WO2021180050A1 - 一种拼接玩具组件 - Google Patents

一种拼接玩具组件 Download PDF

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Publication number
WO2021180050A1
WO2021180050A1 PCT/CN2021/079646 CN2021079646W WO2021180050A1 WO 2021180050 A1 WO2021180050 A1 WO 2021180050A1 CN 2021079646 W CN2021079646 W CN 2021079646W WO 2021180050 A1 WO2021180050 A1 WO 2021180050A1
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WO
WIPO (PCT)
Prior art keywords
connection
clip
auxiliary member
clip body
socket
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PCT/CN2021/079646
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English (en)
French (fr)
Inventor
吕爱文
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吕爱文
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Application filed by 吕爱文 filed Critical 吕爱文
Publication of WO2021180050A1 publication Critical patent/WO2021180050A1/zh

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    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H33/00Other toys
    • A63H33/04Building blocks, strips, or similar building parts
    • A63H33/06Building blocks, strips, or similar building parts to be assembled without the use of additional elements
    • A63H33/08Building blocks, strips, or similar building parts to be assembled without the use of additional elements provided with complementary holes, grooves, or protuberances, e.g. dovetails
    • A63H33/088Building blocks, strips, or similar building parts to be assembled without the use of additional elements provided with complementary holes, grooves, or protuberances, e.g. dovetails with holes

Definitions

  • the invention relates to a toy, in particular to a splicing toy component.
  • splicing toys are of the particle building block type.
  • the particle building blocks usually need to be accurately connected to each splicing unit according to the designed graphics to be successfully spliced.
  • the shape is fixed and the space for free play is small.
  • splicing modules there are many splicing modules, and the splicing process is tedious and laborious, and it is often used as a model decoration after completing it once.
  • Other simple splicing toys such as tubular building blocks, snowflake-shaped building blocks, etc., have a single splicing unit structure and a single connection method, which is not interesting.
  • the present invention provides a splicing toy component:
  • the clip includes two clip bodies; the clip body includes a clamping end, a holding end, and a connecting part located between the holding end and the holding end.
  • the clamp bodies are connected by the connecting part; the clamp body is provided with an elastic member, The elastic member makes the clamping ends of the clamp body close to each other; the clamping end of the clamp body is provided with a first inserting shaft, the first inserting shaft is located inside the clamp, and the holding end is provided with a first insertion hole adapted to the first inserting shaft , Both ends of the first insertion hole can be inserted into the first insertion shaft.
  • connection aid includes a first connection aid and a second connection aid.
  • a number of second jacks are provided on the first connection auxiliary member, and the second jacks have the same structure as the first jacks.
  • a number of second plug shafts are provided on the second connection auxiliary component, and the second plug shafts have the same structure as the first plug shafts.
  • a further technical solution is that a matching third socket is provided on the back of the first insert shaft of the clip, and the third socket and the first insert shaft are located on the same axis.
  • the first connection auxiliary member includes a third connection auxiliary member provided with more than two fourth sockets, the fourth socket is adapted to the first plug shaft, and at least one of the fourth sockets is connected to the first socket Consistent structure.
  • the first connection aid includes a fourth connection aid provided with a fifth insertion hole and a connection groove
  • the fifth insertion hole has the same structure as the first insertion hole
  • the connection groove is connected to the clip body and/ Or adapt to the body of the connection aid.
  • a further technical solution is that a sixth socket is provided on the back of the second plug shaft of the first connection auxiliary member, and the sixth socket and the second plug shaft are located on the same axis.
  • connection aids with other structures and connection modes can be derived.
  • connection aids is used to form the connection aid assembly, and its effect can be equivalent to a new connection aid.
  • connection aid assembly there is no need to repeat it, and further design can be made according to the needs of the splicing target shape.
  • a further technical solution is that there is an engagement structure between the plug shaft and the socket mentioned in the present invention, and the engagement structure has engagement points distributed in a ring shape.
  • the engagement structure is a gear structure or a gear-like structure.
  • the engagement points of the engagement structure are evenly distributed, and the number of engagement points is preferably 8, 12, 16, 24, and more preferably 16, so that a single rotation angle of 22.5° can be realized.
  • the connection part cannot be rotated under non-destructive force.
  • the advantage is that the connection structure is stable.
  • the disadvantage is that when the rotation angle of the connection needs to be adjusted, the plug shaft needs to be removed and reinserted.
  • Another way is to blunt the gear structure on the basis of the gear structure to reduce the meshing degree, forming a nodal rotation effect when a certain rotation force is applied, and the inserting shaft and the socket can be re-locked after the force is stopped. combine.
  • other engaging structures that can provide similar functions are applicable to the present invention, such as the engaging structure in which the plug shaft and the socket are regular polygons.
  • the clip body has four flat surfaces.
  • the horizontal view is the front of the clip body
  • the back view is the back of the clip body
  • the vertical direction faces
  • the outside is the outside of the clip body
  • the inside is the inside of the clip.
  • the outer and inner surfaces of the clip body are parallel to each other, and the front and back sides of the clip body are parallel to each other, so that the clip body and the groove of the connecting auxiliary member can better fit, and further, the parallel between the clamping surfaces can improve the shape of the clip after splicing.
  • the regularity
  • twice the distance between the outer surface and the inner surface of the clip body is equal to or less than the parallel distance between the inner surface of the clip body, and is not less than two-thirds of the parallel distance between the inner surface of the clip body.
  • the distance between the front and back of the clip body is equal to or less than the parallel distance between the inner surface of the clip body and not less than two-thirds of the parallel distance between the inner surface of the clip body.
  • the elastic member is a snap spring or a torsion spring, and its material can be elastic metal or plastic.
  • the snap spring has the advantage of simple structure, which is the preferred choice in the present invention.
  • the circlip is in the shape of a " ⁇ ", and the circlip clamp arms are respectively inserted into the grooves inside the two clamp bodies toward the clamping end to be fixed and hidden.
  • the connecting part of the clip body is a hinge structure or a rotating shaft structure or other structure that can provide support and relative rotation between the clip bodies.
  • a hinge structure is preferred.
  • the significant beneficial effect of the present invention is that through the combined use of clamps and several connection aids, the use of a few splicing components can achieve diverse changes in connection modes and angles, and achieve maximum freedom.
  • the effect of splicing; the connection method of inserting shaft and inserting with the socket is adopted, which has the advantages of simple splicing and disassembly.
  • Fig. 1A is a structural diagram of an embodiment of the clip in the present invention.
  • Fig. 1B is a sectional view 1 of an embodiment of the clip in the present invention.
  • Figure 1C is a cross-sectional view 2 of an embodiment of the clip of the present invention.
  • Fig. 2A is a structural diagram of a first embodiment of a first connection auxiliary member in the present invention.
  • Fig. 2B is a schematic diagram of the connection of the first embodiment of the first connection aid in the present invention.
  • Fig. 3A is a structural diagram of a second embodiment of the first connection aid in the present invention.
  • Fig. 3B is a schematic diagram of the connection of the second embodiment of the first connection aid in the present invention.
  • Fig. 4A is a schematic diagram of a first embodiment of splicing one clip holding end and another clip holding end of the present invention.
  • 4B is a schematic diagram of a second embodiment of splicing one clip holding end and another clip holding end of the present invention.
  • 4C is a schematic diagram of a third embodiment of splicing one clip holding end and another clip holding end of the present invention.
  • Fig. 4D is a schematic view of the splicing of one clip holding end and the other clip holding end of the present invention.
  • Fig. 4E is a schematic diagram of an embodiment of the combined splicing of the clip and the first connecting auxiliary member in the present invention.
  • Fig. 5A is a structural diagram of the first embodiment of the second connection auxiliary member of the present invention.
  • Fig. 5B is a schematic diagram of the connection of the first embodiment of the second connection aid in the present invention.
  • Fig. 5C is a structural diagram of a second embodiment of the second connection auxiliary member of the present invention.
  • Fig. 5D is a structural diagram of a third embodiment of the second connection auxiliary member of the present invention.
  • Fig. 5E is a structural diagram of a first embodiment of a second connection auxiliary member with a positioning structure in the present invention.
  • Fig. 6A is a structural diagram of a first embodiment of a third connection auxiliary member in the present invention.
  • Fig. 6B is a structural diagram of a second embodiment of a third connection auxiliary member in the present invention.
  • Fig. 6C is a schematic diagram of an embodiment of the combined connection of the third connection auxiliary member in the present invention.
  • Fig. 6D is a schematic diagram of a first embodiment of the splicing of the third connecting auxiliary member in the present invention.
  • Fig. 6E is a schematic diagram of a second embodiment of the splicing of the third connecting auxiliary member in the present invention.
  • Fig. 6F is a structural diagram of a third embodiment of the third connection auxiliary member of the present invention.
  • Fig. 6G is a schematic diagram of the connection of the third embodiment of the third connection aid in the present invention.
  • Fig. 6H is a structural diagram of a fourth embodiment of the third connection auxiliary member of the present invention.
  • Fig. 6I is a structural diagram of an embodiment of a third connection auxiliary member containing three sockets in the present invention.
  • Fig. 7A is a structural diagram of a first embodiment of a fourth connection auxiliary member in the present invention.
  • Fig. 7B is a first connection diagram of the first embodiment of the fourth connection auxiliary member in the present invention.
  • Fig. 7C is a schematic diagram of the second connection of the first embodiment of the fourth connection aid in the present invention.
  • Fig. 7D is a schematic diagram of the connection of the second embodiment of the fourth connection aid in the present invention.
  • Fig. 7F is a structural diagram of a third embodiment of the fourth connection auxiliary member of the present invention.
  • Fig. 7G is a schematic diagram of the connection of the third embodiment of the fourth connection aid in the present invention.
  • Fig. 7H is a structural diagram of an embodiment of a fourth connection auxiliary member having a positioning structure in the present invention.
  • Fig. 8A is a structural diagram of another first embodiment of the connection aid in the present invention.
  • Fig. 8B is a structural diagram of another second embodiment of the connection aid in the present invention.
  • 9A is a schematic structural diagram of the first embodiment of the engagement structure between the plug shaft and the socket in the present invention.
  • 9B is a schematic structural diagram of the second embodiment of the engagement structure between the plug shaft and the socket in the present invention.
  • 9C is a schematic structural diagram of the third embodiment of the engagement structure between the plug shaft and the socket in the present invention.
  • Fig. 10 is a schematic diagram of the first embodiment of the splicing effect of splicing toy components in the present invention.
  • Fig. 11 is a schematic diagram of a second embodiment of the splicing effect of splicing toy components in the present invention.
  • connection aid refers to a spliced toy component that can change the structure of the connection part between the clips or/and increase the connection mode.
  • the "matching" in the present invention means that two objects are matched with each other in terms of shape, structure, and space.
  • insert shaft in the present invention refers to the first and second insert shafts at the same time unless otherwise specified.
  • the "jack” in the present invention refers to the first jack, the second jack, the third jack, the fourth jack, the fifth jack, and the sixth jack at the same time without further explanation.
  • connection part in the present invention refers to the part where the insertion shaft and the socket are inserted.
  • the "splicing" in the present invention refers to the effect of connecting the clips to each other through the connection between several clips or the combination and connection of the clips and the connection auxiliary parts.
  • the "connecting clip” mentioned in the present invention refers to a clip connected by an inserting shaft part of two mutually connected clips.
  • the "connected clip” in the present invention refers to a clip connected by a non-inserting shaft part of two mutually connected clips.
  • the spliced toy component in the present invention includes a clip.
  • the clip includes two clip bodies.
  • the clip body includes a clamping end 101, a holding end 102, and a holding end 101 and a holding end.
  • the connecting part 103 between 102, the clamp body is connected by the connecting part 103;
  • the elastic member 104 is arranged between the clamp bodies;
  • the clamping end 101 of the clamp body is provided with a first inserting shaft 105, and the first inserting shaft 105 is located on the inner side
  • the holding end 102 is provided with a first insertion hole 106 matching the first insertion shaft 105, and both ends of the first insertion shaft 106 can be inserted into the insertion shaft.
  • a matching third insertion hole 107 is provided behind the first insertion shaft 105 of the clip, and the third insertion shaft 107 and the first insertion shaft 105 are located on the same axis.
  • the elastic member 104 is a circlip, and the circlip is in the shape of a “c”.
  • the circlip clamp arms are respectively inserted into the elastic member grooves 108 in the two clamp bodies toward the clamping end 101 to be fixed and at least partially hidden.
  • the outer surface 201 of the clip body and the inner surface 202 of the clip body are parallel to each other, and the front face 203 of the clip body and the rear face 204 of the clip body are parallel to each other.
  • the splicing toy assembly of the present invention includes a connecting auxiliary member.
  • the connecting auxiliary member includes a first connecting auxiliary member, and a plurality of second insertion holes are provided on the first connecting auxiliary member.
  • the first connecting auxiliary part 301 is a single structural part of the second socket 3001.
  • 3A and 3B which are the structural diagram of the second embodiment of the first connection auxiliary member of the present invention and the schematic diagram of the connection with the clip.
  • the second plug shaft 3002 of the first connection aid is provided with a sixth socket 3003 that is adapted to the back, and the sixth socket 3003 and the second plug shaft 3002 are located on the same axis.
  • 4A, 4B is a schematic view of the splicing of one clip holding end 101 and the other clip holding end 102 of the present invention.
  • the inserting shaft on one side of the connecting clip 401 is completely inserted into the first of the connected clip 402.
  • Two jacks, the other side of the insert shaft is in a half-inserted state, and the connecting clip 401 forms an obvious angle between the clip bodies after splicing.
  • the use of the first connecting auxiliary member 301 or the first connecting auxiliary member 302 can reduce the angle between the clip bodies of the connecting clip 401 or make the clip bodies parallel.
  • the clamping end 101 can be spliced with another clip clamping end 101.
  • the use of the first connection auxiliary member 301 can increase the stability of the connection part and make the connection part The appearance is more regular.
  • the first connection aid 301 and the first connection aid 302 can be replaced with each other.
  • the use of the first connection aid 302 is limited by space, and the first connection aid is used.
  • a 301 is more suitable.
  • connection aid includes a second connection aid.
  • a number of second plug-in shafts are provided on the second connection auxiliary member.
  • the second connecting auxiliary member 501 is a single structural member of the second plug shaft 3002, which can be used to insert two at the same time. Jacks, play a series role.
  • FIG. 5C it is a structural diagram of the second embodiment of the second connecting auxiliary member of the present invention.
  • the second connecting auxiliary member 502 has two second plug shafts 3002 with parallel axes, which can be inserted into two sockets respectively. Series effect.
  • FIG. 5D is a structural diagram of the third embodiment of the second connection auxiliary member of the present invention
  • the second connection auxiliary member three 503 can be used for plugging in three sockets at the same time, which plays a role in series.
  • the second connection auxiliary member may also be provided with a positioning structure to prevent loosening, so as to increase the stability after splicing.
  • first connection auxiliary member includes a third connection auxiliary member provided with more than two fourth sockets, the fourth sockets are adapted to the first plug-in shaft, and at least one of the fourth sockets has a structure consistent with the first socket .
  • FIG. 6A is a structural diagram of the first embodiment of the third connection auxiliary member in the present invention, the two fourth sockets 5001 and the second socket 3001 have the same structure
  • FIG. 6B is a structural diagram of the second embodiment of the third connection auxiliary member of the present invention.
  • One of the fourth sockets 5001 and the second socket 3001 have the same structure, and the other fourth sockets 5001 and the sixth socket 3003 have the same structure. Unanimous.
  • FIG. 6C is a diagram of an embodiment of the connection of the third connection auxiliary part 601 and the third connection auxiliary part 602 in the present invention.
  • the third connection auxiliary part one 601 or the third connection auxiliary part 602 can connect two or more clips in series.
  • 6F and 6G which are the structural diagram and the connection schematic diagram of the third embodiment of the third connection auxiliary member in the present invention.
  • FIG. 6H is a structural diagram of a fourth embodiment of the third connection auxiliary member of the present invention.
  • FIG. 6I is a structural diagram of an embodiment of a third connection auxiliary member containing three sockets in the present invention.
  • the first connection auxiliary member includes a fourth connection auxiliary member provided with a fifth insertion hole and a connection groove, the fifth insertion hole has the same structure as the first insertion hole, and the connection groove is connected to the clip body and/or the connection auxiliary member The body fits.
  • FIG. 7A is a structural diagram of the first embodiment of the fourth connection auxiliary member of the present invention.
  • a fifth jack 7001 and a connecting groove 7002 are provided on the fourth connecting auxiliary part 701.
  • connection aid 701 can be fixed to the clip body by the way of embracing the two components. Further, the fourth connection aid 701 can also be fixed with the third connection aid 601 to form a connection aid assembly. The effect can be equivalent to a new connection aid.
  • Fig. 7D is a schematic diagram of the connection of the second embodiment of the fourth connection aid in the present invention.
  • the second connecting auxiliary member 702 is fixed to the clip body by a single component.
  • connection aid 702 can be engaged with the two second connection aids 701 to form a connection aid assembly, and its effect may be equivalent to a new connection aid.
  • FIG. 7F and FIG. 7G it is a structural diagram and a connection schematic diagram of the third embodiment of the fourth connection auxiliary member in the present invention.
  • the groove 7002 of the fourth connection auxiliary part 703 has a bayonet structure, which can improve the fixing effect with the clip body.
  • connection auxiliary member may also be provided with a positioning structure to prevent loosening, so as to increase the stability after splicing.
  • auxiliary connecting member in the present invention also includes other auxiliary connecting members provided with a plurality of connecting grooves.
  • FIGS. 8A and 8B for auxiliary connecting members provided with single and two connecting grooves 7002.
  • FIGS. 9A, 9B, and 9C there is an engaging structure 801 between the insertion shaft and the socket. Further, the engaging structure 801 has engaging points distributed in a ring shape.
  • the engaging structure 801 is a gear structure or a gear-like structure. Further, the engaging points of the engaging structure 801 are evenly distributed, and the number of engaging points is 16, which can achieve a single rotation angle of 22.5°. Participate in Figure 9B, passivate the tooth structure and reduce the degree of meshing, which can produce a nodal rotation effect when a certain rotation force is applied.
  • the locking structure 801 is a locking structure with a regular hexagon in cross section.
  • the splicing toy assembly in the present invention realizes the splicing effect through the combination and connection of a plurality of clips and a plurality of connection auxiliary parts.
  • a complex shape can be formed by the combination and connection of a number of clips and a number of connection aids.
  • the first connection aid, the second connection aid, and the third connection aid are used, and finally the windmill shape is spliced together.
  • a complex shape can be formed by the combination and connection of a number of clips and a number of connection aids.
  • the first connection aid, the second connection aid, the third connection aid, and the fourth connection aid are used, which are finally spliced into a robot shape.
  • connection aid can also play a role in building the shape.
  • the connection aid and the fourth connection aid are used to build the shape of the head.

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Abstract

一种拼接玩具组件,包括夹子和连接辅助件,夹子的夹持端设有插轴,握持端设有插孔,连接辅助件设有插轴或/和插孔,通过夹子和辅助连接件的组合及连接实现拼接效果。

Description

一种拼接玩具组件 技术领域
本发明涉及一种玩具,具体涉及一种拼接玩具组件。
背景技术
目前市场上存在各种各样的拼接玩具,大多数拼接玩具为颗粒积木类型,颗粒积木通常需要按照设计好的图形将每个拼接单元连接准确才能拼接成功,造型固定,自由发挥的空间小。对于大型的颗粒积木造型,其拼接模块众多,拼接过程繁琐费力,往往在完成一次后当成模型摆件。另外一些简单的拼接玩具,如管状积木,雪花状积木等,其拼接单元结构单一,连接方式单一,趣味性差。
有鉴于此,如何提供一种拼接玩具组件,以克服现有技术中存在的种种问题,即为本发明所要解决的技术问题。
发明内容
本发明提供了一种拼接玩具组件:
包括若干用于实现拼接组合的夹子和连接辅助件。
夹子包括两个夹体;夹体包括夹持端、握持端和位于夹持端和握持端之间的连接部件,夹体之间通过连接部件连接;夹体之间设有弹性件,弹性件使夹体的夹持端相互靠拢;夹体的夹持端设有第一插轴,第一插轴位于夹子内侧,握持端设有与第一插轴适配的第一插孔,第一插孔的两端均可供所述第一插轴插入。
连接辅助件包括第一连接辅助件和第二连接辅助件。
第一连接辅助件上设有若干第二插孔,第二插孔与第一插孔结构一致。
第二连接辅助件上设有若干第二插轴,第二插轴与第一插轴结构一致。
其进一步的技术方案为,夹子的第一插轴背后设有适配的第三插孔,第三插孔与第一插轴位于同一轴线。
其进一步的技术方案为,第一连接辅助件包括设有两个以上第四插孔的第三连接辅助件,第四插孔与第一插轴适配,且至少有一个和第一插孔结构一致。
其进一步的技术方案为,第一连接辅助件包括设有第五插孔和连接凹槽的第四连接辅助件,第五插孔与第一插孔结构一致,连接凹槽与夹体和/或连接辅助件的本体相适配。
其进一步的技术方案为,第一连接辅助件的第二插轴背后设有适配的第六插孔,第六 插孔与第二插轴位于同一轴线。
进一步的,通过插轴和插孔结构的组合,或者插轴或/和插孔的结构扩展可衍生出其它结构和连接方式的连接辅助件,在本发明中无需赘述,可根据拼接目标造型的需要进行进一步的设计。
进一步的,通过连接辅助件之间的组合形成连接辅助件组合件,其效果可等同于一个新的连接辅助件,在本发明中无需赘述,可根据拼接目标造型的需要进行进一步的设计。
其进一步的技术方案为,本发明中所提到的插轴和插孔之间具有卡合结构,卡合结构具有呈环形分布的卡合点。
进一步的,卡合结构为齿轮结构或类似齿轮的结构。
进一步的,卡合结构的卡合点呈均匀分布,卡合点数量优选8、12、16、24,进一步优选16,可实现单次22.5°的旋转角度。当采用标准的齿轮结构时,连接部位在非破坏性力度下不能转动,带来的好处是连接结构稳固,缺点是当需要调整连接的旋转角度时需要将插轴取出后重新插入。另外一种方式是在齿轮结构的基础上,将齿轮结构钝化,降低啮合度,形成在施加一定的旋转力度时能够产生有节点的转动效果,停止施力后插轴和插孔能够重新卡合。此外,其它能够提供类似作用的卡合结构均适用于本发明,如插轴和插孔为正多边形的卡合结构。
其进一步的技术方案为,夹体具有平坦的四个面,当夹子的夹体呈上下连接且夹持端朝左时,平视面为夹体前面,背视面为夹体后面,上下方向朝外的为夹体外面,朝内的为夹体内面。
进一步的,夹体外面和内面相互平行,夹体前面和后面相互平行,以便夹体与连接辅助件的凹槽能够更好的适配,进一步的,夹面之间平行可提高夹子拼接后形状的规整性。
进一步的,夹体外面和内面之间距离的两倍等于或小于夹体内面平行距离,且不小于夹体内面平行距离的三分之二。
进一步的,夹体的前面和后面距离等于或小于夹体内面平行距离,且不小于夹体内面平行距离的三分之二。
其进一步的技术方案为,弹性件为卡簧或扭簧,其材质可为弹性金属或塑料,卡簧具有结构简单的优点,为本发明中的优选。
进一步的,卡簧为“匚”形,卡簧夹臂朝夹持端方向分别插入两个夹体内部的卡槽而被固定和隐藏。
其进一步的技术方案为,夹体的连接部件是铰链结构或转轴结构或其它可提供夹体之间支撑和相对转动的结构,在本发明中优选铰链结构。
与现有技术相比,本发明显著性的有益效果为,通过夹子和若干种连接辅助件的组合使用,使用少数几种拼接组件即可实现连接方式和角度的多样性变化,最大限度实现自由拼接的效果;采用插轴和与插孔插接的连接方式,具有拼接和拆卸简单的优点。
附图说明
为了更清楚地说明本发明实施例技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1A为本发明中夹子一实施例的结构图。
图1B为本发明中夹子一实施例的剖面图1。
图1C为本发明中夹子一实施例的剖面图2。
图2A为本发明中第一连接辅助件第一实施例的结构图。
图2B为本发明中第一连接辅助件第一实施例的连接示意图。
图3A为本发明中第一连接辅助件第二实施例的结构图。
图3B为本发明中第一连接辅助件第二实施例的连接示意图。
图4A为本发明中一夹子夹持端和另一夹子握持端拼接第一实施例示意图。
图4B为本发明中一夹子夹持端和另一夹子握持端拼接第二实施例示意图。
图4C为本发明中一夹子夹持端和另一夹子握持端拼接第三实施例示意图。
图4D为本发明中一夹子夹持端和另一夹子夹持端的拼接示意图。
图4E为本发明中夹子和第一连接辅助件组合拼接一实施例示意图。
图5A为本发明中第二连接辅助件第一实施例的结构图。
图5B为本发明中第二连接辅助件第一实施例的连接示意图。
图5C为本发明中第二连接辅助件第二实施例的结构图。
图5D为本发明中第二连接辅助件第三实施例的结构图。
图5E为本发明中具有定位结构的第二连接辅助件第一实施例的结构图。
图6A为本发明中第三连接辅助件第一实施例的结构图。
图6B为本发明中第三连接辅助件第二实施例的结构图。
图6C为本发明中第三连接辅助件组合连接一实施例示意图。
图6D为本发明中第三连接辅助件的拼接第一实施例示意图。
图6E为本发明中第三连接辅助件的拼接第二实施例示意图。
图6F为本发明中第三连接辅助件第三实施例的结构图。
图6G为本发明中第三连接辅助件第三实施例的连接示意图。
图6H为本发明中第三连接辅助件第四实施例的结构图。
图6I为本发明中含有三个插孔的第三连接辅助件实施例的结构图。
图7A为本发明中第四连接辅助件第一实施例的结构图。
图7B为本发明中第四连接辅助件第一实施例的第一连接示意图。
图7C为本发明中第四连接辅助件第一实施例的第二连接示意图。
图7D为本发明中第四连接辅助件第二实施例的连接示意图。
图7F为本发明中第四连接辅助件第三实施例的结构图。
图7G为本发明中第四连接辅助件第三实施例的连接示意图。
图7H为本发明中具有定位结构的第四连接辅助件实施例的结构图。
图8A为本发明中连接辅助件其它的第一实施例的结构图。
图8B为本发明中连接辅助件其它的第二实施例的结构图。
图9A为本发明中插轴与插孔之间卡合结构第一实施例的结构示意图。
图9B为本发明中插轴与插孔之间卡合结构第二实施例的结构示意图。
图9C为本发明中插轴与插孔之间卡合结构第三实施例的结构示意图。
图10为本发明中拼接玩具组件拼接效果的第一实施例示意图。
图11为本发明中拼接玩具组件拼接效果的第二实施例示意图。
其中:
夹持端101;握持端102;连接部件103;弹性件104;第一插轴105;第一插孔106;第三插孔107;弹性件卡槽108;夹体外面201;夹体内面202;夹体前面203;夹体后面204;第一连接辅助件一301;第二插孔3001;第一连接辅助件二302;第二插轴3002;第六插孔3003;连接夹401;被连接夹402;第二连接辅助件一501;第二连接辅助件二502;第二连接辅助件三503;第四插孔5001;第三连接辅助件一601;第三连接辅助件二602;第三连接辅助件三603;第三连接辅助件四604;第三连接辅助件五605;第五插孔7001;连接凹槽7002;第四连接辅助件一701;第二连接辅助件二702;第二连接辅助件三703;卡合结构801。
具体实施方式
下面将结合本发明实施例中的附图,对实施例中的技术方案进行清楚、完整地描述,附图中类似的组件标号代表类似的组件。显然,以下将描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,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,都属于本发明保护的范围。
应当理解,当在本说明书和所附权利要求书中使用时,术语“包括”和“包含”指示所描述特征、整体、步骤、操作、元素和/或组件的存在,但并不排除一个或多个其它特征、整体、步骤、操作、元素、组件和/或其集合的存在或添加。
本发明所述的“连接辅助件”是指能够改变夹子之间连接部位结构或/和增加连接方式的拼接玩具组成部件。
本发明所述的“匹配”是指两物件在形状、结构、空间上相互配合。
本发明所述的“插轴”如无进一步说明,是同时指第一插轴、第二插轴。
本发明所述的“插孔”如无进一步说明,是同时指第一插孔、第二插孔、第三插孔、第四插孔、第五插孔、第六插孔。
本发明所述的“连接部位”是指插轴和插孔插接的部位。
本发明所述的“拼接”是指通过若干夹子之间的连接或夹子与连接辅助件的组合与连接,形成夹子之间相互连接的效果。
本发明所述的“连接夹”是指两个相互连接的夹子中采用插轴部位连接的夹子。
本发明所述的“被连接夹”是指两个相互连接的夹子中采用非插轴部位连接的夹子。
本发明中的拼接玩具组件包括夹子。
参见图1A和1B,为本发明中夹子一实施例的结构图和剖面图,夹子包括两个夹体,夹体包括夹持端101、握持端102和位于夹持端101和握持端102之间的连接部件103,夹体之间通过连接部件103连接;夹体之间设有弹性件104;夹体的夹持端101设有第一插轴105,第一插轴105位于内侧,握持端102设有与第一插轴105匹配的第一插孔106,第一插孔106的两端均可供插轴插入。
进一步的,夹子的第一插轴105背后设有匹配的第三插孔107,第三插孔107与第一插轴105位于同一轴线。
进一步的,弹性件104为卡簧,卡簧呈“匚”形,卡簧夹臂朝夹持端101方向分别插入两个夹体内的弹性件卡槽108内而被固定和至少部分隐藏。
参见图1C,进一步的,夹体外面201和夹体内面202相互平行,夹体前面203和夹体后面204相互平行。
进一步的,本发明中的拼接玩具组件包括连接辅助件,进一步的,连接辅助件包括第一连接辅助件,第一连接辅助件上设有若干第二插孔。
参见图2A和图2B,为本发明中第一连接辅助件的第一实施例的结构图和与夹子的连接示意图。参见图2A,第一连接辅助件一301为第二插孔3001的单结构件。
参见图3A和图3B,为本发明中第一连接辅助件的第二实施例的结构图和与夹子的连接示意图。
进一步的,参见图3A,第一连接辅助件的第二插轴3002背后设有适配的第六插孔3003,所述第六插孔3003与所述第二插轴3002位于同一轴线。
参见图4A、4B为本发明中一夹子夹持端101和另一夹子握持端102的拼接示意图,当不借助连接辅助件时,连接夹401一侧插轴完全插入被连接夹402的第二插孔,另外一侧插轴为半插入状态,连接夹401在拼接后夹体之间形成明显夹角。
参见图4C,采用第一连接辅助件一301或第一连接辅助件二302,可使连接夹401的夹体之间夹角变小或夹体平行。
参见图4D,当夹子上具有第三插孔107时,夹持端101可与另一夹子夹持端101拼接,采用第一连接辅助件一301可增加连接部位的稳定性,并使连接部位外观更加规整。
参见图4E,在一些情况下,第一连接辅助件一301和第一连接辅助件二302可以相互替换,有些情况下,使用第一连接辅助件二302受到空间限制,采用第一连接辅助件一301更适合。
进一步的,连接辅助件包括第二连接辅助件。第二连接辅助件上设有若干第二插轴。
参见图5A和5B,为本发明中第二连接辅助件第一实施例的结构图和连接示意图,第二连接辅助件一501为第二插轴3002的单结构件,可用于同时插接两个插孔,起串联作用。
参见图5C,为本发明中第二连接辅助件第二实施例的结构图,第二连接辅助件二502具有两个轴线平行的第二插轴3002,可分别插接两个插孔,起串联作用。
参见图5D,为本发明中第二连接辅助件第三实施例的结构图,第二连接辅助件三503可用于同时插接三个插孔,起串联作用。
进一步的,参见图5E,第二连接辅助件还可设有防止松脱的定位结构,以增加拼接后的稳固性。
进一步的,第一连接辅助件包括设有两个以上第四插孔的第三连接辅助件,所述第四插孔与第一插轴适配,且至少有一个与第一插孔结构一致。
参见图6A为本发明中第三连接辅助件第一实施例的结构图,两个第四插孔5001与第二插孔3001结构一致
参见图6B为本发明中第三连接辅助件第二实施例的结构图,其中一个第四插孔5001与第二插孔3001结构一致,另外一个第四插孔5001与第六插孔3003结构一致。
参见图6C,为本发明中第三连接辅助件一601和第三连接辅助件二602的连接一实施例图。
参见图6D和6E,进一步的,第三连接辅助件一601或第三连接辅助件二602可将两个或多个夹子串联起来。
进一步的,第三连接辅助件中插孔之间的相对方位具有多种选择。
参见图6F和6G,为本发明中第三连接辅助件第三实施例的结构图和连接示意图。
参见图6H,为本发明中第三连接辅助件第四实施例的结构图。
参见图6I,为本发明中含有三个插孔的第三连接辅助件的实施例的结构图。
进一步的,第一连接辅助件包括设有第五插孔和连接凹槽的第四连接辅助件,第五插孔与第一插孔结构一致,连接凹槽与夹体和/或连接辅助件的本体相适配。
参见图7A,为本发明中第四连接辅助件第一实施例的结构图。第四连接辅助件一701上设有第五插孔7001和连接凹槽7002。
参见图7B和7C,为本发明中第四连接辅助件第一实施例的第一连接示意图和第二连接示意图。第四连接辅助件一701可通过两个组件抱合的方式与夹体固定,进一步的,第四连接辅助件一701还可与第三连接辅助件一601固定,组合成连接辅助件组合件,其效果可等同于一个新的连接辅助件。
参见图7D,为本发明中第四连接辅助件第二实施例的连接示意图。第四连接辅助件二702通过单个组件与夹体固定。
参见图7E,进一步的,第四连接辅助件二702可与两个第二连接辅助件一701相互卡合组成连接辅助件组合件,其效果可等同于一个新的连接辅助件。
参见图7F和图7G,为本发明中第四连接辅助件第三实施例的结构图和连接示意图。第四连接辅助件三703的凹槽7002带有卡口结构,可提高与夹体的固定效果。
进一步的,参见图7H,第四连接辅助件还可设有防止松脱的定位结构,以增加拼接后的稳固性。
进一步的,本发明中辅助连接件还包括设有若干连接凹槽的其它辅助连接件。
参见图8A和8B为设有单个和两个连接凹槽7002的辅助连接件。
进一步的,参见图9A、9B、9C,插轴和插孔之间具有卡合结构801,进一步的,卡合结构801具有呈环形分布的卡合点。
参见图9A、9B,卡合结构801为齿轮结构或类似齿轮的结构,进一步的,卡合结构801的卡合点呈均匀分布,卡合点数量为16,可实现单次22.5°的旋转角度。参加图9B,将卡齿结构钝化,降低啮合度,可形成在施加一定的旋转力度时产生有节点的转动效果。
参见图9C,卡合结构801为一种截面呈正六边形的卡合结构。
进一步的,本发明中拼接玩具组件通过若干夹子和若干连接辅助件的组合及连接实现 拼接效果。
参见图10,为本发明中拼接玩具组件拼接效果的第一实施例,通过若干夹子和若干连接辅助件的组合和连接可组成复杂的造型。在本实施例中,采用了第一连接辅助件、第二连接辅助件、第三连接辅助件,最终拼接出风车造型。
参见图11,为本发明中拼接玩具组件拼接效果的第二实施例,通过若干夹子和若干连接辅助件的组合和连接可组成复杂的造型。在本实施例中,采用了第一连接辅助件、第二连接辅助件、第三连接辅助件、第四连接辅助件,最终拼接成机械人造型。
此外,连接辅助件还可起到构建造型的作用,在图11中,第三连接辅助件和第四连接辅助件用于构建头部的造型。
以上所述,为本发明的具体实施方式,但本发明的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本发明揭露的技术范围内,可轻易想到各种等效的修改或替换,这些修改或替换都应涵盖在本发明的保护范围之内。

Claims (10)

  1. 一种拼接玩具组件,其特征在于,包括若干用于实现拼接组合的夹子和连接辅助件;
    所述夹子包括两个夹体;
    所述夹体包括夹持端、握持端和位于夹持端和握持端之间的连接部件,夹体之间通过连接部件连接;
    所述夹体之间设有弹性件,所述弹性件使夹体的夹持端相互靠拢;
    所述夹体的夹持端设有第一插轴,第一插轴位于夹子内侧,握持端设有与第一插轴适配的第一插孔,第一插孔的两端均可供所述第一插轴插入;
    所述连接辅助件包括第一连接辅助件和第二连接辅助件;
    所述第一连接辅助件上设有若干第二插孔,所述第二插孔与所述第一插孔结构一致;
    所述第二连接辅助件上设有若干第二插轴,所述第二插轴与所述第一插轴结构一致。
  2. 根据权利要求1所述的一种拼接玩具组件,其特征在于,所述夹子的第一插轴背后设有适配的第三插孔,第三插孔与所述第一插轴位于同一轴线。
  3. 根据权利要求1所述的一种拼接玩具组件,其特征在于,所述第一连接辅助件包括设有两个以上第四插孔的第三连接辅助件,所述第四插孔与所述第一插轴适配,且至少有一个和第一插孔结构一致。
  4. 根据权利要求1所述的一种拼接玩具组件,其特征在于,所述第一连接辅助件包括设有第五插孔和连接凹槽的第四连接辅助件,所述第五插孔与所述第一插孔结构一致,所述连接凹槽与所述夹体和/或所述连接辅助件的本体相适配。
  5. 根据权利要求1所述的一种拼接玩具组件,其特征在于,所述第一连接辅助件的第二插轴背后设有适配的第六插孔,第六插孔与所述第二插轴位于同一轴线。
  6. 根据权利要求1所述的一种拼接玩具组件,其特征在于,所述第一插轴与所述第一插孔之间设置有卡合结构,所述卡合结构具有呈环形分布的卡合点。
  7. 根据权利要求6所述的一种拼接玩具组件,其特征在于,所述卡合结构为齿轮结构。
  8. 根据权利要求1所述的一种拼接玩具组件,其特征在于,所述夹体包括夹体外面、夹体内面、夹体前面和夹体后面;所述夹体外面和内面相互平行,所述夹体前面和后面相互平行。
  9. 根据权利要求8所述的一种拼接玩具组件,其特征在于,所述夹体外面和夹体内面之间距离的两倍等于或小于两夹体内面平行距离,且不小于两夹体内面平行距离的三分之二。
  10. 根据权利要求8或9所述的一种拼接玩具组件,其特征在于,所述夹体前面和夹体后面距离等于或小于两夹体内面平行距离,且不小于两夹体内面平行距离的三分之二。
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