Linear pushing and circumferential rotating mahjong pushing decompression toy
By designing a linear push and circumferential rotation push-card decompression toy, and utilizing a rotating connecting seat and a slide groove structure, the diversified movement of the push block is achieved, which solves the problem of single control in the existing technology and improves the user experience.
Patent Information
- Application Number
- CN202422503877.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-16
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-10-16
AI Technical Summary
The existing card-pushing decompression toys have a single control movement trajectory and cannot meet the diverse needs of consumers.
A card-pushing and decompression toy with linear push and circumferential rotation is designed. The linear sliding and circumferential rotation of the push block are achieved through a rotating connecting seat and a slide groove structure, and a crisp impact sound is produced in combination with an elastic collision ball structure.
It enriches the control experience of the push-card decompression toy, produces a variety of impact sounds through linear and circumferential motion, and enhances the user experience.
Smart Images

Figure CN223464415U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of decompression toys, especially to a linear pushing and circumferential rotating push card decompression toy. BACKGROUND
[0002] The push card decompression toy is a toy that produces a crisp sound by pushing the push card to achieve the effect of decompression. This toy is usually made of metal materials such as titanium alloy, and has a certain weight and texture. Consumers push the push card up and down, which makes it move under the action of strong magnet, thereby producing a "popping" sound. At the same time, the elastic ball is elastically impacted on the wavy arc surface groove track during sliding movement, producing a crisp impact sound to achieve the effect of decompression, such as the magnetic force linkage push card disclosed in the patent authorization announcement No. CN218357305U. The technical solution disclosed in this patent is also a common push card decompression toy in the prior art. The structure scheme of this kind of push card decompression toy is pushed back and forth in a linear direction. The moving track of the push card realized by this kind of structure scheme is relatively single. In order to further meet the diversified needs of consumers, there is still room for optimization and improvement of the existing push card decompression toy. Therefore, the present technical solution proposes a new push card decompression toy structure scheme to meet the needs of consumers. SUMMARY
[0003] Therefore, the utility model provides a linear pushing and circumferential rotating push card decompression toy, which realizes linear back-and-forth pushing and circumferential rotation of the push block that can push the push card, enriches the moving track of the push card realized by the control of the push card decompression toy, and thus improves the use experience of consumers.
[0004] The technical solution disclosed by the utility model is a linear pushing and circumferential rotating push card decompression toy, which comprises a first push block, a second push block and a rotating connecting seat. The first push block is provided with a first cavity position. The rotating connecting seat is installed in the first cavity position. The side wall of the rotating connecting seat is provided with a sliding groove all around. The horizontal plane of the sliding groove is higher than the upper surface of the first push block. The second push block is connected with the sliding groove, realizing linear movement of the second push block along the sliding groove and circumferential rotation of the second push block along the rotating connecting seat. The upper and lower surfaces of the rotating connecting seat are provided with an elastic impact ball structure. The bottom surface of the first cavity position of the first push block is provided with a first wavy groove track in the shape of a circle. The bottom surface of the second push block is provided with a second wavy groove track in the shape of a straight line.
[0005] Further, the center position of the first cavity is provided with an internally threaded connecting column, the rotating connecting seat comprises a lower seat body, an upper seat body and a ball bearing, the upper surface of the lower seat body is provided with a boss, the outer diameter of the boss is smaller than that of the lower seat body, the center of the boss is provided with a stepped through hole position penetrating through the lower seat body, the lower part of the ball bearing is sleeved on the stepped through hole position, the center of the upper seat body is provided with a through hole for sleeving the upper part of the ball bearing, and the upper seat body is connected on the upper surface of the boss in layers, the bottom surface of the upper seat body, the boss and the lower seat body form the sliding groove, and the inner ring hole of the ball bearing is sleeved on the internally threaded connecting column.
[0006] Further, the side wall of the through hole of the upper seat body is provided with a vertical cutout cut upward to the edge of the upper seat body, one side of the upper seat body is provided with an internally threaded hole vertically penetrating through the vertical cutout, and the through hole of the upper seat body is fastened by a first screw.
[0007] Further, the upper end of the internally threaded connecting column is designed to have an outer diameter smaller than that of the stepped connecting end of the internally threaded connecting column, the stepped connecting end is inserted into the inner ring hole of the ball bearing, and the inner ring hole end face of the ball bearing is locked by a second screw.
[0008] Further, the sliding groove is provided with a sliding rail capable of linearly moving along the sliding groove, the sliding rail is fixed to the bottom of the second push block, the bottom of the second push block is provided with a second cavity corresponding to the inner side of the sliding rail, the upper seat body is accommodated in the second cavity, and when the second push block linearly slides along the sliding rail, the upper seat body linearly slides in the second cavity.
[0009] Further, the sliding rail is made of Teflon material.
[0010] Further, the top surface of the upper seat body is provided with at least one first groove on the left and right sides of the through hole, a compression spring is arranged in the first groove, the upper end of the compression spring is provided with a first linear sliding impact bead, the bottom wall of the second cavity corresponding to the second push block is provided with two second wavy groove tracks, and the first linear sliding impact bead elastically abuts against the second wavy groove track.
[0011] Further, the top surface of the upper seat body is provided with a second groove on the front and rear sides of the through hole, a compression spring is arranged in the second groove, the upper end of the compression spring is provided with a second linear sliding impact bead, the middle of the bottom wall of the second cavity corresponding to the second push block is provided with a linear recessed track along the linear sliding direction, the two ends of the linear recessed track are each provided with a circular concave arc surface groove, and the second linear sliding impact bead elastically abuts against the circular concave arc surface groove at the initial position and the terminal position of the linear sliding of the second push block.
[0012] Further, the bottom surface of the lower seat body is uniformly provided with a plurality of third grooves at the same radius position along the center of the stepped through hole position, a compression spring is arranged in the third groove, and a circumferential sliding impact bead is arranged at the upper end of the compression spring and elastically abuts against the first wavy groove track.
[0013] Further, the bottom surface of the lower seat body is uniformly provided with a plurality of third grooves at the same radius position along the center of the stepped through hole position, a compression spring is arranged in the third groove, and a circumferential sliding impact bead is arranged at the upper end of the compression spring and elastically abuts against the first wavy groove track.
[0014] Further, the upper surface of the first push block is further provided with a brand recess position for pasting a LOGO.
[0015] Further, the edge side wall of the first push block is further provided with a hanging rope connecting position for connecting a hanging rope.
[0016] The beneficial effects of the utility model are that: the push card decompression toy designed by the scheme mainly innovatively designs the rotary connecting seat, the sliding groove for push card operation is arranged on the rotary connecting seat, the second push block can linearly slide along the sliding groove, and the elastic impact bead structure on the upper surface of the rotary connecting seat and the linear second wavy groove track can realize impact and generate crisp impact sound when linearly sliding. Meanwhile, the second push block can also rotate through the rotary connecting seat, the second push block drives the rotary connecting seat to rotate in the circumferential direction, the elastic impact bead structure on the lower surface of the rotary connecting seat and the first wavy groove track surrounding the circle can realize impact and generate crisp impact sound. That is, the push block of the push card decompression toy can not only slide back and forth in the linear direction, but also can rotate in the circumferential direction, so that the moving track of the push block of the push card decompression toy is more rich, and better use experience is given to consumers. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is an overall structure exploded view of the utility model embodiment.
[0018] Figure 2 It is a rotary connecting seat and sliding rail structure exploded view of the utility model embodiment.
[0019] Figure 3 It is another overall structure exploded view of the utility model embodiment.
[0020] Figure 4 It is a second push block opening structure schematic view of the first push block and the second push card in the stacked initial position of the utility model embodiment.
[0021] Figure 5 It is a second push block opening structure schematic view of the first push block and the second push block after linear sliding of the utility model embodiment.
[0022] Figure 6 Figure 2 is a second push block opening structure schematic view after the first push block and the second push block of the utility model embodiment rotate an angle.
[0023] Figure 7 Figure 4 is a dynamic change schematic view of the first push block and the second push block of the push card decompression toy of the utility model embodiment sliding. DETAILED DESCRIPTION
[0024] The technical solutions in the embodiments of the present disclosure will be described clearly and completely below with reference to the drawings, and obviously, the described embodiments are only part of the embodiments of the present disclosure, rather than all the embodiments. Based on the embodiments of the present disclosure, all other embodiments obtained by those skilled in the art without creative labor also belong to the protection scope of the present disclosure.
[0025] Please refer to Figures 1 to 7 The push card decompression toy is a specific embodiment provided by the technical solution, which is only a specific embodiment listed for describing the technical solution, and does not limit the specific shape of the embodiment of the technical solution. The specific shape can be arbitrarily changed on the basis of sliding, rotating and impacting sound in accordance with the technical solution.
[0026] The push card decompression toy provided by the embodiment includes a first push block 1, a second push block 2 and a rotating connecting seat 3. The first push block 1 is provided with a first cavity position 11. The rotating connecting seat 3 is installed in the first cavity position 11. The side wall of the rotating connecting seat 3 is provided with a sliding groove 30. The horizontal plane of the sliding groove 30 is higher than the upper surface of the first push block 1. The second push block 2 is connected with the sliding groove 30, so as to realize linear movement of the second push block 2 along the sliding groove 30 and circumferential rotation of the second push block 2 along the rotating connecting seat 3. The upper and lower surfaces of the rotating connecting seat 3 are provided with an elastic impact bead structure. The bottom surface of the first cavity position 11 of the first push block 1 is provided with a first wavy groove track 111 in the shape of a circle. The bottom surface of the second push block 2 is provided with a second wavy groove track 201 in the shape of a straight line.
[0027] Please refer to Figures 1 to 4As a preferred structure and assembly scheme of the rotating connecting seat 3, the center of the first cavity position 11 is provided with an internally threaded connecting column 112, the rotating connecting seat 3 comprises a lower seat body 31, an upper seat body 32, and a ball bearing 5, the upper surface of the lower seat body 31 is provided with a boss 311, the outer diameter of the boss 311 is smaller than the outer diameter of the lower seat body 31, the center of the boss 311 is provided with a stepped through hole position 312 which is in communication with the lower seat body 31, the lower part of the ball bearing 5 is sleeved on the stepped through hole position 312, the center of the upper seat body 32 is provided with a through hole 321 for sleeving the upper part of the ball bearing 5, and the upper seat body 32 is stacked and connected on the upper surface of the boss 311, the bottom surface of the upper seat body 32, the boss 311 and the lower seat body 31 form the sliding groove 30, and the inner ring hole of the ball bearing 5 is sleeved on the internally threaded connecting column 112.
[0028] As a preferred technical scheme for assembling the ball bearing 5, the side wall of the through hole 321 of the upper seat body 32 is provided with a vertical cut 322 which is cut towards the edge of the upper seat body 32, one side of the upper seat body 32 is provided with an internally threaded hole which penetrates the vertical cut 322, and the internally threaded hole fastens the through hole 321 of the upper seat body 32 by a first screw 6. This scheme is to achieve tight-fitting connection with the outer ring wall of the ball bearing 5 during assembly of the through hole 321 of the upper seat body 32 and the ball bearing 5, so a vertical cut 322 is designed. In the case of loosening the first screw 6, the upper seat body 32 can be easily assembled on the ball bearing 5 and then locked. If only a through hole 321 is provided to be tightly sleeved on the ball bearing 5, the parameter requirements of the through hole 321 need to be controlled, which brings difficulty to production and processing.
[0029] Further, the upper end of the internally threaded connecting column 112 is designed to have an outer diameter smaller than the stepped connecting end of the internally threaded connecting column 112, the stepped connecting end is inserted into the inner ring hole of the ball bearing 5, and the inner ring hole end surface of the ball bearing 5 is locked by a second screw 7. The stepped connecting end of the internally threaded connecting column 112 can support the assembly of the ball bearing 5, which is conducive to the stability of the assembly.
[0030] As a preferred structure, the sliding groove 30 is provided with a sliding rail 4 which can linearly move along the sliding groove 30, the sliding rail 4 is fixed to the bottom of the second push block 2, the bottom of the second push block 2 is provided with a second cavity position 21 corresponding to the inner side of the sliding rail 4, the upper seat body 32 is accommodated in the second cavity position 21, and when the second push block 2 linearly slides along the sliding rail 4, the upper seat body 32 linearly slides in the second cavity position 21.
[0031] Preferably, the slide rail 4 is made of Teflon material, which has low friction coefficient, wear resistance and non-adhesion. As the manufacturing material of the slide rail 4, Teflon has an extremely low friction coefficient, and the friction coefficient during load sliding is only between 0.05 and 0.15, so it is conducive to achieving very smooth sliding performance for pushing cards.
[0032] Please refer to Figure 3 、 Figure 4 As an elastic bead structure provided on the upper surface of the rotating connecting seat 3, the top surface of the upper seat body 32 is provided with at least one first groove 323 on the left and right sides corresponding to the through hole 321, a compression spring is provided in the first groove 323, and a first linear sliding bead is provided on the upper end of the compression spring. The bottom wall of the second cavity 21 corresponding to the second push block 2 is provided with two second wave groove tracks 201, and the first linear sliding bead elastically abuts against the second wave groove track 201.
[0033] As a preferred embodiment, a second groove 324 is provided on the top surface of the upper base 32, corresponding to the through hole 321, on either side. A compression spring is positioned within the second groove 324, with a second linearly sliding bead positioned at its upper end. A linear recessed track 202 is provided in the middle of the bottom wall of the second cavity 21 corresponding to the second push block 2, along the linear sliding direction. Each end of the linear recessed track 202 is provided with a circular concave arcuate groove 2021. The second linearly sliding bead elastically abuts within the circular concave arcuate groove 2021 at the initial and final positions of the linear sliding of the second push block 2. This embodiment allows an additional second linearly sliding bead to enter the circular concave arcuate groove 2021 when the second push block 2 linearly slides from the initial position to the final position, thereby enhancing the sensory experience of the second push block 2 as it slides to the final position and returns to the initial position. Furthermore, the sound produced during the sliding to the final position and back to the initial position is also different due to the impact of the additional second linearly sliding bead, thereby providing feedback to the user's sensory and auditory experience.
[0034] Please refer to Figure 1 、 Figure 3 As an elastic bead structure set on the lower surface of the rotating connecting seat 3, a plurality of third grooves 313 are evenly arranged on the bottom surface of the lower seat body 31 along the same radial position of the center of the step through hole 312. A compression spring is set in the third groove 313, and a circumferential sliding bead is set at the upper end of the compression spring. The circumferential sliding bead elastically abuts against the first wave groove track 111.
[0035] Preferably, the bottom surface of the lower seat body 31 is provided with a fourth groove 314 on both sides of the stepped through hole position 312, and a first magnet is embedded in the fourth groove 314. The bottom of the first cavity position 11 of the first push block 1 is provided with a fifth groove 113, and a second magnet is embedded in the fifth groove 113. The first magnet and the second magnet are attracted to each other. Preferably, the fourth groove 314 and the first magnet are arranged on the central axis of the rotating connecting seat 3, and the corresponding fifth groove 113 and the second magnet are arranged on the bottom of the first cavity position 11. In this way, when the second push block 2 drives the rotating connecting seat 3 to rotate 180° (angle), the magnetic attraction effect can be achieved. In the state of magnetic attraction, the second push block 2 needs to exert a greater force to rotate circumferentially. At this time, it is convenient to switch to linearly push back along the sliding groove 30 of the rotating connecting seat 3. The design is ingenious and reasonable, and the user experience is improved.
[0036] Further, the upper surface of the first push block 1 is also provided with a brand recess 114 for pasting a LOGO.
[0037] Further, the edge side wall of the first push block 1 is also provided with a rope connecting position 115 for connecting a hanging rope.
[0038] The above has described the embodiments of the present disclosure, and the above description is exemplary, not exhaustive, and is not limited to the disclosed embodiments. Many modifications and changes are obvious to those skilled in the art without departing from the scope and spirit of the described embodiments. The selection of terms used herein is intended to best explain the principles, practical application, or improvement of technology in the market of the embodiments, or to enable other ordinary skilled persons in the art to understand the embodiments disclosed herein.
Claims
1. A linear pushing and circumferential rotating pusher card decompression toy, characterized in that, The utility model provides a push block, including first push block (1), second push block (2), rotary connecting seat (3), first push block (1) is equipped with first cavity (11), rotary connecting seat (3) is installed in first cavity (11), the lateral wall of rotary connecting seat (3) is equipped with sliding slot (30) all around, the horizontal plane of sliding slot (30) is higher than the upper surface of first push block (1), second push block (2) is connected with sliding slot (30), realizes the linear motion of second push block (2) along sliding slot (30), and second push block (2) rotates along the circumference of rotary connecting seat (3);The upper and lower surfaces of rotary connecting seat (3) are equipped with elastic impact ball structure, the bottom surface of first cavity (11) of first push block (1) is equipped with the first wave groove track (111) of surrounding circle, the bottom surface of second push block (2) is equipped with the second wave groove track (201) of linear shape.
2. The linear pushing and circumferential rotating pusher card-unpacking toy according to claim 1, wherein, The center position of first cavity (11) is equipped with a internally threaded connecting column (112), rotary connecting seat (3) includes lower seat body (31), upper seat body (32), ball bearing (5), the upper surface of lower seat body (31) is equipped with boss (311), the outer diameter of boss (311) is less than the outer diameter of lower seat body (31), the center of boss (311) is equipped with step through hole position (312) with lower seat body (31) is through, the lower part of ball bearing (5) is sleeved on step through hole position (312), the center of upper seat body (32) is equipped with through hole (321) for the sleeve of the upper part of ball bearing (5), and upper seat body (32) is stacked on the upper surface of boss (311), the bottom surface of upper seat body (32) and boss (311), lower seat body (31) form sliding slot (30), the inner ring hole of ball bearing (5) is sleeved on internally threaded connecting column (112).
3. The linear pushing and circumferential rotating pusher card-unpacking toy according to claim 2, wherein, The side wall of through hole (321) of upper seat body (32) is equipped with a vertical cut (322) that is cut towards the edge of upper seat body (32), one side of upper seat body (32) is equipped with an internally threaded hole that penetrates through the vertical cut (322), the internally threaded hole fastens the through hole of upper seat body (32) through a first screw (6).
4. The linear pushing and circumferential rotating pusher card-unpacking toy according to claim 2, wherein, The upper end of the internally threaded connecting column (112) is designed to have an outer diameter smaller than that of the step connecting end of the internally threaded connecting column (112), the step connecting end is inserted into the inner ring hole of the ball bearing (5), and the inner ring hole end face of the ball bearing (5) is locked by a second screw (7).
5. The linear pushing and circumferential rotating pusher card-unpacking toy according to claim 2, wherein, A slide rail (4) that can move linearly along the sliding slot (30) is arranged on the sliding slot (30), the slide rail (4) is fixed to the bottom of the second push block (2), the bottom of the second push block (2) is provided with a second cavity (21) corresponding to the inner side of the slide rail (4), the upper seat body (32) is accommodated in the second cavity (21), and when the second push block (2) slides linearly along the slide rail (4), the upper seat body (32) slides linearly in the second cavity (21).
6. The linear pushing and circumferential rotating pusher card-unpacking toy according to claim 5, wherein, The slide rail (4) is made of Teflon.
7. The linear pushing and circumferential rotating pusher card-unpacking toy according to claim 5, wherein, The top surface of the upper seat body (32) is provided with at least a first groove (323) on the left and right sides of the through hole (321), a compression spring is arranged in the first groove (323), and the upper end of the compression spring is provided with a first linear sliding impact bead.
8. The linear pushing and circumferential rotating pusher card-unpacking toy according to claim 7, wherein, The top surface of the upper seat body (32) is provided with a second groove (324) on the front and rear sides of the through hole (321), a compression spring is arranged in the second groove (324), the upper end of the compression spring is provided with a second linear sliding impact bead, a linear groove (202) is arranged in the middle of the bottom wall of the corresponding second cavity (21) of the second push block (2) along the linear sliding direction, and two circular concave arc groove (2021) are arranged at the two ends of the linear groove (202), and the second linear sliding impact bead is elastically abutted in the circular concave arc groove (2021) at the initial position and the terminal position of the linear sliding of the second push block (2).
9. The linear pushing and circumferential rotating pusher card-unpacking toy according to claim 2, wherein, The bottom surface of the lower seat body (31) is uniformly provided with a plurality of third grooves (313) at the same radius position of the center of the stepped through hole position (312), a compression spring is arranged in the third groove (313), the upper end of the compression spring is provided with a circular sliding impact bead, and the circular sliding impact bead is elastically abutted to the first wave groove track (111).
10. The linear pushing and circumferential rotating pusher card-unpacking toy according to claim 9, wherein, The bottom surface of the lower seat body (31) is provided with a fourth groove (314) corresponding to the two side positions of the stepped through hole position (312), a first magnet is embedded in the fourth groove (314), a fifth groove (113) is arranged at the bottom of the first cavity (11) of the first push block (1) correspondingly, a second magnet is embedded in the fifth groove (113), the first magnet and the second magnet are attracted to each other, the upper surface of the first push block (1) is further provided with a brand groove (114) for pasting a LOGO, and the edge side wall of the first push block (1) is further provided with a hanging rope connecting position (115) for connecting a hanging rope.
Citation Information
Patent Citations
Magnetic linkage push tile
CN218357305U