Double-layer mahjong pushing decompression toy
By designing the upper and lower double-layer slide rails and elastic impact sound structure, the existing push card decompression toys are solved, and the problem of the hard-working feel and unbridled sound is provided, providing smooth sliding and crisp sound decompression effect.
Patent Information
- Application Number
- CN202422296436.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-20
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-09-20
AI Technical Summary
The existing card-pushing toys are laborious to push, have poor feel, and are not crisp enough to meet consumers' demand for decompression experience.
The upper and lower double-layer slide rails are designed, and the channel steel slider and square bar guide rail are combined with the ball holder to achieve stable and smooth sliding of the upper and lower push blocks, and an elastic impact sound structure is set on the slide rails to produce crisp sound through compression springs and zirconium beads.
It realizes the smooth sliding feel and crisp sound feedback of the card-pushed unzipping toy, improving the user's decompression experience.
Smart Images

Figure CN223170315U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of decompression toys, in particular to a double-layer card-pushing decompression toy. Background Art
[0002] With the rapid development of social economy, people are constantly realizing self-worth in line with the economic development and working hard to create better living conditions. In the process of people pursuing and achieving goals, they usually encounter various pressures. To relieve and release pressure, they usually adjust their self-emotions or rely on the external environment or the feelings of vision, hearing, and touch to achieve the purpose of relieving and releasing pressure, such as traveling, watching movies, listening to music, doing sports, etc. In order to be more convenient and fast, and relieve pressure anytime and anywhere, some decompression toys have been introduced, such as squeeze toys, fingertip gyroscopes, card-pushing toys, etc. The existing card-pushing decompression toys are usually designed with concave-convex matching guide rails to achieve linear pushing, and magnets arranged at linear intervals. By pushing, strong magnetic adsorption is achieved, making a "click" sound, and the inertia of the strong magnetic adsorption instantaneously gives a feedback to the hand feeling. Such card-pushing decompression toys are usually difficult to push, have a poor hand feeling, and the generated sound is not clear enough. Therefore, optimization and improvement are needed to meet the needs of consumers. Summary of the Utility Model
[0003] In view of this, the utility model provides a double-layer card-pushing decompression toy. By designing upper and lower double-layer slide rails, the card-pushing on the upper and lower sides can linearly slide back and forth smoothly and effortlessly. When designing linear sliding, an elastic impact sound-producing structure is provided to make a clear metallic impact sound when hitting.
[0004] The technical solution disclosed by the utility model, a double-layer card-pushing decompression toy, includes a middle slide seat, an upper pusher block arranged on the top surface of the middle slide seat, and a lower pusher block arranged on the bottom surface of the middle slide seat. A first groove is provided on the top surface of the middle slide seat, and a first slide rail is arranged in the first groove. A second groove is provided on the bottom surface of the middle slide seat, and a second slide rail is arranged in the second groove. An elastic impact sound-producing structure is provided on the top surface and / or the bottom surface of the middle slide seat.
[0005] Furthermore, both the first groove and the second groove of the middle slide seat are arranged along the length direction of the middle slide seat, and the first groove and the second groove are respectively located at staggered positions on the top surface and the bottom surface of the middle slide seat.
[0006] Furthermore, both the first slide rail and the second slide rail include channel steel type sliders, square bar type guide rails, and ball retainers. The left and right groove walls of the channel steel type slider are provided with first grooves, and the left and right side walls of the square bar type guide rail are provided with second grooves. The ball retainer is a strip-shaped plastic bracket, and a plurality of holes are arranged at intervals along the length direction of the strip-shaped plastic bracket. Steel balls that can rotate in the holes are arranged in the holes. The opposite spherical surfaces of the steel balls respectively enter the first groove and the second groove. Among them, the first groove and the second groove are fixedly connected to the channel steel type slider, and the upper push block and the lower push block are fixedly connected to the square bar type guide rail.
[0007] Furthermore, the elastic impact sound generating structure is that wave grooves composed of a plurality of continuous concave spherical surfaces arranged along the length direction are provided on the top surface and the bottom surface of the middle sliding seat. Groove positions are provided at the bottom surface of the upper push block and the top surface of the lower push block opposite to the wave grooves. Compression springs are arranged in the groove positions, and zirconium beads are arranged at one end of the compression springs that abut against the wave grooves.
[0008] Preferably, the groove positions of the upper push block and the lower push block are respectively arranged at the middle positions along the length direction of the upper push block and the middle positions along the length direction of the lower push block; or the groove position of the upper push block is arranged at one end position of the wave groove corresponding to the top surface of the middle sliding seat, and the groove position of the lower push block is arranged at the other end position of the wave groove corresponding to the bottom surface of the middle sliding seat.
[0009] Preferably, wave grooves are provided at the positions near both sides of the top surface and the bottom surface of the middle sliding seat, and gong vacant positions are provided at the bottoms of the wave grooves along the rear side of their length directions.
[0010] Preferably, the middle sliding seat is made of brass or titanium alloy.
[0011] Preferably, the upper push block and the lower push block are made of any one of metal materials, PEI engineering plastics, and G10 composite materials.
[0012] The beneficial effects of the present utility model are as follows: The card-pushing stress-relieving toy designed by this technical solution is designed with a middle sliding seat, an upper push block, and a lower push block. The upper push block and the lower push block linearly slide along the top surface and the bottom surface of the middle sliding seat respectively along their length directions. And first grooves and second grooves are provided on the middle sliding seat for installing the first slide rail and the second slide rail. Installing the slide rail in the groove is beneficial to making the overall structure of the card-pushing thinner. By designing the first slide rail and the second slide rail, the sliding of the upper push block and the lower push block is more stable and smooth, effortless, and has a good feel. By providing an elastic impact sound generating structure on the top surface and / or the bottom surface of the middle sliding seat, when the upper push block or the lower push block is pushed, sound can be generated, and feedback is given from the tactile and auditory aspects to achieve the purpose of stress relief. Description of the Drawings
[0013] Figure 1 This is a schematic diagram of the structural decomposition of the embodiment of the present utility model.
[0014] Figure 2 This is a three-dimensional view of the overall structure of the embodiment of the present utility model.
[0015] Figure 3 This is a schematic diagram of the first slide rail and the second slide rail structures of the present utility model.
[0016] Figure 4 This is a sectional view of the elastic impact sound generation structure of the present utility model in the length direction.
[0017] Figure 5 This is a sectional view of the structure of the present utility model in the width direction.
[0018] Figure 6 This is a sliding schematic diagram of the upper push block and the lower push block of the present utility model.
[0019] Figure 7 This is a sectional view of the operation of the upper push block and the lower push block with the groove position of the present utility model set in the middle position.
[0020] Figure 8 This is a sectional view of the embodiment of the present utility model with the groove position set at the end position.
[0021] Figure 9 This is a sectional view of the operation of the upper push block and the lower push block with the groove position of the present utility model set at the end position.
[0022] Reference numerals:
[0023] 1, intermediate slide base; 11, first groove; 12, second groove; 101, wave groove; 2, upper push block; 3, lower push block; 4, first slide rail; 41, channel-shaped slider; 411, first groove; 42, square bar-shaped guide rail; 421, second groove; 43, ball retainer; 44, steel ball; 5, compression spring; 6, zirconium ball. Specific embodiments
[0024] Next, the technical solutions in the embodiments of the present disclosure will be clearly and completely described in conjunction with the accompanying drawings. Obviously, the described embodiments are only partial embodiments of the present disclosure, rather than all embodiments. Based on the embodiments of the present disclosure, all other embodiments obtained by those of ordinary skill in the art without creative efforts also belong to the scope of protection of the present disclosure.
[0025] Please refer to Figures 1 to 6, which is a specific embodiment of a double-layer card-pushing stress-relieving toy provided by this technical solution. The double-layer card-pushing stress-relieving toy includes an intermediate sliding seat 1, an upper pushing block 2 provided on the top surface of the intermediate sliding seat 1, and a lower pushing block 3 provided on the bottom surface of the intermediate sliding seat 1. A first groove 11 is provided on the top surface of the intermediate sliding seat 1, and a first sliding rail 4 is provided in the first groove 11. A second groove 12 is provided on the bottom surface of the intermediate sliding seat 1, and a second sliding rail is provided in the second groove 12. An elastic impact sound-generating structure is provided on the top surface and / or bottom surface of the intermediate sliding seat 1. The first groove 11 and the second groove 12 of the intermediate sliding seat 1 are both arranged along the length direction of the intermediate sliding seat 1, and the first groove 11 and the second groove 12 are respectively located at positions offset from each other on the top surface and the bottom surface of the intermediate sliding seat 1. By providing the first groove 11 and the second groove 12 at offset positions on the top surface and the bottom surface of the intermediate sliding seat 1, it is beneficial to make rational use of the intermediate sliding seat 1 and realize the embedded installation of the first sliding rail 4 and the second sliding rail, making the overall structure relatively flat and thin.
[0026] By providing the upper pushing block 2 and the lower pushing block 3 on the top surface and the bottom surface of the intermediate sliding seat 1 respectively, when using this stress-relieving toy, the upper and lower double-layer pushing blocks can be pushed back and forth. The fingers can be used to move the upper pushing block 2 and the lower pushing block 3 in two opposite directions. The back-and-forth movement of the fingers conforms to the hand movement habits.
[0027] Please refer to Figure 3 , the first sliding rail 4 and the second sliding rail have the same structure, and both include a channel-shaped slider 41, a square-bar-shaped guide rail 42, and a ball retainer 43. First grooves 411 are provided on the left and right groove walls of the channel-shaped slider 41, and second grooves 421 are provided on the left and right side walls of the square-bar-shaped guide rail 42. The ball retainer 43 is a strip-shaped plastic bracket, and a plurality of holes are provided at intervals along the length direction of the strip-shaped plastic bracket. Steel balls 44 that can rotate in the holes are provided in the holes. The opposite spherical surfaces of the steel balls 44 respectively enter the first grooves 411 and the second grooves 421. Among them, the first groove 11 and the second groove 12 are fixedly connected to the channel-shaped slider 41, and the upper pushing block 2 and the lower pushing block 3 are fixedly connected to the square-bar-shaped guide rail 42. By designing the first sliding rail 4 and the second sliding rail, the sliding of the upper pushing block 2 and the lower pushing block 3 is made more stable and smooth when they are pushed.
[0028] Please refer to Figure 1 、 Figures 4 to 6, the elastic impact sound - generating structure is that wave grooves 101 composed of multiple continuous concave spherical surfaces are arranged along the length direction on the top surface and bottom surface of the middle sliding seat 1. Groove positions are provided on the bottom surface of the upper pushing block 2 and the top surface of the lower pushing block 3 opposite to the wave grooves 101. Compression springs 5 are arranged in the groove positions, and zirconium beads 6 are provided at one end of the compression springs 5 abutting against the wave grooves 101. When the upper pushing block 2 and / or the lower pushing block 3 are pushed to slide, the zirconium beads 6 are driven by the compression springs 5 to move one by one along the wave grooves 101 to the concave spherical surfaces. Due to the wave grooves 101 composed of continuous concave spherical surfaces, when the zirconium beads 6 are driven by the compression springs 5 to the next concave spherical surface, impacts will occur from the transitional edge to the inside of the concave spherical surface, thus generating sounds.
[0029] Please refer to Figure 4 、 Figure 7 , as one of the implementation schemes, the groove positions of the upper pushing block and the lower pushing block are respectively arranged at the middle positions along the length direction of the upper pushing block and along the length direction of the lower pushing block. By arranging the groove positions, compression springs 5 and zirconium beads 6 at the middle positions, when the upper pushing block 2 and the lower pushing block 3 slide back and forth respectively, they run 1 / 2 of the stroke of the wave grooves 101 from the middle to both sides. When the zirconium beads 6 reach the end positions of the wave grooves 101, the compression springs 5 abut the zirconium beads 6 against the concave spherical surfaces at the ends, realizing the limit.
[0030] Please refer to Figure 8 、 Figure 9 , as another implementation scheme, the groove position of the upper pushing block 2 is arranged at one end position of the wave groove 101 corresponding to the top surface of the middle sliding seat 1, and the groove position of the lower pushing block 3 is arranged at the other end position of the wave groove 101 corresponding to the bottom surface of the middle sliding seat 1. Here, one end position of the wave groove 101 on the top surface of the middle sliding seat 1 and the other end position of the wave groove 101 on the bottom surface of the middle sliding seat 1 are end positions far away from each other. For example: the left - most end of the wave groove 101 on the bottom surface of the middle sliding seat 1, the right - most end of the wave groove 101 on the bottom surface of the middle sliding seat 1, or the right - most end of the wave groove 101 on the bottom surface of the middle sliding seat 1, the left - most end of the wave groove 101 on the bottom surface of the middle sliding seat 1. Through the above - designed positions of the groove positions, it can be realized that in the initial position, the middle sliding seat 1, the upper pushing block 2 and the lower pushing block 3 are stacked one above the other, and the upper pushing block 2 and the lower pushing block 3 can only slide in the opposite directions, and the sliding stroke reaches the maximum, and then slide towards each other back to the initial position, and the zirconium beads 6 are abutted against the concave spherical surfaces at the ends by the compression springs 5, realizing the limit.
[0031] Preferably, the top surface and the bottom surface of the middle sliding seat 1 are both provided with the wavy grooves 101 near both sides, and gong positions are provided at the bottoms of the rear sides of the wavy grooves 101 along their length directions. The sound generated by the impact of the zircon beads 6 is made clearer through the gong positions.
[0032] Preferably, the middle sliding seat 1 is made of brass or titanium alloy, and the first groove 11, the second groove 12, the wavy groove 101 and the gong position are milled out of the middle sliding seat 1 by a CNC numerical control machine tool.
[0033] Preferably, the upper pushing block 2 and the lower pushing block 3 are made of any one of metal materials, PEI engineering plastics, and G10 composite materials. Using different materials, on the one hand, the feel of pushing the cards is different, and on the other hand, the sound generated by the zircon beads 6 hitting the wavy groove 101 of the middle sliding seat 1 will produce different timbres through the upper pushing block 2 and the lower pushing block 3 of different materials.
[0034] The embodiments of the present disclosure have been described above. The above description is exemplary and not exhaustive, and is not limited to the disclosed embodiments. Many modifications and variations are obvious to those of ordinary skill in the art in the technical field without departing from the scope and spirit of the described embodiments. The choice of terms used herein is intended to best explain the principles of the embodiments, practical applications, or improvements to the technologies in the market, or to enable other ordinary skill in the art in the technical field to understand the embodiments disclosed herein.
Claims
1. A double-layer card-pushing decompression toy, characterized in that, It includes an intermediate sliding seat, an upper pushing block arranged on the top surface of the intermediate sliding seat, and a lower pushing block arranged on the bottom surface of the intermediate sliding seat. The top surface of the intermediate sliding seat is provided with a first groove, and a first sliding rail is arranged in the first groove. The bottom surface of the intermediate sliding seat is provided with a second groove, and a second sliding rail is arranged in the second groove. An elastic impact sound generating structure is arranged on the top surface and / or the bottom surface of the intermediate sliding seat.
2. The double-layer pushing card decompression toy according to claim 1, wherein The first groove and the second groove of the intermediate sliding seat are both arranged along the length direction of the intermediate sliding seat, and the first groove and the second groove are respectively at positions staggered on the top surface and the bottom surface of the intermediate sliding seat.
3. The double-layer pushing card decompression toy according to claim 2, wherein, Both the first sliding rail and the second sliding rail include a channel steel type slider, a square bar type guide rail, and a ball retainer. The left and right groove walls of the channel steel type slider are provided with first grooves, and the left and right side walls of the square bar type guide rail are provided with second grooves. The ball retainer is a strip-shaped plastic bracket, and a plurality of hole positions are arranged at intervals along the length direction of the strip-shaped plastic bracket. Steel balls that can rotate in the holes are arranged in the hole positions. The opposite spherical surfaces of the steel balls respectively enter the first grooves and the second grooves. Among them, the first groove and the second groove are fixedly connected to the channel steel type slider, and the upper pushing block and the lower pushing block are fixedly connected to the square bar type guide rail.
4. The double-layer pushing card decompression toy according to claim 1, characterized in that, The elastic impact sound generating structure is that wave grooves composed of a plurality of continuous concave spherical surfaces are arranged along the length direction on the top surface and the bottom surface of the intermediate sliding seat. Groove positions are arranged at the bottom surface of the upper pushing block and the top surface of the lower pushing block opposite to the wave grooves. Compression springs are arranged in the groove positions, and zirconium beads are arranged at one end of the compression springs abutting against the wave grooves.
5. The double-deck pushing card decompression toy according to claim 4, wherein, The groove positions of the upper pushing block and the lower pushing block are respectively arranged at the middle positions along the length direction of the upper pushing block and the middle positions along the length direction of the lower pushing block; or the groove position of the upper pushing block is arranged at one end position of the wave groove corresponding to the top surface of the intermediate sliding seat, and the groove position of the lower pushing block is arranged at the other end position of the wave groove corresponding to the bottom surface of the intermediate sliding seat.
6. The double-deck pushing card decompression toy according to claim 4, characterized in that, Wave grooves are arranged at positions near both sides on the top surface and the bottom surface of the intermediate sliding seat, and gong empty positions are arranged at the bottoms of the wave grooves along the rear side of their length directions.
7. The double-deck pushing card decompression toy according to any one of claims 1-6, characterized in that, The intermediate sliding seat is made of brass or titanium alloy.
8. The double-deck pushing card decompression toy according to any one of claims 1-6, characterized in that, The upper pushing block and the lower pushing block are made of any one of metal materials, PEI engineering plastics, and G10 composite materials.