wall of the upper transverse groove 26, it will disengage from the first wedge block 31. This means the pin 23 can spring outward under the force of the spring 22, and the straight surface of the first wedge block 31 prevents it from moving downward and accidentally entering the inner wall of the first inclined groove 27. In other words, the first wedge block 31 ensures that the pin 23 can only enter the inner wall of the upper transverse groove 26 from the inner wall of the first inclined groove 27, preventing it from entering the inner wall of the first inclined groove 27. When the automatic reset occurs, the corresponding roller brush 16 moves backward from its upper position to reset, meaning the roller brush 16 no longer applies disinfectant to the upper surface of the weighing instrument 4. As the movable pin 23 and roller brush 16 continue to move backward, even if the movable pin 23 enters the inner wall of the long inclined groove 28, the movable pin 23 and roller brush 16 can move downward and backward simultaneously. Even if the roller brush 16 enters the disinfection box 54, when the movable pin 23 moves downward and encounters the second wedge block 32, the contact and engagement between the inclined surface of the second wedge block 32 and the movable pin 23 allows the movable pin 23 to move inward again to compress the spring 22. When the movable pin 23 moves downwards and enters the inner wall of the short transverse groove 29, the movable pin 23 can disengage from the second wedge block 32. That is, the movable pin 23 is ejected again under the elastic force of the spring 22, and under the direct obstruction of the second wedge block 32, when the movable pin 23 moves forward, it can only move forward along the inner wall of the short transverse groove 29 and will not accidentally enter the inner wall of the long inclined groove 28. That is, through the setting of the second wedge block 32, the movable pin 23 can only slide into the inner wall of the short transverse groove 29 from the inner wall of the long inclined groove 28 in one direction. At this time, the roller brush 16 moves to the bottom position, that is, it is completely immersed in the disinfectant.
[0030] The front end of the platform 2 is provided with a detachable collection box, and the upper end of the collection box is provided with a movable sealing cover 40. Inside the collection box, there is also a pressing plate 48 that cooperates with the roller brush 16. When the sealing cover 40 moves forward to open, the pressing plate 48 can move upward and forward at the same time.
[0031] like Figures 11-16As shown, the collection box is used to collect disinfection waste liquid and impurities after use. When the scraper 17 moves forward, it pushes the waste liquid into the collection box. The collection box is detachable for regular cleaning. The sealing cover 40 is normally in the rearmost position, sealing the collection box and reducing odor diffusion and environmental pollution. Extension seats 39 are fixed to both sides of the upper surface of the sealing cover 40. Driven pins 41 that cooperate with the drive plate 13 are fixed to the inner wall of the upper end of each extension seat 39. When the drive plate 13, U-shaped plate 15, roller brush 16, etc., move forward to the designated position, the drive plate 13 can meet and contact the driven pins 41. When the drive plate 13 continues to move forward, it will push the driven pins 41 and the sealing cover 40 forward, opening the collection box and pushing the disinfection waste liquid into it. As the drive plate 13 continues to push the sealing cover 40 forward... During movement, the extrusion plate 48 can contact and extrude the roller brush 16. When the roller brush 16 moves forward and the movable pin 23 enters the inner wall of the first inclined groove 27, the roller brush 16 can move upward and forward at the same time, that is, the roller brush 16 disengages from the upper surface of the weight measuring instrument 4. The extrusion plate 48 can also move upward and forward at the same time, keeping pace with the roller brush 16 and constantly extruding and contacting the roller brush 16. When the roller brush 16 moves upward, under the elastic force of the coil spring 19, the roller brush 16 can rotate. When the roller brush 16 rotates, in conjunction with the contact and extrusion of the extrusion plate 48, the extrusion plate 48 can scrape off the impurities on the outer surface of the roller brush 16, thereby cleaning the impurities adhering to the outer surface of the roller brush 16 and letting them fall into the collection box, thus completing the disinfection and cleaning process of the upper surface of the weight measuring instrument 4.
[0032] The sealing cover 40 is slidably connected to the upper end of the collection box. The front end of the sealing cover 40 is provided with ear plates 42 on both sides. Each ear plate 42 is provided with a tension spring 43 that cooperates with the sealing cover 40. The inner walls of both sides of the collection box are slidably connected with support plates 46. The extrusion plate 48 is installed on the upper end of the two support plates 46. The lower end of the sealing cover 40 is fixedly connected to the two sides of the track frame 51. The inner wall of the support plate 46 is provided with positioning pins 50. The track frame 51 is provided with bottom horizontal grooves 52 and upper inclined grooves 53 that cooperate with the positioning pins 50.
[0033] like Figure 16As shown, the sealing cover 40 can slide back and forth on the upper surface of the collection box. One end of the tension spring 43 is fixed to the ear plate 42, and the other end of the tension spring 43 is fixed to the front surface of the collection box. The tension spring 43 always exerts a backward pulling force on the ear plate 42 and the sealing cover 40, even when the sealing cover 40 is in the rearmost position under normal conditions, i.e., the collection box is in a sealed state. The tray 46 can slide up and down on the inner wall of the collection box. The squeezing plate 48 is installed on the upper end of the tray 46, i.e., when the tray 46 moves up and down, it can drive the squeezing plate 48 to move up and down. The positioning pin 50 is fixed to the inner wall of the tray 46. When the sealing cover 40, the track frame 51, etc. move forward and backward, the positioning pin 50 can slide back and forth on the inner wall of the tray 46. During forward movement, with the positioning pin 50 engaged with the bottom transverse groove 52, the support plate 46 and the extrusion plate 48 will not immediately move upward. That is, the support plate 46 and the extrusion plate 48 will only move upward when the sealing cover 40 moves forward a specified distance, to prevent the extrusion plate 48 from interfering with the movement of the sealing cover 40. When the sealing cover 40 moves forward to the point that the positioning pin 50 slides into the inner wall of the upper inclined groove 53, the sealing cover 40, the track frame 51, etc. continue to move forward, which enables the positioning pin 50, the support plate 46, the extrusion plate 48, etc. to move upward synchronously, so that the extrusion plate 48 moves upward and forward at the same time, keeping in line with the roller brush 16.
[0034] The upper surface of the tray 46 is slidably connected to the sandwich seat 47, and the extrusion plate 48 is installed on the inner wall of the two sandwich seats 47. The left and right ends of the extrusion plate 48 are provided with guide pins 49, and the left and right ends of the collection box 33 are provided with guide plates 44. The guide plates 44 are provided with oblique keyways 45 that cooperate with the guide pins 49.
[0035] like Figure 15 As shown, the sandwich seats 47 are slidably connected to the upper surface of the support plate 46, and the extrusion plate 48 is fixed to the inner wall of the two sandwich seats 47, so that the extrusion plate 48 can move up and down and back and forth. The guide plates 44 are fixed to the inner walls of both ends of the collection box 33. When the support plate 46, sandwich seats 47, extrusion plate 48, guide pin 49 and so on move upward synchronously, the guide pin 49, under the engagement with the inclined keyway 45, can make the guide pin 49, extrusion plate 48, sandwich seats 47 and so on move forward synchronously. That is, the extrusion plate 48 moves upward and forward at the same time, which can keep in line with the movement of the roller brush 16. When the sealing cover 40 moves backward to reset, the extrusion plate 48 can move backward and downward to reset at the same time, which will not be described in detail.
[0036] Both ends of the platform 2 are provided with pins 36 on their inner walls, and baffles 38 are fixedly attached to the outer surfaces of the pins 36. The inner walls at both ends of the platform 2 are also provided with elastic members 37 that cooperate with the baffles 38. The two end faces of the collection box are provided with insertion holes 34 that cooperate with the pins 36.
[0037] like Figures 12-14As shown, the pin 36 can slide left and right on the inner wall of the platform 2. Even if the pin 36 can only move left and right, handles 35 are fixed on both sides of the outer surface of the pin 36. The function of the handles 35 is to facilitate driving the pin 36 to move outward or inward. The function of the elastic element 37 is to drive the two baffles 38 and the pin 36 to have an inward driving force. Even if the pin 36 is stably engaged with the socket 34, the collection box can be locked by the engagement of the socket 34 and the pin 36, thereby limiting the movement of the collection box. When it is necessary to disassemble the collection box, by driving the two handles 35 to move outward, the two pins 36 can be driven to move outward. When the pins 36 are disengaged from the socket 34, the collection box can be disassembled.
[0038] During use, the user stands on the weighing scale 4 to complete the measurement of weight, height, and other data. After the measurement, the disinfection mechanism can be started automatically or with one button. The drive plate 13 drives the roller brush 16 to rise from the disinfection box 54 and move forward. The roller brush 16 rolls along the upper surface of the weighing scale 4 to evenly spread the absorbed disinfectant solution for disinfection. At the same time, the scraper 17 at the rear pushes the waste liquid into the collection box. When the roller brush 16 moves to the front end, it is automatically lifted off the table under the guidance of the track groove and works with the squeezing plate 48 to scrape off the impurities adhering to the surface. Then the drive plate 13 resets to the rear, and the roller brush 16 returns to the top of the disinfection box 54 while maintaining the raised state and descends to be immersed in the disinfectant solution, preparing for the next disinfection. This design integrates the disinfection mechanism with the main body of the health check machine, resulting in a compact structure that does not occupy additional space or affect measurement accuracy. After each use, the work surface is quickly disinfected, effectively killing pathogens such as fungi and bacteria, cutting off the cross-transmission of diseases like athlete's foot at the source, and significantly improving public health and safety. At the same time, the disinfection process is completed automatically, eliminating the need for manual wiping and greatly reducing the labor costs of daily maintenance. It is especially suitable for long-term use in public places with high traffic, ensuring peace of mind and hygiene for every user, and improving the overall user experience of the health check machine.
[0039] Example 2 In this embodiment, the travel matching between the bottom horizontal groove 52 and the first inclined groove 27 allows the sealing cover 40 to open first, and the timing of the extrusion plate 48 starting to rise corresponds to the timing of the roller brush 16 starting to rise, reducing the possibility of the extrusion plate 48 prematurely contacting or delaying contact with the roller brush 16.
[0040] The effective guide length of the bottom transverse groove 52 refers to the distance that the positioning pin 50 travels relative to the track frame 51 in the front-back direction after the drive plate 13 starts to push the driven pin 41 and drive the sealing cover 40 to move forward. This distance is relative to the initial position of the positioning pin 50 in the bottom transverse groove 52 and moves to the entrance position of the upper inclined groove 53.
[0041] After the effective guide length of the bottom horizontal groove 52 contacts the driven pin 41 of the drive plate 13, the live pin 23 continues to move forward until it matches the forward stroke of the drive plate 13 corresponding to the entrance position of the first inclined groove 27. This ensures that when the positioning pin 50 enters the upper inclined groove 53 from the bottom horizontal groove 52, the live pin 23 simultaneously or substantially simultaneously enters the first inclined groove 27 from the lower horizontal groove 25.
[0042] When the drive plate 13 just contacts the driven pin 41, the sealing cover 40 begins to move forward under the push of the drive plate 13, and the track frame 51 moves forward synchronously with the sealing cover 40. At this time, the positioning pin 50 is still located in the bottom transverse groove 52, and the positioning pin 50 and the bottom transverse groove 52 slide relative to each other in the front-back direction. The bottom transverse groove 52 does not guide the positioning pin 50 to move upward. The support plate 46, the sandwich seat 47 and the pressing plate 48 remain in the lower position.
[0043] The sealing cover 40 opens first by the relative movement of the positioning pin 50 within the bottom transverse groove 52, creating an opening above the collection box for waste liquid and impurities to enter. Since the squeezing plate 48 remains in the lower position during this stage, it does not enter the movement area of the roller brush 16, which is still at its working height, thus reserving space for the roller brush 16 to complete the rolling disinfection of the front area of the weighing instrument 4.
[0044] The drive plate 13 continues to move forward. When the live pin 23 reaches the entrance position of the first inclined groove 27, the positioning pin 50 simultaneously or substantially simultaneously reaches the entrance position of the upper inclined groove 53. Under the guidance of the first inclined groove 27, the live pin 23 begins to move upward, causing the U-shaped plate 15 and the roller brush 16 to gradually rise. Under the guidance of the upper inclined groove 53, the positioning pin 50 drives the support plate 46, the sandwich seat 47, and the extrusion plate 48 to begin to move upward.
[0045] Through the above-mentioned stroke matching, the lifting action of the extrusion plate 48 occurs at the stage when the roller brush 16 begins to detach from the weighing instrument 4. The extrusion plate 48 will not apply extrusion force to the roller brush 16 prematurely while the roller brush 16 is still attached to the weighing instrument 4 and performing the rolling disinfection function, nor will it remain in the lower position after the roller brush 16 has been significantly lifted and has begun to rotate in the opposite direction.
[0046] To ensure that the above-mentioned initial relationship remains stable during subsequent movement, the extension length and height variation of the upper inclined groove 53 along the front-back direction are coordinated with the extension length and height variation of the first inclined groove 27 along the front-back direction, so that the amount of rise of the extrusion plate 48 formed when the positioning pin 50 moves relative to the upper inclined groove 53 is coordinated with the amount of rise of the roller brush 16 formed when the movable pin 23 moves along the first inclined groove 27.
[0047] The aforementioned coordination refers to the fact that during the process of the roller brush 16 being lifted along the first inclined groove 27, the relative height difference between the extrusion plate 48 and the roller brush 16 is maintained within a range where the extrusion plate 48 can continuously contact the roller brush 16, without requiring the extrusion plate 48 and the roller brush 16 to have exactly the same amount of ascent at all positions. When the roller brush 16 moves upward, the extrusion plate 48 moves upward accordingly to avoid the two separating due to excessive difference in lift; at the same time, the amount of ascent of the extrusion plate 48 is not greater than the degree that would cause excessive pressure on the roller brush 16, to avoid the extrusion plate 48 hindering the roller brush 16 from rotating in the reverse direction under the action of the coil spring 19.
[0048] As the support plate 46, sandwich seat 47, and extrusion plate 48 move upward, the guide pins 49 at both ends of the extrusion plate 48 move along the inclined keyway 45 on the guide plate 44. The inclination direction of the inclined keyway 45 corresponds to the forward movement direction of the roller brush 16 when it is lifted along the first inclined groove 27, so that the extrusion plate 48 moves forward while moving upward, in order to compensate for the forward displacement generated by the roller brush 16 during its movement along the first inclined groove 27.
[0049] The forward displacement of the extrusion plate 48 formed by the inclined keyway 45 is coordinated with the forward displacement of the roller brush 16 during its movement along the first inclined groove 27, so that the scraping position of the extrusion plate 48 is kept on the outer peripheral surface of the roller brush 16, thus preventing the extrusion plate 48 from contacting the roller brush 16 only in the initial position and then separating from the roller brush 16 during the subsequent lifting process.
[0050] As the roller brush 16 moves upward along the first inclined groove 27 and disengages from the upper surface of the weight measuring instrument 4, the long rotating shaft 18, under the elastic force of the coil spring 19, drives the roller brush 16 to rotate in the opposite direction. At this time, the sealing cover 40 has already opened, and an opening for receiving waste liquid and impurities has been formed above the collection box; the extrusion plate 48 remains in contact with the roller brush 16 under the combined guidance of the upper inclined groove 53 and the inclined keyway 45.
[0051] When the roller brush 16 rotates in the reverse direction, the absorbent cotton on its outer surface passes through the edge of the extrusion plate 48 in sequence. Some of the disinfectant mixed in with the absorbent cotton and the impurities adhering to the surface of the absorbent cotton are squeezed and scraped off, and fall into the collection box through the already opened collection box opening.
[0052] The contact between the extrusion plate 48 and the roller brush 16 occurs after the roller brush 16 begins to detach from the weighing instrument 4. The extrusion force generated by the extrusion plate 48 on the roller brush 16 will not be transmitted to the upper surface of the weighing instrument 4 through the roller brush 16, nor will it prevent the roller brush 16 from completing the table disinfection process of the weighing instrument 4.
[0053] When the drive plate 13 moves backward to reset, it releases the push on the driven pin 41. The sealing cover 40 moves backward under the action of the tension spring 43, and the track frame 51 moves backward synchronously with the sealing cover 40. The positioning pin 50 returns from the upper inclined groove 53 to the bottom horizontal groove 52, causing the support plate 46, the sandwich seat 47, and the pressing plate 48 to gradually move downward; the guide pin 49 moves in the opposite direction along the inclined keyway 45, causing the pressing plate 48 to retract synchronously.
[0054] At this point, the roller brush 16 is already in a raised state and moving backward under the guidance of the upper transverse groove 26. The downward and backward resetting process of the extrusion plate 48 will not enter the return path of the roller brush 16. After the roller brush 16 moves to the rear end, the movable pin 23 moves downward along the long inclined groove 28, allowing the roller brush 16 to re-enter the disinfection box 54, and the sealing cover 40 returns to the closed position under the action of the tension spring 43.
[0055] After the drive plate 13 contacts the driven pin 41, the locating pin 50 first moves relative to the bottom transverse groove 52. During this stroke, the track frame 51 moves forward with the sealing cover 40, but the height of the locating pin 50 does not change significantly, so the support plate 46, the sandwich seat 47, and the pressing plate 48 remain in the lower position. This geometry causes the forward movement of the drive plate 13 to first be converted into the horizontal opening action of the sealing cover 40, rather than immediately into the upward movement of the pressing plate 48.
[0056] When the effective guide length of the bottom transverse groove 52 matches the stroke required for the live pin 23 to reach the inlet of the first inclined groove 27, the timing of the locating pin 50 reaching the inlet of the upper inclined groove 53 corresponds to the timing of the live pin 23 reaching the inlet of the first inclined groove 27. Thus, the sealing cover 40 has completed the necessary opening and clearance, while the extrusion plate 48 has just begun to move upward, and the roller brush 16 has just begun to detach from the weighing instrument 4.
[0057] The aforementioned geometric relationship ensures that the same forward movement of the drive plate 13 is sequentially connected, forming the actions of opening the sealing cover 40, raising the roller brush 16, and contacting the extrusion plate 48 with the roller brush 16, thus preventing the sealing cover 40, the extrusion plate 48, and the roller brush 16 from entering the same area simultaneously and disorderly.
[0058] If the effective guide length of the bottom horizontal groove 52 is reduced, the positioning pin 50 will enter the upper inclined groove 53 earlier, and the lifting point of the extrusion plate 48 will move forward accordingly. This makes it easy for the extrusion plate 48 to push against the roller brush 16 while the roller brush 16 is still in contact with the weight measuring instrument 4. If the effective guide length of the bottom horizontal groove 52 is increased, the lifting point of the positioning pin 50 will move backward accordingly. When the roller brush 16 has already been lifted and started to rotate in the opposite direction, the extrusion plate 48 may still not be in contact with the roller brush 16.
[0059] Therefore, the effective guide length of the bottom transverse groove 52 is responsible for matching the starting point of the action of two different transmission paths. It is not only used to change the opening distance of the sealing cover 40, but also affects the opening degree of the sealing cover 40, the lifting point of the extrusion plate 48, and the contact point between the extrusion plate 48 and the roller brush 16.
[0060] After the effective guide length of the bottom transverse groove 52 determines the starting point of the action, the lifting coordination between the upper inclined groove 53 and the first inclined groove 27 ensures that the extrusion plate 48 and the roller brush 16 maintain a suitable relative height during the subsequent lifting process; the forward displacement formed by the inclined keyway 45 compensates for the forward movement of the roller brush 16 when it is lifted along the first inclined groove 27, so that the extrusion plate 48 can maintain contact with the movement of the roller brush 16.
[0061] Therefore, the extrusion plate 48 can continuously extrude and scrape the outer surface of the roller brush 16 during the reverse rotation of the roller brush 16, reducing localized missed scraping caused by interruption of contact between the extrusion plate 48 and the roller brush 16. The squeezed-out disinfectant and scraped-off impurities can fall into the opened collection box, reducing the possibility of waste liquid or impurities falling outside the collection box.
[0062] Using the transition position of the movable pin 23 entering the first inclined groove 27 and the roller brush 16 changing from the rolling disinfection state to the lifting cleaning state as the matching reference, the positioning pin 50 enters the upper inclined groove 53 synchronously or substantially synchronously at this transition position. This limitation directly links the guide length of the bottom horizontal groove 52 with the working state transition of the roller brush 16, causing the sealing cover 40 to open before the transition and the extrusion plate 48 to begin lifting when the roller brush 16 begins to detach from the weight measuring instrument 4.
[0063] Its direct technical effect is to prevent the extrusion plate 48 from contacting the roller brush 16 too early or too late, so that the roller brush 16 can complete the tabletop rolling disinfection and be squeezed and scraped by the extrusion plate 48 in time when it starts to rotate in the opposite direction.
[0064] Based on this, the lifting coordination between the upper inclined groove 53 and the first inclined groove 27, as well as the forward displacement compensation of the inclined keyway 45, ensure that the extrusion plate 48 maintains continuous contact during the lifting of the roller brush 16, further reducing contact interruption or excessive extrusion caused by inconsistent displacement changes in different transmission paths.
Claims
1. An integrated health checkup machine, comprising a base (1), characterized in that: The base (1) is provided with a testing platform at the upper end. The testing platform includes a platform (2) and a boss (3). The boss (3) is provided with a weight measuring instrument (4). The boss (3) is also provided with a disinfection mechanism at the upper end. The disinfection mechanism includes a drive plate (13) that can move back and forth. The lower end of the drive plate (13) is provided with a roller brush (16) that cooperates with the weight measuring instrument (4). When the drive plate (13) moves forward, the roller brush (16) can roll along the upper surface of the weight measuring instrument (4). When the drive plate (13) moves backward, the roller brush (16) can disengage from the weight measuring instrument (4). The disinfection mechanism also includes a disinfection box (54). When the drive plate (13) moves backward to the top, the roller brush (16) can move downward and enter the disinfection box (54).
2. The integrated health checkup machine as described in claim 1, characterized in that: The base (1) has a column (5) at the top, a central control display (7) at the top of the column (5), a blood pressure measuring instrument (6) on one side of the column (5), and a height measuring instrument (8) at the top of the column (5).
3. The integrated health checkup machine as described in claim 1, characterized in that: The disinfection mechanism also includes an L-shaped plate (9), inside which is provided a multi-stage telescopic rod (11), and at the telescopic end of the multi-stage telescopic rod (11) is provided a main slider (12), which is slidably connected to the inner wall of the L-shaped plate (9). At the front end of the L-shaped plate (9) is provided a scissor telescopic frame (10), and a drive plate (13) is installed at the front end of the scissor telescopic frame (10). When the main slider (12) moves, it can control the extension of the scissor telescopic frame (10). When the scissor telescopic frame (10) extends, it can make the drive plate (13) move forward.
4. The integrated health checkup machine as described in claim 1, characterized in that: The inner walls of both ends of the drive plate (13) are slidably connected with short guide rods (20). A U-shaped plate (15) is fixedly connected to the lower end of the two short guide rods (20). A long rotating shaft (18) is provided inside the roller brush (16). The long rotating shaft (18) is rotatably connected to the inner wall of the lower end of the U-shaped plate (15). Both ends of the inner wall of the U-shaped plate (15) are provided with coil springs (19) that cooperate with the long rotating shaft (18). A scraper (17) is provided at the rear end of the U-shaped plate (15).
5. The integrated health checkup machine as described in claim 4, characterized in that: Both sides of the U-shaped plate (15) are provided with long boxes (21), and the inner walls of the long boxes (21) are provided with retractable live pins (23). Both sides of the boss (3) are provided with track plates (24), and the inner walls of the track plates (24) are provided with track grooves that cooperate with the live pins (23).
6. The integrated health checkup machine as described in claim 5, characterized in that: The track groove includes a lower horizontal groove (25), a first inclined groove (27), an upper horizontal groove (26), a long inclined groove (28), a short horizontal groove (29), and a short inclined groove (30). When the movable pin (23) moves from back to front, the movable pin (23) can slide from the inner wall of the short horizontal groove (29) into the inner walls of the short inclined groove (30), the lower horizontal groove (25), and the first inclined groove (27). When the movable pin (23) moves from front to back, the movable pin (23) can slide from the inner wall of the upper horizontal groove (26) into the inner wall of the long inclined groove (28). The inner wall of the first inclined groove (27) is provided with a first wedge block (31) that cooperates with the movable pin (23), and the inner wall of the long inclined groove (28) is provided with a second wedge block (32) that cooperates with the movable pin (23).
7. The integrated health checkup machine as described in claim 1, characterized in that: The front end of the platform (2) is provided with a detachable collection box, and the upper end of the collection box is provided with a movable sealing cover (40). Inside the collection box, there is also a pressing plate (48) that cooperates with the roller brush (16). When the sealing cover (40) moves forward and opens, the pressing plate (48) can move upward and forward at the same time.
8. The integrated health checkup machine as described in claim 7, characterized in that: The sealing cover (40) is slidably connected to the upper end of the collection box. The front end of the sealing cover (40) is provided with ear plates (42) on both sides. The ear plates (42) are provided with tension springs (43) that cooperate with the sealing cover (40). The inner walls on both sides of the collection box are slidably connected with support plates (46). The extrusion plate (48) is installed on the upper end of the two support plates (46). The lower end of the sealing cover (40) is fixedly connected with track frames (51) on both sides. The inner walls of the support plates (46) are provided with positioning pins (50). The track frames (51) are provided with bottom horizontal grooves (52) and upper inclined grooves (53) that cooperate with the positioning pins (50).
9. The integrated health checkup machine as described in claim 8, characterized in that: The upper surface of the tray (46) is slidably connected to the sandwich seat (47), and the extrusion plate (48) is installed on the inner wall of the two sandwich seats (47). The left and right ends of the extrusion plate (48) are provided with guide pins (49), and the left and right ends of the collection box (33) are provided with guide plates (44). The guide plates (44) are provided with oblique keyways (45) that cooperate with the guide pins (49).
10. The integrated health checkup machine as described in claim 7, characterized in that: The inner walls at both ends of the platform (2) are provided with pins (36), and baffles (38) are fixedly attached to the outer surface of the pins (36). The inner walls at both ends of the platform (2) are also provided with elastic elements (37) that cooperate with the baffles (38). The end faces of both sides of the collection box are provided with insertion holes (34) that cooperate with the pins (36).