Billiard support with shockproof and impact-resistant structure
By designing a shock-resistant and impact-resistant structure of billiard ball holder, the impact force of reinforced components and elastic buffer blocks is used to buffer the impact force, the vibration damage problem during billiard ball transportation is solved, and stable connection and rapid docking are achieved.
Patent Information
- Application Number
- CN202421294988.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-07
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-06-07
AI Technical Summary
Billiards are prone to collision and damage caused by bumps during transportation, and existing equipment cannot effectively prevent shock and impact.
A shock-proof and impact-resistant structure billiards support is designed, including a bottom support and a top support, which is connected by a snap-on connection. A reinforcement component and an anti-shock-resistant mechanism are provided between the bottom support and the top support. The impact force is cushioned by an elastic buffer block to improve stability and connection speed.
Effectively buffer the vibration impact during transportation, prevent damage to billiards and tripods, and improve stability and connection speed during transportation.
Smart Images

Figure CN223144090U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a billiard rack with an earthquake-proof and impact-resistant structure, belonging to the field of billiard racks. Background Art
[0002] Billiards, also known as pool or billiard balls, is one of the ball sports. It is a sports and leisure project in which athletes use a cue stick longer than 91.4 cm on a billiard table to hit the cue ball according to certain rules so that it hits the target ball.
[0003] When a user purchases billiards and its accessories from a manufacturer, transportation treatment of the billiards is required. During transportation of the billiards and the billiard tripod, because they are spherical and occupy a large space, they are not at ease to be transported integrally. And during transportation, the bumps generated by the transport vehicle will cause collisions between the balls, which will in turn cause damage to the balls, making it inconvenient to transport and carry the balls. Content of the Utility Model
[0004] Aiming at the deficiencies of the prior art, the purpose of the utility model is to provide a billiard rack with an earthquake-proof and impact-resistant structure.
[0005] In order to achieve the above purpose, the utility model is realized through the following technical solutions:
[0006] A billiard rack with an earthquake-proof and impact-resistant structure includes a bottom rack and a top rack. The bottom rack and the top rack are fixedly connected by a clamping member. Middle parts of opposite sides of the bottom rack and the top rack are respectively provided with a bottom ball-collecting tripod groove and a top ball-collecting tripod groove. The bottom ball-collecting tripod groove and the top ball-collecting tripod groove form a ball-collecting tripod placement space. A plurality of bottom ball placement grooves and a plurality of top ball placement grooves are respectively provided inside the bottom ball-collecting tripod groove and the top ball-collecting tripod groove. The bottom ball placement grooves and the top ball placement grooves constitute a ball placement space. A reinforcing component is provided between the bottom rack and the top rack and outside the ball-collecting tripod placement space. A docking component is provided outside the reinforcing component. Earthquake-proof and impact-resistant mechanisms are provided inside both the bottom rack and the top rack.
[0007] Furthermore, the reinforcing component includes two first ball-collecting tripod reinforcing blocks and one second ball-collecting tripod reinforcing block fixed on the top of the bottom rack. The two first ball-collecting tripod reinforcing blocks and the one second ball-collecting tripod reinforcing block are respectively located on three sides of the bottom ball-collecting tripod groove.
[0008] Furthermore, the reinforcing component further includes two first reinforcing grooves and one second reinforcing groove provided on the bottom of the top rack. The two first reinforcing grooves and the one second reinforcing groove are respectively located on three sides of the top ball-collecting tripod groove.
[0009] Further, one of the two ball - collecting tripod reinforcing blocks is clamped in one of the two reinforcing grooves, and the other ball - collecting tripod reinforcing block is clamped in the second reinforcing groove.
[0010] Further, the docking component includes a docking groove formed at the top of the bottom support and a docking block fixed to the bottom of the top support, and the docking block is clamped inside the docking groove.
[0011] Further, the shock - proof and impact - resistant mechanism includes a buffer cavity, in the middle of which a partition is fixed. Docking plates are fixed on both the upper and lower sides of the partition. A number of arc - shaped grooves are equidistantly formed on the side of the docking plate away from the partition, and a number of bumps are arranged inside the arc - shaped grooves.
[0012] Further, the shock - proof and impact - resistant mechanism also includes two rows of elastic buffer blocks equidistantly fixed on the inner walls of the upper and lower sides of the buffer cavity. The ends of the elastic buffer blocks penetrate into the arc - shaped grooves and are pressed together with the bumps. A middle buffer block is fixed between adjacent two elastic buffer blocks, and the middle buffer block is fixed on the inner wall of the buffer cavity.
[0013] Further, the clamping component includes a clamping block and a clamping groove. The clamping block and the clamping groove are respectively located on the opposite sides of the bottom support and the top support, and the bottom support and the top support are fixedly connected by clamping the clamping block in the clamping groove.
[0014] The beneficial effects of the present utility model:
[0015] Through the design of the strengthening component, when the bottom support and the top support are connected, one ball - collecting tripod reinforcing block and the other ball - collecting tripod reinforcing block are clamped in the first reinforcing groove and the second reinforcing groove for stable connection. Moreover, the ball - collecting tripod reinforcing blocks will simultaneously clamp and limit the sides of the tripod. Finally, the top support and the bottom support are fixed together through the clamping component.
[0016] Through the design of the docking component, when the bottom support and the top support are connected, the top support and the bottom support can be quickly docked together through the docking block and the docking groove, improving the connection speed.
[0017] Through the design of the shock - proof and impact - resistant mechanism, when the device receives vibration, the impact force received by the device will be transmitted to the elastic buffer blocks. The elastic buffer blocks are pressed together with the docking plates, and the received impact force is buffered through the deformation of the elastic buffer blocks.
[0018] Through the design of the middle buffer block, when the elastic buffer blocks buffer elastically, the elastic buffer blocks will press the middle buffer block between the two elastic buffer blocks, and the middle buffer block will be pressed together with the elastic buffer blocks on both sides, further buffering the impact force of the deformation of the elastic buffer blocks.
[0019] Through the design of the partition board, the impact force during the elastic buffering of the elastic buffer block is blocked, preventing the impact force of the elastic buffer block during elastic buffering from being transmitted between the bottom support and the top support, and causing an impact on the billiard ball and the ball collecting tripod.
[0020] Through the design of the clamping member, the bottom support and the top support can be clamped and fixed together, improving the stability of the billiard support. Brief Description of the Drawings
[0021] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0022] Figure 1 It is a three-dimensional structure schematic diagram of a billiard support with an anti-seismic and anti-impact structure of the present invention;
[0023] Figure 2 It is a schematic diagram of the bottom support structure of a billiard support with an anti-seismic and anti-impact structure of the present invention;
[0024] Figure 3 It is a schematic diagram of the top support structure of a billiard support with an anti-seismic and anti-impact structure of the present invention;
[0025] Figure 4 It is a schematic diagram of the anti-seismic and anti-impact mechanism structure of a billiard support with an anti-seismic and anti-impact structure of the present invention.
[0026] In the figure, 1, bottom support; 2, top support; 3, clamping member; 4, bottom ball collecting tripod groove; 5, bottom ball placement groove; 6, first ball collecting tripod strengthening block; 7, second ball collecting tripod strengthening block; 8, top ball collecting tripod groove; 9, top ball placement groove; 10, first strengthening groove; 11, second strengthening groove; 12, docking block; 13, docking groove; 14, buffer cavity; 15, partition board; 16, docking plate; 17, arc groove; 18, convex block; 19, elastic buffer block; 20, middle buffer block. Detailed Embodiment
[0027] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, rather than all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.
[0028] Please refer to Figures 1-4, the present utility model provides a technical solution for an earthquake-proof and impact-resistant structure billiard support, including a bottom support 1 and a top support 2, which are connected and fixed by a clamping member 3. A bottom ball-collecting tripod groove 4 and a top ball-collecting tripod groove 8 are respectively opened in the middle of the opposite sides of the bottom support 1 and the top support 2. The bottom ball-collecting tripod groove 4 and the top ball-collecting tripod groove 8 form a ball-collecting tripod placement space. A number of bottom ball placement grooves 5 and a number of top ball placement grooves 9 are respectively opened inside the bottom ball-collecting tripod groove 4 and the top ball-collecting tripod groove 8. The bottom ball placement grooves 5 and the top ball placement grooves 9 constitute a ball placement space. A strengthening component is provided between the bottom support 1 and the top support 2 and outside the ball-collecting tripod placement space, and a docking component is provided outside the strengthening component. Earthquake-proof and impact-resistant mechanisms are provided inside both the bottom support 1 and the top support 2.
[0029] Refer to Figures 2-3 , the strengthening component includes two first ball-collecting tripod strengthening blocks 6 fixed on the top of the bottom support 1 and one second ball-collecting tripod strengthening block 7. The two first ball-collecting tripod strengthening blocks 6 and the one second ball-collecting tripod strengthening block 7 are respectively located on the three side edges of the bottom ball-collecting tripod groove 4. The strengthening component further includes two first strengthening grooves 10 and one second strengthening groove 11 opened on the bottom of the top support 2. The two first strengthening grooves 10 and the one second strengthening groove 11 are respectively located on the three side edges of the top ball-collecting tripod groove 8. The two first ball-collecting tripod strengthening blocks 6 are clamped in the two first strengthening grooves 10, and the second ball-collecting tripod strengthening block 7 is clamped in the second strengthening groove 11. Through the design of the strengthening component, when the bottom support 1 and the top support 2 are connected, the first ball-collecting tripod strengthening block 6 and the second ball-collecting tripod strengthening block 7 are clamped in the first strengthening groove 10 and the second strengthening groove 11 for stable connection. Moreover, the first ball-collecting tripod strengthening block 6 and the second ball-collecting tripod strengthening block 7 will simultaneously clamp and limit the side edges of the tripod. Finally, the top support 2 and the bottom support 1 are fixed together by the clamping member 3.
[0030] Refer to Figures 2-3 , the docking component includes a docking groove 13 opened on the top of the bottom support 1 and a docking block 12 fixed on the bottom of the top support 2. The docking block 12 is clamped inside the docking groove 13. Through the design of the docking component, when the bottom support 1 and the top support 2 are connected, the top support 2 and the bottom support 1 can be quickly docked together through the docking block 12 and the docking groove 13, improving the connection speed.
[0031] Refer to Figure 4, the shock and impact resistant mechanism includes a buffer cavity 14. In the middle of the buffer cavity 14, a partition 15 is fixed. On both the upper and lower sides of the partition 15, docking plates 16 are fixed. On the side of the docking plate 16 away from the partition 15, a number of arc-shaped grooves 17 are equidistantly arranged. Inside the arc-shaped grooves 17, a number of bumps 18 are provided. The shock and impact resistant mechanism further includes two rows of elastic buffer blocks 19 fixed equidistantly on the inner walls of the upper and lower sides of the buffer cavity 14. The ends of the elastic buffer blocks 19 penetrate into the arc-shaped grooves 17 and are pressed together with the bumps 18. A middle buffer block 20 is fixed between adjacent two elastic buffer blocks 19. The middle buffer block 20 is fixed on the inner wall of the buffer cavity 14. Through the design of the shock and impact resistant mechanism, when the device receives vibration, the impact force received by the device will be transmitted to the elastic buffer blocks 19. The elastic buffer blocks 19 are pressed together with the docking plates 16, and the received impact force is buffered by the deformation of the elastic buffer blocks 19. Through the design of the middle buffer block 20, when the elastic buffer blocks 19 elastically buffer, the elastic buffer blocks 19 will press the middle buffer block 20 between two elastic buffer blocks 19. The middle buffer block 20 will be pressed together with the elastic buffer blocks 19 on both sides, and further buffer the impact force of the deformation of the elastic buffer blocks 19.
[0032] Refer to Figure 1 , the clamping member 3 includes a clamping block and a clamping groove. The clamping block and the clamping groove are respectively located on the opposite sides of the bottom tray 1 and the top tray 2. The bottom tray 1 and the top tray 2 are fixedly connected by clamping through the clamping block and the clamping groove. Through the design of the clamping member 3, the bottom tray 1 and the top tray 2 can be clamped and fixed together, improving the stability of the billiard tray.
[0033] During use, a number of billiard balls are placed in the bottom ball placement groove 5, and the ball collecting tripod is placed inside the bottom ball collecting tripod groove 4. Then, the top tray 2 and the bottom tray 1 are docked together through the docking block 12 and the docking groove 13. At this time, a number of billiard balls are accommodated in the ball placement space formed by the bottom ball placement groove 5 and the top ball placement groove 9, and the ball collecting tripod is accommodated in the tripod placement space formed by the bottom ball collecting tripod groove 4 and the top ball collecting tripod groove 8. At the same time, the ball collecting tripod strengthening block one 6 and the ball collecting tripod strengthening block two 7 are clamped in the strengthening groove one 10 and the strengthening groove two 11 for stable connection. Moreover, the ball collecting tripod strengthening block one 6 and the ball collecting tripod strengthening block two 7 will simultaneously clamp and limit the side of the tripod. Finally, the top tray 2 and the bottom tray 1 are fixed together through the clamping member 3;
[0034] During the operation of the device, when the device receives vibration, the impact force received by the device will be transmitted to the elastic buffer blocks 19. The elastic buffer blocks 19 are pressed together with the docking plates 16, and the received impact force is buffered by the deformation of the elastic buffer blocks 19;
[0035] When the elastic buffer block 19 elastically buffers, the elastic buffer block 19 will squeeze the middle buffer block 20 between the two elastic buffer blocks 19, and the middle buffer block 20 will be squeezed together with the elastic buffer blocks 19 on both sides, thereby further buffering the impact force of the deformation of the elastic buffer block 19.
[0036] Although this specification is described according to the implementation manners, not every implementation manner only contains an independent technical solution. This narrative manner of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other implementation manners that can be understood by those skilled in the art.
Claims
1. A shock-proof and impact-resistant structure billiard rest, characterized in that, It includes a bottom support (1) and a top support (2), which are connected and fixed by a clamping part (3) between the bottom support (1) and the top support (2). Middle parts of opposite sides of the bottom support (1) and the top support (2) are respectively provided with a bottom ball - collecting tripod groove (4) and a top ball - collecting tripod groove (8). The bottom ball - collecting tripod groove (4) and the top ball - collecting tripod groove (8) form a ball - collecting tripod placement space. Inside the bottom ball - collecting tripod groove (4) and the top ball - collecting tripod groove (8), several bottom ball placement grooves (5) and several top ball placement grooves (9) are respectively provided. The bottom ball placement grooves (5) and the top ball placement grooves (9) constitute a ball placement space. A strengthening component is provided between the bottom support (1) and the top support (2) and outside the ball - collecting tripod placement space. A docking component is provided outside the strengthening component. Shock - proof and impact - resistant mechanisms are provided inside both the bottom support (1) and the top support (2).
2. The shock-proof and impact-resistant structural billiard rack according to claim 1, wherein The strengthening component includes two ball - collecting tripod strengthening blocks one (6) and one ball - collecting tripod strengthening block two (7) fixed on the top of the bottom support (1). The two ball - collecting tripod strengthening blocks one (6) and the one ball - collecting tripod strengthening block two (7) are respectively located on three sides of the bottom ball - collecting tripod groove (4).
3. The shock-proof and impact-resistant structure billiard ball holder according to claim 2, wherein, The strengthening component further includes two strengthening grooves one (10) and one strengthening groove two (11) opened on the bottom of the top support (2). The two strengthening grooves one (10) and the one strengthening groove two (11) are respectively located on three sides of the top ball - collecting tripod groove (8).
4. The shock-proof and impact-resistant structural billiard rack according to claim 3, characterized in that, The two ball - collecting tripod strengthening blocks one (6) are clamped in the two strengthening grooves one (10), and the ball - collecting tripod strengthening block two (7) is clamped in the strengthening groove two (11).
5. A shock-proof and impact-resistant structure billiard ball holder according to claim 4, characterized in that, The docking component includes a docking groove (13) opened on the top of the bottom support (1) and a docking block (12) fixed on the bottom of the top support (2). The docking block (12) is clamped inside the docking groove (13).
6. The shock-proof and impact-resistant structural billiard rest according to claim 5, characterized in that, The shock - proof and impact - resistant mechanism includes a buffer cavity (14). In the middle of the buffer cavity (14), a partition (15) is fixed. Docking plates (16) are fixed on both the upper and lower sides of the partition (15). A number of arc - shaped grooves (17) are equidistantly opened on one side of the docking plate (16) away from the partition (15). Inside the arc - shaped grooves (17), a number of convex blocks (18) are provided.
7. The shock-proof and impact-resistant structural billiard rest according to claim 6, characterized in that, The shock - proof and impact - resistant mechanism further includes two rows of elastic buffer blocks (19) fixed equidistantly on the inner walls of the upper and lower sides of the buffer cavity (14). The ends of the elastic buffer blocks (19) penetrate into the arc - shaped grooves (17) and are pressed together with the convex blocks (18). A middle buffer block (20) is fixed between adjacent two elastic buffer blocks (19), and the middle buffer block (20) is fixed on the inner wall of the buffer cavity (14).
8. A shock-proof and impact-resistant structure billiard ball holder according to claim 7, characterized in that, The clamping member (3) includes a clamping block and a clamping groove, the clamping block and the clamping groove are respectively located on opposite sides of the bottom support (1) and the top support (2), and the bottom support (1) and the top support (2) are fixedly clamped through the clamping block and the clamping groove.