A body temperature monitoring device for heat stroke monitoring
By using a flexible strap and multi-layer composite material design, the problems of strap damage and buckle loosening in existing body temperature monitoring wristbands have been solved, achieving better wearing comfort and adaptability to meet the needs of different wrist sizes.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- THE FIRST AFFILIATED HOSPITAL OF NAVAL MEDICAL UNIVERSITY OF CHINESE PEOPLES LIBERATION ARMY
- Filing Date
- 2023-02-24
- Publication Date
- 2026-04-17
AI Technical Summary
Existing body temperature monitoring wristbands are prone to problems such as strap damage, buckle loosening, and limited adjustment range during long-term use, leading to discomfort and reduced comfort when worn.
Featuring a flexible strap and a multi-layer composite material design, including a metal braided layer, a support layer, a protective layer, and a wear-resistant layer, combined with an adjustable strap connection module and a movable chain module, it enhances structural strength and flexibility to adapt to different wrist sizes.
It improves wearing comfort and structural abrasion resistance, effectively conforms to the skin surface, adapts to the wrist size requirements of different users, and prevents damage to the watch strap and loosening of the clasp.
Smart Images

Figure CN116172523B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of military medical technology, specifically to a body temperature monitoring device for monitoring heatstroke. Background Technology
[0002] Heatstroke is the most severe form of heat-related emergency, also known as severe heatstroke. It occurs when the body's regulatory functions become imbalanced due to exposure to hot and humid environments, leading to heat production exceeding heat dissipation and a rapid rise in core temperature exceeding 40°C. Symptoms include burning skin, altered consciousness (such as delirium, convulsions, and coma), and multiple organ dysfunction, making it a severe and potentially fatal illness. It is the most severe type of heatstroke, with an extremely high mortality rate. Depending on the cause and susceptible population, heatstroke can be classified into exertional heatstroke and non-exertional heatstroke (also known as classic heatstroke). To monitor an individual's basic health information in real time, health monitoring wristbands and similar devices are commonly used. However, current similar temperature monitoring devices still have the following shortcomings:
[0003] First, existing monitoring wristbands are generally made of memory rubber in their straps. Although the material itself is healthy and non-toxic, the increased frequency of wearing or removing the straps over a long period of time can cause irreversible damage to the bending parts. In addition, changes in ambient temperature can cause the memory rubber straps to crack or even break.
[0004] Secondly, existing monitoring wristbands generally have a two-piece integrated strap structure, with the two ends of the strap connected by a buckle. One end of the strap has adjustment holes, but due to the material, the adjustment holes wear down with the repeated fastening and unfastening of the buckle. This can cause the buckle structure to loosen during movement due to excessive limb movements, resulting in the entire wristband being thrown off the wrist.
[0005] Third, existing monitoring wristbands typically have a limited range of adjustment due to design factors. Considering the differences in body structure among different users, it is difficult to make them suitable for all groups of people. As a result, some people may find the wristband too loose, preventing the bottom of the wristband from effectively fitting the skin and thus hindering the monitoring of their physical condition. On the other hand, the limited adjustment range may cause a feeling of tightness when wearing the wristband, affecting the comfort of wearing it.
[0006] Therefore, there is an urgent need to improve this shortcoming. The present invention studies and improves the existing structure and its deficiencies, and provides a body temperature monitoring device for monitoring heatstroke. Summary of the Invention
[0007] The purpose of this invention is to provide a body temperature monitoring device for monitoring heatstroke, so as to solve the problems mentioned in the background art.
[0008] To achieve the above objectives, the present invention provides the following technical solution: a body temperature monitoring device for monitoring heatstroke, comprising a body temperature monitor body and a flexible strap, wherein watch lugs are fixedly installed on the left and right sides of the body temperature monitor body, and a strap connecting module is movably connected to the middle section of the watch lugs, the flexible strap is connected to the end of the strap connecting module away from the watch lugs, and a detachable connector is provided at the end of the flexible strap away from the strap connecting module, a main watch section module is connected and installed at the end of the detachable connector away from the flexible strap, and a movable chain module is connected and installed at the end of the main watch section module away from the detachable connector, the flexible strap comprising a metal braided layer, a support layer, a protective layer and a wear-resistant layer, a support layer is provided on the upper and lower surfaces of the metal braided layer, a protective layer is provided on the side surface of the support layer away from the metal braided layer, and a wear-resistant layer is provided on the side surface of the protective layer away from the support layer.
[0009] Furthermore, the body temperature monitor includes a Bluetooth body temperature monitor, a hydrophobic membrane, a sealing ring, a protective shell, a buffer shell, shell ears, and a docking hole. The surface of the Bluetooth body temperature monitor is covered with a hydrophobic membrane, and a sealing ring is tightly fitted around the edges of the Bluetooth body temperature monitor. A protective shell is installed around the outer perimeter of the sealing ring, and a buffer shell is fitted around the edges of the protective shell. Shell ears are fixedly connected to the left and right sides of the buffer shell, and a docking hole is provided through the interior of the shell ears.
[0010] Furthermore, the lug assembly includes a connecting lug, a fixing anchor, and a fixing slot. The fixing anchor is disposed through the center of the connecting lug in the horizontal direction, and the fixing slot is disposed inside the connecting lug.
[0011] Furthermore, the lug assembly also includes a support lug, a riveting member, a stop bearing, and an anchor rod. The support lug has a riveting member installed in its center, and the stop bearing is installed in the center of the riveting member. The anchor rod is installed through the shaft that includes the support lug, the riveting member, and the stop bearing.
[0012] Furthermore, the watch strap connection module includes a connecting plate, a lower clamping plate, a lower arc tube, a lower threaded tube, an upper clamping plate, an upper arc tube, and an upper threaded tube. The lower clamping plate is connected to one side of the connecting plate, and the lower arc tube is provided in the center of the lower clamping plate. The lower threaded tube is vertically inserted through the right end of the lower clamping plate. The upper clamping plate is fitted to the upper part of the lower clamping plate, and the upper arc tube is provided in the center of the upper clamping plate. The upper threaded tube is vertically inserted through the right end of the upper clamping plate.
[0013] Furthermore, the disassembly and assembly connector includes a mating part, a connecting threaded tube, and a rivet bolt. The connecting threaded tube is installed on the side of the mating part, and a rivet bolt is provided through the axis of the connecting threaded tube.
[0014] Furthermore, the segment module includes a main segment block, a movable bushing, a disassembly bolt, a nut, and a fixing thread. The movable bushing is provided through both the left and right sides of one end of the main segment block, and the disassembly bolt is installed inside the movable bushing. The top of the disassembly bolt is provided with a nut, and the bottom surface of the disassembly bolt is provided with a fixing thread.
[0015] Furthermore, the movable chain module includes a connecting segment, an anti-wear coating, and a connecting screw tube. The surface of the connecting segment is coated with an anti-wear coating, and connecting screw tubes are provided on both the left and right sides of one end of the connecting segment.
[0016] Furthermore, the watch strap connection module, flexible watch strap, and detachable connector are integrated into a single structure, and are symmetrically connected and installed with the vertical central axis of the body of the temperature monitor as the axis of symmetry.
[0017] Furthermore, the strap connection module is movably connected to the lug assembly, the detachable connector is movably connected to the watch section module, and the watch section module's movable chain module is movably linked.
[0018] This invention provides a body temperature monitoring device for monitoring heatstroke, which has the following beneficial effects: The body temperature monitoring device for monitoring heatstroke utilizes the manually malleable structure of a flexible strap to allow the body of the temperature monitor to fit snugly against the skin surface for easy temperature monitoring. Through the strap connection module and lug assembly, the flexible strap can be arbitrarily attached or detached to the left or right sides of the body of the temperature monitor. By combining the main watch section module and the movable chain module, the size can be adjusted as needed when wearing the device.
[0019] 1. This invention includes a body temperature monitor. The improved body temperature monitor takes into account that users in military training are exposed to direct sunlight and high humidity for extended periods during high-intensity exercise, resulting in continuously rising body temperature and significant sweating. To prevent interference with the Bluetooth body temperature monitor, a hydrophobic film is applied to its surface to prevent liquid from remaining on the surface and causing moisture ingress. Simultaneously, a sealing ring surrounding the Bluetooth body temperature monitor further enhances overall waterproofing. The buffer shell is made of high-density sponge material, which absorbs moisture through its porous structure while also providing a degree of breathability. The protective shell uses a combination of foamed polyethylene and foamed polypropylene materials, which not only absorbs loads and provides excellent pressure-resistant cushioning but also assists in heat insulation, preventing external high temperatures from affecting the normal operation of the Bluetooth body temperature monitor.
[0020] 2. This invention includes a lug assembly. Since the flexible watch strap is connected and fixed to the lug assembly via a watch strap connecting module at one end, continuous friction will occur at the connection point between the watch strap connecting module and the lug assembly, whether it is being worn, removed, or during high-intensity movement. To increase the structural strength of the connection point, the upper and lower clamping plates at one end of the connecting plate are made of carbon fiber material, which has sufficient strength and a certain degree of flexibility. The anchor rod is clamped by the upper and lower arc tubes made of PC material, thus forming a fixed structure with sufficient wear resistance. When the upper and lower clamping plates are fixed to the anchor rod and move, a stop bearing is used to further improve the mobility and prevent wear, allowing the anchor rod to be flexibly adjusted.
[0021] 3. This invention features a flexible watchband. The improved flexible watchband is made of multi-layer composite materials. The metal braided layer is made of silver wire, which can dissipate heat and has a certain degree of structural plasticity, helping to shape the watchband during wear and conform to the shape of the wrist. The support layer is made of reinforced high-density material, which can provide strong support for the entire flexible watchband without affecting the shaping effect. The protective layer is made of carbon fiber material, which further improves the structural strength of the flexible watchband while also having a certain degree of flexibility. The wear-resistant layer is made of thermoplastic polyurethane rubber covering the entire flexible watchband, which improves wearing comfort and has sufficient wear resistance, protecting the internal structure. On the other hand, in order to achieve structural integration between the watchband connection module, the flexible watchband, and the disassembly connectors, the mating parts, connecting plates, lower clamps, and upper clamps are all structural extensions of the protective layer, which are different structural shapes of the same material.
[0022] 4. This invention includes a main section module and a movable chain module. Considering structural strength, both the main section and connecting sections utilize lithium-aluminum alloy. Lithium is the lightest metallic element in the world. Adding lithium as an alloying element to aluminum forms an aluminum-lithium alloy. Adding lithium reduces the alloy's specific gravity and increases its rigidity, while maintaining high strength, good corrosion resistance, fatigue resistance, and suitable ductility. Therefore, when the main section and connecting sections are interconnected through other temporary structures, their structural strength and robustness are highly guaranteed. Furthermore, in special circumstances, connecting several main section modules and movable chain modules can form a chain for binding items or connecting ropes.
[0023] 5. This invention includes a main watch section module and a movable chain module. Since different users have wrists of varying sizes, and to accommodate different users and facilitate adjustment, a disassembly bolt is inserted into the movable sleeve of the main section block. The fixing thread at the bottom of the disassembly bolt is then screwed into the connecting threaded tube of the connecting section block for secure installation. To ensure the mobility of the main watch section module and the movable chain module after their connection, the movable sleeve allows the main section block to be fixedly connected to the connecting section block using the disassembly bolt while also allowing for flexible rotation using the bearing structure of the movable sleeve. Furthermore, to prevent the connecting threaded tube and disassembly bolt from being too small to effectively bear force, they are made of the same lithium-aluminum alloy as the main watch section module and the movable chain module, further enhancing the overall strength of the main watch section module and the movable chain module. Attached Figure Description
[0024] Figure 1 This is a front view schematic diagram of a body temperature monitoring device for monitoring heatstroke according to the present invention;
[0025] Figure 2 This invention relates to a body temperature monitoring device for monitoring heatstroke. Figure 1 Enlarged structural diagram at point A in the middle;
[0026] Figure 3 This invention relates to a body temperature monitoring device for monitoring heatstroke. Figure 1 Enlarged view of point B in the middle;
[0027] Figure 4 This is a side sectional view of the flexible strap structure of a body temperature monitoring device for monitoring heatstroke according to the present invention.
[0028] Figure 5 This is a side sectional view of the ear assembly of a body temperature monitoring device for monitoring heatstroke according to the present invention.
[0029] Figure 6 This is a schematic diagram of the disassembly and assembly connector and the strap connection module structure of a body temperature monitoring device for monitoring heatstroke according to the present invention.
[0030] In the diagram: 1. Body temperature monitor; 101. Bluetooth body temperature monitor; 102. Hydrophobic membrane; 103. Sealing ring; 104. Protective shell; 105. Buffer shell; 106. Shell lug; 107. Docking hole; 2. Lug assembly; 201. Connecting lug; 202. Fixing anchor bolt; 203. Fixing slot; 204. Supporting lug; 205. Rivet; 206. Stop bearing; 207. Anchor rod; 3. Strap connection module; 301. Connecting plate; 302. Lower clamping plate; 303. Lower arc tube; 304. Lower threaded tube; 3 05. Upper clamping plate; 306. Upper arc tube; 307. Upper threaded tube; 4. Flexible watch strap; 401. Metal braided layer; 402. Support layer; 403. Protective layer; 404. Wear-resistant layer; 5. Disassembly and assembly connectors; 501. Butt joint; 502. Connecting threaded tube; 503. Rivet bolt; 6. Main watch section module; 601. Main section block; 602. Movable bushing; 603. Disassembly bolt; 604. Nut; 605. Fixing thread; 7. Movable chain module; 701. Connecting section block; 702. Wear-resistant coating; 703. Connecting threaded tube. Implementation
[0031] The embodiments of the present invention will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of the invention.
[0032] like Figure 1 and Figure 5As shown, a body temperature monitoring device for monitoring heatstroke includes a body temperature monitor 1 and a flexible strap 4. Lug assemblies 2 are fixedly installed on the left and right sides of the body temperature monitor 1, and a strap connection module 3 is movably connected to the middle section of the lug assemblies 2. The flexible strap 4 is connected to the end of the strap connection module 3 away from the lug assemblies 2, and a detachable connector 5 is provided at the end of the flexible strap 4 away from the strap connection module 3. A main watch section module 6 is connected and installed at the end of the detachable connector 5 away from the flexible strap 4, and a movable chain module 7 is connected and installed at the end of the main watch section module 6 away from the detachable connector 5. The body temperature monitor 1 includes a Bluetooth body temperature monitor 101, a hydrophobic membrane 102, a sealing ring 103, a protective shell 104, a buffer shell 105, lugs 106, and a docking hole 107. The surface of the Bluetooth body temperature monitor 101 is covered with the hydrophobic membrane 102, and the edges of the Bluetooth body temperature monitor 101 are tightly sealed. A sealing ring 103 is attached to the outer periphery of the sealing ring 103, and a protective shell 104 is installed around the outer periphery of the protective shell 104. A buffer shell 105 is attached to the edge of the protective shell 104. A shell lug 106 is fixedly connected to the left and right sides of the buffer shell 105, and a mating hole 107 is provided through the inside of the shell lug 106. The watch lug assembly 2 includes a connecting lug 201, a fixing bolt 202, and a fixing slot 203. A fixing bolt 202 is provided through the center of the connecting lug 201 in the horizontal direction, and a fixing slot 203 is provided inside the connecting lug 201. The watch lug assembly 2 also includes a supporting lug 204, a riveting piece 205, a stop bearing 206, and an anchor rod 207. A riveting piece 205 is installed in the center of the supporting lug 204, and a stop bearing 206 is installed in the center of the riveting piece 205. An anchor rod 207 is installed through the shaft including the supporting lug 204, the riveting piece 205, and the stop bearing 206.
[0033] The specific operation is as follows: the connecting lug 201 and the supporting lug 204 are an integral structure. The fixed slot 203 structure inside the connecting lug 201 and the shell lug 106 structure on the left and right sides of the buffer shell 105 can be inserted and fitted together. After the shell lug 106 is inserted into the fixed slot 203 in the horizontal direction, the fixed anchor bolt 202 passes through the side surface of the connecting lug 201 and then passes through the docking hole 107 to anchor the shell lug 106 and the connecting lug 201 in the horizontal direction, so that the watch strap connecting module 3 and the watch lug assembly 2 can be docked.
[0034] like Figure 1 , Figure 4 and Figure 6As shown, the watch strap connection module 3 includes a connecting plate 301, a lower clamping plate 302, a lower arc tube 303, a lower threaded tube 304, an upper clamping plate 305, an upper arc tube 306, and an upper threaded tube 307. The lower clamping plate 302 is connected to one side of the connecting plate 301, and the lower arc tube 303 is located in the center of the lower clamping plate 302. The lower threaded tube 304 vertically penetrates the right end of the lower clamping plate 302. The upper clamping plate 305 is fitted and attached to the upper part of the lower clamping plate 302. An upper arc tube 306 is provided in the center, and an upper threaded tube 307 is vertically inserted through the right end of the upper clamping plate 305. The flexible watch strap 4 includes a metal braided layer 401, a support layer 402, a protective layer 403, and a wear-resistant layer 404. The upper and lower surfaces of the metal braided layer 401 are provided with the support layer 402, and the side surface of the support layer 402 away from the metal braided layer 401 is provided with the protective layer 403, and the side surface of the protective layer 403 away from the support layer 402 is provided with the wear-resistant layer 404.
[0035] The specific operation is as follows: Since the lower clamping plate 302 and the upper clamping plate 305 have a certain degree of toughness, the upper clamping plate 305 and the lower clamping plate 302 on the side of the connecting plate 301 are bent and opened to a certain extent in the upper and lower directions, respectively. At the same time, the upper arc tube 306 and the lower arc tube 303 are clamped around the anchor rod 207 from the upper and lower directions, respectively. Meanwhile, the bolts used for special fixing are screwed into the upper threaded tube 307 and the lower threaded tube 304 in the vertical direction, so that the watch strap connecting module 3 is connected and fixed on the anchor rod 207. The watch strap connecting module 3 can be adjusted up and down to a certain extent with the anchor rod 207 as the center to match the wearing adjustment of the body temperature monitor 1. During the adjustment and rotation, the fixed bearing 206 provides the anchor rod 207 with the flexibility of vertical rotation, reducing the direct friction rotation between the upper arc tube 306, the lower arc tube 303 and the anchor rod 207.
[0036] like Figure 1 , Figure 2 and Figure 3As shown, the disassembly and assembly connector 5 includes a mating part 501, a connecting threaded tube 502, and a rivet bolt 503. The connecting threaded tube 502 is installed on the side of the mating part 501, and the rivet bolt 503 is provided through the axis of the connecting threaded tube 502. The main section module 6 includes a main section block 601, a movable bushing 602, a disassembly bolt 603, a nut 604, and a fixing thread 605. The movable bushing 602 is provided through the left and right sides of one end of the main section block 601, and the disassembly bolt 603 is installed inside the movable bushing 602. The top of the disassembly bolt 603 is provided with a nut 604, and the bottom surface of the disassembly bolt 603 is provided with a fixing thread 605. The active chain module 7 includes a connecting segment 701, an anti-wear coating 702, and a connecting screw tube 703. The surface of the connecting segment 701 is coated with an anti-wear coating 702, and connecting screw tubes 703 are provided on both the left and right sides of one end of the connecting segment 701. The watch strap connecting module 3, the flexible watch strap 4, and the disassembly and assembly connector 5 are integrated into one structure. The watch strap connecting module 3, the flexible watch strap 4, and the disassembly and assembly connector 5 are all symmetrically connected and installed with the vertical central axis of the body temperature monitor 1 as the axis of symmetry. The watch strap connecting module 3 is movably connected to the lug assembly 2, and the disassembly and assembly connector 5 is movably connected to the main watch segment module 6. The active chain module 7 of the main watch segment module 6 is movably linked.
[0037] The specific operation is as follows: In order to combine the disassembly connector 5 on one side of the flexible watch strap 4 with the main watch link module 6, a rivet bolt 503 with the same structure as the disassembly bolt 603 is passed through the main link block 601, and the end of the rivet bolt 503 is screwed into the connecting thread tube 502, thereby completing the docking installation of the disassembly connector 5 and the main watch link module 6. Then, the movable bushing 602 on the other side of the main link block 601 is aligned and aligned with the connecting thread tube 703 in the connecting link block 701. Then, the disassembly bolt 603 is inserted into the movable bushing 602, and the nut 604 is manually tightened so that the fixing thread 605 on the bottom surface of the disassembly bolt 603 is screwed into the connecting thread tube 703, thereby completing the docking installation of the main watch link module 6 and the movable chain module 7. According to the above operation, multiple main watch link modules 6 and movable chain modules 7 can be combined with each other to adjust to a size and length suitable for the wearer's wrist circumference.
[0038] In summary, combining Figures 1-6 As shown, the working principle of the body temperature monitoring device for heatstroke monitoring is as follows: First, the ear pieces 106 on the left and right sides of the buffer shell 105 are directly inserted into the fixing slot 203 in the horizontal direction. Then, the fixing anchor 202 passes through the side surface of the connecting ear 201 in the horizontal direction, and then passes through the docking hole 107 provided on the side of the ear piece 106, thereby anchoring the ear piece 106 and the connecting ear 201 in the horizontal direction, so that the watch strap connecting module 3 and the watch ear assembly 2 are docked.
[0039] Next, by utilizing the material toughness of the upper clamping plate 305 and lower clamping plate 302 on the side of the connecting plate 301, they are bent and pried open to a certain extent in the upper and lower directions, respectively. Then, the upper arc tube 306 and lower arc tube 303 are respectively clamped from the upper and lower directions to the surface of the anchor rod 207, which is installed through the riveting piece 205 in the center of the support lug 204, so that the anchor rod 207 is surrounded by the upper arc tube 306 and lower arc tube 303. At the same time, the bolts for special fixing are screwed vertically into the upper threaded tube 307 and lower threaded tube 304 at one end of the upper clamping plate 305 and lower clamping plate 302, so that the watch strap connecting module 3 is connected and fixed to the anchor rod 207. The watch strap connecting module 3, together with the flexible watch strap 4 and the detachable connecting piece 5 on one side, can be vertically aligned with the anchor rod 207 as the center. The vertical angle can be adjusted to a certain extent to match the wearing adjustment and fit of the body temperature monitor 1. At the same time, the metal braided layer 401 in the center of the flexible strap 4 can be used to manually shape and adjust the bending fit of the entire flexible strap 4 to achieve a better fit. The fixed bearing 206 in the adjustment rotation provides the anchor rod 207 with the flexibility of vertical rotation, reducing the direct friction rotation between the upper arc tube 306, the lower arc tube 303 and the anchor rod 207. Then, the rivet bolt 503 with the same structure as the disassembly bolt 603 is passed through the movable bushing 602 on one side of the main section block 601, and the end of the rivet bolt 503 is screwed into the connecting screw tube 502. After tightening, the disassembly and assembly connector 5 and the main section module 6 are connected and installed.
[0040] Next, depending on the wearer's specific situation, the appropriate number of disassembly and assembly connectors 5 are sequentially connected and installed with the main watch section module 6. By aligning the movable bushing 602 on the other side of the main section block 601 connected to the connector 501 with the connecting screw tube 703 in the connecting section block 701, the disassembly bolt 603 is vertically inserted into the movable bushing 602, and the nut 604 is manually tightened so that the fixing thread 605 on the bottom surface of the disassembly bolt 603 is screwed into the connecting screw tube 703. After tightening, the main watch section module 6 and the movable chain module 7 are connected and installed. Following the above operation, multiple main watch section modules 6 and movable chain modules 7 can be combined with each other to adjust to a size and length suitable for the wearer's wrist circumference.
[0041] In the wearing and use of the body temperature monitor 1, in order to avoid affecting the Bluetooth body temperature monitor 101, the hydrophobic film 102 on its surface can prevent liquid from remaining on the surface and causing the device to get damp. At the same time, the sealing ring 103 surrounding the Bluetooth body temperature monitor 101 further improves the overall waterproofness. The buffer shell 105 is made of high-density sponge material, which can absorb water and prevent moisture through the porous structure, and also has a certain degree of breathability. The protective shell 104 is made of a combination of foamed polyethylene and foamed polypropylene materials, which can not only absorb load and have a good pressure-resistant cushioning effect, but also help the buffer shell 105 to insulate heat and prevent the external high temperature from affecting the normal operation of the Bluetooth body temperature monitor 101.
[0042] The embodiments of the present invention are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the invention to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described in order to better illustrate the principles and practical application of the invention, and to enable those skilled in the art to understand the invention and to design various embodiments with various modifications suitable for a particular purpose.
Claims
1. A body temperature monitoring device for monitoring heatstroke, comprising a body temperature monitor (1) and a flexible strap (4), characterized in that, The body temperature monitor body (1) is fixedly mounted with lug assemblies (2) on both the left and right sides, and a watch strap connection module (3) is movably connected to the middle section of the lug assembly (2). The flexible watch strap (4) is connected to the end of the watch strap connection module (3) away from the lug assembly (2), and a disassembly connector (5) is provided at the end of the flexible watch strap (4) away from the watch strap connection module (3). A main watch section module (6) is connected and installed at the end of the disassembly connector (5) away from the flexible watch strap (4), and a movable chain module (7) is connected and installed at the end of the main watch section module (6) away from the disassembly connector (5). The flexible watch strap (4) includes metal braiding. The metal braided layer (401), the support layer (402), the protective layer (403), and the wear-resistant layer (404) are provided on the upper and lower surfaces of the metal braided layer (401). The support layer (402) is provided on the side of the support layer (402) away from the metal braided layer (401). The wear-resistant layer (404) is provided on the side of the protective layer (403) away from the support layer (402). The body temperature monitor (1) includes a Bluetooth body temperature monitor (101), a hydrophobic membrane (102), a sealing ring (103), a protective shell (104), a buffer shell (105), a shell lug (106), and a docking hole (104). 107), the surface of the Bluetooth body temperature monitor (101) is covered with a hydrophobic film (102), and a sealing ring (103) is tightly covered around the edge of the Bluetooth body temperature monitor (101). A protective shell (104) is installed around the outer perimeter of the sealing ring (103), and a buffer shell (105) is attached around the edge of the protective shell (104). The left and right sides of the buffer shell (105) are fixedly connected with shell ears (106), and a docking hole (107) is provided through the inside of the shell ears (106); the tab assembly (2) includes a connecting ear (201), a fixing anchor (202) and a fixing slot. (203), a fixing anchor bolt (202) is provided through the center of the horizontal direction of the connecting lug (201), and a fixing slot (203) is provided inside the connecting lug (201); the watch lug assembly (2) also includes a supporting lug (204), a riveting piece (205), a stop bearing (206) and an anchor rod (207), a riveting piece (205) is installed in the center of the supporting lug (204), and a stop bearing (206) is installed in the center of the riveting piece (205), and the anchor rod (207) is installed through the shaft including the supporting lug (204), the riveting piece (205) and the stop bearing (206);The watch strap connection module (3) includes a connecting plate (301), a lower clamping plate (302), a lower arc tube (303), a lower threaded tube (304), an upper clamping plate (305), an upper arc tube (306), and an upper threaded tube (307). The lower clamping plate (302) is connected to one side of the connecting plate (301), and the lower arc tube (303) is located in the center of the lower clamping plate (302). The lower threaded tube (304) passes vertically through the right end of the lower clamping plate (302). The upper clamping plate (305) is fitted to the upper part of the lower clamping plate (302), and the upper arc tube (306) is located in the center of the upper clamping plate (305). The upper threaded tube (307) passes vertically through the right end of the upper clamping plate (305).
2. A body temperature monitoring device for monitoring heatstroke according to claim 1, characterized in that, The disassembly and assembly connector (5) includes a docking part (501), a connecting screw tube (502) and a rivet bolt (503). The connecting part (501) is equipped with a connecting screw tube (502) on its side, and the connecting screw tube (502) is provided with a rivet bolt (503) through its axis.
3. A body temperature monitoring device for monitoring heatstroke according to claim 1, characterized in that, The section module (6) includes a main section block (601), a movable bushing (602), a disassembly bolt (603), a nut (604), and a fixing thread (605). The movable bushing (602) is provided through both the left and right sides of one end of the main section block (601), and the disassembly bolt (603) is installed inside the movable bushing (602). The top of the disassembly bolt (603) is provided with a nut (604), and the bottom surface of the disassembly bolt (603) is provided with a fixing thread (605).
4. A body temperature monitoring device for monitoring heatstroke according to claim 1, characterized in that, The movable chain module (7) includes a connecting segment (701), an anti-wear coating (702), and a connecting screw tube (703). The surface of the connecting segment (701) is coated with an anti-wear coating (702), and connecting screw tubes (703) are provided on both the left and right sides of one end of the connecting segment (701).
5. A body temperature monitoring device for monitoring heatstroke according to claim 1, characterized in that, The watch strap connection module (3), flexible watch strap (4) and disassembly connector (5) are an integrated structure, and the watch strap connection module (3), flexible watch strap (4) and disassembly connector (5) are all symmetrically connected and installed with the vertical central axis of the body temperature monitor (1) as the axis of symmetry.
6. A body temperature monitoring device for monitoring heatstroke according to claim 1, characterized in that, The strap connection module (3) is movably connected to the lug assembly (2), the disassembly connector (5) is movably connected to the watch section module (6), and the watch section module (6) and the movable chain module (7) are movably linked.
Citation Information
Patent Citations
Bracelet capable of monitoring health data in real time
CN212394089U