CN209732690U - Safety helmet with power transmission and transformation engineering personnel physical state monitoring device - Google Patents

Safety helmet with power transmission and transformation engineering personnel physical state monitoring device Download PDF

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Publication number
CN209732690U
CN209732690U CN201921288928.9U CN201921288928U CN209732690U CN 209732690 U CN209732690 U CN 209732690U CN 201921288928 U CN201921288928 U CN 201921288928U CN 209732690 U CN209732690 U CN 209732690U
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CN
China
Prior art keywords
safety helmet
headgear
sensor
body temperature
temperature sensor
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Expired - Fee Related
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CN201921288928.9U
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Chinese (zh)
Inventor
黄昊
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Individual
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Individual
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Priority to CN201921288928.9U priority Critical patent/CN209732690U/en
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Publication of CN209732690U publication Critical patent/CN209732690U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model relates to a safety helmet with transmission and transformation engineering personnel health monitoring devices, including the safety helmet body with install the monitoring devices on the safety helmet body, wherein, the safety helmet body includes shell and inner liner and sets up at the buffering elastomer between the two, is provided with tightening belt, its characterized in that below the inner liner: monitoring devices, including device main part and body temperature sensor, rhythm of the heart sensor, be provided with voice prompt module, MCU in the device main part, rechargeable battery, solar device, loRa communication module, GPS, baroceptor, environment temperature and humidity sensor. Adopt the utility model discloses a scheme can real-time supervision user's the condition and the circumstances of surrounding environment to can communicate and report to the police with remote control center.

Description

Safety helmet with power transmission and transformation engineering personnel physical state monitoring device
Technical Field
The utility model relates to an electric power system power transmission and transformation engineering field, concretely relates to safety helmet with power transmission and transformation engineering personnel health monitoring devices.
Background
in power transmission and transformation construction, the protection of the head is always very important, and the impact load acting on the top of the head and the side direction is one of important factors for human body injury. The most important way to protect the head is to wear the safety helmet at present. The protection principle of the existing common safety helmet is that the hard shell of the safety helmet bears external impact to prevent the hard shell from penetrating. A portion of the impact energy is then cushioned by a band-shaped cap liner attached to the housing and the remaining energy is transferred to the entire head. This energy is eventually absorbed by the scalp and cervical spine.
However, the existing safety helmet has single function, and cannot monitor the working state of constructors without corresponding technical means, so that the personnel configuration can be scientifically and effectively estimated accurately.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a solve the safety helmet of above-mentioned problem, particularly the utility model provides a safety helmet with transmission and transformation engineering personnel health state monitoring devices, including the safety helmet body with install the monitoring devices on the safety helmet body, wherein, the safety helmet body includes shell and inner liner and sets up at the buffering elastomer between the two, is provided with tightening belt, its characterized in that below the inner liner: monitoring devices, including device main part and body temperature sensor, rhythm of the heart sensor, be provided with voice prompt module, MCU in the device main part, rechargeable battery, solar device, wireless communication module, GPS, baroceptor, environment temperature and humidity sensor.
Further, it is characterized in that: the MCU is connected with other monitoring devices to realize the control of other devices.
Further, it is characterized in that: the device body is arranged on the top of the shell.
further, it is characterized in that: the solar device is arranged on the upper part of the device main body and is used for receiving sunlight; wherein, the environment temperature and humidity sensor is arranged at the exposed part of the top of the safety helmet to avoid the interference with the body temperature.
Further, it is characterized in that: the body temperature sensor and the heart rate sensor are arranged in the flexible inner lining layer inside the safety helmet, are positioned near the temple and are in close contact with the skin of the head through the tightening belt of the safety helmet.
further, it is characterized in that: a concave part is formed in the position of the inner lining layer, which corresponds to the position near the temple, and the body temperature sensor and the heart rate sensor are arranged on the surface of the concave part in a position-adjustable mode.
Further, it is characterized in that: the bottom surfaces of the body temperature sensor and the heart rate sensor and the surface of the concave part are of hook-and-loop fastener structures and can be mutually bonded.
Further, it is characterized in that: still include position control device, position control device includes the base, the guidance tape, fixed pin and fastener, wherein the base top has the recess and is used for placing body temperature sensor, be provided with horizontal through hole on the base body for the guidance tape runs through and presss from both sides tightly, wherein the guidance tape outward appearance is soft structure, horizontal through hole and guidance tape cross sectional shape suit, and the height of hole slightly is less than the thickness of guidance tape, wherein, the fixed pin includes a base part and the pin portion of setting on the base part, wherein, the base part is buried in the inside of inner liner, the pin portion is worn out the inner liner, but fastener threaded connection is at pin portion top.
Further, it is characterized in that: the guide belt comprises a hard inner layer and a soft outer layer which is wrapped on two sides of the hard inner layer.
the utility model has the advantages that:
By adopting the scheme of the utility model, the condition of the user and the condition of the surrounding environment can be monitored in real time, and the communication and the alarm can be carried out with a remote control center; moreover, the heart rate monitoring position and the body temperature monitoring position can be adjusted through the device, and then the heart rate and the body temperature of a user can be accurately measured.
Drawings
FIG. 1 is a transverse schematic view of a safety helmet;
FIG. 2 is a longitudinal schematic view of the helmet;
FIG. 3 is a schematic view of the monitoring device;
FIG. 4 is a schematic longitudinal view of the helmet of embodiment 2;
FIG. 5 is a partial schematic view of a helmet according to embodiment 2;
FIG. 6 is a cross-sectional view of FIG. 5A-A;
FIG. 7 is a schematic longitudinal view of the helmet of embodiment 3;
FIG. 8 is a partial schematic view of a safety helmet according to embodiment 3;
FIG. 9 is a schematic view of the body temperature sensor and base assembly;
FIG. 10 is a cross-sectional view of FIG. 8B-B;
Fig. 11 is a partial view of fig. 10.
Detailed Description
In order to better understand the present invention for those skilled in the art, the following detailed description of the present invention is provided with reference to the accompanying drawings and the implementation method.
Example 1:
Referring to fig. 1-3, the utility model discloses safety helmet with transmission and transformation engineering personnel health monitoring devices is shown, including safety helmet body 1 and install monitoring devices 2 on safety helmet body 1, wherein, safety helmet body 1 includes shell 11 and inner liner 12 and sets up at the buffering elastomer 13 between the two, is provided with tightening belt 14 below inner liner 12, and wherein, inner liner 12 sets up within shell 11 for with user's head contact.
the monitoring device 2 comprises a device main body, a body temperature sensor 20 and a heart rate sensor 21, wherein the device main body is arranged at the top of the shell 11, and a voice prompt module, a MCU, a rechargeable battery, a solar device, a wireless communication module, a GPS, an air pressure sensor and an environment temperature and humidity sensor are arranged in the device main body. Wherein: the MCU is connected with other monitoring devices to realize the control of other devices.
the GPS module is used for monitoring the working position and the altitude of constructors. The heart rate sensor is used for monitoring the heart rate of constructors. The air pressure sensor is used for monitoring the air pressure of the working environment of the constructors. The body temperature sensor is used for monitoring the body temperature of constructors. The environment temperature and humidity sensor is used for monitoring the environment temperature and humidity of construction. Rechargeable batteries are used to provide electrical power to the device. Solar devices are used to charge rechargeable batteries of the devices. The wireless communication module is used for transmitting remote low-power-consumption data and uploading various state parameters acquired by the device, and the wireless communication module can adopt modes such as WIFI and Lora. The voice prompt module is used for carrying out necessary health prompt on constructors according to the monitored indexes, such as rest, water supplement and the like.
Wherein the solar device is installed at an upper portion of the device body for receiving sunlight. Wherein, the environment temperature and humidity sensor is arranged at the exposed part of the top of the safety helmet to avoid the interference with the body temperature.
wherein, the body temperature sensor 20 and the heart rate sensor 21 are arranged in the flexible inner lining layer 12 inside the safety helmet and are positioned near the temple, and are closely contacted with the skin of the head through the tightening belt 14 of the safety helmet. And is connected to the MCU in the body of the device by a flexible wire 23 in the inner liner 12. It should be noted that, in the drawings, in order to show the structure as clearly as possible, the structure is not drawn in a strict sectional view, and the structure irrelevant to the important matter of the plan is omitted, and the drawings are schematic views, for example, the flexible electric wire 23 is shown.
Example 2:
referring to fig. 4-6, there is shown the structure of the helmet of embodiment 2, which is the same as the main structure of embodiment 1, except for the structure where the body temperature sensor 20 and the heart rate sensor 21 are installed. Since the temple positions of different persons are different, the body temperature sensor 20 and the heart rate sensor 21 are fixed in position in the structure of embodiment 1, which may cause inaccurate measurement positions and cause problems in measurement results. In embodiment 2, the positions of the body temperature sensor 20 and the heart rate sensor 21 are adjustable, and the user can adjust the positions according to the self condition.
In the figure, the body temperature sensor 20 is taken as an example, as shown in the figure, a concave part 121 is formed at a position corresponding to the temple of the lining layer 12, the body temperature sensor 20 is arranged on the surface of the concave part 121, wherein the bottom surface of the body temperature sensor 20 and the surface of the concave part 121 are of a hook and loop fastener structure and can be adhered to each other, one of the bottom surface and the surface is fine and soft round fiber hairs, and the other surface is hard barbed hairs with hooks.
In use, if the body temperature sensor 20 is positioned at a greater distance from the temple, it can be removed with gentle force and placed in the appropriate location.
Example 3:
Referring to fig. 7-11, there is shown a helmet structure of embodiment 3, in which the positions of the body temperature sensor 20 and the heart rate sensor 21 are adjustable, and the adjustment structure is different from that of embodiment 2.
As shown in fig. 2, the body temperature sensor 20 is disposed on the position adjusting device 3, and the position adjusting device 3 comprises a base 31, a guide belt 32, a fixing pin 33 and a fastener 34, wherein a groove is formed above the base 31 for placing the body temperature sensor 20, and a transverse through hole 311 is formed in the body of the base 31 for the guide belt 32 to pass through and clamp. The outer surface of the guide belt 32 is of a soft structure, the cross-section of the transverse through hole 311 is matched with the cross-section of the guide belt 32, and the height of the hole is slightly smaller than the thickness of the guide belt 32, so that the base 31 can be pulled to move on the guide belt 32 by force due to the slightly clamping structure, and the base can be stopped at the release position after being released.
The fixing pin 33 includes a base portion embedded in the lining layer 12 and a pin portion provided on the base portion and penetrating through the lining layer 12. The guide strip 32 is sleeved outside the pin portion, and preferably, the guide strip comprises a spacer 323 for filling a gap between the guide strip 32 and the surface of the lining layer 12, and the spacer 323 is a hard structure and can be integrally formed with the guide strip 32 or fixedly connected with the guide strip. The fastener 34 is threadably attached to the top end of the pin portion, and by adjusting the degree of tightening of the fastener 34, the guide band 32 can be rotated about the pin portion by an external force and can be stopped at that position after the external force is removed.
The guide belt 32 preferably includes a hard inner layer 321 and a soft outer layer 322 surrounding the hard inner layer 321 on both sides. The hard inner layer 321 can ensure the accurate adjustment of the position of the base 31, and the soft outer layer 322 can ensure the fixation with the base 31 by deformation when passing through the transverse through hole 311.
The foregoing is only a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, a plurality of modifications and decorations can be made without departing from the principle of the present invention, and these modifications and decorations should also be regarded as the protection scope of the present invention. Furthermore, although specific terms are employed herein, they are used in a generic and descriptive sense only and not for purposes of limitation.

Claims (9)

1. The utility model provides a safety helmet with transmission and transformation engineering personnel health monitoring devices, includes the safety helmet body and installs the monitoring devices on the safety helmet body, wherein, the safety helmet body includes shell and inner liner and sets up the buffering elastomer between the two, is provided with tightening belt, its characterized in that in the inner liner below: the monitoring device comprises a device main body, a body temperature sensor and a heart rate sensor, wherein an MCU, a voice prompt module, a rechargeable battery, a solar device, a wireless communication module, a GPS, an air pressure sensor and an environment temperature and humidity sensor are arranged in the device main body.
2. The headgear of claim 1, wherein: the MCU is connected with other monitoring devices to realize the control of other devices.
3. the headgear of claim 1, wherein: the device body is arranged on the top of the shell.
4. The headgear of claim 3, wherein: the solar device is arranged on the upper part of the device main body and is used for receiving sunlight; wherein, the environment temperature and humidity sensor is arranged at the exposed part of the top of the safety helmet to avoid the interference with the body temperature.
5. The headgear of claim 3, wherein: the body temperature sensor and the heart rate sensor are arranged in the flexible inner lining layer inside the safety helmet, are positioned near the temple and are in close contact with the skin of the head through the tightening belt of the safety helmet.
6. The headgear of claim 5, wherein: a concave part is formed in the position of the inner lining layer, which corresponds to the position near the temple, and the body temperature sensor and the heart rate sensor are arranged on the surface of the concave part in a position-adjustable mode.
7. The headgear of claim 6, wherein: the bottom surfaces of the body temperature sensor and the heart rate sensor and the surface of the concave part are of hook-and-loop fastener structures and can be mutually bonded.
8. The headgear of claim 6, wherein: still include position control device, position control device includes the base, the guidance tape, fixed pin and fastener, wherein the base top has the recess and is used for placing body temperature sensor, be provided with horizontal through hole on the base body for the guidance tape runs through and presss from both sides tightly, wherein the guidance tape outward appearance is soft structure, horizontal through hole and guidance tape cross sectional shape suit, and the height of hole slightly is less than the thickness of guidance tape, wherein, the fixed pin includes a base part and the pin portion of setting on the base part, wherein, the base part is buried in the inside of inner liner, the pin portion is worn out the inner liner, but fastener threaded connection is at pin portion top.
9. The headgear of claim 8, wherein: the guide belt comprises a hard inner layer and a soft outer layer which is wrapped on two sides of the hard inner layer.
CN201921288928.9U 2019-08-09 2019-08-09 Safety helmet with power transmission and transformation engineering personnel physical state monitoring device Expired - Fee Related CN209732690U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921288928.9U CN209732690U (en) 2019-08-09 2019-08-09 Safety helmet with power transmission and transformation engineering personnel physical state monitoring device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921288928.9U CN209732690U (en) 2019-08-09 2019-08-09 Safety helmet with power transmission and transformation engineering personnel physical state monitoring device

Publications (1)

Publication Number Publication Date
CN209732690U true CN209732690U (en) 2019-12-06

Family

ID=68724254

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201921288928.9U Expired - Fee Related CN209732690U (en) 2019-08-09 2019-08-09 Safety helmet with power transmission and transformation engineering personnel physical state monitoring device

Country Status (1)

Country Link
CN (1) CN209732690U (en)

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CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20191206