Double-scale playing card pushing toy
By incorporating impact grooves and a friction impact structure with metal balls into the card pusher toy, the problem of the monotonous sound scale in existing card pusher toys is solved, achieving sound diversification and improving the user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 李科南
- Filing Date
- 2025-04-29
- Publication Date
- 2026-04-21
AI Technical Summary
Existing push-card toys have a simple impact structure, a limited range of sound levels, and poor variation, resulting in insufficient fun.
Design a dual-tone push card toy. By setting several continuous impact grooves and metal balls on the middle section plate, the elastic support of the springs causes the metal balls to rub and impact with each other, producing high and low tone effects, enhancing the pleasantness and crispness of the sound.
The design of impact grooves and metal balls allows for diverse sounds, enhancing the user experience and enjoyment.
Smart Images

Figure CN224141455U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of push card toy technology, specifically a dual-tone push card toy. Background Technology
[0002] Push cards are a relatively new type of EDC (Everyday Carry) toy. Their main features are their small, portable size and unique gameplay – by rubbing and rotating the surface with your fingers, pushing the card produces a crisp sound, reminiscent of a more advanced version of a pen spinning or pressing a ballpoint pen. The basic structure of a push card typically includes a push card disc and at least one magnetic bead. A track is located around the disc, allowing the magnetic bead to roll. The ways to play with push cards vary depending on their structure and design. Players can use their fingers to rub, rotate, and push the magnetic bead, causing it to roll or slide along the track, producing a crisp sound and a unique tactile experience.
[0003] However, the existing card-pushing impact mechanism has a simple structure, and the sound produced by the impact is mostly a single tone with poor variation, resulting in insufficient fun to play with.
[0004] Therefore, this application provides a two-tone card pusher to solve the above problems. Utility Model Content
[0005] This application provides a dual-tone card-pushing toy, aiming to solve the problems mentioned in the background art, such as the lack of fun in playing with existing card-pushing toys.
[0006] To achieve the above objectives, this application provides the following technical solution: a dual-tone card pusher toy, comprising a lower base, a middle section plate made of metal that is slidably mounted on the lower base, and an upper plate that is fixedly mounted on the middle section plate.
[0007] The lower base has a base groove at its center, and a central column is inserted into the base groove. The maximum thickness of the central column is greater than the maximum depth of the base groove, and the top of the central column protrudes from the base groove. The upper plate has an upper plate groove at its center, and the middle section plate is inserted into the upper plate groove. The maximum thickness of the middle section plate is greater than the maximum depth of the upper plate groove, and the bottom of the middle section plate protrudes from the upper plate groove. The middle section plate is slidably mounted on the central column.
[0008] The central column has at least three placement holes arranged side by side and perpendicular to the lower base. A spring is inserted into the placement hole, and a metal ball is attached to the upper end of the spring. The metal ball is movably installed in the placement hole. The bottom of the middle section plate has three rows of parallel track grooves that are adapted to the three placement holes. The metal ball is rotatably connected to the track grooves.
[0009] The track groove consists of several continuously arranged hemispherical impact grooves, with the connection between the impact grooves and the metal ball bearings having a non-smooth contact. Thus, during use, after the middle section plate is vertically and parallel to the central column, the spring inside the placement hole elastically supports the metal ball bearings as they rub against and impact with the track grooves on the middle section plate, producing a clinking sound. The varying spring tension creates a misalignment in the impact time between the metal ball bearings and the middle section plate during sliding, thereby producing high and low frequencies, making the sound more pleasant and crisp, thus enhancing the user experience.
[0010] Preferably, to ensure stability, the diameter of the spring coil and the diameter of the metal ball are matched with the inner diameter of the placement hole. The spring is fully fitted with the inner wall of the placement hole, and the metal ball is fully fitted with the interior of the placement hole. This can effectively reduce the shaking problem and ensure clear and stable tone.
[0011] Preferably, to avoid shaking, symmetrically distributed guide rods are fixedly installed on both sides of the central column protruding from the base groove, and a guide groove adapted to the guide rods is opened on the bottom surface of the middle section plate protruding from the upper plate groove. The guide rods are slidably installed in the guide groove to ensure stable movement trajectory and avoid shaking.
[0012] Preferably, for ease of maintenance, the central column and the base groove are provided with first connecting holes at the four corners, and first bolts are screwed into the first connecting holes. The middle section plate and the upper plate groove are provided with second connecting holes at the four corners, and second bolts are screwed into the second connecting holes. This facilitates disassembly and maintenance, and can also avoid frame problems and the problem of shaking between the upper plate and the lower base of the toy after assembly.
[0013] Preferably, in order to improve the feel, the lower base has symmetrically distributed counterweight slots on both sides of the base groove, and counterweight blocks are inserted into the counterweight slots to balance the weight of the lower base and the upper plate, thereby improving the feel of the user's handling.
[0014] Preferably, for better tactile comfort, a push block positioning groove is provided on the side opposite to the groove of the upper plate. A push block with an anti-slip surface is inserted into the push block positioning groove, which provides a better tactile feel and is more convenient to use.
[0015] This push-card toy, after the middle section plate is vertically and parallel to the central column, the spring in the placement hole supports the metal ball to rub and collide with the track groove on the middle section plate to produce a ding sound. By using different spring tensions, the metal ball is made to collide with the middle section plate at different times during the sliding process, thus producing high and low frequencies, making the sound more pleasant and crisp, thereby improving the user experience.
[0016] This push-card toy uses counterweight blocks inserted into counterweight slots and fixed by adhesive or other methods to balance the weight of the lower base and upper plate, improving the user's handling experience. Attached Figure Description
[0017] Figure 1 A schematic diagram of the external structure of a two-tone card pusher toy;
[0018] Figure 2 A schematic diagram of the top explosion structure of a two-tone card pusher toy;
[0019] Figure 3 A schematic diagram of the bottom explosion structure of a two-tone card pusher toy;
[0020] Figure 4 A cross-sectional structural diagram of a two-tone card pusher toy;
[0021] Figure 5 This is a cross-sectional structural diagram of a two-tone card pusher toy.
[0022] In the picture:
[0023] 1. Lower base; 11. Base groove; 12. Central column; 13. Placement hole; 14. Spring; 15. Metal ball; 16. Guide rod; 17. First connecting hole; 18. First bolt; 19. Counterweight groove; 110. Counterweight block; 2. Middle section plate; 21. Track groove; 2101. Impact groove; 22. Guide groove; 23. Second connecting hole; 24. Second bolt; 3. Upper plate; 31. Upper plate groove; 32. Push block positioning groove; 33. Push block. Detailed Implementation
[0024] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0025] Example 1
[0026] This embodiment provides a dual-tone card pusher toy, such as... Figure 1-5 As shown, the card pusher toy includes a lower base 1, a middle section plate 2 made of metal that is slidably mounted on the lower base 1, and an upper plate 3 that is fixedly mounted on the middle section plate 2.
[0027] The lower base 1 has a base groove 11 at its center, and a central column 12 is inserted into the base groove 11. The maximum thickness of the central column 12 is greater than the maximum depth of the base groove 11. The top of the central column 12 protrudes from the base groove 11. The upper plate 3 has an upper plate groove 31 at its center, and the middle section plate 2 is inserted into the upper plate groove 31. The maximum thickness of the middle section plate 2 is greater than the maximum depth of the upper plate groove 31. The bottom of the middle section plate 2 protrudes from the upper plate groove 31. The middle section plate 2 is slidably mounted on the central column 12.
[0028] The central column 12 has at least three placement holes 13 arranged side by side and perpendicular to the lower base 1. A spring 14 is inserted into the placement hole 13. A metal ball 15 is attached to the upper end of the spring 14. The metal ball 15 is movably installed in the placement hole 13. The bottom of the middle section plate 2 has three rows of parallel track grooves 21 that are adapted to the three placement holes 13. The metal ball 15 is rotatably connected to the track grooves 21.
[0029] The track groove 21 is composed of several continuously arranged hemispherical impact grooves 2101, and the connection between the several impact grooves 2101 and the metal ball 15 is in non-smooth contact.
[0030] In use, after the middle section plate 2 is vertically and parallel to the central column 12, the spring 14 in the placement hole 13 elastically supports the metal ball 15 to rub and impact with the track groove 21 on the middle section plate 2, producing a tinkling sound. The different tension of the spring 14 causes the metal ball 15 to be misaligned with the middle section plate 2 during the sliding process, thereby producing high and low frequencies, making the sound more pleasant and crisp, thus improving the user experience.
[0031] Specifically, the diameter of the spring 14 and the diameter of the metal ball 15 are matched with the inner diameter of the placement hole 13. The spring 14 is filled with the inner wall of the placement hole 13, and the metal ball 15 is filled with the interior of the placement hole 13.
[0032] When in use, the height-adapted spring 14 and metal ball 15 move up and down within the placement hole 13, effectively reducing shaking and ensuring clear and stable tone.
[0033] More specifically, symmetrically distributed guide rods 16 are fixedly installed on both sides of the central column 12 protruding from the base groove 11. The bottom surface of the middle section plate 2 protruding from the upper plate groove 31 is provided with a guide groove 22 that matches the guide rods 16. The guide rods 16 are slidably installed in the guide groove 22.
[0034] In use, the middle section plate 2 is slidably connected to the guide rod 16 on the middle column 12 through the guide groove 22, ensuring a stable movement trajectory and avoiding shaking when pushing the upper plate 3.
[0035] Furthermore, the central column 12 and the base groove 11 are provided with first connecting holes 17 at the four corners, and first bolts 18 are screwed into the first connecting holes 17. The middle section plate 2 and the upper plate groove 31 are provided with second connecting holes 23 at the four corners, and second bolts 24 are screwed into the second connecting holes 23.
[0036] In use, after the central column 12 is installed in the base groove 11, the central column 12 and the lower base 1 are fixed by inserting the first bolt 18 into the first connecting hole 17. After the middle section plate 2 is installed in the upper plate groove 31, the middle section plate 2 and the upper plate 3 are fixed by inserting the second bolt 24 into the second connecting hole 23. This facilitates disassembly and maintenance, and can also avoid frame problems and shaking problems of the upper plate 3 and the lower base 1 after assembly, thus improving the user's playing comfort.
[0037] Example 2
[0038] Unlike Example 1, the quality control of the push card during production varies, which may lead to imbalance. Therefore, the lower base 1 has symmetrically distributed counterweight grooves 19 on both sides of the base groove 11, and counterweight blocks 110 are inserted into the counterweight grooves 19.
[0039] When in use, the counterweight 110 is inserted into the counterweight slot 19 and fixed by means of adhesive bonding, etc., so as to balance the weight of the lower base 1 and the upper plate 3 and improve the user's handling experience.
[0040] Understandably, the weight of counterweight 110 can be adjusted as needed, and for balance, the weights of the two counterweights 110 are selected independently to ensure the best balance effect.
[0041] Furthermore, a push block positioning groove 32 is provided on the side opposite to the upper plate groove 31 on the upper plate 3, and a push block 33 with an anti-slip surface is inserted into the push block positioning groove 32.
[0042] When in use, the push block 33 is embedded into the push block positioning groove 32 and fixed by means of adhesive. When playing with it, the fingers press on the push block 33. The anti-slip push block 33 makes it easier to push the upper plate 3 to move when the fingers are in contact, with a better feel and more convenient use.
[0043] The above description is merely a preferred embodiment of this application, but the scope of protection of this application is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in this application, based on the technical solution and concept of this application, should be included within the scope of protection of this application.
Claims
1. A two-tone push card toy, comprising a lower base (1), a middle section plate (2) made of metal and slidably mounted on the lower base (1), and an upper plate (3) fixedly mounted on the middle section plate (2), characterized in that: The lower base (1) has a base groove (11) at the center position, and a central column (12) is inserted into the base groove (11). The maximum thickness of the central column (12) is greater than the maximum depth of the base groove (11). The top of the central column (12) protrudes from the base groove (11). The upper plate (3) has an upper plate groove (31) at the center position. The middle section plate (2) is inserted into the upper plate groove (31). The maximum thickness of the middle section plate (2) is greater than the maximum depth of the upper plate groove (31). The bottom of the middle section plate (2) protrudes from the upper plate groove (31). The middle section plate (2) is slidably installed on the central column (12). The central column (12) has at least three placement holes (13) arranged side by side and perpendicular to the lower base (1). A spring (14) is inserted into the placement hole (13). A metal ball (15) is attached to the upper end of the spring (14). The metal ball (15) is movably installed in the placement hole (13). The bottom of the middle section plate (2) has three rows of parallel track grooves (21) that are adapted to the three placement holes (13). The metal ball (15) is tumbled to the track grooves (21). The track groove (21) is composed of several hemispherical impact grooves (2101) arranged in succession, and the connection between the several impact grooves (2101) and the metal ball (15) is in non-smooth contact.
2. A two-octave push-pull toy according to claim 1, characterized in that: The diameter of the spring (14) and the diameter of the metal ball (15) are adapted to the inner diameter of the placement hole (13). The spring (14) is filled into the inner wall of the placement hole (13), and the metal ball (15) is filled into the interior of the placement hole (13).
3. The dual scale push-poker game of claim 1 wherein: The central column (12) has symmetrically distributed guide rods (16) fixedly installed on both sides of the base groove (11). The bottom of the middle section plate (2) protrudes from the bottom surface of the upper plate groove (31) and has a guide groove (22) adapted to the guide rods (16). The guide rods (16) are slidably installed in the guide groove (22).
4. The dual scale push-poker game of claim 1 wherein: The central column (12) and the base groove (11) are provided with first connecting holes (17) at the four corners, and first bolts (18) are screwed into the first connecting holes (17). The middle section plate (2) and the upper plate groove (31) are provided with second connecting holes (23) at the four corners, and second bolts (24) are screwed into the second connecting holes (23).
5. The dual scale push-poker game of claim 1 wherein: The lower base (1) has symmetrically distributed counterweight grooves (19) on both sides of the base groove (11), and counterweight blocks (110) are inserted into the counterweight grooves (19).
6. A dual scale push-poker game according to claim 1, wherein: The upper layer plate member (3) is provided with a push block positioning groove (32) on the side opposite to the upper plate groove (31), and a push block (33) with an anti-skid surface is inserted into the push block positioning groove (32).