Intelligent insulating glove
By integrating induction, control, alarm and signal transmission modules in insulated gloves, monitoring the insulation performance of gloves and user signs, the problem of degradation of the insulation performance of traditional insulated gloves is solved, and intelligent real-time monitoring and alarm are realized, which significantly improves the safety of use.
Patent Information
- Application Number
- CN202421540651.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-01
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-07-01
AI Technical Summary
Traditional insulating gloves are difficult to detect in time when their insulation performance is degraded, resulting in the risk of electric shock from users.
An intelligent insulated glove is designed, integrating an induction module, control module, alarm module and signal transmission module. The induction module monitors the insulating performance, working environment and user signs of the gloves through the induction module. The control module processes data and issues an alarm through the alarm module. The signal transmission module sends a help signal to the external communication equipment.
It realizes the functions of intelligent real-time monitoring, alarm reminder and outgoing help, effectively improving the safety of use and ensuring that users get stronger security in live operations.
Smart Images

Figure CN222941841U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of insulating gloves, in particular to a pair of intelligent insulating gloves. Background Art
[0002] In order to ensure personal safety and safe and reliable power supply to equipment, relevant personnel of the power system need to perform various operations or maintenance tests on the equipment in the live area. Operators perform switching operations, testers perform live tests, and maintenance personnel perform equipment maintenance. When performing the above work, the "Electricity Safety Work Regulations" require that they must wear insulating gloves and insulating boots.
[0003] Traditional insulating gloves can no longer meet existing application needs. When tiny cracks or holes appear in insulating gloves, they are difficult to detect with the naked eye, and the insulating performance of the gloves decreases. Without any detection reminders, workers are not aware that the gloves have cracks or holes and wear them to perform live work, which puts the workers at risk of electric shock and endangers their lives.
[0004] It can be seen that the existing technology still needs to be improved and enhanced. Utility Model Content
[0005] In view of the above-mentioned deficiencies in the prior art, the purpose of the utility model is to provide an intelligent insulating glove, aiming to solve the technical problem in the prior art that the insulating performance of the insulating gloves is reduced and is not easy to be discovered, thereby causing the user to be at risk of electric shock, thereby improving the safety of the insulating gloves and thus improving the safety of the user.
[0006] In order to achieve the above purpose, the utility model adopts the following technical solutions:
[0007] A smart insulating glove, comprising a glove body, a sensing module, a control module, an alarm module and a signal transmission module, wherein the glove body comprises an outer insulating layer, the sensing module, the control module, the alarm module and the signal transmission module are all arranged on the glove body, the control module, the alarm module and the signal transmission module are all located on the inner side of the outer insulating layer, the sensing module is connected to the control module and is used to sense the insulation performance of the glove body, the temperature and humidity of the working environment and the body temperature and pulse of the user, the control module is used to process the data sensed by the sensing module, the alarm module is connected to the control module and is controlled by the control module to send an alarm signal, the signal transmission module is connected to the control module and is signal-connected to an external communication device, and the signal transmission module is used to transmit the data processed by the control module to the external communication device.
[0008] The intelligent insulating glove, wherein the glove body also includes an inner insulating layer, the inner insulating layer is located on the inner side of the outer insulating layer, the control module, the alarm module and the signal transmission module are all located between the inner insulating layer and the outer insulating layer, and the sensing module is arranged on a side of the inner insulating layer close to the outer insulating layer.
[0009] The intelligent insulating glove, wherein the glove body further comprises a wrist portion, the wrist portion is provided with a tightening belt, the tightening belt is located outside the outer insulating layer and is used to tighten the wrist portion.
[0010] The intelligent insulating glove, wherein the sensing module includes a sensing conductor, the sensing conductor is arranged between the outer insulating layer and the inner insulating layer and is located on the back of the hand side of the glove body, and the sensing conductor is used to sense the voltage in the working environment to monitor the insulation performance of the glove body.
[0011] In the intelligent insulating gloves, the control module is provided with an electric field sensing circuit, and the sensing conductor is connected to the electric field sensing circuit.
[0012] The intelligent insulating gloves, wherein the sensing module further includes a temperature sensor and a humidity sensor, both of which are arranged on the outer insulating layer, the temperature sensor is used to monitor the temperature in the working environment, and the humidity sensor is used to monitor the humidity in the working environment.
[0013] The intelligent insulating gloves, wherein the sensing module further includes a pulse sensor and a body temperature sensor, both of which are arranged on the wrist and located between the outer insulating layer and the inner insulating layer, the pulse sensor is used to monitor the user's pulse, and the body temperature sensor is used to monitor the user's body temperature.
[0014] The intelligent insulating gloves, wherein the glove body is further provided with a display, the display is electrically connected to the control module, the display is arranged on the back of the wrist and is used to display the data information sensed by the sensing module.
[0015] The intelligent insulating gloves, wherein the glove body is further provided with a power supply module, the power supply module is electrically connected to the control module and is used to provide power for each module and the display.
[0016] The intelligent insulating gloves, wherein the glove body is further provided with a switch, the switch is connected to the control module and is used to start or shut down the control module.
[0017] Beneficial effects:
[0018] The utility model provides an intelligent insulating glove, comprising a glove body, a sensing module, a control module, an alarm module and a signal transmission module. The glove body is provided with an outer insulating layer. When the outer insulating layer is damaged, the sensing module can sense and monitor the decrease in the insulating performance of the glove body, and transmit the sensed information data to the control module. The control module processes the information data and controls the alarm module to send an alarm signal to remind the user that the glove has a risk of leakage. The sensing module can also sense and monitor the humidity and temperature in the working environment, so that the control module determines whether the environment meets the safety conditions of live working. The sensing module can also sense and monitor the user's physical function condition, and the control module determines whether the user's physical condition can continue to work or whether there is an unexpected danger. When the user is monitored to be physically unwell or in danger of electric shock, the alarm module sends an alarm signal, and the signal transmission module sends a help signal to the external communication equipment at the same time, so that the user can get timely help. The intelligent insulating glove has the functions of intelligent real-time monitoring, alarm reminder and external help, which effectively improves the safety of use and makes the safety of users in live working projects more effectively guaranteed. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 A schematic diagram of a partial cross-section structure of the smart insulating glove provided by the utility model from the back of the hand perspective;
[0020] Figure 2 This is a schematic diagram of the partial cross-section structure of the smart insulating glove provided by the utility model from the palm perspective.
[0021] Reference numerals:
[0022] 1—Glove body 2—Sensor module 3—Alarm module
[0023] 4—Display 5—Power supply module 11—Outer insulation layer
[0024] 12 - Inner insulation layer 13 - Wrist 14 - Tightening belt
[0025] 15—switch 21—sensing conductor 22—temperature sensor
[0026] 23 - Humidity sensor 24 - Pulse sensor 25 - Body temperature sensor
[0027] 31 - Buzzer 32 - LED light. DETAILED DESCRIPTION
[0028] The utility model provides an intelligent insulating glove. In order to make the purpose, technical solution and effect of the utility model clearer and more specific, the utility model is further described in detail with reference to the accompanying drawings and examples. It should be understood that the specific embodiments described here are only used to explain the utility model, and are not used to limit the utility model.
[0029] In the description of the present utility model, it should be understood that the terms "upper", "lower", "left", "right", etc. indicating directions or positional relationships are based on the directions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific direction, and a specific direction structure and operation, and therefore, cannot be understood as a limitation on the present utility model. In addition, "first" and "second" are only for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Therefore, the features defined as "first" and "second" may explicitly or implicitly include one or more of the features. In the description of the present utility model, unless otherwise specified, "multiple" means two or more.
[0030] See also Figure 1 to Figure 2 As shown, the utility model provides an intelligent insulating glove, which includes a glove body 1, a sensing module 2, a control module, an alarm module 3 and a signal transmission module. The glove body 1 includes an outer insulating layer 11, and the sensing module 2, the control module, the alarm module 3 and the signal transmission module are all arranged on the glove body 1. The control module, the alarm module 3 and the signal transmission module are all located on the inner side of the outer insulating layer 11. The sensing module 2 is connected to the control module and is used to sense the insulation performance of the glove body 1, the temperature and humidity of the working environment, and the body temperature and pulse of the user. The control module is used to process the data sensed by the sensing module 2. The alarm module 3 is connected to the control module and is controlled by the control module to send an alarm signal. The signal transmission module is connected to the control module and is signal-connected to an external communication device. The signal transmission module is used to transmit the data processed by the control module to the external communication device.
[0031] In this embodiment, the control module (not shown in the figure) is a commonly used intelligent control chip, preferably an FPGA chip, and various related control circuits are pre-edited on the chip; the signal transmission module (not shown in the figure) can adopt commonly used wireless communication methods such as Bluetooth and satellite communication; the alarm module 3 includes a buzzer 31 and an LED light 32, and the alarm signal includes a sound signal and a light signal, which reminds the user by emitting a sound signal and a light signal; the outer insulating layer 11 is made of common insulating materials in the prior art, and the outer insulating layer 11 insulates and protects each module and the inside of the glove body 1; the external communication device includes electronic devices such as computers or mobile phones, and a system program that can monitor the data information of the intelligent insulating gloves and other real-time conditions of live working in real time is set on the external communication device, and the communication device is operated by staff other than those in live working so that a quick response can be obtained after the help signal is sent.
[0032] The working principle of the intelligent insulating gloves is as follows: when the outer insulating layer 11 is damaged, the sensing module 2 can sense and monitor the decrease in the insulation performance of the glove body 1, and transmit the sensed information data to the control module, which processes the information data and controls the alarm module 3 to send an alarm signal to remind the user that the gloves have a risk of leakage; the sensing module 2 can also sense and monitor the humidity and temperature in the working environment, so that the control module can determine whether the environment meets the safety conditions for live working; the sensing module 2 can also sense and monitor the user's physical function condition, and the control module can determine whether the user's physical condition can continue to work or whether there is an unexpected danger. When the user is monitored to be physically unwell or in danger of electric shock, the alarm module 3 sends an alarm signal, and the signal transmission module sends a help signal to the external communication equipment at the same time, so that the user can get timely help. The intelligent insulating gloves have the functions of intelligent real-time monitoring, alarm reminder and external help, which effectively improves the safety of use and makes the safety of users in live working projects more effectively guaranteed. It is worth noting that the alarm signal issued by the alarm module 3 when the insulation performance of the glove body 1 is reduced and the alarm signal issued when the user's physical condition is abnormal are different in sound frequency, light color, and light flashing frequency. The alarm signal when the user's physical condition is abnormal is more rapid and obvious, so as to more easily attract the attention of others and increase the speed of being rescued.
[0033] See also Figure 1 to Figure 2 As shown, the glove body 1 also includes an inner insulating layer 12, which is located on the inner side of the outer insulating layer 11, and the control module, the alarm module 3 and the signal transmission module are all located between the inner insulating layer 12 and the outer insulating layer 11, and the sensing module 2 is arranged on the side of the inner insulating layer 12 close to the outer insulating layer 11. In this embodiment, the inner insulating layer 12 is also made of common insulating materials in the prior art. The inner insulating layer 12 is used to insulate and block each module from the user's hand, and when the outer insulating layer 11 is damaged and there is a risk of leakage, the inner insulating layer 12 can also provide insulation protection for the user, effectively improving the insulation performance of the glove body 1 and improving the safety of the user.
[0034] See also Figure 1 to Figure 2 As shown, the glove body 1 further includes a wrist portion 13, and the wrist portion 13 is provided with a tightening belt 14, and the tightening belt 14 is located outside the outer insulating layer 11 and is used to tighten the wrist portion 13. In this embodiment, the tightening belt 14 can be tightened in the form of an elastic cord or Velcro, and a matching fastener can also be configured so that the wrist portion 13 can be tightly attached to the user's wrist to avoid leakage.
[0035] See also Figure 2As shown, the sensing module 2 includes a sensing conductor 21, which is arranged between the outer insulating layer 11 and the inner insulating layer 12 and located on the back of the hand of the glove body 1. The sensing conductor 21 is used to sense the current in the working environment to monitor the insulation performance of the glove body 1. The control module is provided with an electric field sensing circuit (not shown in the figure), and the sensing conductor 21 is connected to the electric field sensing circuit. The sensing conductor 21 can be made of a silver film with strong conductivity and flexible texture. When the outer insulating layer 11 of the glove body 1 is damaged, the sensing conductor 21 can sensitively sense the current, the electric field sensing circuit is turned on, and the control module controls the alarm module 3 to send an alarm signal to remind the user that the glove is damaged. The control module can also convert the current into an electrical signal of corresponding size, such as a voltage value, according to the current size, and display it on the display 4, so that the user can more intuitively know the voltage strength of the environmental electric field and remind the user to stay away as soon as possible to avoid electric shock.
[0036] See also Figure 1 As shown, the sensing module 2 also includes a temperature sensor 22 and a humidity sensor 23. Both the temperature sensor 22 and the humidity sensor 23 are arranged on the outer insulating layer 11. The temperature sensor 22 is used to monitor the temperature in the working environment, and the humidity sensor 23 is used to monitor the humidity in the working environment. In this embodiment, in order to facilitate sensing the temperature and humidity in the environment, the temperature sensor 22 and the humidity sensor 23 both expose the sensing parts outside the outer insulating layer 11. However, in order to ensure the insulation performance of the glove body 1, the gaps between the temperature sensor 22 and the humidity sensor 23 and the outer insulating layer 11 are strictly insulated and protected to avoid leakage of electricity and air from these installation gaps, which may cause electric shock hazards. By setting the temperature sensor 22 to sense the temperature in the environment and the humidity sensor 23 to sense the humidity in the environment, the working environment can be understood in real time, which improves the safety during the work process. If the temperature or humidity in the environment is too high, the user can be reminded to pay attention to the safety of the operation and even suspend the operation when necessary.
[0037] See also Figure 2 As shown, the sensing module 2 also includes a pulse sensor 24 and a body temperature sensor 25, both of which are arranged on the wrist 13 and between the outer insulating layer 11 and the inner insulating layer 12, and the pulse sensor 24 is used to monitor the pulse of the user, and the body temperature sensor 25 is used to monitor the body temperature of the user. In this embodiment, the pulse sensor 24 and the body temperature sensor 25 can refer to the working principle of the sports bracelet, and judge whether the user can continue to work by real-time monitoring of the user's pulse information and body temperature information, and can also monitor whether the user has an electric shock, and timely feedback to the external communication device, so as to buy more rescue time for the user who has an electric shock.
[0038] See also Figure 1 As shown, the glove body 1 is also provided with a display 4, which is electrically connected to the control module. The display 4 is provided on the back of the wrist 13 and is used to display the data information sensed by the sensing module 2. In this embodiment, the display 4 is provided on the back of the wrist 13, just like wearing a watch, which is convenient for viewing the display content of the display 4 without affecting the normal use of the glove body 1. The display 4 can display the ambient temperature, humidity, voltage, human pulse, human body temperature and alarm reasons, so that the user can more intuitively understand the working environment, his own situation and the situation of the glove body 1, thereby improving the safety factor of live working.
[0039] See also Figure 1 As shown, the glove body 1 is also provided with a power supply module 5, which is electrically connected to the control module and used to provide power to each module and the display 4. The operation of the alarm module 3, the display 4, the temperature sensor 22, the humidity sensor 23, the pulse sensor 24 and the body temperature sensor 25 all require power supply. In this embodiment, the power supply module 5 is a battery with a large capacity and a small volume to ensure that each module can last for a long time; the battery can be selected from existing products in a replaceable or rechargeable form.
[0040] See also Figure 1 As shown, the glove body 1 is also provided with a switch 15, which is connected to the control module and is used to start or shut down the control module. In this embodiment, the switch 15 adopts a press switch 15 key, and the switch 15 is arranged near the display 4. After the user puts on the glove body 1, press the switch 15 to start each module to start working; when the glove is finished, press the switch 15 to stop each module from working, saving electricity and extending the use time of the power supply module 5 as much as possible. After the glove body 1 is used, it needs to be stored in a dry and ventilated place after being taken off to prevent the moisture generated by the user's sweat from breeding bacteria or damaging the inner insulating layer 12, thereby affecting the normal use of each module.
[0041] In summary, the utility model discloses an intelligent insulating glove, comprising a glove body 1, a sensing module 2, a control module, an alarm module 3 and a signal transmission module. The glove body 1 is provided with an outer insulating layer 11. When the outer insulating layer 11 is damaged, the sensing module 2 can sense and monitor the decrease in the insulation performance of the glove body 1, and transmit the sensed information data to the control module. The control module processes the information data and controls the alarm module 3 to send an alarm signal to remind the user that the glove has a risk of leakage. The sensing module 2 can also sense and monitor the humidity and temperature in the working environment, so that the control module determines whether the environment meets the safety conditions of live working. The sensing module 2 can also sense and monitor the user's physical function condition, and the control module determines whether the user's physical condition can continue to work or whether there is an unexpected danger. When the user is monitored to be physically unwell or in danger of electric shock, the alarm module 3 sends an alarm signal, and the signal transmission module sends a help signal to the external communication device at the same time, so that the user can get timely help. The intelligent insulating glove has the functions of intelligent real-time monitoring, alarm reminder and external help, which effectively improves the safety of use and makes the safety of users in live working projects more effectively guaranteed.
[0042] It is understandable that those skilled in the art can make equivalent substitutions or changes based on the technical solution and utility model concept of the utility model, and all these changes or substitutions should fall within the protection scope of the claims attached to the utility model.
Claims
1. A smart insulating glove, characterized in that: The invention comprises a glove body (1), a sensing module (2), a control module, an alarm module (3) and a signal transmission module. The glove body (1) comprises an outer insulating layer (11). The sensing module (2), the control module, the alarm module (3) and the signal transmission module are all arranged on the glove body (1). The control module, the alarm module (3) and the signal transmission module are all located on the inner side of the outer insulating layer (11). The sensing module (2) is connected to the control module and is used to sense the insulation performance of the glove body (1), the temperature and humidity of the working environment and the body temperature and pulse of the user. The control module is used to process the data sensed by the sensing module (2). The alarm module (3) is connected to the control module and is controlled by the control module to send an alarm signal. The signal transmission module is connected to the control module and is signal-connected to an external communication device. The signal transmission module is used to transmit the data processed by the control module to the external communication device.
2. The intelligent insulating glove according to claim 1, characterized in that: The glove body (1) further comprises an inner insulating layer (12), wherein the inner insulating layer (12) is located on the inner side of the outer insulating layer (11), the control module, the alarm module (3) and the signal transmission module are all located between the inner insulating layer (12) and the outer insulating layer (11), and the sensing module (2) is arranged on a side of the inner insulating layer (12) close to the outer insulating layer (11).
3. The intelligent insulating glove according to claim 2, characterized in that: The glove body (1) further comprises a wrist portion (13), wherein the wrist portion (13) is provided with a tightening belt (14), wherein the tightening belt (14) is located outside the outer insulating layer (11) and is used to tighten the wrist portion (13).
4. The intelligent insulating glove according to claim 2, characterized in that: The sensing module (2) comprises a sensing conductor (21), wherein the sensing conductor (21) is arranged between the outer insulating layer (11) and the inner insulating layer (12) and is located on the back of the hand of the glove body (1), and the sensing conductor (21) is used to sense the current in the working environment to monitor the insulation performance of the glove body (1).
5. The intelligent insulating glove according to claim 4, characterized in that: The control module is provided with an electric field induction circuit, and the induction conductor (21) is connected to the electric field induction circuit.
6. The intelligent insulating glove according to claim 2, characterized in that: The sensing module (2) further comprises a temperature sensor (22) and a humidity sensor (23); the temperature sensor (22) and the humidity sensor (23) are both arranged on the outer insulating layer (11); the temperature sensor (22) is used to monitor the temperature in the working environment; and the humidity sensor (23) is used to monitor the humidity in the working environment.
7. The intelligent insulating glove according to claim 3, characterized in that: The sensing module (2) further comprises a pulse sensor (24) and a body temperature sensor (25); the pulse sensor (24) and the body temperature sensor (25) are both arranged on the wrist (13) and located between the outer insulating layer (11) and the inner insulating layer (12); the pulse sensor (24) is used to monitor the pulse of the user, and the body temperature sensor (25) is used to monitor the body temperature of the user.
8. The intelligent insulating glove according to claim 3, characterized in that: The glove body (1) is also provided with a display (4), the display (4) is electrically connected to the control module, the display (4) is arranged on the back of the wrist (13) and is used to display the data information sensed by the sensing module (2).
9. The intelligent insulating glove according to claim 8, characterized in that: The glove body (1) is also provided with a power supply module (5), which is electrically connected to the control module and is used to provide power to each module and the display (4).
10. The intelligent insulating glove according to claim 1, characterized in that: The glove body (1) is also provided with a switch (15), and the switch (15) is connected to the control module and is used to start or shut down the control module.