CN217561848U - Augmented reality glasses and safety helmet - Google Patents

Augmented reality glasses and safety helmet Download PDF

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Publication number
CN217561848U
CN217561848U CN202221702371.0U CN202221702371U CN217561848U CN 217561848 U CN217561848 U CN 217561848U CN 202221702371 U CN202221702371 U CN 202221702371U CN 217561848 U CN217561848 U CN 217561848U
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China
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baffle
augmented reality
safety helmet
reality glasses
glasses
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CN202221702371.0U
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Chinese (zh)
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邱宇嘉
王积元
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Beijing Jiashi Weitu Technology Co ltd
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Beijing Jiashi Weitu Technology Co ltd
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Abstract

An augmented reality glasses and safety helmet, the augmented reality glasses include: the head ring is used for being sleeved on the outer surface of the body of the safety helmet; a snap assembly is connected to the headband, the snap assembly comprising: reset piece, elastic component, baffle and clamp plate, wherein: the reset piece can be used for connecting the baffle plate to the head ring in a turnover manner, and the reset piece is used for driving the baffle plate to be restored to a default state from a turnover state; the baffle is provided with an accommodating cavity which is used for accommodating the elastic piece; the pressing plate is connected with the elastic piece, and when the baffle is in the default state, the pressing plate is used for abutting against the brim of the safety helmet. Above-mentioned scheme can improve AR glasses and to the helmet compatibility and improve the dismantlement convenience of AR glasses.

Description

Augmented reality glasses and safety helmet
Technical Field
The embodiment of the utility model provides a relate to wearable thing networking devices, especially relate to an augmented reality glasses and safety helmet.
Background
As a type of intelligent wearable internet of things equipment, the intelligent safety helmet is already applied to the engineering industry. Among them, a novel safety helmet with additional Augmented Reality (AR) glasses to make it intelligent has been widely used in industries such as architecture, traffic, energy and education training. The safety helmet with the additional AR glasses is worn by field workers, and on the basis that safety protection is guaranteed, actual functions of scene real-time transmission, information data visualization, remote operation guidance and the like can be achieved through the AR glasses.
The existing AR glasses are additionally arranged on a safety helmet, and the safety helmet with a specific model or specification is generally required to be appointed. Therefore, the phenomenon that compatibility of AR glasses to safety helmets with different appearances is poor is caused, and the using requirements of specific scenes and special industries cannot be met.
In addition, the existing products also have difficulty in the disassembly process. When taking off AR glasses from the safety helmet, generally need use the instrument to pry AR glasses from the safety helmet, bring inconvenience for the use scene that needs frequent dismouting.
SUMMERY OF THE UTILITY MODEL
The utility model provides a technical problem be current AR glasses to the compatible relatively poor and inconvenient problem of dismantlement of safety helmet.
In order to solve the above technical problem, an embodiment of the utility model provides an augmented reality glasses, include: the head ring is used for being sleeved on the outer surface of the body of the safety helmet; a snap assembly connected to the headband, the snap assembly comprising: reset piece, elastic component, baffle and clamp plate, wherein: the reset piece is used for connecting the baffle plate to the head ring in a turnover mode and driving the baffle plate to be restored to a default state from a turnover state; the baffle is provided with an accommodating cavity which is used for accommodating the elastic piece; the pressing plate is connected with the elastic piece, and when the baffle is in the default state, the pressing plate is used for abutting against the brim of the safety helmet.
Optionally, the buckle assembly further comprises a rotating shaft, and the rotating shaft penetrates through the baffle; the reset piece is a torsion spring and is sleeved at two ends of the baffle; and the head ring is provided with a shaft hole matched with the rotating shaft.
Optionally, a mounting opening is formed in the head ring, and the mounting opening is used for assembling the baffle.
Optionally, the shaft hole is disposed in the mounting hole.
Optionally, the reset piece is a reset hinge.
Optionally, augmented reality glasses still include the retaining member, the retaining member pass the elastic component and with the baffle is connected, is used for adjusting the compression degree of elastic component, in order to adjust the clamp plate is right the degree of supporting of the brim of a hat of safety helmet.
Optionally, the pressing plate is provided with an avoiding opening, and the avoiding opening is used for penetrating through the elastic piece and the locking piece.
Optionally, the elastic member is a spring.
Optionally, the number of the buckle assemblies is two, and the buckle assemblies are symmetrically arranged relative to the head ring.
The embodiment of the utility model provides a safety helmet is still provided, including body and any kind of above-mentioned augmented reality glasses.
Compared with the prior art, the utility model discloses technical scheme has following beneficial effect:
the embodiment of the utility model provides a
Augmented reality glasses include be used for the headgear of cover in the surface of the body of safety helmet and connect in the buckle subassembly of headgear. The buckle assembly may include a reset member, an elastic member, a baffle plate, and a pressure plate. The baffle plate is provided with an accommodating cavity for accommodating the elastic piece. The reset piece can be used for connecting the baffle plate to the head ring in a turnover mode, and the reset piece is used for driving the baffle plate to be restored to a default state from a turnover state. The pressing plate is connected with the elastic piece, and when the baffle is in the default state, the pressing plate abuts against the brim of the safety helmet. Because the baffle can switch between the upset state and the reset state, be convenient for install AR glasses in the body of safety helmet when the baffle is in the upset state, the baffle is in when acquiescence state, the clamp plate supports and holds the brim of a hat of safety helmet realizes fixing of AR glasses and the body of safety helmet. Thus, the convenience of disassembly and assembly of the AR glasses can be improved. The baffle is driven by the reset piece to recover to a default state from a turnover state, and the pressing plate is abutted against the brim of the safety helmet and matched with the elastic piece, so that the AR glasses and the body of the safety helmet can be compatible with the bodies of the safety helmets of different specifications or models while being fixed. Therefore, the embodiment of the utility model provides a AR glasses can improve the convenience compatible and the dismantlement of the body of safety helmet.
Further, augmented reality glasses still include the retaining member. The locking piece that sets up can adjust the compression degree of elastic component, and through the compression degree of adjustment elastic component, can adjust the clamp plate to the degree of holding of the brim of a hat of safety helmet, and then improve the fastness of being connected of augmented reality glasses and safety helmet.
Drawings
Fig. 1 is a schematic structural diagram of an augmented reality glasses in an embodiment of the present invention in a default state;
fig. 2 is a schematic structural diagram of an augmented reality glasses in an inverted state according to an embodiment of the present invention;
fig. 3 is a schematic view of a safety helmet in an embodiment of the present invention, at a viewing angle;
FIG. 4 is an enlarged view of a portion of FIG. 3 at A;
fig. 5 is a schematic structural diagram of a safety helmet in another viewing angle according to an embodiment of the present invention;
FIG. 6 is a partial enlarged view at B in FIG. 5;
FIG. 7 is a front view of FIG. 3;
fig. 8 is a cross-sectional view of a snap assembly in an embodiment of the invention;
fig. 9 is a schematic view of a connection between a snap assembly and a head ring according to an embodiment of the present invention;
fig. 10 is an exploded view of fig. 9.
Description of reference numerals:
1-a safety helmet; 10-augmented reality glasses; 11-a head ring; 111-shaft hole; 112-a mounting port; 113-a first housing; 114-a first inner shell; 12-a snap-fit assembly; 121-a reset member; 122-a resilient member; 123-baffle plate; 1231-an accommodating chamber; 1232-a rotating shaft; 1233-a second housing; 1234 — a second inner shell; 1235-a shaft receptacle; 1236 — moving window; 124-pressing plate; 1241-dodge mouth; 125-a locking member; 1251-penetration; 12511-first end; 12512-a second end; 1252-a holding portion; 1253-an operation part; 20-the body of the helmet; 30-brim of a hat.
Detailed Description
As described above, the existing AR glasses are generally required to be provided with a safety helmet, and the model or specification of the safety helmet is specified. Therefore, the phenomenon that compatibility of AR glasses to safety helmets with different appearances is poor is caused, and the using requirements of specific scenes and special industries cannot be met.
Existing AR glasses also present difficulties in the disassembly process. When taking off AR glasses from the safety helmet, need use specific instrument to pry AR glasses from the safety helmet usually, in some scenes, when needing often dismouting AR glasses, the dismouting is inconvenient.
In order to solve the above problem, in the embodiment of the present invention, the augmented reality glasses include a head ring for being sleeved on the outer surface of the body of the safety helmet and a buckle assembly connected to the head ring. The buckle assembly can include the piece that resets, elastic component, baffle and clamp plate. The baffle plate is provided with an accommodating cavity for accommodating the elastic piece. The reset piece can be used for connecting the baffle to the head ring in a turnover mode, and the reset piece is used for driving the baffle to be restored to a default state from a turnover state. The pressing plate is connected with the elastic piece, and when the baffle is in the default state, the pressing plate abuts against the brim of the safety helmet. Because the baffle can switch between upset state and reset state, be convenient for when the baffle is in the upset state install AR glasses in the body of safety helmet, when the baffle is in when acquiescence state, the clamp plate supports holds the brim of a hat of safety helmet, realizes the fixed of AR glasses and the body of safety helmet. Thus, the convenience of disassembly and assembly of the AR glasses can be improved. Drive the baffle through the piece that resets and resume to acquiescence state from the upset state to through the clamp plate and supporting of the brim of a hat of safety helmet, the clamp plate is with the cooperation of elastic component, when realizing the fixed of AR glasses and the body of safety helmet, the body of the safety helmet of different specifications or model can be compatible. Therefore, the embodiment of the utility model provides an AR glasses can improve the convenience compatible and the dismantlement of the body to the safety helmet.
In order to make the above objects, features and advantages of the present invention more comprehensible, embodiments of the present invention are described in detail below with reference to the accompanying drawings.
Fig. 1 is a schematic structural diagram of an augmented reality glasses in an embodiment of the present invention in a default state; fig. 2 is a schematic structural diagram of an augmented reality glasses in an embodiment of the present invention in a turned state; fig. 3 is a schematic view of a safety helmet in an embodiment of the present invention, at a viewing angle; FIG. 4 is an enlarged view of a portion A of FIG. 3; fig. 5 is a schematic structural diagram of a safety helmet in another viewing angle according to an embodiment of the present invention; FIG. 6 is a partial enlarged view at B in FIG. 5; fig. 7 is a front view of fig. 3. The following describes a specific structure of the augmented reality glasses with reference to fig. 1 to 7.
In a particular embodiment, the augmented reality glasses 10 can include a headband 11 and a clasp assembly 12. The head ring 11 is used to be sleeved on the outer surface of the body 20 of the safety helmet 1.
A snap assembly 12 is connected to the head ring 11. The snap assembly 12 may include: reset piece 121, elastic piece 122, baffle 123 and clamp plate 124.
The reset member 121 connects the baffle 123 to the head ring 11 in a reversible manner. The reset member 121 is configured to drive the baffle 123 to return to the default state from the flipped state.
The baffle 123 has an accommodating cavity 1231, and the accommodating cavity 1231 is used for accommodating the elastic member 122. The pressing plate 124 is connected to the elastic member 122. When the baffle 123 is in the default state, the pressing plate 124 is used for abutting against the brim 30 of the helmet 1, so as to fix the AR glasses 10 with the body 20 of the helmet 1.
Elastic component 122 can take place deformation when receiving external force, and clamp plate 124 is connected in elastic component 122, can adjust the relative position of clamp plate 124 and head ring 11 through elastic component 122, and then when the different safety helmet 1's of adaptation body 20, can improve the fastness that AR glasses and safety helmet 1's body 20 are connected.
In some implementations, the elastic member 122 may be a spring, an elastic rubber, or the like having elasticity.
From the above, the augmented reality glasses comprise a head ring for being sleeved on the outer surface of the body of the safety helmet and a buckle assembly connected to the head ring. The buckle assembly may include a reset member, an elastic member, a baffle plate, and a pressure plate. The baffle plate is provided with an accommodating cavity for accommodating the elastic piece. The reset piece can be used for connecting the baffle to the head ring in a turnover mode, and the reset piece is used for driving the baffle to be restored to a default state from a turnover state. The pressing plate is connected with the elastic piece, and when the baffle is in the default state, the pressing plate abuts against the brim of the safety helmet. Because the baffle can switch between the upset state and the reset state, be convenient for install AR glasses in the body of safety helmet when the baffle is in the upset state, the baffle is in when acquiescence state, the clamp plate supports and holds the brim of a hat of safety helmet realizes fixing of AR glasses and the body of safety helmet. Thus, the convenience of disassembly and assembly of the AR glasses can be improved. The baffle is driven by the reset piece to recover to a default state from a turnover state, and the pressing plate is abutted against the brim of the safety helmet and matched with the elastic piece, so that the AR glasses and the body of the safety helmet can be compatible with the bodies of the safety helmets of different specifications or models while being fixed. Therefore, the embodiment of the utility model provides a AR glasses can improve the convenience compatible and the dismantlement of the body of safety helmet.
In some non-limiting embodiments, the reset member 121 is a torsion spring. The baffle 123 has a rotation shaft 1232 at both ends. The torsion spring is sleeved on the outer side of the rotating shaft 1232. The head ring 11 is provided with a shaft hole 111 adapted to the rotating shaft 1232.
Fig. 8 is a cross-sectional view of a buckle assembly in an embodiment of the present invention, fig. 9 is a schematic view of a connection between the buckle assembly and a head ring in an embodiment of the present invention, and fig. 10 is an exploded view of fig. 9. With reference to fig. 8 to 10, in other non-limiting embodiments, the buckle assembly 12 further includes a rotating shaft 1232, and the rotating shaft 1232 passes through the baffle 123. The reset member 121 is a torsion spring, and is sleeved at two ends of the baffle 123. The head ring 11 is provided with a shaft hole 111 adapted to the rotating shaft 1232.
Further, the baffle 123 is provided with a rotating shaft accommodating portion 1235, and the rotating shaft accommodating portion 1235 is used for accommodating the rotating shaft 1232. The shaft 1232 passes through the shaft receptacle 1235.
The shutter 123 is in a default state and the torsion spring is in a free state. When the baffle 123 is in the turning state, the torsion spring is in a deformed state. When the AR glasses 10 are attached to the body 20 of the helmet 1, the baffle 123 is turned outward. The AR glasses are sleeved on the body 20 of the safety helmet 1 from the top of the safety helmet 1, after the AR glasses are installed in place, the baffle 123 is loosened, and the torsion spring drives the baffle 123 to recover to a default state from a turning state. At this time, the pressing plate 124 abuts against the visor 30 of the helmet 1.
It should be noted that in the embodiment of the present invention, the outer or outer portion is referred to as an outer surface of the headband 11, and the inner or inner portion is referred to as an inner surface of the headband 11.
In a specific implementation, the head ring 11 is provided with a mounting opening 112. The mounting opening 112 is used for assembling the baffle 123.
The shaft hole 111 is disposed in the mounting hole 112.
In some embodiments, the outer surface of the baffle 123 is flush with the outer surface of the headband 11 after the baffle 123 is assembled to the mounting opening 112, which may make the overall structure of the AR glasses neat.
In other non-limiting implementations, the reset member 121 can be a reset hinge. The reset hinge is connected to the shutter 123 and the head ring 11 to automatically restore the shutter 123 in the flipped state to a default state.
In some embodiments, the head ring 11 may include a first outer shell 113 and a first inner shell 114, and the first outer shell 113 and the first inner shell 114 may be engaged, so as to improve the installation convenience of the snap assembly 12.
Baffle 123 may include a second outer housing 1233 and a second inner housing 1234. The second outer housing 1233 and the second inner housing 1234 may be fastened together by a snap fit, a fastener such as a screw, or a compression fit of the head ring 11. The baffle 123 including the second outer housing 1233 and the second inner housing 1234 may improve the convenience of assembling the reset element 121, the elastic element 122, the pressure plate 124, and the like.
Further, a movable window 1236 is disposed on the second inner housing 1234, and the movable window 1236 is used to provide a moving space for the pressure plate 124.
In particular implementations, the AR glasses may also include a retaining member 125. The locker 125 passes through the elastic member 122 and is coupled to the blocking plate 123. The locking member 125 is used for adjusting the degree of compression of the elastic member 122 to adjust the degree of abutment of the pressing plate 124 against the visor 30 of the helmet 1.
Specifically, since the pressing plate 124 is connected to the elastic member 122, the elastic member 122 is compressed to a different degree, and the relative position of the pressing plate 124 to the head ring 11 is different. Because the size or the model of the body 20 of different safety helmets 1 are different, after the body 20 of the safety helmet 1 is sleeved with the AR glasses, the relative distance between the head ring 11 and the brim 30 of the safety helmet 1 is different, and the compression degree of the elastic part 122 is adjusted through the locking part 125, the relative distance between the pressing plate 124 and the head ring 11 can be adjusted, so that the pressing plate 124 can be in a proper position and tightly press the brim 30 of the safety helmet 1.
With reference to fig. 8-10, in some embodiments, retaining member 125 can include a through portion 1251 and an abutment 1252. The abutting portion 1252 is provided to the penetrating portion 1251. For example, the holding portion 1252 is integrally formed with the through portion 1251.
The outer diameter of the holding portion 1252 is larger than the inner diameter of the elastic member 122, so that the holding portion 1252 can push the elastic member 122 to move in the accommodating cavity 1231. The outer diameter of the penetrating portion 1251 is smaller than the inner diameter of the elastic member 122. After the position of the penetrating portion 1251 relative to the baffle 123 is fixed, the abutting portion 1252 abuts against the elastic member 122, so that the position stability of the elastic member 122 can be maintained, and the pressure plate 124 can be maintained in a relatively stable position.
Through portion 1251 may include a first end 12511 and a second end 12512. Retaining member 125 can be attached and secured to the stop plate 123 in a variety of ways.
For example, first end 12511 is provided with external threads, the top of bezel 123 near the area of first end 12511 is provided with threaded holes, and the external threads of first end 12511 mate with and threadably connect to the threaded holes. The degree of compression of the elastic member 122 is adjusted by adjusting the depth of the connection of the first end 12511 with the threaded hole, and after the adjustment of the degree of compression is completed, the deformation of the elastic member 122 is maintained, thereby maintaining the stability of the position of the pressure plate 124.
For another example, second end 12512 is provided with external threads, the bottom of baffle 123 near the area of second end 12512 is provided with threaded holes, and the external threads of second end 12512 are adapted to and threadably engage the threaded holes. The degree of compression of the elastic member 122 is adjusted by adjusting the connection position of the second end 12512 and the threaded hole, and after the adjustment of the degree of compression is completed, the deformation of the elastic member 122 is maintained, thereby maintaining the stability of the position of the pressure plate 124.
Retaining member 125 further includes an operating portion 1253. The operation portion 1253 is connected to the holding portion 1252. The operation portion 1253 is provided to provide an operation area for the user to operate the locker 125 when adjusting the position of the pressing plate 124, so that the convenience of operation of the locker 125 can be improved. The through portion 1251, the holding portion 1252, and the operating portion 1253 may be integrally formed.
In an implementation, the pressure plate 124 has an escape orifice 1241. The escape opening 1241 is used to pass through the locking member 125. Specifically, the escape opening 1241 is adapted to pass through the through portion 1251 of the locking member 125.
In specific implementation, the number of the buckle assemblies 12 is two, and the buckle assemblies are symmetrically arranged relative to the head ring 11, so as to improve the firmness of connection between the AR glasses and the body 20.
The embodiment of the utility model provides a safety helmet is still provided. The safety helmet 1 includes a body 20 and augmented reality glasses 10. The augmented reality glasses may employ the augmented reality glasses 10 provided in any of the above embodiments. The detailed structure of the augmented reality glasses 10 can refer to the description in the above embodiments, and the detailed description is omitted here.
Although the present invention is disclosed above, the present invention is not limited thereto. Various changes and modifications may be effected therein by one of ordinary skill in the pertinent art without departing from the scope or spirit of the present invention, and the scope of the present invention is defined by the appended claims.

Claims (10)

1. Augmented reality glasses, comprising:
the head ring is sleeved on the outer surface of the body of the safety helmet;
a snap assembly connected to the head ring, the snap assembly comprising: reset piece, elastic component, baffle and clamp plate, wherein:
the reset piece is used for connecting the baffle plate to the head ring in a turnover manner and driving the baffle plate to be restored to a default state from a turnover state;
the baffle is provided with an accommodating cavity which is used for accommodating the elastic piece;
the pressing plate is connected with the elastic piece, and when the baffle is in the default state, the pressing plate is used for abutting against the brim of the safety helmet.
2. Augmented reality glasses according to claim 1,
the buckle assembly further comprises a rotating shaft, and the rotating shaft penetrates through the baffle;
the reset piece is a torsion spring and is sleeved at two ends of the baffle;
and the head ring is provided with a shaft hole matched with the rotating shaft.
3. Augmented reality glasses according to claim 2 wherein the headband is provided with mounting openings for fitting the baffles.
4. The augmented reality eyeglasses of claim 3, wherein said shaft holes are disposed within said mounting apertures.
5. Augmented reality glasses according to claim 2, wherein the reset element is a reset hinge.
6. The augmented reality eyeglasses of claim 1 further comprising a retaining member extending through the elastic member and connected to the baffle for adjusting the compression of the elastic member to adjust the degree of the pressure plate against the visor of the safety helmet.
7. The augmented reality glasses of claim 6 wherein the pressure plate has an escape opening for passing through the elastic member and the locking member.
8. The augmented reality glasses of claim 1 wherein the resilient member is a spring.
9. Augmented reality glasses according to claim 1 wherein the number of snap-on components is two, symmetrically arranged with respect to the headband.
10. A safety helmet comprising a body and augmented reality glasses according to any one of claims 1 to 9.
CN202221702371.0U 2022-07-04 2022-07-04 Augmented reality glasses and safety helmet Active CN217561848U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221702371.0U CN217561848U (en) 2022-07-04 2022-07-04 Augmented reality glasses and safety helmet

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221702371.0U CN217561848U (en) 2022-07-04 2022-07-04 Augmented reality glasses and safety helmet

Publications (1)

Publication Number Publication Date
CN217561848U true CN217561848U (en) 2022-10-11

Family

ID=83503165

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221702371.0U Active CN217561848U (en) 2022-07-04 2022-07-04 Augmented reality glasses and safety helmet

Country Status (1)

Country Link
CN (1) CN217561848U (en)

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