Automatic temperature control dressing storage device in surgical nursing

By introducing temperature sensors, heating modules and wireless communication modules into the dressing storage device, precise temperature control and real-time monitoring of dressings are achieved, solving the shortcomings of existing devices in temperature control capabilities and intelligent management, and improving the efficiency and safety of surgical care.

CN120458742APending Publication Date: 2025-08-12PLA ARMY 82ND GRP MILITARY HOSPITAL
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Patent Information

Application Number
CN202510806083.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-17
Publication Date
2025-08-12

AI Technical Summary

Technical Problem

The existing dressing storage devices have shortcomings in temperature control capabilities, intelligent management and multifunctional integration, which are difficult to meet the needs of modern surgical care.

Method used

An automatic temperature-controlled dressing storage device including the main box, temperature sensor probe, control module, heating module and wireless communication module is designed to realize accurate temperature control, classified storage and real-time monitoring of dressings. Through the coordinated work of mechanical structures and electronic systems, human-computer interactive interface and remote management functions are provided.

Benefits of technology

It improves surgical care efficiency, ensures the quality and use effect of dressings, reduces the risk of cross-contamination, and improves operational convenience and safety.

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Abstract

The invention relates to the technical field of surgical nursing equipment, in particular to an automatic temperature control dressing storage device in surgical nursing, which comprises a main box body, an upper cover, a temperature sensor probe, a control module, a heating module, a wireless communication module and a storage box structure. Storage boxes for classified storage are arranged in the main box body, accurate temperature control is achieved through a heating module and a temperature sensor probe, and real-time monitoring and remote management are achieved by connecting a wireless communication module with an external terminal. The dressing storage device can effectively solve the problems that an existing dressing storage device is insufficient in temperature control capacity, insufficient in intelligent management and poor in multifunctional integration, the surgical nursing efficiency is improved, and the dressing storage quality and the use effect are guaranteed.
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Description

Technical Field

[0001] The present invention belongs to the technical field of medical devices, and in particular relates to an automatic temperature-controlled dressing storage device for surgical nursing. Background Art

[0002] With the continuous advancement of surgical nursing technology, the importance of dressing storage devices in surgical and postoperative care has become increasingly prominent. However, existing dressing storage devices still have certain deficiencies in functionality, temperature control capabilities, and ease of use, making it difficult to meet the requirements of modern surgical care for efficiency, intelligence, and precision.

[0003] After searching, the patent with publication number CN112520238B discloses a storage device for burn and scald dressings, with a publication date of September 2, 2022. This patent sets up a first storage chamber and a second storage chamber, which are used to store adhesive dressings and powdered dressings respectively, and realizes quick access through a sliding connection design. However, this technical solution does not involve temperature control function, which may not provide sufficient support for constant temperature storage of surgical dressings. Some temperature-sensitive dressings (such as gels or biomaterials) may be affected by changes in ambient temperature. In addition, the device mainly focuses on the classified storage and quick access of dressings, and lacks intelligent management methods. Real-time monitoring and automatic adjustment functions have not yet been realized, which to a certain extent limits its application scope in surgical care scenarios.

[0004] After searching, the patent with publication number CN117401305B discloses a storage device for protective gel dressings, with a publication date of March 8, 2024. This patent improves the sealing of the storage device by combining the negative pressure sealing of the sealing cover with the high-pressure storage of the tank body, and optimizes the convenience of discharging by adopting a telescopic airbag design. However, this technical solution also does not have a temperature control function, and it is difficult to meet the needs of surgical care for dressing storage under a specific temperature environment. In addition, the design focus of the device is on sealing and smooth discharging, ignoring the combination of intelligent management and temperature control technology, resulting in its relatively single function and insufficient ability to adapt to the complex and changing surgical care environment.

[0005] The above issues indicate that existing dressing storage devices still have significant deficiencies in temperature control capabilities, intelligent management, and multifunctional integration. Therefore, the present invention provides an automatic temperature-controlled dressing storage device for surgical care. By introducing an automatic temperature control system and an intelligent management module, it aims to achieve precise storage and real-time monitoring of surgical dressings, thereby improving surgical care efficiency and ensuring the quality and effectiveness of dressings. Summary of the Invention

[0006] The purpose of the present invention is to provide an automatic temperature-controlled dressing storage device for surgical care, which solves the problems of insufficient temperature control capability, lack of intelligent management means and poor multi-functional integration of existing dressing storage devices proposed in the above background technology.

[0007] The technical solution adopted by the present invention is as follows: an automatic temperature-controlled dressing storage device for surgical nursing, comprising a main box and an upper cover, the upper cover being hingedly mounted on the top opening of the main box; a side wall of the main box being provided with a first through hole, a second through hole, and a third through hole, wherein a temperature sensor probe is mounted in the first through hole and is used to sense temperature changes in the internal environment of the main box in real time; the temperature sensor probe is connected to a control module via a signal line, and the control module is fixedly mounted on the bottom of the inner cavity of the main box; the control module is connected to a power module via a wire, and the power module is fixedly mounted on one side of the inner cavity of the main box; the control module is also connected to a heating module via a wire, and the heating module is fixedly mounted on the bottom of the inner cavity of the main box; the control module establishes a data connection with an external terminal device via a wireless communication module, and the wireless communication module is fixedly mounted on the top of the inner cavity of the main box and extends through the second through hole via an antenna; an operation panel is provided on the outer wall of the main box, and the operation panel is connected to the interior of the main box via the third through hole, and the operation panel is provided with a display screen and buttons, the display screen is used to display the real-time temperature and operating status of the inner cavity of the main box, and the buttons are used to manually adjust the set parameters.

[0008] A vertically arranged support column is provided in the middle of the inner cavity of the main box body, and four hanging ears are provided at equal angles on the outer circumference of the support column. A traction rope is fixedly connected to each hanging ear, and the free end of the traction rope is fixedly connected to a hook, and the hook is slidably connected to a horizontally arranged fixed rod, and the two ends of the fixed rod are respectively fixed to the inner wall of the main box body by bolts.

[0009] A first bracket is fixedly installed on one side of the inner cavity of the main box body, and a first push rod is slidably connected to the first bracket, and the upper end of the first push rod is fixedly connected to a first telescopic arm, and the tail of the first telescopic arm is connected to the lifting mechanism through a pin shaft; two first connecting rods are hinged on the lower surface of the first bracket, and the two first connecting rods are symmetrically arranged; the free end of the first connecting rod is hinged to a storage box, and a box cover is provided on the side of the storage box, and a fifth through hole is provided on the bottom surface of the storage box, and the temperature sensor probe is installed in the fifth through hole, and a sixth through hole is provided on the box cover, and a seventh through hole is provided on the inner wall of the main box body, and the sixth through hole and the seventh through hole are used for passing signal lines; a second connecting rod is hinged on the box cover, and the free end of the second connecting rod is hinged to the lower end of the first push rod through a pin shaft.

[0010] A second bracket is fixedly installed on the other side of the inner cavity of the main box body, and a second push rod is slidably connected to the second bracket, and the upper end of the second push rod is fixedly connected to a second telescopic arm, and the tail of the second telescopic arm is connected to the lifting mechanism through a pin shaft; two guide columns are slidably connected to the second bracket, and the two guide columns are symmetrically arranged; the lower end of the guide column is fixedly connected to a storage box, a box cover is provided on the side of the storage box, a fifth through hole is provided on the bottom surface of the storage box, and the temperature sensor probe is installed in the fifth through hole, a sixth through hole is provided on the box cover, and a seventh through hole is provided on the inner wall of the main box body, and the sixth through hole and the seventh through hole are used to pass a signal line; a connecting plate is fixedly connected to the gap between the two box covers, and the connecting plate is fixedly connected to the lower end of the second push rod by bolts; a support plate is fixedly installed on the bottom surface of the main box body, and the support plate is L-shaped. The horizontal section of the support plate is located below the temperature sensor probe, and a compression spring is fixedly installed on the horizontal section of the support plate. The upper end of the compression spring is fixedly connected to a scraper, and the scraper is annular in shape. The inner wall of the scraper is slidably adapted to the inner wall of the temperature sensor probe, and the outer wall of the scraper is slidably adapted to the outer wall of the temperature sensor probe. The compression spring makes the initial position of the scraper be located in the middle of the temperature sensor probe.

[0011] The beneficial effects of the present invention are as follows: by providing independent storage boxes within the main chamber, different types of dressings can be stored separately, avoiding the risk of cross-contamination; by introducing a heating module and temperature sensor probe, the ambient temperature within the main chamber can be precisely controlled, ensuring that the dressings are stored within an appropriate temperature range; and by establishing a data connection with an external terminal device via a wireless communication module, real-time monitoring and remote management of the storage status of surgical dressings are achieved. This design overcomes the shortcomings of existing dressing storage devices in terms of temperature control capabilities and intelligent management, improves surgical care efficiency, and ensures the quality and effectiveness of dressings. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 It is a schematic diagram of the overall structure of the present invention.

[0013] Figure 2 A cross-sectional view of the main box's internal structure, showing the arrangement of support columns, mounting ears, and hooks.

[0014] Figure 3 This is a schematic diagram of the connection structure between the storage box and the first bracket, focusing on the linkage relationship between the first push rod and the first connecting rod.

[0015] Figure 4 This is a schematic diagram of the connection structure between the storage box and the second bracket, showing the cooperation between the second push rod and the guide column.

[0016] Figure 5 This is a partial enlarged view of the temperature sensor probe and scraper, showing the installation position of the compression spring and scraper.

[0017] Figure 6 This is the front view of the operation panel, showing the layout of the display and buttons.

[0018] Figure 7 Schematic diagram of data connection between wireless communication module and external terminal equipment.

[0019] The accompanying drawings are numbered as follows:

[0020] 1. Main box; 2. Upper cover; 3. Hinge; 4. Temperature sensor probe; 5. Control module; 6. Power module; 7. Heating module; 8. Wireless communication module; 9. Antenna; 10. Operation panel; 11. Display screen; 12. Buttons; 13. Support column; 14. Hanging ear; 15. Traction rope; 16. Hook; 17. Fixing rod; 18. First bracket; 19. First push rod; 20. First telescopic arm; 21. Lifting mechanism; 22. First connecting rod; 23. Storage box; 24. Box cover; 25. Second bracket; 26. Second push rod; 27. Second telescopic arm; 28. Guide column; 29. Connecting plate; 30. Support plate; 31. Compression spring; 32. Scraper. DETAILED DESCRIPTION

[0021] The present invention provides an automatic temperature control dressing storage device for surgical nursing, the overall structure of which is as follows: Figure 1 As shown, the device comprises a main housing 1 and an upper cover 2. The upper cover 2 is attached to the top opening of the main housing 1 via a hinge 3, making it easy to open and close. The side walls of the main housing 1 are provided with first, second, and third through-holes. A temperature sensor probe 4 is mounted in the first through-hole for real-time sensing of temperature changes within the main housing 1. The temperature sensor probe 4 is connected to a control module 5 via a signal cable, which is fixedly mounted to the bottom of the main housing 1. The control module 5 is connected to a power module 6 via a wire, which is fixedly mounted to a side of the main housing 1. The control module 5 is also connected to a heating module 7 via a wire, which is fixedly mounted to the bottom of the main housing 1. The control module 5 establishes a data connection with an external terminal device via a wireless communication module 8, which is fixedly mounted to the top of the main housing 1 and extends through an antenna 9 through the second through-hole. An operation panel 10 is provided on the outer wall of the main housing 1, communicating with the interior of the main housing 1 via the third through-hole. The operation panel 10 includes a display screen 11 and buttons 12.

[0022] A vertical support column 13 is located in the center of the inner cavity of the main housing 1. Four lugs 14 are arranged at equal angles on the outer periphery of the support column 13. A traction rope 15 is fixedly connected to each lug 14. The free end of the traction rope 15 is fixedly connected to a hook 16. The hook 16 is slidably connected to a horizontal fixed rod 17. The ends of the fixed rod 17 are bolted to the inner wall of the main housing 1. The arrangement of the support column 13 provides a stable support structure for the entire device. The design of the lugs 14 and traction rope 15 allows the hook 16 to move flexibly on the fixed rod 17, thereby suspending and positioning the storage box 23.

[0023] A first bracket 18 is fixedly mounted on one side of the inner cavity of the main housing 1. A first push rod 19 is slidably connected to the first bracket 18. The upper end of the first push rod 19 is fixedly connected to a first telescopic arm 20. The tail end of the first telescopic arm 20 is connected to a lifting mechanism 21 via a pin. Two first connecting rods 22 are hingedly mounted on the lower surface of the first bracket 18. The two first connecting rods 22 are symmetrically arranged, and the free ends of the first connecting rods 22 are hingedly connected to a storage box 23. A lid 24 is provided on the side of the storage box 23. A fifth through-hole is defined in the bottom surface of the storage box 23, into which the temperature sensor probe 4 is mounted. A sixth through-hole is defined in the lid 24, and a seventh through-hole is defined in the inner wall of the main housing 1. The sixth and seventh through-holes are used to route signal cables. A second connecting rod is hingedly mounted on the lid 24, and the free end of the second connecting rod is hingedly connected to the lower end of the first push rod 19 via a pin. The cooperation of the first bracket 18, the first push rod 19, the first telescopic arm 20 and the first connecting rod 22 realizes the lifting function of the storage box 23, ensuring that the position of the dressing in the storage box 23 can be adjusted as needed.

[0024] A second bracket 25 is fixedly mounted on the other side of the inner cavity of the main housing 1. Slidingly connected to this bracket is a second push rod 26. The upper end of this second push rod 26 is fixedly connected to a second telescopic arm 27. The rear end of this second telescopic arm 27 is connected to the lifting mechanism 21 via a pin. Slidingly connected to this bracket are two symmetrically arranged guide posts 28. The lower ends of these posts are fixedly connected to a storage box 23. A connecting plate 29 is fixedly connected to the gap between the two box covers 24. This connecting plate 29 is bolted to the lower end of the second push rod 26. A support plate 30 is fixedly mounted on the bottom surface of the main housing 1. The support plate 30 is L-shaped, with its horizontal section positioned below the temperature sensor probe 4. A compression spring 31 is fixedly mounted on the horizontal section of the support plate 30. The upper end of the compression spring 31 is fixedly connected to a scraper 32. The scraper 32 is annular in shape, with its inner sidewall slidingly fitting against the inner wall of the temperature sensor probe 4, and its outer sidewall slidingly fitting against the outer wall of the temperature sensor probe 4. The compression spring 31 ensures that the initial position of the scraper 32 is located in the middle of the temperature sensor probe 4. The design of the second bracket 25, second push rod 26, second telescopic arm 27, and guide post 28 further enhances the stability of the storage box 23. The scraper 32 and compression spring 31 work together to effectively remove impurities from the surface of the temperature sensor probe 4, ensuring accurate temperature monitoring.

[0025] During actual use, first place different types of dressings in the storage box 23 respectively. The storage box 23 is hung on the fixed rod 17 by the hook 16 to ensure that the dressings are stored in a classified manner to avoid cross contamination. The temperature sensor probe 4 monitors the temperature changes inside the main box 1 in real time and transmits the data to the control module 5. The control module 5 determines whether to start the heating module 7 based on the preset temperature range. If the temperature is lower than the set value, the control module 5 sends an instruction to the heating module 7, and the heating module 7 starts working to increase the temperature inside the main box 1. If the temperature reaches the set value, the control module 5 stops the heating module 7. The display screen 11 on the operation panel 10 displays the real-time temperature and operating status inside the main box 1, and the button 12 can manually adjust the set parameters. The wireless communication module 8 establishes a data connection with the external terminal device through the antenna 9. Medical staff can remotely monitor the temperature and dressing storage status inside the main box 1 through the external terminal device.

[0026] When the dressing needs to be accessed, the lifting mechanism 21 drives the first telescopic arm 20 and the second telescopic arm 27, which in turn moves the first push rod 19 and the second push rod 26 up and down, thereby raising and lowering the storage box 23. The hinged design of the first and second connecting rods 22 and 26 ensures that the storage box 23 remains stable during the lifting process, preventing damage to the dressing due to shaking. Furthermore, the scraper 32, driven by the compression spring 31, maintains contact with the surface of the temperature sensor probe 4. If impurities adhere to the surface of the temperature sensor probe 4, the scraper 32 automatically cleans them, ensuring accurate temperature detection.

[0027] The main box 1 has a reasonable structural design, and the various components work together through mechanical connections and signal transmission. The temperature sensor probe 4, control module 5, heating module 7 and wireless communication module 8 together constitute the core part of the temperature control system, ensuring that the temperature of the dressing storage environment is always kept within an appropriate range. The independent design of the storage box 23 and the coordination of the ear 14 and the traction rope 15 make the dressing classification clearer and reduce the risk of cross infection. The operation panel 10 provides a human-computer interaction interface, which is convenient for medical staff to grasp the storage status in real time and adjust parameters. The introduction of the wireless communication module 8 realizes the remote monitoring function, which greatly improves the efficiency and safety of surgical care.

[0028] In order to better enable relevant personnel in this technical field to fully understand and implement the present invention, the specific implementation principle of the present invention is supplemented below with reference to a specific application scenario.

[0029] First, in the actual operation of surgical nursing, medical staff need to place different types of dressings separately in the storage box 23. The storage box 23 is suspended on the fixed rod 17 by a hook 16, and the hook 16 is connected to the ear 14 by a traction rope 15. The ear 14 is arranged at equal angles on the outer peripheral surface of the support column 13. This design ensures that the storage boxes 23 can be evenly distributed in the main box 1, avoiding the problem of uneven space utilization caused by the centralized storage of dressings. At the same time, the independent design of the storage box 23, combined with the temperature sensor probe 4 in the fifth through hole, can monitor the temperature changes inside each storage box 23 in real time, thereby providing a more accurate storage environment for the dressing. When the temperature sensor probe 4 detects that the temperature inside the storage box 23 deviates from the preset range, the signal will be transmitted to the control module 5 through the signal lines in the sixth through hole and the seventh through hole, and the control module 5 will then start the heating module 7 to adjust the temperature. This process ensures that the dressing is always in a suitable temperature-controlled environment, which is particularly suitable for temperature-sensitive biological materials or gel dressings.

[0030] Secondly, when medical staff need to access a specific type of dressing, they can input an instruction through the button 12 on the operation panel 10. After receiving the instruction, the control module 5 drives the lifting mechanism 21 to operate. The lifting mechanism 21 drives the first push rod 19 and the second push rod 26 to move up and down respectively through the first telescopic arm 20 and the second telescopic arm 27, thereby realizing the lifting and lowering operation of the storage box 23. During this process, the hinged design of the first connecting rod 22 and the second connecting rod ensures that the storage box 23 always remains stable during lifting and lowering, avoiding damage to the dressing due to shaking. In addition, the sliding connection between the guide column 28 and the second bracket 25 further enhances the stability of the storage box 23, making the entire lifting process more reliable. Through the above-mentioned mechanical linkage design, the storage box 23 can be quickly and accurately positioned at a height that is convenient for access, significantly improving the convenience of operation.

[0031] Thirdly, during long-term use, the temperature sensor probe 4 may be attached with impurities due to environmental factors, affecting its detection accuracy. To this end, the present invention provides a compression spring 31 and a scraper 32 on the bottom surface of the main box 1. The elastic force of the compression spring 31 ensures that the scraper 32 always fits the surface of the temperature sensor probe 4, and the annular design of the scraper 32 ensures that it can fully cover the inner and outer walls of the temperature sensor probe 4. When there are impurities on the surface of the temperature sensor probe 4, the scraper 32 automatically cleans them under the action of the compression spring 31, thereby ensuring the accuracy of temperature monitoring. This self-cleaning function not only extends the service life of the temperature sensor probe 4, but also reduces the frequency of manual maintenance and improves the overall reliability of the device.

[0032] Finally, the wireless communication module 8 establishes a data connection with an external terminal device via antenna 9, allowing medical staff to remotely monitor the temperature within the main housing 1 and the dressing storage status via a mobile phone, tablet, or other smart device. For example, during surgery, if the storage temperature of a dressing becomes abnormal, the wireless communication module 8 will immediately send an alarm to the medical staff's terminal device, prompting them to take timely action. This remote monitoring function not only improves the efficiency of surgical care but also provides a more intelligent solution for dressing management. Furthermore, the display screen 11 on the operation panel 10 can display the temperature and operating status of the main housing 1 in real time, allowing medical staff to quickly understand the device's operating status on-site.

[0033] In summary, the present invention achieves classified storage, precise temperature control, smooth access, and real-time monitoring of surgical dressings through the collaborative work of mechanical structures and electronic systems. The rational layout and functional coordination between the various components not only address the shortcomings of existing dressing storage devices in terms of temperature control capabilities and intelligent management, but also significantly improve the efficiency and safety of surgical care. The description of the above specific application scenarios is intended to help technicians better understand and implement the technical solutions of the present invention, while also demonstrating its practicality and innovation.

Claims

1. An automatic temperature-controlled dressing storage device for surgical nursing, comprising a main box (1) and an upper cover (2), characterized in that: The upper cover (2) is connected and installed at the top opening of the main box (1) through a hinge (3); the side wall of the main box (1) is provided with a first through hole, a second through hole and a third through hole, a temperature sensor probe (4) is installed in the first through hole, the temperature sensor probe (4) is connected to the control module (5) through a signal line, and the control module (5) is fixedly installed at the bottom of the inner cavity of the main box (1); the control module (5) is connected to the power module (6) through a wire, and the power module (6) is fixedly installed on one side of the inner cavity of the main box (1); the control module (5) is connected to the power module (6) through a wire. The control module (5) is connected to the heating module (7), which is fixedly mounted on the bottom of the inner cavity of the main box (1); the control module (5) establishes a data connection with an external terminal device through a wireless communication module (8), which is fixedly mounted on the top of the inner cavity of the main box (1) and passes through the second through hole through the antenna (9); an operation panel (10) is provided on the outer wall of the main box (1), and the operation panel (10) is connected to the interior of the main box (1) through a third through hole, and a display screen (11) and buttons (12) are provided on the operation panel (10).

2. The automatic temperature-controlled dressing storage device for surgical care according to claim 1, characterized in that: A vertically arranged support column (13) is provided in the middle of the inner cavity of the main box body (1), and four hanging ears (14) are provided at equal angles on the outer peripheral surface of the support column (13), and each hanging ear (14) is fixedly connected to a traction rope (15), and the free end of the traction rope (15) is fixedly connected to a hook (16), and the hook (16) is slidably connected to a horizontally arranged fixed rod (17), and the two ends of the fixed rod (17) are respectively fixed to the inner wall of the main box body (1) by bolts.

3. The automatic temperature-controlled dressing storage device for surgical care according to claim 1, characterized in that: A first bracket (18) is fixedly mounted on one side of the inner cavity of the main box (1), a first push rod (19) is slidably connected to the first bracket (18), the upper end of the first push rod (19) is fixedly connected to a first telescopic arm (20), and the tail of the first telescopic arm (20) is connected to the lifting mechanism (21) through a pin shaft; two first connecting rods (22) are hinged on the lower surface of the first bracket (18), and the two first connecting rods (22) are symmetrically arranged; the free end of the first connecting rod (22) is hinged to a A storage box (23) is provided, a box cover (24) is provided on the side of the storage box (23), a fifth through hole is provided on the bottom surface of the storage box (23), the temperature sensor probe (4) is installed in the fifth through hole, a sixth through hole is provided on the box cover (24), and a seventh through hole is provided on the inner side wall of the main box body (1), the sixth through hole and the seventh through hole are used for passing a signal line; a second connecting rod is hinged on the box cover (24), and the free end of the second connecting rod is hinged to the lower end of the first push rod (19) through a pin shaft.

4. The automatic temperature-controlled dressing storage device for surgical care according to claim 1, characterized in that: A second bracket (25) is fixedly installed on the other side of the inner cavity of the main box (1), and a second push rod (26) is slidably connected to the second bracket (25), and the upper end of the second push rod (26) is fixedly connected to a second telescopic arm (27), and the tail of the second telescopic arm (27) is connected to the lifting mechanism (21) through a pin shaft; two guide columns (28) are slidably connected to the second bracket (25), and the two guide columns (28) are symmetrically arranged; the lower end of the guide column (28) is fixedly connected to a storage box (23 ), a box cover (24) is provided on the side of the storage box (23), a fifth through hole is provided on the bottom surface of the storage box (23), the temperature sensor probe (4) is installed in the fifth through hole, a sixth through hole is provided on the box cover (24), and a seventh through hole is provided on the inner wall of the main box body (1), and the sixth through hole and the seventh through hole are used to pass the signal line; a connecting plate (29) is fixedly connected to the gap between the two box covers (24), and the connecting plate (29) is fixedly connected to the lower end of the second push rod (26) by bolts.

5. The automatic temperature-controlled dressing storage device for surgical care according to claim 1, characterized in that: A support plate (30) is fixedly installed on the bottom surface of the main box (1). The support plate (30) is L-shaped. The horizontal section of the support plate (30) is located below the temperature sensor probe (4). A compression spring (31) is fixedly installed on the horizontal section of the support plate (30). The upper end of the compression spring (31) is fixedly connected to a scraper (32). The scraper (32) is annular in shape. The inner side wall of the scraper (32) is slidably fitted with the inner wall of the temperature sensor probe (4). The outer side wall of the scraper (32) is slidably fitted with the outer wall of the temperature sensor probe (4). The compression spring (31) causes the initial position of the scraper (32) to be located in the middle of the temperature sensor probe (4).

6. The automatic temperature-controlled dressing storage device for surgical care according to claim 3 or 4, characterized in that: A fifth through hole is provided on the bottom surface of the storage box (23), in which the temperature sensor probe (4) is installed. A sixth through hole is provided on the box cover (24), and a seventh through hole is provided on the inner side wall of the main box body (1). The sixth through hole and the seventh through hole are used for passing a signal line.

7. The automatic temperature-controlled dressing storage device for surgical care according to claim 1, characterized in that: The operation panel (10) is provided with a display screen (11) and a button (12). The display screen (11) is used to display the real-time temperature and operating status inside the main box (1), and the button (12) is used to manually adjust the setting parameters.

8. The automatic temperature-controlled dressing storage device for surgical care according to claim 1, characterized in that: The wireless communication module (8) establishes a data connection with an external terminal device via an antenna (9), and the wireless communication module (8) is fixedly mounted on the top of the inner cavity of the main box (1).

9. The automatic temperature-controlled dressing storage device for surgical care according to claim 1, characterized in that: A heating module (7) is fixedly mounted on the bottom of the inner cavity of the main box (1). The heating module (7) is connected to the control module (5) via a wire. The control module (5) controls the working state of the heating module (7) according to the detection signal of the temperature sensor probe (4).

Citation Information

Patent Citations

  • A storage device for burn dressings

    CN112520238B

  • A storage device for protective gel dressings

    CN117401305B