WO2013078896A1 - 一种可分离的组合式玩具陀螺 - Google Patents

一种可分离的组合式玩具陀螺 Download PDF

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Publication number
WO2013078896A1
WO2013078896A1 PCT/CN2012/081099 CN2012081099W WO2013078896A1 WO 2013078896 A1 WO2013078896 A1 WO 2013078896A1 CN 2012081099 W CN2012081099 W CN 2012081099W WO 2013078896 A1 WO2013078896 A1 WO 2013078896A1
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WIPO (PCT)
Prior art keywords
gyro
main
screw
auxiliary
spinning top
Prior art date
Application number
PCT/CN2012/081099
Other languages
English (en)
French (fr)
Inventor
蔡东青
Original Assignee
广东奥飞动漫文化股份有限公司
广东奥迪动漫玩具有限公司
广州奥飞文化传播有限公司
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.)
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Publication date
Priority claimed from CN2011103899063A external-priority patent/CN102371071B/zh
Priority to CA2857579A priority Critical patent/CA2857579C/en
Priority to AU2012344547A priority patent/AU2012344547B2/en
Priority to NO12854182A priority patent/NO2786790T3/no
Priority to JP2014543754A priority patent/JP5946920B2/ja
Priority to PL12854182T priority patent/PL2786790T3/pl
Priority to RU2014125898/12A priority patent/RU2566937C1/ru
Priority to DK12854182.8T priority patent/DK2786790T3/en
Application filed by 广东奥飞动漫文化股份有限公司, 广东奥迪动漫玩具有限公司, 广州奥飞文化传播有限公司 filed Critical 广东奥飞动漫文化股份有限公司
Priority to KR1020147017961A priority patent/KR101555865B1/ko
Priority to US14/362,041 priority patent/US9101845B2/en
Priority to ES12854182.8T priority patent/ES2658585T3/es
Priority to MYPI2014001369A priority patent/MY181800A/en
Priority to EP12854182.8A priority patent/EP2786790B1/en
Publication of WO2013078896A1 publication Critical patent/WO2013078896A1/zh
Priority to HRP20180006TT priority patent/HRP20180006T1/hr

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    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H1/00Tops
    • A63H1/18Double tops; Multiple tops mounted in or on one another

Definitions

  • the invention relates to a toy top, in particular to a separable combined toy top.
  • the existing toy top is basically composed of a single gyro, which comprises a sleeve body, a screw cover, a screw piece and a top point.
  • the gyro launcher is connected with the screw cover and realizes to rotate the gyro to rotate, in order to increase or modify The performance of the gyro enables the gyro to win each other in the competition.
  • Most of the existing toy gyros are designed to be assembled and reinforced, and the gyro is designed to be easy to assemble and disassemble, and the sleeve body is designed to be assembled and assembled.
  • the toy gyro Long, so that the gyro can be easily and quickly disassembled for replacement or adding accessories, but no matter how the modification is strengthened, the toy gyro only rotates with a gyro during the playing process, so the winning rate is still difficult to be greatly improved. Moreover, the detachable assembly of toy gyro is very common, so such gyro gradually loses its novelty and it is difficult to gain the favor of the player for a long time.
  • the technical solution adopted by the present invention is: a detachable combined toy top which is characterized by comprising a main gyro and a sub gyro, the main gyro comprising a screw cover, a main screw, a screw sleeve and a top end, the auxiliary gyro includes a secondary screw, a sleeve body and a top end, and the upper part of the auxiliary gyro is provided with an elastic mechanism, and the main gyro is movably connected to the top of the auxiliary gyro, and the rotation process can be realized by the elastic mechanism When the main gyro is blocked, the auxiliary gyro is uncoupled and ejected to form a separate rotation of the main gyro and the auxiliary gyro.
  • the elastic mechanism is a spring seat disposed on the sleeve body of the auxiliary gyro, and the sleeve body is provided with a cavity for accommodating the spring seat, and the upper end of the spring seat protrudes from the sleeve body When the main gyro is connected to the auxiliary gyro, the spring seat is in a compressed state.
  • the active connection between the main gyro and the auxiliary gyro is realized by connecting the main screw and the auxiliary screw, and the main screw and the secondary screw are provided with each other.
  • the movable connecting connector realizes combining the main gyro and the auxiliary gyro by integrating the main gyro from the top of the auxiliary gyro to the lower compression spring seat to the two connecting pieces of the main screw and the auxiliary screw.
  • the sub-screw is designed to be a torus
  • the connecting piece of the sub-screw is an upper card edge disposed on an upper portion of the inner ring of the sub-screw
  • the connecting piece of the main screw is correspondingly designed to cooperate with the upper card edge.
  • the lower card edge is realized by superimposing the main screw on the sub-screw so that the lower card edge and the upper card edge are staggered and moved to the lower side of the upper card edge, and then the main screw piece is rotated to make the lower card edge snap into the upper card edge to realize the main gyro and the pair.
  • the gyro can be rotated and separated into one body.
  • the lower surface of the upper rim is provided with hemispherical bumps
  • the upper surface of the lower rim is correspondingly provided with hemispherical pits.
  • the hemispherical pit is sleeved with the hemispherical bump when the lower card edge is rotated to the upper card edge.
  • the main gyro will not be separated from the auxiliary gyro immediately.
  • the hemispherical concave points on the lower card edge are provided with two, and the hemispherical convex points are respectively matched with the two hemispherical concave points before the separation of the main gyro and the auxiliary gyro. .
  • the gyro is designed to be a combination of a main gyro and a sub gyro
  • the main gyro is movably connected to the auxiliary gyro and squeezes the elastic mechanism, and then during the rotation.
  • the main gyro is connected with the auxiliary gyro release action, it is ejected under the elastic force of the elastic mechanism to form the main gyro and the auxiliary gyro respectively, so that the gyro energy can be split into two in the confrontation game, and the gyro is greatly increased.
  • the attack power makes the winning rate higher, and the gameplay is novel and interesting. It can get more fans' love.
  • both sides can be realized.
  • the two pieces of the rotor collide to make the screw piece misaligned and rotate to release the movable connection, and the main gyro connection piece is provided with a plurality of hemispherical pits, and the auxiliary gyro connection piece is provided with a hemispherical convex point, so
  • the hemispherical bumps will be in contact with the plurality of hemispherical pits, and finally the primary and secondary gyro separation will be realized, thereby making the combined toy Lo does not separate took place at the beginning of the collision, can be decisive factor was reserved to the crunch to play out, while increasing the randomness of the gyro confrontation, but also further enhance the game interesting.
  • the detachable modular toy top of the present invention is ingeniously designed, and the two gyros are skillfully combined into one body, and the separation is achieved by combating the impact, which is very interesting for the game, and the player is Gain a bigger win rate in the game, while also developing children's hands-on ability and competitiveness.
  • FIG. 1 is a schematic perspective view of the present invention.
  • Figure 2 is a schematic cross-sectional view of the present invention.
  • Figure 3 is a schematic exploded view of the present invention.
  • Fig. 4 is a perspective view showing the structure of a secondary screw of the present invention.
  • Fig. 5 is a perspective view showing the structure of a main screw of the present invention.
  • a separable combination toy gyro includes a main gyro and a sub gyro, and the main gyro includes a screw cover 1, a main screw 2, and a screw sleeve 3.
  • the auxiliary gyro includes a secondary screw 5, a sleeve body 6 and a gyro 4, and an upper portion of the auxiliary gyro is provided with an elastic mechanism, and the main gyro is movably connected to the upper side of the auxiliary gyro, and the elastic mechanism can realize the main process during the rotation
  • the gyro is blocked, the gyro is disconnected from the auxiliary gyro and ejected to form a separate rotation of the main gyro and the auxiliary gyro, so that the gyro can be split into two in the confrontation game, which greatly increases the attack power of the gyro, and the winning rate is higher, and
  • the gameplay is novel, very interesting, and can be loved by more players.
  • the elastic mechanism of this embodiment is a spring seat 7 disposed on the sleeve body 6 of the auxiliary gyro.
  • the sleeve body 6 is provided with a cavity 61 for accommodating the spring seat 7, and the spring seat 7
  • the spring seat 7 is in a compressed state when the upper end protrudes from the sleeve body 6 and the main gyro is connected to the auxiliary gyro, and the assembled structure is as shown in FIG.
  • the spring seat 7 of the embodiment includes a ring seat 71 and a spring 72.
  • the ring seat 71 extends downwardly with a latching leg 73.
  • the cavity of the cavity 61 of the sleeve body 6 is provided with a latching leg 73 for engaging.
  • the strip-shaped buckle groove 62 is configured to move the ring seat 71 in the strip-shaped buckle groove 62 by inserting the latching leg 73 into the strip-shaped buckle groove 62.
  • the spring 72 is mounted between the ring seat 71 and the cavity 61.
  • the ring seat 71 can be elastically moved.
  • the active connection between the main gyro and the auxiliary gyro of the embodiment is realized by connecting the main screw 2 and the secondary screw 5, wherein the main screw 2 of the main gyro and the secondary screw 5 of the auxiliary gyro are mutually movable.
  • the connecting connector realizes combining the main gyro and the auxiliary gyro by integrally connecting the main gyro from the upper gyro to the lower compression spring seat 7 to the two connecting members of the main screw 2 and the auxiliary screw 5.
  • the secondary screw 5 of this embodiment is designed to have a torus, and the connecting piece of the secondary screw 5 is an upper clamping edge 51 provided on the upper portion of the inner side of the secondary screw 5.
  • This embodiment is A connecting plate 54 is protruded from the inner ring side of the screw piece 5, and a total of four connecting plates 54 are arranged in a uniform annular shape.
  • the end portion of the connecting plate 54 is provided with an upper card edge 51 on both the left and right sides, so the upper card edge 51 and the connecting plate 54 have a "T" shape, and a hemispherical bump 52 is disposed on the lower surface of the upper rim 51.
  • the outer ring wall of the auxiliary screw 5 is provided with a concave and convex line for increasing the appearance of the gyro.
  • the gyro has certain aggression; as shown in FIG. 5, the main screw 2 of this embodiment is also a torus, and there is a small ring in the middle of the torus, the small ring and the circle
  • the ring bodies are connected by four rafters 23, and the connecting members on the main gyro correspond to the lower hem 21 which is designed to cooperate with the upper rim 51.
  • the lower rim 21 is protruded on the inner ring side wall of the ring.
  • a lower card edge 21 is provided on each of the left and right sides of each of the stringers 23, and two hemispherical pits 22 are provided on the upper surface of each of the lower card edges 21 corresponding to the hemispherical bumps 52.
  • the outer side wall of the main screw piece 2 is provided with a plurality of attacking portions 24 protruding from the side wall of the main screw piece 2, and the attacking part is a cone-shaped attacking bump, and there are six, two each.
  • An embossed pattern is provided between the attack bumps, and the main screw 2 serves as an attacking screw for the entire combined gyro.
  • the lower card edge 21 on the main screw 2 and the upper card edge 51 on the secondary screw 5 are misaligned, that is, the lower card edge 21 is aligned with the two sets of the upper screw 5
  • the gap between the sides 51 is then brought closer together, at which time the lower rim 21 of the main rotor 2 passes from the gap and is below the upper rim 51 of the secondary screw 5, at which point it can be rotated according to the direction in which the gyro is to be rotated.
  • the main gyro is engaged with the auxiliary gyro.
  • the main gyro is rotated counterclockwise with respect to the auxiliary gyro, so that the lower card edge 21 on the right side of the beam 23 and the left side on the auxiliary gyro
  • the card edge 51 is engaged, and the hemispherical pit 22 near the inner side is matched with the hemispherical convex point 52 of the upper card edge 51;
  • the main gyro is rotated clockwise relative to the auxiliary gyro, so that The lower card edge 21 on the left side of the beam 23 is engaged with the upper card edge 51 on the right side of the auxiliary gyro, and the hemispherical pit 22 near the inside is engaged with the hemispherical bump 52 of the upper card edge 51.
  • the main gyro is not immediately separated from the auxiliary gyro, but the main screw 2 is placed on the outer side.
  • the hemispherical pit 22 cooperates with the hemispherical bump 52 of the secondary screw 5 until the main screw 2 is rotated by the impact again, at which time the hemispherical bump 52 slides out of the hemispherical concave 22, and the upper and lower edges 51 and 21 are also Completely misaligned, the spring seat 7 is elastically restored, and the main gyro is ejected, thereby forming a rotation between the main gyro and the sub gyro.
  • the upper edge of the sleeve body 6 of the auxiliary gyro of the embodiment is provided with a rim 62, and a rim 63 is provided on the rim 62, and a lower portion of the secondary screw 5 is provided with a cam 53.
  • the upper part is provided with a limiting block, and the vertical distance between the card protrusion 53 and the limiting block is the thickness of the surrounding edge 62.
  • a weight plate 8 is connected, and the weight plate 8 is fixed between the screw cover 1 and the screw sleeve 3, and the main screw 1 is fixed to the screw.
  • the upper part of the sleeve 3 is attached to the lower end of the screw sleeve 3.
  • the gyro of the invention can be used in the gyro confrontation competition, and the gyro can be designed with a plurality of main screws 2 with different attacking capabilities.
  • the player assembles the main gyro according to his own choice, assembles the auxiliary gyro, and then selects according to his own choice. Let the gyro turn left or right. After selecting the main gyro, connect the main gyro to the top of the auxiliary gyro, and use the main screw 2 and the secondary screw 5 to connect with each other. At the beginning of the game, both sides will launch the gyro to the confrontation field.
  • the main gyro of the combined gyro generates a rotation opposite to the rotation direction with respect to the auxiliary gyro until the hemispherical pit 22 on the main rotor 2 and the hemispherical projection 52 on the secondary screw 5.
  • the main gyro bounces upward under the action of the spring 72 of the spring seat 7 in the auxiliary gyro, and deviates from the auxiliary gyro under the action of its rotational inertia force, and finally the lower tip of the toe 4 continues to rotate, and the vice
  • the gyro continues to rotate after the main gyro is popped up, so the combined gyro is separated into two independent gyros for rotation, thereby forming a two-in-one way, greatly improving the game.
  • the winning rate also enhances the fun of the gyro toy against the game, and can develop children's hands-on ability and competitiveness.

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Abstract

一种可分离的组合式玩具陀螺,包括主陀螺和副陀螺,主陀螺包括螺盖(1)、主螺片(2)、螺轴套(3)和陀尖(4),副陀螺包括有副螺片(5)、轴套体(6)和陀尖(4),副陀螺上部设有弹性机构,主陀螺活动连接于副陀螺上方且通过弹性机构可实现转动过程中主陀螺受阻时与副陀螺解除连接并弹射开来形成主陀螺和副陀螺各自单独转动。该可分离的组合式玩具陀螺将两个陀螺巧妙的结合成一体,并通过对抗撞击来实现分离,让玩家在比赛中获得更大的胜率,同时能培养小孩动手能力。

Description

一种可分离的组合式玩具陀螺
技术领域
本发明涉及一种玩具陀螺,具体是一种可分离的组合式玩具陀螺。
背景技术
现有的玩具陀螺,基本都是由单个陀螺构成,其包括有轴套体、螺盖、螺片和陀尖,通过陀螺发射器与螺盖连接并实现将陀螺发射出去转动,为了增加或改造陀螺的性能,使自己的陀螺能在对抗赛中赢得对方,现有的玩具陀螺大多设计成可组装强化的,将陀螺设计成易拆装的连接方式,并将轴套体设计成可加装拼长,从而可轻易快速的将陀螺拆散开来进行更换或添加配件,但无论如何改装强化,该玩具陀螺在玩耍过程中都只是以一个陀螺进行转动对抗,故其胜率还是难以得到较大提高,而且玩具陀螺可拆卸组装已是很普遍的了,所以这样的陀螺也逐渐失去了新奇感,很难再长期获得玩者的青睐。
发明内容
针对上述现有技术所存在的问题,本发明的目的是提供一种在玩耍过程中可一分为二,提高对抗的胜率和增强玩耍趣味性的可分离的组合式玩具陀螺。
为达到上述目的,本发明所采用的技术方案是:一种可分离的组合式玩具陀螺,其特点是包括主陀螺和副陀螺,所述主陀螺包括螺盖、主螺片、螺轴套和陀尖,所述副陀螺包括有副螺片、轴套体和陀尖,所述副陀螺上部设有弹性机构,所述主陀螺活动连接于副陀螺上方且通过所述弹性机构可实现转动过程中主陀螺受阻时与副陀螺解除连接并弹射开来形成主陀螺和副陀螺各自单独转动。
其中,上述弹性机构为设置于上述副陀螺的轴套体上的弹簧座,所述轴套体上设有供弹簧座容置的凹腔,所述弹簧座的上端凸出于轴套体上而使主陀螺连接到副陀螺上时弹簧座处于被压缩状态。
为了实现活动连接在陀螺被撞击受阻时能解除连接,上述主陀螺与副陀螺的活动连接是通过主螺片与副螺片相连接实现的,所述主螺片与副螺片上设有可相互活动连接的连接件,通过将主陀螺从副陀螺上方往下压缩弹簧座至主螺片与副螺片的两连接件相配合连接而实现将主陀螺与副陀螺组合成一体。进一步将上述副螺片设计成以圆环体,上述副螺片的连接件为设置于副螺片内环边上部的上卡边,上述主螺片的连接件对应设计成与上卡边配合的下卡边,通过将主螺片叠加在副螺片上使下卡边与上卡边错开并移至上卡边下方后转动主螺片使下卡边卡入上卡边而实现主陀螺与副陀螺可转动分离的连接成一体。
为了使得主陀螺与副陀螺连接即能稳定些,又不会相互卡得紧而无法分离,上述上卡边的下表面设有半球凸点,上述下卡边的上表面对应设有半球凹点,所述下卡边转动到上卡边时所述半球凹点与半球凸点相套接。
为了达到一次撞击时主陀螺不会马上与副陀螺分离,上述下卡边上的半球凹点设有两个,上述主陀螺与副陀螺分离前上述半球凸点分别与两个半球凹点先后配合。
本发明由于采用将陀螺设计成由主陀螺和副陀螺组合而成的结构,通过在副陀螺上部设置弹性机构,故将主陀螺活动连接于副陀螺上方并挤压弹性机构,然后在转动过程中利用主陀螺在撞击受阻时与副陀螺解脱活动连接后在弹性机构弹力作用下弹射开来形成主陀螺和副陀螺各自单独转动,从而实现在对抗比赛时陀螺能一分为二,大大增加了陀螺的攻击力,使得胜率更高,而且其玩法新奇,极具趣味性,能够获得更多玩者的喜爱;又由于将主副陀螺的活动连接结构设置在主副螺片上,故可以实现双方陀螺在对抗时双方螺片对撞使螺片发生错位转动而解除活动连接,又在主陀螺的连接件上设有多个半球凹点,而副陀螺的连接件上设有一个半球凸点,因此在碰撞过程中半球凸点会先后与多个半球凹点接触,最后才实现主副陀螺分离,从而使该组合式玩具陀螺不会在一开始碰撞时就发生分离,能够将致胜招数保留到紧要关头才发挥出来,同时增加了陀螺对抗的随机性,也进一步提高了游戏的趣味性。综上所述,本发明所述的可分离的组合式玩具陀螺,其设计巧妙,将两个陀螺巧妙的结合成一体,并通过对抗撞击来实现分离,极具游戏的趣味性,让玩家在比赛中获得更大的胜率,同时还能培养小孩动手能力和竞争能力。
下面结合附图和实施例对本发明作进一步说明。
附图说明
图1是本发明的立体结构示意图。
图2是本发明的剖视结构示意图。
图3是本发明的分解结构示意图。
图4是本发明副螺片的立体结构示意图。
图5是本发明主螺片的立体结构示意图。
具体实施方式
如图1至图3所示,该实施例所述的一种可分离的组合式玩具陀螺,其中包括主陀螺和副陀螺,该主陀螺包括螺盖1、主螺片2、螺轴套3和陀尖4,副陀螺包括有副螺片5、轴套体6和陀尖4,副陀螺上部设有弹性机构,主陀螺活动连接于副陀螺上方且通过该弹性机构可实现转动过程中主陀螺受阻时与副陀螺解除连接并弹射开来形成主陀螺和副陀螺各自单独转动,从而实现在对抗比赛时陀螺能一分为二,大大增加了陀螺的攻击力,使得胜率更高,而且其玩法新奇,极具趣味性,能够获得更多玩者的喜爱。
如图3所示,该实施例的弹性机构为设置于副陀螺的轴套体6上的弹簧座7,轴套体6上设有供弹簧座7容置的凹腔61,弹簧座7的上端凸出于轴套体6上而使主陀螺连接到副陀螺上时弹簧座7处于被压缩状态,装配后的结构如图2所示。该实施例的弹簧座7包括圆环座71和弹簧72,圆环座71向下延伸有卡扣脚73,轴套体6的凹腔61腔壁上开设有供卡扣脚73卡接的条形扣槽62,通过将卡扣脚73插接于条形扣槽62中而实现圆环座71可在条形扣槽62中移动,弹簧72安装于圆环座71与凹腔61之间而实现圆环座71可弹性移动。该实施例的主陀螺与副陀螺的活动连接是通过主螺片2与副螺片5相连接实现的,其中主陀螺的主螺片2与副陀螺的副螺片5上设有可相互活动连接的连接件,通过将主陀螺从副陀螺上方往下压缩弹簧座7至主螺片2与副螺片5的两连接件相配合连接而实现将主陀螺与副陀螺组合成一体。
如图4所示,该实施例的副螺片5设计成以圆环体,副螺片5的连接件为设置于副螺片5内环边上部的上卡边51,该实施例在副螺片5的内环边凸设有连接板54,一共设有均匀环形分布的四个连接板54,连接板54的端部向左右两侧均设有上卡边51,故该上卡边51与连接板54呈“T”字形状,在上卡边51的下表面设有半球凸点52,副螺片5的圆环外环壁上设有凹凸纹路,用于增加该陀螺的美观,同时使该陀螺具有一定的攻击性;如图5所示,该实施例的主螺片2也是呈圆环体,在圆环体的中间还有一个小圆环,该小圆环与圆环体之间通过四条胫条23连接,该主陀螺上的连接件对应设计成与上卡边51配合的下卡边21,该下卡边21凸设在圆环的内环边边壁上,同样在每个胫条23的左右两侧各设有一个下卡边21,在每个下卡边21的上表面对应半球凸点52设有两个半球凹点22,该实施例的主螺片2外侧边壁上设有多个攻击部24,该攻击部24凸出于主螺片2的边壁上,该攻击部为锥形攻击凸块,共有六个,每两攻击凸块之间设有凹凸纹路,该主螺片2作为整个组合陀螺的攻击螺片。该实施例两螺片装配时,先将主螺片2上的下卡边21与副螺片5上的上卡边51错位对齐,即下卡边21对齐副螺片5上两组上卡边51之间的空隙,然后靠拢,此时主螺片2的下卡边21从空隙经过并处于副螺片5的上卡边51下方,此时可根据你要发射陀螺转动的方向来转动主陀螺实现与副陀螺相卡接,如果要使陀螺顺时针转动,那么则将主陀螺相对副陀螺逆时针转动,使胫条23上右侧的下卡边21与副陀螺上左侧的上卡边51相卡接,同时将靠近里面的半球凹点22与上卡边51的半球凸点52相配合;如果要使陀螺逆时针转动,那么则将主陀螺相对副陀螺顺时针转动,使胫条23上左侧的下卡边21与副陀螺上右侧的上卡边51相卡接,同时将靠近里面的半球凹点22与上卡边51的半球凸点52相配合。因此在玩耍过程中,当该玩具陀螺受到第一次撞击时且撞击力达到使主螺片2转动时,主陀螺不会马上与副陀螺分离,而是使得主螺片2上靠外的那个半球凹点22与副螺片5的半球凸点52配合,直至再次撞击使主螺片2转动时,此时半球凸点52滑出半球凹点22,上卡边51与下卡边21也完全错位,弹簧座7弹性恢复,将主陀螺弹射出去,从而形成主陀螺与副陀螺分别转动。
如图3所示,该实施例的副陀螺的轴套体6上边缘向外延设有围边62,围边62上设有卡孔63,而副螺片5的下部设有卡凸53、上部设有限位块,卡凸53与限位块的垂直距离为围边62的厚度,通过将卡凸53穿过卡孔63后旋转而实现副螺片5安装固定于轴套体6上,该实施例的限位块即为上述连接上卡边51的连接板54。而该实施例的主陀螺的主螺片2上部连接有配重片8,配重片8通过螺盖1与螺轴套3的连接而固定于两者之间,主螺片1固定于螺轴套3上部,陀尖4安装于螺轴套3下端部。
该发明的陀螺可用于陀螺对抗比赛中,该陀螺在设计时可设计多种具有不同攻击能力的主螺片2,玩家根据自己的选择将主陀螺组装,再将副陀螺组装,然后根据自己选择让陀螺左转还是右转,选择好后将主陀螺卡接到副陀螺的上方,利用主螺片2与副螺片5相互活动连接;比赛开始,双方将陀螺发射到对抗场地上,双方陀螺进行对抗撞击,在撞击过程中,该组合式陀螺的主陀螺会相对副陀螺产生与转动方向相反的旋转,直至主螺片2上的半球凹点22与副螺片5上的半球凸点52完全脱离配合,此时主陀螺在副陀螺中的弹簧座7的弹簧72作用下向上弹起,并在其转动惯性力作用下偏离副陀螺,最后其下部的陀尖4着地继续旋转,而副陀螺在弹出主陀螺后也仍持续旋转,故组合式陀螺分离成两个各自独立的陀螺进行转动,从而形成以二敌一的方式,大大提高了比赛的获胜率,同时也提高了陀螺玩具对抗比赛的趣味性,能够培养小孩动手能力和竞争能力。
尽管本发明是参照具体实施例来描述,但这种描述并不意味着对本发明构成限制。参照本发明的描述,所公开的实施例的其他变化,对于本领域技术人员都是可以预料的,这种的变化应属于所属权利要求所限定的范围内。

Claims (10)

  1. 一种可分离的组合式玩具陀螺,其特征在于包括主陀螺和副陀螺,所述主陀螺包括螺盖(1)、主螺片(2)、螺轴套(3)和陀尖(4),所述副陀螺包括有副螺片(5)、轴套体(6)和陀尖(4),所述副陀螺上部设有弹性机构,所述主陀螺活动连接于副陀螺上方且通过所述弹性机构可实现转动过程中主陀螺受阻时与副陀螺解除连接并弹射开来形成主陀螺和副陀螺各自单独转动。
  2. 根据权利要求1所述的可分离的组合式玩具陀螺,其特征在于上述弹性机构为设置于上述副陀螺的轴套体(6)上的弹簧座(7),所述轴套体(6)上设有供弹簧座(7)容置的凹腔(61),所述弹簧座(7)的上端凸出于轴套体(6)上而使主陀螺连接到副陀螺上时弹簧座(7)处于被压缩状态。
  3. 根据权利要求2所述的可分离的组合式玩具陀螺,其特征在于上述弹簧座(7)包括圆环座(71)和弹簧(72),所述圆环座(71)向下延伸有卡扣脚(73),上述轴套体(6)的凹腔(61)腔壁上开设有供卡扣脚(73)卡接的条形扣槽(62),通过将卡扣脚(73)插接于条形扣槽(62)中而实现圆环座(71)可在条形扣槽(62)中移动,所述弹簧(72)安装于圆环座(71)与凹腔(61)之间而实现圆环座(71)可弹性移动。
  4. 根据权利要求1所述的可分离的组合式玩具陀螺,其特征在于上述主陀螺与副陀螺的活动连接是通过主螺片(2)与副螺片(5)相连接实现的,所述主螺片(2)与副螺片(5)上设有可相互活动连接的连接件,通过将主陀螺从副陀螺上方往下压缩弹簧座(7)至主螺片(2)与副螺片(5)的两连接件相配合连接而实现将主陀螺与副陀螺组合成一体。
  5. 根据权利要求4所述的可分离的组合式玩具陀螺,其特征在于上述副螺片(5)设计成以圆环体,上述副螺片(5)的连接件为设置于副螺片(5)内环边上部的上卡边(51),上述主螺片(2)的连接件对应设计成与上卡边(51)配合的下卡边(21),通过将主螺片(2)叠加在副螺片(5)上使下卡边(21)与上卡边(51)错开并移至上卡边(51)下方后转动主螺片(2)使下卡边(21)卡入上卡边(51)而实现主陀螺与副陀螺可转动分离的连接成一体。
  6. 根据权利要求5所述的可分离的组合式玩具陀螺,其特征在于上述上卡边(51)的下表面设有半球凸点(52),上述下卡边(21)的上表面对应设有半球凹点(22),所述下卡边(21)转动到上卡边(51)时所述半球凹点(22)与半球凸点(52)相套接。
  7. 根据权利要求6所述的可分离的组合式玩具陀螺,其特征在于上述下卡边(21)上的半球凹点(22)设有两个,上述主陀螺与副陀螺分离前上述半球凸点(52)分别与两个半球凹点(22)先后配合。
  8. 根据权利要求1所述的可分离的组合式玩具陀螺,其特征在于上述副陀螺的轴套体(6)上边缘向外延设有围边(62),所述围边(62)上设有卡孔(63),上述副螺片(5)的下部设有卡凸(53)、上部设有限位块,所述卡凸(53)与限位块的垂直距离为所述围边(62)的厚度,通过将卡凸(53)穿过卡孔(63)后旋转而实现副螺片(5)安装固定于轴套体(6)上。
  9. 根据权利要求1所述的可分离的组合式玩具陀螺,其特征在于上述主陀螺的主螺片(2)上部连接有配重片(8),所述配重片(8)通过上述螺盖(1)与螺轴套(3)的连接而固定于两者之间,所述主螺片(2)固定于螺轴套(3)上部,上述主陀螺的陀尖(4)安装于螺轴套(3)下端部。
  10. 根据权利要求1所述的可分离的组合式玩具陀螺,其特征在于上述主陀螺的主螺片(2)外侧边壁上设有多个攻击部(24),所述攻击部(24)凸出于主螺片(2)的边壁上。
PCT/CN2012/081099 2011-10-31 2012-09-07 一种可分离的组合式玩具陀螺 WO2013078896A1 (zh)

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DK2786790T3 (en) 2018-02-12
KR101555865B1 (ko) 2015-09-25
EP2786790A4 (en) 2015-09-09
JP2014533594A (ja) 2014-12-15
JP5946920B2 (ja) 2016-07-06
CA2857579C (en) 2016-10-11
KR20140108664A (ko) 2014-09-12
EP2786790B1 (en) 2017-11-08
AU2012344547B2 (en) 2016-01-14
AU2012344547A1 (en) 2014-07-17
CA2857579A1 (en) 2013-06-06
MY181800A (en) 2021-01-07
PL2786790T3 (pl) 2018-04-30
RU2566937C1 (ru) 2015-10-27
EP2786790A1 (en) 2014-10-08

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