A medical temperature sensing device for postoperative patellar fracture surgery
By using the airbag cleaning fixtures and connection parts in the temperature sensing equipment, the wear and sliding problems caused by dust accumulation in the equipment are solved, and the stability and accuracy of temperature measurement are achieved.
Patent Information
- Application Number
- CN202411819597.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-11
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2044-12-11
AI Technical Summary
Existing medical temperature sensing equipment is prone to accumulation of dust after use, causing wear and sliding of the connection parts, affecting the accuracy of temperature measurement.
The automatic recovery airbag is used as a fixing buffer assembly to clean the fixtures and connections through the airflow, prevent wear and provide a tight connection when sliding.
Effectively reduces equipment wear, ensures the stability and accuracy of temperature measurement, and prevents temperature inconsistency caused by shaking.
Smart Images

Figure CN119587254B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of temperature measurement, and in particular to a medical temperature sensing device used for postoperative treatment of patellar fracture. Background Art
[0002] Patellar fracture is a common sports injury, and its treatment and rehabilitation process requires special attention to postoperative pain relief, inflammation control, blood circulation promotion, and muscle fatigue relief. During the rehabilitation process, the use of medical temperature sensing equipment has become a common auxiliary treatment method. By applying hot or cold compresses to patients after surgery, it can effectively relieve pain, control inflammation, promote healing, and improve rehabilitation effects. The medical temperature controller includes a compressor, a water circulation system, a blanket, and a medical temperature sensing device. The compressor provides the hot and cold sources, and the blanket is connected to the water circulation system through a special water circulation system. The blanket is used in contact with the patient's body, and the temperature difference is used to lower or raise the patient's body temperature.
[0003] At present, medical temperature sensing equipment accumulates a lot of dust after patients resume training, which makes it easy for dust to accumulate at the temperature sensor interface of the medical temperature sensing equipment. If the dust is not cleaned in time, it is easy to wear the connection parts, and it also affects the connection between each other, thereby affecting the transmission of temperature measurement data; and after long-term use, the connection between the temperature sensor and the medical temperature sensing equipment is prone to slippage, and then it is easy to shake. When shaking, the temperature sensor measures different objects, the temperature is inconsistent, and it is easy to cause inaccurate measurements. Summary of the Invention
[0004] Based on this, it is necessary to provide a medical temperature sensing device for use after patellar fracture surgery to solve at least one of the above technical problems.
[0005] A medical temperature sensing device for use after patellar fracture surgery, comprising a support assembly, a temperature control assembly and a temperature sensing mechanism. The support assembly is placed on the ground, the temperature control assembly is installed on the top of the support assembly, and the temperature sensing mechanism is inserted into the top of the temperature control assembly. The temperature sensing mechanism comprises a temperature conducting assembly, a junction box assembly, a wire assembly and a fixed buffer assembly. The bottom of the temperature conducting assembly is inserted into the top of the temperature control assembly, the junction box assembly is sleeved on the top of the junction box assembly, the wire assembly is inserted into the side wall of the junction box assembly, the fixed buffer assembly is fixedly sleeved in the middle of the temperature conducting assembly, the fixed buffer assembly comprises a fixing and a ring-shaped automatically recoverable airbag, the fixing assembly is fixedly sleeved in the middle of the temperature conducting assembly, and the automatically recoverable airbag is fixedly installed at the bottom of the fixing.
[0006] The temperature control component is used to adjust the temperature, the temperature conducting component of the temperature sensing mechanism is used to contact and transmit temperature data, the junction box component is used to receive data, and the wire component is used to transmit the data received by the junction box component to the temperature control component. The fixing part of the fixed buffer component can fix the temperature sensing mechanism. The automatic recovery airbag can release the internal airflow when under pressure to flush the fixing part, prevent dust from sticking to the fixing part, reduce friction between equipment, and improve the connectivity between the temperature sensing mechanism and the temperature control component. At the same time, the automatic recovery airbag can also act as an inlay when slippage occurs between the temperature sensing mechanism and the temperature control component, so that the temperature sensing mechanism and the temperature control component are tight and the equipment can continue to be used.
[0007] Preferably, the support assembly includes four support members, all of which are placed on the ground. Each support member includes a rotating wheel and a support block. The rotating wheel abuts the ground, the support block is fixedly installed at the bottom of the temperature control assembly, and the rotating wheel is rotatably installed at the bottom of the support block.
[0008] Preferably, the temperature control assembly includes a temperature control box, a display screen, a temperature sensing interface, a switch key and multiple connecting pipe interfaces. The temperature control box is installed on the top of four support members, the display screen is installed on one side of the top of the temperature control box, the temperature sensing interface is inserted on the other side of the top of the temperature control box, the switch key is installed on one side wall of the temperature control box, and multiple connecting pipe interfaces are all installed on the other side wall of the temperature control box.
[0009] Preferably, the temperature conducting component is inserted into the temperature sensing interface, and the temperature conducting component includes an insulating sleeve, a protective sleeve, a temperature measuring element and a receiving terminal. The top of the insulating sleeve is inserted into the bottom of the junction box assembly, the top of the protective sleeve is connected to the bottom of the insulating sleeve, and the protective sleeve is inserted into the interior of the temperature control box. The internal hollow space of the insulating sleeve and the protective sleeve is provided with a storage space, the temperature measuring element is stored in the storage space, the internal hollow space of the junction box assembly is formed with a receiving space, the receiving terminal is stored in the receiving space, and the bottom of the receiving terminal is electrically connected to the top of the temperature measuring element.
[0010] Preferably, an annular isolation space is provided inside the isolation sleeve on a side away from the central axis of the isolation sleeve. The isolation space penetrates the upper and lower side walls of the isolation sleeve, and the outer periphery of the isolation sleeve is larger than the outer periphery of the protective sleeve.
[0011] Preferably, the junction box assembly includes a junction box body, two protrusions and a heat dissipation filter. The junction box body cover is arranged on the top of the receiving terminal, and the storage space is located inside the junction box body. The two protrusions and the heat dissipation filter are both installed on the top of the junction box body. The heat dissipation filter is located on the side adjacent to the wire assembly. An L-shaped connecting slot is provided on the top of each protrusion, the upper end of the connecting slot passes through the top surface of the protrusion, and the lower end of the connecting slot passes through the end surface of the protrusion.
[0012] Preferably, the wire assembly includes a wire clamp body and a rope connecting tube. The wire clamp body is inserted into the side wall of the junction box body, and the rope connecting tube is installed on the side wall of the wire clamp body. Four inclined cleaning grooves are opened at one end of the wire clamp body adjacent to the receiving terminal, and the four inclined cleaning grooves are all facing the inner side wall of the end of the wire clamp body away from the receiving terminal.
[0013] Preferably, the fixing member includes a locking end and a bolt end, the locking end is sleeved on the bottom of the isolation sleeve, the top of the bolt end is fixedly connected to the bottom of the locking end, and the bolt end is sleeved on the top of the protective sleeve, and four connecting grooves are opened on the top of the locking end, and the upper ends of the four connecting grooves are all connected to the isolation space.
[0014] Preferably, the automatically restoring airbag is installed at the bottom of the locking end, and four air outlet grooves are provided at the end of the automatically restoring airbag adjacent to the locking end, and the four air outlet grooves are respectively connected to the lower ends of the four connecting grooves, and multiple flushing grooves are provided on the inner side wall of the end of the automatically restoring airbag adjacent to the locking end, and the multiple flushing grooves are all inclined toward the central axis of the bolt end, forming an air flow space between the automatically restoring airbag and the bolt end.
[0015] Preferably, four through-grooves are formed on the top of the receiving terminal, and the four through-grooves all penetrate the upper and lower surfaces of the receiving terminal, and the lower ends of the four through-grooves are communicated with the upper end of the isolation space.
[0016] The present invention sets an automatically restoring airbag, inserts the temperature sensing mechanism into the temperature sensing interface, and when the temperature sensing mechanism is inserted into the temperature sensing interface, the automatically restoring airbag will abut against the end of the temperature sensing interface. When the bolt end of the fixing part is gradually rotated and inserted into the temperature sensing interface, the automatically restoring airbag will release the internal gas under the squeezing of the locking end and the temperature sensing interface. The gas inside the automatically restoring airbag rushes out from multiple flushing grooves to form a first cleaning airflow F1. After the first cleaning airflow F1 rushes out from the multiple flushing grooves, it is used to clean the outer surface of the bolt end to prevent dust from adhering to the bolt end. When the bolt end is rotated and inserted into the temperature sensing interface, it causes wear on the bolt end or the inside of the temperature sensing interface. At the same time, the first cleaning airflow F1 that finally washes through the outer surface of the bolt end will also be guided by the positioning end, the bolt end and the automatically recoverable airbag, so that the first cleaning airflow F1 that washes through the outer surface of the bolt end will flow into the interior of the temperature sensing interface to clean the surface of the inner wall of the temperature sensing interface, prevent dust from causing wear on the bolt end or the inside of the temperature sensing interface, and produce gaps in the worn equipment, which is prone to shaking, causing the temperature measuring element to detect at different positions, resulting in unstable temperature measurement.
[0017] By setting an automatic recovery airbag, when the gas inside the automatic recovery airbag is released under the pressure of the clamping end and the temperature sensing interface, the gas inside the automatic recovery airbag rushes out from the four air outlet grooves to form a second purge airflow F2. The second purge airflow F2 rushes out from the four air outlet grooves, passes through the four connecting grooves, the isolation space and the four through-grooves in turn, and enters the receiving space. When the wire has been inserted into the wire clamping body, the second purge airflow F2 in the receiving space is all used to flush the heat dissipation filter to prevent the heat dissipation filter from being seriously blocked and causing heat dissipation failure. When the wire has not yet been inserted into the wire clamping body, part of the second purge airflow F2 in the receiving space is used to flush the heat dissipation filter. The filter screen prevents the heat dissipation filter screen from being seriously blocked, which causes heat dissipation failure. The other part of the second cleaning airflow F2 flows through the cleaning slot to clean the inside of the wire clamp body to prevent dust from causing poor contact between the wire and the wire clamp body when the wire is inserted into the wire clamp body for work, thereby causing data transmission errors and affecting the judgment of the user. When the bolt end is fixed to the temperature sensing interface, the airbag can be automatically restored. It can also act as a gasket to fix the temperature sensing mechanism. At the same time, the airbag can be automatically restored. It has a certain softness. When it is impacted, it can provide a certain buffering force to prevent the top of the protective sleeve from breaking, which makes the temperature measuring element unable to measure the temperature.
[0018] By setting up an isolation space, the isolation space can separate the temperature measuring element from the outside world, thereby reducing the impact of the outside temperature on the receiving terminal, and more accurately confirming the temperature transmitted by the temperature measuring element. When the temperature sensing interface and the bolt end are slipped, the airflow of the automatic recovery airbag can be manually squeezed out, and the compressed automatic recovery airbag and the bolt end are rotated together and inserted into the temperature sensing interface to solve the slipping phenomenon between the temperature sensing interface and the bolt end, so that the temperature sensing interface and the bolt end are tightly connected to prevent the temperature measuring element from shaking, and then detect different temperatures at different positions (that is, the temperature measuring element leaves the object to be measured); at the same time, the automatic recovery airbag can be repeatedly embedded between the bolt end and the temperature sensing interface.
[0019] The present invention has an ingenious structure, which can reduce the wear of the temperature sensing device, make the temperature sensing devices tightly connected, maintain the stability of the measured temperature, and at the same time provide an isolation space, which can reduce the influence of the external environment when measuring the temperature, thereby measuring the temperature more accurately. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a three-dimensional schematic diagram of an overall embodiment.
[0021] Figure 2 It is a three-dimensional schematic diagram of an embodiment from another perspective.
[0022] Figure 3 Schematic diagram of a temperature sensing mechanism according to an embodiment.
[0023] Figure 4 Schematic cross-sectional view of a temperature sensing mechanism according to an embodiment.
[0024] Figure 5 For an embodiment Figure 4 Enlarged schematic diagram of point A in the middle.
[0025] Figure 6 For an embodiment Figure 4 Enlarged schematic diagram of point B in the middle.
[0026] Figure 7 Schematic diagram of a self-restoring airbag according to an embodiment.
[0027] In the figure: 10, support assembly; 11, support member; 12, rotating wheel; 13, support block; 20, temperature control assembly; 21, temperature control box; 22, display screen; 23, temperature sensing interface; 24, switch; 25, connecting pipe interface; 30, temperature sensing mechanism; 40, temperature conducting assembly; 41, isolation sleeve; 42, protective sleeve; 43, temperature measuring element; 44, receiving terminal; 45, storage space; 410, isolation space; 440, through slot; 50, Junction box assembly; 51. Receiving space; 52. Junction box body; 53. Bump; 54. Heat dissipation filter; 55. Connecting slot; 60. Wire assembly; 61. Positioning body; 62. Rope connecting tube; 63. Cleaning slot; 70. Fixed buffer assembly; 71. Fixing part; 72. Automatically recoverable airbag; 710. Positioning end; 711. Bolt end; 712. Connecting slot; 720. Air outlet slot; 721. Flushing slot; 722. Air flow space. DETAILED DESCRIPTION
[0028] To facilitate understanding of the present invention, the present invention will be described more fully below with reference to the accompanying drawings. The accompanying drawings illustrate preferred embodiments of the present invention. However, the present invention may be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and comprehensive understanding of the present disclosure.
[0029] It should be noted that when an element is referred to as being "fixed to" another element, it may be directly attached to the other element or there may be an intermediate element. When an element is referred to as being "connected to" another element, it may be directly connected to the other element or there may be an intermediate element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only implementation methods.
[0030] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one skilled in the art to which this invention pertains. The terms used herein are for the purpose of describing specific embodiments only and are not intended to limit the present invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0031] An embodiment provided by the present invention is as follows: Figures 1 to 7 As shown, a medical temperature sensing device for postoperative patellar fracture surgery includes a support component 10, a temperature control component 20 and a temperature sensing mechanism 30. The support component 10 is placed on the ground, the temperature control component 20 is installed on the top of the support component 10, and the temperature sensing mechanism 30 is inserted on the top of the temperature control component 20. The temperature sensing mechanism 30 includes a temperature conducting component 40, a junction box component 50, a wire component 60 and a fixed buffer component 70. The bottom of the temperature conducting component 40 is inserted on the top of the temperature control component 20, the junction box component 50 is sleeved on the top of the junction box component 50, the wire component 60 is inserted on the side wall of the junction box component 50, the fixed buffer component 70 is fixedly sleeved on the middle of the temperature conducting component 40, and the fixed buffer component 70 includes a fixing part 71 and a ring-shaped automatically recoverable airbag 72. The fixing part 71 is fixedly sleeved on the middle of the temperature conducting component 40, and the automatically recoverable airbag 72 is fixedly installed on the bottom of the fixing part 71.
[0032] The temperature control component 20 is used to adjust the temperature, the temperature conducting component 40 of the temperature sensing mechanism 30 is used to contact and transmit temperature data, the junction box component 50 is used to receive data, and the wire component 60 is used to transmit the data received by the junction box component 50 to the temperature control component 20. The fixing part 71 of the fixed buffer component 70 can fix the temperature sensing mechanism 30, and the automatically recovering airbag 72 can release the internal airflow when under pressure to flush the fixing part 71, prevent dust from sticking to the fixing part 71, reduce friction between devices, and improve the connectivity between the temperature sensing mechanism 30 and the temperature control component 20. At the same time, the automatically recovering airbag 72 can also act as an inlay when slippage occurs between the temperature sensing mechanism 30 and the temperature control component 20, so that the temperature sensing mechanism 30 and the temperature control component 20 are tightly connected and the device can continue to be used.
[0033] like Figure 1 and Figure 2 As shown, the support assembly 10 includes four support members 11, which are all placed on the ground. Each support member 11 includes a rotating wheel 12 and a support block 13. The rotating wheel 12 is in contact with the ground, and the support block 13 is fixedly installed at the bottom of the temperature control assembly 20, and the rotating wheel 12 is rotatably installed at the bottom of the support block 13.
[0034] like Figure 1 and Figure 2As shown, the temperature control assembly 20 includes a temperature control box 21, a display screen 22, a temperature sensing interface 23, a switch key 24 and multiple connecting pipe interfaces 25. The temperature control box 21 is installed on the top of the four support members 11, the display screen 22 is installed on one side of the top of the temperature control box 21, the temperature sensing interface 23 is inserted on the other side of the top of the temperature control box 21, the switch key 24 is installed on one side wall of the temperature control box 21, and multiple connecting pipe interfaces 25 are all installed on the other side wall of the temperature control box 21.
[0035] like Figure 3 As shown, the temperature conducting component 40 is inserted into the temperature sensing interface 23, and the temperature conducting component 40 includes an insulating sleeve 41, a protective sleeve 42, a temperature measuring element 43 and a receiving terminal 44. The top of the insulating sleeve 41 is inserted into the bottom of the junction box component 50, and the top of the protective sleeve 42 is connected to the bottom of the insulating sleeve 41, and the protective sleeve 42 is inserted into the interior of the temperature control box 21. The internal hollow space of the insulating sleeve 41 and the protective sleeve 42 is provided with a storage space 45, and the temperature measuring element 43 is stored in the storage space 45. The internal hollow space of the junction box component 50 is formed with a receiving space 51, and the receiving terminal 44 is stored in the receiving space 51, and the bottom of the receiving terminal 44 is electrically connected to the top of the temperature measuring element 43.
[0036] like Figure 3 and Figure 4 As shown, an annular isolation space 410 is opened inside the isolation sleeve 41 on one side away from the central axis of the isolation sleeve 41. The isolation space 410 runs through the upper and lower surface side walls of the isolation sleeve 41. The outer periphery of the isolation sleeve 41 is larger than the outer periphery of the protective sleeve 42.
[0037] like Figure 4 As shown, the junction box assembly 50 includes a junction box body 52, two protrusions 53 and a heat dissipation filter 54. The junction box body 52 is covered on the top of the receiving terminal 44, and the storage space 45 is located inside the junction box body 52. The two protrusions 53 and the heat dissipation filter 54 are all installed on the top of the junction box body 52. The heat dissipation filter 54 is located on the side adjacent to the wire assembly 60. An L-shaped connecting slot 55 is provided on the top of each protrusion 53. The upper end of the connecting slot 55 passes through the top surface of the protrusion 53, and the lower end of the connecting slot 55 passes through the end surface of the protrusion 53.
[0038] like Figure 3 As shown, the wire assembly 60 includes a wire clamp body 61 and a rope connecting tube 62. The wire clamp body 61 is inserted into the side wall of the junction box body 52, and the rope connecting tube 62 is installed on the side wall of the wire clamp body 61. Four inclined cleaning grooves 63 are opened at one end of the wire clamp body 61 adjacent to the receiving terminal 44, and the four inclined cleaning grooves 63 are all facing the inner side wall of the end of the wire clamp body 61 away from the receiving terminal 44.
[0039] like Figure 5As shown, the fixing member 71 includes a locking end 710 and a bolt end 711. The locking end 710 is sleeved on the bottom of the isolation sleeve 41. The top of the bolt end 711 is fixedly connected to the bottom of the locking end 710, and the bolt end 711 is sleeved on the top of the protective sleeve 42. Four connecting grooves 712 are opened at the top of the locking end 710, and the upper ends of the four connecting grooves 712 are all connected to the isolation space 410.
[0040] like Figure 7 As shown, the automatically restoring airbag 72 is installed at the bottom of the locking end 710, and four air outlet grooves 720 are provided at the end of the automatically restoring airbag 72 adjacent to the locking end 710. The four air outlet grooves 720 are respectively connected to the lower ends of the four connecting grooves 712, and a plurality of flushing grooves 721 are provided on the inner side wall of one end of the automatically restoring airbag 72 adjacent to the locking end 710. The plurality of flushing grooves 721 are all inclined toward the central axis of the bolt end 711, and an air flow space 722 is formed between the automatically restoring airbag 72 and the bolt end 711.
[0041] like Figure 4 As shown, four through slots 440 are formed on the top of the receiving terminal 44 . The four through slots 440 pass through the upper and lower surfaces of the receiving terminal 44 , and the lower ends of the four through slots 440 communicate with the upper end of the isolation space 410 .
[0042] During installation: The temperature control assembly 20 is mounted on the top of the support assembly 10, the automatic restoring airbag 72 is fixedly mounted on the bottom of the fixing member 71, the support block 13 is fixedly mounted on the bottom of the temperature control assembly 20, and the rotating wheel 12 is rotatably mounted on the bottom of the support block 13. The temperature control box 21 is mounted on the top of the four support members 11, the display screen 22 is mounted on one side of the top of the temperature control box 21, the switch 24 is mounted on one side wall of the temperature control box 21, and the multiple connecting pipe interfaces 25 are all mounted on the other side wall of the temperature control box 21. The two protrusions 53 and the heat dissipation filter 54 are both mounted on the top of the junction box body 52, the rope connecting pipe 62 is mounted on the side wall of the wire retaining body 61, and the automatic restoring airbag 72 is mounted on the bottom of the retaining end 710.
[0043] When in use: 1. Before use, inject temperature-regulated water into the medical temperature sensing device, and insert the temperature sensing mechanism 30 into the temperature sensing interface 23. When the temperature sensing mechanism 30 is inserted into the temperature sensing interface 23, the automatically restoring airbag 72 will abut against the end of the temperature sensing interface 23. When the bolt end 711 of the fixing member 71 is gradually rotated and inserted into the temperature sensing interface 23, the automatically restoring airbag 72 will release the internal gas under the squeezing of the locking end 710 and the temperature sensing interface 23. The gas inside the automatically restoring airbag 72 rushes out from the multiple flushing grooves 721 to form a first purge airflow F1. After the first purge airflow F1 rushes out from the multiple flushing grooves 721, it is used to clean the outer surface of the bolt end 711 to prevent the bolt end 711 from sticking If there is dust, when the bolt end 711 is rotated and inserted into the temperature sensing interface 23, it will cause wear on the bolt end 711 or the inside of the temperature sensing interface 23. At the same time, the first cleaning airflow F1 that finally washes through the outer surface of the bolt end 711 will also be guided by the locking end 710, the bolt end 711 and the automatically recoverable airbag 72, so that the first cleaning airflow F1 that washes through the outer surface of the bolt end 711 will flow into the interior of the temperature sensing interface 23 to clean the surface of the inner wall of the temperature sensing interface 23, and prevent dust from causing wear on the outside of the bolt end 711 or the inside of the temperature sensing interface 23. The worn equipment will produce gaps, which will easily cause shaking, causing the temperature measuring element 43 to detect at different positions, resulting in unstable temperature measurement.
[0044] 2. When the air bag 72 that can automatically recover releases the gas inside under the squeezing of the locking end 710 and the temperature sensing interface 23, the gas inside the air bag 72 that can automatically recover rushes out from the four air outlet grooves 720 to form a second purge airflow F2. The second purge airflow F2 rushes out from the four air outlet grooves 720, passes through the four connecting grooves 712, the isolation space 410 and the four through-grooves 440 in sequence, and enters the receiving space 51. When the wire (not shown) has been inserted into the wire locking body 61, the second purge airflow F2 in the receiving space 51 is all used to flush the heat dissipation filter 54 to prevent the heat dissipation filter 54 from being seriously blocked and causing heat dissipation failure. When the wire has not yet been inserted into the wire locking body 61, part of the second purge airflow F2 in the receiving space 51 is used to flush the heat dissipation filter 54. The heat filter 54 prevents the heat dissipation filter 54 from being seriously blocked, resulting in heat dissipation failure. The other part of the second cleaning airflow F2 flows through the cleaning groove 63 to clean the inside of the wire clamping body 61 to prevent the dust from causing poor contact between the wire and the wire clamping body 61 when the wire is inserted into the wire clamping body 61 for work, thereby causing temperature measurement data transmission errors and affecting the judgment of the user. When the bolt end 711 completes the fixation with the temperature sensing interface 23, the air bag 72 can be automatically restored to act as a gasket to fix the temperature sensing mechanism 30. At the same time, the air bag 72 can be automatically restored to have a certain degree of softness. When it is impacted, it can provide a certain buffering force to prevent the top of the protective sleeve 42 from breaking, thereby causing the temperature measuring element 43 to be unable to measure the temperature.
[0045] 3. The isolation space 410 can separate the temperature measuring element 43 from the outside world, thereby reducing the impact of the outside temperature on the receiving terminal 44 and more accurately confirming the temperature transmitted by the temperature measuring element 43. When the temperature sensing interface 23 and the bolt end 711 are slipped, the airflow of the automatic recovery airbag 72 can be manually squeezed out, and the compressed automatic recovery airbag 72 and the bolt end 711 are rotated together and inserted into the temperature sensing interface 23 to solve the slipping phenomenon between the temperature sensing interface 23 and the bolt end 711, so that the temperature sensing interface 23 and the bolt end 711 are tightly connected, preventing the temperature measuring element 43 from shaking, and then detecting different temperatures at different positions (that is, the temperature measuring element 43 is away from the object to be measured); at the same time, the automatic recovery airbag 72 can be repeatedly embedded between the bolt end 711 and the temperature sensing interface 23. During rehabilitation training after patellar fracture surgery, when the patient experiences pain, inflammation, slow blood circulation and muscle fatigue in the patella, the medical temperature sensing device can effectively relieve pain, control inflammation, promote healing, and improve rehabilitation effects. After completing the fixation of the temperature sensing mechanism 30, the accessories of the temperature control device are attached to the patient, the power is turned on, the data is adjusted, and the patient can be treated. The temperature sensing mechanism 30 is tightly connected to the temperature control component 20, which can ensure the accuracy of temperature detection, thereby better enabling the temperature control component 20 to adjust the temperature, and thus allowing the patient to receive better treatment.
[0046] The present invention is provided with an automatically restoring airbag 72, and the temperature sensing mechanism 30 is inserted into the temperature sensing interface 23. When the temperature sensing mechanism 30 is inserted into the temperature sensing interface 23, the automatically restoring airbag 72 will abut against the end of the temperature sensing interface 23. When the bolt end 711 of the fixing member 71 is gradually rotated and inserted into the temperature sensing interface 23, the automatically restoring airbag 72 will release the internal gas under the squeezing of the locking end 710 and the temperature sensing interface 23. The gas inside the automatically restoring airbag 72 rushes out from the multiple flushing grooves 721 to form a first purge airflow F1. After the first purge airflow F1 rushes out from the multiple flushing grooves 721, it is used to clean the outer surface of the bolt end 711 to prevent dust from adhering to the bolt end 711. When the bolt end 711 is rotated and inserted into the temperature sensing interface 23, the bolt end 711 or the interior of the temperature sensing interface 23 is caused to wear. At the same time, the first cleaning airflow F1 that finally washes through the outer surface of the bolt end 711 will also be guided by the locking end 710, the bolt end 711 and the automatically recoverable airbag 72, so that the first cleaning airflow F1 that washes through the outer surface of the bolt end 711 will flow into the interior of the temperature sensing interface 23 to clean the surface of the inner wall of the temperature sensing interface 23, and prevent dust from causing wear of the bolt end 711 or the interior of the temperature sensing interface 23. The worn equipment will produce gaps, which will easily cause shaking, causing the temperature measuring element 43 to detect at different positions, resulting in unstable temperature measurement.
[0047] By setting the automatic recovery airbag 72, when the automatic recovery airbag 72 releases the internal gas under the squeezing of the locking end 710 and the temperature sensing interface 23, the gas inside the automatic recovery airbag 72 rushes out from the four air outlet grooves 720 to form a second purge airflow F2. The second purge airflow F2 rushes out from the four air outlet grooves 720, passes through the four connecting grooves 712, the isolation space 410 and the four through-grooves 440 in sequence, and enters the receiving space 51. When the wire has been inserted into the wire locking body 61, the second purge airflow F2 in the receiving space 51 is all used to flush the heat dissipation filter 54 to prevent the heat dissipation filter 54 from being seriously blocked and causing heat dissipation failure. When the wire has not yet been inserted into the wire locking body 61, part of the second purge airflow F2 in the receiving space 51 is used to flush the heat dissipation filter 54. It is used to flush the heat dissipation filter 54 to prevent the heat dissipation filter 54 from being seriously blocked, resulting in heat dissipation failure. The other part of the second cleaning airflow F2 flows through the cleaning groove 63 to clean the inside of the wire clamping body 61 to prevent dust from causing poor contact between the wire and the wire clamping body 61 when the wire is inserted into the wire clamping body 61 for work, thereby causing data transmission errors and affecting the judgment of the user. When the bolt end 711 completes the fixation with the temperature sensing interface 23, the airbag 72 can be automatically restored to act as a gasket to fix the temperature sensing mechanism 30. At the same time, the airbag 72 can be automatically restored to have a certain degree of softness. When it is impacted, it can provide a certain buffering force to prevent the top of the protective sleeve 42 from breaking, thereby causing the temperature measuring element 43 to be unable to measure the temperature.
[0048] By setting up the isolation space 410, the isolation space 410 can separate the temperature measuring element 43 from the outside world, thereby reducing the influence of the outside temperature on the receiving terminal 44, and more accurately confirming the temperature transmitted by the temperature measuring element 43. When the temperature sensing interface 23 and the bolt end 711 slip, the airflow of the automatic recovery airbag 72 can be manually squeezed out, and the compressed automatic recovery airbag 72 and the bolt end 711 are rotated together and inserted into the temperature sensing interface 23 to solve the slip phenomenon between the temperature sensing interface 23 and the bolt end 711, so that the temperature sensing interface 23 and the bolt end 711 are tightly connected, preventing the temperature measuring element 43 from shaking, and then detecting different temperatures at different positions (that is, the temperature measuring element 43 leaves the object to be measured); at the same time, the automatic recovery airbag 72 can repeatedly be embedded between the bolt end 711 and the temperature sensing interface 23.
[0049] The present invention has an ingenious structure, which can reduce the wear of the temperature sensing device, make the temperature sensing devices tightly connected, and maintain the stability of the measured temperature. At the same time, an isolation space 410 is provided, which can reduce the influence of the external environment when measuring the temperature, thereby measuring the temperature more accurately.
[0050] All possible combinations of the various technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0051] The above-described embodiments merely represent several embodiments of the present invention. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the present invention. It should be noted that a person skilled in the art would be able to make various modifications and improvements without departing from the spirit of the present invention, all of which fall within the scope of protection of the present invention. Therefore, the scope of protection of the present invention shall be determined by the appended claims.
Claims
1. A medical temperature sensing device for postoperative patellar fracture surgery, characterized in that: The invention comprises a support assembly (10), a temperature control assembly (20) and a temperature sensing mechanism (30), wherein the support assembly (10) is placed on the ground, the temperature control assembly (20) is installed on the top of the support assembly (10), the temperature sensing mechanism (30) is inserted into the top of the temperature control assembly (20), and the temperature sensing mechanism (30) comprises a temperature conducting assembly (40), a junction box assembly (50), a wire assembly (60) and a fixed buffer assembly (70), and the bottom of the temperature conducting assembly (40) is inserted into the top of the temperature control assembly (20). The junction box assembly (50) is sleeved on the top of the thermal conductive assembly (40), the wire assembly (60) is inserted into the side wall of the junction box assembly (50), the fixed buffer assembly (70) is fixedly sleeved on the middle of the thermal conductive assembly (40), the fixed buffer assembly (70) includes a fixing member (71) and an annular self-recovering airbag (72), the fixing member (71) is fixedly sleeved on the middle of the thermal conductive assembly (40), and the self-recovering airbag (72) is fixedly installed on the bottom of the fixing member (71); The support assembly (10) includes four support members (11), and the four support members (11) are all placed on the ground; The temperature control assembly (20) includes a temperature control box (21), a display screen (22), a temperature sensing interface (23), a switch (24) and a plurality of connecting pipe interfaces (25). The temperature control box (21) is installed on the top of the four support members (11), the display screen (22) is installed on one side of the top of the temperature control box (21), and the temperature sensing interface (23) is inserted on the other side of the top of the temperature control box (21); The temperature conducting component (40) is inserted into the temperature sensing interface (23), and the temperature conducting component (40) includes an insulating sleeve (41), a protective sleeve (42), a temperature measuring element (43) and a receiving terminal (44). The top of the insulating sleeve (41) is inserted into the bottom of the junction box component (50), the top of the protective sleeve (42) is connected to the bottom of the insulating sleeve (41), and the protective sleeve (42) is inserted into the interior of the temperature control box (21). The interior hollows of the insulating sleeve (41) and the protective sleeve (42) are provided with a receiving space (45), the temperature measuring element (43) is received in the receiving space (45), the interior hollows of the junction box component (50) are formed with a receiving space (51), the receiving terminal (44) is received in the receiving space (51), and the bottom of the receiving terminal (44) is electrically connected to the top of the temperature measuring element (43); An annular isolation space (410) is provided inside the isolation sleeve (41) on a side away from the central axis of the isolation sleeve (41); The junction box assembly (50) includes a junction box body (52), two protrusions (53) and a heat dissipation filter (54), the junction box body (52) is covered on the top of the receiving terminal (44), and the storage space (45) is located inside the junction box body (52), the two protrusions (53) and the heat dissipation filter (54) are both installed on the top of the junction box body (52), and the heat dissipation filter (54) is located on a side adjacent to the wire assembly (60), and an L-shaped connecting card slot (55) is opened on the top of each protrusion (53), the upper end of the connecting card slot (55) passes through the top surface of the protrusion (53), and the lower end of the connecting card slot (55) passes through the end surface of the protrusion (53); The wire assembly (60) includes a wire clamping body (61) and a rope connecting tube (62), wherein the wire clamping body (61) is inserted into the side wall of the junction box body (52), and the rope connecting tube (62) is installed on the side wall of the wire clamping body (61), and four inclined cleaning grooves (63) are opened at one end of the wire clamping body (61) adjacent to the receiving terminal (44), and the four inclined cleaning grooves (63) are all oriented toward the inner side wall of the end of the wire clamping body (61) away from the receiving terminal (44); The fixing member (71) includes a locking end (710) and a bolt end (711), the locking end (710) is sleeved on the bottom of the isolation sleeve (41), the top of the bolt end (711) is fixedly connected to the bottom of the locking end (710), and the bolt end (711) is sleeved on the top of the protective sleeve (42), and four communication grooves (712) are opened on the top of the locking end (710), and the upper ends of the four communication grooves (712) are all in communication with the isolation space (410); The automatic restoring airbag (72) is installed at the bottom of the locking end (710), and four air outlet grooves (720) are opened at one end of the automatic restoring airbag (72) adjacent to the locking end (710). The four air outlet grooves (720) are respectively connected to the lower ends of the four connecting grooves (712). A plurality of flushing grooves (721) are opened on the inner side wall of one end of the automatic restoring airbag (72) adjacent to the locking end (710). The plurality of flushing grooves (721) are all inclined toward the central axis of the bolt end (711), and an air flow space (722) is formed between the automatic restoring airbag (72) and the bolt end (711).
2. The medical temperature sensing device for patellar fracture surgery according to claim 1, characterized in that: Each support member (11) includes a rotating wheel (12) and a support block (13), the rotating wheel (12) abuts against the ground, the support block (13) is fixedly mounted on the bottom of the temperature control component (20), and the rotating wheel (12) is rotatably mounted on the bottom of the support block (13).
3. The medical temperature sensing device for patellar fracture surgery according to claim 2, characterized in that: The switch key (24) is installed on one side wall of the temperature control box (21), and the plurality of connecting pipe interfaces (25) are installed on the other side wall of the temperature control box (21).
4. The medical temperature sensing device for postoperative patellar fracture surgery according to claim 3, characterized in that: The isolation space (410) passes through the upper and lower surface side walls of the isolation sleeve (41), and the outer periphery of the isolation sleeve (41) is larger than the outer periphery of the protective sleeve (42).
5. The medical temperature sensing device for postoperative patellar fracture surgery according to claim 4, characterized in that: Four through-grooves (440) are provided on the top of the receiving terminal (44), the four through-grooves (440) all penetrate the upper and lower surfaces of the receiving terminal (44), and the lower ends of the four through-grooves (440) are in communication with the upper end of the isolation space (410).
Citation Information
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