WO2020143047A1 - 眼镜腿组件及眼镜 - Google Patents

眼镜腿组件及眼镜 Download PDF

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Publication number
WO2020143047A1
WO2020143047A1 PCT/CN2019/071437 CN2019071437W WO2020143047A1 WO 2020143047 A1 WO2020143047 A1 WO 2020143047A1 CN 2019071437 W CN2019071437 W CN 2019071437W WO 2020143047 A1 WO2020143047 A1 WO 2020143047A1
Authority
WO
WIPO (PCT)
Prior art keywords
temple
pivot
spring
leg
core
Prior art date
Application number
PCT/CN2019/071437
Other languages
English (en)
French (fr)
Inventor
杨钰峰
蒋新东
Original Assignee
温州市蔚蓝眼镜有限公司
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by 温州市蔚蓝眼镜有限公司 filed Critical 温州市蔚蓝眼镜有限公司
Priority to PCT/CN2019/071437 priority Critical patent/WO2020143047A1/zh
Priority to US16/618,186 priority patent/US11187919B2/en
Priority to BR112020022799-4A priority patent/BR112020022799A2/pt
Priority to PCT/CN2020/070830 priority patent/WO2020143650A1/zh
Priority to GB2015376.3A priority patent/GB2586401B/en
Priority to EP20738943.8A priority patent/EP3767372B1/en
Priority to RU2020135632A priority patent/RU2770296C1/ru
Priority to CN202080002056.4A priority patent/CN111902766B/zh
Priority to AU2020205779A priority patent/AU2020205779B2/en
Publication of WO2020143047A1 publication Critical patent/WO2020143047A1/zh
Priority to US17/342,009 priority patent/US11372262B2/en

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Classifications

    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C5/00Constructions of non-optical parts
    • G02C5/22Hinges
    • G02C5/2218Resilient hinges
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C5/00Constructions of non-optical parts
    • G02C5/14Side-members
    • G02C5/146Side-members having special front end
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C5/00Constructions of non-optical parts
    • G02C5/14Side-members
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C5/00Constructions of non-optical parts
    • G02C5/14Side-members
    • G02C5/16Side-members resilient or with resilient parts
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C5/00Constructions of non-optical parts
    • G02C5/22Hinges
    • G02C5/2218Resilient hinges
    • G02C5/2227Resilient hinges comprising a fixed hinge member and a coil spring
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C5/00Constructions of non-optical parts
    • G02C5/22Hinges
    • G02C5/2263Composite hinges, e.g. for varying the inclination of the lenses
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C2200/00Generic mechanical aspects applicable to one or more of the groups G02C1/00 - G02C5/00 and G02C9/00 - G02C13/00 and their subgroups
    • G02C2200/26Coil spring pushed upon actuation

Definitions

  • the present application belongs to the technical field of spectacles, and more specifically relates to a spectacle leg assembly and spectacles.
  • eyeglasses generally include a frame, lenses, and temples, where the frames and temples are connected by elastic hinges to achieve elastic closure and elastic expansion in the horizontal direction.
  • the frames and temples are connected by elastic hinges to achieve elastic closure and elastic expansion in the horizontal direction.
  • forces outside the horizontal direction such as vertical forces
  • it may easily deform the temple after removing the glasses for many times. In severe cases, it may affect the aesthetics of the spectacle frame and the comfort of wearing.
  • the purpose of the present application is to provide an eyeglass leg assembly and eyeglasses, including but not limited to solving the technical problem that the eyeglass frame undergoes an irrecoverable deformation due to the vertical load.
  • the present application provides an eyeglass leg assembly including a temple body, a guide, a first leg core, a second leg core, a first pivot, and a second pivot; the second leg core and the temple body Elastic connection, the second leg core is configured to provide elastic force transmitted along the length of the temple body, the guide is sleeved on the outer periphery of the first leg core, and the first leg core includes a relative arrangement A first connection end and a second connection end, the second connection end is pivotally connected to the second leg core through the second pivot, and the first connection end is connected to the eyeglass frame through the first pivot
  • the front head of the Zhuangtou or the temple is pivotally connected; the first pivot axis and the second pivot axis are vertically distributed with each other; the guide member is elastically abutted with the temple body.
  • the guide member is provided with a through hole, the first leg core is penetrated through the through hole, and the through hole is set to limit that the first leg core can only run along the through hole The axis moves back and forth.
  • first leg core and the guide are restricted in the same direction as the axial direction of the first pivot.
  • the guide member is provided with a through hole, and the second connecting end passes through the through hole and is pivotally connected to the second leg core.
  • the guide member is provided with a through hole
  • the eyeglass leg assembly further includes the temple front hinge
  • the temple front hinge includes:
  • the hinge ear extends into the through hole and is pivotally connected with the first connecting end.
  • a limiting portion is convexly formed on the guide, and the limiting portion extends forward from an end of the guide away from the temple body.
  • an end of the temple body near the guide member is provided with an accommodating cavity, the second leg core is accommodated in the accommodating cavity, the second leg core may be along the temple body Elastic expansion and contraction in the length direction.
  • the second connecting end extends into the accommodating cavity and is pivotally connected with the second leg core.
  • the second leg core includes:
  • the fixing piece is tightly connected with the main body of the temple;
  • the movable part is movably connected with the fixed part, the movable part can reciprocate along the length direction of the temple body, and the front end of the movable part is provided with a pivot hole, and the pivot hole is provided for the Second pivot penetration;
  • one end of the spring is in contact with the fixed member, and the other end of the spring is in contact with the movable member.
  • the fixed member, the movable member and the spring are distributed along the length direction of the temple body.
  • the movable part includes a hinge head and a spring core rod, the pivot hole is opened at the front end of the hinge head, the spring core rod is tightly connected to the hinge head or integrated with the hinge head In shaping, the spring is sleeved on the spring core rod, and a spring stopper is provided at the end of the spring core rod.
  • the fixing member is a fixed lock block sleeved on the spring core rod, and the fixing member is provided with a screw hole or a pin hole.
  • the movable member includes a frame body, the front end of the frame body is provided with the pivot hole, and the frame body is configured to draw the spring accommodated in the frame body outward of the accommodating cavity ,
  • the fixing member is configured to prevent the spring from being pulled out of the accommodating cavity by the frame body.
  • one end of the fixing member extends into the frame body, the spring is sleeved on the outer periphery of the fixing member and is limited to the frame body, and the other end of the fixing member passes through the frame
  • the rear end of the body is tightly connected with the main body of the temple.
  • the second leg core includes:
  • the movable member is accommodated in the accommodating cavity and can reciprocate along the length direction of the main body of the temple, and a pivot hole is opened at the front end of the movable member;
  • the spring can be pulled out of the accommodating cavity by the movable member, and a blocking portion is provided in the accommodating cavity, and the blocking portion is configured to prevent the spring from being pulled out of the accommodating cavity by the movable member.
  • the present application also provides a pair of glasses, including a frame and lenses, the frame includes:
  • a spectacle frame surrounding the outer periphery of the lens and
  • Spectacle arm assembly including:
  • the first leg core includes a first connection end and a second connection end disposed oppositely;
  • the second leg core is elastically connected to the temple body, and is configured to provide an elastic force transmitted along the length of the temple body;
  • a first pivot which is arranged to connect the first connecting end and the front hinge of the head or temple of the spectacle frame;
  • a second pivot which is perpendicular to the first pivot and is arranged to connect the second connecting end and the second leg core;
  • the guide member is sleeved on the outer periphery of the first leg core and elastically abuts the temple body, and is configured to define a swing position and a swing direction of the temple body.
  • the eyeglass leg assembly of the present application cooperates with the first leg core and the guide, and the first leg core and the second leg core cooperate with the guide and the temple body, so that the guide acts to define the swing direction of the temple and The role of the swing position, when the temple is subjected to the load in two different directions, elastic bending or elastic swing is generated at different positions on the temple. While slowing or eliminating the bad load on the temples in the vertical direction, it also increases the service life of the most important hinge shaft on the temples, effectively solving the technical problem that the temples cannot bear vertical loads and preventing the temples Unexpected deformation occurs; and it avoids the feeling of random shaking caused by elastic bending or elastic swing in two directions at the same part of the frame.
  • FIG. 1 is a partial exploded schematic view of a temple arm assembly provided in Embodiment 1 of this application;
  • FIG. 2 is a partial perspective exploded schematic view of another angle of the temple assembly provided in Embodiment 1 of the present application;
  • FIG. 3 is a schematic diagram of a working state of the temple assembly provided in Embodiment 1 of the present application.
  • FIG. 4 is a schematic diagram of another working state of the temple assembly provided in Embodiment 1 of the present application.
  • FIG. 5 is a perspective schematic view of a second leg core in the temple arm assembly provided in Embodiment 1 of the present application;
  • FIG. 6 is a schematic diagram of a working state of a temple assembly provided in Embodiment 2 of the present application.
  • FIG. 7 is a schematic diagram of another working state of the temple assembly provided in Embodiment 2 of the present application.
  • FIG. 8 is a three-dimensional exploded schematic view of the temple arm assembly provided in Embodiment 3 of the present application.
  • FIG. 9 is a top cross-sectional form of the temple assembly provided in Embodiment 3 of the present application.
  • FIG. 10 is a partial perspective exploded view of the temple assembly provided in Embodiment 4 of the present application.
  • FIG. 11 is a perspective schematic view of a first leg core and a second leg core in an eyeglass leg assembly provided in Embodiment 4 of this application;
  • FIG. 12 is a partially exploded schematic view of glasses provided by Embodiment 5 of the present application.
  • first, second, etc. are for descriptive purposes only, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features.
  • the features defined as “first” and “second” may explicitly or implicitly include one or more of the features.
  • the meaning of “plurality” is two or more, unless otherwise specifically limited.
  • the spectacle frame 10 includes a spectacle frame 11 and a temple assembly;
  • the temple assembly includes: a temple body 12, a guide 13, a first leg core 14, a second leg core 15, and a first pivot 16.
  • the guide 13 is sleeved around the outer periphery of the first leg core 14, the second leg core 15 is elastically connected to the temple body 12, and provides elastic force transmitted along the length of the temple body 12.
  • the front end of the second leg core 15 is pivotally connected by the second pivot 17, and the front end of the first leg core 14 is connected to the first pivot 16 so that it can be pivotally connected to the eyeglass frame 11;
  • the first leg core 14 is connected to the second leg core 15 to connect the guide 13 and the temple body 12 in series, so that the two elastically abut against each other.
  • the axis of the first pivot 16 is arranged horizontally, and the axis of the second pivot 17 is arranged vertically.
  • the eyeglass frame 11 is provided with a head 110, the guide 13 is sandwiched between the head 110 and the temple body 12, the head 110 includes
  • the temple is connected to the first leg core
  • the end face of the head hinge 111 opposite to the front end face of the guide member abuts against the front end face of the guide member
  • the receiving cavity 120 extends from the end of the temple body 12 and the guide 13 abutting the inside of the temple body 12
  • the second leg core 15 is installed in the accommodating cavity 120, and can elastically expand and contract in the length direction of the temple body 12 in the accommodating cavity.
  • the second leg core 15 is elastically connected to the temple body 12 to provide elastic force transmitted along the longitudinal direction of the temple body 12.
  • first leg core 14 is connected to the second leg core 15 to connect the guide 13 and the temple body 12 in series, and the eyeglass leg assembly is mounted on the eyeglass frame 11, the second leg core 15 and the temple body 12
  • the elastic connection provides the elastic force required for the elastic bending and elastic swing of the temples.
  • the guide 13 is provided with a through hole 130, and the first leg core 14 is inserted into the through hole to form the guide member sleeved on the first leg core
  • the first leg core 14 can reciprocate in the axial direction of the through hole 130; the rear end of the first leg core extends out of the through hole to connect the second leg core 15.
  • the guide 13 is connected in series with the temple body 14
  • the rear end of the first leg core 14 extends into the accommodating cavity 120 and is connected to the second leg core. This means that when the guide 13 is connected in series with the temple body 12, the second pivot 17 is also located in the receiving cavity 120.
  • first leg core 14 and the guide 13 are restricted from relative movement in the vertical direction. That is to say, there is no relative movable gap between the first leg core 14 and the guide 13 in the same direction as the axis direction of the first pivot 16. This makes it possible that if a vertical force is applied to the guide 13, the guide 13 will not have a relative movement with respect to the head 110; thus, when a vertical force is applied to the temple body 12 The elastic bending of the temple only occurs when the guide 13 abuts the mirror body 12, that is, the second leg moves relative to the first leg and the guide around the second pivot.
  • the through hole 130 may also be configured to limit the first leg core 14 to only reciprocate along the axis of the through hole. In addition to the above-mentioned effects, this can also avoid the horizontal orientation of the guide member and the first leg core Shaking.
  • FIG. 2 is a partial exploded schematic view of an embodiment of the present application.
  • FIG. 3 shows a working state of the embodiment of the present application, that is, the temple body 12 and the third installed in the accommodating cavity 120 thereof.
  • the above structure can produce the following effect: After the temple arm assembly is mounted on the eyeglass frame 11, when the temple body 12 receives a horizontal force, the temple is from the front end of the temple including the guide The frame is separated and rotates around the first pivot axis to realize the elastic closing and elastic opening of the temple relative to the eyeglass frame 11, please refer to FIG. 4; when the temple body 12 receives the vertical force, the temple is from the guide It is separated from the temple body and rotates around the second pivot axis, which can slow down or eliminate the load in the vertical direction and prevent the temple body 12 from being accidentally deformed. That is to say, in the structure of the embodiment of the present application, when the temples respond to loads in two different directions, elastic bending or elastic swings are generated at different positions on the temples. When the temples are assembled to the spectacle frame, it avoids The spectacle frame produces the feeling of random shaking caused by elastic bending or elastic swing in two directions at the same location.
  • the guide 13 serves to define the swing direction and swing position of the temple.
  • the second leg core 15 includes a fixing member 151, a movable member 152 and a spring 153, wherein the fixing member 151 is fastened to the temple body 12
  • the movable member 152 is movably connected to the fixed member 151, and the movable member 152 can reciprocate along the length of the temple body 12.
  • the spring 153 is used to drive the movable member 152 to return, that is, the spring 153 applies a pushing force to the movable member 152 to move
  • the piece 152 always maintains the tendency to return to its original position.
  • the movable piece 152, the fixing piece 151, and the spring 153 are distributed along the length of the temple body 12, and one end of the spring 153 abuts the fixing piece 151, and the other end of the spring 153 Contact with the movable piece 152.
  • the elastic connection of the second leg core 15 and the temple body 12 is formed as described above.
  • the front end of the movable member 152 is provided with a pivot hole for pivotally connecting with the second connecting end of the first leg core.
  • the movable member 152 includes a hinge head 1521 and a spring core rod 1522, and the front end of the hinge head is provided with a pivot for pivotally connecting with the second connecting end of the first leg core
  • the shaft hole and the spring core rod 1522 are fixed to the hinge head 1521.
  • the spring core rod may also be integrally formed with the hinge head, and the spring 153 is threaded on the spring core rod 1522, and further includes a spring
  • the stopper 1523 is provided at the end of the spring core rod 1522.
  • the fixing member 151 is a set of fixed lock blocks 1511 provided on the spring core rod 1522, and is provided with screw holes or pin holes for fixing with the temple body 12. One end of the spring 153 abuts against the fixed lock block 1511, and the other end of the spring 153 abuts against the spring stopper 1523.
  • a protrusion 1524 is protrudingly provided on the hinge head 1521.
  • a limiting slot 1512 is formed on the fixing member 151, and the limiting slot 1512 is opposite to the protrusion 1524 It fits, and the protrusion 1524 can extend into the limiting groove 1512 to form a positioning.
  • the temple assembly provided in this embodiment is basically the same as that in the first embodiment. The difference is that: a limit portion 131 is protruded on the end surface of the guide member 13 facing the head 110, specifically In this embodiment, the limiting portion 131 extends forward from the outer edge of the front end surface 121 of the guide 13 to form an outer flange.
  • the limit portion 131 of the guide member abuts against the eyeglass frame 11, which can limit the maximum angle of the temples outwardly reversed.
  • FIG. 6 shows that when the temple body 12 receives a horizontal force, the temple is separated from the frame at the front end of the guide and rotates around the first pivot, which can realize the elastic closing and elasticity of the temple relative to the frame 11 'S opening outwards.
  • the temple assembly provided in this embodiment is basically the same as that in Embodiment 1, except that in this embodiment, the first pivot 16 is vertically distributed, and the second pivot 17 It is horizontally distributed.
  • the eyeglass leg assembly provided in this embodiment is different from the first embodiment in that the eyeglass leg assembly herein further includes a temple front hinge 18, and the temple front hinge 18 includes a hinge ear 181, and the hinge ear 181 is provided as : When the temple arm assembly is assembled, the hinge ear 181 extends into the through hole of the guide 13, and the hinge ear 181 is pivotally connected to the first connecting end 141 of the first leg core 14 in the through hole of the guide 13 , Pivotally connected by the first pivot 16.
  • the first leg core 14 and the second leg core 15 connect the temple front hinge 18 with the guide 13 and the temple body 12 in series, thus forming a
  • the temple when subjected to a vertical load, generates a vertical elastic bending and elastic swing between the guide 13 and the temple front hinge 18; when subjected to a horizontal load, the glasses The legs are elastically bent and elastically swinged between the guide 13 and the temple body 12 in the horizontal direction.
  • the state when the load in the horizontal direction is received includes the normal opening and closing of the temple between the guide 13 and the temple body 12.
  • FIG. 9 shows the normally closed state of the temple of the present embodiment, that is, the state in which the temple body 12 is bent with respect to the guide 13 in the horizontal direction by approximately 90 degrees.
  • the eyeglass leg assembly provided in this embodiment is different from the first embodiment in that the second leg core 15 of the temple arm assembly here does not include the fixing member 151, but it at least includes the movable member 152 and the spring 153,
  • the movable member 152 can reciprocate along the length of the main body of the temple in the accommodating cavity 120, and the spring can be driven by the movable member to be pulled out of the accommodating cavity, and a blocking part is provided in the accommodating cavity to prevent the spring from being pulled out; the movable member 152
  • the front end of the is provided with a pivot hole for pivotally connecting with the second connecting end of the first leg core.
  • the movable member 152 also includes a hinge head 1521 and a spring core rod 1522.
  • the front end of the hinge head 1521 is pivotally connected to the second connecting end 142 of the first leg core 14, here, please Referring to FIG. 9, a cross-sectional view of the temple body 12 shows that, in the receiving cavity 120, a blocking portion 1201 protruding from the peripheral wall of the receiving cavity into the receiving cavity is provided.
  • a blocking portion 1201 protruding from the peripheral wall of the receiving cavity into the receiving cavity is provided.
  • the temple assembly provided in this embodiment is basically the same as that in Embodiment 2.
  • the difference is that the movable member 152 included in the second leg core 15 includes a frame body 1525, and the front end of the frame body is provided. There is a pivot hole for pivotally connecting with the second connecting end of the first leg core, the frame body pulls the spring 153 accommodated therein toward the accommodating cavity 120, and the fixing member 151 prevents it from being pulled outward.
  • the end of the fixing member 151 provided with a spring stopper extends into the frame 1525, the spring 153 penetrates the outer periphery of the fixing member 151, the spring 153 is limited within the frame 1525, the position of the fixing member 151 The other end passes through the groove wall of the frame away from the end provided with the pivot hole and is fixed to the temple body 12. In this way, one end of the spring 153 abuts the groove wall at the rear end of the frame 1525, and the other end of the spring 153 abuts the spring stopper of the end of the fixing member 151 that extends into the frame 1525.
  • the movable member 152 When being pulled by the first leg core, the movable member 152 moves out of the accommodating cavity of the temple body 12, the frame 1525 cooperates with the fixing member to compress the spring 153, and when the external force is eliminated, the spring 153 expands and the movable member 152 is pushed by the spring 153 The top is restored to its original position.
  • an embodiment of the present application further provides a pair of eyeglasses 1 including a frame 10 and a lens 20, wherein the frame 10 includes a frame 11 and the temple assembly described in any embodiment of the present application.
  • the glasses 1 provided by the present application adopt the above-mentioned eyeglass leg assembly, and cooperate with the guide 13 through the first leg core 14 and the first leg core 14 and the second leg core 15 cooperate with the guide 13 and the temple body 12
  • the guide 13 serves to define the swing direction and the swing position of the temple.
  • elastic bending or elastic swing occurs at different positions on the temple. This makes that when the user puts on or takes off the glasses to bring the horizontal load to the temples, the temples are elastically opened and closed between the guide 13 and the head 110; when the user puts on or takes off When the lower glasses put a vertical load on the temples, elastic opening and closing and swinging are generated between the guide 13 and the temple body 12.

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  • Physics & Mathematics (AREA)
  • Health & Medical Sciences (AREA)
  • General Physics & Mathematics (AREA)
  • Ophthalmology & Optometry (AREA)
  • Optics & Photonics (AREA)
  • Eyeglasses (AREA)

Abstract

一种眼镜腿组件和眼镜,眼镜腿组件包括镜腿主体(12)、导向件(13)、第一腿芯(14)、第二腿芯(15)、第一枢轴(16)、第二枢轴(17);第二腿芯(15)与镜腿主体(12)弹性连接,设置为提供沿镜腿主体(12)的长度方向传递的弹力,导向件(13)套设于第一腿芯(14)的外周,第一腿芯(14)包括相对设置的第一连接端(141)和第二连接端(142),第二连接端(142)通过第二枢轴(17)与第二腿芯(15)枢接,第一连接端(141)通过第一枢轴(16)与眼镜框(11)的庄头(110)或镜腿前铰(18)枢接;第一枢轴(16)与第二枢轴(17)呈相互垂直分布;导向件(13)与镜腿主体(12)弹性抵接。当眼镜腿组件在受到两种不同方向的载荷时,在眼镜腿组件上的不同位置产生弹性折弯或摆动,避免了眼镜架(10)在同一部位产生两个方向的弹性摆动所造成随意晃动的感觉。

Description

眼镜腿组件及眼镜 技术领域
本申请属于眼镜的技术领域,更具体地说,是涉及一种眼镜腿组件及眼镜。
背景技术
目前,眼镜通常包括镜框、镜片和镜腿,其中,镜框与镜腿通过弹性铰链连接,实现在水平方向的弹性闭合和弹性张开。但是,人们在戴上或者摘下眼镜时,往往会不经意地给眼镜架带来意外的载荷,特别容易给镜腿施加水平方向之外的力,例如竖直方向的力,这样在人们戴上或者摘下眼镜的多次动作后容易使镜腿产生变形,严重时,影响了眼镜架的美观度和人们佩戴的舒适性。
技术问题
本申请的目的在于提供一种眼镜腿组件及眼镜,包括但不限于解决镜腿承受竖直方向载荷会使得眼镜架产生不可恢复的变形的技术问题。
技术解决方案
本申请提供了一种眼镜腿组件,包括镜腿主体、导向件、第一腿芯、第二腿芯、第一枢轴、第二枢轴;所述第二腿芯与所述镜腿主体弹性连接,所述第二腿芯设置为提供沿所述镜腿主体的长度方向传递的弹力,所述导向件套设于所述第一腿芯的外周,所述第一腿芯包括相对设置的第一连接端和第二连接端,所述第二连接端通过所述第二枢轴与所述第二腿芯枢接,所述第一连接端通过所述第一枢轴与眼镜框的庄头或眼镜腿前铰枢接;所述第一枢轴与所述第二枢轴呈相互垂直分布;所述导向件与所述镜腿主体弹性抵接。
可选地,所述导向件上开设有通孔,所述第一腿芯穿设于所述通孔内,所述通孔设置为限定所述第一腿芯只能沿所述通孔的轴线作往复移动。
可选地,所述第一腿芯与所述导向件之间被限止在与所述第一枢轴的轴线方向同向的方向有相对的活动。
可选地,所述导向件上开设有通孔,所述第二连接端穿过所述通孔与所述第二腿芯枢接。
可选地,所述导向件上开设有通孔,所述眼镜腿组件还包括所述镜腿前铰,所述镜腿前铰包括:
铰耳,伸入于所述通孔内与所述第一连接端枢接。
可选地,所述导向件上凸设有限位部,所述限位部从所述导向件的远离所述镜腿主体的一端向前延伸。
可选地,所述镜腿主体的靠近所述导向件的一端开设有容纳腔,所述第二腿芯容纳于所述容纳腔内,所述第二腿芯可沿所述镜腿主体的长度方向弹性伸缩。
进一步地,所述第二连接端伸入于所述容纳腔内与所述第二腿芯枢接。
可选地,所述第二腿芯包括:
固定件,与所述镜腿主体紧固连接;
活动件,与固定件活动连接,所述活动件可沿所述镜腿主体的长度方向作往复移动,且所述活动件的前端设置有枢轴孔,所述枢轴孔设置为供所述第二枢轴穿设;以及
弹簧,所述弹簧的一端与所述固定件抵接,所述弹簧的另一端与所述活动件抵接。
进一步地,所述固定件、所述活动件和所述弹簧沿所述镜腿主体的长度方向分布。
进一步地,所述活动件包括铰链头和弹簧芯杆,所述枢轴孔开设于所述铰链头的前端,所述弹簧芯杆紧固连接于所述铰链头上或与所述铰链头一体成形,所述弹簧套设于所述弹簧芯杆上,所述弹簧芯杆的末端设置有弹簧挡头。
进一步地,所述固定件为套设于所述弹簧芯杆上的固定锁块,所述固定件上开设有螺孔或销钉孔。
进一步地,所述活动件包括框体,所述框体的前端设置有所述枢轴孔,所述框体设置为将容置于所述框体内的所述弹簧向所述容纳腔外牵引,所述固定件设置为阻止所述弹簧被所述框体向所述容纳腔外牵引。
进一步地,所述固定件的一端伸入于所述框体内,所述弹簧套设于所述固定件的外周并被限位于所述框体内,所述固定件的另一端穿过所述框体的后端与所述镜腿主体紧固连接。
进一步地,所述第二腿芯包括:
活动件,容纳于所述容纳腔内,并可沿所述镜腿主体的长度方向作往复移动,所述活动件的前端开设有枢轴孔;以及
弹簧,可被所述活动件向所述容纳腔外牵引,所述容纳腔内设置有阻止部,所述阻止部设置为阻止所述弹簧被所述活动件向所述容纳腔外牵引。
本申请还提供了一种眼镜,包括眼镜架和镜片,所述眼镜架包括:
眼镜框,围设于所述镜片的外周;以及
眼镜腿组件,包括:
镜腿主体;
第一腿芯,包括相对设置的第一连接端和第二连接端;
第二腿芯,与所述镜腿主体弹性连接,设置为提供沿所述镜腿主体的长度方向传递的弹力;
第一枢轴,设置为连接所述第一连接端和所述眼镜框的庄头或镜腿前铰;
第二枢轴,与所述第一枢轴呈垂直分布,设置为连接所述第二连接端和所述第二腿芯;以及
导向件,套设于所述第一腿芯的外周,并与所述镜腿主体弹性抵接,设置为限定所述镜腿主体的摆动位置和摆动方向。
有益效果
本申请的眼镜腿组件,通过第一腿芯与导向件配合,以及第一腿芯、第二腿芯与导向件和镜腿主体配合,使得导向件起到用于限定镜腿的摆动方向以及摆动位置的作用,眼镜腿在受到两种不同方向的载荷时,在眼镜腿上的不同的位置产生弹性折弯或弹性摆动。在减缓或者消除竖直方向对眼镜腿的不良载荷的同时,还增加了眼镜腿上最重要的铰轴使用寿命,有效地解决了镜腿无法承受竖直方向载荷的技术问题,防止了镜腿发生意外变形;并且避免了眼镜架在同一部位产生两个方向的弹性折弯或弹性摆动所造成的随意晃动的感觉。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其它的附图。
图1为本申请实施例一提供的眼镜腿组件的局部立体分解示意图;
图2为本申请实施例一提供的眼镜腿组件的另一角度的局部立体分解示意图;
图3为本申请实施例一提供的眼镜腿组件的一种工作状态的示意图;
图4为本申请实施例一提供的眼镜腿组件的另一种工作状态的示意图;
图5为本申请实施例一提供的眼镜腿组件中第二腿芯的立体示意图;
图6为本申请实施例二提供的眼镜腿组件的一种工作状态的示意图;
图7为本申请实施例二提供的眼镜腿组件的另一种工作状态的示意图;
图8为本申请实施例三提供的眼镜腿组件的立体分解示意图;
图9为本申请实施例三提供的眼镜腿组件的俯视剖面形式;
图10为本申请实施例四提供的眼镜腿组件的局部立体分解示意图;
图11为本申请实施例四提供的眼镜腿组件中第一腿芯和第二腿芯的立体示意图;
图12为本申请实施例五提供的眼镜的立体局部分解示意图。
本发明的实施方式
为了使本申请所要解决的技术问题、技术方案及有益效果更加清楚明白,以下结合附图及实施例,对本申请进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本申请,并不用于限定本申请。
需要说明的是,当元件被称为“固定于”或“设置于”另一个元件,它可以直接在另一个元件上或者间接在该另一个元件上。当一个元件被称为是“连接于”另一个元件,它可以是直接连接到另一个元件或间接连接至该另一个元件上。
需要理解的是,术语“长度”、“宽度”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本申请和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本申请的限制。
此外,术语“第一”、“第二”等仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个该特征。在本申请的描述中,“多个”的含义是两个或两个以上,除非另有明确具体的限定。
现对本申请提供的眼镜腿组件及眼镜进行说明。
实施例一:
请参阅图1至图5,眼镜架10包括眼镜框11和眼镜腿组件;眼镜腿组件包括:镜腿主体12、导向件13、第一腿芯14、第二腿芯15,第一枢轴16,第二枢轴17。其中,导向件13套设于第一腿芯14外周,第二腿芯15与镜腿主体12弹性连接,提供沿镜腿主体12的长度方向传递的弹力,第一腿芯14的后端与第二腿芯15的前端由第二枢轴17枢转地连接,第一腿芯14的前端连接第一枢轴16,以使得其可以与眼镜框11枢转地连接;在将所述眼镜腿组件安装到眼镜框11上时,第一腿芯14连接第二腿芯15将导向件13与镜腿主体12串联,使得两者有弹性的紧抵。其中,在本实施例,第一枢轴16的轴线呈水平布置,第二枢轴17的轴线呈垂直布置。
进一步地,请参阅图1至图5,在本申请实施例中,眼镜框11上设有庄头110,导向件13夹设在庄头110和镜腿主体12之间,庄头110包括用于连接第一腿芯的庄头铰耳111,当眼镜腿相对于镜框处于张开状态时,由该庄头铰耳111上的与导向件的前端面相对的端面与导向件的前端面抵顶;在镜腿主体12朝向导向件13的一端,设有容纳腔120,容纳腔120从镜腿主体12的与导向件13抵接的端面向镜腿主体12的内部延伸,第二腿芯15安装在该容纳腔120内,并且可以在该容纳腔中在镜腿主体12的长度方向弹性伸缩。该第二腿芯15与镜腿主体12的弹性连接,提供沿镜腿主体12的长度方向传递的弹力。在第一腿芯14连接第二腿芯15将导向件13与镜腿主体12串联,并将所述眼镜腿组件安装到眼镜框11上时,该第二腿芯15与镜腿主体12的弹性连接,为眼镜腿提供弹性弯折和弹性摆动所需的弹力。
进一步地,请参阅图1至图5,在本申请实施例中,导向件13设有通孔130,第一腿芯14穿设于该通孔中而形成导向件套设于第一腿芯外周,第一腿芯14可以在通孔130的轴线方向往复运动;第一腿芯的后端伸出该通孔连接第二腿芯15。并且,设置成,当导向件13与镜腿主体14串联时,第一腿芯14的后端是伸入到容纳腔120内与第二腿芯连接。这意味着,当导向件13与镜腿主体12串联时,第二枢轴17也是位于容纳腔120内。并且,还设置成,第一腿芯14与导向件13之间被限止在竖直方向有相对的活动。也就是说,第一腿芯14与导向件13之间在与第一枢轴16的轴线方向同向的方向没有相对活动的间隙。这使得,如果将竖直方向的力施加在导向件13上,导向件13相对于庄头110不会产生相对的活动;因而使得,当将竖直方向的力施加在镜腿主体12上时,镜腿发生的弹性弯折,只发生在导向件13与镜体主体12紧抵处,即第二腿芯相对于第一腿芯和导向件而绕第二枢轴转动。
进一步的,也可以将通孔130设置为限定第一腿芯14只能沿该通孔的轴线作往复移动,除了上述的作用,这还可以避免导向件与第一腿芯发生水平方向的相对晃动。
但是,不同于第一腿芯与导向件之间的配合,第一腿芯14伸入到容纳腔120中的部分,与容纳腔的内壁之间在竖直方向需要设置有活动的间隙,以便该伸入的部分能在容纳腔中相对于容纳腔发生初始转动时的小角度的转动,即绕第二枢轴的转动。请参阅图2和图3,图2为本申请实施例的局部立体分解示意图,图3示出本申请实施例的一种工作状态,即镜腿主体12和安装在其容纳腔120中的第二腿芯15一起绕第二枢轴17转动的工作状态;此处,当镜腿主体和安装在其容纳腔中的第二腿芯一起绕第二枢轴转动时,在第二枢轴的一侧,镜腿主体12的前端的一侧边与导向件13的后端面抵顶,当作用在镜腿主体上的外力持续时,使得第二腿芯15的前端被从容纳腔120中拉出,弹簧被压缩,当作用在镜腿主体上的外力还持续,第二腿芯的前端被从容纳腔中拉出更多,并可见到第二枢轴也被拉出容纳腔而伸出镜腿主体12的前端面,镜腿主体12因而可以相对于导向件13以及庄头作出绕第二枢轴的进一步的转动。
上述结构,可以产生下述效果:将所述眼镜腿组件安装到眼镜框11上之后,当镜腿主体12受到水平方向的力时,镜腿,是从包括有导向件的镜腿前端处与镜框分开,绕第一枢轴转动,实现镜腿相对眼镜框11作弹性闭合和弹性张开,这请参见图4;当镜腿主体12受到竖直方向的力时,镜腿是从导向件与镜腿主体紧抵处分开,绕第二枢轴转动,这可以将该竖直方向的载荷减缓或者消除,防止镜腿主体12发生意外变形。也就是说本申请实施例的结构,眼镜腿在应对两种不同方向的载荷时,在镜腿上的不同的位置产生弹性折弯或弹性摆动,当将眼镜腿装配到眼镜框上,避免了眼镜架在同一部位产生两个方向的弹性折弯或弹性摆动所造成的随意晃动的感觉。导向件13起到用于限定镜腿的摆动方向以及摆动位置的作用。
进一步地,请参阅图1、图2、图5,在本申请实施例中,第二腿芯15包括固定件151、活动件152以及弹簧153,其中,固定件151与镜腿主体12紧固连接,活动件152与固定件151活动连接,并且活动件152可以沿镜腿主体12的长度方向作往复移动,弹簧153用于驱使活动件152复位,即弹簧153向活动件152施加推力使活动件152始终保持恢复原始位置的趋势,此处,活动件152、固定件151、弹簧153沿镜腿主体12的长度方向分布,并且弹簧153的一端与固定件151抵接,弹簧153的另一端与活动件152抵接。如上所述形成第二腿芯15与镜腿主体12的弹性连接。活动件152前端设有用于与第一腿芯的第二连接端枢接的枢轴孔。
进一步地,请参阅图5,在本申请实施例中,活动件152包括一铰链头1521和一弹簧芯杆1522,铰链头前端设有用于与第一腿芯的第二连接端枢接的枢轴孔,弹簧芯杆1522固接在铰链头1521上,在本申请其它的实施情形,弹簧芯杆也可以是与铰链头一体成形,弹簧153穿设在弹簧芯杆1522上,还包括一弹簧挡头1523设在弹簧芯杆1522的末端。固定件151为一套设于弹簧芯杆1522的固定锁块1511,其上设有螺孔或者销钉孔用于与镜腿主体12固接。弹簧153的一端与固定锁块1511抵顶,弹簧153的另一端与弹簧挡头1523抵顶。
进一步地,请参阅图5,在本申请实施例中,在铰链头1521上凸设有凸起1524,相应的,在固定件151上开设有限位槽1512,限位槽1512与凸起1524相适配,并且凸起1524可以伸入限位槽1512内形成定位。
实施例二:
请参阅图6和图7,本实施例提供的眼镜腿组件与实施例一的基本一致,不同之处在于:在导向件13的朝向庄头110的一端端面上凸设有限位部131,具体地,在本实施例,限位部131从导向件13的前端面121的外侧边缘向前延伸,形成一外侧凸缘,当包括导向件13和镜腿主体12的眼镜腿,相对眼镜框11处于从正常张开状态向外反开时,由导向件的限位部131与眼镜框11抵顶,这样能限定镜腿向外反开的最大角度。
图6示出了当镜腿主体12受到水平方向的力时,眼镜腿,是从导向件前端处与镜框分开,绕第一枢轴转动,可以实现镜腿相对眼镜框11作弹性闭合和弹性的向外反开。
实施例三:
请参阅图8和图9,本实施例提供的眼镜腿组件与实施例一的基本一致,不同之处在于:在本实施例中,第一枢轴16呈竖直分布,第二枢轴17呈水平分布。
本实施例提供的眼镜腿组件与实施例一的不同之处还在于:此处的眼镜腿组件还包括镜腿前铰18,该镜腿前铰18包括有铰耳181,铰耳181设置成:在装配好该镜腿组件时,铰耳181是伸入到导向件13的通孔内,铰耳181在导向件13的通孔内与第一腿芯14的第一连接端141枢接,由第一枢轴16枢接。这使得,在本实施例中,在装配好该镜腿组件时,第一腿芯14和第二腿芯15将镜腿前铰18与导向件13以及镜腿主体12串联,这样形成的一眼镜腿,在受到竖直方向的载荷时,该眼镜腿是在导向件13与镜腿前铰18之间产生竖直方向的弹性折弯、弹性摆动;在受到水平方向的载荷时,该眼镜腿是在导向件13与镜腿主体12之间产生水平方向的弹性折弯、弹性摆动。在受到水平方向的载荷时的状态包括:在导向件13与镜腿主体12之间产生眼镜腿正常的张开、闭合。请参阅图9,它示出了本实施例的眼镜腿的正常闭合的状态,即镜腿主体12相对于导向件13在水平方向发生接近90度的折弯的状态。
本实施例提供的眼镜腿组件与实施例一的不同之处还在于:此处的镜腿组件其中的第二腿芯15不包括固定件151,但其至少包括有活动件152以及弹簧153,活动件152可以在容纳腔120中沿镜腿主体的长度方向作往复移动,弹簧可以被活动件带动往容纳腔外拉,而容纳腔内设有阻止部,阻止弹簧被往外拉;活动件152的前端设有用于与第一腿芯的第二连接端枢接的枢轴孔。具体的,在本申请实施例中,活动件152也包括一铰链头1521和一弹簧芯杆1522,铰链头1521的前端与第一腿芯14的第二连接端142枢接,此处,请参阅图9,其中镜腿主体12的剖面图示出了,在容纳腔120中,设有一从容纳腔周壁向容纳腔内突伸的阻止部1201,当弹簧芯杆1522穿过该阻止部1201,而固接到铰链头1521上时,弹簧153的一端与该阻止部1201抵顶,弹簧的另一端与弹簧挡头1523抵顶。
实施例四:
请参阅图10和图11,本实施例提供的眼镜腿组件与实施例二的基本一致,不同之处在于:第二腿芯15所包括的活动件152包括框体1525,框体的前端设有用于与第一腿芯的第二连接端枢接的枢轴孔,框体将容置在其中的弹簧153向容纳腔120外拉,固定件151阻止其向外拉。具体的在本实施例,固定件151设有弹簧挡头的一端伸入框体1525内,弹簧153穿设在固定件151的外周,弹簧153被限位在框体1525内,固定件151的另一端穿过框体的远离上述设有枢轴孔的一端的槽壁与镜腿主体12固接。这样一来,弹簧153的一端与框体1525后端的槽壁抵顶,弹簧153的另一端与固定件151的伸入框体1525内一端的弹簧挡头抵接。当受到第一腿芯牵引时,活动件152向镜腿主体12的容纳腔外移动,框体1525与固定件合作压缩弹簧153,当外力消除后,弹簧153伸展,活动件152被弹簧153推顶恢复至原始位置。
实施例五:
请参阅图12,本申请实施例还提供了一种眼镜1,包括眼镜架10和镜片20,其中,眼镜架10包括眼镜框11和本申请任一实施例中所述的眼镜腿组件。
本申请提供的眼镜1,由于采用了上述的眼镜腿组件,通过第一腿芯14与导向件13配合,以及第一腿芯14、第二腿芯15与导向件13和镜腿主体12配合,使得导向件13起到用于限定镜腿的摆动方向以及摆动位置的作用,眼镜腿在受到两种不同方向的载荷时,在镜腿上的不同的位置产生弹性折弯或弹性摆动。这使得,当用户戴上或者摘下眼镜给眼镜腿带来水平方向的载荷时,眼镜腿是在导向件13与庄头110之间产生有弹性的开合、摆动;当用户戴上或者摘下眼镜给眼镜腿带来竖直方向的载荷时,则在导向件13与镜腿主体12之间产生有弹性的开合、摆动。这在减缓或者消除竖直方向对眼镜腿的不良载荷的同时,还增加了眼镜腿上最重要的铰轴使用寿命,即增加了镜腿与镜框连接的第一枢轴的使用寿命。从而有效地解决了镜腿无法承受竖直方向载荷的技术问题,防止了镜腿发生意外变形。再有,重要的是: 将本申请的眼镜腿组件装配到眼镜框上,避免了眼镜架在同一部位产生两个方向的弹性折弯或弹性摆动所造成的随意晃动的感觉。
以上所述仅为本申请的较佳实施例而已,并不用以限制本申请,凡在本申请的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本申请的保护范围之内。

Claims (16)

  1. 眼镜腿组件,其特征在于,包括镜腿主体、导向件、第一腿芯、第二腿芯、第一枢轴、第二枢轴;所述第二腿芯与所述镜腿主体弹性连接,所述第二腿芯设置为提供沿所述镜腿主体的长度方向传递的弹力,所述导向件套设于所述第一腿芯的外周,所述第一腿芯包括相对设置的第一连接端和第二连接端,所述第二连接端通过所述第二枢轴与所述第二腿芯枢接,所述第一连接端通过所述第一枢轴与眼镜框的庄头或眼镜腿前铰枢接;所述第一枢轴与所述第二枢轴呈相互垂直分布;所述导向件与所述镜腿主体弹性抵接。
  2. 如权利要求1所述的眼镜腿组件,其特征在于,所述导向件上开设有通孔,所述第一腿芯穿设于所述通孔内,所述通孔设置为限定所述第一腿芯只能沿所述通孔的轴线作往复移动。
  3. 如权利要求1所述的眼镜腿组件,其特征在于:所述第一腿芯与所述导向件之间被限止在与所述第一枢轴的轴线方向同向的方向有相对的活动。
  4. 如权利要求1所述的眼镜腿组件,其特征在于,所述导向件上开设有通孔,所述第二连接端穿过所述通孔与所述第二腿芯枢接。
  5. 如权利要求1所述的眼镜腿组件,其特征在于,所述导向件上开设有通孔,所述眼镜腿组件还包括所述镜腿前铰,所述镜腿前铰包括:
    铰耳,伸入于所述通孔内与所述第一连接端枢接。
  6. 如权利要求1所述的眼镜腿组件,其特征在于,所述导向件上凸设有限位部,所述限位部从所述导向件的远离所述镜腿主体的一端向前延伸。
  7. 如权利要求1所述的眼镜腿组件,其特征在于,所述镜腿主体的靠近所述导向件的一端开设有容纳腔,所述第二腿芯容纳于所述容纳腔内,所述第二腿芯可沿所述镜腿主体的长度方向弹性伸缩。
  8. 如权利要求7所述的眼镜腿组件,其特征在于,所述第二连接端伸入于所述容纳腔内与所述第二腿芯枢接。
  9. 如权利要求1所述的眼镜腿组件,其特征在于,所述第二腿芯包括:
    固定件,与所述镜腿主体紧固连接;
    活动件,与固定件活动连接,所述活动件可沿所述镜腿主体的长度方向作往复移动,且所述活动件的前端设置有枢轴孔,所述枢轴孔设置为供所述第二枢轴穿设;以及
    弹簧,所述弹簧的一端与所述固定件抵接,所述弹簧的另一端与所述活动件抵接。
  10. 如权利要求9所述的眼镜腿组件,其特征在于,所述固定件、所述活动件和所述弹簧沿所述镜腿主体的长度方向分布。
  11. 如权利要求9所述的眼镜腿组件,其特征在于,所述活动件包括铰链头和弹簧芯杆,所述枢轴孔开设于所述铰链头的前端,所述弹簧芯杆紧固连接于所述铰链头上或与所述铰链头一体成形,所述弹簧套设于所述弹簧芯杆上,所述弹簧芯杆的末端设置有弹簧挡头。
  12. 如权利要求11所述的眼镜腿组件,其特征在于,所述固定件为套设于所述弹簧芯杆上的固定锁块,所述固定件上开设有螺孔或销钉孔。
  13. 如权利要求9所述的眼镜腿组件,其特征在于,所述活动件包括框体,所述框体的前端设置有所述枢轴孔,所述框体设置为将容置于所述框体内的所述弹簧向所述容纳腔外牵引,所述固定件设置为阻止所述弹簧被所述框体向所述容纳腔外牵引。
  14. 如权利要求13所述的眼镜腿组件,其特征在于,所述固定件的一端伸入于所述框体内,所述弹簧套设于所述固定件的外周并被限位于所述框体内,所述固定件的另一端穿过所述框体的后端与所述镜腿主体紧固连接。
  15. 如权利要求7所述的眼镜腿组件,其特征在于,所述第二腿芯包括:
    活动件,容纳于所述容纳腔内,并可沿所述镜腿主体的长度方向作往复移动,所述活动件的前端开设有枢轴孔;以及
    弹簧,可被所述活动件向所述容纳腔外牵引,所述容纳腔内设置有阻止部,所述阻止部设置为阻止所述弹簧被所述活动件向所述容纳腔外牵引。
  16. 眼镜,包括眼镜架和镜片,其特征在于,所述眼镜架包括:
    眼镜框,围设于所述镜片的外周;以及
    眼镜腿组件,包括:
    镜腿主体;
    第一腿芯,包括相对设置的第一连接端和第二连接端;
    第二腿芯,与所述镜腿主体弹性连接,设置为提供沿所述镜腿主体的长度方向传递的弹力;
    第一枢轴,设置为连接所述第一连接端和所述眼镜框的庄头或镜腿前铰;
    第二枢轴,与所述第一枢轴呈垂直分布,设置为连接所述第二连接端和所述第二腿芯;以及
    导向件,套设于所述第一腿芯的外周,并与所述镜腿主体弹性抵接,设置为限定所述镜腿主体的摆动位置和摆动方向。
PCT/CN2019/071437 2019-01-11 2019-01-11 眼镜腿组件及眼镜 WO2020143047A1 (zh)

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US16/618,186 US11187919B2 (en) 2019-01-11 2019-01-11 Temple assembly for spectacles and the spectacles
BR112020022799-4A BR112020022799A2 (pt) 2019-01-11 2020-01-08 conjunto de hastes para óculos e par de óculos
PCT/CN2020/070830 WO2020143650A1 (zh) 2019-01-11 2020-01-08 眼镜腿组件及眼镜
GB2015376.3A GB2586401B (en) 2019-01-11 2020-01-08 Temple assembly for spectacles and spectacles
EP20738943.8A EP3767372B1 (en) 2019-01-11 2020-01-08 Glasses temple assembly and glasses
RU2020135632A RU2770296C1 (ru) 2019-01-11 2020-01-08 Дужка в сборе для очков и очки
CN202080002056.4A CN111902766B (zh) 2019-01-11 2020-01-08 眼镜腿组件及眼镜
AU2020205779A AU2020205779B2 (en) 2019-01-11 2020-01-08 Glasses temple assembly and glasses
US17/342,009 US11372262B2 (en) 2019-01-11 2021-06-08 Temple assembly for spectacles and spectacles

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