Human body temperature measurement device
By introducing a cleaning belt and drive assembly into the infrared thermometer, automatic cleaning and updating and temperature measurement control are achieved, solving the cumbersome operation and hygiene problems of existing infrared thermometers and improving the safety and convenience of temperature measurement in the clinic.
Patent Information
- Application Number
- CN202011226418.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-11-05
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2040-11-05
AI Technical Summary
The existing infrared thermometers have complicated operation procedures and hygiene issues when used in the clinic, and handheld temperature measurement can easily lead to contact infection.
A human body temperature measurement device was designed, which included an infrared temperature measurement module, a bearing support, a cleaning belt and a drive assembly. The drive assembly drove the cleaning belt to move on the bearing surface, and the cleaning belt was continuously updated to ensure sanitary conditions. The thermometer was automatically turned on and off by a trigger block and a bearing touch switch.
It simplifies the temperature measurement operation process, improves the hygiene and safety of the thermometer, reduces the contact between the patient and the temperature measurement site, ensures the renewal of the cleaning belt during each temperature measurement, and avoids cross infection.
Smart Images

Figure CN112229525B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of Internet technology, and in particular to a human body temperature measuring device. Background Art
[0002] In the clinic, when a patient has fever symptoms, a thermometer is usually used to measure the temperature. However, this method takes a long time to measure and must be disinfected with alcohol before use. It is time-consuming and has certain hygiene issues.
[0003] Although existing infrared thermometers can quickly measure the temperature of the person being measured, most of the existing infrared thermometers are handheld. In this case, the doctor needs to hold the infrared thermometer to measure the patient's temperature. After the result is given, the doctor needs to put down the infrared thermometer and then use the computer to input the patient's temperature into the system. This is not only cumbersome, but also the temperature measuring part is likely to come into contact with the patient's temperature measuring part, and hygiene issues cannot be guaranteed. Summary of the Invention
[0004] To solve the above problems, the human body temperature measuring device provided by the present invention can continuously update the cleaning belt on the carrying surface by providing a cleaning belt and a driving assembly, thereby ensuring good sanitary conditions of the infrared thermometer.
[0005] The present invention provides a human body temperature measurement device, comprising: an infrared temperature measurement module, a bearing support, a cleaning belt and a driving component;
[0006] The bearing support includes: a bearing surface, the bearing support is used to support the part that needs to be temperature measured through the bearing surface, the infrared temperature measurement module is located on one side of the bearing support, and the infrared temperature measurement module is used to measure the temperature of the part supported on the bearing surface;
[0007] The driving assembly is connected to both ends of the cleaning belt, and is used to drive the cleaning belt to move while adhering to the carrying surface.
[0008] Optionally, a storage cavity is provided inside the bearing support, and the driving assembly is fixedly disposed in the storage cavity.
[0009] Optionally, the driving assembly includes: a first rotating shaft, a second rotating shaft, a first driving member, and a second driving member;
[0010] The first driving member is used to drive the first rotating shaft to rotate, the second driving member is used to drive the second rotating shaft to rotate, one end of the cleaning belt is fixedly connected to the first rotating shaft, and the other end of the cleaning belt is fixedly connected to the second rotating shaft.
[0011] Optionally, the human body temperature measuring device further includes: a switch control module;
[0012] The switch control module includes: a bearing block, a trigger block, a bearing touch switch, a compression spring and a support plate;
[0013] The trigger block, the load-bearing touch switch, the compression spring and the support plate are all located in the storage cavity, the compression spring is located above the support plate, the load-bearing block is located above the compression spring, the load-bearing block passes through the load-bearing surface and is slidably connected to the load-bearing support, the bottom end of the load-bearing block contacts the compression spring, the trigger block is fixedly connected to the load-bearing block, and the load-bearing touch switch is electrically connected to the first driving member and / or the second driving member;
[0014] When the bearing support bears the part requiring temperature measurement, the trigger block contacts the bearing touch switch;
[0015] When the portion leaves the bearing support, the trigger block is separated from the bearing touch switch;
[0016] When the trigger block contacts and then separates from the load-bearing touch switch, the load-bearing touch switch controls the first driving member and / or the second driving member to turn on.
[0017] Optionally, the support base further comprises: a positioning surface;
[0018] The positioning surface is located above the bearing surface, the positioning surface is located on a side of the bearing surface away from the infrared temperature measurement module, and the positioning surface and the bearing surface form a certain angle in a vertical plane;
[0019] The positioning surface is used to define the relative distance between the portion supported on the supporting surface and the infrared temperature measurement module.
[0020] Optionally, the cleaning belt is attached to a side of the positioning surface facing the infrared temperature measurement module, and the driving assembly is further used to drive the cleaning belt to move on the positioning surface.
[0021] Optionally, the bearing support is further fixedly provided with at least one guide shaft, and the at least one guide shaft is used to change the moving direction of the cleaning belt between the first rotating shaft and the second rotating shaft.
[0022] Optionally, a liquid storage tank is provided in the storage cavity, the liquid storage tank is fixedly connected to the bearing support, and the liquid storage tank is used to hold disinfectant;
[0023] The driving assembly is further used to drive the cleaning belt through the liquid storage tank to disinfect the cleaning belt.
[0024] Optionally, a scraper is provided in the storage cavity, one end of the scraper is pivotally connected to the liquid storage tank, and the other end of the scraper contacts the cleaning belt;
[0025] A compression spring is provided on one side of the scraping plate, one end of the compression spring is fixedly connected to the bearing support or the liquid storage tank, and the other end of the compression spring is fixedly connected to the scraping plate.
[0026] Optionally, a heating rod is provided in the storage cavity, the heating rod is fixedly connected to the bearing support, the cleaning belt is attached to the heating rod, and the heating rod is used to dry the cleaning belt.
[0027] The human body temperature measuring device provided by the embodiment of the present invention is provided with a cleaning belt and a driving assembly, wherein the driving assembly can drive the cleaning belt to move, thereby continuously updating the cleaning belt on the carrying surface, so that when the part is placed on the carrying support, it can contact the new cleaning belt, thereby ensuring the good sanitary conditions of the infrared thermometer. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 This is a structural diagram of an infrared temperature measuring device according to an embodiment of the present application without the cleaning tape;
[0029] Figure 2 This is a cross-sectional view of an infrared temperature measuring device according to an embodiment of the present application when not in use and without a cleaning tape;
[0030] Figure 3 for Figure 2 A partial enlarged view of point A in the middle;
[0031] Figure 4 A cross-sectional view of a bearing support according to an embodiment of the present application;
[0032] Figure 5 This is a side view of an infrared temperature measuring device according to an embodiment of the present application when not in use.
[0033] Reference numerals
[0034] 1. Infrared temperature measurement module; 11. Infrared temperature measurement sensor head; 12. Casing; 2. Temperature measurement support; 21. First positioning slot; 22. Second positioning slot; 23. Guide slot; 24. Second slide hole; 25. Chamfer; 26. Storage chamber; 261. Storage opening; 262. Storage main chamber; 27. Accommodation chamber; 28. Slot; 3. Bearing support; 31. Bearing surface; 32. Positioning surface; 33. Storage cavity; 4. Switch control module; 41. Bearing block; 42. Trigger block; 43. Bearing touch switch; 44. Compression spring; 45. Support plate; 5. Position control assembly; 51. Positioning unit; 511. Positioning spring; 512. Positioning block; 52. Release unit; 52 1. Button; 5211. Pressing part; 5212. Pushing part; 522. Return spring; 53. Pushing unit; 531. Telescopic spring; 532. Push plate; 5321. First sliding hole; 6. Driving assembly; 61. First rotating shaft; 62. Second rotating shaft; 63. First driving member; 64. Second driving member; 71. Connecting member; 72. Cleaning belt; 73. Elastic card bean; 74. Temperature measuring touch switch; 75. Coil spring; 76. Guide shaft; 77. Liquid storage tank; 78. Squeegee; 79. Compression spring; 80. Heating rod; 81. Closing plate; 82. Ventilation hole; 83. Display screen; 84. Broadcasting hole; 85. Cushioning pad; 86. Rubber pad; 87. Handle. DETAILED DESCRIPTION
[0035] To make the objectives, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts shall fall within the scope of protection of the present invention.
[0036] The present invention provides an infrared temperature measuring device, combined with Figure 1 、 Figure 2 and Figure 4 The infrared temperature measuring device is mainly used to measure the temperature of a person's wrist. The infrared temperature measuring device includes: an infrared temperature measuring module 1, a temperature measuring support 2, a bearing support 3, a switch control module 4, a position control component 5, a cleaning belt 72 and a driving component 6.
[0037] In which, the position control component 5 is connected to the infrared temperature measuring module 1, and the temperature measuring support 2 is provided with a storage chamber 26. The infrared temperature measuring module 1 includes: an infrared temperature measuring sensor head 11 and a housing 12. The infrared temperature measuring sensor head 11 is fixedly connected to the housing 12, and the housing 12 is slidingly connected to the temperature measuring support 2 along a first direction through the storage chamber 26; the infrared temperature measuring device also includes: a first workstation and a second workstation; when the infrared temperature measuring module 1 is located at the first workstation, the position control component 5 is used to position the infrared temperature measuring sensor head 11 in the storage chamber 26; when the infrared temperature measuring module 1 is located at the second workstation, the position control component 5 is used to position the infrared temperature measuring sensor head 11 on the outside of the temperature measuring support 2. In this way, by adjusting the relative position relationship between the infrared temperature measuring module 1 and the temperature measuring support 2, that is, switching the infrared temperature measuring module 1 to move between the first station and the second station, when the infrared temperature measuring module 1 is not in use, the infrared temperature measuring module 1 can be moved to the first station, so that the infrared temperature measuring module 1 is stored in the temperature measuring support 2, thereby protecting the infrared temperature measuring module 1; when infrared temperature measurement is needed, the infrared temperature measuring module 1 can be moved to the second station through the position control component 5, so that the infrared temperature measuring sensor head measures the temperature of the wrist at the specified position.
[0038] Specific, combined Figure 2 The position control assembly 5 includes a locking unit 51, a releasing unit 52, and a pushing unit 53. Both the locking unit 51 and the pushing unit 53 are located in the storage chamber 26. The locking unit 51 is used to secure the infrared temperature measurement module 1 when the infrared temperature measurement module 1 is located at the first station or the second station. The releasing unit 52 is used to release the locking unit 51 from securing the infrared temperature measurement module 1 at the first station. The pushing unit 53 is used to push the infrared temperature measurement module 1 toward the second station when the releasing unit 52 releases the locking unit 51 from securing the infrared temperature measurement module 1 at the first station.
[0039] In this embodiment, the pushing unit 53 includes a telescopic spring 531 and a push plate 532. The push plate 532 is slidably connected to the temperature measurement support 2 along a first direction. The infrared temperature measurement module 1 is located above and fixedly connected to the push plate 532. The telescopic spring 531 is located below the push plate 532. The bottom end of the telescopic spring 531 is fixedly connected to the temperature measurement support 2, and the top end of the telescopic spring 531 is fixedly connected to the push plate 532.
[0040] The locking unit 51 can be provided on the housing 12 or the push plate 532. Figure 3In this embodiment, the locking unit 51 is provided on the push plate 532. Specifically, the locking unit 51 includes: a locking spring 511 and a locking block 512. A first sliding hole 5321 is provided on the side wall of the push plate 532. The locking spring 511 is located in the first sliding hole 5321. One end of the locking block 512 is slidably connected to the push plate 532 along a second direction through the first sliding hole 5321 toward the locking spring 511. The second direction intersects with the first direction. In this embodiment, the first direction is the up-down direction, and the second direction is the left-right direction. The left end of the locking spring 511 contacts the locking block 512, and the right end of the locking spring 511 contacts the push plate 532.
[0041] The temperature measuring support 2 is provided with a first positioning groove 21 and a second positioning groove 22 along the first direction on the side wall of the storage chamber 26. In this embodiment, the first positioning groove 21 is located below the second positioning groove 22. In this way, when the infrared temperature measuring module 1 is located at the first working position, the left end of the positioning block 512 is plugged into the temperature measuring support 2 in the horizontal direction through the first positioning groove 21 under the action of the positioning spring 511, so that the push plate 532 cannot move upward under the action of the telescopic spring 531. Similarly, when the infrared temperature measuring module 1 is located at the second working position, the left end of the positioning block 512 is plugged into the temperature measuring support 2 in the horizontal direction through the second positioning groove 22 under the action of the positioning spring 511, so that the push plate 532 cannot move upward under the action of the telescopic spring 531.
[0042] In this embodiment, a second sliding hole 24 is defined on the outer surface of the temperature measuring support 2, which communicates with the first positioning slot 21. The release unit 52 includes a button 521 and a return spring 522. One end of the button 521 passes through the second sliding hole 24 and is slidably connected to the temperature measuring support 2 along the second direction via the first positioning slot 21. The other end of the button 521 passes through the second sliding hole 24 and is located outside the temperature measuring support 2.
[0043] The button 521 includes a pressing portion 5211 and a pushing portion 5212. The left end of the pressing portion 5211 is located outside the temperature measuring support 2, the right end of the pressing portion 5211 is fixedly connected to the left end of the pushing portion 5212, and the right end of the pushing portion 5212 is slidably connected to the temperature measuring support 2 in the left-right direction through the second sliding hole 24. The return spring 522 is located on the right side of the pressing portion 5211 and is used to push the pressing portion 5211 away from the pushing portion 5212 until the right end of the pressing portion 5211 contacts the temperature measuring support 2 in the left-right direction. In this way, when the infrared temperature measuring module 1 needs to be moved from the first station to the second station, it is only necessary to press the button 521 on the outside of the temperature measuring support 2. The button 521 can push the locking block 512 to move to the right and disengage from the first positioning groove 21, so that the push plate 532 pushes the infrared temperature measuring module 1 upward under the action of the telescopic spring 531; when the infrared temperature measuring module 1 moves to the second station, the locking block 512 is plugged into the temperature measuring support 2 through the second positioning groove 22 under the action of the locking spring 511, thereby fixing the position of the infrared temperature measuring module 1.
[0044] In this embodiment, the temperature measuring support 2 has a guide groove 23 formed in the side wall of the storage chamber 26 in the vertical direction. The guide groove 23 is located between the first positioning groove 21 and the second positioning groove 22, and the two ends of the guide groove 23 are connected to the first positioning groove 21 and the second positioning groove 22 respectively. The width of the guide groove 23 is adapted to the left end of the locking block 512. The provision of the guide groove 23 ensures that the locking block 512 can slide accurately into the second positioning groove 22 when it is separated from the first positioning groove 21.
[0045] Furthermore, a chamfer 25 is provided at the junction of the second positioning groove 22 and the guide groove 23. The end surface of the locking block 512 facing the guide groove 23 is a curved surface. The provision of the chamfer 25 facilitates downward pressure on the housing 12, causing the locking block 512 to disengage from the second positioning groove 22 and move toward the first positioning groove 21. Providing a curved surface on one end surface of the locking block 512 not only facilitates disengagement from the first or second positioning groove 21, but also reduces friction experienced by the locking block 512 as it moves within the guide groove 23.
[0046] In an optional embodiment, the position control component 5 includes an electric push rod. During the process of moving the infrared temperature measurement module 1, the infrared temperature measurement module 1 can be switched between the first position and the second position by simply controlling the electric push rod to drive the module to move up and down.
[0047] In this embodiment, the storage chamber 26 includes a storage opening 261 and a main storage chamber 262. The storage opening 261 is connected to the main storage chamber 262. The storage opening 261 is opened on the surface of the temperature measuring support 2, and the main storage chamber 262 is opened in the temperature measuring support 2. The size of the interface of the storage opening 261 along the first direction is smaller than the size of the interface of the main storage chamber 262 along the first direction. The infrared temperature measuring module 1 is slidably connected to the temperature measuring support 2 through the storage opening 261, and the push plate 532 is slidably connected to the temperature measuring support 2 through the storage main chamber 262. A buffer pad 85 is fixedly provided on one end of the main storage chamber 262 facing the storage opening 261. By limiting the structure of the storage chamber 26, it is possible to prevent the push plate 532 from driving the infrared temperature measuring module 1 to remove the temperature measuring support 2. The buffer pad 85 can reduce the impact force between the top of the locking block 512 and the temperature measuring support 2 when the locking block 512 is inserted into the second positioning groove 22, thereby extending the service life of the locking block 512.
[0048] Combine Figure 4 The bearing support 3 includes a bearing surface 31 and a positioning surface 32. The bearing surface 31 is the upper surface of the bearing support 3 close to the temperature measurement support 2. The bearing support 3 is used to support the part that needs to be measured temperature through the bearing surface 31. The infrared temperature measurement module 1 is located on the left side of the bearing support 3. The infrared temperature measurement module 1 is used to measure the temperature of the wrist supported on the bearing surface 31. The positioning surface 32 is located on the side of the bearing surface 31 away from the infrared temperature measurement module 1. The positioning surface 32 is perpendicular to the bearing surface 31 and is used to limit the relative distance between the part supported on the bearing surface 31 and the infrared temperature measurement module 1. By setting the positioning surface 32, the position of the wrist on the bearing support 3 can be limited. After adjusting the position of the bearing support 3, the infrared temperature measurement module 1 and the wrist maintain an effective temperature measurement distance.
[0049] Furthermore, a connector 71 is provided between the bearing support 3 and the temperature measuring support 2. One end of the connector 71 is fixedly connected to the temperature measuring support 2, and the other end of the connector 71 is fixedly connected to the bearing support 3. The connector 71 is used to adjust the relative distance between the bearing support 3 and the infrared temperature measuring module 1. The connector 71 includes a telescopic rod or a linear actuator.
[0050] In this embodiment, the connecting member 71 is a telescopic rod, one end of which is fixedly connected to the bearing support 3, and the other end of which is fixedly connected to the temperature measuring support 2. When the telescopic rod is extended to its maximum length, the relative distance between the bearing support 3 and the temperature measuring support 2 is the standard distance at which the infrared temperature measuring module 1 can accurately measure the temperature of a wrist placed on the bearing surface 31. The provision of the connecting member 71 not only facilitates the determination of the relative distance between the bearing support 3 and the infrared temperature measuring module 1, but also eliminates the need for the operator to deliberately adjust the distance between the infrared temperature measuring module 1 and the wrist to be measured each time a patient's temperature is measured. The temperature of the wrist can be measured directly, thus simplifying the complexity of the operation. It also prevents the infrared temperature measuring module 1 or the bearing support 3 from being lost when the infrared temperature measuring device is transported or stored.
[0051] Combine Figure 1 、 Figure 2 and Figure 5 , the temperature measuring support 2 is provided with a storage chamber 27 on the side facing the bearing support 3; the storage chamber 27 is used to store the bearing support 3 in the temperature measuring support 2 when the bearing support 3 is not needed to support the part. The surface of the bearing support 3 is fixedly provided with elastic snapping beans 73, and the temperature measuring support 2 is provided with a card slot, and the card slot is adapted to the elastic snapping beans 73; when the bearing support 3 is located in the storage chamber 27, the bearing support 3 is snapped with the temperature measuring support 2 through the elastic snapping beans 73. By providing the elastic snapping beans 73 and the card slot, the bearing support 3 can be stably stored in the storage chamber 27 when the bearing support 3 is not needed, thereby playing a certain protective role for the bearing support 3, and improving the space utilization rate of the infrared temperature measuring device, which is convenient for carrying. A handle 87 is fixedly provided on the surface of the bearing support 3 away from the telescopic rod. The provision of the handle 87 enables an operator to overcome the clamping relationship between the bearing support 3 and the temperature measuring support 2 , making it easier to remove the bearing support 3 from the accommodating chamber 27 .
[0052] In this embodiment, combined with Figure 2 and Figure 4The bearing support 3 has a storage cavity 33 formed therein, and the switch control module 4 includes a bearing block 41, a trigger block 42, a bearing touch switch 43, a compression spring 44, and a support plate 45. The trigger block 42, the bearing touch switch 43, the compression spring 44, and the support plate 45 are all located in the storage cavity 33, the compression spring 44 is located above the support plate 45, and the bearing block 41 is located above the compression spring 44. The bearing block 41 passes through the bearing surface 31 and is slidably connected to the bearing support 3. The bottom end of the bearing block 41 contacts the compression spring 44. The trigger block 42 and the bearing block 41 are integrally formed and fixedly connected. The bearing touch switch 43 is electrically connected to the infrared temperature measurement module 1.
[0053] When the wrist is supported on the support 3, the wrist presses down on the support block 41 via the cleaning belt 72, causing the support block 41 to drive the trigger block 42 downward until the trigger block 42 is triggered. The trigger block 42 then triggers the support touch switch 43 to turn on the infrared temperature measurement module 1, allowing the infrared temperature measurement module 1 to measure the temperature of the wrist placed on the support surface 31. In this way, the infrared temperature measurement module 1 can be automatically turned on and off according to whether a wrist is supported on the support surface 31, thereby saving energy consumption by the infrared temperature measurement device.
[0054] In this embodiment, a temperature-measuring touch switch 74 is fixedly mounted on the top inner wall of the main storage chamber 262. The temperature-measuring touch switch 74 is electrically connected to the load-bearing touch switch 43. When the push plate 532 contacts the temperature-measuring touch switch 74, the temperature-measuring touch switch 74 is used to control the load-bearing touch switch 43 to be turned on. When the push plate 532 separates from the temperature-measuring touch switch 74, the temperature-measuring touch switch 74 is used to control the load-bearing touch switch 43 to be turned off. The temperature-measuring touch switch 74 can control the on and off of the load-bearing touch switch 43, thereby reducing the power consumption of the load-bearing touch switch 43, particularly when the load-bearing touch switch 43 is not needed, such as when the infrared temperature measuring device is being transported.
[0055] In this embodiment, both ends of the cleaning belt 72 are located within the storage cavity 33. The drive assembly 6 is connected to both ends of the cleaning belt 72 and is used to drive the cleaning belt 72 to move relative to the side of the positioning surface 32 facing the infrared temperature measurement module 1 and above the support surface 31. In this way, the drive assembly 6 can drive the cleaning belt 72 to move relative to the support surface 31 and the positioning surface 32. Furthermore, the contact area of the cleaning belt 72 with the wrist can be changed each time the wrist is supported, thereby ensuring good sanitary conditions for the infrared temperature measurement device.
[0056] Further, combined Figure 2 and Figure 4 The drive assembly 6 includes a first rotating shaft 61, a second rotating shaft 62, a first driving member 63, and a second driving member 64. The first driving member 63 is used to drive the first rotating shaft 61 to rotate, and the second driving member 64 is used to drive the second rotating shaft 62 to rotate. The first driving member 63 is fixedly connected to the first rotating shaft 61, and the second driving member 64 is fixedly connected to the second rotating shaft 62. One end of the cleaning belt 72 is fixedly connected to the first rotating shaft 61, and the other end of the cleaning belt 72 is fixedly connected to the second rotating shaft 62. In this embodiment, the first rotating shaft 61 and the second rotating shaft 62 are parallel to each other. Among them, the first rotating shaft 61 is located below the bearing surface 31, and the second rotating shaft 62 is located on the right side of the positioning surface 32; the first driving member 63 is a coil spring 75, the outer end of the coil spring 75 is fixedly connected to the bearing support 3, and the inner end of the coil spring 75 is fixedly connected to the first rotating shaft 61; the second driving member 64 is a motor, the motor casing 12 is fixedly connected to the inner wall of the bearing support 3, and the driving shaft of the motor is coaxially fixedly connected to the second rotating shaft 62. At the same time, when the trigger block 42 contacts and then separates from the bearing touch switch 43, the bearing touch switch 43 controls the second driving member 64 to open, so that the first rotating shaft 61 reels part of the cleaning belt 72 under the drive of the coil spring 75, and the second rotating shaft 62 releases part of the cleaning belt 72 under the drive of the motor, thereby realizing the replacement of the cleaning belt 72 on the bearing surface 31 and the positioning surface 32.
[0057] In an optional embodiment, the first driving member 63 and the second driving member 64 are both motors. Thus, when the trigger block 42 contacts and then separates from the carrier touch switch 43, the carrier touch switch 43 controls the first driving member 63 and the second driving member 64 to be turned on simultaneously, so that the first rotating shaft 61 and the second rotating shaft 62 rotate synchronously, so that the first rotating shaft 61 and the second rotating shaft 62 can realize the transmission of the cleaning belt 72 under the drive of the motor. In particular, when the carrier support 3 carries the part that needs to be temperature measured, the trigger block 42 contacts the carrier touch switch 43; when the part leaves the carrier support 3, the trigger block 42 separates from the carrier touch switch 43; when the trigger block 42 contacts and then separates from the carrier touch switch 43, the carrier touch switch 43 controls the two motors to be turned on simultaneously, and the two motors rotate a specified number of times and then stop rotating.
[0058] In this embodiment, the bearing support 3 is also fixedly provided with three guide shafts 76, and the three point guide shafts 76 are all located in the storage cavity 33. The guide shafts 76 are used to change the moving direction of the cleaning belt 72 between the first rotating shaft 61 and the second rotating shaft 62. Among them, the three guide shafts 76 are all parallel to the first rotating shaft 61, and one guide shaft 76 is located at the top of the positioning surface 32, one guide shaft 76 is located at the intersection of the positioning surface 32 and the bearing surface 31, and one guide shaft 76 is located at the end of the bearing surface 31 away from the positioning surface 32. By providing the guide shafts 76, the transmission direction of the cleaning belt 72 can be effectively changed, which not only reduces the scratching of the cleaning belt 72 and the bearing support 3, prevents the bearing support 3 from wearing the cleaning belt 72, and increases the service life of the cleaning belt 72, but also allows the cleaning belt 72 to be compactly attached to the corresponding surface on the bearing support 3.
[0059] Furthermore, a liquid reservoir 77 is provided in the storage cavity 33. The liquid reservoir 77 is fixedly connected to the bearing support 3 and contains disinfectant. The drive assembly 6 is also used to drive the cleaning belt 72 through the liquid reservoir 77 to disinfect the cleaning belt 72.
[0060] Specifically, the transport path of the cleaning belt 72 within the storage cavity 33 can be altered by adding a guide shaft 76, allowing the cleaning belt 72 to contact the disinfectant in the liquid reservoir 77. Alternatively, the first rotating shaft 61 and / or the second rotating shaft 62 can be fixed within the liquid reservoir 77 to allow the cleaning belt 72 to contact the disinfectant in the liquid reservoir 77. In this embodiment, the first rotating shaft 61 and the second rotating shaft 62 are each located within a liquid reservoir 77. The provision of the liquid reservoir 77 not only further improves the sanitary conditions of the infrared temperature measuring device, but also allows the cleaning belt 72 to be reused by changing the rotation direction of the first driving member 63 and / or the second driving member 64.
[0061] Furthermore, a scraper plate 78 is provided in the storage cavity 33, one end of the scraper plate 78 is pivotally connected to the liquid storage tank 77, and the other end of the scraper plate 78 is in conflict with the cleaning belt 72 on the corresponding rotating shaft. A compression spring 79 is provided on one side of the scraper plate 78, one end of the compression spring 79 is fixedly connected to the bearing support 3 or the liquid storage tank 77, and the other end of the compression spring 79 is fixedly connected to the scraper plate 78. By providing the compression spring 79, the other end of the scraper plate 78 can always be in conflict with the cleaning belt 72 as the thickness of the cleaning belt 72 on the first rotating shaft 61 or the second rotating shaft 62 changes, thereby being able to scrape the excess disinfectant on the cleaning belt 72 back into the liquid storage tank 77 before being transmitted out of the storage cavity 33, achieving a good scraping effect and improving the utilization rate of the disinfectant.
[0062] Furthermore, two heating rods 80 are provided in the storage cavity 33, and the heating rods 80 are used to dry the cleaning tape 72. The heating rods 80 are fixedly connected to the bearing support 3, and the cleaning tape 72 is attached to the heating rods 80; one heating rod 80 is located between the first rotating shaft 61 and the guide shaft 76 located at the end of the bearing surface 31 away from the positioning surface 32, and the other heating rod 80 is located between the second rotating shaft 62 and the guide shaft 76 located at the end of the positioning surface 32 away from the bearing surface 31. By providing the heating rods 80, the disinfectant adhering to the cleaning tape 72 can be removed, so that the cleaning tape 72 removed from the storage cavity 33 remains dry, thereby improving the user comfort of the infrared temperature measuring device.
[0063] Furthermore, the surface of the support 3 is provided with an installation opening, which is in communication with the storage cavity 33. The support 3 is provided with a closing plate 81, which fits into the installation opening. One end of the closing plate 81 is pivotally connected to the support 3, and the other end of the closing plate 81 is engaged with the support 3. The provision of the closing plate 81 facilitates maintenance of the components in the storage cavity 33.
[0064] Combine Figure 1 The support 3 is provided with ventilation holes 82 to facilitate the circulation of air within the storage cavity 33. The surface of the housing 12 is provided with a display screen 83 and a broadcast hole 84 to facilitate the notification of temperature measurement results. Rubber pads 86 are fixedly mounted on the bottom surfaces of the support 3 and the temperature measurement support 2. The bottom of the temperature measurement support 2 is provided with a slot 28 that is compatible with the rubber pad 86 on the support 3, so that the support 3 can be stored in the storage chamber 27.
[0065] The infrared temperature measurement device further includes a power module and a data processor. The power module is electrically connected to the temperature measurement touch switch 74, the carrier touch switch 43, the infrared temperature measurement module 1, the motor, the heating rod 80, the display screen 83, the broadcast module, and the data processor. The data processor is communicatively connected to the display screen 83, the broadcast module, the temperature measurement touch switch 74, the carrier touch switch 43, and the infrared temperature measurement module 1. The broadcast module is fixedly disposed within the housing 12, and the power module and the data processor are both fixedly disposed within the temperature measurement support 2.
[0066] The working principle of the infrared temperature measuring device is as follows:
[0067] First, use handle 87 to remove the support 3 from the storage chamber 27 until the telescopic rod reaches its maximum extension length. Then, press button 521, and the infrared temperature sensing head 11, driven by the east unit, extends out of the temperature sensing support 2. This triggers the temperature sensing touch switch 74, which in turn controls the support touch switch 43 to open and monitor the position of the trigger block 42. When a temperature measurement is required, the wrist is placed on the support surface 31. This triggers the support touch switch 43, causing the support touch switch 43 to control the infrared temperature sensing head 11 to begin measuring the wrist temperature. When the temperature measurement is completed, the display screen 83 and / or the broadcast port 84 respectively announce the temperature measurement result. After the wrist leaves the support surface 31, the compression spring 44 resets the support block 41, and the support touch switch 43 controls the motor to rotate a specified number of revolutions, thereby stopping the infrared temperature sensing head 11. When the infrared temperature measurement device is no longer needed, the support 3 is snapped into the storage chamber 27.
[0068] The volume of the temperature measuring support 2 is no greater than 20 cubic decimeters. In this embodiment, the temperature measuring support 2 is 4 decimeters long, 1.5 decimeters wide, and 2 decimeters high. The bearing support 3 is 3.9 decimeters long, 1.45 decimeters wide, and 1 decimeter high. The bearing surface 31 is 1.3 decimeters wide, and the positioning surface 32 is 0.6 decimeter wide.
[0069] The infrared temperature measuring device is safe and hygienic, has a high degree of automation, is easy to operate, has a simple structure and is low in manufacturing cost.
[0070] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in the present invention should be included in the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be based on the scope of protection of the claims.
Claims
1. A human body temperature measuring device, characterized in that: include: Infrared temperature measurement module, temperature measurement support, bearing support, cleaning belt and drive assembly; The bearing support includes: a bearing surface, the bearing support is used to support the part that needs to be measured in temperature through the bearing surface, the infrared temperature measurement module is located on the left side of the bearing support, and the bearing support also includes: a positioning surface; the positioning surface is located on the side of the bearing surface away from the infrared temperature measurement module, and the positioning surface and the bearing surface form a certain angle in the vertical plane; the positioning surface is used to limit the relative distance between the part supported on the bearing surface and the infrared temperature measurement module, and the infrared temperature measurement module is used to measure the temperature of the part supported on the bearing surface; The volume of the temperature measuring support is not greater than 20 cubic decimeters; the temperature measuring support is provided with a storage chamber on the side facing the bearing support; the storage chamber is used to store the bearing support in the temperature measuring support when the bearing support is no longer needed to support the part; A connecting piece is further provided between the bearing support and the temperature measuring support; one end of the connecting piece is located in the accommodating chamber and is fixedly connected to the temperature measuring support, and the other end of the connecting piece is fixedly connected to the bearing support, and the connecting piece is used to adjust the relative distance between the bearing support and the infrared temperature measuring module; when the connecting piece is extended to its maximum length, the relative distance between the bearing support and the temperature measuring support is the standard distance for the infrared temperature measuring module to measure the temperature of a wrist placed on the bearing surface; The driving assembly is connected to both ends of the cleaning belt, and is used to drive the cleaning belt to move while adhering to the carrying surface.
2. The human body temperature measuring device according to claim 1, characterized in that: A storage cavity is provided inside the bearing support, and the driving assembly is fixedly arranged in the storage cavity.
3. The human body temperature measuring device according to claim 2, characterized in that: The driving assembly includes: a first rotating shaft, a second rotating shaft, a first driving member and a second driving member; The first driving member is used to drive the first rotating shaft to rotate, the second driving member is used to drive the second rotating shaft to rotate, one end of the cleaning belt is fixedly connected to the first rotating shaft, and the other end of the cleaning belt is fixedly connected to the second rotating shaft.
4. The human body temperature measuring device according to claim 3, characterized in that: The human body temperature measuring device further includes: a switch control module; The switch control module includes: a bearing block, a trigger block, a bearing touch switch, a compression spring and a support plate; The trigger block, the load-bearing touch switch, the compression spring and the support plate are all located in the storage cavity, the compression spring is located above the support plate, the load-bearing block is located above the compression spring, the load-bearing block passes through the load-bearing surface and is slidably connected to the load-bearing support, the bottom end of the load-bearing block contacts the compression spring, the trigger block is fixedly connected to the load-bearing block, and the load-bearing touch switch is electrically connected to the first driving member and / or the second driving member; When the bearing support bears the part requiring temperature measurement, the trigger block contacts the bearing touch switch; When the portion leaves the bearing support, the trigger block is separated from the bearing touch switch; When the trigger block contacts and then separates from the load-bearing touch switch, the load-bearing touch switch controls the first driving member and / or the second driving member to turn on.
5. The human body temperature measuring device according to claim 3, characterized in that: The positioning surface is located above the bearing surface.
6. The human body temperature measuring device according to claim 5, characterized in that: The cleaning belt is attached to a side of the positioning surface facing the infrared temperature measurement module, and the driving assembly is further used to drive the cleaning belt to move while being attached to the positioning surface.
7. The human body temperature measuring device according to claim 5, characterized in that: The bearing support is further fixedly provided with at least one guide shaft, and the at least one guide shaft is used to change the moving direction of the cleaning belt between the first rotating shaft and the second rotating shaft.
8. The human body temperature measuring device according to claim 5, characterized in that: A liquid storage tank is provided in the storage cavity, the liquid storage tank is fixedly connected to the bearing support, and the liquid storage tank is used to hold disinfectant; The driving assembly is further used to drive the cleaning belt through the liquid storage tank to disinfect the cleaning belt.
9. The human body temperature measuring device according to claim 8, characterized in that: A scraper is provided in the storage cavity, one end of the scraper is pivotally connected to the liquid storage tank, and the other end of the scraper contacts the cleaning belt; A compression spring is provided on one side of the scraping plate, one end of the compression spring is fixedly connected to the bearing support or the liquid storage tank, and the other end of the compression spring is fixedly connected to the scraping plate.
10. The human body temperature measuring device according to claim 2, characterized in that: A heating rod is provided in the storage cavity, the heating rod is fixedly connected to the bearing support, the cleaning belt is attached to the heating rod, and the heating rod is used to dry the cleaning belt.
Citation Information
Patent Citations
Elevator handrail cleaning and disinfection device
CN110510492A
Infrared Chinese medical diagnosis system for human face
CN203693572U
Button intelligence cleaning device
CN204624874U
Environment detection device suitable for IDC machine room
CN209432181U
Electronic temperature measuring gun for epidemic prevention
CN211347163U