WO2019019317A1 - 一种可自动翻转变形的玩具车 - Google Patents

一种可自动翻转变形的玩具车 Download PDF

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Publication number
WO2019019317A1
WO2019019317A1 PCT/CN2017/102635 CN2017102635W WO2019019317A1 WO 2019019317 A1 WO2019019317 A1 WO 2019019317A1 CN 2017102635 W CN2017102635 W CN 2017102635W WO 2019019317 A1 WO2019019317 A1 WO 2019019317A1
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WO
WIPO (PCT)
Prior art keywords
vehicle
toy car
toy
rotating member
locking member
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PCT/CN2017/102635
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English (en)
French (fr)
Inventor
谢幼兰
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广州灵动创想文化科技有限公司
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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 WO2019019317A1 publication Critical patent/WO2019019317A1/zh

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    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H17/00Toy vehicles, e.g. with self-drive; ; Cranes, winches or the like; Accessories therefor
    • A63H17/26Details; Accessories
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H33/00Other toys
    • A63H33/003Convertible toys, e.g. robots convertible into rockets or vehicles convertible into planes

Definitions

  • the invention relates to the technical field of toys, in particular to a toy vehicle which can automatically reverse deformation.
  • the existing modified toy grades are high or low, and the lower grade deformed toys are manually operated and deformed toys.
  • Such toys have low interest, and for children in a society with relatively advanced electronic technology, this Class toys are hard to get their favor.
  • the high-grade deformation toys are fully automatic electronically controlled deformation toys. These toys are generally deformed by remote control remote control, and are also equipped with sound and light effects, which can greatly attract children's interest.
  • Such toys are not only expensive, but also have a large number of parts and mechanical transmission parts, so they are relatively easy to damage. Inadvertent collision or falling of wine can cause internal parts to be damaged and unable to control deformation and play.
  • the currently popular deformation toys are mid-range deformation toys, which are not deformed by electric control, but are magnetically controlled to deform.
  • a toy includes a plurality of outer parts and a plurality of inner parts, and the structure is relatively complicated and relatively high in cost.
  • the center of gravity may be displaced due to the shifting of the parts, and the movement may not be able to stand or move, thereby affecting the play.
  • the object of the present invention is to overcome the deficiencies of the prior art and provide a toy car that can be automatically flipped and deformed, and has a clever structural design, which can automatically vacate and transform into a second form during the running of the toy car. And the deformed second form can continue to maintain the forward driving state after landing.
  • a toy vehicle capable of automatically flipping deformation comprising a vehicle underframe, a fixing base, a vehicle body, a turning member, a returning force mechanism, a locking member and a rotating member;
  • the fixing seat is cooperatively mounted on the vehicle underframe;
  • the part is mounted on the fixing seat by a rotating part of the vehicle body;
  • the front part is engaged with the underframe by a snap member;
  • the turning piece is disposed at the bottom of the underframe;
  • the locking piece is mounted on the front and rear movable
  • the flip member is engaged with a rear end of the lock member;
  • the return force mechanism is mounted on the underframe and drives the undercarriage to travel forward;
  • the connecting piece is configured to be coupled, and the rotating member is drivingly connected to the returning force mechanism;
  • the returning force mechanism drives the rotating member to rotate and causes the locking member to move backward.
  • the toy car with automatic flip deformation has a clever structural design, including a deformable structure of the vehicle body, the flip member and the underframe, and then the clip structure is used to snap the deformable structure and finally pass
  • the return force mechanism drives the rotating member to rotate and causes the locking member to move backward to unlock the deformable structure, so that the toy vehicle can switch between the vehicle shape and the second form.
  • the deformable structure is unlocked by driving the locking member, so that the flipping member rotates downward to drive the toy car to automatically vacate and jump, and at the same time, the vehicle body and the undercarriage are disengaged and deformed into the second form.
  • the two movements occur simultaneously, which makes the deformation process of the toy car more dynamic, the deformation action is more cool, and the automatic triggering method is used to unlock the deformation, which not only reduces a lot of unlocking parts, but also makes the structure simpler and more Ornamental.
  • the modified toy car can continue to drive forward, so that the toy car of the second form also has a dynamic effect, further increasing the fun of the toy.
  • the invention is ingeniously designed and uniquely interesting, and can be applied to toy cars of various shapes, styles and functions.
  • the latching member is disposed behind the front end of the locking member; the front portion of the locking member is provided with a circular hole, and the inner wall of the circular hole is provided with a bump; the rotating member is coaxial Positioned in the circular hole, and the rotating member is provided with a pushing block that cooperates with the protruding block; when the rotating member rotates, the protruding block is pushed by the pushing block to move the locking member backward, and the locking is made The rear end of the piece is unlocked with the flip member, the flip member is turned over and the card member is pressed against the body to unlock, and the toy car is automatically turned over and deformed.
  • the front end of the flip member is rotatably connected to the underframe through a twisting member, and a rear hole is formed at a rear end thereof; a hook is disposed at a rear end of the locking member, and the hook is Engaged with the square hole.
  • the undercarriage includes a vehicle chassis and a rear wheel; the return force mechanism is mounted on the vehicle chassis, and the rear wheel is drivingly coupled to the return force mechanism.
  • the toy vehicle has a drive structure.
  • the front end of the vehicle chassis is further provided with a secondary wheel.
  • the secondary wheel and the rear wheel together constitute a driving structure of the toy vehicle.
  • the return force mechanism includes a box body, a return spring, a flywheel, a transmission gear and a rotating shaft installed in the box body; the return spring is connected with the inertia wheel, and the transmission gear meshes with the inertia wheel, The rotating shaft is connected to the transmission gear.
  • the toy vehicle it is advantageous for the toy vehicle to have an energy storage drive.
  • the vehicle body includes a body frame, an arm portion symmetrically disposed on both sides of the body frame, and a head portion disposed above the body frame.
  • the front end of the arm portion is respectively connected with a front wheel, and the rear end thereof passes through the arm rotating member and
  • the body frame is rotatably connected.
  • vehicle head is coupled to the body frame by a front turning member.
  • FIG. 1 is a schematic structural view of a car body shape of a toy car that can be automatically reversed and deformed according to the present invention
  • FIG. 2 is a schematic structural view of a second embodiment of the toy car that can be automatically reversed and deformed according to the present invention
  • FIG. 3 is an exploded perspective view of the toy car capable of automatically turning over and deforming according to the present invention
  • Figure 4 is an exploded view of the toy car of the present invention capable of automatically flipping deformation
  • Fig. 5 is a structural schematic view showing a partial member of the toy car which can be automatically reversed and deformed according to the present invention.
  • FIG. 1 is a schematic structural view of the shape of a car of the toy car which can be automatically reversed and deformed according to the present invention
  • FIG. 2 is an automatic flip deformation of the present invention
  • FIG. 3 is an exploded perspective view of the toy car of the present invention which can be automatically reversed and deformed
  • FIG. 4 is an exploded view of the toy car of the present invention which can be automatically reversed and deformed
  • a toy car capable of automatically flipping deformation, including a vehicle underframe 10, a fixed seat 20, a body 30, and a flip a member 40, a returning force mechanism 50, a locking member 60 and a rotating member 70;
  • the fixing base 20 is cooperatively mounted on the underframe 10;
  • the rear portion of the body 30 is mounted on the fixing base 20 by a body rotating member 31;
  • the front portion is engaged with the underframe 10 through a latching member 32;
  • the flip member 40 is disposed at the bottom of the undercarriage 10;
  • the latching member 60 is movably mounted to the undercarriage 10
  • the flip member 40 is engaged with the rear end of the lock member 60;
  • the pullback mechanism 50 is mounted on the underframe 10 and drives the undercarriage 10 to travel forward;
  • the connecting member 60 is cooperatively disposed, and the rotating member 70 is drivingly coupled to the returning force mechanism 50;
  • the returning force mechanism 50 drives the rotating member 70 to rotate and causes the locking member
  • the engaging member 32 is disposed behind the front end of the locking member 60; the front portion of the locking member 60 is provided with a circular hole 61, and the inner wall of the circular hole 61 is provided with a protrusion 62;
  • the rotating member 70 is disposed coaxially in the circular hole 61, and the rotating member 70 is provided with a pushing block 71 that cooperates with the protrusion 62; when the rotating member 70 rotates, the protruding block 62 is pushed by the pushing block 71. Therefore, the locking member 60 is moved backward, and the rear end of the locking member 60 is unlocked with the flipping member 40, and the flipping member 40 is turned 180° and the latching member 32 is pressed to unlock the body 30 to realize the toy. The car automatically jumps and deforms.
  • the front end of the inverting member 40 is twisted and connected to the undercarriage 10 through a twisting member 41, and the rear end thereof has a square hole 42; the rear end of the locking member 60 is provided with a card downward.
  • a hook 63 is provided, and the hook 63 is engaged with the square hole 42.
  • the undercarriage 10 includes a chassis 11 and a rear wheel 12; the urging mechanism 50 is mounted on the chassis 11 and the rear wheel 12 is drivingly coupled to the urging mechanism 50.
  • the front end of the vehicle chassis 11 is further provided with a secondary wheel 13.
  • the secondary wheel 13 and the rear wheel 12 together constitute a driving structure of the toy vehicle.
  • the force-return mechanism 50 includes a box body, a springback spring that is mounted in the box body, a flywheel, a transmission gear, and a rotating shaft; the return spring is connected to the inertia wheel, and the transmission gear is engaged with the inertia wheel The shaft is coupled to the transmission gear.
  • the vehicle body 30 includes a body frame 33, an arm portion 34 symmetrically disposed on both sides of the body frame 33, and a head portion 35 disposed above the body frame 33.
  • the front end of the arm portion 34 is connected to the front wheel 36, and the rear end thereof is rotatably connected to the body frame 33 via the arm rotating member 37. Further, the head portion 35 is coupled to the body frame 33 by a front end turning member 38.
  • the toy car Before the deformation, the toy car is first placed on the ground or other plane, and the toy car is pulled backward to perform the energy storage work. When the distance is pulled backward, the toy car is released, and the toy car automatically moves forward.
  • the return force mechanism 50 simultaneously drives the rear wheel 12 and the rotating member 70.
  • the rotating member 70 rotates in the circular hole 61 of the locking member 60; when the rotating member 70 rotates to a certain range, the pushing block 71 on the rotating member 70 just tops Pressing the projection 62 on the lock member 60 and pushing the projection 62 through the push block 71 causes the lock member 60 to move backward; thereby causing the flip member 40 to be unlocked and flipped forward by 180°, and the rear end of the flip member 40 is pressed against
  • the latching member 32 separates the latching member 32 from the vehicle body, thereby realizing the effect that the toy vehicle automatically vacates and deforms into the second form.
  • the vehicle body 30 is rotated to a position perpendicular to the undercarriage 10, and the two arm portions 34 are unfolded as the arms of the vehicle body 30, and the vehicle body 30 corresponds to the body portion in the second form, and the two arm portions 34 are equivalent to The arm part of the second form.
  • the toy car of the second form after vacating continues to maintain the forward running state.
  • the sub-wheel 13 and the rear wheel 12 on the undercarriage 10 serve as the driving structure of the second form, and when the returning mechanism 50 is to be stored When it can be completely consumed, the toy car stops moving.
  • the lock member 60 When the toy car is changed from the second form to the car form, the lock member 60 can be pushed forward and the flip member 40, the body frame 33 and the two arm portions 34 can be snapped back to the original position, and then released.
  • the locking member 60 causes the locking member 60 to lock the flip member 40, and then the body 30 is snap-fitted by the engaging member 32.
  • the deformation process of the form in which the toy car changes from the second form to the car is completed.
  • the specific shape of the second form can be determined by designing the specific shape of the body frame 33, the arm portion 34, and the head portion 35.
  • it can be designed in the form of a robot or an animal.
  • the toy car with automatic flip deformation has a clever structural design, including a deformable structure of the vehicle body, the flipping member and the undercarriage, and then the card can be deformed by the locking member.
  • the structure finally drives the rotating member to rotate by the returning force mechanism and causes the locking member to move backward to unlock the deformable structure, so that the toy vehicle can be switched between the vehicle shape and the second form.
  • the deformable structure is unlocked by driving the locking member, so that the flipping member rotates downward to drive the toy car to automatically vacate and jump, and at the same time, the vehicle body and the undercarriage are disengaged and deformed into the second form.
  • the two movements occur simultaneously, which makes the deformation process of the toy car more dynamic, the deformation action is more cool, and the automatic triggering method is used to unlock the deformation, which not only reduces a lot of unlocking parts, but also makes the structure simpler and more Ornamental.
  • the modified toy car can continue to drive forward, so that the toy car of the second form also has a dynamic effect, further increasing the fun of the toy.
  • the invention is ingeniously designed and uniquely interesting, and can be applied to toy cars of various shapes, styles and functions.

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Abstract

一种可自动翻转变形的玩具车,包括车底架(10)、固定座(20)、车身(30)、翻转件(40)、回力机构(50)、锁接件(60)以及转动件(70);固定座(20)配合安装在车底架(10)上;车身的后部通过一车身转动件(31)安装在固定座(20)上;其前部通过一卡接件(32)与车底架(10)卡接;翻转件(40)设置在车底架(10)的底部;锁接件(60)可前后移动地安装于车底架(10)中,翻转件(40)与锁接件(60)的后端卡接,回力机构(50)安装在车底架(10)上并驱动车底架(10)向前行驶;转动件(31)与锁接件(60)配合设置,且转动件(70)与回力机构(50)传动连接,回力机构(50)驱动转动件(70)转动并使得锁接件(70)后移。玩具车在行驶的过程中能够自动腾空跳转并变形为第二形态,并且变形后的第二形态还能继续向前行驶。

Description

一种可自动翻转变形的玩具车 技术领域
本发明涉及玩具技术领域,特别是涉及一种可自动翻转变形的玩具车。
背景技术
玩具作为小孩智力开发以及娱乐玩耍的重要用具,而且随着人们的生活水平不断提高,对于玩具的品质和功能的追求也越来越高。
现有的玩具在追求智力开发活动的同时,更应该增加其趣味性,从而提高孩子的兴趣。生活中的变形机械人电影,凭借其炫酷的特效,吸引了一大群的粉丝,而由其衍生出来的许多玩具,深受粉丝的追棒。但现有变形机械人玩具由于其做工比较粗糙、仿真性不高,或者由于其自动化程度不高,需要手动变形,因此满足不了现代人对于高品质玩具的追求。
另外,现有的变形玩具档次有高有低,其中较低档次的变形玩具为手动操作变形的玩具,这类玩具的趣味性较低,对于处于电子科技比较发达的社会的小孩来说,这类玩具难以获得他们的青睐。而档次较高的变形玩具为全自动电控的变形玩具,这类玩具一般通过遥控器遥控实现变形,同时还配有声光效果,能极大地吸引小孩的兴趣。然而这类玩具不但价钱昂贵,而且零部件和机械传动部件比较多,因此比较容易损坏,不小心碰撞或摔倒酒会导致内部的零件出现损伤而无法控制变形玩耍。
因此,目前比较受欢迎的变形玩具是中档次的变形玩具,这类玩具并非通过电动控制变形,而是通过磁性控制变形。然而这类玩具包括多个外部件和多个内部件,结构比较复杂而且成本相对较高,当变形为第二形态时会由于转出部件而使重心偏移无法站立或移动,从而影响玩耍的趣味性。
发明内容
基于此,本发明的目的在于克服现有技术的不足,提供一种可自动翻转变形的玩具车,其结构设计巧妙,在玩具车行驶的过程中能够自动腾空跳转并变形为第二形态,并且变形后的第二形态落地之后可以继续保持向前行驶的状态。
为了实现上述目的,本发明采用的技术方案为:
一种可自动翻转变形的玩具车,包括车底架、固定座、车身、翻转件、回力机构、锁接件以及转动件;所述固定座配合安装在车底架上;所述车身的后部通过一车身转动件安装在固定座上;其前部通过一卡接件与车底架卡接;所述翻转件设置在车底架的底部;所述锁接件可前后移动地安装于所述车底架中,所述翻转件与所述锁接件的后端卡接;所述回力机构安装在车底架上并驱动车底架向前行驶;所述转动件与所述锁接件配合设置,且该转动件与所述回力机构传动连接;所述回力机构驱动所述转动件转动并使得锁接件后移。
由此,本发明所述的可自动翻转变形的玩具车,其结构设计巧妙,包括车身、翻转件以及车底架的可变形结构,再通过锁接件来卡接该可变形结构,最后通过回力机构驱动转动件转动并使得锁接件后移对该可变形结构进行解锁,使得玩具车可以在车子形态与第二形态之间切换。另外,通过驱动锁接件对可变形结构进行解锁,从而使得翻转件向下转动而带动玩具车自动腾空跳转,与此同时,车身与车底架之间脱卡并变形为第二形态,两个动作同时连贯发生,使得该玩具车的变形过程更具动态效果,变形动作更加炫酷,而且采用自动触发的方式进行解锁变形,不仅减少了很多解锁部件,使得结构更为简单,而且更具观赏性。并且,变形后的玩具车还可以继续向前行驶,使得第二形态的玩具车也具有动态的效果,进一步增加玩具的趣味性。另外,本发明设计巧妙,并且变化独特有趣,可适用于各种不同造型、款式以及功能的玩具车。
进一步地,所述卡接件设置所述锁接件的前端后方;所述锁接件的前部设有圆孔,且该圆孔的内壁上设有凸块;所述转动件同轴线地设置在该圆孔中,且转动件上设有与所述凸块配合的推块;所述转动件转动时通过推块推动凸块从而使得所述锁接件后移,并使得锁接件的后端与翻转件解锁,翻转件翻转并顶压所述卡接件使其与车身解锁,实现玩具车的自动翻转并变形。
进一步地,所述翻转件的前端通过一扭动件与所述车底架转动连接,其后端开有方孔;所述锁接件的后端向下设有一卡勾,且该卡勾与所述方孔配合卡接。通过此处限定,有利于实现翻转件与锁接件之间的卡接更加灵活,并且解锁动作简单方便。
进一步地,所述车底架包括车底盘以及后轮;所述回力机构安装在车底盘上,且所述后轮与所述回力机构传动连接。通过此处限定,有利于保证玩具车具有驱动结构。
进一步地,所述车底盘的前端还设有副轮,当玩具车变形为第二形态时,所述副轮以及所述后轮共同组成玩具车的驱动结构。通过此处限定,有利于玩具车变形为第二形态的时候仍然具有向前驱动的功能。
进一步地,所述回力机构包括箱体、安装在箱体内的回力发条、惯性轮、传动齿轮以及转轴;所述回力发条与惯性轮连接,所述传动齿轮与惯性轮相啮合,所述转轴与传动齿轮相连接。通过此处限定,有利于玩具车具有蓄能驱动的装置。
进一步地,所述车身包括车身架、对称设置在车身架两侧的手臂部以及设置在车身架上方的车头部。通过此处限定,有利于第二形态进一步地增加其观赏性以及趣味性。
进一步地,所述手臂部的前端分别连接有前轮,其后端通过手臂转动件与 所述车身架转动连接。通过此处限定,有利于使得玩具车在变形之前通过前轮与后轮的组合构成驱动结构,并在玩具车变形为第二形态的时候使得该第二形态更加具有观赏性。
进一步地,所述车头部与所述车身架通过一车头转动件连接。通过此处限定,有利于第二形态进一步地增加其观赏性以及趣味性。
附图说明
图1为本发明的可自动翻转变形的玩具车的车子外形的结构示意图;
图2为本发明的可自动翻转变形的玩具车的第二形态的结构示意图;
图3为本发明的可自动翻转变形的玩具车的分解示意图;
图4为本发明的可自动翻转变形的玩具车的爆炸图;
图5为本发明的可自动翻转变形的玩具车的局部构件的结构示意图。
具体实施方式
为进一步说明各实施例,本发明提供有附图。这些附图为本发明揭露内容的一部分,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发明的优点。
请同时参阅图1、图2、图3、图4以及图5,其中,图1是本发明的可自动翻转变形的玩具车的车子外形的结构示意图;图2是本发明的可自动翻转变形的玩具车的第二形态的结构示意图;图3是本发明的可自动翻转变形的玩具车的分解示意图;图4是本发明的可自动翻转变形的玩具车的爆炸图;图5是本发明的可自动翻转变形的玩具车的局部构件的结构示意图。
一种可自动翻转变形的玩具车,包括车底架10、固定座20、车身30、翻转 件40、回力机构50、锁接件60以及转动件70;所述固定座20配合安装在车底架10上;所述车身30的后部通过一车身转动件31安装在固定座20上;其前部通过一卡接件32与车底架10卡接;所述翻转件40设置在车底架10的底部;所述锁接件60可前后移动地安装于所述车底架10中,所述翻转件40与所述锁接件60的后端卡接;所述回力机构50安装在车底架10上并驱动车底架10向前行驶;所述转动件70与所述锁接件60配合设置,且该转动件70与所述回力机构50传动连接;所述回力机构50驱动所述转动件70转动并使得锁接件60后移。
具体地,所述卡接件32设置所述锁接件60的前端后方;所述锁接件60的前部设有圆孔61,且该圆孔61的内壁上设有凸块62;所述转动件70同轴线地设置在该圆孔61中,且转动件70上设有与所述凸块62配合的推块71;所述转动件70转动时通过推块71推动凸块62从而使得所述锁接件60后移,并使得锁接件60的后端与翻转件40解锁,翻转件40翻转180°并顶压所述卡接件32使其与车身30解锁,实现玩具车的自动跳转并变形。
进一步地,所述翻转件40的前端通过一扭动件41与所述车底架10扭动连接,其后端开有方孔42;所述锁接件60的后端向下设有一卡勾63,且该卡勾63与所述方孔42配合卡接。
另外,所述车底架10包括车底盘11以及后轮12;所述回力机构50安装在车底盘11上,且所述后轮12与所述回力机构50传动连接。
进一步地,所述车底盘11的前端还设有副轮13,当玩具车变形为第二形态时,所述副轮13以及所述后轮12共同组成玩具车的驱动结构。
本发明中,所述回力机构50包括箱体、安装在箱体内的回力发条、惯性轮、传动齿轮以及转轴;所述回力发条与惯性轮连接,所述传动齿轮与惯性轮相啮 合,所述转轴与传动齿轮相连接。
其中,所述车身30包括车身架33、对称设置在车身架33两侧的手臂部34以及设置在车身架33上方的车头部35。
进一步地,所述手臂部34的前端分别连接有前轮36,其后端通过手臂转动件37与所述车身架33转动连接。另外,所述车头部35与所述车身架33通过一车头转动件38连接。
以下说明本发明的触碰翻转变形的玩具车的工作原理:
变形前,首先将玩具车放置在地上或其它平面上,并通过向后拉动玩具车进行蓄能工作,当向后拉动一定距离时,放开玩具车,此时玩具车自动向前行驶。
回力机构50同时驱动后轮12以及转动件70,此时,转动件70在锁接件60的圆孔61中转动;当转动件70转动一定范围时,转动件70上的推块71刚好顶压在锁接件60上的凸块62并通过推块71推动凸块62使得锁接件60后移;从而使得翻转件40解锁并向前翻转180°,翻转件40的后端顶压在卡接件32上使得卡接件32与车身分离,从而实现玩具车自动腾空跳转并变形为第二形态的效果。此时,车身30转动至与车底架10垂直的位置上,并且两个手臂部34展开并作为车身30的手臂,车身30相当于第二形态中的身体部位,两个手臂部34相当于第二形态的手臂部位。另外,腾空后的第二形态的玩具车落下继续保持向前行驶的状态,此时,车底架10上的副轮13以及后轮12作为第二形态的驱动结构,当回力机构50将蓄能完全消耗掉时,玩具车停止运动。
玩具车从第二形态变为车子的形态时,可以通过向前推动锁接件60并同时将翻转件40、车身架33以及两个手臂部34重新卡接回原来的位置后,再松开锁接件60使得锁接件60锁住翻转件40,再通过卡接件32将车身30卡接固定, 完成玩具车从第二形态变回车子的形态的变形过程。
其中,第二形态中,可以通过设计车身架33、手臂部34以及车头部35的具体外形来决定第二形态的具体形状,比如可以设计成机器人、动物等形态。
与现有技术相比,本发明所述的可自动翻转变形的玩具车,其结构设计巧妙,包括车身、翻转件以及车底架的可变形结构,再通过锁接件来卡接该可变形结构,最后通过回力机构驱动转动件转动并使得锁接件后移对该可变形结构进行解锁,使得玩具车可以在车子形态与第二形态之间切换。另外,通过驱动锁接件对可变形结构进行解锁,从而使得翻转件向下转动而带动玩具车自动腾空跳转,与此同时,车身与车底架之间脱卡并变形为第二形态,两个动作同时连贯发生,使得该玩具车的变形过程更具动态效果,变形动作更加炫酷,而且采用自动触发的方式进行解锁变形,不仅减少了很多解锁部件,使得结构更为简单,而且更具观赏性。并且,变形后的玩具车还可以继续向前行驶,使得第二形态的玩具车也具有动态的效果,进一步增加玩具的趣味性。另外,本发明设计巧妙,并且变化独特有趣,可适用于各种不同造型、款式以及功能的玩具车。
以上所述实施例仅表达了本发明的几种实施方式,其描述较为具体和详细,但并不能因此而理解为对发明专利范围的限制。应当指出的是,对于本领域的普通技术人员来说,在不脱离本发明构思的前提下,还可以做出若干变形和改进,这些都属于本发明的保护范围。

Claims (9)

  1. 一种可自动翻转变形的玩具车,其特征在于:包括车底架、固定座、车身、翻转件、回力机构、锁接件以及转动件;所述固定座配合安装在车底架上;所述车身的后部通过一车身转动件安装在固定座上;其前部通过一卡接件与车底架卡接;所述翻转件设置在车底架的底部;所述锁接件可前后移动地安装于所述车底架中,所述翻转件与所述锁接件的后端卡接;所述回力机构安装在车底架上并驱动车底架向前行驶;所述转动件与所述锁接件配合设置,且该转动件与所述回力机构传动连接;所述回力机构驱动所述转动件转动并使得锁接件后移。
  2. 根据权利要求1所述的可自动翻转变形的玩具车,其特征在于:所述卡接件设置所述锁接件的前端后方;所述锁接件的前部设有圆孔,且该圆孔的内壁上设有凸块;所述转动件同轴线地设置在该圆孔中,且转动件上设有与所述凸块配合的推块;所述转动件转动时通过推块推动凸块从而使得所述锁接件后移,并使得锁接件的后端与翻转件解锁,翻转件翻转并顶压所述卡接件使其与车身解锁,实现玩具车的自动跳转并变形。
  3. 根据权利要求2所述的可自动翻转变形的玩具车,其特征在于:所述翻转件的前端通过一扭动件与所述车底架转动连接,其后端开有方孔;所述锁接件的后端向下设有一卡勾,且该卡勾与所述方孔配合卡接。
  4. 根据权利要求3述的可自动翻转变形的玩具车,其特征在于:所述车底架包括车底盘以及后轮;所述回力机构安装在车底盘上,且所述后轮与所述回力机构传动连接。
  5. 根据权利要求4所述的可自动翻转变形的玩具车,其特征在于:所述车底盘的前端还设有副轮,当玩具车变形为第二形态时,所述副轮以及所述后轮 共同组成玩具车的驱动结构。
  6. 根据权利要求1至5任一项所述的可自动翻转变形的玩具车,其特征在于:所述回力机构包括箱体、安装在箱体内的回力发条、惯性轮、传动齿轮以及转轴;所述回力发条与惯性轮连接,所述传动齿轮与惯性轮相啮合,所述转轴与传动齿轮相连接。
  7. 根据权利要求6所述的可自动翻转变形的玩具车,其特征在于:所述车身包括车身架、对称设置在车身架两侧的手臂部以及设置在车身架上方的车头部。
  8. 根据权利要求7所述的可自动翻转变形的玩具车,其特征在于:所述手臂部的前端分别连接有前轮,其后端通过手臂转动件与所述车身架转动连接。
  9. 根据权利要求8所述的触碰翻转变形的玩具车,其特征在于:所述车头部与所述车身架通过一车头转动件连接。
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