CN216092215U - Dinosaur top toy gun - Google Patents
Dinosaur top toy gun Download PDFInfo
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- CN216092215U CN216092215U CN202121556431.8U CN202121556431U CN216092215U CN 216092215 U CN216092215 U CN 216092215U CN 202121556431 U CN202121556431 U CN 202121556431U CN 216092215 U CN216092215 U CN 216092215U
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- dinosaur
- plug connector
- rotary power
- toy gun
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Abstract
The utility model provides a dinosaur top toy gun which comprises a gun shell and a trigger, wherein an accommodating cavity is arranged in the gun shell, a rotary power assembly is arranged in the accommodating cavity, an assembling cavity is arranged below the accommodating cavity and connected with the rotary power assembly, a pressure rod is arranged above the accommodating cavity and linked with the trigger, an elastic clamping jaw and a plug connector are arranged in the assembling cavity, a pressure shaft penetrates through the accommodating cavity from top to bottom, the rotary power assembly is plugged with the plug connector, the plug connector is linked with the elastic clamping jaw, through holes are formed in the accommodating cavity and the end part of the gun shell, a pull rope is arranged on the rotary power assembly, and the pull end of the pull rope penetrates through the through holes and is positioned outside the gun shell. The dinosaur-shaped gun shell is used as the subject of the gun shell, the rope winder is used for efficiently transmitting power, the linkage shaft is matched with the assembly cavity to finish efficient energy storage, the functional areas are clearly divided, the operation performance is stable, the product quality is good, and the playability is strong.
Description
Technical Field
The utility model relates to the technical field of toy gyros, in particular to a dinosaur toy spinning gun.
Background
The gyro gun uses gun type as carrier, can give energy storage to gyro torsion and can launch gyro. The existing gyro gun is usually of an ejection structure, namely a horizontal ejection push sheet is facilitated, after the gyro stores energy, a switch is pressed to be turned on, and then the ejection push sheet pushes the gyro out of a gun body, so that the gyro is rotated to the ground. In addition, the spinning top is rotated on the ground in a pressing, opening, clamping and holding mode. The former adopts a structure mode of ejecting the push piece, actually has certain influence on the running track of the gyroscope and can generate certain resistance; the latter adopts a vertical pressing opening mode, although no redundant resistance exists, the energy storage by adopting a single power assembly structure not only consumes long time, but also has unstable structure and weak durability.
Disclosure of Invention
In view of the above-mentioned shortcomings of the prior art, the present invention provides a dinosaur spinning top toy gun, which has a stable rotating power assembly to provide high-efficiency energy storage, and improves the quality and playability of the product.
In order to solve the technical problems, the utility model adopts the following technical scheme:
the utility model relates to a dinosaur top toy gun which is provided with a gun shell and a trigger, wherein an accommodating cavity is arranged in the gun shell, a rotary power assembly is arranged in the accommodating cavity, an assembling cavity is arranged below the accommodating cavity and is connected with the rotary power assembly, a pressure rod is arranged above the accommodating cavity and is linked with the trigger, an elastic clamping jaw and a plug connector are arranged in the assembling cavity, a pressure shaft penetrates through the accommodating cavity from top to bottom, the rotary power assembly is plugged with the plug connector, the plug connector is linked with the elastic clamping jaw, through holes are formed in the accommodating cavity and the end part of the gun shell, a pull rope is arranged on the rotary power assembly, and the pull end of the pull rope penetrates through the through holes and is positioned outside the gun shell.
The rotary power component comprises an elastic rope winder, a transition gear and a linkage shaft which are sequentially meshed and driven through gears, wherein the elastic rope winder is wound on a pull rope, and the pressing shaft penetrates through the linkage shaft to be fixedly connected with the plug connector in an inserting mode.
The universal driving shaft comprises a gear shaft, a bearing and a connecting piece, wherein the bearing penetrates through the gear shaft and is connected with the accommodating cavity, the lower end part of the gear shaft is in threaded connection with the connecting piece, and the connecting piece penetrates through the assembling cavity and is connected with the plug connector.
The upper part of the connector clip is provided with a regular polygonal protruding piece, the middle of the protruding piece is provided with a slot which is inserted with the pressing shaft, and the lower part of the connecting piece is provided with a groove which is matched with the outline of the protruding piece, so that the connecting piece and the protruding piece can be matched, inserted and linked.
The plug connector further comprises a pressing sheet and two symmetrical inserting columns, the two symmetrical inserting columns are located below the pressing sheet, and the pressing sheet is located above the elastic clamping jaw.
The accommodating cavity is internally provided with an inserting shaft which penetrates through the elastic rope winder, the elastic rope winder comprises a gear wheel and a limiting cover, a groove position is formed in the gear wheel and used for placing a spring, one end of the groove position is provided with a limiting column and a spring end part which are fixedly connected, a through hole is formed in the bottom of the groove position, the limiting cover is placed above the groove position, and the inserting shaft sequentially penetrates through the groove position, the spring and the limiting cover.
And a limiting piece is arranged above the toothed rotating wheel, the limiting piece is fixedly spliced with the toothed rotating wheel, and a limiting cover is fixedly spliced with the groove position above the limiting piece.
The middle part of the pressure lever is connected with the gun shell by a rotating shaft.
A spring is arranged between the trigger and the gun shell, and the upper end of the trigger is an inclined surface which is matched and linked with the lower end part of the pressure rod.
The utility model has the advantages that: the rope winder is adopted to generate torque, power is efficiently transmitted through the ferry gear, the linkage shaft is matched with the assembly cavity to finish efficient energy storage, the pressing shaft coaxial with the linkage shaft can play a role in releasing the gyroscope, the structure is compact, the functional areas are clearly divided, the product operation performance is stable, the quality is good, and the playability is strong.
Description of the drawings:
FIG. 1 is a schematic structural diagram of the present invention;
FIG. 2 is a schematic structural view of a rotary power assembly according to the present invention;
FIG. 3 is a schematic structural view of an assembly chamber according to the present invention;
FIG. 4 is a schematic view showing a connection structure of an assembly chamber according to the present invention;
fig. 5 is a schematic view showing the internal structure of the elastic cord winder of the present invention.
The specific implementation mode is as follows:
the utility model will be further described with reference to the accompanying drawings.
As shown in fig. 1, the utility model relates to a dinosaur spinning top toy gun, which comprises a gun shell 1 and a trigger 11, wherein an accommodating cavity 2 is arranged in the gun shell 1, a rotary power component is arranged in the accommodating cavity 2, an assembling cavity 3 is arranged below the accommodating cavity 2 and is connected with the rotary power component, a pressure lever 4 is arranged above the accommodating cavity 2 and is linked with the trigger 11, an elastic clamping jaw 31 and a plug connector 32 are arranged in the assembling cavity 3, a pressure shaft 20 penetrates through the accommodating cavity 2 and the rotary power component from top to bottom to be plugged with the plug connector 32, the plug connector 32 is linked with the elastic clamping jaw 31, through holes are respectively arranged at the accommodating cavity 2 and the end part of the gun shell 1, a pull rope is arranged on the rotary power component, and the pull rope end of the pull rope penetrates through the through holes and is positioned outside the gun shell 1. By above structure can know, produce the top of moment toward assembling in the assembly chamber 3 through the rotary power subassembly and carry out the energy storage, the high-efficient rotation in assembly chamber 3 drives the top spiral and changes, through pressing trigger 11, through the action of depression bar 4 linkage drive pressure axle 20, and then opens the elastic clamping jaw 31 release top in the assembly chamber 3, then the top in the high-efficient rotation can freely fall to the ground and rotate.
Specifically, as shown in fig. 2 and 5, the rotary power assembly includes an elastic rope winder 5, a transition gear 6 and a linkage shaft 7 which are sequentially engaged and driven by gears. The accommodating cavity 2 is internally provided with an inserting shaft which penetrates through the elastic rope winder 5 and provides a central fulcrum shaft for the rotation of the elastic rope winder 5, the elastic rope winder 5 is used for winding a pull rope, the elastic rope winder 5 comprises a gear wheel 51 and a limiting cover 52, a slot 511 is arranged in the gear wheel 51 and used for placing a spring, one end of the slot 511 is provided with a limiting column 512 fixedly connected with the end part of the spring, the bottom of the slot 511 is provided with a through hole, the limiting cover 52 is covered above the slot 511 and used for limiting the position of the spring, and the inserting shaft sequentially penetrates through the slot 511, the spring (not shown in the figure) and the limiting cover 52. During the action, stay cord pulling ratchet wheel 51 is rotatory, and then the inside spring can produce deformation when the stay cord is drawn outward, and the pull cord outer tension is then reset to make the stay cord retrieve to the spring of releasing, and in the pulling process many times, ratchet wheel 51 passes through transition gear 6 with moment and transmits 7 departments of universal driving shaft, and elasticity ropewinder 5 is the independent subassembly that plays the effect promptly.
In order to avoid the deviation in the stay cord winding process, make it can concentrate the winding on the fluted wheel 51 surface, then fluted wheel 51 top disposes spacing piece 50, and spacing piece 50 is pegged graft fixedly with fluted wheel 51, and spacing lid 52 is pegged graft fixedly with trench 511 in spacing piece 50 top, makes fluted wheel 51 surface form the annular groove like this, can hold the stay cord winding.
As shown in fig. 4, the linkage shaft 7 includes a gear shaft 71, a bearing 72 and a connecting member 73, the bearing 72 passes through the gear shaft 71 and is connected with the accommodating cavity 2, the lower end of the gear shaft 71 is screwed with the connecting member 73, the three are sequentially connected and fixed, a limiting cover is arranged on the surface of the connecting member 73 and is inserted into the accommodating cavity 2, so that the positions of the connecting member 73 and the bearing 72 are fixed, and the connecting member 73 passes through the assembling cavity 3 and is connected with the inserting member 32, so that the force can be transmitted to the assembling cavity 3 for the energy storage of the gyroscope.
In order to drive the plug connector 32 in the assembly cavity 3 to rotate for energy storage, as shown in fig. 3, a regular polygonal protruding part 321 is arranged above the plug connector 32, the pressing shaft 20 passes through the linkage shaft 7 to be fixedly inserted with the plug connector 32, that is, a slot is arranged in the middle of the protruding part 321 to be inserted with the pressing shaft 20, a groove matched with the outer contour of the protruding part 321 is arranged at the lower part of the connecting part 73, the connecting part 73 can be matched with the protruding part 321 for insertion linkage, the surface of the protruding part 321 is preferably regular hexagonal, so that when the linkage shaft 7 rotates, the plug connector 32 can be driven to rotate, the assembly cavity 3 and the inserted gyroscope can be driven to rotate for energy storage, the pressing shaft 20 directly penetrates through the linkage shaft 7 to be connected with the plug connector 32, and the pressing shaft 20 provides a longitudinal pressure, so as to release the gyroscope.
The plug connector 32 further comprises a pressing sheet 322 and two symmetrical plug posts 323, the two symmetrical plug posts 323 are located below the pressing sheet 322, the plug posts 323 are used for connecting with the spinning top, the pressing sheet 322 is located above the elastic clamping jaw 31, when the pressing shaft 20 is pressed down under the action of the pressing rod 4, the pressing sheet 322 is pressed down at the same time, and the elastic clamping jaw 31 is pushed down, so that the elastic clamping jaw 31 is opened to release the spinning top.
The elastic clamping jaw 31 is normally closed (clasping jaw) by a spring, and when the elastic clamping jaw is pressed down, the spring is compressed to expand and release the spinning top, so that the elastic clamping jaw 31 has many applications in the prior art, and the action principle is not described herein again.
A spring is arranged between the trigger 11 and the gun shell 1, the upper end of the trigger 11 is an inclined plane and is in fit linkage with the lower end part of the pressure lever 4, the middle part of the pressure lever 4 is connected with the gun shell 1 through a rotating shaft, when the trigger 11 moves towards the interior of the gun shell 1 under stress, the inclined plane of the trigger 11 can push the pressure lever 4 to rotate, the end part of the pressure lever 4 presses the pressure shaft 20 downwards, and then the elastic clamping jaw 31 is triggered to release the gyro.
It is to be understood that the technical scope of the present invention is not limited to the content of the specification, and that modifications or changes may be made by those skilled in the art based on the above description, and all such modifications and changes are intended to fall within the scope of the appended claims.
Claims (9)
1. A dinosaur top toy gun, has rifle casing (1) and trigger (11), its characterized in that: dispose holding chamber (2) in rifle casing (1), be provided with the rotary power subassembly in holding chamber (2), holding chamber (2) below is equipped with assembly chamber (3) and is connected with the rotary power subassembly, and holding chamber (2) top is provided with depression bar (4) and trigger (11) linkage, have elastic clamping jaw (31) and plug connector (32) in assembly chamber (3), still have pressure shaft (20) from last down run through holding chamber (2) and rotary power subassembly and plug connector (32) and peg graft, and plug connector (32) and elastic clamping jaw (31) linkage, the through-hole has all been seted up to holding chamber (2) and rifle casing (1) tip, and the rotary power subassembly disposes the stay cord, and the stay cord end of stay cord passes the through-hole and is located outside rifle casing (1).
2. The dinosaur spinning top toy gun of claim 1, wherein: the rotary power component comprises an elastic rope winder (5), a transition gear (6) and a linkage shaft (7) which are sequentially in gear engagement transmission, wherein the elastic rope winder (5) winds a pull rope, and a pressing shaft (20) penetrates through the linkage shaft (7) to be fixedly connected with a plug connector (32) in an inserting mode.
3. The dinosaur spinning top toy gun of claim 2, wherein: the universal driving shaft (7) comprises a gear shaft (71), a bearing (72) and a connecting piece (73), the bearing (72) penetrates through the gear shaft (71) and is connected with the accommodating cavity (2), the lower end part of the gear shaft (71) is in threaded connection with the connecting piece (73), and the connecting piece (73) penetrates through the assembling cavity (3) and is connected with the plug connector (32).
4. The dinosaur spinning top toy gun of claim 3, wherein: a regular polygonal protruding piece (321) is arranged above the plug connector (32), a slot is formed in the middle of the protruding piece (321) and is connected with the pressing shaft (20) in an inserting mode, a groove matched with the outer contour of the protruding piece (321) is formed in the lower portion of the connecting piece (73), and the connecting piece (73) and the protruding piece (321) can be matched, connected and linked in an inserting mode.
5. A dinosaur spinning top toy gun according to claim 3 or 4, characterized in that: the plug connector (32) further comprises a pressing sheet (322) and two symmetrical inserting columns (323), the two symmetrical inserting columns (323) are located below the pressing sheet (322), and the pressing sheet (322) is located above the elastic clamping jaw (31).
6. The dinosaur spinning top toy gun of claim 2, wherein: the rope winding device is characterized in that an inserting shaft penetrates through the elastic rope winding device (5) in the accommodating cavity (2), the elastic rope winding device (5) comprises a gear rotating wheel (51) and a limiting cover (52), a groove position (511) is formed in the gear rotating wheel (51) and used for placing a spring, one end of the groove position (511) is provided with a limiting column (512) and a spring end part fixedly connected with the spring, a through hole is formed in the bottom of the groove position (511), the limiting cover (52) is placed above the groove position (511) in a covering mode, and the inserting shaft penetrates through the groove position (511) and the spring and the limiting cover (52) in sequence.
7. The dinosaur spinning top toy gun of claim 6, wherein: spacing piece (50) is configured above fluted wheel (51), and spacing piece (50) are pegged graft fixedly with fluted wheel (51), and spacing lid (52) are pegged graft fixedly with trench (511) above spacing piece (50).
8. The dinosaur spinning top toy gun of any one of claims 1-4, wherein: the middle part of the pressure lever (4) is connected with the gun shell (1) by a rotating shaft.
9. The dinosaur spinning top toy gun of claim 8, wherein: a spring is arranged between the trigger (11) and the gun shell (1), and the upper end of the trigger (11) is an inclined surface which is matched and linked with the lower end part of the pressure rod (4).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202121556431.8U CN216092215U (en) | 2021-07-08 | 2021-07-08 | Dinosaur top toy gun |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202121556431.8U CN216092215U (en) | 2021-07-08 | 2021-07-08 | Dinosaur top toy gun |
Publications (1)
Publication Number | Publication Date |
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CN216092215U true CN216092215U (en) | 2022-03-22 |
Family
ID=80722570
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN202121556431.8U Active CN216092215U (en) | 2021-07-08 | 2021-07-08 | Dinosaur top toy gun |
Country Status (1)
Country | Link |
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CN (1) | CN216092215U (en) |
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2021
- 2021-07-08 CN CN202121556431.8U patent/CN216092215U/en active Active
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