WO2009100596A1 - 一种玩具飞车轨道支撑机构 - Google Patents

一种玩具飞车轨道支撑机构 Download PDF

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Publication number
WO2009100596A1
WO2009100596A1 PCT/CN2008/000726 CN2008000726W WO2009100596A1 WO 2009100596 A1 WO2009100596 A1 WO 2009100596A1 CN 2008000726 W CN2008000726 W CN 2008000726W WO 2009100596 A1 WO2009100596 A1 WO 2009100596A1
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WO
WIPO (PCT)
Prior art keywords
support mechanism
arm
mechanism according
track
sliding
Prior art date
Application number
PCT/CN2008/000726
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English (en)
French (fr)
Inventor
Dongqing Cai
Original Assignee
Guangdong Alpha Animation And Culture Co., Ltd.
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 Guangdong Alpha Animation And Culture Co., Ltd. filed Critical Guangdong Alpha Animation And Culture Co., Ltd.
Publication of WO2009100596A1 publication Critical patent/WO2009100596A1/zh

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Classifications

    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H18/00Highways or trackways for toys; Propulsion by special interaction between vehicle and track
    • A63H18/02Construction or arrangement of the trackway
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H18/00Highways or trackways for toys; Propulsion by special interaction between vehicle and track
    • A63H18/08Highways or trackways for toys; Propulsion by special interaction between vehicle and track with mechanical means for guiding or steering
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H18/00Highways or trackways for toys; Propulsion by special interaction between vehicle and track
    • A63H18/02Construction or arrangement of the trackway
    • A63H18/028Looping; Jumping; Tilt-track sections

Definitions

  • the invention relates to the field of toy vehicles, in particular to a track support mechanism of a toy racing car which is driven by a track. Background technique
  • the existing toy car for children's games is generally a four-wheel drive model.
  • the front of the toy car is fixedly mounted with a pair of guide wheels.
  • the track matched with the toy car is semi-closed, and the toy car is driven in the track.
  • the width and area are relatively large, and the track can only be changed in height and height, and it is difficult to make a complex and varied shape.
  • the support mechanism of the track can only be a simple upright support structure, and the viewing performance is relatively poor. Because the toy car relies on the guide wheel to walk along the track, because the guide wheel only contacts the track, it is only constrained by the left and right direction without being constrained by the up and down direction. Therefore, the speed of the car is too fast or it is easy to get off the track and fly at the corner. The phenomenon of orbiting, which will cause the car to stop, affecting the racing effect. Summary of the invention
  • the object of the present invention is to provide a support for the above-mentioned problems and deficiencies, and to provide a variety of three-dimensional modeling changes for the track, and to realize a variety of fancy shuttles for the high-speed driving of the toy speeding card, thereby improving the fun of playing and A racing toy track support mechanism for racing.
  • a toy flying track support mechanism includes a column, a horizontal arm that can be slidably disposed on the column, and an arcuate arm rotatably disposed at one end of the horizontal arm And a sliding bearing device slidably disposed in the arcuate groove provided by the curved arm, and the upper end of the sliding bearing is provided with a structure connected to the track.
  • the cross arm comprises a fixing base and an outer arm rotatably sleeved outside the fixing seat, and one end of the fixing seat is provided with a connecting sleeve, and the fixing seat is sleeved up and down on the column through the connecting sleeve and passes through the locking device
  • the lock is locked between the outer arm and the fixed seat by a locking member.
  • the other end of the cross arm can be symmetrically placed with the curved arm to mount the multilayer track.
  • the structure of the connecting sleeve can be in various forms, and the connecting sleeve comprises two semi-circular shells surrounding the column, the locking device comprises a snap member disposed on the semi-circular shell and a block disposed on the semi-circular shell, the buckle member
  • the utility model comprises a hook and a tensioning plate of the hook-fastening block, and the two semi-circular shells are fastened and fixed on the column by fastening the block by the hook provided on the buckle.
  • the sliding support and the curved arm can be respectively locked on the curved arm and the cross arm by the locking member.
  • the structure of the locking member can take various forms, and can be an eccentric wrench type locking member or a screw fixing lock or a locking member.
  • the upper end of the sliding support is provided with an elastic buckle member, and the elastic buckle member comprises a pressing button, a return spring and a mounting leg, and the sliding bearing seat is embedded in the lower part of the track through the embedded leg on the elastic buckle member The jack is inserted into the track
  • the invention realizes the need of supporting the three-dimensional modeling track by adopting a multi-directional multi-dimensional adjustment structure. Since the cross arm can be slidably mounted on the column, the adjustment of the height direction of the rail is convenient; since the cross arm includes a fixing seat and an outer arm rotatably sleeved outside the fixing seat, the curved arm is convenient Rotating around the fixed seat facilitates the raising or lowering of the track around the cross arm; in particular, due to the use of the curved arm and the sliding support structure along the curved arm, the track supporting the torsion state can be realized, thereby Realize the three-dimensional shape of the curved and torsion of the track.
  • the other end of the cross arm can be symmetrically placed with the curved arm, which facilitates the installation of the multilayer track.
  • the supporting mechanism of the invention can support the track to make various three-dimensional fancy structure shapes, so that the toy speeding card can make various fancy shuttles while holding the track at a high speed, thereby improving the fun of playing.
  • Figure 1 is a partial cross-sectional structural view showing an angle of the sliding bearing of the present invention locked by the locking member on the curved arm;
  • Figure 2 is a partial cross-sectional structural view showing another angle of the sliding bearing of the present invention locked by the locking member on the curved arm;
  • Figure 3 is a cross-sectional structural view showing the sliding support of the present invention locked on the curved arm by the locking member;
  • FIG. 4 is a schematic structural view of an elastic latching member at the upper end of the sliding support of the present invention.
  • Figure 5 is a schematic view showing the structure between the fixing seat and the outer arm of the lateral arm of the support mechanism of the present invention and when the transverse arm and the curved arm are locked by the locking member;
  • FIG. 6 is a schematic structural view of the support mechanism when the cross arm and the column are locked
  • Figure 7 is a schematic structural view of a first embodiment of the track of the present invention.
  • Figure 8 is a schematic structural view of a second embodiment of the track of the present invention.
  • Figure 9 is a schematic structural view of a third embodiment of the track of the present invention.
  • Figure 10 is a schematic view showing the structure of a fourth embodiment of the track of the present invention. detailed description
  • the present invention is a toy flying rail support mechanism, comprising a column 1, a horizontal arm 2 slidably mounted on the column 1 and rotatably mounted on the horizontal arm 2 a curved arm 3 at the end and a sliding bearing 5 slidably disposed in the arcuate groove 4 provided in the curved arm 3, and the upper end of the sliding bearing 5 is connected to the rail 6 Structure.
  • the cross arm 2 includes a fixing base 21 and an outer arm 22 rotatably sleeved outside the fixing base 21.
  • the fixing seat 21 is provided with a connecting sleeve 23 at the end, and the fixing seat 21 is slidably sleeved on the column through the connecting sleeve 23 1 is locked by the locking device 24, and the outer arm 22 and the fixing seat 21 are locked by a locking member 25.
  • the other end of the cross arm 2 can symmetrically surround the curved arm 3 to mount the multilayer track.
  • the connecting sleeve 23 includes two semi-circular shells 231, 232 that can surround the column 1.
  • the locking device 24 includes a snap member 241 disposed on the semi-circular housing 232 and a block 242 disposed on the semi-circular housing 231.
  • the 241 includes a hook 241a and a tensioning plate 241 b.
  • the two semi-circular shells 231 and 232 are fastened to the column 1 by the hook 241a provided on the latching member 241. on.
  • the sliding bearing is locked to the curved arm by a locking member.
  • the sliding support 5 and the curved arm 3 can be locked to the curved arm 3 and the cross arm 2 by locking members 5 1, 31, respectively.
  • the locking member 25, the locking member 51, and the locking member 31 are eccentric wrench type locking members or screw fixing locks or the locking members are locked.
  • the arcuate groove 4 of the curved arm 3 is a T-shaped groove, and a long through hole is formed in the middle of the groove bottom of the T-shaped groove 4.
  • the lower part of the sliding support 5 is provided with a T-shaped insert 51 adapted to the curved groove 4, and the bottom of the T-shaped insert block 51 is provided with an elongated through hole through which the bottom of the T-shaped groove 4 is provided for the locking piece. 51 locking lug 52.
  • the upper end of the sliding support 5 is provided with a resilient latching member 53.
  • the elastic latching member 53 includes a pressing button 531, a return spring and a mounting leg 532.
  • the sliding bearing 5 is disposed through the mounting leg 532 of the elastic latching member 53 and the lower portion of the rail 6.
  • the rail 5 can be realized in various structural forms such as a loop type or a roller coaster type or a vertical jaw type or a parallel type.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Toys (AREA)

Description

一种玩具飞车轨道支撑机构 技术领域
本发明涉及玩具车领域, 具体是一种依靠轨道行驶的玩具赛车的轨道支撑机构。 背景技术
现有的供儿童游戏的玩具赛车,一般为四驱车型,玩具赛车的前部固定安装一对导轮, 与玩具车相配套的轨道为半封闭式,玩具车在轨道内行驶,该轨道通常宽度和面积比较大, 轨道一般只能做高低改变, 而难于做成复杂多变的造型, 轨道的支撑机构也只能是简单直 立型的支撑结构, 观赏性比较差。 又由于玩具车依靠导轮沿轨道行走, 由于导轮只是与轨 道接触, 只受到左右方向的约束而无受到上下方向的约束, 因此赛车时速度过快或是在拐 弯处容易发生脱离轨道、 飞出轨道的现象, 这样会导致赛车中止, 影响赛车效果。 发明内容
本发明的目的在于针对上述存在问题和不足, 提供一种可支撑轨道并方便轨道作出各 种三维造型变幻、 实现玩具飞车卡抱着轨道高速行驶作出各种花式穿梭, 提高玩耍的趣味 性和赛车观赏性的玩具飞车轨道支撑机构。
本发明的技术方案是这样实现的: 一种玩具飞车轨道支撑机构, 包括立柱、 可上下滑 动地套置在立柱上的横支臂、可转动地套置在横支臂一端的弧形支臂以及可滑动地装置在 弧形支臂设有的弧形槽中的滑动支座, 滑动支座上端设有与轨道相连接的结构。
其中, 上述横支臂包括固定座及可转动地套置在固定座外的外臂, 固定座一端设有连 接套, 固定座通过连接套可上下滑动地套置在立柱上并通过锁紧装置锁紧, 外臂和固定座 之间通过一锁紧件锁紧。 横支臂的另一端可以对称套置弧形支臂, 以安装多层轨道。
连接套的结构可有多种形式, 连接套包括可包围立柱的两半圆壳体, 锁紧装置包括设 置在半圆壳体上的卡扣件及设置在半圆壳体上的卡块,卡扣件包括可钩扣卡块的扣钩和拉 紧板, 两半圆壳体通过卡扣件上设有的扣钩扣紧卡块而紧包围固定在立柱上。
滑动支座和弧形支臂可通过锁紧件分别锁紧在弧形支臂和横支臂上。锁紧件的结构可 有多种形式, 可以为偏心扳手式锁紧件或螺丝固定锁紧或卡扣件锁紧。
为方便连接轨道, 上述滑动支座上端设有弹性插扣件, 弹性插扣件包括按压键、 复位 弹簧及嵌脚,滑动支座通过弹性插扣件上的嵌脚与轨道下部设有的嵌插孔嵌插而与轨道相
1
确认本 连接。
本发明由于采用了可多方向多维调节的结构形式, 可实现支撑立体造型轨道的需要。 由于横支臂可上下滑动地套置在立柱上, 方便了轨道上下高度方向的调整; 由于横支臂包 括固定座及可转动地套置在固定座外的外臂, 方便了弧形支臂绕着固定座转动, 也就方便 了轨道绕着横支臂升高或降低; 特别是由于采用弧形支臂及可沿弧形支臂滑动支座结构, 可实现支撑扭转状态的轨道, 从而实现轨道的弯曲扭转等花样立体造型。 同时, 橫支臂的 另一端可以对称套置弧形支臂, 这样方便安装多层轨道。 本发明支撑机构可支撑轨道作出 各种立体花式结构造型, 使玩具飞车卡抱着轨道高速行驶时作出各种花式穿梭, 从而提高 了玩耍的趣味性。
下面结合附图对本发明作进一步的说明。 附图说明
图 1 为本发明滑动支座通过锁紧件锁紧在弧形支臂上一个角度的局部剖视结构示意 图;
图 2为本发明滑动支座通过锁紧件锁紧在弧形支臂上另一个角度的局部剖视结构示意 图;
图 3为本发明滑动支座通过锁紧件锁紧在弧形支臂上的剖视结构示意图;
图 4为本发明滑动支座上端弹性插扣件的结构示意图;
图 5为本发明支撑机构横支臂的固定座和外臂之间以及横支臂与弧形支臂之间通过锁 紧件锁紧时的结构示意图;
图 6为本发明支撑机构横支臂与立柱之间锁紧时的结构示意图;
图 7为本发明轨道第一种实施例的结构示意图;
图 8为本发明轨道第二种实施例的结构示意图;
图 9为本发明轨道第三种实施例的结构示意图;
图 10为本发明轨道第四种实施例的结构示意图。 具体实施方式
如图 1至图 10所示, 本发明为一种玩具飞车轨道支撑机构, 包括立柱 1、 可上下滑动 地套置在立柱 1上的横支臂 2、 可转动地套置在横支臂 2—端的弧形支臂 3以及可滑动地 装置在弧形支臂 3设有的弧形槽 4中的滑动支座 5, 滑动支座 5上端设有与轨道 6相连接 的结构。 横支臂 2包括固定座 21及可转动地套置在固定座 21外的外臂 22, 固定座 21— 端设有连接套 23,固定座 21通过连接套 23可上下滑动地套置在立柱 1上并通过锁紧装置 24锁紧, 外臂 22和固定座 21之间通过一锁紧件 25锁紧。 横支臂 2的另一端可以对称套 置弧形支臂 3, 以安装多层轨道。 连接套 23包括可包围立柱 1的两半圆壳体 231、 232, 锁紧装置 24包括设置在半圆壳体 232上的卡扣件 241及设置在半圆壳体 231上的卡块 242, 卡扣件 241包括可钩扣卡块 242的扣钩 241a和拉紧板 241 b,两半圆壳体 231、 232通过卡 扣件 241上设有的扣钩 241a扣紧卡块 242而紧包围固定在立柱 1上。
滑动支座通过锁紧件锁紧在弧形支臂上。 滑动支座 5和弧形支臂 3可通过锁紧件 5 1、 31分别锁紧在弧形支臂 3和横支臂 2上。锁紧件 25、锁紧件 51、锁紧件 31为偏心扳手式 锁紧件或螺丝固定锁紧或卡扣件锁紧。
如图 1至图 4所示, 弧形支臂 3的弧形槽 4为 T型槽, 且 T型槽 4的槽底中间设有长 条形通孔。 滑动支座 5的下部设有与弧形槽 4相适配的 T型嵌块 51, T型嵌块 51底部设 有可穿过 T型槽 4槽底的长条形通孔供锁紧件 51锁紧的凸耳 52。 滑动支座 5上端设有弹 性插扣件 53, 弹性插扣件 53包括按压键 531、复位弹簧及嵌脚 532, 滑动支座 5通过弹性 插扣件 53上的嵌脚 532与轨道 6下部设有的嵌插孔嵌插而与轨道 6相连接。
如图 1、 图 7至图 10所示, 在本发明支撑机构的支撑配合下, 轨道 5可实现设置为连 环式或过山车式或垂直蜿蜒式或平行式其它各种结构形式。
本发明是通过实施例来描述的, 但并不对本发明构成限制, 参照本发明的描述, 所 公开的实施例的其他变化, 如对于本领域的专业人士是容易想到的, 这样的变化应该属于 本发明权利要求限定的范围之内。

Claims

1、 一种玩具飞车轨道支撑机构, 其特征在于: 包括立柱 (1)、 可上下滑动地套置在 立柱 (1) 上的横支臂 (2)、 可转动地套置在横支臂 (2)—端的弧形支臂 (3) 以及可滑 动地装置在弧形支臂 (3) 设有的弧形槽 (4) 中的滑动支座 (5), 所述滑动支座 (5) 上 端设有与轨道 (6) 相连接的结构。
2、 根据权利要求 1所述支撑机构, 其特征在于: 上述横支臂 (2) 包括固定座 (21) 及可转动地套置在固定座 (21) 外的外臂 (22), 固定座 (21)—端设有连接套 (23), 固 定座 (21) 通过连接套 (23) 可上下滑动地套置在立柱 (1) 上并通过锁紧装置 (24) 锁 紧, 外臂 (22) 和固定座 (21) 之间通过一锁紧件 (25) 锁紧。
3、 根据权利要求 2所述支撑机构, 其特征在于: 上述连接套 (23) 包括可包围立柱 (1) 的两半圆壳体 (231、 232), 所述锁紧装置 (24) 包括设置在半圆壳体 (232) 上的 卡扣件 (241) 及设置在半圆壳体 (231) 上的卡块 (242), 卡扣件 (241) 包括可钩扣卡 块 (242)的扣钩 (241a)和拉紧板 (241b),所述两半圆壳体(231、 232)通过卡扣件(241 ) 上设有的扣钩 (241a) 扣紧卡块 (242) 而紧包围固定在立柱 (1) 上。
4、根据权利要求 1所述支撑机构, 其特征在于: 上述滑动支座(5)通过锁紧件(51) 锁紧在弧形支臂 (3) 上。
5、根据权利要求 1所述支撑机构, 其特征在于: 上述弧形支臂(3)通过锁紧件(31) 锁紧在横支臂 (2) 上。
6、 根据权利要求 2或 4或 5所述支撑机构, 其特征在于: 上述锁紧件 (25)、 锁紧件 (51)、 锁紧件 (31) 为偏心扳手式锁紧件。
7、根据权利要求 1或 4所述支撑机构,其特征在于: 上述弧形支臂(3)的弧形槽(4) 为 T型槽, 且 T型槽 (4) 的槽底中间设有长条形通孔。
8、 根据权利要求 7所述支撑机构, 其特征在于: 上述滑动支座 (5) 的下部设有与弧 形槽(4)相适配的 T型嵌块 (51), T型嵌块(51)底部设有可穿过 T型槽 (4)槽底的长 条形通孔供锁紧件 (51) 锁紧的凸耳 (52)。
9、 根据权利要求 1或 4所述支撑机构, 其特征在于: 上述滑动支座 (5) 上端设有弹 性插扣件 (53), 弹性插扣件 (53) 包括按压键 (531)、 复位弹簧及嵌脚 (532), 滑动支 座 (5) 通过弹性插扣件 (53) 上的嵌脚 (532) 与轨道 (6) 下部设有的嵌插孔嵌插而与 轨道 (6) 相连接。
10、 根据权利要求 8所述支撑机构, 其特征在于: 上述滑动支座 (5) 上端设有弹性 插扣件 (53), 弹性插扣件 (53) 包括按压键 (531)、 复位弹簧及嵌脚 (532), 滑动支座 (5) 通过弹性插扣件 (53) 上的嵌脚 (532) 与轨道 (6) 下部设有的嵌插孔嵌插而与轨 道 (6) 相连接。
PCT/CN2008/000726 2008-02-05 2008-04-10 一种玩具飞车轨道支撑机构 WO2009100596A1 (zh)

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