CN217065525U - Refrigerant formula helmet inside lining and refrigerant formula helmet thereof - Google Patents
Refrigerant formula helmet inside lining and refrigerant formula helmet thereof Download PDFInfo
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- CN217065525U CN217065525U CN202220911874.2U CN202220911874U CN217065525U CN 217065525 U CN217065525 U CN 217065525U CN 202220911874 U CN202220911874 U CN 202220911874U CN 217065525 U CN217065525 U CN 217065525U
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Abstract
The utility model discloses a coolant type helmet lining and a coolant type helmet thereof, wherein the coolant type helmet lining comprises a lining framework and a flexible lining body, and a plurality of ventilation channels are arranged on the lining framework; the lining framework comprises a bottom framework, a top framework and a wing-shaped radial framework, and a circulating air port is formed in the wing-shaped radial framework; a refrigerant circulating mechanism is arranged on the lining framework; and the lining framework is also provided with a refrigerant air inlet valve and a drain valve. The helmet lining of the utility model can be used for reforming the existing helmet without cooling and heating functions, and the flexible lining body arranged inside greatly improves the impact force buffering effect compared with the traditional foam sponge structure; in addition, the helmet liner can be externally provided with a power supply and can be repeatedly charged for use; because the flexible inner lining body of the helmet lining is made of silica gel or elastic fiber grease, the friction area and the friction force inside the helmet lining can be improved, and the shaking of the helmet is reduced.
Description
Technical Field
The utility model relates to a personal protection apparatus technical field, concretely relates to refrigerant formula helmet inside lining and refrigerant formula helmet thereof.
Background
Helmets are a common personal protective device and vary widely in purpose and material depending on the needs of the user. The application scenes of the helmet can be greatly different, but the helmet has the function of protecting the head, and the existing helmet is generally divided into an inner lining part and an outer shell part, wherein the outer shell part is generally made of hard materials, and the outer shell has good rigidity and functionality. When an accident happens, the helmet can play a role in buffering the impact force on the head of a human body, and the injury on the head of the human body is greatly reduced. The helmet mainly guarantees the intensity and the shape of the helmet through the rigidity of the outer shell, and can deviate splashes or elastic sheets to prevent the splashes or the elastic sheets from puncturing the helmet. Secondly the inside lining part that has of helmet is provided with softer materials such as knitting and sponge, and direct and human head contact also can play certain cushioning effect, and the built-in pad among the prior art can also increase the comfort when wearing.
The prior art helmet liners are mostly a composite of sponge and fabric, and some helmet liners may be further provided with a flat skeleton for fixing the composite of fabric and sponge. The lining in the prior art is often very stuffy after being worn, and the reason is that the air permeability of a complex of sponge and fabric is extremely poor, the scalp is closely contacted with the fabric complex after people wear the helmet, and sweat in the helmet cannot be easily discharged, so that sweat is gathered in the helmet and feels very stuffy.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a refrigerant formula helmet inside lining and refrigerant formula helmet thereof can suitably refrigerate to the helmet through filling into the refrigerant, reduces the sultry degree after wearing.
In order to achieve the above object, an embodiment of the present invention provides a cooling medium type helmet liner, which includes a liner framework and a flexible liner, wherein the liner framework is provided with a plurality of ventilation ducts, and the flexible liner is disposed inside the liner framework to form a sealing system inside the liner framework;
the lining framework comprises a bottom framework, a top framework and a wing-shaped radial framework connected between the bottom framework and the top framework, and a circulating air port is formed in the wing-shaped radial framework;
a refrigerant circulating mechanism is arranged on the lining framework and comprises a circulating fan, a main controller, a battery and a switch; the lining framework is provided with an installation slot position, and a main controller and a battery are arranged on the installation slot position; and the lining framework is also provided with a refrigerant air inlet valve and a drain valve.
The utility model discloses an among the optimization scheme, be provided with the axial skeleton between the wing radial skeleton, be provided with the circulation wind gap on the axial skeleton.
In the optimized proposal of the utility model, the circulating fan is arranged at the bottom of the lining framework, and the mounting groove position is arranged on the top framework; the main control unit is provided with a mainboard fan, the mainboard fan is fixed on the installation slot position, and the side wall of the installation slot position is provided with a vent.
The utility model discloses an among the optimization scheme, flexible interior lining body is made by silica gel or elastic fiber fat material.
The utility model discloses an among the optimization scheme, pre-buried in the flexible interior bushing body has heating circuit, and heating circuit is connected with the battery, main control unit control heating circuit's operating condition.
The utility model discloses a refrigerant type helmet based on the above refrigerant type helmet lining, which comprises an outer shell and a refrigerant type helmet lining, wherein the outer shell is coated outside the refrigerant type helmet lining, the refrigerant type helmet lining comprises a lining framework and a flexible inner lining body, the lining framework is provided with a plurality of ventilation channels, and the flexible inner lining body is arranged at the inner side of the lining framework to form a sealing system with the inner side of the lining framework;
the lining framework comprises a bottom framework, a top framework and a wing-shaped radial framework connected between the bottom framework and the top framework, and a circulating air port is formed in the wing-shaped radial framework;
a refrigerant circulating mechanism is arranged on the lining framework and comprises a circulating fan, a main controller, a battery and a switch; the lining framework is provided with an installation slot position, and a main controller and a battery are arranged on the installation slot position; the lining framework is also provided with a refrigerant air inlet valve and a drain valve;
an axial framework is arranged between the wing-shaped radial frameworks, and a circulating air port is arranged on the axial framework;
the circulating fan is arranged at the bottom of the lining framework, and the mounting groove position is arranged on the top framework; the main control unit is provided with a mainboard fan, the mainboard fan is fixed on the installation slot position, and the side wall of the installation slot position is provided with a vent.
To sum up, the utility model has the advantages of it is following:
1. the lining framework of the utility model consists of a plurality of frameworks to form a framework with a three-dimensional supporting effect, and the flexible lining body is embedded into the inner side of the lining framework to seal the inner side of the lining framework, so that the coolant can not directly contact with the human body after being worn, and the head of the human body can not be uncomfortable due to too low temperature when the head of the human body is cooled and sweaty; the circulating fan arranged on the lining framework can accelerate the circulation of the refrigerant in the lining of the helmet, so that the cold air is more uniform.
2. The utility model discloses a flexible interior lining body has good flexibility and intensity, can play certain supporting role, also can provide good comfort for the personnel of dressing.
3. The helmet lining of the utility model can be used for reforming the existing helmet without cooling and heating functions, and the flexible lining body arranged inside greatly improves the impact force buffering effect compared with the traditional foam sponge structure; in addition, the helmet liner can be externally provided with a power supply and can be repeatedly charged for use; because the flexible inner lining body of the helmet lining is made of silica gel or elastic fiber grease, the friction area and the friction force inside the helmet lining can be improved, and the shaking of the helmet is reduced.
Drawings
Fig. 1 is a schematic view of a cooling medium type helmet liner installed on an outer shell according to an embodiment of the present invention, in which a flexible inner liner portion is omitted;
fig. 2 is an exploded view of a cooling medium type helmet according to an embodiment of the present invention;
FIG. 3 is a schematic view of an embodiment of the present invention;
fig. 4 is a schematic diagram of a main controller and a motherboard fan according to an embodiment of the present invention.
Wherein, 1, lining the skeleton; 2. a flexible inner liner; 3. an air duct; 4. a bottom skeleton; 5. a top skeleton; 6. a wing-like radial skeleton; 7. a circulating tuyere; 8. a circulating fan; 9. a main controller; 10. a switch; 11. installing a slot position; 12. a refrigerant inlet valve; 13. a drain valve; 14. an axial skeleton; 15. a circulating tuyere; 16. a main board fan; 17. an outer housing.
Detailed Description
The utility model provides a refrigerant formula helmet inside lining, including inside lining skeleton 1 and flexible interior lining 2, be provided with a plurality of ventiduces 3 on the inside lining skeleton 1, inside lining skeleton 1 can adopt the light material that has certain rigidity intensity to make, can be convenient for assemble with the outermost shell body 17 of helmet, and flexible interior lining 2 can directly imbed inside lining skeleton 1 and fix, and flexible interior lining 2 sets up the inboard sealed system that forms of inside lining skeleton 1 in inside lining skeleton 1.
Inside lining skeleton 1 includes bottom skeleton 4, top skeleton 5 and connects the radial skeleton 6 of wing between bottom skeleton 4 and top skeleton 5, has seted up circulation wind gap 7 on the radial skeleton 6 of wing.
The shape of bottom skeleton 4 is the same with the outer fringe of helmet, can be convenient for like this assemble with the outer shell 17 part of helmet, installs wing radial skeleton 6 on the skeleton 4 of bottom, and wing radial skeleton 6 forms the main part with human contact of helmet inside lining, and the position that top skeleton 5 corresponds is people's top of the head.
The utility model discloses preferably arrange 8-14 wing radial skeleton 6 on bottom skeleton 4, and anterior less wing radial skeleton 6 that distributes, more wing radial skeleton 6 of rear portion distribution. The wing-shaped radial frameworks 6 are provided with circulating air ports, axial frameworks 14 are arranged between the wing-shaped radial frameworks 6, preferably 3-4 layers of axial frameworks 14 are arranged, and the circulating air ports 15 are also arranged on the axial frameworks 14. The circulating air port arranged on the framework can facilitate the circulating fan 8 to have a ventilation channel when blowing air, and can flow refrigerant gas to other positions of the helmet lining along the circulating air port.
A refrigerant circulating mechanism is arranged on the lining framework 1 and comprises a circulating fan 8, a main controller 9, a battery and a switch 10, and the switch 10 can be finally arranged on an outer shell 17 and is convenient to operate; the lining framework 1 is provided with an installation slot position 11, and a main controller 9 and a battery are arranged on the installation slot position 11; the lining framework 1 is also provided with a refrigerant inlet valve 12 and a drain valve 13.
For installation main control unit 9, can install the mainboard on top skeleton 5, electronic component such as main control unit 9 is unified to be installed on the mainboard, can provide abundant mounted position, signal interface etc. on the mainboard, can let the utility model discloses a convenient removable connection of electrical control part and circuit part.
The utility model discloses a helmet inside lining can not the exclusive use, need cooperate shell body 17 just can dress, will the utility model discloses a refrigerant formula helmet inside lining installs shell body 17 back additional, and shell body 17, inside lining skeleton 1 and flexible interior lining 2 constitute a three layer construction, and inside lining skeleton 1 is between outer shell body 17 and flexible interior lining 2. Because the outer shell 17 and the flexible inner lining body 2 are both solid structures, the inner lining framework 1 is coated inside the outer shell 17 and the flexible inner lining body 2, a sealing system is formed in the area where the inner lining framework 1 is located, when the refrigerant is filled, the refrigerant cannot escape, and because the refrigerant can be kept for a long time, the temperature can be reduced by filling the refrigerant, meanwhile, the condensed water is discharged through the drain valve 13, and after the condensed water is discharged, the refrigerant is filled into a new refrigerant through the refrigerant inlet valve 12.
In the preferred embodiment of the present invention, the flexible inner liner 2 is made of silicone or elastic fiber. A heating circuit is pre-embedded in the flexible inner lining body 2 and is connected with a battery, and a main controller 9 controls the working state of the heating circuit. Because the utility model discloses a structure can adopt 3D printing technique to accomplish, consequently in printing the in-process and printing heating circuit flexible interior lining 2 for can heat. The utility model discloses dispose heating circuit, it is warmer in order to be able to use when cold area.
The circulating fan 8 of the utility model can be arranged at the bottom of the lining framework 1, and the mounting groove position 11 is arranged on the top framework 5; the main controller 9 is provided with a main board fan 16, the main board fan is fixed on the installation slot 11, and the side wall of the installation slot 11 is provided with a vent, so that the heat dissipation of the main controller can be facilitated.
The utility model provides a refrigerant type helmet, which comprises an outer shell 17 and a refrigerant type helmet lining, wherein the outer shell 17 is coated outside the refrigerant type helmet lining, the refrigerant type helmet lining comprises a lining framework 1 and a flexible inner lining body 2, the lining framework 1 is provided with a plurality of ventilation channels, and the flexible inner lining body 2 is arranged at the inner side of the lining framework 1 to form a sealing system with the inner side of the lining framework 1;
the lining framework 1 comprises a bottom framework 4, a top framework 5 and a wing-shaped radial framework 6 connected between the bottom framework 4 and the top framework 5, and the wing-shaped radial framework 6 is provided with a circulating air port;
a refrigerant circulating mechanism is arranged on the lining framework 1 and comprises a circulating fan 8, a main controller 9, a battery and a switch 10; the lining framework 1 is provided with an installation slot position 11, and a main controller 9 and a battery are arranged on the installation slot position 11; the lining framework 1 is also provided with a refrigerant air inlet valve 12 and a drain valve 13;
an axial framework 14 is arranged between the wing-shaped radial frameworks 6, and a circulating air port is arranged on the axial framework 14;
the circulating fan 8 is arranged at the bottom of the lining framework 1, and the mounting groove 11 is arranged on the top framework 5; main controller 9 disposes the mainboard fan, and the mainboard fan is fixed on installation trench 11, and the lateral wall of installation trench 11 is provided with the vent.
While the present invention has been described in detail and with reference to the accompanying drawings, it is not to be considered as limited to the scope of the invention. Various modifications and changes may be made by those skilled in the art without inventive step within the scope of the appended claims.
Claims (7)
1. A refrigerant formula helmet inside lining which characterized in that: the flexible air duct type air conditioner comprises a lining framework and a flexible lining body, wherein a plurality of air ducts are arranged on the lining framework, and the flexible lining body is arranged on the inner side of the lining framework to form a sealing system on the inner side of the lining framework;
the lining framework comprises a bottom framework, a top framework and a wing-shaped radial framework connected between the bottom framework and the top framework, and the wing-shaped radial framework is provided with a circulating air port;
the lining framework is provided with a refrigerant circulating mechanism, and the refrigerant circulating mechanism comprises a circulating fan, a main controller, a battery and a switch; the lining framework is provided with an installation slot position, and a main controller and a battery are arranged on the installation slot position; and the lining framework is also provided with a refrigerant air inlet valve and a drain valve.
2. The coolant-type helmet liner of claim 1, wherein: an axial framework is arranged between the wing-shaped radial frameworks, and a circulating air port is arranged on the axial framework.
3. The coolant-type helmet liner of claim 1, wherein: the circulating fan is arranged at the bottom of the lining framework, and the mounting groove position is arranged on the top framework; the main control unit is provided with a mainboard fan, the mainboard fan is fixed on the installation slot position, and the side wall of the installation slot position is provided with a vent.
4. The coolant-type helmet liner of claim 1, wherein: the flexible inner lining body is made of silica gel or elastic fiber grease materials.
5. The coolant-type helmet liner of claim 1, wherein: a heating circuit is pre-buried in the flexible inner lining body and connected with the battery, and the main controller controls the working state of the heating circuit.
6. A refrigerant formula helmet which characterized in that: the cooling medium type helmet lining comprises an outer shell and the cooling medium type helmet lining as claimed in any one of claims 1 to 5, wherein the outer shell is coated outside the cooling medium type helmet lining.
7. A refrigerant formula helmet which characterized in that: the cooling medium type helmet lining comprises a lining framework and a flexible lining body, wherein a plurality of ventilation channels are arranged on the lining framework, and the flexible lining body is arranged on the inner side of the lining framework to form a sealing system on the inner side of the lining framework;
the lining framework comprises a bottom framework, a top framework and a wing-shaped radial framework connected between the bottom framework and the top framework, and the wing-shaped radial framework is provided with a circulating air port;
the lining framework is provided with a refrigerant circulating mechanism, and the refrigerant circulating mechanism comprises a circulating fan, a main controller, a battery and a switch; the lining framework is provided with an installation slot position, and a main controller and a battery are arranged on the installation slot position; the lining framework is also provided with a refrigerant air inlet valve and a drain valve;
an axial framework is arranged between the wing-shaped radial frameworks, and a circulating air port is arranged on the axial framework;
the circulating fan is arranged at the bottom of the lining framework, and the mounting groove position is arranged on the top framework; the main control unit is provided with a mainboard fan, the mainboard fan is fixed on the installation slot position, and the side wall of the installation slot position is provided with a vent.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202220911874.2U CN217065525U (en) | 2022-04-20 | 2022-04-20 | Refrigerant formula helmet inside lining and refrigerant formula helmet thereof |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202220911874.2U CN217065525U (en) | 2022-04-20 | 2022-04-20 | Refrigerant formula helmet inside lining and refrigerant formula helmet thereof |
Publications (1)
Publication Number | Publication Date |
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CN217065525U true CN217065525U (en) | 2022-07-29 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202220911874.2U Active CN217065525U (en) | 2022-04-20 | 2022-04-20 | Refrigerant formula helmet inside lining and refrigerant formula helmet thereof |
Country Status (1)
Country | Link |
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CN (1) | CN217065525U (en) |
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2022
- 2022-04-20 CN CN202220911874.2U patent/CN217065525U/en active Active
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