WO2018006886A2 - Spinning top acceleration device - Google Patents

Spinning top acceleration device Download PDF

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Publication number
WO2018006886A2
WO2018006886A2 PCT/CN2017/099680 CN2017099680W WO2018006886A2 WO 2018006886 A2 WO2018006886 A2 WO 2018006886A2 CN 2017099680 W CN2017099680 W CN 2017099680W WO 2018006886 A2 WO2018006886 A2 WO 2018006886A2
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WO
WIPO (PCT)
Prior art keywords
gyro
acceleration
central shaft
locking member
chamfer
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PCT/CN2017/099680
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French (fr)
Chinese (zh)
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WO2018006886A3 (en
Inventor
王晓东
Original Assignee
广州市三宝玩具有限公司
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Publication of WO2018006886A2 publication Critical patent/WO2018006886A2/en
Publication of WO2018006886A3 publication Critical patent/WO2018006886A3/en

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    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H1/00Tops

Definitions

  • the present disclosure relates to the field of toy technology, for example, to a gyroscopic acceleration device.
  • the gyro in the related art increases the kinetic energy of the gyro by the whips of the whips to increase or maintain the rotation speed.
  • children can't control the whipping technique because they can't control the whipping technique.
  • a method of accelerating the acceleration of the gyro by the superposition of the gyro is proposed. After superposition, the two gyros form a whole, which greatly improves the energy and rotational speed of the main gyro during the rotation process.
  • the gyro launcher and the acceleration gyro of this structure are generally connected by means of an inverted pin.
  • the acceleration gyro cannot be released at the same time due to the reverse buckle on both sides, which causes the acceleration gyro to be biased and cannot be normally below.
  • the main body gyro is docked, which not only affects the operation of the main gyro, but also causes the acceleration gyro to fly out to cause injury and reduce the safety of the gyro.
  • the gyro launcher can be installed by aligning the pins, which is cumbersome to operate, time-consuming and laborious, reduces the fun of the gyro, and affects the performance of the gyro in the game.
  • the present disclosure provides a gyro acceleration device with reasonable structure, convenient installation, good concentricity and accurate docking.
  • a gyro acceleration device comprising a gyro emitter and a gyro, the gyro comprising a body gyro and an acceleration gyro, the acceleration gyro being superimposable on an upper portion of the body gyro, wherein the gyro emitter can respectively emit the body gyro and
  • the acceleration gyro is equipped with a central shaft that can drive the gyro rotation and lock the gyro by moving the lock member up and down.
  • the top of the main body gyro is fixed with a driving cover, and the top of the acceleration gyro is fixed.
  • a mounting hole is formed on the driving cover and the boss, and a lower end of the central shaft is inserted into the connecting hole for driving the main body gyro or the acceleration gyro; the lower end of the central shaft is provided a first chamfer, a second chamfer is provided at an opening of the upper end of the connecting hole; the first chamfer is adapted to the second chamfer so that the central shaft can be automatically adjusted to the correct position Connected to the hole.
  • an arcuate groove is formed in a lower portion of the boss, and the arcuate groove has a size larger than a size of the driving cover on the main body gyro, and is configured to accelerate the gyro sleeve when accelerating the main body gyro Connected to the top of the body top.
  • At least two acceleration gyros are included, and the size of the arcuate groove is adapted to the size of the boss for arranging adjacent acceleration gyros.
  • a first magnetic block is disposed under the acceleration gyro
  • a second magnetic block is disposed above the interior of the body gyro and above the acceleration gyro, the first magnetic block and the first magnetic block
  • the opposite poles of the second magnetic block have opposite magnetic poles, which facilitates accurate docking of the acceleration gyro with the body gyro below or the acceleration gyro below.
  • the locking member is fixed to a lower portion of the gyro launcher, a lower end of the locking member is provided with a hook, an upper end of the boss is provided with a buckle, and the hook and the buckle are Abutting, for locking the acceleration gyro.
  • the lower end of the locking member is provided with a third chamfer
  • the upper end of the boss is provided with a fourth chamfer
  • the third chamfer is matched with the fourth chamfer for mounting
  • the locking member comprises two opposite locking clips, and the locking clip is provided with a torsion spring, the torsion spring always abuts the upper end of the locking clip with the central shaft, and the lower end of the locking clip Open or clamp with the up and down movement of the central axis.
  • the central shaft includes an upper section (first section) and a lower section (second section), wherein the diameter of the upper section is larger than the diameter of the lower section; when the central axis moves downward, the upper section abuts the locking component, The locking member is locked to the acceleration gyro; when the center is moved axially, a lower portion thereof abuts the locking member, so that the locking member releases the acceleration gyro.
  • a circular arc transition section is disposed between the lower section and the upper section of the central axis.
  • the gyro acceleration device increases the balance and stability when accelerating the gyro emission, and overcomes the problem that the gyro acceleration device in the related art accelerates the gyro on both sides of the gyro during the launching process, and the eccentricity is easy to occur, and the acceleration is ensured. Acceleration effect when the gyro is superimposed; at the same time, the central axis is directly connected with the acceleration gyro, which is more convenient to install and simpler to operate.
  • the present embodiment enables the gyro to realize the function of increasing the energy and the rotational speed during the rotation, and has strong entertainment, playability and competitiveness; moreover, the present embodiment greatly simplifies the transmission structure with respect to the gyroscopic acceleration device in the related art. Production is easier and production costs are lower.
  • FIG. 1 is a schematic structural view of a gyro acceleration device according to an embodiment of the present invention
  • FIG. 2 is an exploded view of the gyro acceleration device provided by the embodiment
  • FIG. 3 is another angle exploded view of the gyro acceleration device provided by the embodiment.
  • FIG. 5 is a schematic structural view of a locking member provided by the embodiment.
  • the present embodiment provides a gyro acceleration device including a gyro emitter 1, a body gyro 2 and at least one acceleration gyro 3, which can be superimposed on the body gyro 2
  • the gyro launcher 1 can respectively emit the main body gyro 2 and the acceleration gyro 3; here, the gyro launcher 1 is mounted with a central axis 4 that can be rotated and moved up and down, and the top of the acceleration gyro 3 is fixed with a boss 5, a boss 5, a connecting hole is formed in the axial direction, and a lower end of the central shaft 4 is inserted into the connecting hole for driving the acceleration gyro 3 to rotate.
  • the acceleration gyro further includes a first cover 31 and a second cover.
  • the body 33 is disposed on the first cover body 31.
  • the first cover body 31 and the second cover body 33 form a cavity for receiving the first magnetic block 32.
  • the connection between the acceleration gyro 3 and the gyro transmitter 1 is realized by the central axis 4, which solves the disadvantages of the gyro launcher using the pin to accelerate the gyro rotation, and the balance and stability of the accelerated gyro emission are enhanced, and the guarantee is ensured.
  • the concentricity of the gyro emission improves the acceleration effect when the gyro 3 is accelerated and the gyro is superimposed under the acceleration gyro 3; at the same time, the central axis 4 is directly connected with the acceleration gyro 3, which is more convenient to install and simpler to operate.
  • the top of the main body gyro 2 is fixed with a driving cover 7 .
  • the lower side of the boss 5 is provided with an arc-shaped groove 6 .
  • the size of the arc-shaped groove 6 is larger than the size of the driving cover 7 on the main body gyro 2 , and is used for
  • the acceleration gyro 3 is sleeved above the body gyro 2 during acceleration.
  • the driving cover 7 is also provided with a connecting hole, and the inner diameter of the connecting hole is matched with the diameter of the lower end of the central shaft 4, so that the gyro emitter 1 drives the main body gyro 2 to rotate. Referring to FIG.
  • the main body 2 further includes a top cover 21 and a bottom cover 25, wherein the top cover 21 and
  • the receiving cavity formed by the bottom cover 2555 includes, in order, a middle cover 22, a second magnetic block 23 disposed on the middle cover 22, and a flywheel piece 24.
  • the gyro realizes the function of increasing energy and rotation speed in the rotation, and has strong entertainment, playability and competition. Sex.
  • the shape dimension of the arcuate groove 6 of the device is adapted to the shape size of the boss 5 for facilitating the nesting of the adjacent acceleration gyros 3 to increase The stability of each acceleration gyro 3 stack.
  • the first magnetic block 32 of the acceleration gyro 3 is opposite to the magnetic pole of the second magnetic block 23 of the body gyro 2, so that when the acceleration gyro 3 is released by the gyro launcher 1, the acceleration gyro 3 acts in combination with gravity and magnetic force. Then, it can accurately connect with the lower body gyro 2 or another acceleration gyro 3 below, and make the plurality of gyros become one whole, which greatly increases the safety and reliability of the superimposed connection.
  • the lower end of the central shaft 4 is provided with a first chamfer
  • the upper end opening of the connecting hole is provided with a second chamfer
  • the first chamfer is matched with the second chamfer, so that the central shaft 4 is smoothly inserted. Connection hole.
  • the cross-sectional shape of the central shaft 4 may be a non-circular structure, for example, a hexagonal, square, D-shaped or other polygonal structure, and correspondingly, the cross-sectional shape of the connecting hole is also It is hexagonal, square, D-shaped or other polygonal structure to ensure the stability and reliability of the transmission of the central shaft 4.
  • the lower portion of the transmitter 1 is further fixed with a locking member 8.
  • the lower end of the locking member 8 is provided with a hook 81
  • the upper end of the boss 5 is provided with a buckle 51.
  • the boss 5 is lowered.
  • the locking member 8 is snapped upward to abut the hook 81 and the buckle 51, thereby locking the acceleration gyro 3.
  • the bottom end of the hook of the locking member 8 is provided with a third chamfer
  • the top end of the buckle of the boss 5 is provided with a fourth chamfer
  • the third chamfer is matched with the structure of the fourth chamfer.
  • the buckle is smoothly introduced into the hook.
  • the locking member 8 includes two oppositely disposed locking clips 80.
  • Each of the locking clips 80 is provided with a torsion spring 801.
  • the torsion spring 801 causes the upper end of the locking clip 80 to always abut the central shaft 4.
  • the hook of the lower end is opened or clamped with the up and down movement of the central shaft 4.
  • the hooks 81 are respectively disposed on the two locking clips 80.
  • the central shaft 4 includes an upper section and a lower section, wherein the diameter of the upper section is larger than the diameter of the lower section; when the central shaft 4 moves downward, the upper section abuts against the locking member 8, so that the two hooks are tightened toward the middle, and the card is tightened.
  • a circular arc transition section is disposed between the lower section and the upper section of the central shaft 4 for smoothing the sliding between the locking member 8 and the central shaft 4, and reducing the operation of the acceleration gyro 3 due to vibration during the launching process. Impact.
  • the lower part of the gyro launcher 1 may also be provided with a protective cover, which can effectively prevent the central shaft 4 and the locking member 8 from being broken or damaged to the operator during non-playing moments.
  • the upper end of the central shaft 4 is connected with a first driving device for driving the rotation thereof and a second driving device for driving the vertical movement thereof, wherein the first driving device is a rack and pinion structure, wherein the gear is sleeved on the central shaft 4
  • the rack is inserted into the gyro launcher 1 by a jack on the gyro launcher 1 and meshes with the gear.
  • the second driving device is a slider spring structure.
  • the gyro acceleration device has the advantages of reasonable structure, simple operation, good concentricity and firm connection, and the central axis is directly connected with the acceleration gyro, thereby avoiding the inconvenience that the gyro transmitter needs to be aligned with the pins to install the gyro, thereby improving the safety of the gyro.
  • the use of the gyro enhances the entertainment, fun and commerciality of the gyro.
  • the gyro acceleration device increases the balance and stability when the gyro is accelerated, and overcomes the problem that the gyro acceleration device in the related art accelerates the gyro on both sides of the gyro during the launching process, and the eccentricity is easy to occur, and the eccentricity is easily ensured. Accelerate the acceleration effect when the gyro is superimposed; at the same time, the central axis is directly connected with the acceleration gyro, which is more convenient to install and simpler to operate, so that the gyro can realize the function of increasing energy and rotation speed during rotation, and has strong entertainment and playability. And the competitive nature; moreover, the present embodiment greatly simplifies the transmission structure, makes the production easier, and has lower production cost than the gyro acceleration device in the related art.

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  • Toys (AREA)
  • Portable Nailing Machines And Staplers (AREA)

Abstract

A spinning top acceleration device, comprising a spinning top launcher and spinning tops, the spinning tops comprising a main body spinning top and an acceleration spinning top, the acceleration spinning top being stacked above the main body spinning top, the spinning top launcher respectively launching the main body spinning top and the acceleration spinning top, the inside of the spinning top launcher being provided with a central shaft driving the spinning tops to rotate and driving a locking piece to lock the spinning tops via vertical movement, a top portion of the main body spinning top being fixedly provided with a driving cap, a top portion of the acceleration spinning top being fixedly provided with a boss, the driving cap and the boss each being provided with a connecting hole, a lower end of the central shaft being inserted into the connecting holes and used for driving the main body spinning top and the acceleration spinning top to rotate.

Description

陀螺加速装置Gyro acceleration device 技术领域Technical field
本公开涉及玩具技术领域,例如涉及一种陀螺加速装置。The present disclosure relates to the field of toy technology, for example, to a gyroscopic acceleration device.
背景技术Background technique
陀螺作为一种益智玩具深受适龄孩童喜爱。相关技术中的陀螺通过鞭子抽打的方式来为陀螺增加动能使其转速增加或者持续保持旋转。然而,一般孩童由于不能掌控好鞭打的技巧,不能很好的使陀螺旋转。针对这一现象,有人提出了利用加速陀螺叠加至主体陀螺进行加速的方法,叠加后,两陀螺形成一个整体,大大提高了主体陀螺在转动过程中的能量和转速。As an educational toy, the top is popular among children of all ages. The gyro in the related art increases the kinetic energy of the gyro by the whips of the whips to increase or maintain the rotation speed. However, in general, children can't control the whipping technique because they can't control the whipping technique. Aiming at this phenomenon, a method of accelerating the acceleration of the gyro by the superposition of the gyro is proposed. After superposition, the two gyros form a whole, which greatly improves the energy and rotational speed of the main gyro during the rotation process.
但是,这种结构的陀螺发射器与加速陀螺之间一般采用倒扣插脚的方式进行连接,发射时,由于两侧的倒扣不能同时释放加速陀螺,导致加速陀螺产生偏向,无法正常与其下方的主体陀螺对接,这不仅影响了主体陀螺的运行,而且可能使加速陀螺飞出产生伤人事件,降低陀螺的安全使用性;而且,这种倒扣插脚的方式,需要将加速陀螺上的插孔对准插脚才能装上陀螺发射器,其操作麻烦,费时费力,降低了陀螺的趣味性,影响了陀螺在比赛中的表现。However, the gyro launcher and the acceleration gyro of this structure are generally connected by means of an inverted pin. When the launch is reversed, the acceleration gyro cannot be released at the same time due to the reverse buckle on both sides, which causes the acceleration gyro to be biased and cannot be normally below. The main body gyro is docked, which not only affects the operation of the main gyro, but also causes the acceleration gyro to fly out to cause injury and reduce the safety of the gyro. Moreover, the way of reversing the pin needs to accelerate the jack on the gyro The gyro launcher can be installed by aligning the pins, which is cumbersome to operate, time-consuming and laborious, reduces the fun of the gyro, and affects the performance of the gyro in the game.
发明内容Summary of the invention
本公开提供一种结构合理、安装方便、同心度好、对接准确的陀螺加速装置。The present disclosure provides a gyro acceleration device with reasonable structure, convenient installation, good concentricity and accurate docking.
本实施例采用以下技术方案:This embodiment adopts the following technical solutions:
一种陀螺加速装置,包括陀螺发射器和陀螺,所述陀螺包括主体陀螺和加速陀螺,所述加速陀螺可叠加于所述主体陀螺的上部,所述陀螺发射器可分别发射所述主体陀螺和所述加速陀螺,所述陀螺发射器内安装有可驱动陀螺转动和通过上下移动驱动锁定件锁定陀螺的中心轴,所述主体陀螺的顶部固定有驱动盖,所述加速陀螺的顶部固设有凸台,所述驱动盖和凸台上均开设有连接孔,所述中心轴的下端***所述连接孔内,用于带动所述主体陀螺或加速陀螺旋转;所述中心轴的下端设有第一倒角,所述连接孔的上端开口处设有第二倒角;所述第一倒角与所述第二倒角相适配,以便于所述中心轴能够自动调整至正确位置***连接孔内。 A gyro acceleration device comprising a gyro emitter and a gyro, the gyro comprising a body gyro and an acceleration gyro, the acceleration gyro being superimposable on an upper portion of the body gyro, wherein the gyro emitter can respectively emit the body gyro and The acceleration gyro is equipped with a central shaft that can drive the gyro rotation and lock the gyro by moving the lock member up and down. The top of the main body gyro is fixed with a driving cover, and the top of the acceleration gyro is fixed. a mounting hole is formed on the driving cover and the boss, and a lower end of the central shaft is inserted into the connecting hole for driving the main body gyro or the acceleration gyro; the lower end of the central shaft is provided a first chamfer, a second chamfer is provided at an opening of the upper end of the connecting hole; the first chamfer is adapted to the second chamfer so that the central shaft can be automatically adjusted to the correct position Connected to the hole.
可选的,所述凸台的下方开设有弧形槽,所述弧形槽的尺寸大于所述主体陀螺上驱动盖的尺寸,用于在对所述主体陀螺加速时使所述加速陀螺套接于所述主体陀螺的上方。Optionally, an arcuate groove is formed in a lower portion of the boss, and the arcuate groove has a size larger than a size of the driving cover on the main body gyro, and is configured to accelerate the gyro sleeve when accelerating the main body gyro Connected to the top of the body top.
可选的,包括至少两个加速陀螺,所述弧形槽的尺寸与所述凸台的尺寸相适配,用于使相邻所述加速陀螺可相互套接。Optionally, at least two acceleration gyros are included, and the size of the arcuate groove is adapted to the size of the boss for arranging adjacent acceleration gyros.
可选的,所述加速陀螺内部的下方设有第一磁性块,所述主体陀螺内部的上方及所述加速陀螺内部的上方均设有第二磁性块,所述第一磁性块与所述第二磁性块的相对面的磁极相反,便于叠加时使所述加速陀螺与其下方的所述主体陀螺或下方的所述加速陀螺准确对接。Optionally, a first magnetic block is disposed under the acceleration gyro, and a second magnetic block is disposed above the interior of the body gyro and above the acceleration gyro, the first magnetic block and the first magnetic block The opposite poles of the second magnetic block have opposite magnetic poles, which facilitates accurate docking of the acceleration gyro with the body gyro below or the acceleration gyro below.
可选的,所述锁定件固设于所述陀螺发射器的下部,所述锁定件的下端设有卡钩,所述凸台的上端设有卡扣,所述卡钩与所述卡扣相抵接,用于锁定所述加速陀螺。Optionally, the locking member is fixed to a lower portion of the gyro launcher, a lower end of the locking member is provided with a hook, an upper end of the boss is provided with a buckle, and the hook and the buckle are Abutting, for locking the acceleration gyro.
可选的,所述锁定件的下端设有第三倒角,所述凸台的上端设有第四倒角,所述第三倒角与所述第四倒角相适配,用于安装所述加速陀螺时将所述卡扣导入所述卡钩。Optionally, the lower end of the locking member is provided with a third chamfer, the upper end of the boss is provided with a fourth chamfer, and the third chamfer is matched with the fourth chamfer for mounting The buckle is introduced into the hook when the gyro is accelerated.
可选的,所述锁定件包括两个相对设置锁定夹,所述锁定夹内设有扭簧,所述扭簧使锁定夹的上端始终与所述中心轴相抵接,所述锁定夹的下端随所述中心轴的上下运动张开或夹紧。Optionally, the locking member comprises two opposite locking clips, and the locking clip is provided with a torsion spring, the torsion spring always abuts the upper end of the locking clip with the central shaft, and the lower end of the locking clip Open or clamp with the up and down movement of the central axis.
可选的,所述中心轴包括上段(第一段)和下段(第二段),其中上段的直径大于下段的直径;当中心轴向下运动时,其上段与所述锁定件相抵接,使所述锁定件锁定所述加速陀螺;当所述中心轴向上运动时,其下段与所述锁定件相抵接,使所述锁定件释放所述加速陀螺。Optionally, the central shaft includes an upper section (first section) and a lower section (second section), wherein the diameter of the upper section is larger than the diameter of the lower section; when the central axis moves downward, the upper section abuts the locking component, The locking member is locked to the acceleration gyro; when the center is moved axially, a lower portion thereof abuts the locking member, so that the locking member releases the acceleration gyro.
可选的,所述中心轴的下段与上段之间设置有圆弧过渡段。Optionally, a circular arc transition section is disposed between the lower section and the upper section of the central axis.
本实施例中陀螺加速装置增加了加速陀螺发射时的平衡性和稳定性,克服了相关技术中陀螺加速装置在发射过程中加速陀螺两侧插脚不能同步脱离、容易出现偏心的问题,保证了加速陀螺叠加时的加速效果;同时,利用中心轴直接与加速陀螺连接,安装更方便,操作更简单。本实施使陀螺实现在转动中增加能量和转速的功能,具有较强的娱乐性、可玩性和竞技性;而且,本实施例相对于相关技术中的陀螺加速装置,大大简化了传动结构,制作更容易,生产成本更低。 In the embodiment, the gyro acceleration device increases the balance and stability when accelerating the gyro emission, and overcomes the problem that the gyro acceleration device in the related art accelerates the gyro on both sides of the gyro during the launching process, and the eccentricity is easy to occur, and the acceleration is ensured. Acceleration effect when the gyro is superimposed; at the same time, the central axis is directly connected with the acceleration gyro, which is more convenient to install and simpler to operate. The present embodiment enables the gyro to realize the function of increasing the energy and the rotational speed during the rotation, and has strong entertainment, playability and competitiveness; moreover, the present embodiment greatly simplifies the transmission structure with respect to the gyroscopic acceleration device in the related art. Production is easier and production costs are lower.
附图概述BRIEF abstract
图1是本实施方式提供的陀螺加速装置的结构示意图;1 is a schematic structural view of a gyro acceleration device according to an embodiment of the present invention;
图2是本实施方式提供的陀螺加速装置的***图;2 is an exploded view of the gyro acceleration device provided by the embodiment;
图3是本实施方式提供的陀螺加速装置的另一角度***图;3 is another angle exploded view of the gyro acceleration device provided by the embodiment;
图4是本实施方式提供的陀螺的***图;4 is an exploded view of the gyro provided by the embodiment;
图5是本实施方式提供的锁定件的结构示意图。FIG. 5 is a schematic structural view of a locking member provided by the embodiment.
图中:In the picture:
1、陀螺发射器;2、主体陀螺;21、顶盖;22、中部盖体;23、第二磁性块;24、飞轮片;25、底盖;3、加速陀螺;31、第一盖体;32、第一磁性块;33、第二盖体;4、中心轴;5、凸台;51、卡扣;6、弧形槽;7、驱动盖;8、锁定件;81、卡钩;80、锁定夹;801、扭簧。1, gyro transmitter; 2, the main gyro; 21, top cover; 22, the middle cover; 23, the second magnetic block; 24, the flywheel; 25, the bottom cover; 3, the acceleration gyro; 31, the first cover 32, first magnetic block; 33, second cover; 4, central shaft; 5, boss; 51, buckle; 6, curved groove; 7, drive cover; 8, locking member; 81, hook 80, locking clip; 801, torsion spring.
具体实施方式detailed description
下面将结合附图对本实施例的技术方案作详细描述。如图1至图3所示,本实施方式提供了一种陀螺加速装置,该加速装置包括陀螺发射器1、主体陀螺2和至少一个加速陀螺3,该加速陀螺3可叠加于主体陀螺2的上部,陀螺发射器1可分别发射主体陀螺2和加速陀螺3;这里,陀螺发射器1内安装有可转动和上下移动的中心轴4,加速陀螺3的顶部固设有凸台5,凸台5沿轴向开设有连接孔,中心轴4的下端***连接孔内,用于带动加速陀螺3旋转,参见图4,示例性的,所述加速陀螺还包括第一盖体31和第二盖体33,所述凸台5设置在所述第一盖体31上,所述第一盖体31与第二盖体33形成一空腔,该空腔用于容纳所述第一磁性块32。本实施例通过中心轴4实现加速陀螺3与陀螺发射器1的连接,解决了相关技术中陀螺发射器利用插脚带动加速陀螺旋转的弊端,增强了加速陀螺发射时的平衡性和稳定性,保证了陀螺发射的同心度,改善了加速陀螺3与加速陀螺3下方的陀螺叠加时的加速效果;同时,利用中心轴4直接与加速陀螺3连接,安装更方便,操作更简单。The technical solutions of the present embodiment will be described in detail below with reference to the accompanying drawings. As shown in FIG. 1 to FIG. 3, the present embodiment provides a gyro acceleration device including a gyro emitter 1, a body gyro 2 and at least one acceleration gyro 3, which can be superimposed on the body gyro 2 In the upper part, the gyro launcher 1 can respectively emit the main body gyro 2 and the acceleration gyro 3; here, the gyro launcher 1 is mounted with a central axis 4 that can be rotated and moved up and down, and the top of the acceleration gyro 3 is fixed with a boss 5, a boss 5, a connecting hole is formed in the axial direction, and a lower end of the central shaft 4 is inserted into the connecting hole for driving the acceleration gyro 3 to rotate. Referring to FIG. 4, for example, the acceleration gyro further includes a first cover 31 and a second cover. The body 33 is disposed on the first cover body 31. The first cover body 31 and the second cover body 33 form a cavity for receiving the first magnetic block 32. In this embodiment, the connection between the acceleration gyro 3 and the gyro transmitter 1 is realized by the central axis 4, which solves the disadvantages of the gyro launcher using the pin to accelerate the gyro rotation, and the balance and stability of the accelerated gyro emission are enhanced, and the guarantee is ensured. The concentricity of the gyro emission improves the acceleration effect when the gyro 3 is accelerated and the gyro is superimposed under the acceleration gyro 3; at the same time, the central axis 4 is directly connected with the acceleration gyro 3, which is more convenient to install and simpler to operate.
可选地,本实施例中主体陀螺2的顶部固定有驱动盖7,凸台5的下方开设有弧形槽6,弧形槽6的尺寸大于主体陀螺2上驱动盖7的尺寸,用于加速时使加速陀螺3套接于主体陀螺2的上方。这里,驱动盖7内也开设有连接孔,且该连接孔的内径与中心轴4下端的直径相适配,以便于陀螺发射器1驱动主体陀螺2转动。参见图4,示例性的,该主体陀螺2还包括顶盖21和底盖25,其中所述顶盖21和 底盖2555形成的容纳腔中依次包括中部盖体22、设置在中部盖体22上的第二磁性块23和飞轮片24。工作过程中,本实施例中通过在转动的主体陀螺2上叠加更高转速的加速陀螺3,使陀螺实现在转动中增加能量和转速的功能,具有较强的娱乐性、可玩性和竞技性。Optionally, in the embodiment, the top of the main body gyro 2 is fixed with a driving cover 7 . The lower side of the boss 5 is provided with an arc-shaped groove 6 . The size of the arc-shaped groove 6 is larger than the size of the driving cover 7 on the main body gyro 2 , and is used for The acceleration gyro 3 is sleeved above the body gyro 2 during acceleration. Here, the driving cover 7 is also provided with a connecting hole, and the inner diameter of the connecting hole is matched with the diameter of the lower end of the central shaft 4, so that the gyro emitter 1 drives the main body gyro 2 to rotate. Referring to FIG. 4, for example, the main body 2 further includes a top cover 21 and a bottom cover 25, wherein the top cover 21 and The receiving cavity formed by the bottom cover 2555 includes, in order, a middle cover 22, a second magnetic block 23 disposed on the middle cover 22, and a flywheel piece 24. During the working process, in the embodiment, by superimposing the higher-speed acceleration gyro 3 on the rotating body gyro 2, the gyro realizes the function of increasing energy and rotation speed in the rotation, and has strong entertainment, playability and competition. Sex.
可选地,当加速陀螺3的数量超过两个时,本装置弧形槽6的形状尺寸与凸台5的形状尺寸相适配,用于方便相邻的加速陀螺3相互套接,以增加各加速陀螺3叠加的稳定性。另外,加速陀螺3的第一磁性块32与主体陀螺2的第二磁性块23的磁极相反,这样,当加速陀螺3经陀螺发射器1释放时,该加速陀螺3在重力和磁性力共同作用下,能够准确与其下方的主体陀螺2或另一加速陀螺3相对接,并使多个陀螺相互成为一个整体,大大增加了叠加连接的安全可靠性。Optionally, when the number of the acceleration gyro 3 exceeds two, the shape dimension of the arcuate groove 6 of the device is adapted to the shape size of the boss 5 for facilitating the nesting of the adjacent acceleration gyros 3 to increase The stability of each acceleration gyro 3 stack. In addition, the first magnetic block 32 of the acceleration gyro 3 is opposite to the magnetic pole of the second magnetic block 23 of the body gyro 2, so that when the acceleration gyro 3 is released by the gyro launcher 1, the acceleration gyro 3 acts in combination with gravity and magnetic force. Then, it can accurately connect with the lower body gyro 2 or another acceleration gyro 3 below, and make the plurality of gyros become one whole, which greatly increases the safety and reliability of the superimposed connection.
可选的,中心轴4的下端设有第一倒角,连接孔的上端开口处设有第二倒角,且第一倒角与第二倒角相适配,以便于中心轴4顺利***连接孔。这样在安装加速陀螺3时,可以无需对位就能直接装入陀螺发射器1,避免了传统陀螺发射器需要对准插脚才能进行安装的麻烦,提高了操作效率。可选地,为方便带动加速陀螺3旋转,中心轴4的截面形状可以为非圆形的结构,例如可以为六角形、方形、D形或其它多边形结构,相应地,连接孔的截面形状也为六角形、方形、D形或其它多边形结构,以保证中心轴4传动的稳定性和可靠性。Optionally, the lower end of the central shaft 4 is provided with a first chamfer, the upper end opening of the connecting hole is provided with a second chamfer, and the first chamfer is matched with the second chamfer, so that the central shaft 4 is smoothly inserted. Connection hole. In this way, when the acceleration gyro 3 is installed, the gyro transmitter 1 can be directly loaded without alignment, thereby avoiding the trouble that the conventional gyro transmitter needs to be aligned with the pins for installation, and the operation efficiency is improved. Optionally, in order to facilitate the rotation of the acceleration gyro 3, the cross-sectional shape of the central shaft 4 may be a non-circular structure, for example, a hexagonal, square, D-shaped or other polygonal structure, and correspondingly, the cross-sectional shape of the connecting hole is also It is hexagonal, square, D-shaped or other polygonal structure to ensure the stability and reliability of the transmission of the central shaft 4.
可选的,发射器1的下部还固定有锁定件8,锁定件8的下端设有卡钩81,而凸台5的上端设有卡扣51,安装加速陀螺3时,凸台5由下向上卡入锁定件8,使卡钩81与卡扣51相抵接,进而锁定加速陀螺3。同时,该锁定件8的卡钩的底端设有第三倒角,凸台5的卡扣的顶端设有第四倒角,且第三倒角与第四倒角的结构相适配,以便于安装加速陀螺3时将卡扣顺利导入卡钩内。Optionally, the lower portion of the transmitter 1 is further fixed with a locking member 8. The lower end of the locking member 8 is provided with a hook 81, and the upper end of the boss 5 is provided with a buckle 51. When the acceleration gyro 3 is installed, the boss 5 is lowered. The locking member 8 is snapped upward to abut the hook 81 and the buckle 51, thereby locking the acceleration gyro 3. At the same time, the bottom end of the hook of the locking member 8 is provided with a third chamfer, the top end of the buckle of the boss 5 is provided with a fourth chamfer, and the third chamfer is matched with the structure of the fourth chamfer. In order to install the acceleration gyro 3, the buckle is smoothly introduced into the hook.
可选的,本实施例中锁定件8包括两个相对设置锁定夹80,其中每个锁定夹80内均设有扭簧801,扭簧801使锁定夹80的上端始终与中心轴4相抵接,下端的卡钩随中心轴4的上下运动实现张开或夹住动作。可选的,所述卡钩81分别设置在所述两个锁定夹80上。可选地,中心轴4包括上段和下段,其中上段的直径大于下段的直径;当中心轴4向下运动时,其上段与锁定件8相抵接,使两个卡钩向中间收紧,卡住凸台5上的卡扣;当中心轴4向上运动时,其下段与锁定件8相抵接,使两个卡钩向两侧松开,凸台5脱离卡钩得到释放。可选地,中心轴4的下段与上段之间设置有圆弧过渡段,用以使锁定件8与中心轴4之间的滑动更平稳,减小发射过程中由于震动对加速陀螺3运行产生的影响。而且,本实施例中 陀螺发射器1的下部还可以是设有保护壳,能有效避免在非玩耍时刻中心轴4和锁定件8被损坏折断或对操作者造成伤害。Optionally, in this embodiment, the locking member 8 includes two oppositely disposed locking clips 80. Each of the locking clips 80 is provided with a torsion spring 801. The torsion spring 801 causes the upper end of the locking clip 80 to always abut the central shaft 4. The hook of the lower end is opened or clamped with the up and down movement of the central shaft 4. Optionally, the hooks 81 are respectively disposed on the two locking clips 80. Optionally, the central shaft 4 includes an upper section and a lower section, wherein the diameter of the upper section is larger than the diameter of the lower section; when the central shaft 4 moves downward, the upper section abuts against the locking member 8, so that the two hooks are tightened toward the middle, and the card is tightened. When the central shaft 4 moves upward, the lower portion abuts against the locking member 8, so that the two hooks are released to both sides, and the boss 5 is released from the hook. Optionally, a circular arc transition section is disposed between the lower section and the upper section of the central shaft 4 for smoothing the sliding between the locking member 8 and the central shaft 4, and reducing the operation of the acceleration gyro 3 due to vibration during the launching process. Impact. Moreover, in this embodiment The lower part of the gyro launcher 1 may also be provided with a protective cover, which can effectively prevent the central shaft 4 and the locking member 8 from being broken or damaged to the operator during non-playing moments.
本实施方式中,中心轴4的上端连接有驱动其旋转的第一驱动装置和驱动其上下移动的第二驱动装置,其中第一驱动装置为齿轮齿条结构,其中齿轮套设于中心轴4的外侧,齿条由陀螺发射器1上的插孔穿入陀螺发射器1内,并与齿轮相啮合。第二驱动装置为滑块弹簧结构,当齿条***陀螺发射器1时,滑块受力向下运动,并带动中心轴4向下移动,此时弹簧受力压缩;当齿条抽出陀螺发射器时,弹簧在弹性力的作用下向上推动滑块,从而使中心轴4向上移动。In the present embodiment, the upper end of the central shaft 4 is connected with a first driving device for driving the rotation thereof and a second driving device for driving the vertical movement thereof, wherein the first driving device is a rack and pinion structure, wherein the gear is sleeved on the central shaft 4 On the outside, the rack is inserted into the gyro launcher 1 by a jack on the gyro launcher 1 and meshes with the gear. The second driving device is a slider spring structure. When the rack is inserted into the gyro launcher 1, the slider is forced to move downward and drives the central shaft 4 to move downward. At this time, the spring is compressed by force; when the rack is pulled out of the gyro When the device is pressed, the spring pushes the slider upward by the elastic force, so that the central shaft 4 moves upward.
本实施例中陀螺加速装置结构合理、操作简便、同心度好、连接牢靠,利用中心轴直接与加速陀螺连接,避免了陀螺发射器需要对准插脚才能安装陀螺的不便,既提高了陀螺的安全使用性,又增强了陀螺的娱乐性、趣味性和商业性。In the embodiment, the gyro acceleration device has the advantages of reasonable structure, simple operation, good concentricity and firm connection, and the central axis is directly connected with the acceleration gyro, thereby avoiding the inconvenience that the gyro transmitter needs to be aligned with the pins to install the gyro, thereby improving the safety of the gyro. The use of the gyro enhances the entertainment, fun and commerciality of the gyro.
工业实用性Industrial applicability
本实施例提供的陀螺加速装置增加了加速陀螺发射时的平衡性和稳定性,克服了相关技术中陀螺加速装置在发射过程中加速陀螺两侧插脚不能同步脱离、容易出现偏心的问题,保证了加速陀螺叠加时的加速效果;同时,利用中心轴直接与加速陀螺连接,安装更方便,操作更简单,使陀螺实现在转动中增加能量和转速的功能,具有较强的娱乐性、可玩性和竞技性;而且,本实施例相对于相关技术中的陀螺加速装置,大大简化了传动结构,制作更容易,生产成本更低。 The gyro acceleration device provided by the embodiment increases the balance and stability when the gyro is accelerated, and overcomes the problem that the gyro acceleration device in the related art accelerates the gyro on both sides of the gyro during the launching process, and the eccentricity is easy to occur, and the eccentricity is easily ensured. Accelerate the acceleration effect when the gyro is superimposed; at the same time, the central axis is directly connected with the acceleration gyro, which is more convenient to install and simpler to operate, so that the gyro can realize the function of increasing energy and rotation speed during rotation, and has strong entertainment and playability. And the competitive nature; moreover, the present embodiment greatly simplifies the transmission structure, makes the production easier, and has lower production cost than the gyro acceleration device in the related art.

Claims (9)

  1. 一种陀螺加速装置,包括陀螺发射器(1)和陀螺,所述陀螺包括主体陀螺(2)和加速陀螺(3),所述加速陀螺(3)可叠加于所述主体陀螺(2)的上部,所述陀螺发射器(1)可分别发射所述主体陀螺(2)和所述加速陀螺(3),其中,所述陀螺发射器(1)内安装有中心轴(4),所述中心轴(4)可驱动陀螺转动和通过上下移动驱动锁定件(8)锁定陀螺,所述主体陀螺(2)的顶部固定有驱动盖(7),所述加速陀螺(3)的顶部固设有凸台(5),所述驱动盖(7)和凸台(5)上均开设有连接孔(50,70),所述中心轴(4)的下端***所述连接孔内,以带动所述主体陀螺(2)或加速陀螺(3)旋转;所述中心轴(4)的下端设有第一倒角,所述连接孔的上端开口处设有第二倒角;所述第一倒角与所述第二倒角相适配,以便于所述中心轴(4)能够自动调整至正确位置***所述连接孔内。A gyro acceleration device comprising a gyro emitter (1) and a gyro, the gyro comprising a body gyro (2) and an acceleration gyro (3), the acceleration gyro (3) being superimposable on the body gyro (2) In the upper part, the gyro emitter (1) can respectively emit the body gyro (2) and the acceleration gyro (3), wherein the gyro emitter (1) is mounted with a central axis (4), The central shaft (4) can drive the rotation of the gyro and lock the gyro by moving the locking member (8) up and down. The top of the main body gyro (2) is fixed with a driving cover (7), and the top of the acceleration gyro (3) is fixed. There is a boss (5), and the driving cover (7) and the boss (5) are respectively provided with connecting holes (50, 70), and the lower end of the central shaft (4) is inserted into the connecting hole to drive The main body gyro (2) or the acceleration gyro (3) rotates; the lower end of the central shaft (4) is provided with a first chamfer, and the upper end opening of the connecting hole is provided with a second chamfer; The chamfer is adapted to the second chamfer so that the central shaft (4) can be automatically adjusted to the correct position to be inserted into the connecting hole.
  2. 根据权利要求1所述的陀螺加速装置,其中,所述凸台(5)的下方开设有弧形槽(6),所述弧形槽(6)的尺寸大于所述主体陀螺(2)上驱动盖(7)的尺寸,用于在对所述主体陀螺(2)加速时使所述加速陀螺(3)套接于所述主体陀螺(2)的上方。The gyro acceleration device according to claim 1, wherein an arcuate groove (6) is opened below the boss (5), and the arc groove (6) is larger in size than the body gyro (2) The drive cover (7) is sized to engage the acceleration gyro (3) above the body gyro (2) when accelerating the body gyro (2).
  3. 根据权利要求2所述的陀螺加速装置,包括至少两个加速陀螺(3),所述弧形槽(6)的尺寸与所述凸台(5)的尺寸相适配,用于使相邻所述加速陀螺(3)可相互套接。A gyroscopic acceleration device according to claim 2, comprising at least two acceleration gyros (3), said arcuate grooves (6) being sized to match the size of said boss (5) for adjacent The acceleration gyros (3) can be nested with each other.
  4. 根据权利要求3所述的陀螺加速装置,其中,所述加速陀螺(3)内部的下方设有第一磁性块(32),所述主体陀螺(2)内部的上方及所述加速陀螺(3)内部的上方均设有第二磁性块(23),所述第一磁性块与所述第二磁性块的相对面的磁极相反,便于叠加时使所述加速陀螺(3)与下方的所述主体陀螺(2)或下方的所述加速陀螺(3)准确对接。The gyro acceleration device according to claim 3, wherein a first magnetic block (32) is disposed below the inside of the acceleration gyro (3), and the inside of the main body gyro (2) and the acceleration gyro (3) a second magnetic block (23) is disposed on the upper side of the inner portion, and the magnetic poles of the opposite faces of the first magnetic block and the second magnetic block are opposite to each other to facilitate the acceleration of the gyro (3) and the lower portion. The body gyro (2) or the acceleration gyro (3) below is accurately docked.
  5. 根据权利要求1所述的陀螺加速装置,其中,所述锁定件(8)固设于所述陀螺发射器(1)的下部,所述锁定件(8)的下端设有卡钩(81),所述凸台(5)的上端设有卡扣(51),所述卡钩(81)与所述卡扣(51)相抵接,用于锁定所述加速陀螺(3)。The gyro acceleration device according to claim 1, wherein the locking member (8) is fixed to a lower portion of the gyro emitter (1), and a hook (81) is provided at a lower end of the locking member (8). The upper end of the boss (5) is provided with a buckle (51), and the hook (81) abuts against the buckle (51) for locking the acceleration gyro (3).
  6. 根据权利要求5所述的陀螺加速装置,其中,所述锁定件(8)的下端设有第三倒角,所述凸台(5)的上端设有第四倒角,所述第三倒角与所述第四倒角相适配,用于安装所述加速陀螺(3)时将所述卡扣导入所述卡钩。The gyro acceleration device according to claim 5, wherein a lower end of the locking member (8) is provided with a third chamfer, and an upper end of the boss (5) is provided with a fourth chamfer, the third inverted The corner is adapted to the fourth chamfer for guiding the buckle into the hook when the acceleration gyro (3) is mounted.
  7. 根据权利要求5或6所述的陀螺加速装置,其中,所述锁定件(8)包括 两个相对设置锁定夹(80),所述锁定夹(80)内设有扭簧(801),所述扭簧使锁定夹的上端始终与所述中心轴(4)相抵接,所述锁定夹的下端随所述中心轴(4)的上下运动张开或夹紧。A gyroscopic acceleration device according to claim 5 or 6, wherein said locking member (8) comprises Two locking clips (80) are disposed oppositely, and a locking spring (801) is disposed in the locking clip (80), the torsion spring always abuts the upper end of the locking clip with the central shaft (4), the locking The lower end of the clip is opened or clamped with the up and down movement of the central shaft (4).
  8. 根据权利要求7所述的陀螺加速装置,其中,所述中心轴(4)包括第一段(41)和第二段(42),其中第一段(41)的直径大于第二段(42)的直径;当中心轴(4)向下运动时,其第一段(41)与所述锁定件(8)相抵接,使所述锁定件(8)锁定所述加速陀螺(3);当所述中心轴(4)向上运动时,其第二段(42)与所述锁定件(8)相抵接,使所述锁定件(8)释放所述加速陀螺(3)。A gyroscopic acceleration device according to claim 7, wherein said central shaft (4) comprises a first segment (41) and a second segment (42), wherein the diameter of the first segment (41) is greater than the second segment (42) Diameter; when the central shaft (4) moves downward, its first section (41) abuts the locking member (8), causing the locking member (8) to lock the acceleration gyro (3); When the central shaft (4) moves upward, its second section (42) abuts against the locking member (8), causing the locking member (8) to release the acceleration gyro (3).
  9. 根据权利要求8所述的陀螺加速装置,其中,所述中心轴(4)的第二段(42)与第一段(41)之间设置有圆弧过渡段(43)。 A gyroscopic acceleration device according to claim 8, wherein a circular arc transition (43) is provided between the second section (42) of the central shaft (4) and the first section (41).
PCT/CN2017/099680 2016-07-08 2017-08-30 Spinning top acceleration device WO2018006886A2 (en)

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