WO2024094161A1 - 一种陀螺玩具球 - Google Patents

一种陀螺玩具球 Download PDF

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Publication number
WO2024094161A1
WO2024094161A1 PCT/CN2023/129547 CN2023129547W WO2024094161A1 WO 2024094161 A1 WO2024094161 A1 WO 2024094161A1 CN 2023129547 W CN2023129547 W CN 2023129547W WO 2024094161 A1 WO2024094161 A1 WO 2024094161A1
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WO
WIPO (PCT)
Prior art keywords
gear
driving
sphere
notch
gyroscope
Prior art date
Application number
PCT/CN2023/129547
Other languages
English (en)
French (fr)
Inventor
谢国华
谢幼兰
Original Assignee
广州灵动创想文化科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 广州灵动创想文化科技有限公司 filed Critical 广州灵动创想文化科技有限公司
Publication of WO2024094161A1 publication Critical patent/WO2024094161A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H1/00Tops
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H31/00Gearing for toys
    • A63H31/08Gear-control mechanisms; Gears for imparting a reciprocating motion
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H33/00Other toys

Definitions

  • the present application relates to the technical field of toys, and in particular to a gyro toy ball.
  • Ball toys are a popular type of toys and are deeply loved and sought after by children.
  • the purpose of this application is to overcome the shortcomings of the prior art and provide a gyro toy ball with a clever design.
  • the sphere and the gyro are combined and the gyro is driven and accelerated by swinging the sphere, thereby greatly improving the fun and playability of the toy.
  • a gyroscope toy ball comprises a sphere and a gyroscope, wherein a clamping portion for movably clamping the gyroscope and a driving mechanism for driving the gyroscope to rotate are arranged inside the sphere;
  • the driving mechanism comprises a swinging driving member and an acceleration gear set, wherein the swinging driving member is slidably arranged in the sphere, and the swinging driving member is drivingly connected to the acceleration gear set, and the gear output end of the acceleration gear set is drivingly connected to the gyroscope movably clamped in the clamping portion; when the sphere is swung, the swinging driving member can slide back and forth in the sphere and drive the gear output end of the acceleration gear set to rotate in one direction, thereby driving the gyroscope to rotate.
  • the side wall of the sphere is provided with an opening
  • the interior of the sphere is provided with a launching groove along the opening direction thereof
  • the interior of the sphere is provided with a launching assembly
  • the launching assembly includes an ejection piece and a trigger piece
  • the ejection piece can be ejectably arranged in the launching groove
  • the clamping portion is arranged on the ejection piece
  • the trigger piece can be telescopically arranged in the sphere
  • the trigger piece is engaged with the ejection piece.
  • a movable cover is closed with a flip cover at the opening of the sphere, and the flip cover is twistably arranged on one side of the opening through a torsion spring; a snap rod is telescopically arranged inside the sphere along the direction of its opening, one end of the snap rod is engaged with the flip cover, and the other end thereof rests on the trigger member.
  • two guide slide bars are respectively arranged on both sides of the launching slot along the launching direction of the launching slot, and the two guide slide bars are respectively sleeved with ejection springs; the two sides of the ejection member are respectively slidably sleeved on the two guide slide bars, and the two sides of the ejection member respectively press the ejection springs on the two guide slide bars.
  • a limiting notch is provided at one end of the ejection member close to the opening of the sphere, and a movable clamping block is retractably provided on the side wall of the limiting notch, and the movable clamping block and the limiting notch form the clamping portion; the gyroscope can extend from the limiting notch and be movably clamped in the clamping portion formed by the movable clamping block and the limiting notch.
  • a gear box is provided inside the sphere, the acceleration gear set is rotatably provided in the gear box, and the swing driving member is slidably provided on the gear box; a first notch is provided on one side of the gear box, the acceleration gear set includes a first gear input end, and at least a part of the first gear input end extends out of the first notch; the swing driving member is provided with a first driving rack on one side of the first notch, and the first driving rack is matched with the first gear input end of the acceleration gear set extending out of the first notch for transmission connection.
  • the acceleration gear set includes a first driving gear, a first clutch gear and a driving gear
  • the gear box is provided with a first arc-shaped slide groove
  • the first driving gear and the driving gear are respectively rotatably arranged in the gear box
  • the first driving gear is meshed with the first clutch gear
  • the first clutch gear is slidably arranged in the first arc-shaped slide groove, when the first clutch gear slides to one end of the first arc-shaped slide groove close to the driving gear, the first clutch gear is meshed with the driving gear, when the first clutch gear slides to other positions of the first arc-shaped slide groove, the first clutch gear and the driving gear do not contact each other; at least a portion of the first driving gear extends out of the first notch of the gear box, and a portion of the first driving gear extending out of the first notch is meshed with the first driving rack of the swing driving member.
  • a second notch is provided on the side of the gear box away from the first notch, and the acceleration gear group includes a second gear input end, and at least a portion of the second gear input end extends out of the second notch;
  • the swing drive member is provided with a second drive rack on one side of the second notch, and the second drive rack is matched with the second gear input end of the acceleration gear group extending out of the second notch for transmission connection.
  • the acceleration gear set also includes a second driving gear and a second clutch gear
  • the gear box is provided with a second arc-shaped slot
  • the second clutch gear is slidably arranged in the second arc-shaped slot
  • the second clutch gear is meshed with the second driving gear
  • the second driving gear is rotatably arranged in the gear box, at least a portion of the second driving gear extends out of the second notch of the gear box, and a portion of the second driving gear extending out of the second opening is meshed and connected with the second driving rack of the swing driving member.
  • the acceleration gear set further includes an output gear, which is rotatably disposed in the sphere, and is transmission-connected to the drive gear, and the output gear and the drive gear can be interlocked.
  • the transmission connection is provided with one or more transmission gears; the output gear is transmission-connected with the gyro movably clamped in the clamping portion.
  • the beneficial effects of the present application are as follows: the present application is cleverly designed, by movably clamping the gyroscope inside the sphere, and providing a swingable and accelerated driving mechanism in the sphere to accelerate the rotation of the gyroscope clamped in the sphere; that is, the present application combines the sphere and the gyroscope together, and starts the driving mechanism by swinging to drive the gyroscope to rotate and accelerate.
  • this way of playing is more novel and easier to operate, which further improves the functionality and playability of the toy.
  • FIG1 is a three-dimensional schematic diagram of a gyro toy ball of the present application.
  • FIG2 is a schematic diagram of the structure of the gyro toy ball of the present application with the cover opened;
  • FIG3 is a schematic diagram of the internal structure of the gyro toy ball of the present application.
  • FIG4 is another schematic diagram of the internal structure of the gyro toy ball of the present application.
  • FIG5 is a schematic structural diagram of an acceleration gear set of a gyro toy ball of the present application.
  • FIG6 is a top view of the gear box of the gyro toy ball of the present application.
  • FIG7 is a schematic diagram of the internal structure of the gear box of the gyro toy ball of the present application.
  • FIG. 8 is another schematic diagram of the internal structure of the gear box of the gyro toy ball of the present application.
  • the present embodiment provides a gyro toy ball, including a sphere 100 and a gyro 200.
  • a clamping portion 51 for movably clamping the gyro 200 and a driving mechanism for driving the gyro 200 to rotate are arranged inside the sphere 100.
  • the driving mechanism includes a swing driving member 30 and an acceleration gear set 40.
  • the swing driving member 30 is slidably arranged in the sphere 100, and the swing driving member 30 is drivingly connected to the acceleration gear set 40.
  • the gear output end of the acceleration gear set 40 is connected to the gear output end of the acceleration gear set 40.
  • the gyroscope 200 movably clamped in the clamping portion 51 is transmission-connected; thus, when the player swings or shakes the sphere 100, the swing drive member 30 can slide back and forth in the sphere 100 and drive the gear output end of the acceleration gear set 40 to rotate in one direction, thereby driving the gyroscope 200 to rotate.
  • the side wall of the sphere 100 is provided with an opening 101
  • the interior of the sphere 100 is provided with a launch slot along the direction of the opening 101
  • a launch assembly is provided inside the sphere 100
  • the launch assembly includes an ejection member 50 and a trigger member 60.
  • the ejection member 50 is ejectably provided in the launch slot of the sphere 100
  • the clamping portion 51 for movably clamping the gyro 200 is provided on the ejection member 50
  • the trigger member 60 is telescopically provided in the sphere 100
  • the trigger member 60 is engaged with the ejection member 50.
  • one end of the trigger member 60 can extend out of the sphere 100 and form a pressing key 61, while the other end of the trigger member 60 is telescopically arranged inside the sphere 100 through a return spring 62.
  • the trigger member 60 can quickly move in the direction of compressing the return spring 62 and disengage from the ejection member 50, thereby achieving the effect of quickly releasing the ejection member 50.
  • two guide slide bars are respectively arranged on both sides of the launch slot of the present embodiment along the launch direction of the launch slot, and the two guide slide bars are respectively sleeved with ejection springs 52; and the two sides of the ejection member 50 are respectively slidably sleeved on the two guide slide bars, and the two sides of the ejection member 50 respectively press the ejection springs 52 on the two guide slide bars.
  • the ejection member 50 presses the ejection springs 52 of the guide slide bars inwardly, it can further engage with the trigger member 60, and then after the trigger member 60 and the ejection member 50 are disengaged, the ejection member 50 can quickly slide along the launch direction of the launch slot under the elastic force of the two ejection springs 52.
  • a limiting notch is set at one end of the ejection member 50 close to the opening 101 of the sphere 100, and the side wall of the limiting notch is telescopically provided with a movable clamping block 53, and the movable clamping block 53 and the limiting notch form the above-mentioned clamping portion 51; in this way, the gyroscope 200 can extend from the limiting notch and be movably clamped in the clamping portion 51 formed by the movable clamping block 53 and the limiting notch.
  • the side wall of the limiting notch of the ejection member 50 is provided with a through hole connected to the launch slot, and the above-mentioned movable block 53 is telescopically arranged in the through hole.
  • the distance between the outer wall of the limiting notch and the launch slot is gradually reduced from the opening 101 direction inward, so that when the gyro 200 is inserted into the limiting notch, the gyro 200 first pushes the movable block 53 and inserts into the through hole of the limiting notch, and continues to push the ejection member 50 to move inward until the ejection member 50 is engaged with the trigger member 60.
  • the outer wall of the limiting notch is spaced from the launch slot, so that the movable block 53 will extend from the through hole of the limiting notch to the middle of the limiting notch, and then form the clamping portion 51 together with the inner wall of the limiting notch.
  • the movable block 53 is pushed by the gyroscope 200 under the inertia of the gyroscope 200 and retracts into the through hole of the limiting notch. In this way, the movable block 53 will not cause any obstacle to the gyroscope 200, thereby enabling the gyroscope 200 to be quickly launched from the opening 101 of the sphere 100 under the action of inertia.
  • a gear box 41 is disposed inside the sphere 100 of this embodiment, so that the acceleration gear set 40 can be rotatably disposed in the gear box 41, and the swing driving member 30 can be slidably disposed on both sides of the gear box 41.
  • a first notch is disposed on one side of the gear box 41, the acceleration gear set 40 includes a first gear input end, and at least a portion of the first gear input end extends out of the first notch; and a first driving rack 31 is disposed on one side of the first notch of the swing driving member 30, and the first driving rack 31 is matched with a portion of the first gear input end extending out of the first notch for transmission connection.
  • the acceleration gear set 40 includes a first driving gear 43, a first clutch gear 44 and a driving gear 42.
  • First arc-shaped slide grooves are respectively provided on the upper and lower sides of the gear box 41.
  • the first driving gear 43 and the driving gear 42 are respectively rotatably provided in the gear box 41, and the first driving gear 43 is meshed with the first clutch gear 44, and the first clutch gear 44 is slidably provided in the first arc-shaped slide groove.
  • the first clutch gear 44 slides to one end of the first arc-shaped slide groove close to the driving gear 42, the first clutch gear 44 is meshed with the driving gear 42; when the first clutch gear 44 slides to other positions of the first arc-shaped slide groove, the first clutch gear 44 and the driving gear 42 do not contact each other.
  • at least a portion of the first driving gear 43 extends out of the first notch of the gear box 41, and the portion of the first driving gear 43 extending out of the first notch is meshed with the first driving rack 31 of the swing driving member 30.
  • the acceleration gear set 40 further includes an output gear 47, which is transmission-connected to the driving gear 42, and the output gear 47 is also meshed with the gyro 200 movably clamped in the clamping portion 51 of the ejection member 50.
  • one or more transmission gears 48 may be transmission-connected between the output gear 47 and the driving gear 42; the number of transmission gears 48 is determined by the convenience of installation of the output gear 47 and the driving gear 42 in the sphere 100 and the transmission performance. Therefore, different numbers of transmission gears 48 may be set between the output gear 47 and the driving gear 42 according to actual needs.
  • a movable sleeve is movably sleeved on the rotating shaft of the gyroscope 200 and a passive gear is rigidly sleeved.
  • the gyroscope 200 of the present embodiment can be movably clamped in the clamping portion 51 of the ejection member 50 by the movable sleeve on the rotating shaft, and the passive gear on the rotating shaft of the gyroscope 200 is meshedly connected with the output gear 47 of the acceleration gear set 40.
  • the swing driving member 30 of the present embodiment adopts a square-shaped gravity block structure, and the limit slide bars 411 are respectively arranged relatively parallel on both sides of the gear box 41.
  • the positions on both sides of the swing driving member 30 corresponding to the two limit slide bars 411 are provided with sliding sleeves 33, and the swing driving member 30 can be slidably mounted on the limit slide bars 411 on both sides of the gear box 41 through the limit slide bars 411 on both sides.
  • the principle of inertia can be used to drive the swing driving member 30 to slide back and forth in the gear box 41, so that the first driving rack 31 on the swing driving member 30 drives the first driving gear 43 of the acceleration gear set 40 to rotate forward and reversely, and it can be known from the above that when the first driving gear 43 rotates forward or reversely, the first driving gear 43 can drive the first clutch gear 44 to slide in the first arc-shaped slide groove, so that The first clutch gear 44 is driven to mesh with the driving gear 42 or not to contact each other; thus, the first driving gear 43 only outputs driving force in the same direction to the driving gear 42 regardless of whether it rotates forward or backward, thereby ensuring that the driving gear 42 keeps rotating in the same direction during the back and forth sliding of the swing driving member 30, and finally drives the gyroscope 200 to rotate and accelerate through the output gear 47.
  • the two limit slide bars 411 of this embodiment can also be set in the sphere 100, and are not limited to being set only on
  • the gyro toy ball of the present embodiment is cleverly designed and novel in playing.
  • the acceleration gear set 40 can be accelerated by the swing driving member 30, and then the gyro 200 clamped on the ejection member 50 can be driven to rotate and accelerate through the acceleration gear set 40.
  • the trigger member 60 can be pressed to drive the trigger member 60 to disengage from the ejection member 50, so that the ejection member 50 can quickly launch the gyro 200 in the clamping portion 51 from the opening 101 of the sphere 100 under the action of the ejection spring 52.
  • a movable cover is provided at the opening 101 of the sphere 100 with a flip cover 102, and the flip cover 102 is twistably arranged on one side of the opening 101 through a torsion spring 103; in addition, a snap rod 104 is telescopically arranged inside the sphere 100 along the direction of its opening 101, and one end of the snap rod 104 is engaged with the flip cover 102, and the other end thereof rests on the trigger member 60.
  • a buckle portion is provided at one end of the buckle rod 104 that is engaged with the flip cover 102, and a wedge portion is provided at the other end; accordingly, a buckle groove is provided on one side of the flip cover 102 relative to the buckle rod 104, and the buckle rod 104 is specifically telescopically arranged in the sphere 100 through a return spring, and the buckle rod 104 is engaged with the buckle groove of the flip cover 102 through its buckle portion, and the buckle rod 104 abuts against the bottom of the trigger member 60 through its wedge portion.
  • the trigger member 60 when the trigger member 60 is pressed downward, the trigger member 60 simultaneously pushes the wedge portion of the buckle rod 104, so that the buckle rod 104 simultaneously compresses the return spring during the movement, and the buckle portion of the buckle rod 104 is separated from the buckle groove of the flip cover 102, so that the flip cover 102 is quickly opened under the action of the torsion spring 103.
  • the flip cover 102 can be snapped onto the buckle rod 104 so that the flip cover 102 can cover the opening 101 of the sphere 100 to maintain the integrity of the whole.
  • the flip cover 102 of this embodiment can be closed on the opening 101 of the sphere 100 and temporarily locked by the buckle rod 104.
  • the trigger member 60 can be pressed to unlock the ejection member 50 and push the buckle rod 104 at the same time.
  • the buckle rod 104 is pushed outward under the action of the spring and disengaged from the flip cover 102.
  • the flip cover 102 is quickly opened under the action of the torsion spring 103 to expose the opening 101 of the sphere 100.
  • a second notch is provided on the side of the gear box 41 away from the first notch
  • the acceleration gear set 40 includes a second gear input end, and at least a portion of the second gear input end extends out of the second notch
  • a second drive rack 32 is correspondingly provided on the side of the swing drive member 30 located at the second notch, and the second drive rack 32 is matched with a portion of the second gear input end extending out of the second notch for transmission connection.
  • the acceleration gear set 40 also includes a second driving gear 45 and a second clutch gear 46.
  • the gear box 41 is provided with The second arc-shaped slide groove, the second clutch gear 46 is slidably disposed in the second arc-shaped slide groove, and the second clutch gear 46 is meshed with the second driving gear 45; when the second clutch gear 46 slides to one end of the second arc-shaped slide groove close to the driving gear 42, the second clutch gear 46 is meshed with the driving gear 42, and when the second clutch gear 46 slides to other positions of the second arc-shaped slide groove, the second clutch gear 46 and the driving gear 42 do not contact each other.
  • the second driving gear 45 of this embodiment is rotatably disposed in the gear box 41, at least a portion of the second driving gear 45 extends out of the second notch of the gear box 41, and a portion of the second driving gear 45 extending out of the second opening 101 is meshed and connected with the second driving rack 32 of the swing driving member 30.
  • the acceleration gear set 40 of the present embodiment includes two gear input ends, and the two gear input ends are symmetrically arranged with respect to the driving gear 42, and correspondingly, driving racks are also symmetrically arranged on both sides of the swing driving member 30.
  • the driving racks on both sides of the swing driving member 30 respectively accelerate the first driving gear 43 and the second driving gear 45 of the acceleration gear set 40 at the same time, and the two clutch gears arranged in the acceleration gear set 40 output the transmission force to the driving gear 42 alternately in sequence, thereby ensuring that the driving gear 42 can always rotate in one direction, avoiding the positive and negative rotation of the driving gear 42 caused by the back and forth swing of the swing driving member 30, and better utilizing the inertial potential energy of the swing driving member 30.
  • the gyroscope toy ball of the present application is cleverly designed, by movably clamping the gyroscope 200 inside the sphere 100, and providing a swingable and accelerated driving mechanism in the sphere 100 to accelerate the rotation of the gyroscope 200 clamped in the sphere 100; that is, the present application combines the sphere 100 and the gyroscope 200 together, and starts the driving mechanism by swinging to drive the gyroscope 200 to rotate and accelerate.
  • this way of playing is more novel and easier to operate, which further improves the functionality and playability of the toy.

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Abstract

一种陀螺玩具球,包括球体(100)和陀螺(200),球体(100)的内部设置有用于活动夹持陀螺(200)的夹持部(51)及用于带动陀螺(200)转动的驱动机构;驱动机构包括摇摆驱动件(30)及加速齿轮组(40),摇摆驱动件(30)可滑动地设置在球体(100)中,且摇摆驱动件(30)与加速齿轮组(40)驱动连接,加速齿轮组(40)的齿轮输出端与活动夹持在夹持部(51)中的陀螺(200)传动连接。本申请所述的陀螺玩具球,将球体(100)与陀螺(200)结合起来并通过摇摆球体(100)的方式对陀螺(200)进行驱动加速,提高了玩具的趣味性和可玩性。

Description

一种陀螺玩具球 技术领域
本申请涉及玩具技术领域,特别是涉及一种陀螺玩具球。
背景技术
科技的进步促进了儿童玩具产业的发展,如今各种款式不同、功能各异的儿童玩具不仅给儿童的生活带来了不少的乐趣,而且对于其早期的智力开发也是意义重大。球类玩具作为比较热门的一类玩具,深受儿童的喜爱和追捧。
目前市面上常见的球类玩具,大多采用与弹射器结合的方式进行玩耍,利用弹射器将球类玩具弹射出去,进而达成发射的玩耍方式。另一些常见的球类玩具则是在球体的内部放置可活动的物件,进而通过摇晃球体发出声音。然而,现有的球类玩具并未出现球体与陀螺的结合玩耍方式。
发明内容
基于此,本申请的目的在于克服现有技术的不足,提供一种陀螺玩具球,其设计巧妙,将球体与陀螺结合起来并通过摇摆球体的方式对陀螺进行驱动加速,进而大大提高了玩具的趣味性和可玩性。
为了实现上述目的,本申请采用的技术方案为:
一种陀螺玩具球,包括球体和陀螺,所述球体的内部设置有用于活动夹持所述陀螺的夹持部及用于带动所述陀螺转动的驱动机构;所述驱动机构包括摇摆驱动件及加速齿轮组,所述摇摆驱动件可滑动地设置在所述球体中,且所述摇摆驱动件与所述加速齿轮组驱动连接,所述加速齿轮组的齿轮输出端与活动夹持在所述夹持部中的陀螺传动连接;摆动所述球体时,所述摇摆驱动件可来回在所述球体中滑动并带动所述加速齿轮组的齿轮输出端沿一个方向转动,进而带动所述陀螺转动。
作为一种实施方式,所述球体的侧壁设置有开口,所述球体的内部沿其开口方向设置有发射槽,所述球体的内部设置有发射组件,所述发射组件包括弹射件及触发件,所述弹射件可弹射地设置在所述发射槽中,所述夹持部设置在所述弹射件上,所述触发件可伸缩地设置在所述球体中,且触发件与所述弹射件配合卡接。
作为一种实施方式,所述球体的开口处活动盖合有翻盖,所述翻盖通过扭簧可扭动地设置在开口的一侧;所述球体的内部沿其开口的方向可伸缩地设置有卡扣杆,所述卡扣杆的一端与所述翻盖配合卡接,其另一端抵靠在所述触发件上。
作为一种实施方式,所述发射槽的两侧沿沿发射槽的发射方向分别设置有两根导向滑杆,所述两根导向滑杆分别套设有弹射弹簧;所述弹射件的两侧分别可滑动地套设在两根导向滑杆上,且该弹射件的两侧分别顶压两根导向滑杆上的弹射弹簧。
作为一种实施方式,所述弹射件靠近所述球体的开口一端设置有限位缺口,所述限位缺口的侧壁可伸缩地设置有活动卡块,所述活动卡块与所述限位缺口形成所述夹持部;所述陀螺可从限位缺口伸进并活动夹持在所述活动卡块与所述限位缺口形成的夹持部中。
作为一种实施方式,所述球体的内部设置有齿轮箱,所述加速齿轮组可转动地设置在所述齿轮箱中,所述摇摆驱动件可滑动地设置在所述齿轮箱上;所述齿轮箱的一侧设置有第一缺口,所述加速齿轮组包括第一齿轮输入端,所述第一齿轮输入端的至少一部分伸出所述第一缺口的外部;所述摇摆驱动件位于第一缺口的一侧设置有第一驱动齿条,所述第一驱动齿条与加速齿轮组伸出第一缺口的第一齿轮输入端配合传动连接。
作为一种实施方式,所述加速齿轮组包括第一主动齿轮、第一离合齿轮及驱动齿轮,所述齿轮箱设置有第一弧形滑槽,所述第一主动齿轮和驱动齿轮分别可转动地设置在所述齿轮箱中,且所述第一主动齿轮与所述第一离合齿轮啮合连接,所述第一离合齿轮可滑动地设置在所述第一弧形滑槽中,当第一离合齿轮滑动至第一弧形滑槽靠近所述驱动齿轮的一端时,第一离合齿轮与驱动齿轮啮合,当第一离合齿轮滑动到第一弧形滑槽的其他位置时,第一离合齿轮与驱动齿轮互不接触;所述第一主动齿轮的至少一部分伸出齿轮箱的第一缺口外,且第一主动齿轮伸出第一缺口外的一部分与所述摇摆驱动件的第一驱动齿条啮合连接。
作为一种实施方式,所述齿轮箱远离所述第一缺口的一侧设置有第二缺口,所述加速齿轮组包括第二齿轮输入端,所述第二齿轮输入端的至少一部分伸出所述第二缺口的外部;所述摇摆驱动件位于第二缺口的一侧设置有第二驱动齿条,所述第二驱动齿条与加速齿轮组伸出第二缺口的第二齿轮输入端配合传动连接。
作为一种实施方式,所述加速齿轮组还包括第二主动齿轮和第二离合齿轮,所述齿轮箱设置有第二弧形滑槽,所述第二离合齿轮可滑动地设置在所述第二弧形滑槽中,且第二离合齿轮与所述第二主动齿轮啮合;当第二离合齿轮滑动至第二弧形滑槽靠近所述驱动齿轮的一端时,第二离合齿轮与驱动齿轮啮合,当第二离合齿轮滑动到第二弧形滑槽的其他位置时,第二离合齿轮与驱动齿轮互不接触;所述第二主动齿轮可转动地设置在所述齿轮箱中,所述第二主动齿轮的至少一部分伸出所述齿轮箱的第二缺口外,且第二主动齿轮伸出第二开口外的一部分与所述摇摆驱动件的第二驱动齿条啮合连接。
作为一种实施方式,所述加速齿轮组还包括输出齿轮,所述输出齿轮可转动地设置在所述球体中,所述输出齿轮与所述驱动齿轮传动连接,且所述输出齿轮与所述驱动齿轮之间可 传动连接有一个或多个传动齿轮;所述输出齿轮与活动夹持在所述夹持部中的陀螺传动连接。
与现有技术相比,本申请的有益效果是:本申请设计巧妙,通过在球体的内部活动夹持有陀螺,并且在球体中设置可摇摆加速的驱动机构对夹持在球体中的陀螺进行旋转加速;也就是说,本申请通过将球体与陀螺结合在一起,并且通过摇摆的方式启动驱动机构进而带动陀螺旋转加速,这种玩耍方式相比于传统的球类玩具和陀螺玩具更加新颖,并且操作更为简便,进一步提高了玩具的功能性和可玩性。
为了更好地理解和实施,下面结合附图详细说明本申请。
附图说明
图1为本申请陀螺玩具球的立体示意图;
图2为本申请陀螺玩具球打开翻盖的结构示意图;
图3为本申请陀螺玩具球的内部结构示意图;
图4为本申请陀螺玩具球的另一内部结构示意图;
图5为本申请陀螺玩具球的加速齿轮组的结构示意图;
图6为本申请陀螺玩具球的齿轮箱的俯视图;
图7为本申请陀螺玩具球的齿轮箱的内部结构示意图;
图8为本申请陀螺玩具球的齿轮箱的另一内部结构示意图。
具体实施方式
为进一步说明各实施例,本申请提供有附图。这些附图为本申请揭露内容的一部分,其主要用以说明实施例,并可配合说明书的相关描述来解释实施例的运作原理。配合参考这些内容,本领域的普通技术人员应能理解其他可能得实施方式以及本申请的优点。
在本申请的描述中,需要理解的是,术语“中心”、“纵向”、“横向”、“长度”、“宽度”、“厚度”、“上”、“下”、“左”、“右”、“顶”、“底”、“内”、“外”、“轴向”、“径向”、“周向”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本申请和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解对本申请的限制。
如图1至图8所示,本实施例提供一种陀螺玩具球,包括球体100和陀螺200,在球体100的内部设置有用于活动夹持陀螺200的夹持部51及用于带动陀螺200转动的驱动机构;其中,驱动机构包括摇摆驱动件30及加速齿轮组40,摇摆驱动件30可滑动地设置在球体100中,且摇摆驱动件30与加速齿轮组40之间驱动连接,而加速齿轮组40的齿轮输出端与 活动夹持在夹持部51中的陀螺200传动连接;这样一来,当玩家摆动或摇晃球体100时,所述摇摆驱动件30可来回在球体100中滑动并带动加速齿轮组40的齿轮输出端沿一个方向转动,进而带动陀螺200转动。
可选地,在本实施例中,球体100的侧壁设置有开口101,球体100的内部沿其开口101方向设置有发射槽,并且在球体100的内部设置有发射组件,该发射组件包括弹射件50及触发件60。其中,弹射件50可弹射地设置在球体100的发射槽中,而上述用于活动夹持陀螺200的夹持部51则设置在弹射件50上,所述触发件60可伸缩地设置在球体100中,且触发件60与弹射件50配合卡接。
为了方便对触发件60进行按压触发,在本实施例中,触发件60的一端可伸出球体100的外部并形成有按压键61,而触发件60的另一端则通过一复位弹簧62可伸缩地设置在球体100的内部,这样一来,当玩家快速按压触发件60的按压键61时,触发件60可快速向压缩复位弹簧62的方向运动并与弹射件50脱卡,从而达到快速释放弹射件50的作用。
另一方面,本实施例的发射槽的两侧沿发射槽的发射方向分别设置有两根导向滑杆,并且两根导向滑杆分别套设有弹射弹簧52;而弹射件50的两侧分别可滑动地套设在两根导向滑杆上,且该弹射件50的两侧分别顶压两根导向滑杆上的弹射弹簧52。这样一来,当弹射件50向内顶压导向滑杆的弹射弹簧52后便可进一步与触发件60配合卡接,进而在触发件60与弹射件50脱卡后,弹射件50能够在两根弹射弹簧52的弹力作用下快速沿发射槽的发射方向滑动。
其中,弹射件50靠近球体100的开口101一端设置有限位缺口,该限位缺口的侧壁可伸缩地设置有活动卡块53,且活动卡块53与限位缺口形成上述夹持部51;这样一来,陀螺200便可从限位缺口伸进并活动夹持在活动卡块53与限位缺口形成的夹持部51中。
为了更好地说明本实施例的夹持部51的结构,在本实施例中,弹射件50的限位缺口的侧壁设置有连通发射槽的通孔,上述活动卡块53则可伸缩地设置在该通孔中。另一方面,限位缺口的外侧壁与发射槽之间的间距从开口101方向向内依次缩小,这样一来,当陀螺200***限位缺口时,陀螺200首先顶开活动卡块53并***至限位缺口的通孔中,继续顶推弹射件50向内运动直至弹射件50与触发件60配合卡接后,限位缺口的外侧壁由于与发射槽的间距缩小,使得活动卡块53将从限位缺口的通孔向限位缺口的中间伸出,进而与限位缺口的内侧壁共同形成夹持部51。同理,相反地,在弹射件50弹射出去的过程中,由于活动卡块53的外侧壁与发射槽之间的间距增大,活动卡块53在陀螺200的惯性作用下被陀螺200顶推并缩进限位缺口的通孔中,这样一来,活动卡块53将不会对陀螺200造成障碍,由此使得陀螺200能够在惯性的作用下快速从球体100的开口101处发射出去。
可选地,本实施例的球体100内部设置有齿轮箱41,这样一来,加速齿轮组40便可转动地设置在齿轮箱41中,而摇摆驱动件30可滑动地设置在齿轮箱41的两侧。进一步地,在本实施例中,齿轮箱41的一侧设置有第一缺口,加速齿轮组40包括第一齿轮输入端,且第一齿轮输入端的至少一部分伸出第一缺口的外部;而摇摆驱动件30位于第一缺口的一侧设置有第一驱动齿条31,该第一驱动齿条31与第一齿轮输入端伸出第一缺口的一部分配合传动连接。
更具体地,在本实施例中,加速齿轮组40包括第一主动齿轮43、第一离合齿轮44及驱动齿轮42,在齿轮箱41的上下两侧分别对应设置有第一弧形滑槽,第一主动齿轮43和驱动齿轮42分别可转动地设置在齿轮箱41中,且第一主动齿轮43与第一离合齿轮44啮合连接,而第一离合齿轮44则可滑动地设置在第一弧形滑槽中。这样一来,当第一离合齿轮44滑动至第一弧形滑槽靠近驱动齿轮42的一端时,第一离合齿轮44与驱动齿轮42啮合;当第一离合齿轮44滑动到第一弧形滑槽的其他位置时,第一离合齿轮44与驱动齿轮42互不接触。另外,第一主动齿轮43的至少一部分伸出齿轮箱41的第一缺口外,且第一主动齿轮43伸出第一缺口外的这部分与摇摆驱动件30的第一驱动齿条31啮合连接。
另一方面,加速齿轮组40还包括输出齿轮47,该输出齿轮47与驱动齿轮42之间传动连接,且输出齿轮47同时与活动夹持在弹射件50的夹持部51中的陀螺200啮合连接。需要说明的是,输出齿轮47与驱动齿轮42之间可传动连接有一个或多个传动齿轮48;关于传动齿轮48的数量设定,取决于输出齿轮47与驱动齿轮42之间在球体100中安装的便利性以及传动性能,因此,本实施例的输出齿轮47与驱动齿轮42之间可根据实际需求来设置不同数量的传动齿轮48。
而为了方便夹持与驱动陀螺200,在本实施例中,陀螺200的转轴上活动套设有活动套筒以及刚性套设有被动齿轮,这样一来,本实施例的陀螺200可利用其转轴上的活动套筒活动夹持在弹射件50的夹持部51中,并且陀螺200转轴上的被动齿轮与加速齿轮组40的输出齿轮47之间啮合连接。
另一方面,本实施例的摇摆驱动件30采用方形状的重力块结构,在齿轮箱41的两侧分别相对平行地设置有限位滑杆411,相应地,摇摆驱动件30的两侧对应于两根限位滑杆411的位置则设置有滑动套筒33,且摇摆驱动件30通过其两侧的限位滑杆411可滑动地套设在齿轮箱41两侧的限位滑杆411上。这样一来,通过不停摇晃球体100,可利用惯性的原理带动摇摆驱动件30在齿轮箱41中来回滑动,进而使得摇摆驱动件30上的第一驱动齿条31来回带动加速齿轮组40的第一主动齿轮43做正反转动,并且由上述可知,当第一主动齿轮43正向或反向转动时,第一主动齿轮43可驱动第一离合齿轮44在第一弧形滑槽中滑动,进而 驱动第一离合齿轮44与驱动齿轮42啮合连接或互不接触;由此使得第一主动齿轮43无论正反向转动,都只对驱动齿轮42输出同一方向的驱动力,从而保证驱动齿轮42在摇摆驱动件30来回滑动的过程中一直保持同一方向的转动,最后通过输出齿轮47带动陀螺200进行旋转加速。需要说明的是,本实施例的两根限位滑杆411也可设置在球体100中,并不局限于只设置在齿轮箱41的两侧。
也就是说,本实施例的陀螺玩具球,其设计巧妙,玩法新颖,只需通过来回摇动球体100,便可通过摇摆驱动件30对加速齿轮组40进行加速,进而通过加速齿轮组40带动夹持在弹射件50上的陀螺200旋转加速,最后可通过按压触发件60来驱动触发件60与弹射件50脱卡,这样弹射件50便可在弹射弹簧52的作用下快速将夹持部51中的陀螺200从球体100的开口101处发射出去。
可选地,为了保持球体100的完整性与美观性,在本实施例中,球体100的开口101处活动盖合有翻盖102,该翻盖102通过扭簧103可扭动地设置在开口101的一侧;另外,球体100的内部沿其开口101的方向可伸缩地设置有卡扣杆104,该卡扣杆104的一端与翻盖102配合卡接,其另一端抵靠在触发件60上。
其中,卡扣杆104与翻盖102配合卡接的一端设置有卡扣部,其另一端设置有楔形部;相应地,翻盖102相对于卡扣杆104的一侧设置有卡扣槽,而卡扣杆104具体通过复位弹簧可伸缩地设置在球体100中,且卡扣杆104通过其卡扣部与翻盖102的卡扣槽配合卡接,卡扣杆104通过其楔形部抵靠在触发件60的下方。由此,当触发件60被向下按压的时候,触发件60同时顶推卡扣杆104的楔形部,这样一来,卡扣杆104在移动的过程中同时压缩复位弹簧,而卡扣杆104的卡扣部则脱离翻盖102的卡扣槽,由此,翻盖102在扭簧103的作用下快速打开。而不玩耍时,则可将翻盖102卡接在卡扣杆104上,以使得翻盖102能够盖合在球体100的开口101上,保持了整体的完整性。
也就是说,在不玩耍的时候,本实施例可将翻盖102盖合在球体100的开口101处,并且与卡扣杆104卡接暂时锁定,在进行玩耍时,可通过按压触发件60在解锁弹射件50的同时,也顶推卡扣杆104,这样一来,卡扣杆104在弹簧的作用下向外顶出并与翻盖102脱卡,这样一来,翻盖102在扭簧103的作用下快速打开并露出球体100的开口101。
为了更好地增加摇摆驱动件30的驱动性能,在本实施例中,齿轮箱41远离第一缺口的一侧设置有第二缺口,加速齿轮组40包括第二齿轮输入端,第二齿轮输入端的至少一部分伸出第二缺口的外部;而摇摆驱动件30位于第二缺口的一侧则相应设置有第二驱动齿条32,该第二驱动齿条32与第二齿轮输入端伸出第二缺口的一部分配合传动连接。
具体地,加速齿轮组40还包括第二主动齿轮45和第二离合齿轮46,齿轮箱41设置有 第二弧形滑槽,第二离合齿轮46可滑动地设置在所述第二弧形滑槽中,且第二离合齿轮46与第二主动齿轮45啮合;当第二离合齿轮46滑动至第二弧形滑槽靠近所述驱动齿轮42的一端时,第二离合齿轮46与驱动齿轮42啮合,当第二离合齿轮46滑动到第二弧形滑槽的其他位置时,第二离合齿轮46与驱动齿轮42互不接触。另外,本实施例的第二主动齿轮45可转动地设置在齿轮箱41中,第二主动齿轮45的至少一部分伸出齿轮箱41的第二缺口外,且第二主动齿轮45伸出第二开口101外的一部分与摇摆驱动件30的第二驱动齿条32啮合连接。
也就是说,本实施例的加速齿轮组40包括两个齿轮输入端,并且两个齿轮输入端分别相对于驱动齿轮42对称设置,相应地,摇摆驱动件30的两侧同样对称设置有驱动齿条。这样一来,当摇摆驱动件30在齿轮箱41中滑动时,摇摆驱动件30两侧的驱动齿条分别对加速齿轮组40的第一主动齿轮43和第二主动齿轮45同时进行加速转动,而加速齿轮组40中设置的两个离合齿轮则是依次交替对驱动齿轮42输出传动力,进而保证了驱动齿轮42能够一直单向转动,避免了由于摇摆驱动件30的来回摆动而导致驱动齿轮42的正反转动,更好地利用了摇摆驱动件30的惯性势能。
与现有技术相比,本申请的陀螺玩具球设计巧妙,通过在球体100的内部活动夹持有陀螺200,并且在球体100中设置可摇摆加速的驱动机构对夹持在球体100中的陀螺200进行旋转加速;也就是说,本申请通过将球体100与陀螺200结合在一起,并且通过摇摆的方式启动驱动机构进而带动陀螺200旋转加速,这种玩耍方式相比于传统的球类玩具和陀螺200玩具更加新颖,并且操作更为简便,进一步提高了玩具的功能性和可玩性。
以上所述实施例仅表达了本申请的几种实施方式,其描述较为具体和详细,但并不能因此而理解为对本申请陀螺玩具球范围的限制。应当指出的是,对于本领域的普通技术人员来说,在不脱离本申请构思的前提下,还可以做出若干变形和改进,这些都属于本申请的保护范围。

Claims (10)

  1. 一种陀螺玩具球,其特征在于:
    包括球体和陀螺,所述球体的内部设置有用于活动夹持所述陀螺的夹持部及用于带动所述陀螺转动的驱动机构;所述驱动机构包括摇摆驱动件及加速齿轮组,所述摇摆驱动件可滑动地设置在所述球体中,且所述摇摆驱动件与所述加速齿轮组驱动连接,所述加速齿轮组的齿轮输出端与活动夹持在所述夹持部中的陀螺传动连接;
    摆动所述球体时,所述摇摆驱动件可来回在所述球体中滑动并带动所述加速齿轮组的齿轮输出端沿一个方向转动,进而带动所述陀螺转动。
  2. 根据权利要求1所述的陀螺玩具球,其特征在于:
    所述球体的侧壁设置有开口,所述球体的内部沿其开口方向设置有发射槽,所述球体的内部设置有发射组件,所述发射组件包括弹射件及触发件,所述弹射件可弹射地设置在所述发射槽中,所述夹持部设置在所述弹射件上,所述触发件可伸缩地设置在所述球体中,且触发件与所述弹射件配合卡接。
  3. 根据权利要求2所述的陀螺玩具球,其特征在于:
    所述球体的开口处活动盖合有翻盖,所述翻盖通过扭簧可扭动地设置在开口的一侧;所述球体的内部沿其开口的方向可伸缩地设置有卡扣杆,所述卡扣杆的一端与所述翻盖配合卡接,其另一端抵靠在所述触发件上。
  4. 根据权利要求2所述的陀螺玩具球,其特征在于:
    所述发射槽的两侧沿发射槽的发射方向分别设置有两根导向滑杆,所述两根导向滑杆分别套设有弹射弹簧;所述弹射件的两侧分别可滑动地套设在两根导向滑杆上,且该弹射件的两侧分别顶压两根导向滑杆上的弹射弹簧。
  5. 根据权利要求4所述的陀螺玩具球,其特征在于:
    所述弹射件靠近所述球体的开口一端设置有限位缺口,所述限位缺口的侧壁可伸缩地设置有活动卡块,所述活动卡块与所述限位缺口形成所述夹持部;所述陀螺可从限位缺口伸进并活动夹持在所述活动卡块与所述限位缺口形成的夹持部中。
  6. 根据权利要求1所述的陀螺玩具球,其特征在于:
    所述球体的内部设置有齿轮箱,所述加速齿轮组可转动地设置在所述齿轮箱中,所述摇摆驱动件可滑动地设置在所述齿轮箱上;所述齿轮箱的一侧设置有第一缺口,所述加速齿轮组包括第一齿轮输入端,所述第一齿轮输入端的至少一部分伸出所述第一缺口的外部;所述 摇摆驱动件位于第一缺口的一侧设置有第一驱动齿条,所述第一驱动齿条与加速齿轮组伸出第一缺口的第一齿轮输入端配合传动连接。
  7. 根据权利要求6所述的陀螺玩具球,其特征在于:
    所述加速齿轮组包括第一主动齿轮、第一离合齿轮及驱动齿轮,所述齿轮箱设置有第一弧形滑槽,所述第一主动齿轮和驱动齿轮分别可转动地设置在所述齿轮箱中,且所述第一主动齿轮与所述第一离合齿轮啮合连接,所述第一离合齿轮可滑动地设置在所述第一弧形滑槽中,当第一离合齿轮滑动至第一弧形滑槽靠近所述驱动齿轮的一端时,第一离合齿轮与驱动齿轮啮合,当第一离合齿轮滑动到第一弧形滑槽的其他位置时,第一离合齿轮与驱动齿轮互不接触;所述第一主动齿轮的至少一部分伸出齿轮箱的第一缺口外,且第一主动齿轮伸出第一缺口外的一部分与所述摇摆驱动件的第一驱动齿条啮合连接。
  8. 根据权利要求7所述的陀螺玩具球,其特征在于:
    所述齿轮箱远离所述第一缺口的一侧设置有第二缺口,所述加速齿轮组包括第二齿轮输入端,所述第二齿轮输入端的至少一部分伸出所述第二缺口的外部;所述摇摆驱动件位于第二缺口的一侧设置有第二驱动齿条,所述第二驱动齿条与加速齿轮组伸出第二缺口的第二齿轮输入端配合传动连接。
  9. 根据权利要求8所述的陀螺玩具球,其特征在于:
    所述加速齿轮组还包括第二主动齿轮和第二离合齿轮,所述齿轮箱设置有第二弧形滑槽,所述第二离合齿轮可滑动地设置在所述第二弧形滑槽中,且第二离合齿轮与所述第二主动齿轮啮合;当第二离合齿轮滑动至第二弧形滑槽靠近所述驱动齿轮的一端时,第二离合齿轮与驱动齿轮啮合,当第二离合齿轮滑动到第二弧形滑槽的其他位置时,第二离合齿轮与驱动齿轮互不接触;所述第二主动齿轮可转动地设置在所述齿轮箱中,所述第二主动齿轮的至少一部分伸出所述齿轮箱的第二缺口外,且第二主动齿轮伸出第二开口外的一部分与所述摇摆驱动件的第二驱动齿条啮合连接。
  10. 根据权利要求7所述的陀螺玩具球,其特征在于:
    所述加速齿轮组还包括输出齿轮,所述输出齿轮可转动地设置在所述球体中,所述输出齿轮与所述驱动齿轮传动连接,且所述输出齿轮与所述驱动齿轮之间可传动连接有一个或多个传动齿轮;所述输出齿轮与活动夹持在所述夹持部中的陀螺传动连接。
PCT/CN2023/129547 2022-11-04 2023-11-03 一种陀螺玩具球 WO2024094161A1 (zh)

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CN1302717A (zh) * 2001-02-15 2001-07-11 上海交通大学 球形移动机器人
CN208193645U (zh) * 2018-04-28 2018-12-07 奥飞娱乐股份有限公司 发射陀螺
CN210904942U (zh) * 2019-09-17 2020-07-03 广州市三宝动漫玩具有限公司 陀螺玩具
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CN208193645U (zh) * 2018-04-28 2018-12-07 奥飞娱乐股份有限公司 发射陀螺
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