Toy clamping and issuing structure
By designing a toy clamping and dispensing structure with rotating brackets and clamping components, the problem of dispensing items in simulated scenarios was solved, enhancing the immersion and fun of the toys while reducing production costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-19
- Publication Date
- 2026-04-14
AI Technical Summary
Existing toys struggle to effectively distribute items in simulated real-world scenarios, lacking immersion and fun.
A toy clamping and dispensing structure was designed, comprising a rotating bracket, a clamping component, and a driving component. By utilizing the cooperation of the rotating bracket and the clamping component, the driving component drives the linkage rod to rise and fall, triggering the opening and closing of the clamping component, thereby dispensing the toy.
It enables the toys to dispense items in simulated scenarios, enhancing their interactivity and fun, while reducing the number of motors and lowering production costs.
Smart Images

Figure CN224117822U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of toys, and more particularly to a toy clamping and dispensing structure. Background Technology
[0002] Existing toys often require more diverse play options to satisfy people's needs. To this end, many toy manufacturers have produced a wide variety of scenario-based toys to enhance their fun and thus increase their appeal to consumers.
[0003] For example, toys featuring convenience store scenarios, restaurant scenarios, and vending machines can provide children with fun through role-playing and interaction. However, with technological advancements and competition from similar products, relying solely on the design is insufficient to create a sense of immersion for children. Therefore, it is necessary to incorporate some of the functions of these scenarios in real life. Among these scenarios, the most common function is product distribution, which often requires toys to incorporate gripping and dispensing structures to give them a certain dispensing capability and make them more closely resemble real-life scenarios.
[0004] To address the aforementioned issues, this solution proposes a toy clamping and dispensing structure. Utility Model Content
[0005] To solve the above-mentioned technical problems, this utility model provides a toy clamping and dispensing structure, including: a rotating bracket, a clamping component, and a driving component;
[0006] The rotating bracket includes: a rotating base, a rotating shaft, an upper fixed frame, and a lower fixed frame. The rotating shaft is installed above the rotating base. The rotating shaft is hollow and has a liftable linkage rod inside. The linkage rod has a lifting part. The upper fixed frame and the lower fixed frame are installed at the upper and lower ends of the rotating shaft. The lower part of the upper fixed frame has an installation shaft.
[0007] The clamping component includes several sets of clamping arms. The clamping arms are detachably mounted between the upper fixed frame and the lower fixed frame via the mounting shaft. Each clamping arm is provided with an elastic ring, which causes the clamping arm to tend to tighten inward. A pushing part that can cooperate with the lifting part is provided at the rear of the clamping arm.
[0008] The driving component can drive the rotating base to rotate and cause the linkage rod to move up and down during the process. Then, the lifting part of the linkage rod abuts against the pushing part, allowing the clamping arm to overcome the elastic force of the elastic ring and perform an unfolding action.
[0009] The driving components include: a drive motor, a transmission gear set, a wave wheel, and a lifting rod;
[0010] The drive motor is connected to the wave wheel via the transmission gear set. The lifting rod is swayably mounted below the wave wheel, and the other end of the lifting rod is connected to the linkage rod. Thus, the drive motor can drive the linkage rod to move up and down through the wave wheel.
[0011] The transmission gear set is also connected to a bracket rotating shaft, which has a first bracket gear and a second bracket gear on the rotating base. The first bracket gear and the second bracket gear mesh with each other, thereby driving the drive motor to rotate the rotating bracket.
[0012] The clamping arm includes a first clamping arm and a second clamping arm. The first clamping arm has a first extension, which has a pivot pin and a first bushing. The pushing part is an inclined surface located at the rear end of the first extension. The second clamping arm has a second extension, which has a pivot insertion hole and a second bushing. The pivot pin is slidably inserted into the pivot insertion hole.
[0013] The first extension has an elastic ring engaging protrusion above it, and the elastic ring engages below the elastic ring engaging protrusion, thereby causing the clamp to be tightened by the elastic force of the elastic ring.
[0014] The lower fixed frame is equipped with partition plates, which divide the periphery of the rotating bracket into several parts that correspond to the upper and lower parts of the clamp.
[0015] The partition enclosure has a one-way opening and closing baffle installed below it via a spring.
[0016] The clamping components are arranged in a double-layered, staggered configuration on the rotating bracket.
[0017] Implementing this utility model embodiment has the following beneficial effects: ① The toy distribution function is realized through the rotating bracket and clamping components, thereby meeting the needs for item distribution in various simulated scenarios and enhancing the interactivity and fun of the toys. ② The rotating bracket is rotated by a driving component, and the wave wheel lever is used to drive the linkage rod to raise and lower, triggering the opening and closing of the clamping components. Compared with the traditional solution that uses multiple motors to realize the rotation and distribution actions, this saves the number of motors and reduces production costs. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the present invention;
[0019] Figure 2 This is a schematic diagram of the rotating bracket of this utility model, wherein (A) is a schematic diagram of the rotating bracket in the assembled state, and (B) is a schematic diagram of the rotating bracket in the disassembled state.
[0020] Figure 3 This is a schematic diagram of the driving component of this utility model, wherein (A) is a front view of the driving component and (B) is a bottom view of the driving component;
[0021] Figure 4 This is a schematic diagram of the clamping component of this utility model, wherein (A) is a schematic diagram of the clamping arms connected in series, and (B) is a schematic diagram of the disassembly of a single clamping arm.
[0022] Figure 5 This is a schematic diagram of the clamping component of this utility model, which has a double-layer design and is equipped with a baffle. Detailed Implementation
[0023] To make the objectives, technical solutions and advantages of this utility model clearer, the utility model will be described in further detail below with reference to the accompanying drawings.
[0024] like Figure 1 As shown, a toy clamping and dispensing structure includes a rotating bracket 1, a clamping component 2, and a driving component 3.
[0025] like Figure 1 , Figure 2 As shown, the rotating bracket 1 includes: a rotating base 11, a rotating shaft 12, an upper fixing frame 13, and a lower fixing frame 14. The rotating shaft 12 is installed above the rotating base 11. The rotating shaft 12 is hollow and has a liftable linkage rod 121 inside. The linkage rod 121 has a lifting part 122. The upper fixing frame 13 and the lower fixing frame 14 are installed at the upper and lower ends of the rotating shaft 12. The lower part of the upper fixing frame 13 has several mounting shafts 131.
[0026] like Figure 3 As shown, the clamp component 2 includes several sets of clamping arms 21. The clamping arms 21 are detachably mounted between the upper fixed frame 13 and the lower fixed frame 14 via the mounting shaft 131. The clamping arms 21 are provided with elastic rings 211, which makes the clamping arms 21 tend to tighten inward. The rear of the clamping arms 21 is provided with a pushing part 212 that can cooperate with the lifting part 122.
[0027] The driving component 3 can drive the rotating base 11 to rotate and cause the linkage rod 121 to move up and down during the process. Then, the lifting part 122 of the linkage rod 121 abuts against the pushing part 212, and the clamping arm 21 overcomes the elastic force of the elastic ring 211 and performs an unfolding action.
[0028] like Figure 4 As shown, the driving component includes: a drive motor, a transmission gear set, a wave wheel, and a lifting rod.
[0029] The driving component 3 includes: a drive motor 31, a transmission gear set 32, a wave wheel 33, and a lifting rod 34;
[0030] The drive motor 31 is connected to the wave wheel 33 via the transmission gear set 32. The lifting rod 34 is swayably mounted below the wave wheel 33. The other end of the lifting rod 34 is connected to the linkage rod 121. Thus, the drive motor 31 can drive the linkage rod 121 to move up and down through the wave wheel 33.
[0031] In another direction, the transmission gear set 32 is also connected to the bracket rotating shaft 321. The bracket rotating shaft 321 has a first bracket gear 322 and a second bracket gear 111 is provided on the rotating base 11. The first bracket gear 322 and the second bracket gear 111 mesh with each other and drive each other, so that the drive motor 31 can drive the rotating bracket 1 to rotate.
[0032] When the drive motor 31 is working, it can drive the wave wheel 33 to swing the lifting rod 34, which in turn drives the linkage rod 121 to perform lifting and lowering actions. During the lifting and lowering process, the linkage rod 121 uses the lifting part 122 to abut against the pushing part, and changes the direction of the force through the inclined surface on the lifting part 122 that faces the pushing part 212, so that the clamping arm 21 moves away from the rotating bracket 1, thereby causing the clamping arm 1 to unfold.
[0033] like Figure 5 As shown, it includes a first clamping arm 213 and a second clamping arm 214. The first clamping arm 213 has a first extension 2131. The first extension 2131 has a pivot pin 2132 and a first bushing 2133. The pushing part 212 is an inclined surface provided at the rear end of the first extension 2131.
[0034] The second clamping arm 214 has a second extension 2141, the second extension 2141 has a swivel insertion hole 2142 and a second bushing 2143, and the swivel pin 2132 is slidably inserted into the swivel insertion hole 2142.
[0035] It should be noted that during installation, the first bushing 2133 and the second bushing 2143 are connected vertically and simultaneously fitted onto the outside of the mounting shaft 131.
[0036] More preferably, an elastic ring engaging protrusion 2134 is provided above the first extension 2131, and the elastic ring 211 is engaged below the elastic ring engaging protrusion 2134, thereby causing the clamping arm 21 to be tightened by the elastic force of the elastic ring 211.
[0037] More preferably, a one-way opening and closing baffle 15 is provided below the lower fixing frame 14 via a spring.
[0038] More preferably, the clamping component 2 is arranged in a double-layered staggered configuration on the rotating bracket 1. Of course, the double-layered configuration is only a preferred embodiment of this invention. Users can flexibly reduce or remove the number of layers according to actual needs. This application does not impose any specific restrictions on this. Any structure that uses the structure disclosed in this application for simple transformation should fall within the protection scope of this application.
[0039] The following will combine Figures 1-5 The unfolding action of the fixture components is explained as follows:
[0040] When the pushing part 212 of the first clamping arm 213 is pushed by the lifting part 122, the inclined surface causes the first clamping arm 213 to move outward. Since the first clamping arm 213 and the second clamping arm 214 are slidably connected by the swing pin 2132 and the swing hole 2142, the first clamping arm 213 and the second clamping arm 214 swing outward with the mounting shaft 131 as the center of rotation, and finally the first clamping arm 213 and the second clamping arm 214 unfold against the contraction tendency of the elastic ring 211.
[0041] The lower fixed frame 14 is provided with a partition plate 141, which divides the periphery of the rotating bracket 1 into several parts that correspond to the upper and lower parts of the clamping arm 21. The clamping arm 21 can release the toy it is holding and let it fall into the position divided by the partition plate 141. Under the action of gravity, it pushes open the lower baffle 15 and falls out.
[0042] Of course, the above embodiments are only for illustrating the technical concept and features of this utility model, and their purpose is to enable those skilled in the art to understand the content of this utility model and implement it accordingly. They should not be used to limit the protection scope of this utility model. All modifications made in accordance with the spirit and essence of the main technical solution of this utility model should be covered within the protection scope of this utility model.
Claims
1. A gripping and dispensing structure for a toy, characterized in that, include: Rotary support (1), clamping component (2) and drive component (3); The rotating bracket (1) includes: a rotating base (11), a rotating shaft (12), an upper fixing frame (13), and a lower fixing frame (14). The rotating shaft (12) is installed above the rotating base (11). The rotating shaft (12) is hollow and has a liftable linkage rod (121) inside. The linkage rod (121) has a lifting part (122). The upper fixing frame (13) and the lower fixing frame (14) are installed at the upper and lower ends of the rotating shaft (12). The lower part of the upper fixing frame (13) has several mounting shafts (131). The clamp component (2) includes several sets of clamping arms (21). The clamping arms (21) are detachably mounted between the upper fixed frame (13) and the lower fixed frame (14) via the mounting shaft (131). The clamping arms (21) are provided with elastic rings (211) so that the clamping arms (21) tend to tighten inward. The rear of the clamping arms (21) is provided with a pushing part (212) that can cooperate with the lifting part (122). The driving component (3) can drive the rotating base (11) to rotate and cause the linkage rod (121) to move up and down during the process. Then the lifting part (122) of the linkage rod (121) abuts against the pushing part (212), and the clamping arm (21) overcomes the elastic force of the elastic ring (211) and performs an unfolding action.
2. The toy clamping and dispensing structure according to claim 1, characterized in that, The drive component (3) includes: a drive motor (31), a transmission gear set (32), a wave wheel (33), and a lifting rod (34). The drive motor (31) is connected to the wave wheel (33) through the transmission gear set (32). The lifting rod (34) is swayably installed below the wave wheel (33). The other end of the lifting rod (34) is connected to the linkage rod (121). Thus, the drive motor (31) can drive the linkage rod (121) to move up and down through the wave wheel (33).
3. The toy clamping and dispensing structure according to claim 2, characterized in that, The transmission gear set (32) is also connected to the bracket rotating shaft (321), the bracket rotating shaft (321) has a first bracket gear (322), and the rotating base (11) is provided with a second bracket gear (111). The first bracket gear (322) and the second bracket gear (111) mesh with each other and drive each other, so that the drive motor (31) can drive the rotating bracket (1) to rotate.
4. The toy clamping and dispensing structure according to claim 1, characterized in that, The clamping arm (21) includes a first clamping arm (213) and a second clamping arm (214); The first clamping arm (213) has a first extension (2131), the first extension (2131) has a swivel pin (2132) and a first bushing (2133), and the pushing part (212) is an inclined surface provided at the rear end of the first extension (2131); The second clamping arm (214) has a second extension (2141), the second extension (2141) has a swivel insertion hole (2142) and a second bushing (2143), and the swivel pin (2132) is slidably inserted into the swivel insertion hole (2142).
5. The toy clamping and dispensing structure according to claim 4, characterized in that, The first extension (2131) has an elastic ring engaging protrusion (2134) above it. The elastic ring (211) engages below the elastic ring engaging protrusion (2134), thereby causing the clamping arm (21) to be tightened by the elastic force of the elastic ring (211).
6. The toy clamping and dispensing structure according to claim 1, characterized in that, The lifting part (122) has an inclined surface that faces the pushing part (212).
7. The toy clamping and dispensing structure according to claim 1, characterized in that, The lower fixed frame (14) is provided with a partition plate (141), which divides the periphery of the rotating bracket (1) into several parts that correspond to the upper and lower parts of the clamping arm (21).
8. The toy clamping and dispensing structure according to claim 7, characterized in that, The lower fixing frame (14) is provided with a one-way opening and closing baffle (15) via a spring.
9. The toy clamping and dispensing structure according to claim 1, characterized in that, The clamping component (2) is arranged in a double-layered staggered configuration on the rotating bracket (1).