Deformation emitter
By designing a rectangular deformation transmitter that hides the loading assembly, launch assembly and trigger assembly, the problems of small audience range and complex deformation process in the prior art are solved, and a multi-functional toy suitable for most children's operations are realized.
Patent Information
- Application Number
- CN202421125548.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-22
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-05-22
AI Technical Summary
The existing deformation transmitters are usually in the shape of a gun body, with a small audience range, and a complex deformation process, which is not suitable for children with weak hands-on ability, resulting in limited playability.
A deformation transmitter is designed, with a conventional form in the shape of a rectangular body. The loading component, the launching component and the triggering component are all hidden in the rectangular shell. It is converted into the emitter form through a simple deformation process, which is suitable for children's operation.
It realizes playing as a book or dictionary in a conventional form, and is formed into a transmitter through simple transformation, which is suitable for most children's operations, increasing the fun and diversity of play.
Smart Images

Figure CN222918109U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of transformable toys, and particularly relates to a transformable launcher. Background Art
[0002] Transformable toys are toys with strong playability. Their shapes can be transformed through deformation methods such as hiding, rotating, and assembling, which can not only effectively enhance children's interest in playing, but also improve children's hands-on ability and perception ability of spatial transformation during the playing process. The transformable launcher is a type of transformable toy. Due to its shooting effect of bullet flying, it is highly interesting and deeply loved by children. However, the existing launchers are usually in the shape of a gun body, and the gun-shaped launcher usually only attracts the attention of boys, with a small audience range; if it is transformed into other shapes of toys, it requires a relatively large number of deformation processes, which is not suitable for children with weak hands-on ability, resulting in certain limitations in its playability. Content of the Utility Model
[0003] To solve the problems in the above background art, the utility model provides a transformable launcher. The conventional form of this transformable launcher is a cuboid shape, which can be used as toys such as books and dictionaries for children to play with, or can be transformed into a launcher for boys to play with.
[0004] The utility model adopts the following technical solutions:
[0005] A transformable launcher includes a rectangular shell, a loading component and a firing component respectively arranged on both sides in the length direction inside the rectangular shell, and a trigger component arranged on one side in the width direction of the rectangular shell;
[0006] On one side adjacent to the loading component in the length direction of the rectangular shell, there is a firing port. The loading component includes a firing chamber communicated with the firing port; on the side far from the firing port in the length direction of the rectangular shell, there is a cocking pull ring;
[0007] When cocking, horizontally pull the cocking pull ring backward to make the firing component move backward and engage with the trigger component; when firing, press the trigger component to release the engagement between the trigger component and the firing component, so that the firing component moves forward to drive the bullet in the firing chamber to be fired out from the firing port.
[0008] Furthermore, the loading component further includes a loading chamber communicated with the firing chamber, an end cover horizontally movably arranged at the opening of the loading chamber, and a pushing member movably arranged in the loading chamber. A first spring is connected between the pushing member and the inner side wall of the rectangular shell. The first spring drives the pushing member to push the bullet towards the firing chamber. An arc surface adapted to the surface of the bullet is formed at one end of the pushing member in contact with the bullet.
[0009] Further, a limiting groove is provided at a position adjacent to the first spring inside the rectangular housing. A vertical limiting member is movably arranged up and down in the limiting groove, and a second spring is provided between the vertical limiting member and the bottom wall of the rectangular housing; a hook extending towards the vertical limiting member is provided at the lower end of the pushing member, and a locking block corresponding to the hook is provided at the middle and lower part of the vertical limiting member;
[0010] After the end cover is opened and the pushing member is toggled in a direction away from the firing chamber until it is in place, the second spring is in a natural and uncompressed state, and the hook is engaged with the locking block; after loading the ammunition, press down the vertical limiting member, and the vertical limiting member compresses the second spring downward to disengage the hook and the locking block.
[0011] Further, a first inclined surface is provided on one side of the upper end surface of the vertical limiting member close to the firing port, and a second inclined surface matching the first inclined surface is provided at the lower end of the end cover;
[0012] When the end cover completely covers or partially covers the loading chamber, the second inclined surface contacts the first inclined surface, and gradually presses down the vertical limiting member to disengage the hook and the locking block; when opening the loading chamber, move the end cover outwards to make the second inclined surface away from the first inclined surface, and the vertical limiting member moves upward under the action of the second spring.
[0013] Further, the firing assembly includes a driving member, a firing tube fixedly connected to the driving member, and a horizontal pulling plate connected to the driving member. The horizontal pulling plate is linked with the loading pull ring; a third spring is provided between one end of the firing tube away from the loading assembly and the inner wall of the rectangular housing.
[0014] Further, the loading pull ring is hinged to the outer wall of the rectangular housing through a hinge shaft, and the horizontal pulling plate is connected to the hinge shaft.
[0015] Further, the trigger assembly includes a pressing member provided on the side wall of the rectangular housing. A connecting plate extending towards the firing assembly is provided at the lower end of the pressing member, and a trigger block is fixed at the end of the connecting plate; pressing the pressing member makes the trigger block move along the width direction of the rectangular housing, and drives the stop member to move downward to disengage from the firing assembly.
[0016] Further, the stop member is arranged below the firing assembly. A stop block engaged with the firing assembly is provided at the upper end of the stop member, and the lower end of the stop member is connected to the bottom wall of the rectangular housing through a fourth spring.
[0017] Further, a third inclined surface is provided on the stop member, and a fourth inclined surface matching the third inclined surface is provided on the trigger block. The fourth inclined surface moves on the third inclined surface to make the stop member move downward.
[0018] Further, a flip-up cover plate is hinged to the rectangular housing. After the cover plate is closed, the shape of the deformed emitter is in the shape of a dictionary.
[0019] Compared with the prior art, the beneficial effects of the utility model are:
[0020] The deformable launcher of the utility model is in a rectangular shape in a conventional form, and the loading assembly, the launching assembly and the trigger assembly are all hidden in a rectangular shell. The rectangular shape can be specially made into the shape of a dictionary, a book, etc. for children to play house games. At the same time, when a boy wants to play a shooting game, he can simply deform it, open the launching port, pull the loading ring, and press the trigger assembly to fire the bullet. The deformation is simple, suitable for most children to operate, and very interesting. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0022] Figure 1 This is the overall structure diagram of the deformation transmitter;
[0023] Figure 2 This is the internal structure diagram of the deformation launcher during loading;
[0024] Figure 3 This is the internal structure diagram of the deformation launcher before loading (I);
[0025] Figure 4 This is the internal structure diagram of the deformation launcher before loading (II);
[0026] Figure 5 This is a positional relationship diagram of the loading component, launching component, and triggering component of the deformation launcher;
[0027] Figure 6 This is the exploded structure diagram of the loading assembly of the deformation launcher;
[0028] Figure 7 This is the exploded structure diagram of the trigger component of the deformation transmitter;
[0029] Figure 8 This is the structural diagram of the bullet launching process of the deformation launcher;
[0030] Wherein: 1- rectangular shell, 11- launch port;
[0031] 2 - Loading assembly, 21 - Firing chamber, 22 - Loading chamber, 23 - End cap, 231 - Second inclined surface, 24 - Pushing member, 241 - Hook, 25 - First spring, 26 - Vertical limiting member, 261 - Spring mounting post, 262 - Block, 263 - First inclined surface, 27 - Second spring;
[0032] 3 - Firing assembly, 31 - Pushing member, 32 - Mounting shell, 33 - Firing tube, 34 - Horizontal pulling plate, 35 - Third spring;
[0033] 4 - Trigger assembly, 41 - Pressing member, 42 - Connecting plate, 43 - Trigger block, 431 - Fourth inclined surface, 44 - Stopping member, 441 - Stopping block, 442 - Third inclined surface, 45 - Fourth spring,
[0034] 5 - Cocking pull ring, 6 - Cover plate. Detailed implementation mode
[0035] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the drawings in the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments in the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0036] In the description of the present application, it should be understood that the orientation or positional relationship indicated by the terms "length", "width", "upper", "lower", "front", "rear", "vertical", "horizontal", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation to the present application. In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of the described features. In the description of the present application, "a plurality" means two or more unless otherwise specifically defined.
[0037] In the description of this application, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "connected", and "connected" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection, an electrical connection, or mutual communication; it can be a direct connection, or an indirect connection through an intermediate medium, it can be the internal connection of two elements or the interaction relationship between two elements. For ordinary technicians in this field, the specific meanings of the above terms in this application can be understood according to specific circumstances.
[0038] In the present application, unless otherwise clearly specified and limited, a first feature being "above" or "below" a second feature may include that the first and second features are in direct contact, or may include that the first and second features are not in direct contact but are in contact through another feature between them. Moreover, a first feature being "above", "above" and "above" a second feature includes that the first feature is directly above and obliquely above the second feature, or simply indicates that the first feature is higher in level than the second feature. A first feature being "below", "below" and "below" a second feature includes that the first feature is directly below and obliquely below the second feature, or simply indicates that the first feature is lower in level than the second feature.
[0039] The deformable launcher provided by the utility model is a deformable toy for children to play with. In the undeformed state, the overall shape is a rectangular parallelepiped. The loading component 2, the launching component 2 and the trigger component 4 are all hidden in the rectangular shell 1. The rectangular shell 1 can be specially made into the shape of a dictionary or a book, etc., for children to play house games before going to school. In the deformed state, the baffle at the launching port 11 can be opened, and the loading ring 5 can be pulled backward to load the chamber, so that it becomes a launcher toy. After the bullet is installed inside, the bullet can be fired by pressing the trigger component 4, so that children can play gun games or shooting games, etc., which increases the diversity of playing methods and enhances the fun.
[0040] See also Figure 1-8, the deformable emitter provided by the utility model includes a rectangular housing 1, a loading assembly 2 and a firing assembly 3 respectively arranged on both sides in the length direction inside the rectangular housing 1, and a trigger assembly 4 arranged on one side in the width direction of the rectangular housing 1; on the side wall of the rectangular housing 1 adjacent to the loading assembly 2 in the length direction, there is a firing port 11, and a baffle is hinged to the firing port 11. In the undeformed state, the baffle is integrated with the side wall of the cuboid housing 1 to cover the firing port 11; the loading assembly 2 includes a firing chamber 21 communicated with the firing port 11, and the bullets to be fired are located in the firing chamber 21; on the side wall of the rectangular housing 1 away from the firing port 11 in the length direction, there is a loading pull ring 5, the loading pull ring 5 is linked with the firing assembly 3, and the loading pull ring 5 is hinged to one side of the rectangular housing 1. In the undeformed state, the loading pull ring 5 is integrated with the other side wall of the rectangular housing 1; when loading, pick out the loading pull ring 5 from the side wall of the rectangular housing 1 to make it parallel to the horizontal plane, and horizontally pull the loading pull ring 5 backward to drive the firing assembly 3 to move backward and engage with the trigger assembly 4 to achieve loading; when firing, press the trigger assembly 4 to release the engagement between the trigger assembly 4 and the firing assembly 3, so that the firing assembly 3 moves forward to drive the bullets in the firing chamber 21 to be fired out from the firing port 11.
[0041] It should be noted that the loading assembly 2, the firing assembly 3 and the trigger assembly 4 of the present application are all hidden inside the rectangular housing 1, so that the firing deformable device looks like a rectangular object in its normal form. Those skilled in the art can specially make it into any toy with play significance such as books, dictionaries, etc. according to the needs of children for children to play some role-playing games, and after simple deformation, it can be used as an emitter to fire bullets. The design of the two forms greatly enhances the interest of the deformable emitter.
[0042] Specifically, refer to Figure 3 、 Figure 4 、 Figure 6The loading assembly 2 also includes a loading chamber 22 connected to the firing chamber 21, an end cover 23 horizontally movably arranged at the opening of the loading chamber 22, and a pushing member 24 movably arranged in the loading chamber 22. The opening of the loading chamber 22 is arranged upward. After the bullet is loaded in the loading chamber 22, the end cover 23 is pushed to cover the opening of the loading chamber 22 to prevent the bullet from being ejected from the opening; a first spring 25 is connected between the pushing member 24 and the inner side wall of the rectangular shell 1, and the first spring 25 drives the pushing member 24 to push the bullet toward the firing chamber 21. An end of the pushing member 24 that contacts the bullet is formed with an arc surface that matches the surface of the bullet. If there is a bullet in the firing chamber 21, the pushing member 24 contacts the bullet in the loading chamber 22. If the bullet in the firing chamber 21 is ejected, the pushing member 24 pushes the bullet in the loading chamber 22 into the firing chamber 21. It can be understood that multiple bullets can be installed in the loading chamber 22 in the present application at one time, and the bullet farthest from the pushing member 24 is located in the firing chamber 21. After the bullet in the firing chamber 21 is fired, the pushing member 24 can push the adjacent bullet into the firing chamber 21 under the action of the first spring 25, thereby realizing continuous firing of bullets until all the bullets in the loading chamber 22 are fired.
[0043] Specifically, a limiting groove (not shown in the figure) is provided at a position adjacent to the first spring 25 in the rectangular shell 1, and a vertical limiting member 26 is movably arranged in the limiting groove, that is, the purpose of setting the limiting groove is to limit the horizontal movement of the vertical limiting member 26, and a second spring 27 is provided between the vertical limiting member 26 and the bottom wall of the rectangular shell 1. In order to prevent the second spring 27 from deviating, a spring mounting column 261 is fixed to the lower end of the vertical limiting member 26, and one end of the first spring 25 is sleeved on the spring mounting column 261; the lower end of the pushing member 24 is provided with a hook 241 extending in the direction of the vertical limiting member 26, and the middle of the vertical limiting member 26 The lower part is provided with a block 262 corresponding to the hook 241; after the end cover 23 is opened and the pusher 24 is moved to the direction away from the firing chamber 21, the second spring 27 is in a natural uncompressed state, the hook 241 can be connected to the block 262, and the child can load the bullet into the loading chamber 22; after the loading is completed, the vertical limiter 26 is pressed downward, and the vertical limiter 26 compresses the second spring 27 downward to make the block 262 move downward and disengage from the hook 241, and the pusher 24 applies a force in the direction of the bullet under the action of the first spring 25, ensuring close contact between each bullet, and at the same time allowing the bullets to enter the firing chamber 21 in sequence. The present application does not limit the downward movement of the vertical limiter 26, and the pusher 24 can be manually pressed to release the pusher 24, or it can be linked with other components to automatically release the pusher 24.
[0044] In a preferred embodiment, a first inclined surface 263 is provided on the upper end surface of the vertical stopper 26 on a side close to the launch port 11, and a second inclined surface 231 matching the first inclined surface 263 is provided on the lower end of the end cover 23; in order to facilitate the description of the inclination direction and positional relationship between the first inclined surface 263 and the second inclined surface 231, the length direction of the rectangular housing 1 is defined as the X-axis and the width direction as the Y-axis in this application, then the first inclined surface 263 is set to be inclined downward along the X-axis direction toward the side of the launch port 11, and the second inclined surface 231 is also set to be inclined downward along the X-axis direction toward the side of the launch port 11. Since the end cover 23 can only move horizontally and cannot move up and down, when the second inclined surface 231 moves in the covering direction along the first inclined surface 263, it will gradually press the vertical stopper 26 downward, so that the block 262 on the vertical stopper 26 moves downward, and then disengages from the hook 241, thereby achieving the purpose of automatically releasing the pusher 241.
[0045] The specific loading process is as follows: the end cover 23 is pushed outward to make the second inclined surface 231 away from the first inclined surface 263, and the vertical limit piece 26 moves upward under the action of the second spring 27; then the pushing piece 24 is moved in the direction away from the firing chamber 21, and the pushing piece 24 overcomes the action of the first spring 25 and moves backward until the hook 241 on the pushing piece 24 is engaged with the block 262 on the vertical limit piece 26; then, after the bullets are loaded into the loading chamber 22 in sequence, the end cover 23 is started to be covered. In the process of the end cover 23 being fully or partially covered on the loading chamber 22, the second inclined surface 231 contacts the first inclined surface 263, gradually pressing down the vertical limit piece 26, so that the hook 241 and the block 262 are released from the engagement, so that the pushing piece 24 pushes the bullet in the direction of the firing chamber 21 under the action of the first spring 25, and the loading process is completed.
[0046] The loading assembly 2 of the present application is cleverly designed, and the linkage between the end cover 23, the vertical limit block 26, and the pusher 24 makes the loading process simpler, and the loading can be easily completed without the assistance of others, which is more suitable for children to play.
[0047] For details, see Figure 2, the launching assembly 3 includes a driving member, a launching tube 33 fixedly connected to the driving member, and a horizontal pulling plate 34 connected to the driving member. The driving member includes a pushing member 31 that can perform telescopic movement in the launching cavity 21 and a mounting shell 32 fixedly connected to the pushing member 31. The launching tube 33 is fixedly connected to the mounting shell 32. A plugging block is provided at the upper end of the mounting shell 32, and a plugging hole corresponding to the plugging block is provided on the horizontal pulling plate 34. The plugging block is plugged into the plugging hole, enabling the horizontal pulling plate 34 to be linked with the pushing member 31; and there is a linkage relationship between the horizontal pulling plate 34 and the loading ring 5; a third spring 35 is provided between the end of the launching tube 33 away from the loading assembly 2 and the inner wall of the rectangular housing 1. Preferably, the loading ring 5 is hingedly connected to the outer wall of the rectangular housing 1 through a hinge shaft, and the horizontal pulling plate 34 is connected to the hinge shaft.
[0048] The bullet loading process is as follows: Rotate the loading ring 5 to be parallel to the horizontal plane and then pull it outwards. The loading ring 5 drives the horizontal pulling plate 34 to move outwards through the hinge shaft. The horizontal pulling plate 34 drives the driving member to move backward, thereby driving the launching tube 33 to move backward to compress the third spring 35 until the launching assembly 3 is engaged with the triggering assembly 4, completing the loading action.
[0049] Specifically, refer to Figure 4 , Figure 7 , the triggering assembly 4 includes a pressing member 41, a connecting plate 42, a triggering block 43, and a stopping member 44. The pressing member 41 is arranged on the side wall of the rectangular housing 1. The connecting plate 42 is fixedly connected to the lower end of the pressing member 41 and extends towards the launching assembly 3. The triggering block 43 is fixed at the end of the connecting plate 42; Press the pressing member 41 inward along the Y-axis direction to move the triggering block 43 inward, pushing the stopping member 44 to move downward. A blocking block 441 is provided at the upper end of the stopping member 44. A clamping hole (not shown in the figure) is provided on the launching tube 33. When the stopping member 44 moves downward, the blocking block 441 disengages from the clamping hole, thereby releasing the launching tube 33. The launching tube 33 pushes the pushing member 31 towards the launching cavity 21, thereby pushing out the bullet in the launching cavity 21, completing the bullet launching process (as Figure 8 shown).
[0050] Specifically, the stopping member 44 is arranged below the launching tube 33. A blocking block 441 for clamping with the launching tube 33 is provided at the upper end of the stopping member 44. The lower end of the stopping member 441 is connected to the bottom wall of the rectangular housing 1 through a fourth spring 45. In the natural uncompressed state of the fourth spring 45, pull the launching tube 33 backward, and the clamping hole on the launching tube 33 can be clamped on the blocking block 441. When the triggering block 43 moves to drive the stopping member 44 to move downward, the blocking block 441 moves downward accordingly, disengaging from the clamping hole, and releasing the launching tube 33 to achieve the purpose of firing a bullet.
[0051] Specifically, the stopper 44 is provided with a third inclined surface 442, and the trigger block 43 is provided with a fourth inclined surface 431 matching the third inclined surface 442. The fourth inclined surface 431 moves on the third inclined surface 442 to move the stopper 44 downward. More specifically, the fourth inclined surface 431 is provided on the lower end surface of the trigger block 43 and is inclined upward in a direction away from the pressing member 41. The third inclined surface 442 is provided on the stopper 44 and is located below the fourth inclined surface 431 and matches the inclined direction of the fourth inclined surface 431. Since the trigger block 43 can only move horizontally and cannot move up and down, when the fourth inclined surface 431 moves along the Y-axis direction in a direction away from the pressing member 41, it will gradually press the stopper 44 downward, so that the stopper 441 on the stopper 44 moves downward with it, until the stopper 441 is separated from the clamping hole, and the launch assembly 3 is automatically released.
[0052] Specifically, a flip cover 6 is hingedly connected to the rectangular shell 1. When the cover 6 is closed, the shape of the deformation transmitter is a dictionary shape or a book shape, so as to increase the fun of the toy and make the toy suitable for both girls and boys to play.
[0053] The utility model is further described above with the help of specific embodiments, but it should be understood that the specific description here should not be construed as limiting the essence and scope of the utility model. Various modifications made to the above embodiments by ordinary technicians in this field after reading this specification are all within the scope of protection of the utility model.
Claims
1. A deformation transmitter, characterized in that: It comprises a rectangular shell, a loading assembly and a firing assembly respectively arranged on both sides of the length direction of the rectangular shell, and a trigger assembly arranged on one side of the width direction of the rectangular shell, wherein: A firing port is provided on one side of the rectangular shell body adjacent to the loading assembly in the length direction, and the loading assembly includes a firing cavity connected to the firing port; a loading pull ring is provided on one side of the rectangular shell body away from the firing port in the length direction; When loading the chamber, the loading pull ring is pulled backward horizontally to make the firing assembly move backward and engage with the trigger assembly; when firing, the trigger assembly is pressed to release the engagement between the trigger assembly and the firing assembly, so that the firing assembly moves forward to drive the bullet in the firing chamber to be fired from the firing port.
2. The deformation transmitter according to claim 1, characterized in that: The loading assembly also includes a loading chamber connected to the firing chamber, an end cover horizontally movably arranged at the opening of the loading chamber, and a pushing member movably arranged in the loading chamber, a first spring is connected between the pushing member and the inner side wall of the rectangular shell, the first spring drives the pushing member to push the bullet toward the firing chamber, and an end of the pushing member in contact with the bullet is formed with an arc surface adapted to the surface of the bullet.
3. The deformation transmitter according to claim 2, characterized in that: A limiting groove is provided in the rectangular shell at a position adjacent to the first spring, a vertical limiting member is movably arranged in the limiting groove, and a second spring is provided between the vertical limiting member and the bottom wall of the rectangular shell; a hook is provided at the lower end of the pushing member and extends toward the vertical limiting member, and a block corresponding to the hook is provided at the middle and lower part of the vertical limiting member; After the end cover is opened and the pusher is moved in a direction away from the firing chamber, the second spring is in a natural uncompressed state, and the hook is engaged with the clamping block; After loading, the vertical limiting member is pressed downward, and the vertical limiting member compresses the second spring downward to disengage the hook and the block.
4. The deformation transmitter according to claim 3, characterized in that: A first inclined surface is provided on the upper end surface of the vertical stopper on one side close to the launch port, and a second inclined surface matching the first inclined surface is provided on the lower end of the end cover; When the end cover is completely or partially covered on the loading chamber, the second inclined surface contacts the first inclined surface, gradually pressing down the vertical limiter to release the engagement between the hook and the block; When the loading chamber is opened, the end cover is moved outward to move the second inclined surface away from the first inclined surface, and the vertical limiter moves upward under the action of the second spring.
5. The deformation transmitter according to claim 1, characterized in that: The firing assembly includes a driving member, a firing tube fixedly connected to the driving member, and a horizontal pulling plate connected to the driving member, wherein the horizontal pulling plate is linked to the loading pull ring; a third spring is provided between one end of the firing tube away from the loading assembly and the inner wall of the rectangular shell.
6. The deformation transmitter according to claim 5, characterized in that: The loading pull ring is hingedly connected to the outer wall of the rectangular shell through a hinge shaft, and the horizontal pulling plate is connected to the hinge shaft.
7. The deformation transmitter according to claim 1, characterized in that: The trigger assembly includes a pressing piece arranged on the side wall of the rectangular shell, and the lower end of the pressing piece is provided with a connecting plate extending in the direction of the launching assembly, and a trigger block is fixed to the end of the connecting plate; pressing the pressing piece causes the trigger block to move along the width direction of the rectangular shell, pushing and driving the stopper to move downward and disengage from the launching assembly.
8. The deformation transmitter according to claim 7, characterized in that: The stopper is arranged below the firing assembly, the upper end of the stopper is provided with a stopper engaged with the firing assembly, and the lower end of the stopper is connected to the bottom wall of the rectangular shell through a fourth spring.
9. The deformation transmitter according to claim 8, characterized in that: The stopper is provided with a third inclined surface, and the trigger block is provided with a fourth inclined surface matching the third inclined surface. The fourth inclined surface moves on the third inclined surface to move the stopper downward.
10. The deformation transmitter according to any one of claims 1 to 9, characterized in that: A flip-over cover is hingedly connected to the rectangular shell, and when the cover is closed, the shape of the deformation transmitter is a dictionary shape.