Launching device and launching toy
By designing a launching device with an acceleration gear and a push plate, and using a pulling component to drive the object to be launched to rotate and launch, the problem of insufficient playability of existing launching toys is solved, and the competitive competition and fun are enhanced.
Patent Information
- Application Number
- CN202423076358.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-12
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2034-12-12
AI Technical Summary
Existing launching toys lack playability, competitive element, and fun.
Design a launching device that uses a pulling component to drive an acceleration mechanism and a launching mechanism to achieve the rotation and launching of the object to be launched. This includes the cooperation of an acceleration gear, a push plate, a locking component, and an elastic component to ensure that the object to be launched remains in a rotating state during the launching process.
It enhances the playability and fun of launching toys, creating competitive battles through the rotation and collision of the objects to be launched, thus enhancing children's interactive experience.
Smart Images

Figure CN223683030U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of toys, in particular to a launching device and a launching toy. BACKGROUND
[0002] The launching toy can launch the to-be-launched object, and the launching toy can provide entertainment and game fun for children, improve the movement skills and coordination of children, promote the interaction and teamwork among children, and be beneficial to the growth and development of children. However, the launching toy on the market can only directly pop out the to-be-launched object for launching, and the playability needs to be improved. CONTENT OF THE UTILITY MODEL
[0003] The present application aims to at least solve one of the technical problems in the related art. To this end, the present application provides a launching device.
[0004] To achieve the above-mentioned purpose, the present application discloses a launching device, which comprises:
[0005] a launcher adapted to mount the to-be-launched object thereon, the launcher comprising an acceleration mechanism and a launching mechanism;
[0006] a pulling member adapted to be inserted into and pulled out of the launcher, the pulling member comprising an acceleration end and a launching end, the acceleration end being adapted to drive the acceleration mechanism during the process of inserting and / or pulling out of the launcher, so that the acceleration mechanism drives the to-be-launched object to rotate, and the launching end being adapted to drive the launching mechanism when the pulling member is inserted into and / or pulled out of the launcher, so that the launching mechanism drives the to-be-launched object to launch.
[0007] In some embodiments of the present application, the pulling member is adapted to drive the acceleration mechanism first and then the launching mechanism when pulled out.
[0008] Alternatively, the pulling member is adapted to drive the acceleration mechanism first and then the launching mechanism when inserted.
[0009] In some embodiments of the present application, the acceleration mechanism comprises an acceleration gear, and the acceleration end is adapted to drive the acceleration gear to rotate, and the acceleration gear is adapted to drive the to-be-launched object to rotate.
[0010] In some embodiments of the present application, the acceleration mechanism further comprises a first transmission gear, the acceleration end is adapted to engage with the first transmission gear to drive the first transmission gear to rotate, and the first transmission gear engages with the acceleration gear to drive the acceleration gear to rotate.
[0011] In some embodiments of the present application, the launching mechanism comprises:
[0012] a push plate, the to-be-launched object being adapted to abut against the push plate and drive the push plate to move when the to-be-launched object is installed on the launcher;
[0013] a locking member adapted to lock the push plate when the push plate moves to a preset position, and adapted to be driven by the launching end to unlock the push plate;
[0014] a first elastic member adapted to generate a force on the push plate to drive the push plate to reset when the locking member unlocks the push plate, so that the push plate drives the to-be-launched object to be launched.
[0015] In some embodiments of the present application, the launching mechanism further comprises a rotating member, the launching end is adapted to drive the rotating member to rotate when the pulling member moves in one of the inserting and pulling-off directions, so that the rotating member drives the locking member to unlock the push plate, and the launching end is adapted to drive the rotating member to rotate reversely when the pulling member moves in the other of the inserting and pulling-off directions, so that the rotating member and the locking member are separated.
[0016] In some embodiments of the present application, the rotating member is provided with a first contact portion and a second contact portion, and the launching end is provided with a groove;
[0017] the first contact portion is adapted to be sequentially clamped into and out of the groove when the pulling member moves in one of the inserting and pulling-off directions, so that the rotating member rotates, and the second contact portion drives the locking member to unlock the push plate;
[0018] the first contact portion is adapted to be sequentially clamped into and out of the groove when the pulling member moves in the other of the inserting and pulling-off directions, so that the rotating member rotates reversely, and the second contact portion and the locking member are separated.
[0019] In some embodiments of the present application, the launching mechanism further comprises a third elastic member adapted to generate a force on the rotating member to make the rotating member have a rotating tendency, the rotating member is adapted to abut against the pulling member under the action of the rotating tendency, and adapted to drive the first contact portion to be clamped into the groove under the action of the rotating tendency when the groove and the first contact portion correspond.
[0020] In some embodiments of the present application, the launching mechanism further comprises a clamping jaw, the clamping jaw is adapted to switch to a first state when the push plate is driven by the to-be-launched object to move, and adapted to switch to a second state when the to-be-launched object is driven by the push plate to be launched;
[0021] the clamping jaw is in the launching path of the to-be-launched object in the first state to stop the to-be-launched object, and the clamping jaw is out of the launching path of the to-be-launched object in the second state to avoid the to-be-launched object.
[0022] In some embodiments of the present application, the pawl is adapted to move with the push plate, the pawl is provided with a guide post, the launching mechanism further comprises a guide slot, the guide post is inserted into the guide slot, and the guide post is adapted to make the pawl rotatably switch between the first state and the second state under the guidance of the guide slot.
[0023] In some embodiments of the present application, the launching mechanism further comprises a limiting member, the limiting member is adapted to be located on the installation path of the to-be-launched object before the to-be-launched object is installed on the launcher and to lock the push plate, and the limiting member is adapted to be driven by the to-be-launched object to unlock the push plate when the to-be-launched object is installed on the launcher.
[0024] In some embodiments of the present application, the limiting member and the push plate are rotatably connected, the limiting member has an abutting portion, a locking portion and a connecting end, the abutting portion and the locking portion are located on one side of the rotation center of the limiting member, the connecting end is located on the other side of the rotation center of the limiting member, the first elastic member and the connecting end are connected to make the limiting member have a rotation tendency, and the limiting member is adapted to make the abutting portion move into the installation path of the to-be-launched object and make the locking portion be inserted into the locking slot under the action of the rotation tendency.
[0025] In some embodiments of the present application, the launching device further comprises a handle, the handle is arranged on the launcher to be adapted to be held, and the to-be-launched object is adapted to be launched forward from the launcher, the handle is arranged on the left side or the right side of the launcher.
[0026] In some embodiments of the present application, the launching device further comprises a handle, the handle is arranged on the launcher to be adapted to be held, and the to-be-launched object is adapted to be launched forward from the launcher, the left side and the right side of the launcher are respectively provided with a first connecting portion, and the handle is adapted to be detachably connected to one of the first connecting portion on the left side and the first connecting portion on the right side.
[0027] In some embodiments of the present application, the launcher is provided with guide holes, the pulling member is adapted to be inserted into and pulled out of the guide holes, the to-be-launched object is adapted to be launched forward from the launcher, and at least two guide holes arranged alternately in the left-right direction are arranged.
[0028] The second aspect of the present application further discloses a launching toy, which comprises a to-be-launched object and the above-mentioned launching device.
[0029] The launcher of the technical scheme of the present application is driven by the pulling member to realize rotation and launching, which is conducive to competitive confrontation, improves the playability and interest.
[0030] Additional advantages of the application will be set forth in part in the description which follows, and in part will become apparent to those skilled in the art upon examination of the following or can be learned by practice of the application. BRIEF DESCRIPTION OF DRAWINGS
[0031] To more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the accompanying drawings needed to be used in the description of the embodiments or the prior art will be briefly introduced as follows. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can be obtained from the structures shown in the drawings without creative labor.
[0032] Figure 1 Schematic diagram of a launching device in some embodiments;
[0033] Figure 2 Exploded view of a launching device in some embodiments;
[0034] Figure 3 Schematic diagram of a to-be-launched object in some embodiments;
[0035] Figure 4 Schematic diagram of a handle arranged on the left side of a launcher in some embodiments;
[0036] Figure 5 Schematic diagram of a handle arranged on the right side of a launcher in some embodiments;
[0037] Figure 6 Schematic diagram of a partial structure of a launching device in some embodiments;
[0038] Figure 7 Schematic diagram of a partial structure of a launching device in some embodiments; Figure 6 Exploded view of the partial structure shown;
[0039] Figure 8 Schematic diagram of the cooperation between an accelerating mechanism and a pulling member in some embodiments;
[0040] Figure 9 Schematic diagram of a rotating member in some embodiments;
[0041] Figure 10 Schematic diagram of a pulling member in some embodiments;
[0042] Figure 11 Schematic diagram of the insertion process of a pulling member in some embodiments;
[0043] Figure 12 Schematic diagram of the pulling-off process of a pulling member in some embodiments;
[0044] Figure 13 Schematic diagram of the cooperation between a pushing plate and a limiting member in some embodiments;
[0045] Figure 14 Fig. 8 is a schematic view of a restriction member in some embodiments;
[0046] Figure 15 Fig. 9 is a schematic view of a restriction member in some embodiments when the push plate is locked;
[0047] Figure 16 Fig. 10 is a schematic view of a push plate and a pawl in some embodiments (the push plate moves from back to front).
[0048] Brief Description of the Drawings
[0049] The launching device 100, the object to be launched 200, the pulling member 1000, the launching end 1100, the accelerating end 1200, the launcher 4000, the accelerating mechanism 4100, the accelerating gear 4110, the first transmission gear 4120, the launching mechanism 4200, the push plate 4210, the locking member 4220, the rotating member 4230, the first contact portion 4231, the second contact portion 4232, the central shaft portion 4233, the pawl 4240, the guide column 4241, the guide slot 4250, the restriction member 4260, the abutting portion 4261, the locking portion 4262, the connecting end 4263, the locking slot 4270, the first elastic member 4291, the second elastic member 4292, the third elastic member 4293, the first connecting portion 4300, the guide hole 4400, the handle 5000.
[0050] The object of the present application, the functional features and advantages will be further described with reference to the embodiments and the accompanying drawings. DETAILED DESCRIPTION
[0051] The technical solutions in the embodiments of the present application will be clearly and completely described with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0052] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present application are only used to explain the relative positional relationship, movement condition, etc. between components in a certain posture (as shown in the drawings), and if the certain posture changes, the directional indications also change accordingly.
[0053] In the present application, unless specifically defined otherwise and limited, the terms "connected", "fixed", and the like should be construed broadly and, for example, can be a fixed connection, or a detachable connection, or integrated; can be a mechanical connection, or an electrical connection; can be a direct connection, or an indirect connection through an intermediate medium; can be an internal connection of two elements, or an interaction relationship between two elements, unless specifically defined otherwise. For those skilled in the art, the specific meanings of the above terms in the present application can be understood according to the specific circumstances.
[0054] In addition, the descriptions such as "first", "second" and the like in the present application are only for the purpose of description, and cannot be understood as indicating or implying the relative importance of the indicated technical features or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first", "second" can explicitly or implicitly include at least one of the features. In addition, the technical solutions of various embodiments can be combined with each other, but it must be based on the fact that the technical solutions can be realized by those skilled in the art. When the combination of technical solutions contradicts each other or cannot be realized, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope required by the present application.
[0055] The first aspect of the present application discloses a launching device 100, which is combined with Figures 1 to 7 As shown, the launching device 100 comprises a launcher 4000 and a pulling member 1000, the launcher 4000 is adapted to install the to-be-launched object 200 thereon, the launcher 4000 comprises an acceleration mechanism 4100 and a launching mechanism 4200, the pulling member 1000 is adapted to be inserted into and pulled out of the launcher 4000, the pulling member 1000 comprises an acceleration end 1200 and a launching end 1100, the acceleration end 1200 is adapted to drive the acceleration mechanism 4100 in the process of inserting and / or pulling out the pulling member 1000 into and / or out of the launcher 4000, so that the acceleration mechanism 4100 drives the to-be-launched object 200 to rotate, and the launching end 1100 is adapted to drive the launching mechanism 4200 when the pulling member 1000 is inserted into and / or pulled out of the launcher 4000, so that the launching mechanism 4200 drives the to-be-launched object 200 to launch.
[0056] The launcher 4000 has a position for installing the to-be-launched object 200, the structure of the position can be various, as long as it can install the to-be-launched object 200, and the launching of the to-be-launched object 200 needs the cooperation of the acceleration mechanism 4100, the launching mechanism 4200 and the pulling member 1000.
[0057] The pulling member 1000 can be inserted into the launcher 4000 or pulled out of the launcher 4000. The rotation of the to-be-launched object 200 can be realized by the insertion process of the pulling member 1000, that is, the process of inserting the pulling member 1000 into the launcher 4000, in which the acceleration end 1200 drives the acceleration mechanism 4100, so that the acceleration mechanism 4100 drives the to-be-launched object 200 to rotate. The rotation of the to-be-launched object 200 can also be realized by the pulling process of the pulling member 1000, that is, the process of pulling the pulling member 1000 out of the launcher 4000, in which the acceleration end 1200 drives the acceleration mechanism 4100, so that the acceleration mechanism 4100 drives the to-be-launched object 200 to rotate.
[0058] The launching of the to-be-launched object 200 can be realized by the insertion process of the pulling member 1000, that is, the process of inserting the pulling member 1000 into the launcher 4000, in which the launching end 1100 drives the launching mechanism 4200, so that the launching mechanism 4200 drives the to-be-launched object 200 to rotate. The launching of the to-be-launched object 200 can also be realized by the pulling process of the pulling member 1000, that is, the process of pulling the pulling member 1000 out of the launcher 4000, in which the launching end 1100 drives the launching mechanism 4200, so that the launching mechanism 4200 drives the to-be-launched object 200 to rotate.
[0059] By such an arrangement, operating the pulling member 1000 can realize both the rotation and the launching of the to-be-launched object 200, which is conducive to competitive confrontation and improves the playability and interest.
[0060] For example, continuing to combine Figures 1 to 7 As shown in the figure, the pulling member 1000 is adapted to drive the acceleration mechanism 4100 first when being pulled out, so that the acceleration mechanism 4100 drives the to-be-launched object 200 to rotate, and then drive the launching mechanism 4200, so that the launching mechanism 4200 drives the to-be-launched object 200 to launch.
[0061] When the pulling member 1000 is pulled out of the launcher 4000 (that is, the pulling member 1000 is pulled out of the launcher 4000 from the state of being inserted into the launcher 4000), the pulling member 1000 drives the acceleration mechanism 4100 through the acceleration end 1200 first, and then drives the launching mechanism 4200 through the launching end 1100. The acceleration end 1200 drives the acceleration mechanism 4100, so that the acceleration mechanism 4100 drives the to-be-launched object 200 to rotate. The launching end 1100 drives the launching mechanism 4200, so that the launching mechanism 4200 drives the to-be-launched object 200 to launch. It can be understood that driving means making the relevant part move accordingly, which can be realized directly or indirectly, and the same applies below.
[0062] Since the pulling member 1000 drives the accelerating mechanism 4100 first and then drives the launching mechanism 4200 when being pulled out, the to-be-launched object 200 rotates on the launcher 4000 under the action of the accelerating end 1200 as the pulling member 1000 is pulled out, until the pulling member 1000 is pulled out to the preset position, the launching end 1100 drives the launching mechanism 4200, so that the launching mechanism 4200 drives the to-be-launched object 200 to be launched, and the to-be-launched object 200 still keeps rotating when being launched, which is beneficial to improve the playability and interestingness.
[0063] For example, the to-be-launched object 200 keeps rotating after being launched and falling to the ground, and the to-be-launched object 200 does not fall until stopping rotating, which is beneficial to improve the play interestingness.
[0064] For another example, a plurality of (two or more) to-be-launched objects 200 are launched and fall to the concave arc region, and the to-be-launched objects 200 move towards the bottom of the concave arc region, and since the to-be-launched objects 200 can keep rotating, collisions can occur between the to-be-launched objects 200, so that competitive confrontation can be formed, and the playability is improved.
[0065] In particular, the faster the pulling member 1000 is pulled out, the more beneficial to the acceleration of the to-be-launched object 200, and the faster the to-be-launched object 200 rotates, the more beneficial to the competitive confrontation. It can be understood that the to-be-launched object 200 has various types, for example, the to-be-launched object 200 is a top, the top has a rotating part and a fixed part, the rotating part can rotate relative to the fixed part, the top is installed to the launcher 4000 through the fixed part, the accelerating mechanism 4100 can drive the rotating part of the top to rotate, and the launching mechanism 4200 can act on the fixed part of the top so as to launch the whole top.
[0066] Similarly, the pulling member 1000 can be adapted to drive the accelerating mechanism 4100 first and then drive the launching mechanism 4200 when being inserted, and the description is not repeated.
[0067] In combination Figures 6 to 8As shown, in some embodiments, the acceleration mechanism 4100 comprises an acceleration gear 4110, the acceleration end 1200 is adapted to drive the acceleration gear 4110 to rotate, and the acceleration gear 4110 is adapted to drive the to-be-launched object 200 to rotate. Specifically, the acceleration gear 4110 drives the to-be-launched object 200 to rotate, for example, the to-be-launched object 200 has a gear structure, when the to-be-launched object 200 is installed to the launcher 4000, the gear structure of the to-be-launched object 200 and the acceleration gear 4110 are engaged, and the acceleration gear 4110 can drive the to-be-launched object 200 to rotate when rotating, and the to-be-launched object 200 and the acceleration gear 4110 can be quickly separated when the to-be-launched object 200 is launched. The rotation of the acceleration gear 4110 is realized by the pulling member 1000, the pulling member 1000 drives the acceleration gear 4110 to rotate through the acceleration end 1200, so that the linear movement of the pulling member 1000 is converted into the rotation of the acceleration gear 4110, and the acceleration end 1200 can directly drive the acceleration gear 4110 to rotate or indirectly drive the acceleration gear 4110 to rotate.
[0068] In combination Figures 6 to 8 As shown, in some embodiments, the acceleration mechanism 4100 further comprises a first transmission gear 4120, the acceleration end 1200 is adapted to engage with the first transmission gear 4120 to drive the first transmission gear 4120 to rotate, and the first transmission gear 4120 engages with the acceleration gear 4110 to drive the acceleration gear 4110 to rotate.
[0069] The acceleration end 1200 is adapted to engage with the first transmission gear 4120, that is, the acceleration end 1200 has a gear structure, and the movement of the pulling member 1000 is linear movement, which can be converted into the rotation of the first transmission gear 4120 through the cooperation of the acceleration end 1200 and the first transmission gear 4120. Through such an arrangement, the pulling member 1000 can be moved more quickly, so that the rotation speed of the first transmission gear 4120 is faster, and the rotation speed of the to-be-launched object 200 is faster. The first transmission gear 4120 engages with the acceleration gear 4110, so that the acceleration end 1200 drives the first transmission gear 4120 to rotate, the first transmission gear 4120 drives the acceleration gear 4110 to rotate, and the acceleration gear 4110 drives the to-be-launched object 200 to rotate. For example, the pulling member 1000 drives the first transmission gear 4120 to rotate through the acceleration end 1200 when being pulled out, and the first transmission gear 4120 drives the acceleration gear to rotate.
[0070] In combination Figures 6 to 9As shown, in some embodiments, the launching mechanism 4200 comprises a push plate 4210, a locking member 4220 and a first elastic member 4291, when the object to be launched 200 is installed on the launcher 4000, the object to be launched 200 is adapted to abut against and move the push plate 4210, the locking member 4220 is adapted to lock the push plate 4210 when the push plate 4210 moves to a preset position, the locking member 4220 is also adapted to be driven by the launching end 1100 to unlock the push plate 4210, and the first elastic member 4291 is adapted to generate a force on the push plate 4210 to drive the push plate 4210 to reset when the locking member 4220 unlocks the push plate 4210, so that the push plate 4210 drives the object to be launched 200 to launch.
[0071] Specifically, the object to be launched 200 is installed on the launcher 4000 in a moving manner, see Figure 6 In the orientation shown, the object to be launched 200 is installed on the launcher 4000 by moving forward to backward, when the object to be launched 200 is installed on the launcher 4000, the object to be launched 200 abuts against the push plate 4210, and the object to be launched 200 drives the push plate 4210 to move backward, in the process of moving backward, the first elastic member 4291 is elastically deformed to accumulate elastic potential energy, the first elastic member 4291 generates a force on the push plate 4210 in the forward direction, and the push plate 4210 is locked by the locking member 4220 when the push plate 4210 moves to a preset position (i.e. the position when it can be locked by the locking member 4220). Due to the locking of the locking member 4220, the push plate 4210 will not reset (here, reset means that the push plate 4210 moves to the position before the object to be launched 200 is installed on the launcher 4000, i.e. the push plate 4210 moves forward) to drive the object to be launched 200 to launch. It can be understood that the force generated by the first elastic member 4291 on the target can be direct or indirect, i.e. the force generated by the first elastic member 4291 on the push plate 4210 can be directly applied to the push plate 4210 or indirectly applied to the push plate 4210, and the same applies to the force generated by other elastic members in this document, which will not be repeated here.
[0072] The launching of the to-be-launched object 200 needs to unlock the push plate 4210 by pulling the launching end 1100 of the pulling member 1000 to drive the locking member 4220. When the pulling member moves, the launching end 1100 drives the locking member 4220, so that the locking member 4220 unlocks the push plate 4210. In the case of unlocking the push plate 4210, the elastic potential energy of the first elastic member 4291 is released, and the first elastic member 4291 can drive the push plate 4210 to reset (move forward). When the push plate 4210 resets, it supports the to-be-launched object 200, thereby generating a force on the to-be-launched object 200, so that the to-be-launched object 200 is launched. It can be understood that the launching mechanism 4200 can also be provided with a second elastic member 4292, which acts on the locking member 4220 to drive the locking member 4220 to reset after launching the to-be-launched object 200, facilitating locking of the push plate 4210 when the to-be-launched object 200 is installed next time.
[0073] In combination Figures 5 to 9 As shown in the drawings, in some embodiments, the launching mechanism 4200 further includes a rotating member 4230. The launching end 1100 is adapted to drive the rotating member 4230 to rotate when the pulling member 1000 moves in one of the insertion and pulling directions, so that the rotating member 4230 drives the locking member 4220 to unlock the push plate 4210. The launching end 1100 is adapted to drive the rotating member 4230 to rotate reversely (reversely rotating means that the rotating direction of the rotating member 4230 when the pulling member 1000 is inserted is opposite to the rotating direction of the rotating member 4230 when the pulling member 1000 is pulled out) when the pulling member 1000 moves in the other of the insertion and pulling directions, so that the rotating member 4230 and the locking member 4220 are separated.
[0074] Hereinafter, the case that the launching end 1100 drives the rotating member 4230 to rotate to drive the locking member 4220 to unlock the push plate 4210 when the pulling member 1000 is pulled out, and drives the rotating member 4230 to rotate reversely to separate the rotating member 4230 and the locking member 4220 when the pulling member 1000 is inserted is taken as an example for description.
[0075] For example, the to-be-launched object 200 is first installed on the launcher 4000, at this time the push plate 4210 is locked by the locking member 4220, then the pulling member 1000 is inserted into the launcher 4000, when the pulling member 1000 is inserted, the pulling member 1000 drives the rotating member 4230 to rotate through the launching end 1100 and makes the rotating member 4230 and the locking member 4220 separate, the rotating member 4230 does not act on the locking member 4220 to unlock the push plate 4210, and when the pulling member 1000 is pulled out, the pulling member 1000 drives the rotating member 4230 to rotate (in the opposite direction) through the launching end 1100, so that the rotating member 4230 acts on the locking member 4220 to unlock the push plate 4210. The pulling member 1000 can drive the rotating member 4230 to rotate when the pulling member 1000 is inserted and pulled out, and the rotating direction of the rotating member 4230 when the pulling member 1000 is inserted is opposite to the rotating direction of the rotating member 4230 when the pulling member 1000 is pulled out, so that the locking member 4220 can be prevented from being affected when the pulling member 1000 is inserted, and the locking member 4220 can be unlocked when the pulling member 1000 is pulled out.
[0076] Alternatively, the pulling member 1000 and the rotating member 4230 are matched through the following scheme. In combination with Figures 9 to 12 As shown in the drawings, the rotating member 4230 is provided with a first contact portion 4231 and a second contact portion 4232, and the launching end 1100 forms a groove; the first contact portion 4231 is adapted to be sequentially inserted into and out of the groove when the pulling member 1000 moves in one of the insertion and pulling-out directions, so that the rotating member 4230 rotates and the second contact portion 4232 drives the locking member 4220 to unlock the push plate 4210; the first contact portion 4231 is adapted to be sequentially inserted into and out of the groove when the pulling member 1000 moves in the other of the insertion and pulling-out directions, so that the rotating member 4230 reversely rotates and the second contact portion 4232 and the locking member 4220 separate.
[0077] The first contact portion 4231 and the second contact portion 4232 can rotate around the rotation axis of the rotating member 4230, for example, the rotating member 4230 includes a central shaft portion 4233 and the first contact portion 4231 and the second contact portion 4232 are arranged on the central shaft portion 4233, the rotation axis of the rotating member 4230 is formed by the central shaft portion 4233, and the first contact portion 4231 and the second contact portion 4232 present a certain included angle in space.
[0078] Hereinafter, the case that the launching end 1100 drives the rotating member 4230 to rotate when the pulling member 1000 is pulled out so that the rotating member 4230 drives the locking member 4220 to unlock the push plate 4210, and drives the rotating member 4230 to reversely rotate when the pulling member 1000 is inserted so that the rotating member 4230 and the locking member 4220 separate is taken as an example for description.
[0079] Referring toFigure 11 and Figure 12 As shown in the orientation of FIG. 42, when the pulling member 1000 is inserted, the first contact portion 4231 is engaged into the groove, and as the pulling member 1000 is continuously inserted, the first contact portion 4231 is disengaged from the groove, and in the process of the first contact portion 4231 being disengaged from the groove, the rotating member 4230 is rotated (clockwise), and the rotation of the rotating member 4230 causes the second contact portion 4232 to rotate to disengage the second contact portion 4232 from the locking member 4220, and as the second contact portion 4232 is disengaged from the locking member 4220, the second contact portion 4232 does not cause the locking member 4220 to unlock the push plate 4210, and thus the locking member 4220 remains locked to the push plate 4210. When the pulling member 1000 is pulled out, the first contact portion 4231 is engaged into the groove, and as the pulling member 1000 is continuously pulled out, the first contact portion 4231 is disengaged from the groove, and in the process of the first contact portion 4231 being disengaged from the groove, the rotating member 4230 is rotated (counterclockwise), and the rotation of the rotating member 4230 causes the second contact portion 4232 to rotate to cause the second contact portion 4232 to unlock the push plate 4210.
[0080] In combination Figure 6 and Figure 7 As shown in the orientation of FIG. 42, in some embodiments, the launching mechanism 4200 further comprises a third elastic member 4293 adapted to generate a force to the rotating member 4230 to cause the rotating member 4230 to have a tendency to rotate, and the rotating member 4230 is adapted to abut against the pulling member 1000 under the action of the rotating tendency, and is adapted to cause the first contact portion 4231 to be engaged into the groove under the action of the rotating tendency when the groove and the first contact portion 4231 correspond.
[0081] Hereinafter, the rotating member 4230 is caused to rotate by the launching end 1100 to cause the rotating member 4230 to unlock the push plate 4210 when the pulling member 1000 is pulled out, and the rotating member 4230 is caused to rotate reversely by the launching end 1100 to cause the rotating member 4230 to disengage from the locking member 4220 when the pulling member 1000 is inserted, is taken as an example for description.
[0082] Referring to Figure 11 and Figure 12 Before the pulling member 1000 is inserted into the launcher 4000, the first contact portion 4231 is protruded downward, and the locking member 4220 is located on the rotation path of the second contact portion 4232 counterclockwise, and when the rotating member 4230 rotates clockwise, the second contact portion 4232 is away from the locking member 4220, and when the rotating member 4230 rotates counterclockwise, the second contact portion 4232 causes the locking member 4220 to unlock the push plate 4210.
[0083] That is, when the pulling member 1000 is inserted into the launcher 4000, the pulling member 1000 pushes the first contact portion 4231 to rotate the rotating member 4230 clockwise until the groove and the first contact portion 4231 correspond, the third elastic member 4293 drives the rotating member 4230 to rotate counterclockwise to make the first contact portion 4231 be clamped into the groove (at this time, the first contact portion 4231 is protruded downward), with the continuous insertion of the pulling member 1000, the first contact portion 4231 is pushed to rotate the rotating member 4230 clockwise to make the first contact portion 4231 be out of the groove, and the first contact portion 4231 and the pulling member 1000 are in sliding abutment under the action of the third elastic member 4293.
[0084] When the pulling member 1000 is pulled out of the launcher 4000, the first contact portion 4231 and the pulling member 1000 are in sliding abutment under the action of the third elastic member 4293 until the groove and the first contact portion 4231 correspond, the third elastic member 4293 drives the rotating member 4230 to rotate counterclockwise to make the first contact portion 4231 be clamped into the groove (at this time, the first contact portion 4231 is protruded downward), with the continuous pulling out of the pulling member 1000, the first contact portion 4231 is pushed to rotate the rotating member 4230 counterclockwise to make the first contact portion 4231 be out of the groove, in this process, the rotating member 4230 drives the locking member 4220 to unlock the push plate 4210 through the second contact portion 4232, until the pulling member 1000 is completely pulled out, the rotating member 4230 is driven to rotate clockwise by the third elastic member 4293 to reset the first contact portion 4231 to protrude downward.
[0085] In combination Figure 16 As shown, in some embodiments, the launching mechanism 4200 further comprises a pawl 4240, which is adapted to switch to a first state when the to-be-launched object 200 drives the push plate 4210 to move, and is adapted to switch to a second state when the push plate 4210 drives the to-be-launched object 200 to launch; the pawl 4240 is in the first state on the launching path of the to-be-launched object 200 to stop the to-be-launched object 200, and the pawl 4240 is in the second state away from the launching path of the to-be-launched object 200 to avoid the to-be-launched object 200.
[0086] Specifically, by arranging the pawl 4240, the to-be-launched object 200 can be constrained when the to-be-launched object 200 is installed to the launcher 4000, the installation stability of the to-be-launched object 200 is improved, and the to-be-launched object 200 is prevented from loosening.
[0087] Referring to Figure 16In the shown orientation, when the to-be-launched object 200 is installed to the launcher 4000, the to-be-launched object 200 moves from front to back, the to-be-launched object 200 drives the push plate 4210 to move from front to back, and the push plate 4210 moving from front to back causes the clamping jaw 4240 to switch to the first state. When the clamping jaw 4240 is in the first state, the clamping jaw 4240 is located on the launching path of the to-be-launched object 200, and the clamping jaw 4240 and the push plate 4210 jointly clamp the to-be-launched object 200, thereby improving the installation stability of the to-be-launched object 200. When the locking member 4220 unlocks the push plate 4210, the push plate 4210 moves forward under the action of the first elastic member 4291 and is reset. With the forward movement of the push plate 4210, the clamping jaw 4240 switches from the first state to the second state, and the clamping jaw 4240 leaves the launching path of the to-be-launched object 200. At the same time, the push plate 4210 generates a force on the to-be-launched object 200, so that the to-be-launched object 200 is launched.
[0088] In combination Figure 16 In some embodiments, the clamping jaw 4240 is adapted to move with the push plate 4210. The clamping jaw 4240 is provided with a guide column 4241, and the launching mechanism 4200 further includes a guide groove 4250. The guide column 4241 is clamped into the guide groove 4250, and the guide column 4241 is adapted to make the clamping jaw 4240 rotatably switch between the first state and the second state under the guidance of the guide groove 4250.
[0089] In combination Figure 16 In the shown orientation, no matter whether the push plate 4210 moves backward or forward, the clamping jaw 4240 can be driven by the push plate 4210 to move with the push plate 4210, that is, there is a connection relationship between the clamping jaw 4240 and the push plate 4210, so that the clamping jaw 4240 can move with the push plate 4210. The connection relationship between the clamping jaw 4240 and the push plate 4210 is movable (which lays a foundation for the rotatability of the clamping jaw 4240). In the process of the clamping jaw 4240 moving with the push plate 4210, the guide column 4241 moves along the guide groove 4250. The guide groove 4250 plays a guiding role on the guide column 4241, so that the clamping jaw 4240 is subjected to the action of the push plate 4210 and the action of the guide groove 4250. The two actions force the clamping jaw 4240 to rotatably switch between the first state and the second state.
[0090] More specifically, continuing to refer to Figure 16In the orientation shown, in some embodiments, the launching mechanism 4200 further comprises a limiting member 4260, which is adapted to be located on the installation path of the to-be-launched object 200 and to lock the push plate 4210 before the to-be-launched object 200 is installed on the launcher 4000, and to be driven by the to-be-launched object 200 to unlock the push plate 4210 when the to-be-launched object 200 is installed on the launcher 4000. By such an arrangement, it is avoided that an unsuitable to-be-launched object 200 is placed on the launcher 4000, and the user experience is ensured.
[0091] In combination Figures 13 to 15 In the orientation shown, in some embodiments, the launching mechanism 4200 further comprises a limiting member 4260, which is adapted to be located on the installation path of the to-be-launched object 200 and to lock the push plate 4210 before the to-be-launched object 200 is installed on the launcher 4000, and to be driven by the to-be-launched object 200 to unlock the push plate 4210 when the to-be-launched object 200 is installed on the launcher 4000. By such an arrangement, it is avoided that an unsuitable to-be-launched object 200 is placed on the launcher 4000, and the user experience is ensured.
[0092] Specifically, by arranging the limiting member 4260, the launcher 4000 can only be matched with a suitable to-be-launched object 200, and an unsuitable to-be-launched object 200 is avoided to be installed on the launcher 4000, that is, the to-be-launched object 200 has a structure interacting with the limiting member 4260, and when the to-be-launched object 200 is installed on the launcher 4000, the to-be-launched object 200 can drive the limiting member 4260 to move and unlock the push plate 4210, so that the to-be-launched object 200 can drive the push plate 4210 to move to be locked by the locking member 4220. If an unsuitable to-be-launched object 200 is installed on the launcher 4000, the unsuitable to-be-launched object 200 cannot drive the limiting member 4260 to unlock the push plate 4210, so that the unsuitable to-be-launched object 200 cannot drive the push plate 4210 to move, that is, it cannot be normally installed on the launcher 4000.
[0093] In combination Figures 13 to 15In some embodiments, the limiting member 4260 and the push plate 4210 are rotatably connected, the limiting member 4260 has an abutting portion 4261, a locking portion 4262 and a connecting end 4263, the launching mechanism 4200 further comprises a locking groove 4270, the abutting portion 4261 and the locking portion 4262 are arranged on one side of the rotation center of the limiting member 4260, the connecting end 4263 is arranged on the other side of the rotation center of the limiting member 4260, the first elastic member 4291 is connected with the connecting end 4263 to make the limiting member 4260 have a rotation tendency, the limiting member 4260 is adapted to move the abutting portion 4261 into the installation path of the to-be-launched object 200 and make the locking portion 4262 be clamped into the locking groove 4270 under the action of the rotation tendency.
[0094] Specifically, the first elastic member 4291 is connected with the connecting end 4263, and the first elastic member 4291 generates a force on the push plate 4210 through the limiting member 4260. Referring to Figure 13 and Figure 15 When the push plate 4210 moves backward, the first elastic member 4291 is stretched, and the first elastic member 4291 generates a forward pulling force on the limiting member 4260 and the push plate 4210. When the locking member 4220 unlocks the push plate 4210, the first elastic member 4291 drives the push plate 4210 and the limiting member 4260 to move forward. Since the abutting portion 4261 and the locking portion 4262 are arranged on one side of the rotation center of the push plate 4210, and the connecting end 4263 is arranged on the other side of the rotation center of the push plate 4210, when the first elastic member 4291 exerts a force on the connecting end 4263, the limiting member 4260 also has a rotation tendency. Under the action of the rotation tendency, the abutting portion 4261 moves into the installation path of the to-be-launched object 200, and the locking portion 4262 is clamped into the locking groove 4270.
[0095] More specifically, when the locking member 4220 unlocks the push plate 4210, the first elastic member 4291 pulls the push plate 4210 and the limiting member 4260 to move forward. When the push plate 4210 moves to the limit, the locking portion 4262 corresponds to the locking groove 4270, and the limiting member 4260 rotates under the action of the rotation tendency to make the locking portion 4262 be clamped into the locking groove 4270, thereby completing the locking of the push plate 4210. At the same time, the abutting portion 4261 rotates to move into the installation path of the to-be-launched object 200. When the to-be-launched object 200 is installed into the launcher 4000, the to-be-launched object 200 contacts the abutting portion 4261, and the to-be-launched object 200 pushes the abutting portion 4261, so that the limiting member 4260 rotates, thereby making the locking portion 4262 be separated from the locking groove 4270, and completing the unlocking of the push plate 4210.
[0096] In combination with Figures 3 to 5As shown, in some embodiments, the launching device 100 further comprises a handle 5000 arranged on the launcher 4000 to be suitable for holding, the to-be-launched object 200 is suitable for being launched forward from the launcher 4000, the handle 5000 is arranged on the left side or the right side of the launcher 4000, by arranging in this way, the pulling force on the pulling member 1000 in the holding state is improved, and the use experience is improved.
[0097] In combination Figures 1 to 5 As shown, in some embodiments, the to-be-launched object 200 is suitable for being launched forward from the launcher 4000, the left side and the right side of the launcher 4000 are respectively provided with a first connecting part 4300, and the handle 5000 is suitable for being detachably connected to one of the first connecting part 4300 on the left side and the first connecting part 4300 on the right side. It can be understood that different users have different use habits of left and right hands, for this purpose, in the present embodiment, by arranging the first connecting part 4300 on the two sides of the launcher 4000 respectively, the user can connect the handle 5000 to the first connecting part 4300 on the left side or the first connecting part 4300 on the right side according to the actual situation and the use scene, and the use experience is further improved. It can be understood that there are various ways of detachable connection between the first connecting part 4300 and the to-be-launched object 200, as long as the mutual fixation between the launcher 4000 and the handle 5000 can be ensured when being installed and the mutual detachment can be realized when being required to be detached.
[0098] In combination Figure 3 As shown, in some embodiments, the launcher 4000 is provided with a guide hole 4400, the pulling member 1000 is suitable for being inserted into and detached from the guide hole 4400, the to-be-launched object 200 is suitable for being launched forward from the launcher 4000, and at least two guide holes 4400 arranged alternately in the left-right direction are arranged. When the user holds the handle 5000, if the holding point does not change, different operation experiences can be generated by the pulling member 1000 passing through different guide holes 4400, and the user can select according to the actual situation.
[0099] The present application also discloses a launching toy, in combination Figure 1 As shown, the launching toy comprises the to-be-launched object 200 and the above-mentioned launching device 100, it can be understood that the launching device 100 of the launching toy of the present embodiment adopts the technical solutions of the above-mentioned embodiments, and therefore at least has the beneficial effects brought by the technical solutions of the above-mentioned embodiments, which will not be repeated here.
[0100] The above-mentioned is only the preferred embodiment of the present application, and does not limit the patent scope of the present application, any equivalent structural transformation made by using the content of the present application specification and drawings, or direct / indirect application in other related technical fields is included in the patent protection scope of the present application.
Claims
1. A transmitting device (100), characterized by The application relates to a launching device, comprising: a launcher (4000) adapted to be mounted with a to-be-launched object (200), the launcher (4000) comprising an acceleration mechanism (4100) and a launching mechanism (4200); a pulling member (1000) adapted to be inserted into and pulled out of the launcher (4000), the pulling member (1000) comprising an acceleration end (1200) and a launching end (1100), the acceleration end (1200) being adapted to drive the acceleration mechanism (4100) during the process of inserting and / or pulling out the pulling member (1000) into and out of the launcher (4000), so that the acceleration mechanism (4100) drives the to-be-launched object (200) to rotate, and the launching end (1100) being adapted to drive the launching mechanism (4200) when the pulling member (1000) is inserted into and / or pulled out of the launcher (4000), so that the launching mechanism (4200) drives the to-be-launched object (200) to launch.
2. The transmitting apparatus (100) of claim 1, characterized by The pulling member (1000) is adapted to drive the acceleration mechanism (4100) first and then the launching mechanism (4200) when being pulled out. Or, the pulling member (1000) is adapted to drive the acceleration mechanism (4100) first and then the launching mechanism (4200) when being inserted.
3. The transmitting apparatus (100) of claim 1, characterized by The acceleration mechanism (4100) comprises an acceleration gear (4110), and the acceleration end (1200) is adapted to drive the acceleration gear (4110) to rotate, and the acceleration gear (4110) is adapted to drive the to-be-launched object (200) to rotate.
4. The transmitting apparatus (100) of claim 3, characterized by The acceleration mechanism (4100) further comprises a first transmission gear (4120), and the acceleration end (1200) is adapted to mesh with the first transmission gear (4120) to drive the first transmission gear (4120) to rotate, and the first transmission gear (4120) meshes with the acceleration gear (4110) to drive the acceleration gear (4110) to rotate.
5. The transmitting apparatus (100) of claim 1, characterized by The launching mechanism (4200) comprises: a pushing plate (4210), when the to-be-launched object (200) is mounted on the launcher (4000), the to-be-launched object (200) is adapted to abut against the pushing plate (4210) and drive the pushing plate (4210) to move; a locking member (4220) adapted to lock the pushing plate (4210) when the pushing plate (4210) moves to a preset position, and the locking member (4220) is further adapted to be driven by the launching end (1100) to unlock the pushing plate (4210); a first elastic member (4291) adapted to generate a force on the pushing plate (4210) to drive the pushing plate (4210) to reset when the locking member (4220) unlocks the pushing plate (4210), so that the pushing plate (4210) drives the to-be-launched object (200) to launch.
6. The transmitting apparatus (100) of claim 5, characterized by The launching mechanism (4200) further comprises a rotating member (4230), the launching end (1100) is adapted to drive the rotating member (4230) to rotate when the pulling member (1000) moves in one of the inserting and pulling directions, so that the rotating member (4230) drives the locking member (4220) to unlock the push plate (4210), the launching end (1100) is adapted to drive the rotating member (4230) to rotate reversely when the pulling member (1000) moves in the other of the inserting and pulling directions, so that the rotating member (4230) and the locking member (4220) are separated.
7. The transmitting apparatus (100) according to claim 6, characterized in that The rotating member (4230) is provided with a first contact portion (4231) and a second contact portion (4232), and the launching end (1100) forms a groove; The first contact portion (4231) is adapted to be sequentially clamped into and out of the groove when the pulling member (1000) moves in one of the inserting and pulling directions, so that the rotating member (4230) rotates, and the second contact portion (4232) drives the locking member (4220) to unlock the push plate (4210); The first contact portion (4231) is adapted to be sequentially clamped into and out of the groove when the pulling member (1000) moves in the other of the inserting and pulling directions, so that the rotating member (4230) reversely rotates, and the second contact portion (4232) and the locking member (4220) are separated.
8. The transmitting apparatus (100) according to claim 7, characterized in that The launching mechanism (4200) further comprises a third elastic member (4293), the third elastic member (4293) is adapted to generate a force on the rotating member (4230) to make the rotating member (4230) have a rotating tendency, the rotating member (4230) is adapted to abut against the pulling member (1000) under the action of the rotating tendency, and is adapted to drive the first contact portion (4231) to be clamped into the groove under the action of the rotating tendency when the groove and the first contact portion (4231) correspond.
9. The transmitting apparatus (100) according to claim 5, characterized in that The launching mechanism (4200) further comprises a pawl (4240), the pawl (4240) is adapted to switch to a first state when the to-be-launched object (200) drives the push plate (4210) to move, and is adapted to switch to a second state when the push plate (4210) drives the to-be-launched object (200) to launch; The pawl (4240) is in the launching path of the to-be-launched object (200) in the first state to stop the to-be-launched object (200), and the pawl (4240) is out of the launching path of the to-be-launched object (200) in the second state to avoid the to-be-launched object (200).
10. The transmitting apparatus (100) according to claim 9, characterized by The claw (4240) is adapted to move along with the push plate (4210), the claw (4240) is provided with a guide column (4241), the launching mechanism (4200) further comprises a guide groove (4250), the guide column (4241) is clamped into the guide groove (4250), and the guide column (4241) is adapted to make the claw (4240) rotatably switch between the first state and the second state under the guidance of the guide groove (4250).
11. The transmitting apparatus (100) according to claim 5, characterized in that The launching mechanism (4200) further comprises a limiting member (4260), the limiting member (4260) is adapted to be located on the mounting path of the to-be-launched object (200) and lock the push plate (4210) before the to-be-launched object (200) is mounted on the launcher (4000), and the limiting member (4260) is adapted to be driven by the to-be-launched object (200) to unlock the push plate (4210) when the to-be-launched object (200) is mounted on the launcher (4000).
12. The transmitting apparatus (100) according to claim 11, characterized by The limiting member (4260) and the push plate (4210) are rotatably connected, the limiting member (4260) has an abutting portion (4261), a locking portion (4262) and a connecting end (4263), the abutting portion (4261) and the locking portion (4262) are located on one side of the rotation center of the limiting member (4260), the connecting end (4263) is located on the other side of the rotation center of the limiting member (4260), the first elastic member (4291) is connected with the connecting end (4263) to make the limiting member (4260) have a rotation tendency, and the limiting member (4260) is adapted to make the abutting portion (4261) move into the mounting path of the to-be-launched object (200) and make the locking portion (4262) be clamped into the locking groove (4270) under the action of the rotation tendency.
13. The transmitting apparatus (100) according to claim 1, characterized in that The launching device (100) further comprises a handle (5000), the handle (5000) is arranged on the launcher (4000) to be adapted to be held, and the to-be-launched object (200) is adapted to be launched forward from the launcher (4000).
14. The transmitting apparatus (100) according to claim 1, characterized in that The launching device (100) further comprises a handle (5000), the handle (5000) is arranged on the launcher (4000) to be adapted to be held, and the to-be-launched object (200) is adapted to be launched forward from the launcher (4000). Left and right sides of the launcher (4000) are respectively provided with a first connecting portion (4300), and the handle (5000) is adapted to be detachably connected to one of the first connecting portion (4300) on the left side and the first connecting portion (4300) on the right side.
15. The transmitting apparatus (100) according to claim 1, characterized in that The launcher (4000) is provided with guide holes (4400), the pulling member (1000) is suitable for being inserted into and pulled out of the guide holes (4400), and the object to be launched (200) is suitable for being launched forward from the launcher (4000), and at least two guide holes (4400) are arranged in the left-right direction.
16. A launching toy characterized by The launcher (4000) is provided with guide holes (4400), the pulling member (1000) is suitable for being inserted into and pulled out of the guide holes (4400), and the object to be launched (200) is suitable for being launched forward from the launcher (4000), and at least two guide holes (4400) are arranged in the left-right direction.