CN203989852U - A kind of toy car that can manually become robot - Google Patents
A kind of toy car that can manually become robot Download PDFInfo
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- CN203989852U CN203989852U CN201420446406.8U CN201420446406U CN203989852U CN 203989852 U CN203989852 U CN 203989852U CN 201420446406 U CN201420446406 U CN 201420446406U CN 203989852 U CN203989852 U CN 203989852U
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- 108090000565 Capsid Proteins Proteins 0.000 claims abstract description 17
- UPMXNNIRAGDFEH-UHFFFAOYSA-N 3,5-dibromo-4-hydroxybenzonitrile Chemical compound OC1=C(Br)C=C(C#N)C=C1Br UPMXNNIRAGDFEH-UHFFFAOYSA-N 0.000 claims abstract description 8
- 238000007373 indentation Methods 0.000 claims description 3
- 230000015572 biosynthetic process Effects 0.000 claims 1
- 238000000034 method Methods 0.000 abstract description 3
- 238000004088 simulation Methods 0.000 abstract description 3
- 238000010586 diagram Methods 0.000 description 2
- 230000007812 deficiency Effects 0.000 description 1
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Abstract
The toy car that can manually become robot described in the utility model, comprise car body, before, rear wheel, the front of the car that is characterized in car body comprises procapsid, be positioned at the chassis forming with robot body and head of procapsid, described procapsid comprises the front main car shell that is installed on described robot body and can forms wind coat after robot body, be articulated with the hood of fighting clothes before the formed robot body in front main car shell the place ahead and be positioned at the car door of the formed robot sabre of front main car shell both sides, and robot body both sides are provided with the movable robot being built in procapsid, hood is provided with the notch that can stretch out for described robot head, the rear vehicle body of car body is movably connected on front of the car and may be deformed to the legs and feet of robot.In the process that the utility model is at play, both can change between toy car and robot, improved the interest of playing, and the robot simulation degree after distortion is high, has greatly met the needs that numerous players play.
Description
Technical field
The utility model relates to toy field, particularly a kind of toy car that can manually become robot.
Background technology
Current toy car mostly cannot change its shape, is mainly that its driving performance of pursuit and turn performance are object, and the mode of playing is single.Yet along with the development of animation and science fiction film, the plot of increasing distortion and so on has attracted more children's attention.So there is transformable toy car on market, existing manual Deformable toy car, mostly becomes the car door of toy car two hands of robot, and the shape of Yin Chemen and robot differs far away, so the image of robot is also true not, is difficult to meet children's requirement.
Summary of the invention
The purpose of this utility model is for above-mentioned existing problems and deficiency, provide a kind of can change between toy car and robot, and emulation degree is high during fighter toy, the interesting strong toy car that can manually become robot.
The technical solution of the utility model is achieved in that
The toy car that can manually become robot described in the utility model, comprise car body, be installed on this car body before, rear wheel, the front of the car that is characterized in described car body comprises procapsid, be positioned at the chassis forming with robot body and head of procapsid, described procapsid comprises the front main car shell that is installed on described robot body and can forms wind coat after robot body, be articulated with the hood of fighting clothes before the formed robot body in described front main car shell the place ahead and be positioned at the car door of the formed robot sabre of front main car shell both sides, and described robot body both sides are provided with the movable robot being built in procapsid, described hood is provided with the notch that can stretch out for described robot head, the rear vehicle body of described car body is movably connected on front of the car and may be deformed to the legs and feet of robot.
For making the utility model when emulation is high, simple in structure again, above-mentioned two car doors can outwards install on the rear end of above-mentioned hood rotationally by being arranged at the connecting rod of its front end and being rotationally connected of above-mentioned hood, and above-mentioned two car doors upwards produce the sabre that forms robot body both sides in the upset downwards of above-mentioned hood.
For making the robot can better rotational deformation in when distortion, and be not subject to the restriction of car door and hood, the both sides of above-mentioned robot body are provided with the connecting rod that can pull out, above-mentioned robot is pulled out and is inwardly connected on robot body to indentation by the adapting device of its arm and described connecting rod, and above-mentioned two front vehicle wheels are installed on the arm outside of robot rotationally by rotating shaft.
For making the robot after distortion there are two the robot legs and feet that can independently stand and walk, further to strengthen the emulation of robot, the rear vehicle body of above-mentioned car body comprises that two later half vehicle bodies can pulling out backward and be rotationally connected with front of the car rear portion fasten the rear body main body forming, and described two later half vehicle bodies pull out backward and separately after can become two robot legs and feet that can independently stand on ground, the front end of above-mentioned two later half vehicle bodies is provided with and can coordinates with the rear end of above-mentioned two car doors the buckle structure that buckles locking.
Two pin of Wei Shi robot can stand on ground more reposefully, and the bottom of above-mentioned later half car housing is provided with can produce two back-up blocks that form the beneath leg of foot of robot downwards.
The utility model is made toy car front of the car chassis by robot body and head and front main car shell is deformed into after robot body to wind coat and the car door of front main car shell both sides is formed to robot sabre owing to adopting, Bing robot body both sides are provided with the movable structure that is built in the robot in procapsid, make in process that the utility model is at play, both can change between toy car and robot, increased the function of playing, improved the interest of playing, and the robot simulation degree after distortion is high, effectively solved existing toy car or the mode of playing is single, seem true not with the image of robot, the problems such as interest is not strong.And because the utility model also adopts, the rear vehicle body of car body is set as by two that can pull out backward and the be rotationally connected with front of the car rear portion later half vehicle bodies that can become two robot legs and feet that can independently stand on ground and fastens the structure forming, make the utility model when fighter toy, have two legs and feet of independently standing and walking, emulation degree is higher.The utility model simplicity of design, ingenious, simple and quick have again an interest, greatly met the needs that numerous players play, and can be widely used in toy field.
Below in conjunction with accompanying drawing, the utility model is further described.
Accompanying drawing explanation
Fig. 1 is the structural representation of the utility model embodiment mono-.
Fig. 2 is the structural representation of looking up of Fig. 1.
Fig. 3 is Fig. 1 assembly structure schematic diagram.
Fig. 4 is that Fig. 1 is deformed into the structural representation after robot.
Fig. 5 is the structural representation of another toy car of the utility model.
Fig. 6 is the structural representation of looking up of Fig. 5.
Fig. 7 is the assembly structure schematic diagram of Fig. 5.
Fig. 8 is that Fig. 5 is deformed into the structural representation after robot.
The specific embodiment
As Figure 1-Figure 8, the toy car that can manually become robot described in the utility model, comprise car body, be installed on this car body before, rear wheel 3, 4, for making the utlity model has the multiple function of playing, interesting strong, the front of the car 1 of described car body comprises procapsid, be positioned at the chassis forming with robot body 5 and head 6 of procapsid, described procapsid comprises and is installed on described robot body 5 and can forms the robot body 5 front main car shell 11 of wind coat below, be articulated with the hood 12 of fighting clothes before the formed robot body in described front main car shell 11 the place aheads and be positioned at the car door 13 of the formed robot sabre of front main car shell 11 both sides, and described robot body 5 both sides are provided with the movable robot 7 being built in procapsid, described hood 12 is provided with the notch 122 that can stretch out for described robot head 6, the rear vehicle body 2 of described car body is movably connected on front of the car 1 and may be deformed to the legs and feet of robot.Make in process that the utility model is at play, both can change between toy car and robot, increased the function of playing, improved the interest of playing, and the robot simulation degree after distortion is high, effectively solve existing toy car or the mode of playing is single, or seemed the problem such as true not with the image of robot, interest is not strong.For making the utility model profile more attractive in appearance, after above-mentioned robot head 6, be fixed with can with the cover plate 121 of above-mentioned notch 122 adapting devices, during the upset downwards of above-mentioned hood 12, form robot body 5 fighting clothes above, and robot head 6 is revealed from notch 122.For making the utility model when emulation is high, simple in structure again, above-mentioned two car doors 13 can outwards install on the rear end of above-mentioned hood 12 with being rotationally connected of above-mentioned hood 12 rotationally by being arranged at the connecting rod 14 of its front end, and above-mentioned two car doors 13 upwards produce the sabre that forms robot body 5 both sides in the upset downwards of above-mentioned hood 12.For making the robot can better rotational deformation in when distortion, and be not subject to the restriction of car door and hood, the both sides of above-mentioned robot body 5 are provided with the connecting rod 8 that can pull out, above-mentioned robot 7 is pulled out and is inwardly connected on robot body 5 to indentation by the adapting device of its arm and described connecting rod 8, and above-mentioned two front vehicle wheels 3 are installed on the arm outside of robot 7 rotationally by rotating shaft.For making the robot after distortion there are two the robot legs and feet that can independently stand and walk, further to strengthen the emulation of robot, the rear vehicle body 2 of above-mentioned car body comprises the rear body main body being formed by two that can pull out backward and be rotationally connected with front of the car 1 rear portion later half vehicle bodies fastenings, and described two later half vehicle bodies pull out backward and separately after can become two robot legs and feet that can independently stand on ground, the front end of above-mentioned two later half vehicle bodies is provided with and can coordinates with the rear end of above-mentioned two car doors 13 buckle structure 20 that buckles locking.Wherein robot legs and feet comprise shank and foot, above-mentioned each later half vehicle body comprises that the later half car housing 21, the front end that may be deformed to foot of described robot are connected in above-mentioned robot body 5 rotationally and rear end is movably hinged the connector 22 on described later half car housing 21, this connector 22 is that described robot leg forms, and above-mentioned rear wheel 4 is installed on the exterior bottom of described later half car housing 21 and when later half car housing 21 is deformed into foot of robot, forms pin pulley.For making the utility model more compact structure, later half car housing 21 is provided with accommodating cavity 23, in this accommodating cavity 23, be provided with connecting axle 24, on above-mentioned connector 22, be provided with accordingly chute 25, logical its connecting axle 24 of above-mentioned later half car housing 21 can slide and be rotationally connected with up and down on connector 22 in front and back with the adapting device of described chute 25.Above above-mentioned connector 22, be provided with and can build the top board 26 that is placed in accommodating cavity 23 tops, and on this top board 26, be also provided with the interface arrangment that can coordinate with accommodating cavity 23 upper end housings holding locking.As shown in Figure 1-Figure 3, above-mentioned top board 26 also can be used as war device, and the inner side of this top board 26 is provided with the contiguous block that can hold for robot.As shown in Figure 5-Figure 8, above-mentioned top board 26 is installed on connecting axle 22.The Liang Ge foot of Wei Shi robot can slip by two trailing wheels, can when not sliding, can stand on more reposefully ground again, and the bottom of above-mentioned later half car housing 21 is provided with can produce two back-up blocks 28 that form the beneath leg of foot of robot downwards.The pin hand of Wei Shi robot is longer, truer, and above-mentioned robot 7 and robot leg are flexibly connected and form by least two pole bodies.The utility model simplicity of design, ingenious, simple and quick have again an interest, greatly met the needs that numerous players play, and can be widely used in toy field.
Although the utility model is to describe with reference to specific embodiment, this description not meaning that is construed as limiting the utility model.With reference to description of the present utility model, other of the disclosed embodiments change, and all can expect for those skilled in the art, and this variation should belong in affiliated claim limited range.
Claims (10)
1. the toy car that can manually become robot, comprise car body, be installed on this car body before, rear wheel (3, 4), the front of the car (1) that it is characterized in that described car body comprises procapsid, be positioned at the chassis forming with robot body (5) and head (6) of procapsid, described procapsid comprises that being installed on described robot body (5) above also can form robot body (5) the front main car shell (11) of wind coat below, be articulated with the hood (12) of fighting clothes before the formed robot body in described front main car shell (11) the place ahead and be positioned at the car door (13) of the formed robot sabre of front main car shell (11) both sides, and described robot body (5) both sides are provided with the movable robot (7) being built in procapsid, described hood (12) is provided with the notch (122) that can stretch out for described robot head (6), the rear vehicle body (2) of described car body is movably connected on the legs and feet that robot was gone up and be may be deformed to front of the car (1).
2. the toy car that can manually become robot according to claim 1, it is characterized in that being fixed with after above-mentioned robot head (6) can with the cover plate (121) of above-mentioned notch (122) adapting device, above-mentioned hood (12) forms robot body (5) fighting clothes above downwards while overturning, and robot head (6) is revealed from notch (122).
3. the toy car that can manually become robot according to claim 1 and 2, it is characterized in that above-mentioned two car doors (13) can outwards install on the rear end of above-mentioned hood (12) with being rotationally connected of above-mentioned hood (12) rotationally by being arranged at the connecting rod (14) of its front end, above-mentioned two car doors (13) upwards produce the sabre that forms robot body (5) both sides in above-mentioned hood (12) upset downwards.
4. the toy car that can manually become robot according to claim 1, the both sides that it is characterized in that above-mentioned robot body (5) are provided with the connecting rod (8) that can pull out, above-mentioned robot (7) is pulled out and is inwardly connected in to indentation robot body (5) above by the adapting device of its arm and described connecting rod (8), and above-mentioned two front vehicle wheels (3) are installed on the arm outside of robot (7) rotationally by rotating shaft.
5. the toy car that can manually become robot according to claim 1, the rear vehicle body (2) that it is characterized in that above-mentioned car body comprises that two later half vehicle bodies can pulling out backward and be rotationally connected with front of the car (1) rear portion fasten the rear body main body forming, and described two later half vehicle bodies pull out backward and separately after can become two robot legs and feet that can independently stand on ground, the front end of above-mentioned two later half vehicle bodies is provided with and can coordinates with the rear end of above-mentioned two car doors (13) buckle structure (20) that buckles locking.
6. the toy car that can manually become robot according to claim 5, it is characterized in that above-mentioned robot legs and feet comprise shank and foot, above-mentioned each later half vehicle body comprises the later half car housing (21) that may be deformed to foot of described robot, front end is connected in above-mentioned robot body (5) rotationally and rear end is movably hinged the connector (22) on described later half car housing (21), this connector (22) is that described robot leg forms, above-mentioned rear wheel (4) is installed on the exterior bottom of described later half car housing (21), and when being deformed into foot of robot, later half car housing (21) forms pin pulley.
7. the toy car that can manually become robot according to claim 6, it is characterized in that above-mentioned later half car housing (21) is provided with accommodating cavity (23), in this accommodating cavity (23), be provided with connecting axle (24), on above-mentioned connector (22), be provided with accordingly chute (25), logical its connecting axle (24) of above-mentioned later half car housing (21) can slide and be rotationally connected with up and down on connector (22) in front and back with the adapting device of described chute (25).
8. the toy car that can manually become robot according to claim 7, it is characterized in that being provided with and can building the top board (26) that is placed in accommodating cavity (23) top of above-mentioned connector (22) above, and on this top board (26), be also provided with the interface arrangment that can coordinate with accommodating cavity (23) upper end housing holding locking.
9. the toy car that can manually become robot according to claim 6, is characterized in that the bottom of above-mentioned later half car housing (21) is provided with two back-up blocks (28) that can produce the beneath leg of foot of formation robot downwards.
10. the toy car that can manually become robot according to claim 6, is characterized in that above-mentioned robot (7) and robot leg are flexibly connected and form by least two pole bodies.
Priority Applications (1)
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CN201420446406.8U CN203989852U (en) | 2014-08-08 | 2014-08-08 | A kind of toy car that can manually become robot |
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CN201420446406.8U CN203989852U (en) | 2014-08-08 | 2014-08-08 | A kind of toy car that can manually become robot |
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CN201420446406.8U Expired - Lifetime CN203989852U (en) | 2014-08-08 | 2014-08-08 | A kind of toy car that can manually become robot |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107349606A (en) * | 2016-05-09 | 2017-11-17 | 广东佳奇科技教育股份有限公司 | Bullet-type deformation mechanical figure toy car |
-
2014
- 2014-08-08 CN CN201420446406.8U patent/CN203989852U/en not_active Expired - Lifetime
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN107349606A (en) * | 2016-05-09 | 2017-11-17 | 广东佳奇科技教育股份有限公司 | Bullet-type deformation mechanical figure toy car |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CX01 | Expiry of patent term | ||
CX01 | Expiry of patent term |
Granted publication date: 20141210 |