CN215538429U - Novel toy gun - Google Patents

Novel toy gun Download PDF

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Publication number
CN215538429U
CN215538429U CN202122062019.7U CN202122062019U CN215538429U CN 215538429 U CN215538429 U CN 215538429U CN 202122062019 U CN202122062019 U CN 202122062019U CN 215538429 U CN215538429 U CN 215538429U
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China
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gun body
assembly
motor
gun
switch
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CN202122062019.7U
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Chinese (zh)
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黄建军
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Individual
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Individual
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Abstract

The utility model provides a novel toy gun, which is characterized in that a first gun body, a second gun body and a control assembly are arranged, a spring is fixed on the end wall of the first gun body, the first gun body is partially movably connected into the second gun body, and a positioning column in the control assembly can extend out or retract into the first gun body under the driving of a first motor of the positioning column; when the first motor is controlled to drive the positioning column to retract into the first gun body, the first gun body moves towards the direction away from the cavity under the action of the spring, so that the first gun body and the second gun body are controlled to move in a relatively telescopic mode, and the purposes of interestingness and carrying convenience are improved.

Description

Novel toy gun
Technical Field
The utility model relates to the technical field of toys, in particular to a novel toy gun.
Background
The toy gun is a toy which is very popular to adults and children, and the novel toy guns on the market have different forms and various varieties. The body of a gun of the existing toy gun is mostly of an integrated structure, cannot be moved in a telescopic way, is not strong in interestingness and is inconvenient to carry.
SUMMERY OF THE UTILITY MODEL
The utility model provides a novel toy gun, which solves the defects of poor interestingness and inconvenience in carrying of the existing toy gun and achieves the purpose of increasing the function of electrically controlling the extension and retraction of a machine body to improve the interestingness and the portability.
In order to achieve the above objects, the present invention provides a novel toy gun, comprising:
the first gun body is fixed with at least two springs at one end of the outer side wall thereof;
the second gun body is internally provided with a cavity, a part of the first gun body is movably connected in the cavity, baffles are arranged on the inner wall of the cavity corresponding to the springs, each baffle is connected with one spring in a butting way, and a first clamping position is further arranged on the inner wall of the cavity in the moving direction of the first gun body and is adjacent to the baffle; and
the control assembly is connected in the first gun body and comprises a power supply, a first switch, a first motor, a first transmission set and a positioning column, wherein the power supply, the first switch and the first motor are electrically connected to form a closed loop, the first switch is exposed out of the first gun body, the first motor is in driving connection with the positioning column through the first transmission set, the positioning column is elastically connected in the first gun body, and the positioning column is controlled to extend out of or retract into the first gun body and is connected with the first clamping position in a buckling manner.
As a preferred scheme, the second gun body is further provided with a rotating assembly, the rotating assembly comprises a rotating page, a first connecting piece and a driving group, and the rotating page is arranged on the second gun body; the first connecting piece comprises a first rod which penetrates through the second gun body and is fixed with the rotating page, a second rod which is rotatably connected into the second gun body, and a third rod which is matched and connected with the driving group; the driving set comprises a second switch, a third switch, a second motor and a linkage rod, wherein the second switch, the third switch and the second motor are electrically connected to the power supply, the second motor is connected with the linkage rod in a driving mode, and the linkage rod is connected with the third rod in a matching mode and driven by the second motor to drive the third rod to reciprocate.
Preferably, the second gun body is further provided with a flip cover and a cylinder, the flip cover is externally arranged on the second gun body and is rotatably connected with the second gun body, the flip cover extends towards the cavity to form an abutting plate, and the abutting plate is connected with part of the first gun body in an abutting mode; the cylinder is fixed in the cavity relative to one of the open ends of the cavity.
Preferably, the first gun body comprises a pushing block, the pushing block is elastically connected to the inside of the first gun body, and the pushing block is partially exposed out of the first gun body and is connected with the abutting plate in a butting manner.
As a preferred scheme, the first gun body further comprises a light assembly, the light assembly comprises a first conducting strip and a second conducting strip which are respectively and electrically connected to the positive electrode and the negative electrode of the power supply, and a light emitting diode which is respectively and electrically connected with the first conducting strip and the second conducting strip, wherein the first conducting strip is fixed in the first gun body and is partially exposed out of the first gun body, the second conducting strip is fixed on the inner wall of the cavity, the second conducting strip is connected with the first conducting strip in a butting manner, and the light emitting diode is fixed on the first gun body.
Preferably, the toy gun further comprises a magazine and a firing assembly, the magazine is detachably connected to the inside of the first gun body, the firing assembly comprises a slide way group, a toggle group, a push group and a buckle group, the slide way group is arranged adjacent to a bullet outlet of the magazine and communicated with the inner space and the outer space of the first gun body, the toggle group is arranged adjacent to the bullet outlet and the slide way group respectively to push bullets in the magazine into the slide way group, the push group is arranged corresponding to the slide way group to push the bullets away from the slide way group, and the buckle group is electrically connected with the power supply, the toggle group and the push group respectively to control starting and stopping of the toggle group and the push group.
As preferred scheme, slide group including the interval connect in spout and the launching tube in the first body of a gun, wherein the spout connect in go out the bullet mouth with between the launching tube, the launching tube relatively fixed in be provided with on the first body of a gun the one end of spring, just the launching tube intercommunication the interior outer space of first body of a gun.
Preferably, the shifting group comprises a rotating wheel, a third motor and a second transmission group, wherein the rotating wheel is arranged corresponding to the sliding groove, a plurality of shifting claws are arranged on the outer wall of the rotating wheel at intervals, each shifting claw is controlled by the sliding groove to move, the third motor is in driving connection with the rotating wheel through the second transmission group, and the third motor is electrically connected with part of the buckling group and is controlled by the buckling group to start or stop.
Preferably, the pushing set includes a fourth motor, a third transmission set and two pushing wheels, wherein the fourth motor is respectively connected to the two pushing wheels through the third transmission set in a driving manner, the fourth motor is electrically connected to part of the locking sets and is controlled by the locking sets to start or stop, and the two driving wheels are oppositely disposed between the chute and the launching tube.
As a preferred scheme, the set of pulling includes trigger and fourth switch, wherein the trigger expose in on the first body of a gun and with first body of a gun removes the connection, the fourth switch with the trigger can contradict ground and connect, just the fourth switch respectively with the power, the third motor with the fourth motor electricity is connected.
Therefore, according to the technical means of the present invention, the following is briefly described in the work efficiency that can be obtained by the present invention: according to the novel toy gun provided by the utility model, the first gun body, the second gun body and the control assembly are arranged, the spring is fixed on the end wall of the first gun body, the first gun body is partially movably connected into the second gun body, and meanwhile, the positioning column in the control assembly can extend out or retract into the first gun body under the driving of the first motor of the positioning column; when the first motor is controlled to drive the positioning column to retract into the first gun body, the first gun body moves towards the direction away from the cavity under the action of the spring, so that the first gun body and the second gun body are controlled to move in a relatively telescopic mode, and the purposes of interestingness and carrying convenience are improved.
Drawings
Fig. 1 is a perspective view of a toy gun according to an embodiment of the present invention in a closed state.
Fig. 2 is a schematic view of the internal connection of the toy gun of fig. 1.
Fig. 3 is a perspective view of the toy gun of fig. 1 in an open position.
Fig. 4 is a schematic view of the internal connection of the toy gun of fig. 3.
Fig. 5 is a schematic perspective exploded view of the rotation assembly shown in fig. 4.
Fig. 6 is a schematic perspective exploded view of the first gun body in fig. 4.
Fig. 7 is a schematic view of the internal connection structure of the first gun body in fig. 4.
In the figure: 1-a toy gun; 10-a first gun body; 11-a spring; 12-a pushing block; 13-a light assembly; 131-a first conductive sheet; 132-a second conductive sheet; 133-a light emitting diode; 20-a second gun body; 200-a cavity; 201-a first open end; 202-a second open end; 21-a baffle plate; 22-a first detent; 23-second position; 24-a rotating assembly; 241-rotating the page; 242 — a first connector; 2421-a first lever; 2422-a second lever; 2423-third lever; 243-drive group; 2431-a second switch; 2432-third switch; 2433-a second electric machine; 2434-a trace; 244-a second connector; 25-a flip cover; 251-an abutment plate; 26-a cylinder; 30-a control assembly; 31-a power supply; 32-a first switch; 33-a first motor; 34-a first transmission set; 35-a positioning column; 40-a magazine; 50-a transmitting assembly; 51-a slide group; 511-chute; 512-a launch tube; 52-toggle group; 521-a rotating wheel; 5211-a poke claw; 522-a third electric machine; 523-second transmission set; 53-push group; 531-fourth motor; 532-third drive train; 533-push wheel; 54-a snap group; 541-trigger; 542-a fourth switch; 55-limit switch.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention. It is to be understood that the drawings are provided solely for the purposes of reference and illustration and are not intended as a definition of the limits of the utility model. The connections shown in the drawings are for clarity of description only and are not limiting as to the manner of connection.
It is to be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", and the like are used for describing the illustrated directions or positional relationships of the present invention based on the drawings, and are used for convenience in describing and simplifying the present invention, but do not indicate that the referred devices or elements must have a specific directions or positional relationships, and thus, the present invention should not be construed as being limited thereto. It will be understood that when an element is referred to as being "coupled" to another element, it can be directly coupled to the other element or intervening elements may also be present. It should be understood that the terms "first", "second", "third", "fourth", etc. are used for convenience in describing the technical solutions of the present invention, and do not indicate that the referred devices or elements must have a specific sequence, and thus, the present invention should not be construed as being limited. Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used in the description of the utility model herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the utility model.
Referring to fig. 1 to 7, the present embodiment provides a novel toy gun 1, which includes a first gun body 10, a second gun body 20, a control assembly 30, a magazine 40 and a firing assembly 50, wherein the first gun body 10 is movably connected to the second gun body 20, the control assembly 30 is connected to the first gun body 10 and is connected to the second gun body 20 in a snap-fit manner, and the magazine 40 and the firing assembly 50 are respectively connected to the first gun body 10.
In this embodiment, the first gun body 10 is provided with two springs 11, a pushing block 12 and a light assembly 13. Two springs 11 are fixed on one end of the outer side wall of the first gun body 10 at intervals, and each spring 11 protrudes toward the second housing 20. The pushing block 12 is elastically connected to the first gun body 10, and the pushing block 12 is disposed adjacent to the end of the first gun body 10 where the spring 11 is fixed, partially exposed out of the first gun body 10, and configured to be connected with a portion of the second gun body 20 in an interference manner, so that when the first gun body 10 is connected to the second gun body 20 in a reciprocating manner, the pushing block can abut against the portion of the second gun body 20 and push the portion of the second gun body 20 to rotate, or can be separated from the portion of the second gun body 20.
The light assembly 13 includes a first conductive sheet 131 and a second conductive sheet 132 electrically connected to a portion of the control assembly 30, respectively, and a light emitting diode 133 electrically connected to the first conductive sheet 131 and the second conductive sheet 132, respectively. That is, the first conductive sheet 131, the second conductive sheet 132, the light emitting diode 133 and the portion of the control assembly 30 are electrically connected to form a light emitting circuit. The first conductive sheet 131 is fixed in the first gun body 10 and partially exposed out of the first gun body 10, and the first conductive sheet 131 is disposed adjacent to the end of the first gun body 10 where the spring 11 is fixed. The second conductive plate 132 is fixed on the inner wall of the second gun body 20, and when the first gun body 10 reciprocates relative to the second gun body 20, the second conductive plate 132 and the first conductive plate 131 can be connected in an abutting manner. The light emitting diode 133 is fixed on the first gun body 10, so that when the first conductive sheet 131 and the second conductive sheet 132 are connected in an abutting manner, the light emitting circuit is conducted to enable the light emitting diode 133 to emit light.
In other embodiments of the present invention, the number of the springs 11 is not limited to two in the present embodiment, and may be three or more. The first gun body 10 is not limited to the embodiment in which the pusher block 12 and the light assembly 13 are provided, and the pusher block 12 and/or the light assembly 13 may not be provided on the first gun body 10.
A cavity 200 is disposed in the second frame 20, the cavity 200 includes a first open end 201 and a second open end 202 disposed opposite to each other, wherein a portion of the first frame 10 is movably connected in the cavity 200 through the first open end 201. The inner wall of the cavity 200 is provided with a baffle 21 at a position corresponding to the spring 11, each baffle 21 is disposed adjacent to the second opening end 202, and each baffle 21 is connected with one spring 11 in an interference manner. In this embodiment, the inner wall of the cavity 200 is further provided with a first detent 22 and a second detent 23 at intervals in the moving direction of the first gun body 10, wherein the first detent 22 is disposed adjacent to the baffle 21 for being snap-fit connected with a portion of the control assembly 30 to fix the first gun body 10 (connected with the control assembly 30) in the first position of the cavity 200 (as shown in fig. 2). A second detent 23 is provided adjacent the first open end 201 for snap-fit engagement with the portion of the control assembly 30 to secure the first frame 10 in the second position in the chamber 200 (as shown in fig. 4). In other embodiments of the present invention, the cavity 200 is not limited to be provided with the second detent 23, and the cavity 200 may not be provided with the second detent 23.
It is understood that the inner wall of the cavity 200 adjacent to the first open end 201 is fixed with the second conductive sheet 132, so that when the first gun body 10 moves from the first position to the second position, the second conductive sheet 132 moves to abut against the first conductive sheet 131; when the first gun body 10 moves from the second position to the first position, the second conductive sheet 132 is separated from the first conductive sheet 131, and the light emitting circuit is cut off, so that the light emitting diode 133 does not emit light.
The control assembly 30 includes a power source 31, a first switch 32, a first motor 33, a first transmission set 34 and a positioning column 35. Wherein the power source 31, the first switch 32 and the first motor 33 are electrically connected in a closed loop. The first switch 32 is exposed on the first gun body 10 and is used for being pressed by a user to connect or disconnect the closed loop, so as to achieve the purpose of controlling the start and stop of the first motor 33. The first motor 33 and the first transmission set 34 are fixed in the first gun body 10 through a mounting seat, and the first motor 33 is in driving connection with the positioning column 35 through the first transmission set 34. The positioning column 35 is elastically connected to the inside of the first gun body 10 (by a compression spring), and part of the positioning column 35 passes through the first gun body 10 and protrudes out of the first gun body 10. It can be understood that the positioning column 35 is provided with a step gear, and the step gear is engaged with the first transmission set 34, so that when the first transmission set 34 rotates along with the rotation of the first motor 33, the positioning column 35 can be driven to retract into the first gun body 10 by the step gear.
In this embodiment, the gear engaged with the top step gear in the first transmission set 34 is configured as a tooth-missing gear, and the tooth-missing gear is matched with a pressure spring on the positioning column 35, so that the positioning column 35 can be reset to a position where a portion thereof extends out of the first gun body 10 under the action of the pressure spring after the positioning column 35 is controlled to move a certain distance along the first gun body 10 until the tooth-missing gear is separated from the top step gear. In other embodiments of the present invention, the gear in the first transmission set 34 engaged with the overhead ladder teeth may not be a missing tooth gear.
It should be noted that the process of controlling the movement of the first frame 10 relative to the second frame 20 by the control assembly 30 is roughly: when the toy gun 1 is in a closed state, the first gun body 10 is located in the first position, at this time, the positioning column 35 partially protrudes out of the first gun body 10 and is buckled with the first blocking position 22, the spring 11 is connected with the baffle 21 in an abutting mode, and the spring 11 is compressed to store energy. At this time, if the first switch 32 is pressed to conduct the closed loop, the first motor 33 is started and drives the positioning column 35 to retract towards the inside of the first gun body 10 through the first transmission set 34 until the positioning column 35 moves into the first gun body 10, and at this time, the elastic potential energy of the spring 11 is converted into kinetic energy to drive the first gun body 10 to move towards a direction away from the cavity 200, that is, the first gun body 10 moves from the first position to the second position. In the process, the gear with missing teeth continuously rotates to be separated from the ladder teeth, at the moment, the positioning column 35 extends out of the first gun body 10 again under the action of the pressure spring until the positioning column 35 is buckled and connected with the second clamping position 23, so that the first gun body 10 is fixed at the second position, and the toy gun 1 is in an open state. If the toy gun 1 needs to be closed, the first switch 32 is pressed to drive the positioning column 35 to retract and separate from the second clamping position 23 through the first motor 33 and the first transmission set 34, at this time, the first gun body 10 and the second gun body 20 are moved towards each other, after the positioning column 35 extends out of the first gun body 10 again and is buckled and connected with the first clamping position 22, the operation of closing the toy gun 1 is completed, and at this time, the spring 11 is in abutting connection with the baffle plate 21 again and stores energy. Since the toy gun 1 occupies a smaller area when it is in the closed state, it is more convenient to carry and store.
It should be noted that in the present embodiment, the second gun body 20 is further provided with a rotating assembly 24, a flip cover 25 and a cylinder 26. The rotating assembly 24 includes a rotating sheet 241, a first link 242, a driving group 243, and a second link 244. Wherein the rotary blade 241 is externally disposed on the second gun body 20 for controlled reciprocal rotation relative to the second gun body 20. It can be understood that the outer wall of the second gun body 20 corresponding to the rotary blade 241 is provided with a plurality of through holes with different shapes, so as to combine with the light assembly 30 to present a more gorgeous light and shadow effect, thereby increasing the interest of the toy gun 1. The first connecting member 242 includes a first rod 2421 passing through the second frame 20 and fixed to the rotary blade 241, a second rod 2422 rotatably connected to the inside of the second frame 20, and a third rod 2423 cooperatively connected with the driving unit 243. The driving unit 243 includes a second switch 2431 and a third switch 2432 respectively connected to the first gun body 10, and a second motor 2433 and a linkage lever 2434 respectively connected to the cavity 200. The second switch 2431, the third switch 2432 and the second motor 2433 are electrically connected to the power source 31, and are used for a user to press the second switch 2431 or the third switch 2432 to drive the second motor 2433 to rotate forward or backward. The second motor 2433 and the linkage 2434 are fixed in the cavity 200 adjacent to the second open end 202 through a mounting seat, a gear is fixed on a rotating shaft of the second motor 2433, and a rack is arranged in the linkage 2434 and engaged with the gear to realize driving connection between the second motor 2433 and the linkage 2434. The end of the linkage bar 2434 exposed out of the mounting base is provided with a connecting frame, and the connecting frame is internally and cooperatively connected with a third bar 2423, so that when the second motor 2433 is controlled to rotate forward or backward, the linkage bar 2434 moves along with the third bar 2423 to reciprocate, and thereby the second bar 2422 is driven to rotate to control the opening or closing of the rotating blade 241 relative to the second gun body 20.
The flip cover 25 is disposed on the second gun body 20 adjacent to the first open end 201, the flip cover 25 is rotatably connected to the second gun body 20, the flip cover 25 extends toward the cavity 200 to form an abutting plate 251, the abutting plate 251 is connected to the pushing block 12 in an abutting manner, and the pushing block 12 abuts against the abutting plate 251 and pushes the flip cover 25 to rotate relative to the second gun body 20 when the first gun body 10 moves from the first position to the second position; during the process of moving the first gun body 10 from the second position to the first position, the pushing block 12 is separated from the abutting plate 251, and the flip cover 25 is reset. The cylinder 26 is secured within the cavity 200 opposite the second open end 202 for receiving a portion of the firing assembly 50.
In other embodiments of the present invention, the second gun body 20 is not limited to the embodiment in which the rotating member 24, the flip cover 25 and the cylinder 26 are provided, and the rotating member 24, and/or the flip cover 25, and/or the cylinder 26 may not be provided on the second gun body 20. The rotating assembly 24 is not limited to the embodiment provided with the second link 244, and the rotating assembly 24 may not be provided with the second link 244. The second frame 20 may not have the plurality of through holes.
The magazine 40 is detachably connected to the first body 10 and has a plurality of cartridges elastically connected therein.
In this embodiment, the firing assembly 50 includes a slide group 51, a toggle group 52, a push group 53, a toggle group 54, and a limit switch 55, which are respectively fixed in the first gun body 10. In other embodiments of the present invention, the transmitting assembly 50 is not limited to the embodiment provided with the limit switch 55, and the transmitting assembly 50 may not be provided with the limit switch 55.
Wherein the slide assembly 51 includes a slide slot 511 and a firing tube 512 that are connected at intervals within the first gun body 10. The chute 511 is connected between the ejection port of the magazine 40 and the launch tube 512, and the chute 511 comprises a first section arranged as an arc-shaped groove and a second section arranged as a linear groove, the second section being arranged opposite to the launch tube 512. The launching tube 512 is fixed at one end of the first gun body 10 opposite to the end provided with the spring 11, and the launching tube 512 is communicated with the inner space and the outer space of the first gun body 10, and when the first gun body 10 is at the first position, the launching tube 512 is partially accommodated and connected in the cylinder 26.
The striking group 52 includes a rotating wheel 521, a third motor 522 and a second transmission group 523, wherein the rotating wheel 521 is disposed corresponding to the sliding slot 511, and a plurality of striking pawls 5211 are disposed on an outer wall of the rotating wheel 521 at intervals, each striking pawl 5211 is controlled to move in the sliding slot 511, so that in the controlled rotation process of the rotating wheel 521, the striking pawls 5211 can strike the bullet at the bullet outlet of the magazine 40 to the launching tube 512. The third motor 522 and the second transmission group 523 are fixed in the first gun body 10 through a mounting seat, and the third motor 522 is in driving connection with the rotating wheel 521 through the second transmission group 523 and is used for controlling the rotating wheel 521 to rotate. The third motor 522 is electrically connected to and controlled by the partial trip unit 54 to start or stop.
The pushing set 53 includes a fourth motor 531, a third transmission set 532 and two pushing wheels 533, wherein the fourth motor 531 is respectively connected to the two pushing wheels 533 via the third transmission set 532 in a driving manner, and the fourth motor 531 is electrically connected to and controlled by the partial locking set 54 to start or stop for controlling the driving of the pushing wheels 533 at a high speed. The two pushing wheels 533 are oppositely disposed between the chute 511 and the launching tube 512, and since the two pushing wheels 533 are controlled to rotate at a high speed, an initial launching speed can be given to the bullet moving between the two pushing wheels 533 and the bullet can be pushed away from the launching tube 512, thereby achieving the purpose of launching the bullet.
The trigger set 54 includes a trigger 541 and a fourth switch 542, wherein the trigger 541 is exposed on the first frame 10 and movably connected to the first frame 10 by a compression spring. The fourth switch 542 is connected to the trigger 541 in an interference manner, and the fourth switch 542 is electrically connected to the power source 31, the third motor 522 and the fourth motor 531, respectively, for activating the third motor 522 and the fourth motor 531, respectively, when the trigger 541 is pulled.
The limit switch 55 is fixed in the first gun body 10, and its contact is exposed on the first gun body 10, and the limit switch 55 is electrically connected to the power supply 31 and the fourth switch 542 respectively, so that when the first gun body 10 moves from the first position to the second position, the contact abuts against the second gun body 20, and at this time, the limit switch 55 switches on the circuit to enable the fourth switch 542 to normally operate; when the first frame 10 moves from the second position to the first position, the contact separates from the second frame 20 to turn off the limit switch 55, so that the power supply 31 stops supplying power to the fourth switch 542. The power-off of the toy gun 1 in the closed state can be ensured by arranging the limit switch 55, and the using stability is higher.
In the description and claims of this application, the words "comprise/comprises" and the words "have/include" and variations thereof are used to specify the presence of stated features, numerical steps or components but does not preclude the presence or addition of one or more other features, values, steps, components or groups thereof.
Certain features of the utility model, which are, for clarity, described in the context of separate embodiments, may also be provided in combination in a single embodiment. Furthermore, various features of the utility model which are, for brevity, described in the context of a single embodiment, may also be provided separately or in any suitable subcombination.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not to be construed as limiting the utility model, and any modifications, equivalents and improvements made within the spirit and principle of the present invention are intended to be included within the scope of the present invention.

Claims (10)

1. A novel toy gun, comprising:
the first gun body is fixed with at least two springs at one end of the outer side wall thereof;
the second gun body is internally provided with a cavity, a part of the first gun body is movably connected in the cavity, baffles are arranged on the inner wall of the cavity corresponding to the springs, each baffle is connected with one spring in a butting way, and a first clamping position is further arranged on the inner wall of the cavity in the moving direction of the first gun body and is adjacent to the baffle; and
the control assembly is connected in the first gun body and comprises a power supply, a first switch, a first motor, a first transmission set and a positioning column, wherein the power supply, the first switch and the first motor are electrically connected to form a closed loop, the first switch is exposed out of the first gun body, the first motor is in driving connection with the positioning column through the first transmission set, the positioning column is elastically connected in the first gun body, and the positioning column is controlled to extend out of or retract into the first gun body and is connected with the first clamping position in a buckling manner.
2. The new toy gun as claimed in claim 1, wherein said second gun body is further provided with a rotation assembly, said rotation assembly including a rotation blade, a first link and a drive set, wherein said rotation blade is externally provided on said second gun body; the first connecting piece comprises a first rod which penetrates through the second gun body and is fixed with the rotating page, a second rod which is rotatably connected into the second gun body, and a third rod which is matched and connected with the driving group; the driving set comprises a second switch, a third switch, a second motor and a linkage rod, wherein the second switch, the third switch and the second motor are electrically connected to the power supply, the second motor is connected with the linkage rod in a driving mode, and the linkage rod is connected with the third rod in a matching mode and driven by the second motor to drive the third rod to reciprocate.
3. The toy gun as claimed in claim 2, wherein said second body further comprises a flip and a cylinder, said flip is disposed on said second body and rotatably connected to said second body, and said flip extends toward said cavity with an abutting plate, said abutting plate being abuttingly connected to a portion of said first body; the cylinder is fixed in the cavity relative to one of the open ends of the cavity.
4. The novel toy gun as claimed in claim 3, wherein said first gun body includes a push block, said push block being resiliently connected within said first gun body, and said push block being partially exposed from said first gun body and abuttingly connected to said abutment plate.
5. The toy gun of any one of claims 1-4, wherein the first gun body further comprises a light assembly including first and second conductive strips electrically connected to the positive and negative electrodes of the power source, respectively, and a light emitting diode electrically connected to the first and second conductive strips, respectively, wherein the first conductive strip is fixed to the first gun body and partially exposed from the first gun body, the second conductive strip is fixed to the inner wall of the cavity, the second conductive strip is connected to the first conductive strip in a manner of being abutted thereto, and the light emitting diode is fixed to the first gun body.
6. The novel toy gun of any one of claims 1-4, further comprising a magazine detachably connected within the first body, and a firing assembly including a chute assembly disposed adjacent to the ejection port of the magazine and communicating with the interior and exterior spaces of the first body, a toggle assembly disposed adjacent to the ejection port and the chute assembly, respectively, for pushing a cartridge in the magazine into the chute assembly, and a pusher assembly disposed corresponding to the chute assembly for pushing the cartridge out of the chute assembly, the toggle assembly electrically connected to the power source, the toggle assembly, and the push assembly, respectively, for controlling the activation and deactivation of the toggle assembly and the push assembly.
7. The novel toy gun as claimed in claim 6, wherein the slide assembly includes a slide slot and a launching tube connected at intervals in the first gun body, wherein the slide slot is connected between the bullet outlet and the launching tube, the launching tube is fixed relatively to the end of the first gun body where the spring is arranged, and the launching tube communicates with the inner space and the outer space of the first gun body.
8. The novel toy gun as claimed in claim 7, wherein the toggle assembly includes a rotary wheel, a third motor and a second transmission assembly, wherein the rotary wheel is disposed corresponding to the sliding slot, and a plurality of toggle claws are spaced on an outer wall of the rotary wheel, each of the toggle claws is controlled to move in the sliding slot, the third motor is in driving connection with the rotary wheel through the second transmission assembly, and the third motor is electrically connected with a part of the buckling assembly and is controlled to start or stop.
9. The novel toy gun as claimed in claim 8, wherein said pushing assembly includes a fourth motor, a third transmission assembly and two pushing wheels, wherein said fourth motor is connected to said two pushing wheels through said third transmission assembly, and said fourth motor is electrically connected to and controlled by a portion of said locking assembly to start or stop, and said two pushing wheels are oppositely disposed between said chute and said launching tube.
10. The novel toy gun of claim 9, wherein the trigger assembly includes a trigger and a fourth switch, wherein the trigger is exposed on and movably coupled to the first body, the fourth switch is in abutting engagement with the trigger, and the fourth switch is electrically coupled to the power source, the third motor, and the fourth motor, respectively.
CN202122062019.7U 2021-08-30 2021-08-30 Novel toy gun Active CN215538429U (en)

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CN202122062019.7U CN215538429U (en) 2021-08-30 2021-08-30 Novel toy gun

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