WO2017120755A1 - 一种虚拟现实设备的移动终端夹持机构及虚拟现实设备 - Google Patents

一种虚拟现实设备的移动终端夹持机构及虚拟现实设备 Download PDF

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Publication number
WO2017120755A1
WO2017120755A1 PCT/CN2016/070648 CN2016070648W WO2017120755A1 WO 2017120755 A1 WO2017120755 A1 WO 2017120755A1 CN 2016070648 W CN2016070648 W CN 2016070648W WO 2017120755 A1 WO2017120755 A1 WO 2017120755A1
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WO
WIPO (PCT)
Prior art keywords
clamping block
virtual reality
reality device
mobile terminal
rack
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PCT/CN2016/070648
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English (en)
French (fr)
Inventor
李刚
张丰学
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深圳多哚新技术有限责任公司
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Priority to PCT/CN2016/070648 priority Critical patent/WO2017120755A1/zh
Publication of WO2017120755A1 publication Critical patent/WO2017120755A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/11Supports for sets, e.g. incorporating armrests
    • H04M1/12Adjustable supports, e.g. extensible
    • H04M1/13Adjustable supports, e.g. extensible pantographic

Definitions

  • the present invention relates to the field of virtual reality devices, and more particularly to a mobile terminal clamping mechanism and a virtual reality device of a virtual reality device.
  • VR device is a product that uses simulation technology and computer graphics, human-machine interface technology, multimedia technology, sensing technology, network technology and other technologies. It is a kind of computer and latest sensor technology. A new means of human-computer interaction.
  • the technical problem to be solved by the present invention is to provide a mobile terminal clamping mechanism of a virtual reality device, which has a simple structure, high stability, and a strong clamping mobile terminal.
  • the mobile terminal clamping mechanism of the virtual reality device comprises an upper clamping block, a lower clamping block, a gear, a connecting rod and a spring, wherein:
  • the upper clamping block is provided with a first rack, and the first rack meshes with the gear in a moving direction of the upper clamping block;
  • the connecting rod is provided with a second rack, and the second rack meshes with the gear in a moving direction of the lower clamping block;
  • the first rack and the second rack are opposite to the gear
  • the spring is sleeved on the connecting rod
  • the link is coupled to the lower clamping block.
  • the first rack of the upper clamping block is provided with a first sleeve, and the upper clamping block is sleeved on the first guiding strip of the front cover of the virtual reality device through the first sleeve.
  • the first rack of the upper clamping block is provided with a first slider, and the upper clamping block is restricted by the first slider to move on the first guiding rail of the front cover of the virtual reality device. .
  • the second rack of the connecting rod is provided with a second sleeve, and the connecting rod is sleeved on the second guiding strip of the front cover of the virtual reality device through the second sleeve.
  • the second rack of the connecting rod is provided with a second slider, and the connecting rod is moved by the second slider to the second guiding rail of the front cover of the virtual reality device.
  • the connecting rod is provided with a spring limiting post
  • the spring is sleeved on the limiting post, one end of the spring is in contact with the root of the limiting post, and the other end of the spring is in contact with the virtual Realistic device front cover on the bezel.
  • a back surface of the upper clamping block is provided with a first limiting slider, and the first limiting slider cooperates with a first limiting slot of the front cover of the virtual reality device.
  • a rear surface of the lower clamping block is provided with a second limiting slider, and the second limiting slider cooperates with a second limiting slot of the front cover of the virtual reality device.
  • the clamping portion of the upper clamping block is provided with a concave-convex pattern; and/or the clamping portion of the lower clamping block is provided with a concave-convex pattern.
  • the present invention also provides a virtual reality device comprising the mobile terminal clamping mechanism as described in any of the above.
  • the mobile terminal clamping mechanism of the virtual reality device comprises an upper clamping block, a lower clamping block, a gear, a connecting rod and a spring
  • the upper clamping block is provided with a first rack, the first rack and the first rack
  • the gear meshes in a moving direction of the upper clamping block
  • the connecting rod is provided with a second rack, and the second rack meshes with the gear in a moving direction of the lower clamping block
  • the first rack and the second rack mesh with the gear
  • the spring is sleeved on the connecting rod
  • the connecting rod is connected to the lower clamping block.
  • the upper clamping block and the lower clamping block are in a relaxed state, and the spring is not compressed.
  • the upper clamping block is pushed upward, the upper clamping block moves upward, and the first rack also moves upward to drive the gear to roll.
  • the gear Since the second rack and the gear are also meshed, the gear will also The second rack is driven to move downward, and the connecting rod is also moved downward, thereby driving the lower clamping block to move downward, and the upper clamping block and the lower clamping block are moved apart from each other; since the connecting rod is sleeved
  • the spring compresses the spring when the connecting rod moves downward, and the spring has a restoring force, so that the upper clamping block and the lower clamping block can clamp the mobile terminal.
  • the mobile terminal clamping mechanism of the virtual reality device has a simple structure, high stability, and the clamping mobile terminal is firm.
  • FIG. 1 is a schematic front structural view of a front cover of a virtual reality device according to Embodiment 1 of the present invention, and the figure includes a mobile terminal clamping mechanism.
  • FIG. 2 is a schematic view showing the back structure of a front cover of a virtual reality device according to Embodiment 1 of the present invention, which includes a mobile terminal clamping mechanism.
  • FIG. 3 is a schematic rear view of a mobile terminal clamping mechanism of a virtual reality device according to Embodiment 1 of the present invention, which includes a first guiding strip and a second guiding strip;
  • FIG. 4 is a schematic front structural view of a mobile terminal clamping mechanism of a virtual reality device according to Embodiment 1 of the present invention, which includes a first guiding strip and a second guiding strip.
  • FIG. 1 is a schematic front structural view of a front cover of a virtual reality device according to Embodiment 1 of the present invention, which includes a mobile terminal clamping mechanism.
  • 2 is a schematic view showing the back structure of a front cover of a virtual reality device according to Embodiment 1 of the present invention, which includes a mobile terminal clamping mechanism.
  • 3 is a schematic rear view of a mobile terminal clamping mechanism of a virtual reality device according to Embodiment 1 of the present invention, which includes a first guiding strip and a second guiding strip;
  • FIG. 4 is a mobile terminal of the virtual reality device in the first embodiment of the present invention.
  • a schematic view of the front structure of the clamping mechanism which includes a first guiding strip and a second guiding strip.
  • the mobile terminal clamping mechanism of the virtual reality device includes an upper clamping block 1, a lower clamping block 2, a gear 9, a connecting rod 10 and a spring 11, wherein: the upper clamping block 1 is provided with a first tooth The strip 3, the first rack 3 and the gear 9 mesh in the moving direction of the upper clamping block 1; the connecting rod 10 is provided with the second rack 4, and the second rack 4 and the gear 9 move in the moving direction of the lower clamping block 2 The upper rack 3 and the second rack 4 are opposite to the gear 9; the spring 11 is sleeved on the connecting rod 10; and the connecting rod 10 is connected to the lower clamping block 2.
  • the first rack 5 of the upper clamping block 1 is provided with a first sleeve 5, and the upper clamping block 1 is sleeved on the first guiding strip 7 of the virtual reality device front cover 101 through the first sleeve 5, first The sleeve 5 and the first guide strip 7 can be restrained, and the upper clamping block 1 can be slid more smoothly.
  • a second sleeve 6 is disposed on the second rack 4 of the connecting rod 10, and the connecting rod 10 is sleeved on the second guiding strip 8 of the virtual reality device front cover 101 through the second sleeve 6, the second sleeve 6 and The second guiding strip 8 can be limited, and the lower clamping block 2 can be slid more smoothly.
  • the connecting rod 10 is provided with a spring limiting post 12, the spring 11 is sleeved on the limiting post 12, one end of the spring 11 is in contact with the root of the limiting post 12, and the other end of the spring 11 is in contact with the baffle of the front cover 101 of the virtual reality device. 15 on.
  • a first limiting slider 13 is disposed on the back surface of the upper clamping block 1.
  • the first limiting slider 13 cooperates with the first limiting slot of the virtual reality device front cover 101 to limit the position and reduce the upper clamping. Hold the friction when the block 1 moves.
  • the second limiting slider 14 is disposed on the back surface of the lower clamping block 2, and the second limiting slider 14 cooperates with the second limiting slot of the virtual reality device front cover 101 to limit or lower the lower clamping. Hold the friction when the block 2 moves.
  • the clamping portion of the upper clamping block 1 is provided with a embossing pattern, which can increase friction and clamp the mobile terminal More secure, the mobile terminal cannot be dropped.
  • the nip portion of the lower clamping block 2 is provided with embossed lines, which can increase friction, and the clamping mobile terminal is more secure, and the mobile terminal cannot be dropped.
  • the working principle of the mobile terminal clamping mechanism of the virtual reality device provided by the present invention is as follows:
  • the upper and lower clamps are in a relaxed state and the spring is not compressed.
  • the upper clamping block is pushed upward, the upper clamping block moves upward, and the first rack also moves upward to drive the gear to roll. Since the second rack and the gear are also meshed, the gear will also The second rack is driven to move downward, and the connecting rod is also moved downward, thereby driving the lower clamping block to move downward, and the upper clamping block and the lower clamping block are moved apart from each other; since the connecting rod is sleeved
  • the spring compresses the spring when the connecting rod moves downward, and the spring has a restoring force, so that the upper clamping block and the lower clamping block can clamp the mobile terminal.
  • the lower clamping block is pushed downward, the connecting rod moves downward, the second rack moves downward, the gear rotates to move the first rack upward, the upper clamping block moves upward, the upper clamping block and the lower clamping
  • the blocks are moved apart from each other; since the spring is sleeved on the connecting rod, the spring is compressed when the connecting rod moves downward, and the spring has a restoring force, so that the upper clamping block and the lower clamping block can clamp the mobile terminal.
  • the mobile terminal clamping mechanism of the virtual reality device provided by the present invention has a simple structure, high stability, and the clamping mobile terminal is firm.
  • the mobile terminal clamping mechanism of the virtual reality device includes an upper clamping block, a lower clamping block, a gear, a connecting rod and a spring, wherein: the upper clamping block is provided with a first rack, the first rack Engaging with the gear in the moving direction of the upper clamping block; the connecting rod is provided with a second rack, and the second rack meshes with the gear in the moving direction of the lower clamping block; the first rack and the second rack are opposite to the gear Biting
  • the spring is sleeved on the connecting rod; the connecting rod is connected with the lower clamping block.
  • a first slider is disposed on the first rack of the upper clamping block, and the upper clamping block is moved by the first slider to the first guiding rail of the front cover of the virtual reality device, the first slider and the first guiding The rail can be limited, and the upper clamping block can be slid more smoothly.
  • a second slider is disposed on the second rack of the connecting rod, and the connecting rod is moved by the second slider to the second guiding rail of the front cover of the virtual reality device, and the second slider and the second guiding rail are limited It is also possible to make the upper clamping block slide more smoothly.
  • the connecting rod is provided with a spring limiting post, the spring sleeve is connected to the limiting post, one end of the spring is in contact with the root of the limiting post, and the other end of the spring is in contact with the baffle of the front cover of the virtual reality device.
  • the first limiting slider is disposed on the back surface of the upper clamping block, and the first limiting slider cooperates with the first limiting slot of the front cover of the virtual reality device to limit the position and reduce the movement of the upper clamping block. Friction.
  • the second limiting slider is disposed on the back of the lower clamping block, and the second limiting slider cooperates with the second limiting slot of the front cover of the virtual reality device to limit the position and reduce the movement of the lower clamping block. Friction.
  • the clamping portion of the upper clamping block is provided with a embossing pattern, which can increase friction, and the clamping mobile terminal is more firm, and the mobile terminal cannot be dropped.
  • the clamping portion of the lower clamping block is provided with a embossing pattern, which can increase friction, and the clamping mobile terminal is more firm, and the mobile terminal cannot be dropped.
  • the working principle of the mobile terminal clamping mechanism of the virtual reality device provided by the present invention is as follows:
  • the upper and lower clamps are in a relaxed state and the spring is not compressed.
  • the upper clamping block is pushed upward, the upper clamping block moves upward, and the first rack also moves upward to drive the gear to roll. Since the second rack and the gear are also meshed, the gear will also The second rack is driven to move downward, and the connecting rod is also moved downward, thereby driving the lower clamping block to move downward, and the upper clamping block and the lower clamping block are moved apart from each other; since the connecting rod is sleeved Spring, when the connecting rod moves downward, the spring is compressed, and the spring has a restoring force.
  • the upper clamping block and the lower clamping block can be used to clamp the mobile terminal.
  • the lower clamping block is pushed downward, the connecting rod moves downward, the second rack moves downward, the gear rotates to move the first rack upward, the upper clamping block moves upward, the upper clamping block and the lower clamping
  • the blocks are moved apart from each other; since the spring is sleeved on the connecting rod, the spring is compressed when the connecting rod moves downward, and the spring has a restoring force, so that the upper clamping block and the lower clamping block can clamp the mobile terminal.
  • the mobile terminal clamping mechanism of the virtual reality device provided by the present invention has a simple structure, high stability, and the clamping mobile terminal is firm.

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  • Engineering & Computer Science (AREA)
  • Signal Processing (AREA)
  • Telephone Set Structure (AREA)

Abstract

一种虚拟现实设备的移动终端夹持机构,包括上夹持块(1)、下夹持块(2)、齿轮(9)、连杆(10)和弹簧(11),其中上夹持块(1)设置有第一齿条(3),第一齿条(3)与齿轮(9)在上夹持块(1)的移动方向上啮合;连杆(10)设置有第二齿条(4),第二齿条(4)与齿轮(9)在下夹持块(2)的移动方向上啮合;第一齿条(3)与第二齿条(4)相对与齿轮(9)啮合;弹簧(11)套接在连杆(10)上,连杆(10)与下夹持块(2)连接,该虚拟现实设备的移动终端夹持机构,结构简单,稳定性高,夹持移动终端牢固。

Description

一种虚拟现实设备的移动终端夹持机构及虚拟现实设备 技术领域
本发明涉及虚拟现实设备领域,确切地说是指一种虚拟现实设备的移动终端夹持机构及虚拟现实设备。
背景技术
虚拟现实设备,简称VR设备,是利用仿真技术与计算机图形学、人机接口技术、多媒体技术、传感技术、网络技术等多种技术集合的产品,是借助计算机及最新传感器技术创造的一种崭新的人机交互手段。
目前,各种虚拟现实设备产品层出不穷,但是很多虚拟现实设备的移动终端夹持机构结构不合理,结构复杂,导致存在移动终端夹持结构容易损坏、夹持移动终端不牢固等缺陷。
发明内容
针对上述缺陷,本发明解决的技术问题在于提供一种虚拟现实设备的移动终端夹持机构,结构简单,稳定性高,夹持移动终端牢固。
为了解决以上的技术问题,本发明提供的虚拟现实设备的移动终端夹持机构,包括上夹持块、下夹持块、齿轮、连杆和弹簧,其中:
所述上夹持块设置有第一齿条,所述第一齿条与所述齿轮在所述上夹持块的移动方向上啮合;
所述连杆设置有第二齿条,所述第二齿条与所述齿轮在所述下夹持块的移动方向上啮合;
所述第一齿条与所述第二齿条相对与所述齿轮啮合;
所述弹簧套接在所述连杆上;
所述连杆与所述下夹持块连接。
优选地,所述上夹持块的第一齿条上设置有第一套筒,所述上夹持块通过所述第一套筒套接在虚拟现实设备前盖的第一导向条上。
优选地,所述上夹持块的第一齿条上设置有第一滑块,所述上夹持块通过所述第一滑块限位在虚拟现实设备前盖的第一导向轨上运动。
优选地,所述连杆的第二齿条上设置有第二套筒,所述连杆通过所述第二套筒套接在虚拟现实设备前盖的第二导向条上。
优选地,所述连杆的第二齿条上设置有第二滑块,所述连杆通过所述第二滑块限位在虚拟现实设备前盖的第二导向轨上运动。
优选地,所述连杆上设置有弹簧限位柱,所述弹簧套接在所述限位柱上,所述弹簧一端抵触在所述限位柱的根部,所述弹簧另外一端抵触在虚拟现实设备前盖的挡板上。
优选地,所述上夹持块的背面设置有第一限位滑块,所述第一限位滑块与虚拟现实设备前盖的第一限位槽配合。
优选地,所述下夹持块的背面设置有第二限位滑块,所述第二限位滑块与虚拟现实设备前盖的第二限位槽配合。
优选地,所述上夹持块的夹持部位设置有凹凸纹;和/或所述下夹持块的夹持部位设置有凹凸纹。
本发明还提供一种虚拟现实设备,包括如上述任一项中所述的移动终端夹持机构。
本发明提供的虚拟现实设备的移动终端夹持机构,包括上夹持块、下夹持块、齿轮、连杆和弹簧,其中:上夹持块设置有第一齿条,第一齿条与齿轮在上夹持块的移动方向上啮合;连杆设置有第二齿条,第二齿条与齿轮在下夹持块的移动方向上啮合;第一齿条与第二齿条相对与齿轮啮合;弹簧套接在连杆上;连杆与下夹持块连接。本发明提供的虚拟现实设备的移动终端夹持机构,当没有夹持移动终端时,上夹持块和下夹持块是处于放松状态,弹簧没有被压缩。当需要夹持移动终端时,向上推动上夹持块,上夹持块向上移动,第一齿条也向上移动,带动齿轮滚动,由于第二齿条与齿轮也是啮合的,因此,齿轮也会带动第二齿条向下移动,同时连杆也向下移动,进而也带动下夹持块向下移动,上夹持块与下夹持块就会相向移动分开;由于连杆上套接有弹簧,连杆向下移动的时候压缩弹簧,弹簧存在回复力,使得上夹持块和下夹持块可以夹持住移动终端。同理,向下推动下夹持块,连杆向下移动,第二齿条向下移动,齿轮旋转带动第一齿条向上移动,上夹持块向上移动,上夹持块与下夹持块就会相向移动分开;由于连杆上套接有弹簧,连杆向下移动的时候压缩弹簧,弹簧存在回复力,使得上夹持块和下夹持块可以夹持住移动终端。与现有技术相比,本发明提供的虚拟现实设备的移动终端夹持机构,结构简单,稳定性高,夹持移动终端牢固。
附图说明
图1为本发明实施例1中虚拟现实设备前盖的正面结构示意图,该图包括移动终端夹持机构。
图2为本发明实施例1中虚拟现实设备前盖的背面结构示意图,该图包括移动终端夹持机构。
图3为发明实施例1中虚拟现实设备的移动终端夹持机构的背面结构示意图,该图中包括第一导向条和第二导向条;
图4为发明实施例1中虚拟现实设备的移动终端夹持机构的正面结构示意图,该图中包括第一导向条和第二导向条。
具体实施方式
为了本领域的技术人员能够更好地理解本发明所提供的技术方案,下面结合具体实施例进行阐述。
本案将可由以下的实施例说明而得到充分了解,使得熟习本技术的技术人员可以据以完成之,然而本发明的保护范围包括但不限于下列实施例。
实施例1
请参见图1-图4,图1为本发明实施例1中虚拟现实设备前盖的正面结构示意图,该图包括移动终端夹持机构。图2为本发明实施例1中虚拟现实设备前盖的背面结构示意图,该图包括移动终端夹持机构。图3为发明实施例1中虚拟现实设备的移动终端夹持机构的背面结构示意图,该图中包括第一导向条和第二导向条;图4为发明实施例1中虚拟现实设备的移动终端夹持机构的正面结构示意图,该图中包括第一导向条和第二导向条。
本实施例提供的虚拟现实设备的移动终端夹持机构,包括上夹持块1、下夹持块2、齿轮9、连杆10和弹簧11,其中:上夹持块1设置有第一齿条3,第一齿条3与齿轮9在上夹持块1的移动方向上啮合;连杆10设置有第二齿条4,第二齿条4与齿轮9在下夹持块2的移动方向上啮合;第一齿条3与第二齿条4相对与齿轮9啮合;弹簧11套接在连杆10上;连杆10与下夹持块2连接。
上夹持块1的第一齿条3上设置有第一套筒5,上夹持块1通过第一套筒5套接在虚拟现实设备前盖101的第一导向条7上,第一套筒5和第一导向条7可以限位,也可以使上夹持块1滑动更加顺畅。连杆10的第二齿条4上设置有第二套筒6,连杆10通过第二套筒6套接在虚拟现实设备前盖101的第二导向条8上,第二套筒6和第二导向条8可以限位,也可以使下夹持块2滑动更加顺畅。
连杆10上设置有弹簧限位柱12,弹簧11套接在限位柱12上,弹簧11一端抵触在限位柱12的根部,弹簧11另外一端抵触在虚拟现实设备前盖101的挡板15上。
上夹持块1的背面设置有第一限位滑块13,第一限位滑块13与虚拟现实设备前盖101的第一限位槽配合,既可以限位,也可以减小上夹持块1移动时的摩擦。
下夹持块2的背面设置有第二限位滑块14,第二限位滑块14与虚拟现实设备前盖101的第二限位槽配合,既可以限位,也可以减小下夹持块2移动时的摩擦。
上夹持块1的夹持部位设置有凹凸纹,能够增大摩擦,夹持移动终端 更加牢固,移动终端不能掉落。下夹持块2的夹持部位设置有凹凸纹,能够增大摩擦,夹持移动终端更加牢固,移动终端不能掉落。
本发明提供的虚拟现实设备的移动终端夹持机构的工作原理如下:
当没有夹持移动终端时,上夹持块和下夹持块是处于放松状态,弹簧没有被压缩。当需要夹持移动终端时,向上推动上夹持块,上夹持块向上移动,第一齿条也向上移动,带动齿轮滚动,由于第二齿条与齿轮也是啮合的,因此,齿轮也会带动第二齿条向下移动,同时连杆也向下移动,进而也带动下夹持块向下移动,上夹持块与下夹持块就会相向移动分开;由于连杆上套接有弹簧,连杆向下移动的时候压缩弹簧,弹簧存在回复力,使得上夹持块和下夹持块可以夹持住移动终端。同理,向下推动下夹持块,连杆向下移动,第二齿条向下移动,齿轮旋转带动第一齿条向上移动,上夹持块向上移动,上夹持块与下夹持块就会相向移动分开;由于连杆上套接有弹簧,连杆向下移动的时候压缩弹簧,弹簧存在回复力,使得上夹持块和下夹持块可以夹持住移动终端。
与现有技术相比,本发明提供的虚拟现实设备的移动终端夹持机构,结构简单,稳定性高,夹持移动终端牢固。
实施例2
本实施例提供的虚拟现实设备的移动终端夹持机构,包括上夹持块、下夹持块、齿轮、连杆和弹簧,其中:上夹持块设置有第一齿条,第一齿条与齿轮在上夹持块的移动方向上啮合;连杆设置有第二齿条,第二齿条与齿轮在下夹持块的移动方向上啮合;第一齿条与第二齿条相对与齿轮啮 合;弹簧套接在连杆上;连杆与下夹持块连接。
上夹持块的第一齿条上设置有第一滑块,上夹持块通过第一滑块限位在虚拟现实设备前盖的第一导向轨上运动,第一滑块和第一导向轨可以限位,也可以使上夹持块滑动更加顺畅。连杆的第二齿条上设置有第二滑块,连杆通过第二滑块限位在虚拟现实设备前盖的第二导向轨上运动,第二滑块和第二导向轨可以限位,也可以使上夹持块滑动更加顺畅。
连杆上设置有弹簧限位柱,弹簧套接在限位柱上,弹簧一端抵触在限位柱的根部,弹簧另外一端抵触在虚拟现实设备前盖的挡板上。
上夹持块的背面设置有第一限位滑块,第一限位滑块与虚拟现实设备前盖的第一限位槽配合,既可以限位,也可以减小上夹持块移动时的摩擦。
下夹持块的背面设置有第二限位滑块,第二限位滑块与虚拟现实设备前盖的第二限位槽配合,既可以限位,也可以减小下夹持块移动时的摩擦。
上夹持块的夹持部位设置有凹凸纹,能够增大摩擦,夹持移动终端更加牢固,移动终端不能掉落。下夹持块的夹持部位设置有凹凸纹,能够增大摩擦,夹持移动终端更加牢固,移动终端不能掉落。
本发明提供的虚拟现实设备的移动终端夹持机构的工作原理如下:
当没有夹持移动终端时,上夹持块和下夹持块是处于放松状态,弹簧没有被压缩。当需要夹持移动终端时,向上推动上夹持块,上夹持块向上移动,第一齿条也向上移动,带动齿轮滚动,由于第二齿条与齿轮也是啮合的,因此,齿轮也会带动第二齿条向下移动,同时连杆也向下移动,进而也带动下夹持块向下移动,上夹持块与下夹持块就会相向移动分开;由于连杆上套接有弹簧,连杆向下移动的时候压缩弹簧,弹簧存在回复力, 使得上夹持块和下夹持块可以夹持住移动终端。同理,向下推动下夹持块,连杆向下移动,第二齿条向下移动,齿轮旋转带动第一齿条向上移动,上夹持块向上移动,上夹持块与下夹持块就会相向移动分开;由于连杆上套接有弹簧,连杆向下移动的时候压缩弹簧,弹簧存在回复力,使得上夹持块和下夹持块可以夹持住移动终端。
与现有技术相比,本发明提供的虚拟现实设备的移动终端夹持机构,结构简单,稳定性高,夹持移动终端牢固。
对所公开的实施例的上述说明,使本领域专业技术人员能够实现或使用本发明。对这些实施例的多种修改对本领域的专业技术人员来说将是显而易见的,本文中所定义的一般原理可以在不脱离本发明的精神或范围的情况下,在其它实施例中实现。因此,本发明将不会被限制于本文所示的这些实施例,而是要符合与本文所公开的原理和新颖特点相一致的最宽的范围。

Claims (10)

  1. 一种虚拟现实设备的移动终端夹持机构,其特征在于,包括上夹持块、下夹持块、齿轮、连杆和弹簧,其中:
    所述上夹持块设置有第一齿条,所述第一齿条与所述齿轮在所述上夹持块的移动方向上啮合;
    所述连杆设置有第二齿条,所述第二齿条与所述齿轮在所述下夹持块的移动方向上啮合;
    所述第一齿条与所述第二齿条相对与所述齿轮啮合;
    所述弹簧套接在所述连杆上;
    所述连杆与所述下夹持块连接。
  2. 根据权利要求1所述的虚拟现实设备的移动终端夹持机构,其特征在于,所述上夹持块的第一齿条上设置有第一套筒,所述上夹持块通过所述第一套筒套接在虚拟现实设备前盖的第一导向条上。
  3. 根据权利要求1所述的虚拟现实设备的移动终端夹持机构,其特征在于,所述上夹持块的第一齿条上设置有第一滑块,所述上夹持块通过所述第一滑块限位在虚拟现实设备前盖的第一导向轨上运动。
  4. 根据权利要求1所述的虚拟现实设备的移动终端夹持机构,其特征在于,所述连杆的第二齿条上设置有第二套筒,所述连杆通过所述第二套筒套接在虚拟现实设备前盖的第二导向条上。
  5. 根据权利要求1所述的虚拟现实设备的移动终端夹持机构,其特征在于,所述连杆的第二齿条上设置有第二滑块,所述连杆通过所述第二滑块限位在虚拟现实设备前盖的第二导向轨上运动。
  6. 根据权利要求1所述的虚拟现实设备的移动终端夹持机构,其特征在于,所述连杆上设置有弹簧限位柱,所述弹簧套接在所述限位柱上,所述弹簧一端抵触在所述限位柱的根部,所述弹簧另外一端抵触在虚拟现实设备前盖的挡板上。
  7. 根据权利要求1所述的虚拟现实设备的移动终端夹持机构,其特征在于,所述上夹持块的背面设置有第一限位滑块,所述第一限位滑块与虚拟现实设备前盖的第一限位槽配合。
  8. 根据权利要求1所述的虚拟现实设备的移动终端夹持机构,其特征在于,所述下夹持块的背面设置有第二限位滑块,所述第二限位滑块与虚拟现实设备前盖的第二限位槽配合。
  9. 根据权利要求1所述的虚拟现实设备的移动终端夹持机构,其特征在于,所述上夹持块的夹持部位设置有凹凸纹;和/或所述下夹持块的夹持部位设置有凹凸纹。
  10. 一种虚拟现实设备,其特征在于,包括如权利要求1—9中任一项所述的移动终端夹持机构。
PCT/CN2016/070648 2016-01-12 2016-01-12 一种虚拟现实设备的移动终端夹持机构及虚拟现实设备 WO2017120755A1 (zh)

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