CN213252987U - Jumping type deformable toy car - Google Patents
Jumping type deformable toy car Download PDFInfo
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- CN213252987U CN213252987U CN202021607960.1U CN202021607960U CN213252987U CN 213252987 U CN213252987 U CN 213252987U CN 202021607960 U CN202021607960 U CN 202021607960U CN 213252987 U CN213252987 U CN 213252987U
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Abstract
The utility model discloses a jumping type transformable toy car, which comprises a car body; the utility model can automatically compensate the inner clamping structure of the gun body and fix the gun body by pulling the push rod backwards to loosen the hand after the safety organ at one side of the gun body corresponds to the groove positions at the two sides of the gun body, and the gun body can not be shaken out when the gun body is shaken left and right, meanwhile, the bicycle can be arranged in the second bicycle body according to the method, then the push handle of the gun body is pulled back and forth, the wheels in the gun body are driven to rotate through the gear transmission in the gun body, when the wheels rotate, the inertia gear box in the inner gun body can store energy, when the pushing handle is loosened, the gun body in the gun body can also continue to rotate, then horizontally placing the outlet at the front end of the gun body on a proper desktop or the ground to buckle the trigger, the vehicle body can automatically run out, and the bouncing vehicle body can automatically bounce, roll and deform after colliding with an obstacle by a third impacting machine after coming out of the gun body, or after the car body runs out, the car body is delayed and deformed after walking for a certain distance, so that the interestingness of the children in the playing process is effectively improved.
Description
Technical Field
The utility model relates to a toy car technical field specifically is a jump formula deformation toy car.
Background
The toy car is a toy for children to play which is reduced according to the basic structure and the modeling appearance of the car in a certain proportion, the structure of the toy car is of an inertia type, a mechanical type, an electric remote control type and the like, compared with a simulated car model, the toy car has flexible size design, slightly rough process and simple material, is generally made of common plastics and iron sheets, a toy designer does not need authorization and technical support of an original car factory, a shaft connected with a rear tire of a return car is fixedly connected with a gear in a return gear, when a hand applies work (drags) to the car backwards, a rear wheel rotates backwards, the shaft transmits force to the return gear to apply work, the gear drives the return gear structure (a spring structure or a rubber band structure) to convert kinetic energy applied by the hand into potential energy (such as rubber band rotation elongation or spring compression and the like), the mechanical principle of the inertia car is mainly concentrated in a device called a flywheel, when the rear wheel is pulled backwards (or pushed forwards), the flywheel is driven to rotate reversely and quickly, the flywheel is pulled backwards like a spring, a lot of rotational kinetic energy is stored, one hand is loosened, the energy of the flywheel is released, the rear wheel of the toy is driven to rotate forwards (backwards), the toy can be flushed forwards (backwards) for a long distance, the original energy is just like a rubber band, the rear wheel is pulled backwards, the energy is stored, the energy is released when the hand is loosened, the toy remote control car is a model car capable of being remotely controlled through a radio remote controller, and the toy remote control car can be divided into the following parts according to the difference of the shapes of car bodies: ordinary private car, cross-country vehicle, container car, tip truck etc. like the cross-country vehicle in the real life, not only can adapt to the road surface condition of various different degrees in the field, but also can give people a kind of driving superiority of rough and luxurious, however, as ordinary child, ordinary game player, can be through operating ordinary remote control toy car, thereby reach to a certain extent "driving pleasure", of course, this kind of sensation is far away unable to be compared with driving real car, but the playing process of children when promoting the toy car to travel among the prior art still has certain not enough, for example:
toy car among the prior art is difficult to effectual cooperation body of a gun transmitter among the prior art when promoting to play and realizes that the effectual deformation of taste is gone to make children be difficult to acquire new experience of playing so can not satisfy prior art needs at the recreation in-process.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a jump formula warp toy car to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a jump formula warp toy car, includes the automobile body, automobile body lower surface one end fixedly connected with turns over the board first, the first striking office of automobile body inner wall middle part fixedly connected with and second striking office, second striking office with the adjacent end fixedly connected with pressure spring of first striking office, automobile body one end middle part fixedly connected with third striking office, the automobile body is inside to be close to one end fixedly connected with inertia tooth case, the equal fixedly connected with insurance office in automobile body one side middle part, the first deformation mechanism of automobile body upper surface fixedly connected with.
Preferably, the vehicle body further comprises an upper movable gear and a lower movable gear, a worm is fixedly connected inside the vehicle body on one side of the second impact mechanism, the other end of the lower surface of the vehicle body is fixedly connected with a second turning plate, the middle part of the vehicle body close to one end is fixedly connected with an upper movable gear and a lower movable gear, the top of the periphery of the upper and lower movable teeth is clamped and fixed with a small pressure spring, the periphery of the vehicle body is sleeved with a gun body, and one side of the lower surface of the inner wall of the gun body is fixedly connected with a loading machine base through screws, one side of the loading machine base is fixedly connected with a one-way buckle through screws, and the middle part of the inner side of the gun body close to the bottom end is rotationally connected with a gun driving tooth through a pin shaft, the gun driving tooth is meshed and connected with a jumping tooth, and the inner side of the gun body close to one end is rotatably connected with a gear through a pin shaft, the gear is meshed with a rack, the jumping teeth are meshed with the gear, and the lower surface of the rack is fixedly connected with a pushing handle through a screw.
Preferably, a second deformation mechanism is fixedly connected to the upper surface of the vehicle body.
Preferably, the safety mechanism is used as a positioning and clamping mechanism of the vehicle body.
Preferably, the wheels on two sides of the vehicle body are meshed and connected with the inertia gearbox through driving teeth.
Preferably, the small pressure spring is used as an occlusion limiting device of the upper and lower movable teeth and the worm.
Compared with the prior art, the beneficial effects of the utility model are that:
the utility model discloses a body together with first deformation mechanism or second deformation mechanism pack into body of a gun in the body of a gun for the device that storage automobile body and sent, then correspond the slot position on body of a gun both sides with insurance office of automobile body one side and then pull the push rod backward and loosen the hand, the automobile body can mend body of a gun inside screens structure fixed well automatically, and the left and right rocking can not shake out the automobile body, simultaneously can also pack into second part of automobile body according to above-mentioned method, pull the pushing handle of body of a gun forward and backward, drive the wheel rotation in the body of a gun through the gear drive of body of a gun inside, inertia tooth case in the interior automobile body will store energy when the wheel rotates, the automobile body in the body of a gun still can continue to realize the wheel rotation when loosening the pushing handle, then keep flat the play mouth water in front end of a gun on suitable desktop or ground trip trigger, the automobile body can automatically run out and the bounce and need the third striking office of a gun after the body of a gun bumps out can bounce and roll and warp, the time delay automobile body can roll through the automatic bounce of little pressure spring after coming out from the body of a gun and make the automobile body drive worm promotion with the help of the rotation of wheel forward and move about the movable tooth and rotate and make the first bump switch of angle under the certain degree relax with second bump switch and realize the time delay deformation effect after one section distance of walking thereby effectual promotion children play the interest of in-process if not colliding the barrier.
Drawings
FIG. 1 is a schematic view of a half-section structure of a vehicle body of the present invention;
FIG. 2 is a schematic view of a half-section structure of a first deforming mechanism of the present invention;
FIG. 3 is a schematic side view of the half-section structure of the present invention;
FIG. 4 is a schematic view of the structure of the present invention;
FIG. 5 is a schematic side view of the present invention;
fig. 6 is a schematic view of the overall structure of the first deforming mechanism of the present invention;
fig. 7 is a schematic view of the unfolding structure of the first deforming mechanism of the present invention;
fig. 8 is a schematic view of the overall structure of the second deforming mechanism of the present invention;
fig. 9 is a schematic view of an expansion structure of the second deforming mechanism of the present invention;
fig. 10 is a schematic view of the half-section structure of the gun body of the present invention.
In the figure: 1-a vehicle body; 11-a first flap; 12-a first impingement organ; 13-a second impingement organ; 14-a pressure spring; 15-a third impingement organ; 16-a second flap; 17-upper and lower movable teeth; 18-small compression spring; 19-a worm; 2-a first deformation mechanism; 3-inertia tooth box; 4-insurance organs; 5-a second deforming mechanism.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
The first embodiment is as follows:
referring to fig. 1-10, the present invention provides a technical solution: a jumping type deformation toy car comprises a car body 1, wherein one end of the lower surface of the car body 1 is fixedly connected with a first turning plate 11 through screws, the middle part of the inner wall of the car body 1 is fixedly connected with a first impact mechanism 12 and a second impact mechanism 13 through screws, the adjacent end of the second impact mechanism 13 and the first impact mechanism 12 is fixedly connected with a pressure spring 14 through screws, the middle part of one end of the car body 1 is fixedly connected with a third impact mechanism 15 through screws, the inner part of the car body 1, which is close to one end, is fixedly connected with an inertia gearbox 3 through screws, a flywheel is arranged in the inertia gearbox 3, the model is F301A, wheels on two sides of the car body 1 are meshed with the inertia gearbox 3 through driving teeth, the middle part of one side of the car body 1 is fixedly connected with a safety mechanism 4 through screws, and the safety mechanism 4 is used as a positioning and clamping mechanism, the upper surface of the vehicle body 1 is fixedly connected with a first deformation mechanism 2 through screws, after the whole vehicle is loaded into the gun body, the gun body can be automatically retracted inwards to prevent the collision mechanism of the vehicle head from retracting inwards, so that the turning plate cannot be opened backwards to cause the whole vehicle to be stuck in the gun body, after the whole vehicle is loaded into the gun body and stuck in place, the pushing handle pushes forwards and backwards to transfer the speed to the moving teeth on the tooth box, the moving teeth are transmitted to the moving teeth to accelerate the energy storage of the inertia tooth box, finally the inertia tooth box is transmitted to the wheels to lead the vehicle to run forwards, after the vehicle is shot out from the gun body, when an obstacle is collided with the gun body, the spring is compressed, two hooks on the gun body can be simultaneously separated from the turning plate and the vehicle body, the turning plate is backwards turned through the spring on the rotating shaft to lead the whole vehicle to jump and turn over, the vehicle body is separated from the hook position and bounces through elasticity to do deformation action, the periphery of the vehicle body 1 is sleeved with the gun body, and one side, one side of the loading machine base is fixedly connected with an one-way buckle through a screw, the middle part of the inner side of the gun body is connected with gun driving teeth in a rotating mode through a pin shaft near the bottom end, the gun driving teeth are meshed with jumping teeth, the inner side of the gun body is connected with a gear in a rotating mode through a pin shaft near one end, the gear is meshed with a rack and the jumping teeth are meshed with the gear, and the lower surface of the rack is fixedly connected with a push handle through a screw.
Example two:
referring to fig. 1-10, the present invention provides a technical solution: a jumping type deformation toy car comprises a car body 1, wherein one end of the lower surface of the car body 1 is fixedly connected with a first turning plate 11 through screws, the middle part of the inner wall of the car body 1 is fixedly connected with a first impact mechanism 12 and a second impact mechanism 13, the adjacent end of the second impact mechanism 13 and the first impact mechanism 12 is fixedly connected with a pressure spring 14 through screws, the middle part of one end of the car body 1 is fixedly connected with a third impact mechanism 15 through screws, one end part inside the car body 1, which is close to one end part, is fixedly connected with an inertia gearbox 3 through screws, a flywheel is arranged in the inertia gearbox 3, the model is F301A, wheels on two sides of the car body 1 are meshed with the inertia gearbox 3 through driving teeth, the middle part on one side of the car body 1 is fixedly connected with a safety mechanism 4, the safety mechanism 4 is used as a positioning clamping mechanism of the car body 1, and the upper surface of the car body, after the whole vehicle is arranged in the gun body, the mechanism can automatically retract inwards to block the impact mechanism of the vehicle head from retracting, so that the turning plate cannot be opened backwards to cause the turning plate to be stuck in the plate body, after the whole vehicle is arranged in the gun body and stuck in position, the pushing handle pushes forwards and backwards to transfer the speed to the moving teeth on the gearbox, the moving teeth transmit to the moving teeth to accelerate the inertia gearbox to store energy, finally the inertia gearbox transmits to wheels to lead the vehicle to run forwards, after the vehicle is shot out from the gun body and is impacted by an obstacle, the spring is compressed, two hooks on the mechanism can be simultaneously separated from the turning plate and the vehicle body, the turning plate is turned backwards through the spring on the rotating shaft to lead the whole vehicle to jump and turn over, after the vehicle body is separated from the hook position, the worm 19 is bounced through elasticity, the worm is fixedly connected in the vehicle body 1 on one side of the second impact mechanism 13, the other end of the vehicle body 1 is fixedly connected with a second turning plate 16, an upper movable tooth 17 and a lower movable tooth 17 are fixedly connected to the middle part of the vehicle body 1 close to one end, a small pressure spring 18 is fixedly clamped at the top of the periphery of the upper movable tooth 17 and the lower movable tooth 17, the small pressure spring 18 is used as an occlusion limiting device of the upper movable tooth 17 and the lower movable tooth 17 and a worm 19, after a turning plate is buckled, the upper movable tooth and the lower movable tooth can rise and are occluded with the worm, then a doll body is buckled, a rifle body is arranged to accelerate, after the doll body is ejected, the whole vehicle can move forwards through an inertia gearbox output speed to a wheel, when the wheel rotates forwards, the worm can be driven to rotate, so that the upper movable tooth and the lower movable tooth can be driven to move, when a certain angle is reached, a stop block on the upper movable tooth and the lower movable tooth can push a double-hook mechanism backwards (at the moment, the small pressure spring can also rotate along with the wheel body, the turning plate can also be unhooked, the turning plate can be unhooked, the, get up through elasticity and do slight deformation action, after turning over the board and turning over backward, the movable tooth will push down through little pressure spring from top to bottom, and movable tooth breaks away from the interlock with the worm about making, breaks away from the interlock back, and little pressure spring can make movable tooth rotate about can return home position, the body of a gun has been cup jointed to automobile 1 periphery, and body of a gun inner wall lower surface one side through screw fixedly connected with machine base of going up the thorax, and machine base one side of going up the thorax is through the one-way buckle of screw fixedly connected with, and the inboard middle part of the body of a gun is close to bottom department and is connected with the rifle driving tooth through the round pin rotation, and the meshing of rifle driving tooth is connected with the jump tooth, and the inboard one end department of being close to of the body of a gun is connected with the.
Example three:
referring to fig. 1-10, the present invention provides a technical solution: a jumping type deformation toy car comprises a car body 1, wherein one end of the lower surface of the car body 1 is fixedly connected with a first turning plate 11, the middle part of the inner wall of the car body 1 is fixedly connected with a first impact mechanism 12 and a second impact mechanism 13 through screws, the adjacent end of the second impact mechanism 13 and the first impact mechanism 12 is fixedly connected with a pressure spring 14 through screws, the middle part of one end of the car body 1 is fixedly connected with a third impact mechanism 15 through screws, one end part inside the car body 1, which is close to one end part, is fixedly connected with an inertia gearbox 3 through screws, a flywheel is arranged in the inertia gearbox 3, the model is F301A, wheels on two sides of the car body 1 are meshed with the inertia gearbox 3 through driving teeth, the middle part on one side of the car body 1 is fixedly connected with a safety mechanism 4, the safety mechanism 4 is used as a positioning clamping mechanism of the car body 1, and the, the mechanism can automatically retract inwards to block the collision mechanism of the vehicle head from retracting backwards, so that the turning plate cannot be opened backwards to cause the turning plate to be stuck in the plate body, the inertia gear box is accelerated to store energy through the transmission of the moving teeth onto the moving teeth after being loaded into the vehicle body and stuck in place, finally the inertia gear box is transmitted onto wheels to enable the vehicle to run forwards, after the vehicle is shot out from the vehicle body and is collided with the mechanism by an obstacle, the spring is compressed, two hooks on the mechanism can be simultaneously separated from the turning plate and the vehicle body, the turning plate is backwards turned through the spring on a rotating shaft to enable the whole vehicle to jump and turn over, the vehicle body is separated from the hook position and then bounces up through elasticity to perform slight deformation, the upper surface of the vehicle body 1 is fixedly connected with a second deformation mechanism 5, the vehicle body is sleeved on the periphery of the vehicle body 1, and the lower surface side of the inner wall of the vehicle body is fixedly connected with an upper chamber mechanism base through screws, one side of the loading machine base is fixedly connected with an one-way buckle through a screw, the middle part of the inner side of the gun body is connected with gun driving teeth in a rotating mode through a pin shaft near the bottom end, the gun driving teeth are meshed with jumping teeth, the inner side of the gun body is connected with a gear in a rotating mode through a pin shaft near one end, the gear is meshed with a rack and the jumping teeth are meshed with the gear, and the lower surface of the rack is fixedly connected with a push handle through a screw.
The working principle is as follows: when in use, the vehicle body 1 and the first deformation mechanism 2 or the second deformation mechanism 5 are arranged in the gun body to be a device for storing and sending the vehicle body 2, then the safety mechanism 4 on one side of the vehicle body 1 corresponds to the groove positions on the two sides of the gun body, then the push rod is pulled backwards to loosen the hand, the vehicle body 1 can automatically compensate the clamping structure in the gun body to be fixed, the vehicle body 1 can not swing out of the vehicle body 1 when swinging left and right, meanwhile, the vehicle body 1 can be arranged in the second vehicle body 1 according to the method, then the push handle of the gun body is pulled forwards and backwards, the wheels in the gun body are driven to rotate through the gear transmission in the gun body, when the wheels rotate, the inertia tooth boxes 3 in the inner vehicle body 1 can store energy, when the push handle is loosened, the vehicle body 1 in the gun body can still continuously realize the rotation of the wheels, then the outlet at the front end of the gun body is horizontally arranged on a proper table top or the ground to buckle the trigger, the vehicle body 1 can automatically run out, after the vehicle body bounces out from the gun body, after the delayed vehicle body leaves the gun body for a certain distance, the delayed vehicle body automatically bounces and rolls through the small pressure spring 18 and enables the vehicle body to move forwards by virtue of the rotation of the wheels to drive the worm 19 to promote the upper movable gear 17 and the lower movable gear 17 to rotate so as to realize the delayed deformation effect;
the working principle of the collision bouncing vehicle is as follows: when the trolley is pulled out from the gun body, the inertia gearbox 3 drives the trolley body 1 to move forwards, and the third impact mechanism 15 at the front end collides with an object, the third impact mechanism 15 moves backwards, so that the first impact mechanism 12 is separated from the first deformation mechanism 2, the second impact mechanism 13 is separated from the first turning plate 11, the first turning plate 11 enables the trolley to turn over under the action of the spring force, and the first impact mechanism 12, the second impact mechanism 13 and the third impact mechanism 15 are restored to the original positions under the action of the pressure spring 14 after the trolley is turned over;
the working principle of the time-delay bouncing vehicle is as follows: when the trolley is pulled out from the gun body, the inertia gear box 3 drives the trolley body 1 to move forwards, when the trolley moves forwards for a certain distance, the front wheels rotate forwards in the driving process, the worm 19 on the shaft rotates and simultaneously drives the upper movable gear 17 and the lower movable gear 17 to rotate, when the upper movable gear 17 and the lower movable gear 17 rotate to a certain angle, the first impact machine 12 and the second impact machine 13 move backwards, meanwhile, the first impact machine 12 is separated from the first deformation mechanism 2 and the second impact machine 13 are separated from the first turning plate 11, the first turning plate 11 enables the trolley to turn over under the action of the spring force, and after the trolley is turned over, under the action of the small pressure spring 18, the first impact machine 12, the second impact machine 13 and the upper movable gear 17 are restored to the original positions.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Claims (6)
1. A jumping transformable toy vehicle, comprising:
a vehicle body (1);
a first turning plate (11) is fixedly connected to one end of the lower surface of the vehicle body (1), a first impact mechanism (12) and a second impact mechanism (13) are fixedly connected to the middle of the inner wall of the vehicle body (1), a pressure spring (14) is fixedly connected to the second impact mechanism (13) adjacent to the first impact mechanism (12), and a third impact mechanism (15) is fixedly connected to the middle of one end of the vehicle body (1);
the automobile body (1) is inside to be close to one end department fixedly connected with inertia tooth case (3), the equal fixedly connected with safe organ (4) in middle part of automobile body (1) one side, fixed surface is connected with first deformation mechanism (2) on automobile body (1).
2. The jumping transformable toy vehicle of claim 1, wherein: the vehicle body (1) further includes:
upper and lower movable teeth (17);
a worm (19) is fixedly connected inside the vehicle body (1) on one side of the second impact mechanism (13), a second turning plate (16) is fixedly connected to the other end of the lower surface of the vehicle body (1), an upper movable gear and a lower movable gear (17) are fixedly connected to the middle part of the vehicle body (1) close to one end, and a small pressure spring (18) is fixedly clamped to the top of the periphery of the upper movable gear and the lower movable gear (17);
the rifle body has been cup jointed to automobile body (1) periphery, and rifle body inner wall lower surface one side is through screw fixedly connected with organ of honour base, and organ of honour base one side is through the one-way buckle of screw fixedly connected with, and the inboard middle part of rifle body is close to bottom department and is connected with the rifle through the round pin axle rotation and drive the tooth, and the meshing of rifle drive tooth is connected with the jump tooth, and the rifle body inboard is close to one end department and is connected with the gear through the round pin axle rotation, gear engagement is connected with the rack and jumps tooth and gear engagement, the rack lower surface pushes away the.
3. The jumping transformable toy vehicle of claim 1, wherein: and a second deformation mechanism (5) is fixedly connected to the upper surface of the vehicle body (1).
4. The jumping transformable toy vehicle of claim 1, wherein: the safety mechanism (4) is used as a positioning and clamping mechanism of the vehicle body (1).
5. The jumping transformable toy vehicle of claim 1, wherein: wheels on two sides of the vehicle body (1) are meshed and connected with the inertia gearbox (3) through driving teeth.
6. A jumping transformable toy vehicle as claimed in claim 2, wherein: the small pressure spring (18) is used as an occlusion limiting device of the upper and lower movable teeth (17) and the worm (19).
Priority Applications (1)
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CN202021607960.1U CN213252987U (en) | 2020-08-05 | 2020-08-05 | Jumping type deformable toy car |
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CN202021607960.1U CN213252987U (en) | 2020-08-05 | 2020-08-05 | Jumping type deformable toy car |
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CN213252987U true CN213252987U (en) | 2021-05-25 |
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CN202021607960.1U Active CN213252987U (en) | 2020-08-05 | 2020-08-05 | Jumping type deformable toy car |
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2020
- 2020-08-05 CN CN202021607960.1U patent/CN213252987U/en active Active
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