WO2022037035A1 - 应用于眼镜的新型眼镜脚组件 - Google Patents

应用于眼镜的新型眼镜脚组件 Download PDF

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Publication number
WO2022037035A1
WO2022037035A1 PCT/CN2021/078632 CN2021078632W WO2022037035A1 WO 2022037035 A1 WO2022037035 A1 WO 2022037035A1 CN 2021078632 W CN2021078632 W CN 2021078632W WO 2022037035 A1 WO2022037035 A1 WO 2022037035A1
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WIPO (PCT)
Prior art keywords
arc
connector
shaped
face
glasses
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PCT/CN2021/078632
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English (en)
French (fr)
Inventor
谢荣周
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温州市瑞麟眼镜有限公司
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Application filed by 温州市瑞麟眼镜有限公司 filed Critical 温州市瑞麟眼镜有限公司
Publication of WO2022037035A1 publication Critical patent/WO2022037035A1/zh

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    • 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

Definitions

  • the utility model relates to spectacles, in particular to a novel spectacle leg assembly applied to the spectacles.
  • Spectacles are lens lenses embedded in a frame that are worn in front of the eyes to improve vision, protect the eyes, or for decorative purposes. It can correct a variety of vision problems, including nearsightedness, farsightedness, astigmatism, presbyopia or strabismus, and amblyopia.
  • a pair of glasses is composed of a lens frame and two temples.
  • the temples are connected to the lens frame and the temples can be folded relative to the lens frame.
  • the temples are made of Elastic temples.
  • the utility model proposes a novel spectacle leg assembly applied to spectacles, which solves the above problems existing in the use process in the prior art.
  • a new type of temple assembly applied to glasses including a spring movement, a frame connector for connecting the frame and a temple connector for connecting the temple, the spring movement is arranged on the temple connector, and it is characterized in that: the frame A pivot block is installed between the connector and the mirror foot connector, and the mirror frame connector, the central block and the mirror foot connector are arranged against each other in turn, and the three are connected into one through the spring movement.
  • the pivot block has a movable slot, so The mirror frame connecting piece can rotate in multiple directions along the movable slot of the central block, the spring movement includes a telescopic piece with elastic function, and the deformed mirror frame connecting piece can be reset to the original state through the telescopic piece.
  • the temple connecting piece has a through cavity
  • the spring movement further includes a sliding rod
  • the sliding rod is arranged in the through cavity and protrudes to form a connecting end
  • the central block has a first movable groove and a first movable groove and a second sliding rod.
  • Two movable grooves, the first movable groove and the second movable groove intersect to form a communication area
  • the mirror frame connector has a connection protrusion
  • the connecting end of the sliding rod extends from the second movable groove of the pivot block to the communication area
  • the mirror frame The connecting protrusion of the connecting piece extends from the first movable groove of the pivot block to the communicating area and is connected with the connecting end to form a rotating fulcrum.
  • the connecting end has an arc-shaped notch and a positioning protrusion, a hook-shaped connecting end formed by the arc-shaped notch and the positioning protrusion, the connecting protrusion is provided with a positioning slot hole, and the positioning slot hole is machined with a hook-shaped connecting end.
  • the arc-shaped convex surface when the connecting end is matched with the positioning slot hole of the connecting convex block, the arc-shaped notch is fitted on the arc-shaped convex surface.
  • the connecting protrusion of the frame connector has at least one arc-shaped contact end surface, and the center of the arc-shaped conflict end surface and the positioning slot is an eccentric structure.
  • the frame connector When the frame connector is stressed, the frame connector will move along the first A movable groove is active, and in this state, the arc-shaped interference end face and the end face of the first movable groove are in linear contact, so as to realize the reset function when the external force is lost.
  • the frame connector is automatically reset in both directions.
  • the temple connector has an adapting platform, the adapting platform abuts against the lower end surface of the central block, and the lower end surface of the central block at least has a circular arc transition end surface and a right-angle transition end surface.
  • the adapting platform has a side stop which is in contact with the arc transition end surface, and the side stop is obliquely arranged.
  • the lower end face of the central block has a right-angled transition end face, and the right-angled transition end face and the arc transition end face are located on opposite sides of the lower end face of the central block.
  • the first movable groove and the second movable groove of the central block are arranged in a 90-degree form.
  • the frame connector has an upper sliding platform
  • the upper sliding platform has two arc-shaped side walls
  • the corresponding central block has an arc-shaped upper end surface
  • the side walls are attached to the arc-shaped upper end surface and interfere with each other.
  • a spring core is used to connect the three components of the mirror frame connector, the central block and the mirror foot connector, and under the spring tension of the spring of the spring core, the three components are connected as a whole and the force is connected to the mirror frame.
  • a spring hinge that can make the mirror frame connector part rotate to 90° in four directions when the rear part of the mirror frame connector is pulled, and can make the mirror frame connector part spring back to its original position when there is no force on the rear part of the mirror frame connector.
  • this solution has the following characteristics:
  • the spring hinge is designed through the eccentric design of the arc-shaped contact end faces on both sides of the mirror frame connector connecting bump and the hole position of the positioning slot, and the unique structure of the central block and the ingenious combination of the mirror foot connector allow the spring mechanism.
  • One spring of the core achieves the effect that only two springs can achieve.
  • this scheme has a simple structure, and through a simple design, it can realize rapid and multi-faceted rotation, further simplify the difficulty of assembly, further reduce costs, and achieve diversification in functions.
  • FIG. 1 is an overall schematic diagram of a new type of temple assembly
  • Fig. 2 is the structural representation of the front view direction of Fig. 1;
  • Fig. 3 is the structural representation of the side view direction of Fig. 1;
  • Fig. 4 is the exploded structure schematic diagram of Fig. 1;
  • FIG. 5 is a schematic structural diagram of a mirror frame connector
  • Fig. 6 is the structural representation of the central block
  • FIG. 7 is a schematic diagram of the deformation structure under the action of the E-direction force in FIG. 1;
  • FIG. 8 is a lateral structural schematic view of FIG. 7;
  • FIG. 9 is a schematic diagram of the deformation structure under the action of the F-direction force in FIG. 1;
  • Fig. 10 is the side structure schematic diagram of Fig. 9;
  • FIG. 11 is a schematic diagram of the deformation structure under the action of the H-direction force in FIG. 1;
  • FIG. 12 is a lateral structural schematic diagram of FIG. 11 ;
  • Figure 13 is a schematic diagram of the deformation structure under the action of the G direction force in Figure 1;
  • FIG. 14 is a lateral structural schematic view of FIG. 13 .
  • the present invention discloses a novel temple assembly for glasses, including a spring core 5 , a frame connector 4 for connecting the frame, and a temple connector 1 for connecting the temple.
  • the role of the mirror frame connector 4 to connect the mirror frame is the pile head.
  • the pile head of this solution does not need to be provided with a spring.
  • the mirror foot connector 1 is used to connect the mirror foot to make it rotate.
  • the spring movement 5 is arranged on the mirror foot connector 4, a pivot block 2 is installed between the mirror frame connector 1 and the mirror foot connector 4, the mirror frame connector 1, the central block 2 and the mirror foot connector 4 are set against each other in turn, and the three are connected by a spring core 5.
  • the central block 2 has a movable notch, and the frame connecting piece can rotate in multiple directions along the movable notch of the central block. Spring, the deformed frame connector can be reset to the original state through the telescopic part, and Figure 1 is the initial state of the product.
  • the temple connector 4 has a through cavity, and the spring movement also includes a sliding rod.
  • the sliding rod is arranged in the through cavity and protrudes to form a connecting end 3.
  • the central block 2 has a first movable rod.
  • the slot A and the second movable slot B, the first movable slot A and the second movable slot B intersect to form a communicating area 2-2, the frame connector 1 has a connecting bump 1-7, the connecting end of the sliding rod 3.
  • the connecting bumps 1-7 of the frame connector extend from the first movable slot A of the pivot block to the communication section 2-2 and the connecting end They are connected to form a rotating fulcrum, so that the three components of the mirror frame connector 1, the central block 2 and the mirror foot connector 4 are assembled into a whole.
  • One end of the telescopic member 8 is generally installed on the end 12 of the sliding rod, and the other end is against the outer shell 13 of the temple connector 4. If the sliding rod is pulled upwards, the spring will be compressed, and a restoring force will be generated according to the characteristics of the spring.
  • the function of the first movable slot A is to allow the mirror frame connector 1 to rotate under the action of the force through the connecting bumps 1-7 provided by it, that is, the H and G directions shown in Figure 1, please refer to Figure 11- 14;
  • the function of the second movable slot B is that the frame connector 1 and the pivot block are integrated, and rotate along the directions of E and F. Referring to Figure 7-10, the effect that a single spring movement can rotate in multiple directions is realized.
  • the design is relatively unique, which is based on the cooperation between the connection bumps 1-7 and the connection terminal 3 as a fulcrum.
  • the connecting end has an arc-shaped notch 3-1 and a positioning protrusion, a hook-shaped connecting end formed by the arc-shaped notch 3-1 and the positioning protrusion, and the connecting protrusion is provided with a positioning slot hole 1- 4.
  • An arc-shaped convex surface is processed in the positioning slot hole.
  • connection bumps 1-7 of the mirror frame connector 1 have at least one arc-shaped abutting end surface 1-6, and the arc-shaped abutting end surface 1-6 and the center of the positioning slot hole are eccentric structures.
  • the frame connector will move along the first movable groove. In this state, the arc-shaped contact end face and the end face of the first movable groove are in linear contact to realize the reset function when the external force is lost.
  • the characteristic of the eccentric structure is that it is inclined on one side. When the spring movement is combined with this scheme, it can be quickly pulled back to the original state, and it does not need to be stressed.
  • two arc-shaped conflicting end surfaces 1-6 are provided, wherein the bottom surface 2-3 of the first movable groove is a 180-degree plane, and the connecting bump of the mirror frame connector is movable in the first movable groove, The mirror frame connector is automatically reset in two directions by setting the arc-shaped contact end surface to realize rotation in two directions.
  • the mirror foot connector has an adapting platform 7, and this adapting platform 7 abuts against the lower end face of the described pivot block, and the lower end face of the pivot block has at least one arc transition end face C and right angle transition end face D.
  • the adapting platform has a side stop 6 which is in contact with the arc transition end surface, and the side stop is obliquely arranged.
  • the right-angle transition end face and the arc transition end face are located on opposite sides of the lower end face of the central block. Since the movement is in the direction of the second movable slot B, but the temples generally need to be folded when they are stored, this scheme designs a right-angle transition end face D, which can be under the action of force without automatic reset.
  • the purpose of the arc transition end face C is to allow it to quickly and automatically reset, and then use the addition of an oblique side stop to further achieve rapid return. Both sides of the first movable slot and the second movable slot can be rotated 90°.
  • the first movable slot and the second movable slot of the central block are arranged in the form of 90 degrees. This solution can achieve 90° rotation in four directions.
  • the mirror frame connector has an upper sliding platform 1-2, the upper sliding platform 1-2 has two arc-shaped side walls 1-3, and the corresponding central block has an arc-shaped upper end surface 2-1, and the side walls fit together.
  • the upper end faces of the arc are in conflict with each other. The solution further ensures the reliability and smooth operation of the frame connector.
  • the mirror frame connector 1 is in the first movable slot A of the central block component to connect the fulcrum of the connection between the projections 1-7 and the connecting end 3, and rotate 90° along both sides of the slot.
  • the part is under the tensile force of the spring 8, because the center of the hole of the positioning slot 1-4 of the frame connector 1 part and the arc on both sides of the arc-shaped contact end surface 1-6 part are eccentric, and the spring movement is eccentric. It automatically bounces back to its original position under the applied force.

Abstract

一种应用于眼镜的眼镜脚组件,包括弹簧机芯(5)、用于连接镜框的镜框连接件(1)以及用于连接镜脚的镜脚连接件(4),弹簧机芯(5)设于镜脚连接件(4)上,其特征在于:镜框连接件(1)与镜脚连接件(4)之间安装有中枢块(2),镜框连接件(1)、中枢块(2)与镜脚连接件(4)依次相互抵靠设置,三者且通过弹簧机芯(5)连接成一体,中枢块(2)具有活动槽口,镜框连接件(1)相可沿着中枢块(2)的活动槽口多方向旋转,弹簧机芯(5)包括具有弹性功能的伸缩件(8),形变的镜框连接件(1)通过伸缩件(8)可复位至原来状态。弹簧机芯(5)的一个弹簧达到了两个弹簧才能达到的效果,实现可以快速多方向旋转,进一步简化装配的难度,也进一步的减少成本,功能上实现多样化。

Description

应用于眼镜的新型眼镜脚组件 技术领域
本实用新型涉及眼镜,特别是应用于眼镜的新型眼镜脚组件。
背景技术
眼镜是镶嵌在框架内的透镜镜片,戴在眼睛前方,以改善视力、保护眼睛或作装饰用途。可矫正多种视力问题,包括近视、远视、散光、老花或斜视、弱视等。
一副眼镜均由镜片框架和两个眼镜脚组成,眼镜脚连接在镜片框架上并且眼镜脚能够相对镜片框架形成折叠,在此基础,为了穿戴舒适性和防止眼镜脚折断,眼镜脚都做成具有弹性的眼镜脚。弹性眼镜脚有两大类实现方式:一种是采用眼镜脚和镜片框架直接采用螺钉或者铆钉进行铰接连接,但是眼镜脚本身采用具有弹性的材料制成,这样可以最大程度的活动眼镜脚,增加穿戴的舒适性;第二种是眼镜脚和和镜片框架之间设置铰链组件,通过铰链组件内的铰接连接和弹性结构实现360度的转动,来增加穿戴的舒适性。
其他360°弹簧都是弹簧腿处有一个弹簧,桩头处一个弹簧,两个弹簧组成才能达到本弹簧铰链的效果。如公司之前申请的专利号201921667876.6,专利名称为一种眼镜脚组件,针对上述问题,本实用新型进行改进。
实用新型内容
本实用新型提出应用于眼镜的新型眼镜脚组件,解决了现有技术中使用过程中存在的上述问题。
本实用新型的技术方案是这样实现的:
应用于眼镜的新型眼镜脚组件,包括弹簧机芯、用于连接镜框的镜框连接件以及用于连接镜脚的镜脚连接件,弹簧机芯设于镜脚连接件上,其特征在于:镜框连接件与镜脚连接件之间安装有中枢块,镜框连接件、中枢块与镜脚连接件依次相互抵靠设置,三者且通过弹簧机芯连接成一体,中枢块具有活动槽口,所述镜框连接件相可沿着中枢块的活动槽口多方向旋转,所述的弹簧机芯包括具有弹性功能的伸缩件,形变的镜框连接件通过伸缩件可复位至原来状态。
优选地,所述的镜脚连接件开有通腔,弹簧机芯还包括有滑杆,该滑杆设于通腔中并伸出形成有连接端头,中枢块具有第一活动槽和第二活动槽,第一活动槽和第二活动槽相交形成有相通区,所述的镜框连接件具有连接凸块,滑杆的连接端头从中枢块的第二活动槽伸到相通区,镜框连接件的连接凸块从中枢块的第一活动槽伸到相通区与所述连接端头相连 接,形成旋转支点。
优选地,所述的连接端头具有弧形槽口以及定位凸起,弧形槽口以及定位凸起构成的钩状连接端头,连接凸块开有定位槽孔,定位槽孔内加工有弧形凸面,连接端头与连接凸块的定位槽孔配合时,所述的弧形槽口贴合在弧形凸面上。
优选地,镜框连接件的连接凸块至少有一个弧形抵触端面,该弧形抵触端面与定位槽孔的中心为偏心结构,在所述镜框连接件受力时,镜框连接件会沿着第一活动槽活动,该状态下所述弧形抵触端面与所述第一活动槽端面是线性接触,实现在失去外力作用时复位功能。
优选地,所述的弧形抵触端面设置有两个,其中所述第一活动槽底面为180度平面,镜框连接件的连接凸块活动在述第一活动槽内,通过设置弧形抵触端面该镜框连接件双向自动复位。
优选地,镜脚连接件具有适配平台,该适配平台与所述的中枢块下端面抵靠,中枢块的下端面至少有一个圆弧过渡端面和直角过渡端面。
优选地,所述的适配平台具有与圆弧过渡端面相接触的侧挡台,该侧挡台呈斜状设置。
优选地,中枢块的下端面具有直角过渡端面,直角过渡端面和圆弧过渡端面处于中枢块的下端面两对面。
优选地,中枢块的第一活动槽和第二活动槽呈90度形式设置。
优选地,所述的镜框连接件具有上滑行平台,该上滑行平台具有两个呈弧状的侧壁,对应的中枢块具有弧形上端面,侧壁贴合在弧形上端面相互抵触。
通过上述方案,由一个弹簧机芯连接三个部件镜框连接件、中枢块与镜脚连接件,在弹簧机芯的弹簧的弹簧拉力下,使三个部件连接成一个整体当作用力在镜框连接件的尾部时,可以使镜框连接件部件能够向四个方向转动到90°,当镜框连接件的尾部没有作用力时,又可以使镜框连接件部件弹回到原位的弹簧铰链。
与现有技术相比,本方案具有以下特点:
1、本弹簧铰链经过经过镜框连接件连接凸块上的两边弧形抵触端面与定位槽孔的孔位的偏心设计,在中枢块的独有结构与镜脚连接件的巧妙结合下让弹簧机芯的一个弹簧达到了两个弹簧才能达到的效果。
2、由于桩头处没有弹簧,使本款弹簧铰链可以更好的配合各种眼镜框架。
综上可知,本方案结构简单,通过简单的设计,实现可以快速多方面的旋转,进一 步简化装配的难度,也进一步的减少成本,功能上实现多样化。
附图说明
为了更清楚地说明本实用新型实施例或现有技术中的技术方案,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实用新型的一些实施例,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他的附图。
图1为新型眼镜脚组件的整体示意图;
图2为图1正视方向的结构示意图;
图3为图1侧视方向的结构示意图;
图4为图1的爆炸结构示意图;
图5为镜框连接件的结构示意图;
图6为中枢块的结构示意图;
图7为图1中E方向力作用下的形变结构示意图;
图8为图7的侧向的结构示意图;
图9为图1中F方向力作用下的形变结构示意图;
图10为图9的侧向的结构示意图;
图11为图1中H方向力作用下的形变结构示意图;
图12为图11的侧向的结构示意图;
图13为图1中G方向力作用下的形变结构示意图;
图14为图13的侧向的结构示意图。
具体实施方式
下面将结合本实用新型实施例中的附图1-14,对本实用新型实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本实用新型一部分实施例,而不是全部的实施例。基于本实用新型中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本实用新型保护的范围。
实施例
如图1至图14所示,本实用新型公开了应用于眼镜的新型眼镜脚组件,包括弹簧机芯5、用于连接镜框的镜框连接件4以及用于连接镜脚的镜脚连接件1,
镜框连接件4连接镜框的作用即桩头,本方案的桩头内不需要设置弹簧,镜脚连接件1作为连接镜脚以让其实现旋转的需求,弹簧机芯5设于镜脚连接件4上,镜框连接件1与镜脚连 接件4之间安装有中枢块2,镜框连接件1、中枢块2与镜脚连接件4依次相互抵靠设置,三者且通过弹簧机芯5连接成一体,中枢块2具有活动槽口,所述镜框连接件相可沿着中枢块的活动槽口多方向旋转,所述的弹簧机芯包括具有弹性功能的伸缩件8,伸缩件8一般采用弹簧,形变的镜框连接件通过伸缩件可复位至原来状态,其中图1为本产品的初始状态。
具体地,所述的镜脚连接件4开有通腔,弹簧机芯还包括有滑杆,该滑杆设于通腔中并伸出形成有连接端头3,中枢块2具有第一活动槽A和第二活动槽B,第一活动槽A和第二活动槽B相交形成有相通区2-2,所述的镜框连接件1具有连接凸块1-7,滑杆的连接端头3从中枢块的第二活动槽B伸到相通区2-2,镜框连接件的连接凸块1-7从中枢块的第一活动槽A伸到相通区2-2与所述连接端头相连接,形成旋转支点,使镜框连接件1、中枢块2与镜脚连接件4三个部件组装成一个整体。伸缩件8一般是一端安装在滑杆的末端12上,另一端抵触在镜脚连接件4壳体13外,如果滑杆向上拉会压缩弹簧,根据弹簧的特性,产生一个回复的力。
第一活动槽A的作用是让镜框连接件1在通过其设置的连接凸块1-7实现在力的作用下发生旋转,即图1中所示的H和G方向,可参考图11-14的示意;第二活动槽B的作用是镜框连接件1和中枢块为一体,沿着E和F方向旋转,参考图7-10,实现了单个弹簧机芯即可多方向旋转的效果,设计比较独特,其依据的是以连接凸块1-7与连接端头3的配合作为支点。
其中,所述的连接端头具有弧形槽口3-1以及定位凸起,弧形槽口3-1以及定位凸起构成的钩状连接端头,连接凸块开有定位槽孔1-4,定位槽孔内加工有弧形凸面,连接端头与连接凸块的定位槽孔配合时,所述的弧形槽口3-1贴合在弧形凸面上,使用该结构目的是保证旋转时,利用圆弧的设计以及其特点,实现旋转的顺畅以及运行的可靠性。
镜框连接件1的连接凸块1-7至少有一个弧形抵触端面1-6,该弧形抵触端面1-6与定位槽孔的中心为偏心结构,在所述镜框连接件受力时,镜框连接件会沿着第一活动槽活动,该状态下所述弧形抵触端面与所述第一活动槽端面是线性接触,实现在失去外力作用时复位功能,偏心结构的特性是在倾斜一方时,结合本方案的弹簧机芯其是可以快速拉回原来的状态,而且不需要受力。
进一步的,所述的弧形抵触端面1-6设置有两个,其中所述第一活动槽底面2-3为180度平面,镜框连接件的连接凸块活动在述第一活动槽内,通过设置弧形抵触端面该镜框连接件双向自动复位,实现两个方向的旋转。
镜脚连接件具有适配平台7,该适配平台7与所述的中枢块下端面抵靠,中枢块的下 端面至少有一个圆弧过渡端面C和直角过渡端面D。所述的适配平台具有与圆弧过渡端面相接触的侧挡台6,该侧挡台呈斜状设置。其中,直角过渡端面和圆弧过渡端面处于中枢块的下端面两对面。由于运动在第二活动槽B方向,但是眼镜脚一般在收纳时需要折叠,故本方案设计了直角过渡端面D,其可以在受力作用下,不会发生自动复位,具体可以参考图9-图10,而圆弧过渡端面C的目的是让其能快速自动复位,再利用增设呈斜状的侧挡台,进一步的实现快速回位。均可沿着第一活动槽和第二活动槽的两边旋转90°。
中枢块的第一活动槽和第二活动槽呈90度形式设置。该方案可以实现四个方向90°的旋转。
所述的镜框连接件具有上滑行平台1-2,该上滑行平台1-2具有两个呈弧状的侧壁1-3,对应的中枢块具有弧形上端面2-1,侧壁贴合在弧形上端面相互抵触。通过该方案进一步保证了镜框连接件运行的可靠性和顺畅。
本方案的工作原理为:
1、镜框连接件1在中枢块部件的第一活动槽A以连接凸块1-7和连接端头3的连接处的支点,沿着槽的两边转动90°,当镜框连接件1尾部没有作用力时部件在弹簧8的拉伸力下,由于镜框连接件1部件的定位槽孔1-4的孔中心与弧形抵触端面1-6部件的两边圆弧是偏心的,在弹簧机芯的作用力下使其自动弹回原来位置。
2、当作用G方向时,会向前压到90°时,由于中枢块的D处为直角即不设置成圆弧的即可,使其可以定位在90°,该状态一般是在收纳镜脚时。
以上所述仅为本实用新型的较佳实施例而已,并不用以限制本实用新型,凡在本实用新型的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本实用新型的保护范围之内。

Claims (10)

  1. 应用于眼镜的新型眼镜脚组件,包括弹簧机芯、用于连接镜框的镜框连接件以及用于连接镜脚的镜脚连接件,弹簧机芯设于镜脚连接件上,其特征在于:镜框连接件与镜脚连接件之间安装有中枢块,镜框连接件、中枢块与镜脚连接件依次相互抵靠设置,三者且通过弹簧机芯连接成一体,中枢块具有活动槽口,所述镜框连接件相可沿着中枢块的活动槽口多方向旋转,所述的弹簧机芯包括具有弹性功能的伸缩件,形变的镜框连接件通过伸缩件可复位至原来状态。
  2. 根据权利要求1所述应用于眼镜的新型眼镜脚组件,其特征在于:所述的镜脚连接件开有通腔,弹簧机芯还包括有滑杆,该滑杆设于通腔中并伸出形成有连接端头,中枢块具有第一活动槽和第二活动槽,第一活动槽和第二活动槽相交形成有相通区,所述的镜框连接件具有连接凸块,滑杆的连接端头从中枢块的第二活动槽伸到相通区,镜框连接件的连接凸块从中枢块的第一活动槽伸到相通区与所述连接端头相连接,形成旋转支点。
  3. 根据权利要求2所述应用于眼镜的新型眼镜脚组件,其特征在于:所述的连接端头具有弧形槽口以及定位凸起,弧形槽口以及定位凸起构成的钩状连接端头,连接凸块开有定位槽孔,定位槽孔内加工有弧形凸面,连接端头与连接凸块的定位槽孔配合时,所述的弧形槽口贴合在弧形凸面上。
  4. 根据权利要求3所述应用于眼镜的新型眼镜脚组件,其特征在于:镜框连接件的连接凸块至少有一个弧形抵触端面,该弧形抵触端面与定位槽孔的中心为偏心结构,在所述镜框连接件受力时,镜框连接件会沿着第一活动槽活动,该状态下所述弧形抵触端面与所述第一活动槽端面是线性接触,实现在失去外力作用时复位功能。
  5. 根据权利要求4所述应用于眼镜的新型眼镜脚组件,其特征在于:所述的弧形抵触端面设置有两个,其中所述第一活动槽底面为180度平面,镜框连接件的连接凸块活动在述第一活动槽内,通过设置弧形抵触端面该镜框连接件双向自动复位。
  6. 根据权利要求5所述应用于眼镜的新型眼镜脚组件,其特征在于:镜脚连接件具有适配平台,该适配平台与所述的中枢块下端面抵靠,中枢块的下端面至少有一个圆弧过渡端面和直角过渡端面。
  7. 根据权利要求6所述应用于眼镜的新型眼镜脚组件,其特征在于:所述的适配平台具有与圆弧过渡端面相接触的侧挡台,该侧挡台呈斜状设置。
  8. 根据权利要求6或7所述应用于眼镜的新型眼镜脚组件,其特征在于:中枢块的下端面具有直角过渡端面,直角过渡端面和圆弧过渡端面处于中枢块的下端面两对面。
  9. 根据权利要求2所述应用于眼镜的新型眼镜脚组件,其特征在于:中枢块的第一活动槽 和第二活动槽呈90度形式设置。
  10. 根据权利要求2或9所述应用于眼镜的新型眼镜脚组件,其特征在于:所述的镜框连接件具有上滑行平台,该上滑行平台具有两个呈弧状的侧壁,对应的中枢块具有弧形上端面,侧壁贴合在弧形上端面相互抵触。
PCT/CN2021/078632 2020-08-15 2021-03-02 应用于眼镜的新型眼镜脚组件 WO2022037035A1 (zh)

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CN209265097U (zh) * 2018-12-26 2019-08-16 温州市百恒光学有限公司 一种可调节眼镜脚的眼镜
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US6585371B1 (en) * 2002-06-14 2003-07-01 Gazelle Corporation Eyeglass frame having tension adjustable temple coupling
US7077518B1 (en) * 2005-11-03 2006-07-18 John Lee Eyeglass temple assembly
CN101813830A (zh) * 2010-05-12 2010-08-25 江迪武 眼镜弹簧铰链
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