WO2019000781A1 - 一种智能眼镜 - Google Patents

一种智能眼镜 Download PDF

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Publication number
WO2019000781A1
WO2019000781A1 PCT/CN2017/110068 CN2017110068W WO2019000781A1 WO 2019000781 A1 WO2019000781 A1 WO 2019000781A1 CN 2017110068 W CN2017110068 W CN 2017110068W WO 2019000781 A1 WO2019000781 A1 WO 2019000781A1
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Prior art keywords
user
head
bone conduction
smart glasses
unit
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PCT/CN2017/110068
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English (en)
French (fr)
Inventor
魏秀云
龙世渚
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深圳创维数字技术有限公司
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Publication of WO2019000781A1 publication Critical patent/WO2019000781A1/zh

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    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C11/00Non-optical adjuncts; Attachment thereof

Definitions

  • the present disclosure relates to the field of smart device technology, for example, to a smart eyewear.
  • Smart glasses also known as smart glasses, refer to programs that are independent of the operating system, such as smart phones, that can be installed by software, games, and other software service providers. You can add schedules, map navigation, and A general term for a class of glasses that allows friends to interact with each other, take photos and videos, conduct video calls with friends, and use the mobile communication network to access wireless networks.
  • the communication devices of smart glasses are mainly microphones and speakers.
  • the microphones and speakers are mainly air-conducting and bone-conducting.
  • the air conduction is to transmit sound through air vibration, that is, air-conducting sound; the bone conduction type transmits vibration through bone or skin tissue. Sound, that is, bone transmission.
  • the audio-visual effect of the gas-conducting microphone and the speaker is greatly affected by the external environment, and the user suffering from the ear disease is not suitable for long-time wearing; in the smart glasses with the bone conduction function, the bone conduction device is installed in the casing of the smart glasses, and The part of the shell corresponding to the bone conduction device directly contacts the head of the user to transmit vibration, and the contact area of the smart glasses with the user's head is large, and a large amount of heat generated by the smart glasses during operation will directly contact the skin of the user, which is easy. The user feels uncomfortable; and the contact area of the smart glasses with the user is large, which affects the vibration effect of the bone conduction, resulting in poor sound quality and poor user experience.
  • the invention provides a smart glasses, which reduces the contact area between the bone conduction device and the user in the smart glasses, improves the sound quality, and improves the user experience.
  • the lens body includes a frame body and two lens legs mirrored at two ends of the frame body, the front ends of the temples are provided with a first receiving cavity;
  • a bone conduction device comprising a vibration unit and a bone conduction unit, the bone conduction
  • the unit is disposed in the first accommodating cavity, the vibration unit is protruded from a side of the temple adjacent to the user's head, and one end of the vibration unit is connected to the bone conduction unit, and the other end is connected to the user's head.
  • the area of the vibrating unit in contact with the user's head is smaller than the surface area of the side of the first accommodating chamber close to the user's head.
  • the area of the vibration unit in contact with the user's head is 0.5-1 cm 2 .
  • the surface of the vibration unit that is in contact with the user's head is a curved surface.
  • the side of the temple adjacent to the user's head is provided with a sliding slot, and one end of the vibration unit cooperates with the sliding slot and can move along the sliding slot.
  • the vibration unit is wrapped with an elastic protective layer.
  • the elastic protective layer is a sponge or a silica gel.
  • the bone conduction unit comprises a bone conduction microphone and a bone conduction speaker.
  • control component and the battery pack are further disposed in the first accommodating cavity, the tail end of the temple is provided with a second accommodating cavity, and the battery component is accommodated in the first
  • the two contain cavities; the control assembly is electrically connected to the bone conduction device and the battery assembly, respectively.
  • a gas conducting device comprising a gas conducting microphone and a gas conducting speaker, the gas conducting device being disposed in the second receiving cavity and electrically connected to the control component.
  • the lens body is provided with a control button or a voice recognition module electrically connected to the control component, and the control button or the voice recognition module is configured to select a bone conduction device or a gas conduction device.
  • the heat dissipation layer is disposed in the first accommodating cavity, and a heat dissipation layer is disposed on a side of the temple that is away from the user's head.
  • the embodiment of the invention reduces the contact area between the vibration unit and the user's head, so that the vibration effect perceived by the user is better, the sound quality effect is improved, and the vibration unit isolates the user's head and the lens body, thereby avoiding heat during the operation of the smart glasses. Directly contact the user's skin to enhance the user's experience.
  • FIG. 1 is an exploded view of an intelligent glasses according to an embodiment.
  • control components 4, bone conduction unit;
  • FIG. 1 is an exploded view of an intelligent glasses according to an embodiment.
  • the embodiment provides a smart glasses, including:
  • the lens body and the bone conduction device wherein the lens body comprises a frame body 1 and two lens legs 2 mirrored on both ends of the frame body 1.
  • the front ends of the temples 2 are respectively provided with a first receiving cavity;
  • the bone conduction device includes vibration The unit and the bone conduction unit 4, the bone conduction unit 4 is disposed in the first accommodating cavity, the vibration unit is protruded from the side of the temple 2 close to the user's head, one end of the vibration unit is connected with the bone conduction unit 4, and the other end is The user's head contacts; the area of the vibration unit in contact with the user's head is smaller than the surface area of the side of the first accommodating cavity near the user's head.
  • the functions of smart glasses are increasing, and the internal components are gradually increasing. Since the tail end of the temples 2 needs to be placed on the user's ear to fix the smart glasses, the front end of the glasses 2 can be The relatively large volume is relatively set, so that the first accommodating cavity is disposed at the front end of the temple 2, and the bone conduction unit or other components of the smart glasses are placed in the first accommodating cavity, and the components can be reasonably placed.
  • a vibration unit is protruded from a side of the temple 2 close to the head, and the user's head and the bone conduction unit 4 are connected by the vibration unit, and the contact area between the vibration unit and the user's head is 0.5-1 cm2, which is reduced on the one hand.
  • the contact area of the smart glasses with the user is small, and the vibration effect transmitted by the vibration unit is improved, so that the user experiences a better sound quality effect; on the other hand, the vibration unit separates the user's head from the eye body to prevent the smart glasses from running.
  • the heat generated in the process directly contacts the skin of the user to improve the comfort of the user; at the same time, the vibration unit is separated from other components in the smart glasses to avoid vibration damage and improve the quality of the smart glasses.
  • the contact area between the vibration unit and the user's head is too large, which may affect the transmission of the vibration, thereby affecting the sound quality; the contact area of the vibration unit with the user's head is too small, which may affect the comfort of the user's wearing.
  • the contact area of the vibration unit and the user's head is 0.5-1cm 2, can be selected according to actual needs appropriate contact area, such as 0.5cm 2, 0.6cm 2, 0.7cm 2 , 0.8cm 2, 0.9cm 2, 1cm 2 and the like;
  • the vibration unit can be designed in different shapes such that the shape of the vibration unit includes, but is not limited to, a circle, an ellipse, a racetrack shape, a square, a rectangle, a diamond, or an irregular shape.
  • the surface of the vibration unit that is in contact with the user's head may be a curved surface, and the curved surface is relatively smooth, thereby avoiding abrasion of the user's skin.
  • the vibrating unit can also be wrapped with an elastic protective layer, and the elastic protective layer can be sponge or silica gel.
  • the elastic protective layer can provide a good touch to the user on the one hand to further improve the wearing comfort of the user; on the other hand, it can also protect Vibration unit to avoid bumping damage of the vibration unit.
  • the side of the temple 2 close to the user's head may be provided with a chute, and the end of the vibration unit cooperates with the chute and can move along the chute .
  • the sliding slot may be disposed along the length direction of the temple 2 or in the height direction of the temple 2, and the position of the vibration unit is adjusted to improve the compatibility of the smart glasses with different users, and the user may also be worn. Comfort.
  • any one of the ends of the chute and the vibration unit may be provided with a positioning protrusion of a smaller curvature, and the other is provided with a groove that cooperates with the positioning protrusion, for example, an end portion of the vibration unit
  • a positioning protrusion and the sliding groove is provided with a plurality of grooves matching with the positioning protrusions.
  • the bone conduction unit 4 includes a bone conduction microphone and a bone conduction speaker.
  • the bone conduction device can realize clear sound reduction in a noisy environment by converting sound into mechanical vibration of different frequencies without affecting others; the bone conduction device is worn. It is comfortable and light, and does not cause damage to the tympanic membrane when used, and protects the hearing.
  • the smart glasses in this embodiment include a frame 1, a temple 2, a bone conduction device, a control component 3, and a battery pack 5.
  • the frame 1 includes a frame 11 and a frame 12, and the temple 2 has a hollow structure.
  • the front end of the temple 2 forms a first accommodating cavity
  • the tail end of the spectacles 2 is provided with a second accommodating cavity
  • the control component 3 is disposed in the first accommodating cavity
  • the battery pack 5 is placed in the second accommodating cavity
  • the control component 3 is electrically connected to the bone conduction device and the battery pack 5, respectively, and the battery pack 5 is accommodated by the space at the end of the spectacles 2 to improve the utilization ratio of the space inside the smart glasses.
  • the two spectacles 2 connected to the frame 1 can be provided with a first accommodating cavity and a second accommodating cavity to increase the size of the accommodating space of the smart glasses, and each of the second accommodating cavities is provided with a battery, so that Provides power to the various components in the smart glasses.
  • the embodiment may further include a gas transmission device including a gas-conducting microphone and air transmission
  • the air guiding device is disposed in the second receiving cavity and electrically connected to the control component 3.
  • a control button or a voice recognition module electrically connected to the control component 3 may be disposed on the lens body.
  • the control button or the voice recognition module is configured to select a bone conduction device or a gas conduction device, and the user may select to use bone conduction through a control button or voice.
  • the device or the gas transmission device is convenient for the user to operate.
  • a heat conductive layer may be disposed in the first housing cavity.
  • the outer side of the leg 2 away from the user's head, that is, the outer casing of the temple 2 may be provided with a heat dissipation layer.
  • the heat conducting layer is attached to the inner surface of the first accommodating cavity.
  • the heat conducting layer may be disposed on a side of the first accommodating cavity away from the user's head.
  • the heat dissipation layer is also located on the side away from the user's head, so that the heat generated in the first accommodating cavity is radiated from the heat conducting layer, the outer wall of the temple 2, and the heat dissipation layer to the outside, thereby reducing heat contact with the user, and improving not only The heat dissipation effect also improves the comfort of the user.
  • the inner side of the heat conductive layer may also be coated with a heat conductive material to improve the heat transfer efficiency.
  • the heat conductive material may be a thermal grease or a thermal silica gel.
  • the thermal grease and the thermal silica gel are commonly used for heat dissipation and heat conduction in electronic products.
  • the material has excellent electrical insulation and thermal conductivity, moisture, dust, corrosion and shock resistance, and has good stability.
  • a heat conducting layer may also be disposed on one side of the user's head.
  • the outer side surface of the second receiving cavity that is, the side of the tail end of the temple 2 away from the user may be provided with a heat dissipation layer, thereby accelerating the heat transfer of the battery pack 5;
  • the portion of the end of the temple 2 that is in contact with the user may be provided with a heat insulating layer to prevent heat from being transmitted to the skin of the user.
  • the heat insulating layer may be glass fiber, aerogel felt or foamed material, as long as it can serve as a heat insulating material.
  • the embodiment of the invention reduces the contact area between the vibration unit and the user's head, so that the vibration effect perceived by the user is better, the sound quality effect is improved, and the vibration unit isolates the user's head and the lens body, thereby avoiding heat during the operation of the smart glasses. Directly contact the user's skin to enhance the user's experience.

Abstract

一种智能眼镜,包括眼镜本体和骨传导装置,眼镜本体包括框体以及镜像设置于框体的两端的两个眼镜腿,眼镜腿的前端均设置有第一容置腔;骨传导装置包括振动单元以及骨传导单元,骨传导单元设置于第一容置腔内,振动单元凸设于眼镜腿靠近用户头部的一侧,振动单元的一端与骨传导单元连接、另一端与用户头部接触;振动单元与用户头部接触的面积小于第一容置腔靠近用户头部的一侧的表面积。

Description

一种智能眼镜 技术领域
本公开涉及智能设备技术领域,例如涉及一种智能眼镜。
背景技术
智能眼镜,也称智能镜,是指像智能手机一样,具有独立的操作系统,可以由用户安装软件、游戏等软件服务商提供的程序,可通过语音或动作操控完成添加日程、地图导航、与好友互动、拍摄照片和视频、与朋友展开视频通话等功能,并可以通过移动通讯网络来实现无线网络接入的一类眼镜的总称。
目前,智能眼镜的通讯装置主要是麦克风和扬声器,麦克风和扬声器主要有气传导式和骨传导式,气传导是通过空气振动传递声音,即气导音;骨传导式通过骨头或皮肤组织振动传递声音,即骨传音。气传导方式麦克风和扬声器的视听效果受外部环境影响大,且患有耳疾的用户不适宜长时间佩戴;带有骨传导功能的智能眼镜中,骨传导装置安装于智能眼镜的壳体内,且骨传导装置对应的部分壳体直接与用户的头部接触以传递振动,智能眼镜与用户头部的接触面积较大,智能眼镜在运行过程中产生的大量热量将直接与用户的皮肤接触,容易使用户感到不适;且智能眼镜与用户的接触面积大,影响骨传导的振动效果,导致音质差,用户体验效果不好。
发明内容
本发明新型提供一种智能眼镜,减小智能眼镜中骨传导装置与用户接触面积,提升音质,提高用户的体验效果。
本发明实施例提供的一种智能眼镜,包括:
眼镜本体,所述眼镜本体包括框体以及镜像设置于所述框体的两端的两个眼镜腿,所述眼镜腿的前端均设置有第一容置腔;
骨传导装置,所述骨传导装置包括振动单元以及骨传导单元,所述骨传导 单元设置于所述第一容置腔内,所述振动单元凸设于所述眼镜腿靠近用户头部的一侧,所述振动单元的一端与所述骨传导单元连接、另一端与用户头部接触;
所述振动单元与用户头部接触的面积小于所述第一容置腔靠近用户头部的一侧的表面积。
其中,所述振动单元与用户头部接触的面积为0.5-1cm2
其中,所述振动单元与用户头部接触的表面为弧面。
其中,所述眼镜腿靠近用户头部的一侧设置有滑槽,所述振动单元的一端与滑槽配合并能够沿所述滑槽移动。
其中,所述振动单元外包裹有弹性保护层。
其中,所述弹性保护层为海绵或硅胶。
其中,所述骨传导单元包括骨传导麦克风和骨传导扬声器。
其中,还包括控制组件及电池组,所述控制组件设置于所述第一容置腔内,所述眼镜腿的尾端设置有第二容置腔,所述电池组件容置于所述第二容置腔内;所述控制组件分别与所述骨传导装置和所述电池组件电连接。
其中,还包括气传导装置,所述气传导装置包括气传导麦克风和气传导扬声器,所述气传导装置设置于所述第二容置腔内并与所述控制组件电连接。
其中,所述眼镜本体上设置有与所述控制组件电连接的控制按钮或语音识别模块,所述控制按钮或所述语音识别模块设置为用户选择使用骨传导装置或气传导装置。
其中,所述第一容置腔内设置有导热层,所述眼镜腿外远离用户头部的一侧设置有散热层。
本发明实施例减小振动单元与用户头部的接触面积,使用户感受到的振动效果更好,提高音质效果,且振动单元隔离了用户头部及眼镜本体,避免智能眼镜运行过程中的热量直接与用户的皮肤接触,提升用户的体验效果。
附图说明
图1是一实施例提供的智能眼镜的爆炸图。
其中:
1、框体;11、镜架;12、镜框;
2、眼镜腿;21、外侧壳;22、内侧壳;
3、控制组件;4、骨传导单元;
5、电池组。
具体实施方式
图1是一实施例提供的智能眼镜的爆炸图。
如图1所示,本实施例提供了一种智能眼镜,包括:
眼镜本体和骨传导装置,其中,眼镜本体包括框体1以及镜像设置于框体1的两端的两个眼镜腿2,眼镜腿2的前端均设置有第一容置腔;骨传导装置包括振动单元以及骨传导单元4,骨传导单元4设置于第一容置腔内,振动单元凸设于眼镜腿2靠近用户头部的一侧,振动单元的一端与骨传导单元4连接、另一端与用户头部接触;振动单元与用户头部接触的面积小于第一容置腔靠近用户头部的一侧的表面积。
随着智能眼镜的发展,智能眼镜的功能日益增多,其内部的零部件也在逐渐增多,由于眼镜腿2的尾端需要搭在用户的耳朵上以便固定智能眼镜,而眼镜腿2的前端可以相对设置较大体积,因此在眼镜腿2的前端设置第一容置腔,将骨传导单元或智能眼镜的其他部件放置在第一容置腔内,可以合理放置零部件。
本实施例在眼镜腿2靠近头部的一侧凸设有振动单元,通过振动单元连接用户头部及骨传导单元4,且振动单元与用户头部的接触面积为0.5-1cm2,一方面减小了智能眼镜与用户的接触面积,提高振动单元传递的振动效果,从而使用户体验更好的音质效果;另一方面,振动单元将用户头部与眼睛本体分隔开,避免智能眼镜在运行过程中产生的热量直接与用户的皮肤接触,提高用户佩戴的舒适度;同时,振动单元与智能眼镜内其他部件分开,避免振动损坏,提高智能眼镜的质量。
振动单元与用户头部的接触面积太大,会影响振动的传递,从而影响音质;振动单元与用户头部的接触面积太小,会影响用户佩戴的舒适度,可选地,本实施例中振动单元与用户头部的接触面积为0.5-1cm2,可以根据实际需要选取合适的接触面积,如0.5cm2、0.6cm2、0.7cm2、0.8cm2、0.9cm2、1cm2等;依据实 际面积,振动单元可以设计成不同的形状,使得振动单元的形状包括但不限于圆形、椭圆形、跑道形、正方形、长方形、菱形、或者不规则形等。
为防止振动单元抵在用户头部磨伤用户皮肤,振动单元与用户头部接触的表面可以为弧面,弧面较圆滑,可以避免磨伤用户皮肤。振动单元外还可以包裹有弹性保护层,弹性保护层可以为海绵或硅胶等,弹性保护层一方面可以为用户提供良好的触感,以进一步提高用户佩戴的舒适度;另一方面,还可以保护振动单元,避免振动单元磕碰损坏。
为保证智能眼镜中的振动单元可以适用于不同用户并与头部接触,眼镜腿2靠近用户头部的一侧可以设置有滑槽,振动单元的端部与滑槽配合并能够沿滑槽移动。用户佩戴时,根据自身情况,调节振动单元的位置,以保证振动单元与头部接触并佩戴舒适。可选地,滑槽可以沿眼镜腿2的长度方向设置,也可以沿眼镜腿2的高度方向设置,通过调节振动单元的位置,提高智能眼镜对不同用户的兼容性,同时也可以提高用户佩戴的舒适度。
为锁定振动单元的具体位置,滑槽和振动单元的端部中任一个可以设置有较小弧度的定位凸起,另一个设置有与定位凸起配合的凹槽,例如振动单元的端部设置有定位凸起,滑槽设置有多个与定位凸起配合的凹槽,用户滑动振动单元时,定位凸起滑动至凹槽内后可以固定振动单元的位置,当用户再次施力滑动时,定位凸起可以滑出凹槽内,以便更改振动单元的固定位置。
骨传导单元4包括骨传导麦克风和骨传导扬声器,骨传导装置通过将声音转化为不同频率的机械振动,能在吵杂的环境下实现清晰的声音还原,且不影响他人;骨传导装置配戴时舒适轻盈,且使用时不会对鼓膜造成伤害,保护听力。
可选地,本实施例中的智能眼镜包括框体1、眼镜腿2、骨传导装置、控制组件3及电池组5,框体1包括镜架11和镜框12,眼镜腿2为中空结构,由内侧壳22和外侧壳21组成,眼镜腿2的前端形成第一容置腔,眼镜腿2的尾端设置有第二容置腔,控制组件3设置于第一容置腔内,电池组5容置于第二容置腔内;控制组件3分别与骨传导装置和电池组5电连接,利用眼镜腿2尾端的空间容置电池组5,可以提高智能眼镜内空间的利用率。与框体1连接的两个眼镜腿2均可以设置第一容置腔和第二容置腔,以提高智能眼镜的容置空间的大小,每个第二容置腔均设置有电池,以便为智能眼镜中各部件提供电能。
本实施例中还可以包括气传导装置,气传导装置包括气传导麦克风和气传 导扬声器,气传导装置设置于第二容置腔内并与控制组件3电连接。通过设置气传导装置和骨传导装置,用户可以根据需要切换声音传导方式,提高智能眼镜的灵活性,为客户提供多样选择。
眼镜本体上可以设置有与控制组件3电连接的控制按钮或语音识别模块,控制按钮或语音识别模块设置为用户选择使用骨传导装置或气传导装置,用户可以通过控制按钮或语音选择使用骨传导装置或气传导装置,方便用户操作。
随着智能眼镜的发展,智能眼镜的功能日趋丰富的同时,智能眼镜在运行过程中产生的热量也在增多,为提高智能眼镜的散热效果,第一容置腔内可以设置有导热层,眼镜腿2外远离用户头部的一侧,即眼镜腿2的外壳体可以设置有散热层。可选地,导热层贴附于第一容置腔的内表面,为避免热量向用户的一侧传到,影响用户使用,导热层可以设置于第一容置腔远离用户头部的一侧,同理,散热层也位于远离用户头部的一侧,使第一容置腔内产生的热量由导热层、眼镜腿2外壁、散热层散发到外部,减少热量与用户的接触,不仅提高了散热效果,也提高了用户佩戴的舒适度。
为进一步提高散热效果,导热层的内侧还可以涂覆有导热材料,以提高热量传递效率,导热材料可以为导热硅脂或导热硅胶,导热硅脂和导热硅胶是电子产品中常用的散热和导热材料,既具有优异的电绝缘性和导热性,还具有防潮、防尘、防腐蚀以及防震性,具有良好的使用稳定性。
为避免第一容置腔热量沿眼镜腿2传递到眼镜腿2的尾部或第二容置腔内的电池组5产生的热量向外传递,从而传递至用户的皮肤,第二容置腔远离用户头部的一侧也可以设置导热层,第二容置腔的外侧表面,即眼镜腿2的尾端远离用户的一侧可以设置有散热层,从而加快电池组5产生热量的传递;同时,眼镜腿2的尾端与用户接触的部位可以设置有隔热层,以免热量向用户皮肤传递。隔热层可以为玻璃纤维、气凝胶毡或发泡材料等,只要可以起到隔热作用的材料即可。
工业实用性
本发明实施例减小振动单元与用户头部的接触面积,使用户感受到的振动效果更好,提高音质效果,且振动单元隔离了用户头部及眼镜本体,避免智能眼镜运行过程中的热量直接与用户的皮肤接触,提升用户的体验效果。

Claims (10)

  1. 一种智能眼镜,包括:
    眼镜本体,所述眼镜本体包括框体(1)以及镜像设置于所述框体(1)的两端的两个眼镜腿(2),所述眼镜腿(2)的前端均设置有第一容置腔;
    骨传导装置,所述骨传导装置包括振动单元以及骨传导单元(4),所述骨传导单元(4)设置于所述第一容置腔内,所述振动单元凸设于所述眼镜腿(2)靠近用户头部的一侧,所述振动单元的一端与所述骨传导单元(4)连接、另一端与用户头部接触;
    所述振动单元与用户头部接触的面积小于所述第一容置腔靠近用户头部的一侧的表面积。
  2. 根据权利要求1所述的智能眼镜,其中,所述振动单元与用户头部的接触面积为0.5-1cm2
  3. 根据权利要求1所述的智能眼镜,其中,所述振动单元与用户头部接触的表面为弧面。
  4. 根据权利要求1所述的智能眼镜,其中,所述眼镜腿(2)靠近用户头部的一侧设置有滑槽,所述振动单元的一端与滑槽配合并能够沿所述滑槽移动。
  5. 根据权利要求1所述的智能眼镜,其中,所述振动单元外包裹有弹性保护层。
  6. 根据权利要求1所述的智能眼镜,其中,所述骨传导单元(4)包括骨传导麦克风和骨传导扬声器。
  7. 根据权利要求1-6任一项所述的智能眼镜,其中,还包括控制组件(3)及电池组(5),所述控制组件(3)设置于所述第一容置腔内,所述眼镜腿(2)的尾端设置有第二容置腔,所述电池组(5)件容置于所述第二容置腔内;所述控制组件(3)分别与所述骨传导装置和所述电池组(5)件电连接。
  8. 根据权利要求7所述的智能眼镜,其中,还包括气传导装置,所述气传导装置包括气传导麦克风和气传导扬声器,所述气传导装置设置于所述第二容置腔内并与所述控制组件(3)电连接。
  9. 根据权利要求8所述的智能眼镜,其中,所述眼镜本体上设置有与所述控制组件(3)电连接的控制按钮或语音识别模块,所述控制按钮或所述语音识别模块设置为用户选择使用骨传导装置或气传导装置。
  10. 根据权利要求1-6任一项所述的智能眼镜,其中,所述第一容置腔内设 置有导热层,所述眼镜腿(2)外远离用户头部的一侧设置有散热层。
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