Camera-launcher transformer

By designing a transmitter that can transform into the shape of a camera, the problem of the limited audience of existing transmitters has been solved, and the fun and playability have been improved, making it suitable for children of different ages to play in a variety of ways.

WO2025241238A1PCT designated stage Publication Date: 2025-11-27SHANTOU CHENGHAI YINGBAO INTELLIGENT TOYS CO LTD
View PDF 5 Cites 0 Cited by

Patent Information

Application Number
PCT/CN2024/099517
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-05-22
Filing Date
2024-06-17
Publication Date
2025-11-27

AI Technical Summary

Technical Problem

Existing launchers are usually gun-shaped, which limits their target audience and makes them unsuitable for children with limited fine motor skills, thus restricting their playability.

Method used

Design a camera-transforming launcher that, in its undeformed state, resembles a camera and can be used as a camera model for children to play with. After simple transformation, it can be used as a launcher for shooting games. The loading and firing of bullets are achieved through components such as a loading knob, transmission components, and trigger buttons.

Benefits of technology

It enhances the fun and playability of toys, making them suitable for children of different ages and improving their imitation and hands-on abilities.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN2024099517_27112025_PF_FP_ABST
    Figure CN2024099517_27112025_PF_FP_ABST
Patent Text Reader

Abstract

The present application belongs to the technical field of transformable toys, and particularly relates to a camera-launcher transformer, which comprises a camera housing, a bullet loading assembly and a launching assembly being provided inside the camera housing in the length direction, a triggering assembly being provided at the end of the launching assembly away from the bullet loading assembly, and a chambering knob being provided on the outer side wall of the camera housing. The chambering knob is connected to the launching assembly by means of a transmission component, such that rotating the chambering knob enables the launching assembly to move in the direction away from the bullet loading assembly and thus to be snap-fit to the triggering assembly. The trigger assembly comprises a trigger button provided on the outer side wall of the camera housing, and pressing the trigger button releases the snap-fit of the launching assembly and the trigger assembly, such that the launching assembly moves forwards to drive bullets in the bullet loading assembly to be launched through a muzzle. In the untransformed state, the present application has the same shape as a camera and can serve as a camera model for children to enjoy family role-playing, and when being transformed simply and loaded with bullets, the present application can serve as a launcher for children to shooting games, thereby being more entertaining.
Need to check novelty before this filing date? Find Prior Art

Description

A camera transformation launcher

[0001] The present disclosure is based on and claims priority to Chinese Patent Application No. 202421131372.3, filed on May 22, 2024, the entire contents of which are incorporated herein by reference. TECHNICAL FIELD

[0002] The present application belongs to the technical field of transformation toys, in particular to a camera transformation launcher. BACKGROUND

[0003] Transformation toys are toys with strong playability. They can change the shape of the toy through transformation methods such as hiding, rotating, and assembling. This not only effectively enhances the interest of children in playing, but also improves their dexterity and spatial transformation perception during play. A transformation launcher is a type of transformation toy. It is popular among children because of its shooting effect and strong interest. However, existing launchers are usually gun-shaped, which only attracts the attention of boys and has a small audience. If it is transformed into other shapes of toys, it needs to go through many transformation processes, which is not suitable for children with weak dexterity, limiting its playability.

[0004] SUMMARY

[0005] To solve the problems in the background art, the present application provides a camera transformation launcher. In the untransformed state, it is the same shape as a camera and can be used as a camera model for children to play house. After simple transformation and installation of bullets, it can be used as a launcher for children to play shooting games, with strong interest.

[0006] The present application adopts the following technical solutions:

[0007] A camera transformation launcher includes a camera shell. Inside the camera shell, along the length direction, there is a bullet loading assembly and a launching assembly. The launching assembly has a trigger assembly at the end away from the bullet loading assembly. An up-chamber knob is provided on the outer side wall of the camera shell.

[0008] The up-chamber knob is connected to the launching assembly through a transmission assembly. Rotating the up-chamber knob moves the launching assembly away from the bullet loading assembly and connects with the trigger assembly.

[0009] The trigger assembly includes a trigger button provided on the outer side wall of the camera shell. Pressing the trigger button releases the connection between the launching assembly and the trigger assembly, allowing the launching assembly to move forward and drive the bullet in the bullet loading assembly to be launched from the launch port.

[0010] Further, the loading assembly comprises a loading cavity, an end cover horizontally arranged at an opening of the loading cavity, and a pushing member movably arranged in the loading cavity;

[0011] An end of the loading cavity away from the pushing member is a launching cavity, a bullet to be launched is pushed into the launching cavity, a first spring is connected between a side of the pushing member away from the bullet and an inner side wall of the camera shell, the first spring drives the pushing member to push the bullet in the direction of the launching cavity, and an arc surface matched with a surface of the bullet is formed on a side of the pushing member in contact with the bullet.

[0012] Further, a limiting groove is arranged at a position adjacent to the first spring in the camera shell, a movable plate is movably arranged in the limiting groove, a second spring is arranged between the movable plate and a bottom wall of the camera shell, a clamping hook extending towards the movable plate is arranged at a lower end of the pushing member, and a clamping block corresponding to the clamping hook is arranged at a lower middle portion of the movable plate; in a natural non-compressed state of the second spring, the clamping hook is clamped on the clamping block, and after the movable plate is compressed to move downwards, the clamping hook is disengaged from the clamping block.

[0013] Further, a first inclined surface is arranged at an end of the movable plate away from the launching assembly, and a second inclined surface matched with the first inclined surface is arranged at a lower end of the end cover.

[0014] When the end cover is fully or partially covered on the loading cavity, the second inclined surface is in contact with the first inclined surface, the movable plate is gradually pressed downwards, and the clamping hook and the clamping block are disengaged; when the loading cavity is opened, the end cover is moved outward to make the second inclined surface away from the first inclined surface, and the movable plate is moved upwards under the action of the second spring.

[0015] Further, the launching assembly comprises a pushing member, a launching barrel fixedly connected with the pushing member, and a horizontal moving plate fixed above the pushing member, a third spring is arranged between an end of the launching barrel away from the loading assembly and an inner side wall of the camera shell, and the transmission assembly drives the horizontal moving plate to move the launching barrel and the pushing member in the camera shell.

[0016] Further, an outer side surface of the camera shell comprises a first side surface in a thickness direction, the chamber charging knob is rotationally arranged on the first side surface, and the transmission assembly comprises a gear fixedly connected with the chamber charging knob and a rack fixed on the horizontal moving plate.

[0017] Further, two stop grooves are circumferentially arranged on the gear, a stop block is movably arranged in the stop groove, and a fourth spring is arranged between the stop block and the camera shell.

[0018] Further, the trigger assembly comprises a trigger button arranged on one side of the camera shell in a width direction, a moving plate fixedly connected with the trigger button and reciprocally moving with the trigger button, and a stopper movably contacted with the moving plate, the moving plate horizontally moves to drive the stopper to move up and down, and the stopper is clamped with or disengaged from the launching assembly.

[0019] Further, the middle part of the moving plate is provided with an inclined surface, and the stopper is provided with a movable column moving on the inclined surface.

[0020] Further, the outer side surface of the camera shell comprises a second side surface in the thickness direction, the second side surface is arranged opposite to the first side surface, and the second side surface is hinged with a cover plate covering the bullet loading assembly.

[0021] Compared with the prior art, the application has the following beneficial effects:

[0022] The camera deforming launcher of the application is consistent with the shape of a real camera in the undeformed state, and in this state, it can be used as a toy camera for children to play and take pictures, which can guide children to make various poses for taking pictures and improve the imitation ability of children; when a game is played to the end, the launcher can be deformed, at this time, the launching port is opened, the bullet is loaded in the bullet loading cavity, then the chambering knob is rotated, after being rotated to the position, the launching assembly is clamped with the trigger assembly, and the bullet in the bullet loading cavity is pushed into the launching cavity by the pushing piece, then the trigger button is pressed, the trigger assembly is disengaged from the clamping of the launching assembly, finally, the bullet is shot out of the launching port, and the above chambering and launching actions are repeated to realize the continuous launching of the bullet. BRIEF DESCRIPTION OF DRAWINGS

[0023] In order to more clearly illustrate the technical solutions in the embodiments of the application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description only constitute some embodiments of the application, and for those skilled in the art, other drawings can also be obtained from these drawings without creative labor.

[0024] Fig. 1 is a whole structure diagram of the camera deforming launcher of the application (one);

[0025] Fig. 2 is a whole structure diagram of the camera deforming launcher of the application (two);

[0026] Fig. 3 is a chambering state structure diagram of the camera deforming launcher of the application (one);

[0027] Fig. 4 is a chambering state structure diagram of the camera deforming launcher of the application (two);

[0028] Fig. 5 is a launching state structure diagram of the camera deforming launcher of the application;

[0029] Fig. 6 is a bullet loading assembly structure diagram of the camera deforming launcher of the application;

[0030] Fig. 7 is a trigger assembly structure diagram of the camera deforming launcher of the application;

[0031] Fig. 8 is a bullet launching state diagram of the camera deforming launcher of the application;

[0032] Wherein: 1-camera housing, 11-launching port, 12-first side, 13-second side, 14-cover plate; 2-loading assembly, 21-loading cavity, 22-end cover, 221-second inclined surface, 23-push piece, 231-hook, 24-launching cavity, 25-first spring, 26-moving plate, 261-clamping block, 262-first inclined surface, 27-second spring; 3-launching assembly, 31-thrusting piece, 32-launching cylinder, 33-horizontal moving plate, 34-third spring; 4-trigger assembly, 41-trigger button, 42-moving plate, 421-inclined surface, 43-stop piece, 431-moving column, 44-sixth spring, 45-fifth spring; 5-chambering knob, 6-transmission assembly, 61-gear, 62-rack, 63-stop groove, 64-stop block, 65-fourth spring, 7-bullet. DETAILED DESCRIPTION

[0033] The technical solutions in the embodiments of the present application will be described clearly and completely in combination with the drawings in the present application. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the present application.

[0034] In the description of the present application, it should be understood that the terms "length", "width", "upper", "lower", "front", "back", "vertical", "horizontal", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings based on the orientation or positional relationship shown in the drawings, and are only for the purpose of facilitating the description of the present application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation to the present application. In addition, the terms "first", "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features defined as "first", "second" can explicitly or implicitly include one or more of the features. In the description of the present application, the meaning of "a plurality of" is two or more, unless otherwise specifically limited.

[0035] In the description of the application, it is necessary to point out that, unless otherwise explicitly specified and limited, the terms "mounting", "connection", "linking" should be understood in a broad sense, for example, it can be fixed connection, or detachable connection, or integral connection; it can be mechanical connection, or electrical connection or can communicate with each other; it can be directly connected, or indirectly connected through intermediate medium, or the internal communication of two elements or the interaction relationship between two elements. For those skilled in the art, the specific meaning of the above terms in the application can be understood according to the specific circumstances.

[0036] In the present application, unless otherwise explicitly specified and limited, the first feature "on" or "under" the second feature can include that the first and second features are in direct contact, or the first and second features are not in direct contact but are in contact through another feature between them. Moreover, the first feature "on", "above" and "over" the second feature includes that the first feature is directly above and obliquely above the second feature, or only indicates that the horizontal height of the first feature is higher than that of the second feature. The first feature "under", "below" and "under" the second feature includes that the first feature is directly below and obliquely below the second feature, or only indicates that the horizontal height of the first feature is less than that of the second feature.

[0037] The present application will be discussed in detail below in combination with the accompanying drawings 1 to 8 and specific embodiments.

[0038] The camera-shaped launcher provided by the present application is a kind of transformational toy, which presents the appearance of a camera in the untransformed state, and the loading assembly 2, the launching assembly 3 and the trigger assembly 4 are hidden in the camera shell 1, so that the whole appearance is consistent with the camera, which can be used for children to play house games; in the transformed state, the sub-bullets are arranged inside, the charging is performed by rotating the charging knob 5, so that the launcher becomes a toy, and after the sub-bullets are arranged inside, the sub-bullets are launched by pressing the trigger assembly 4, which can be used for children to play gun games or shooting games, etc., thereby increasing the diversity of playing methods and enhancing the interest.

[0039] Please refer to FIG. 1 to FIG. 8, the embodiment of the application provides a camera-shaped transmitter, which is in the shape of a camera and comprises a camera shell 1, a bullet loading assembly 2 and a launching assembly 3 arranged along the length direction in the camera shell 1, the launching assembly 3 is used for launching the bullets in the bullet loading assembly 1, so the two assemblies need to be arranged adjacently, the end of the launching assembly 3 away from the bullet loading assembly 2 is provided with a trigger assembly 4, the trigger assembly 4 is used for releasing the launching assembly 3, so that the launching assembly 3 can eject the bullets in the bullet loading assembly 2; the outer side wall of the camera shell 1 is provided with a chambering knob 5, the chambering knob 5 is connected with the launching assembly 3 through a transmission assembly 6, and rotating the chambering knob 5 can make the launching assembly 3 move away from the bullet loading assembly 2 and be connected with the trigger assembly 4; the trigger assembly 4 comprises a trigger button 41 arranged on the outer side wall of the camera shell 1, the launching assembly 3 is connected with the trigger assembly 4 after chambering, and when launching the bullets, pressing the trigger button 41 can release the connection between the launching assembly 3 and the trigger assembly 4, so that the launching assembly 3 moves forward to drive the bullets in the bullet loading assembly 2 to be launched from a launching port 11, and the launching port 11 is arranged on the side wall of the camera shell 1 adjacent to the bullet loading assembly 2.

[0040] It should be noted that the bullet loading assembly 2, the launching assembly 3 and the trigger assembly 4 of the application are all arranged in the narrow camera shell 1, and the space in the camera shell 1 is fully utilized, so that the overall size of the transmitter is more exquisite, which is beneficial to reducing the cost.

[0041] Specifically, the bullet loading assembly 2 comprises a bullet loading cavity 21, an end cover 22 horizontally arranged at the opening of the bullet loading cavity 21 and a pushing member 23 movably arranged in the bullet loading cavity 21, when a plurality of bullets are arranged in the bullet loading cavity 21, the end cover 22 can prevent the mutual extrusion force between the bullets from causing the bullets to be ejected; the end of the bullet loading cavity 21 away from the pushing member 23 is a launching cavity 24, the bullets to be launched are pushed into the launching cavity 24 to wait for launching, the side of the pushing member 23 away from the bullets is connected with the inner side wall of the camera shell 1 through a first spring 25, the first spring 25 can drive the pushing member 23 to push the bullets to the launching cavity 24, and the side of the pushing member 23 in contact with the bullets is formed with an arc surface matched with the surface of the bullets. It can be understood that in order to realize the pushing effect of the pushing member 23 on any bullet in the bullet loading cavity 21, the arc surface of the pushing member 23 and the launching cavity 24 form a containing space for the bullet to be launched when the first spring 25 is not compressed, in other words, when there is only one bullet in the bullet loading cavity 21, the pushing member 23 can still push the bullet into the launching cavity 24.

[0042] It is worth mentioning that, as shown in FIG. 3, a plurality of bullets can be loaded in the loading chamber 21 at one time, and the bullet farthest from the pushing member 23 is located in the firing chamber 24. After the bullet in the firing chamber 24 is fired, the pushing member 23 can push the adjacent bullet into the firing chamber 24 under the action of the first spring 25, thereby realizing continuous firing until all the bullets in the loading chamber 21 are fired.

[0043] Preferably, as shown in FIGS. 3, 5 and 6, a limiting slot is formed in the camera housing 1 adjacent to the first spring 25, and a movable plate 26 is movably arranged in the limiting slot. The limiting slot is arranged such that the movable plate 26 can only move up and down and cannot move in other directions. A second spring 27 is arranged between the movable plate 26 and the bottom wall of the camera housing 1, and the movable plate 26 moves up and down under the action of the second spring 27. The lower end of the pushing member 23 is provided with a hook 231 extending towards the movable plate 26, and the middle and lower parts of the movable plate 26 are provided with a clamping block 261 corresponding to the hook 231. When the end cover 22 is opened and the pushing member 23 is pushed to the right position away from the firing chamber 24, the second spring 27 is in a natural uncompressed state, the hook 231 can be clamped on the clamping block 261, and children can load bullets into the loading chamber 21. After loading is completed, the movable plate 26 is pressed downward, the second spring 27 is compressed downward, the clamping block 261 moves downward and is disengaged from the hook 231, the pushing member 23 applies a force to the bullets under the action of the first spring 25, ensuring that the bullets are in close contact with each other, and the bullets can enter the firing chamber 24 in sequence. The application does not limit the way the movable plate 26 moves downward. The pushing member 23 can be manually pressed and released, or it can be automatically released in linkage with other components.

[0044] In the preferred embodiment, the upper end of the movable plate 26 is provided with a first inclined surface 262 away from one end of the firing assembly 3, and the lower end of the end cover 22 is provided with a second inclined surface 221 matching the first inclined surface 262. When the end cover 22 is fully or partially covered on the loading chamber 21, the second inclined surface 221 contacts the first inclined surface 262, gradually presses the movable plate 26 downward, and disengages the hook 231 and the clamping block 261. When the loading chamber 21 is opened, the end cover 22 is moved outward to make the second inclined surface 221 away from the first inclined surface 262, and the movable plate 26 moves upward under the action of the second spring 27.

[0045] For the convenience of explaining the inclination direction and position relationship of the first inclined surface 262 and the second inclined surface 221, the length direction of the camera shell 1 is defined as the X axis and the width direction is defined as the Y axis in this application, then the first inclined surface 262 is arranged to incline downward along the X axis direction to one side of the emission port 11, and the second inclined surface 221 is also arranged to incline downward along the X axis direction to one side of the emission port 11. Since the end cover 22 can only move horizontally and cannot move up and down, when the second inclined surface 221 moves in the direction of closing to the first inclined surface 262, it will gradually press the movable plate 26 downward, so that the clamping block 261 on the movable plate 26 moves downward, and then disengages from the clamping hook 231, thereby achieving the purpose of automatically releasing the pusher 23.

[0046] The specific loading process is as follows: the end cover 22 is pushed outward to make the second inclined surface 221 away from the first inclined surface 262, and the movable plate 26 moves upward under the action of the second spring 27 until the second spring 27 is in an uncompressed state; then the pusher 23 is pushed in the direction away from the emission chamber 24, and the pusher 23 moves backward against the force of the first spring 25 until the clamping hook 231 on the pusher 23 clamps on the clamping block 261 on the movable plate 26; then the bullets are loaded into the loading chamber 21 in sequence, and then the end cover 22 is closed, during the process of closing the end cover 22 completely or partially on the loading chamber 21, the second inclined surface 221 contacts the first inclined surface 262, gradually pressing the movable plate 26 downward, so that the clamping hook 231 and the clamping block 261 are disengaged, after disengagement, the pusher 23 pushes the bullet in the direction of the emission chamber 24 under the action of the first spring 25, that is, the loading process is completed.

[0047] The loading assembly of the application is designed ingeniously, and the linkage between the end cover 22, the movable plate 26 and the pusher 23 makes the loading process simpler, which can be easily completed without the help of others, and is more suitable for children to play.

[0048] Specifically, as shown in FIG. 3 and FIG. 5, the launching assembly 3 includes a pushing piece 31, a launching barrel 32 fixedly connected with the pushing piece 31, and a horizontal moving plate 33 fixed above the pushing piece 31, and a third spring 34 is arranged between the end of the launching barrel 32 away from the loading assembly 2 and the inner side wall of the camera shell 1; the transmission assembly 6 drives the horizontal moving plate 33 to drive the launching barrel 32 and the pushing piece 31 to move in the camera shell 1 to realize the charging and launching of the bullet. In order to avoid the horizontal movement of the horizontal moving plate 33 in the small space affecting the loading assembly 2, the horizontal moving plate 33 is arranged on the back of the loading assembly 2 and the launching assembly 3, so that the horizontal moving plate 33 can move freely on the back of the loading assembly 2 and the back of the launching assembly 2, and at the same time, the charging knob 5 is arranged on one side of the horizontal moving plate 33, so as to drive the horizontal moving plate 33 to move along the length direction.

[0049] In an optional embodiment, as shown in FIG. 1 and FIG. 4, the outer side of the camera shell 1 comprises a first side 12 in the thickness direction of the camera transmitter, the first side 12 is away from the open end of the loading assembly 2, the charging knob 5 is arranged on the first side 12, the transmission assembly 6 comprises a gear 61 fixedly connected with the charging knob 5 and a gear rack 62 fixed on the horizontal moving plate 33, and the gear 61 and the gear rack 62 are in meshing transmission. It can be understood that the reciprocating movement of the horizontal moving plate 33 of the present application is realized by the meshing transmission of the gear 61 and the gear rack 62. In the charging process, the gear 61 is rotated by manually rotating the charging knob 5, and then the rearward movement of the horizontal moving plate 33 is realized by the meshing transmission of the gear 61 and the gear rack 62; in the launching process, the horizontal moving plate 33 moves forward under the elastic force of the third spring 34; due to the limitation of the moving distance of the horizontal moving plate 33, the gear 61 can be designed in a non-full tooth shape, as long as the requirements of charging and launching can be met.

[0050] In a preferred embodiment, two stop grooves 63 are arranged on the gear 61 in the circumferential direction, a stop block 64 is movably arranged in the stop groove 63, and a fourth spring 65 is arranged between the stop block 64 and the camera shell 1. In the charging process, when the horizontal moving plate 33 moves rearward to the position, the stop block 64 is inserted into one of the stop grooves 63 under the action of the fourth spring 65; in the launching process, when the horizontal moving plate 33 moves forward to the position, the stop block 64 is inserted into the other stop groove 63 under the action of the fourth spring 65. The arrangement of the stop groove 63 limits the moving distance of the horizontal moving plate 33, and after moving to the position, the horizontal moving plate 33 cannot move forward or backward, which avoids the unlimited rotation of the charging knob during the playing process of children and the damage of the toy.

[0051] Specifically, as shown in FIG. 7, the trigger assembly 4 comprises a trigger button 41 arranged on one side of the camera shell 1 in the width direction, a moving plate 42 fixedly connected with the trigger button 41 and reciprocating with the trigger button 41, and a stop piece 43 movably contacted with the moving plate 42. The position of the trigger button 41 of the present application is consistent with the position of the shooting button of the real camera, the moving plate 42 moves along the width direction of the camera shell 1, and the moving plate 42 can only move horizontally. The horizontal movement of the moving plate 42 can drive the upward and downward movement of the stop piece 43, so that the stop piece 43 is clamped with or separated from the launching assembly 3.

[0052] In an embodiment, as shown in FIG. 3 and FIG. 5, the stop piece 43 is arranged on the side away from the horizontal moving plate 33, the stop piece 43 moves downward to be clamped with the launching assembly 3, and the stop piece 43 moves upward to be separated from the launching assembly 3. In order to realize the upward movement of the stop piece 43 driven by the movement of the moving plate 42, an inclined surface 421 is arranged in the middle of the moving plate 42, and a movable column 431 is arranged on the stop piece 43 and moves on the inclined surface 421. By pressing the trigger button 41, the horizontal movement of the inclined surface 421 can drive the upward movement of the stop piece 43 to be separated from the launching assembly 3.

[0053] It is worth mentioning that, as shown in Figure 5, in order to realize the automatic reset of the trigger button 41, a fifth spring 45 is arranged between the trigger button 41 and the side wall of the camera shell 1, and the trigger button 41 is automatically reset to the initial state under the action of the fifth spring 45 after the clamping of the trigger assembly 3 is released; at the same time, a sixth spring 44 is arranged between the stop piece 43 and the inner wall of the camera shell 1, and the sixth spring 44 is in a compressed state when the stop piece 43 moves upward under the action of the inclined surface 421, and after the trigger assembly 3 is fired, the stop piece 43 is reset under the action of the sixth spring 44, and after reset, rotating the charging knob 5 can make the trigger assembly 4 clamped with the trigger assembly 4.

[0054] Specifically, as shown in Figures 1 and 2, the outer side of the camera shell 1 includes a second side 13 in the thickness direction, and the second side 13 is arranged opposite to the first side 12, and a cover plate 14 is hinged on the second side 13 to cover the charging assembly 2, and the position and size of the cover plate 14 are set to be consistent with the position and size of the display screen of the real camera, so that the appearance of the camera launcher is closer to the real camera, and the interesting feeling of children playing is increased.

[0055] The camera launcher of the present application is consistent with the appearance of the real camera in the undeformed state, and the firing port 11 is also hinged to be covered by the baffle on the side, in this mode, it can be used as a toy camera for children to play and take pictures with each other, which can guide children to make various photographic actions and improve the imitation ability of children; when one kind of game is boring, it can be deformed, at this time, the baffle at the firing port 11 and the cover plate 14, end cover 22 and pusher 23 at the opening of the bullet chamber 21 are opened, the bullets are loaded in the bullet chamber 21, at the same time, the cover plate 14 and the end cover 22 are closed, then the charging knob 5 is rotated, and after being rotated to the position, the trigger assembly 3 is clamped with the stop piece 43, at the same time, the pusher 23 pushes the bullets in the bullet chamber 21 to the firing chamber 24, then the trigger button 41 is pressed, the moving plate 42 moves to push the stop piece 43 upward to disengage the clamping of the trigger assembly 3, finally, the bullets are fired from the firing port 11 (as shown in Figure 8), and the above charging and firing actions can be repeated to realize the continuous firing of the bullets.

[0056] The above further describes the present application by means of specific embodiments, but it should be understood that the specific description herein should not be understood as limiting the essence and scope of the present application, and various modifications of the above embodiments made by those skilled in the art after reading the specification are within the scope of the present application.

Claims

1. A camera morphing transmitter, comprising: The application relates to a camera with a bullet shooting function. The upper chamber loading knob is connected with the shooting assembly through a transmission assembly, and rotating the upper chamber loading knob drives the shooting assembly to move away from the bullet loading assembly and to be clamped with the trigger assembly. The trigger assembly comprises a trigger button arranged on the outer sidewall of the camera shell, and pressing the trigger button releases the clamping between the shooting assembly and the trigger assembly, so that the shooting assembly moves forward to drive the bullet in the bullet loading assembly to be shot out of a shooting port.

2. The camera metamorphic launcher of claim 1, wherein, The bullet loading assembly comprises a bullet loading cavity, an end cover horizontally arranged at an opening of the bullet loading cavity, and a pushing piece movably arranged in the bullet loading cavity. The end of the bullet loading cavity away from the pushing piece is a shooting cavity, bullets to be shot are pushed into the shooting cavity, a first spring is arranged between the side of the pushing piece away from the bullet and the inner sidewall of the camera shell, the first spring drives the pushing piece to push the bullet towards the shooting cavity, and the side of the pushing piece in contact with the bullet is formed with an arc surface matched with the surface of the bullet.

3. The camera morphing launcher of claim 2, wherein, A limiting groove is arranged in the camera shell adjacent to the first spring, a movable plate is movably arranged in the limiting groove, and a second spring is arranged between the movable plate and the bottom wall of the camera shell; the lower end of the pushing piece is provided with a clamping hook extending towards the movable plate, the middle lower part of the movable plate is provided with a clamping block corresponding to the clamping hook, the clamping hook can be clamped on the clamping block in the natural non-compressed state of the second spring, and the clamping hook is disengaged from the clamping block after the movable plate compresses the second spring to move downwards.

4. The camera morphing transmitter of claim 3, wherein, The upper end of the movable plate is provided with a first inclined surface away from the end of the shooting assembly, and the lower end of the end cover is provided with a second inclined surface matched with the first inclined surface; When the end cover is fully or partially covered on the bullet loading cavity, the second inclined surface is in contact with the first inclined surface, the movable plate is gradually pressed downwards, and the clamping hook and the clamping block are disengaged; When the bullet loading cavity is opened, the end cover is moved outward, the second inclined surface is away from the first inclined surface, and the movable plate is moved upwards under the action of the second spring.

5. The camera morphing launcher of claim 1, wherein, The shooting assembly comprises a pushing piece, a shooting cylinder fixedly connected with the pushing piece, and a horizontal moving plate fixed above the pushing piece, a third spring is arranged between the end of the shooting cylinder away from the bullet loading assembly and the inner sidewall of the camera shell; the transmission assembly drives the horizontal moving plate to drive the shooting cylinder and the pushing piece to move in the camera shell.

6. The camera morphing transmitter of claim 5, wherein, The outer side of the camera shell comprises a first side in the thickness direction, the upper chamber loading knob is rotatably arranged on the first side, the transmission assembly comprises a gear fixedly connected with the upper chamber loading knob and a rack fixed on the horizontal moving plate.

7. The camera morphing transmitter of claim 6, wherein, Two stop grooves are arranged on the gear in the circumferential direction, a stop block is movably arranged in the stop groove, and a fourth spring is arranged between the stop block and the camera shell.

8. The camera morphing launcher of claim 1, wherein, The trigger assembly comprises the trigger button arranged on one side of the camera housing in the width direction, a moving plate fixedly connected with the trigger button and reciprocally moving with the trigger button, and a stopper in active contact with the moving plate, wherein the moving plate moves horizontally to drive the stopper to move up and down, and the stopper is in clamping connection or disengagement with the launching assembly.

9. The camera morphing launcher of claim 8, wherein, The middle part of the moving plate is provided with an inclined surface, and the stopper is provided with a movable column moving on the inclined surface.

10. The camera morphing launcher of claim 1, wherein, The outer side of the camera housing comprises a second side in the thickness direction, which is arranged opposite to the first side, and a cover plate is hinged on the second side to cover the loading assembly.

Citation Information

Patent Citations

  • Watch type shooting toy

    CN108786146A

  • Toy camera

    CN212141491U

  • Transformable toy gun

    CN220039251U

  • Deformation emitter

    CN220714806U

  • camera toy

    JP3085764U