CN205982829U - Virtual reality glasses of scalable bandeau - Google Patents

Virtual reality glasses of scalable bandeau Download PDF

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Publication number
CN205982829U
CN205982829U CN201620823944.3U CN201620823944U CN205982829U CN 205982829 U CN205982829 U CN 205982829U CN 201620823944 U CN201620823944 U CN 201620823944U CN 205982829 U CN205982829 U CN 205982829U
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CN
China
Prior art keywords
virtual reality
headband
reality glasses
shell
rotating disk
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn - After Issue
Application number
CN201620823944.3U
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Chinese (zh)
Inventor
孙书朝
张强
杨小凯
莫佳
邵帅
洪叶
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shanghai Le Wo Information Technology Co Ltd
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Shanghai Le Wo Information Technology Co Ltd
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Priority to CN201620823944.3U priority Critical patent/CN205982829U/en
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Publication of CN205982829U publication Critical patent/CN205982829U/en
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Abstract

The utility model relates to a virtual reality glasses of scalable bandeau, include virtual reality glasses shell, bandeau and may the dismantlement mode set up the telescopic machanism on virtual reality glasses shell with fixed mode, telescopic machanism with the bandeau is connected to be used for tensilely and the shrink bandeau. After adopting above -mentioned structure, its beneficial effect is convenient to use, and the bandeau is connected with telescopic machanism, and telescopic machanism can provide roll energy in winding head area to realization bandeau that can be very convenient flexible.

Description

A kind of virtual reality glasses of scalable headband
Technical field
This utility model belongs to technical field of virtual reality, specifically, is virtual existing with regard to a kind of scalable headband Real glasses.
Background technology
Existing virtual reality device (including handset mounting and all-in-one) major part is all by virtual reality by elastic webbing Equipment is fixed on the head of user, and when user does not use virtual reality device, slack and undisciplined exposed sets elastic webbing in virtual reality Standby hull outside, causes the aging of headband and affects the attractive in appearance of product.
Existing virtual implementing helmet does not enable the folding completely of headband, and most of headband is flexible resilient band or is solid Property plastic band, user's head is fixed on by adjusting means, folding mode disunity and not enable headband real completely Fold.
China Patent No. CN204631357U discloses a kind of folding virtual reality glasses, described Collapsible eyeglasses two The adapter sleeve material on side is flexible plastic cement, and this kind of plastic parts is unbecoming after folding, and folding mode varies with each individual, and does not mark Standardization.Additionally, plastic parts occurs catabiosis after placing a period of time, and due to adapter sleeve after the folding of this kind of folding mode It is still located on housing exterior, after placing a period of time, the phenomenons such as dust stratification easily occur.
Therefore, it is necessary to providing, a kind of product design is attractive in appearance, virtual implementing helmet that is can folding headband completely.
Utility model content
The purpose of this utility model is to provide a kind of virtual implementing helmet of scalable headband, existing virtual existing to solve The profile of the real helmet is unsightly and headband can not fold and the problem of aging dust stratification completely.
For achieving the above object, this utility model employs the following technical solutions:
A kind of virtual reality glasses of scalable headband, including virtual reality glasses shell, headband and in a position-stable manner or Removably is arranged at the telescoping mechanism on virtual reality glasses shell, and described telescoping mechanism is connected with described headband, with In stretching and contraction headband.
According to this utility model, described telescoping mechanism includes rotating shaft, clockwork spring and the first rotating disk arranging from inside to outside, One end of described clockwork spring is fixed in rotating shaft, and the other end is fixed on the first rotating disk, and described first rotating disk winds State headband, drive headband to stretch by the rotation of the first rotating disk.
According to this utility model, described telescoping mechanism also includes telescoping mechanism shell and the lock located at telescoping mechanism inside the shell Locking mechanism, is sequentially provided with a button, a ratchet, a compression spring and a closing piece, described pressure from top to bottom in described lockable mechanism One end of contracting spring is fixed on closing piece, and the other end is fixed on telescoping mechanism shell, and described ratchet is provided with some card articles, institute The inwall stating lockable mechanism housing is provided with draw-in groove, and described card article and draw-in groove match;Described first rotating disk is located at described locking The lower section of mechanism, and described first rotating disk is provided with some projections.
According to this utility model, lock by the first disk shell and on the first disk shell for the described telescoping mechanism shell Locking mechanism housing forms, and is provided with described first rotating disk, described first disk shell and the first rotating disk in described first disk shell Between leave a storage carrying space, described first disk shell is provided with a band outlet.
According to this utility model, described virtual reality glasses also include an adjusting means, and described adjusting means passes through each head Band is connected on virtual reality glasses shell.
According to this utility model, described adjusting means is a plastic sheet or thread gluing etc..
According to this utility model, described card article is two or many.
According to this utility model, described telescoping mechanism includes micro machine, second turn being sheathed in the drive shaft of micro machine Disk, located at the sensor on micro machine or virtual reality glasses shell and on micro machine or virtual reality glasses shell Master control borad, described second rotating disk is wound with described headband, by micro machine drive the second rotating disk rotation drive headband Flexible.
According to this utility model, described telescoping mechanism can be two, three, four or multiple, on each telescoping mechanism It is wound with a headband.
According to this utility model, described headband is elastic head band.
The virtual reality glasses of scalable headband of the present utility model, its advantage is:Easy to use, headband can be complete Complete fold so that its good looking appearance and be not easy dust stratification, aging etc., be embodied in:
1st, wound on the first rotating disk of telescoping mechanism, the clockwork spring within the first rotating disk can provide winding headband to headband Energy, be easy to stretch and shrink headband;Or headband drives offer second wound on the second rotating disk of telescoping mechanism, micro machine Rotating disk stretching or the energy shrinking headband, are easy to stretch and shrink headband;
2nd, the setting of lockable mechanism, can very easily control rotation and the stopping of the first rotating disk by button, thus real Now headband is flexible;
3rd, it is applied widely, can adjust the length of headband according to the head size of different people.
Brief description
Fig. 1 is the structural representation of the virtual reality glasses of scalable headband of the present utility model.
Fig. 2 is the structural representation of telescopic mechanism of the present utility model and headband.
Fig. 3 is the structural representation of the second rotating disk of the present utility model and micro machine.
Fig. 4 is that micro machine of the present utility model controls the module map that the second rotating disk rotates.
Specific embodiment
Below in conjunction with accompanying drawing, the virtual reality glasses of scalable headband of the present utility model are described in further detail.
As depicted in figs. 1 and 2, be a kind of scalable headband of the present utility model virtual reality glasses, including virtual existing Real glasses shell 1, headband 2 and in a position-stable manner or removably is arranged at the telescoping mechanism on virtual reality glasses shell 1 3, described headband 2 is preferably elastic head band, and described telescoping mechanism 3 includes rotating shaft 31, clockwork spring 32 and arranging from inside to outside First rotating disk 33, one end of described clockwork spring 32 is fixed in rotating shaft 31, and the other end is fixed on the first rotating disk 33, is used for carrying The energy rotating for the first rotating disk 33, to drive the first rotating disk 33 to rotate, described first rotating disk 33 is wound with described headband 2, Headband 2 is driven to stretch by the rotation of the first rotating disk 33.
Described telescoping mechanism 3 also includes telescoping mechanism shell 34 and the lockable mechanism in telescoping mechanism shell 34 35, 342 groups of the lockable mechanism housing by the first disk shell 341 with the first disk shell 341 for the described telescoping mechanism shell 34 (described first disk shell 341 and described lockable mechanism housing 342 can be integral type structure to one-tenth;Described first disk shell 341 can also be fixed on described lockable mechanism housing 342 by fixed or detachable), described first disk shell 341 Inside be provided with described first rotating disk 33, described first rotating disk 33 is provided with some raised 331, described lockable mechanism housing 342 interior Portion is provided with described lockable mechanism 35, and described lockable mechanism 35 includes a chute 351, sets successively from top to bottom in described chute 351 There are a button 352, a ratchet 353, a compression spring 354 and a closing piece 355, one end of described compression spring 354 is fixed on lock On block 355, the other end is fixed on telescoping mechanism shell 34, and described ratchet 353 is provided with some card articles 356, and described card article is Two or many (depending on the diameter of ratchet), the inwall of described lockable mechanism housing 342 is provided with draw-in groove and (does not show on figure Show), described card article 356 is matched with draw-in groove.It should be understood that the upper end of described ratchet 353 is provided with some " v-notch ".
A storage carrying space 36, described first disk shell is left between described first disk shell 341 and the first rotating disk 33 341 are provided with a band outlet 37.
Described telescoping mechanism has two, three, four or multiple, arranges according to actual needs.Roll up on each telescoping mechanism 3 It is wound with a headband 2.
Described virtual reality glasses also include an adjusting means 4, and described adjusting means 4 is with each headband 2 by bonding, suture The modes such as linear slit conjunction are connected on virtual reality glasses shell 1.
Described adjusting means 4 can be a plastic sheet or thread gluing etc..
During use, press the button 352 on lockable mechanism, ratchet 353 rotates so that the card article 356 on ratchet 353 removes Draw-in groove, so that closing piece 355 moves upwards, is departed from the projection 331 on the first rotating disk 33;
Then, it is pulled outwardly adjusting means 4, headband 2 is gradually drawn out in the presence of external force, meanwhile, clockwork spring 32 form certain pretightning force;When headband 2 reaches required length, user can press down on the button on lockable mechanism 352, driving pawl 353 rotates so that the card article 356 on ratchet 353 is absorbed in draw-in groove in the presence of pressing force, and makes Closing piece 355 is moved downwardly to along chute 351 and is contacted with the projection 331 on described first rotating disk 33, so that the first rotating disk 33 stop operating, and meanwhile, compression spring 354 is compressed by closing piece 355;
When needing to shrink headband 2, press the button 352 on lockable mechanism, ratchet 353 rotates;Then, closing piece 355 exists Depart from the projection 331 on the first rotating disk 33 in the presence of the restoring force of compression spring 354;Then, headband 2 is in clockwork spring 32 Pretightning force in the presence of realize shrink.
The virtual reality glasses of the present embodiment, it is applied widely, easy to use.Headband 2 is wound on the of telescoping mechanism 3 On one rotating disk 33, the clockwork spring 32 within the first rotating disk 33 can provide the energy of winding headband 2, and passes through lockable mechanism On button 352 can very easily realize the flexible of headband 2.
The telescoping mechanism 3 of the present embodiment can also using micro machine control rotating disk rotate by the way of, as shown in Figure 3 and Figure 4, Described telescoping mechanism 3 include micro machine 5, the second rotating disk 6 being sheathed in the drive shaft 51 of micro machine 5, located at micro machine 5 or void Intend the sensor on Reality glasses shell 1 and the master control borad on micro machine 5 or virtual reality glasses shell 1, described the Described headband 2 is wound with two rotating disks 6, the flexible of headband 2 is driven by the rotation that micro machine 5 drives the second rotating disk 6.
During use, it is pulled outwardly adjusting means 4, sensor detects moment and increases, and the signal that moment is become larger passes Pass master control borad, by master control borad come the startup of control micro electric machine 5, thus controlling the second rotating disk 6 to rotate clockwise/counterclockwise (according to headband depending on the coiling direction on the second rotating disk), thus the headband stretching realized.
When headband 2 is set in human body head, the moment that sensor detects is constant, and by signal transmission to master control borad, Micro machine 5 stops.
When the length of headband 2 stretching is long or does not need using headband, due to not having external force, moment is gradually reduced, Moment that sensor detects reduces, and the signal transmission that moment is reduced is to master control borad, and micro machine 5 starts, and controls second turn Disk 6 is counterclockwise/and turn clockwise (according to headband depending on the coiling direction on the second rotating disk), thus the headband realized is received Contracting.
The above is only preferred implementation of the present utility model it is noted that common skill for the art For art personnel, on the premise of without departing from this utility model principle, some improvements and modifications can also be made.These improve and Retouching also should be regarded as protection domain of the present utility model.

Claims (10)

1. a kind of virtual reality glasses of scalable headband are it is characterised in that include virtual reality glasses shell, headband and with solid Determine the telescoping mechanism that mode or removably are arranged on virtual reality glasses shell, described telescoping mechanism is with described headband even Connect, for stretching and shrinking headband.
2. as claimed in claim 1 scalable headband virtual reality glasses it is characterised in that described telescoping mechanism include from Interior rotating shaft to outer setting, clockwork spring and the first rotating disk, one end of described clockwork spring is fixed in rotating shaft, and the other end is fixed On the first rotating disk, described first rotating disk is wound with described headband.
3. as claimed in claim 2 the virtual reality glasses of scalable headband it is characterised in that described telescoping mechanism also includes Telescoping mechanism shell and the lockable mechanism located at telescoping mechanism inside the shell, be sequentially provided with from top to bottom in described lockable mechanism one by Button, a ratchet, a compression spring and a closing piece, one end of described compression spring is fixed on closing piece, and the other end is fixed on flexible On mechanism shell, described ratchet is provided with some card articles, and the inwall of described lockable mechanism housing is provided with draw-in groove, described card article with Draw-in groove matches;Described first rotating disk is located at the lower section of described lockable mechanism, and described first rotating disk is provided with some projections.
4. virtual reality glasses as claimed in claim 3 are it is characterised in that described telescoping mechanism shell is by the first disk shell Lockable mechanism housing composition with the first disk shell, is provided with described first rotating disk, institute in described first disk shell State and between the first disk shell and the first rotating disk, leave a storage carrying space, described first disk shell is provided with a band outlet.
5. virtual reality glasses as claimed in claim 1 are it is characterised in that described virtual reality glasses also include a regulation dress Put, described adjusting means is connected on virtual reality glasses shell by each headband.
6. virtual reality glasses as claimed in claim 5 are it is characterised in that described adjusting means is a plastic sheet or thread gluing.
7. virtual reality glasses as claimed in claim 3 are it is characterised in that described card article is two or many.
8. as claimed in claim 1 scalable headband virtual reality glasses it is characterised in that described telescoping mechanism include micro- Motor, the second rotating disk being sheathed in the drive shaft of micro machine, the sensor on micro machine or virtual reality glasses shell, And the master control borad on micro machine or virtual reality glasses shell, described second rotating disk is wound with described headband.
9. the virtual reality glasses as described in any one of claim 1-8 it is characterised in that described telescoping mechanism be two, three Individual, four or multiple, each telescoping mechanism is wound with a headband.
10. the virtual reality glasses as described in any one of claim 1-8 are it is characterised in that described headband is elastic head band.
CN201620823944.3U 2016-08-01 2016-08-01 Virtual reality glasses of scalable bandeau Withdrawn - After Issue CN205982829U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201620823944.3U CN205982829U (en) 2016-08-01 2016-08-01 Virtual reality glasses of scalable bandeau

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201620823944.3U CN205982829U (en) 2016-08-01 2016-08-01 Virtual reality glasses of scalable bandeau

Publications (1)

Publication Number Publication Date
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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106054391A (en) * 2016-08-01 2016-10-26 上海乐蜗信息科技有限公司 Virtual reality glasses capable of extending and retracting headband
CN110554498A (en) * 2018-06-04 2019-12-10 宏达国际电子股份有限公司 head-mounted display device
US11150695B1 (en) 2018-09-11 2021-10-19 Apple Inc. Head mounted device
US11994907B1 (en) 2021-08-23 2024-05-28 Samuel G. Smith Head mounted device

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106054391A (en) * 2016-08-01 2016-10-26 上海乐蜗信息科技有限公司 Virtual reality glasses capable of extending and retracting headband
CN106054391B (en) * 2016-08-01 2019-02-15 上海乐蜗信息科技有限公司 A kind of virtual reality glasses of scalable headband
CN110554498A (en) * 2018-06-04 2019-12-10 宏达国际电子股份有限公司 head-mounted display device
CN110554498B (en) * 2018-06-04 2022-03-15 宏达国际电子股份有限公司 Head-mounted display device
US11150695B1 (en) 2018-09-11 2021-10-19 Apple Inc. Head mounted device
US11994907B1 (en) 2021-08-23 2024-05-28 Samuel G. Smith Head mounted device

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AV01 Patent right actively abandoned

Granted publication date: 20170222

Effective date of abandoning: 20190215

AV01 Patent right actively abandoned