All-plastic swimming pool basketball stand

The all-plastic, metal-free connection and reinforcement mechanisms solve the problem of basketball hoop and rim corrosion, improve replacement efficiency and service life, and reduce maintenance costs.

CN223569973UActive Publication Date: 2025-11-21SUZHOU INNOVATIVE SPORTS GOODS CO LTD
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Patent Information

Application Number
CN202423055361.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-11
Publication Date
2025-11-21
Estimated Expiration
2034-12-11

AI Technical Summary

Technical Problem

The rims of existing pool basketball hoops are easily corroded by water stains, making the bolts difficult to operate, affecting replacement efficiency and shortening service life.

Method used

The metal-free connection and reinforcement mechanism, designed with all-plastic materials, includes a blow-molded base, blow-molded uprights, blow-molded backboard, and injection-molded rim. The metal-free connection mechanism facilitates rim replacement, while the reinforcement mechanism improves the connection stability between the backboard and the uprights.

Benefits of technology

It improves the efficiency of basketball hoop replacement, reduces basketball hoop corrosion, extends service life, and lowers maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an all-plastic swimming pool basketball stand which comprises a blow molding base, blow molding stand columns, a blow molding backboard and an injection molding basket ring, the blow molding stand columns are arranged on the blow molding base, and the blow molding backboard is arranged on the blow molding stand columns; the basketball stand further comprises a metal-free connecting mechanism, the metal-free connecting mechanism comprises a first connecting block and a second connecting block, the first connecting block is arranged on the blow molding backboard and connected with the blow molding stand column, a containing groove and a first through hole communicated with the containing groove are formed in the first connecting block, and the second connecting block is connected with the blow molding stand column. A second through hole communicated with the first through hole is formed in the blow molding backboard; the second connecting block is arranged on the injection molding basket ring, and the end, away from the injection molding basket ring, of the second connecting block penetrates through the second through hole and the first through hole to be located in the containing groove. The device has the effect of improving the replacement efficiency.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of basketball stands, in particular to a full-plastic swimming pool basketball stand. BACKGROUND

[0002] The existing swimming pool side is generally provided with a basketball stand for giving swimmers different basketball playing experiences.

[0003] At present, a swimming pool basketball stand comprises a base, a supporting block arranged on the base, a backboard fixed on the supporting block and an iron basketball ring connected to the backboard through bolts. A swimmer throws a basketball with water stains from a swimming pool into a basket.

[0004] When shooting, the basketball with water stains contacts the basketball ring, thereby causing corrosion damage to the basketball ring and the bolts. At this time, the corroded basketball ring needs to be replaced, but the corroded bolts are inconvenient for an operator to rotate, which needs to spend a certain amount of time to rotate the bolts to separate the basketball ring from the backboard, thereby reducing the replacement efficiency. CONTENT OF THE UTILITY MODEL

[0005] In order to improve the replacement efficiency, the application provides a full-plastic swimming pool basketball stand.

[0006] The application provides a full-plastic swimming pool basketball stand, which adopts the following technical scheme:

[0007] The full-plastic swimming pool basketball stand comprises a blow-molded base, a blow-molded stand, a blow-molded backboard and an injection-molded basketball ring. The blow-molded stand is arranged on the blow-molded base, and the blow-molded backboard is arranged on the blow-molded stand. The full-plastic swimming pool basketball stand further comprises a non-metal connecting mechanism. The non-metal connecting mechanism comprises a first connecting block and a second connecting block. The first connecting block is arranged on the blow-molded backboard and connected to the blow-molded stand. A containing groove and a first through hole in communication with the containing groove are arranged on the first connecting block. A second through hole in communication with the first through hole is arranged on the blow-molded backboard. The second connecting block is arranged on the injection-molded basketball ring, and an end of the second connecting block away from the injection-molded basketball ring penetrates through the second through hole and the first through hole and is located in the containing groove.

[0008] By adopting the above technical scheme, when the injection-molded basketball ring needs to be replaced, the second connecting block on the injection-molded basketball ring is no longer located in the containing groove of the first connecting block, so that the injection-molded basketball ring is separated from the blow-molded backboard. The non-metal connecting mechanism can facilitate the replacement of the injection-molded basketball ring, thereby improving the replacement efficiency. In addition, the use of metal of the basketball stand is less, which can reduce the corrosion of the basketball stand, prolong the service life of the basketball stand and reduce the maintenance cost.

[0009] Optionally, the first connecting block is provided with a placing groove in communication with the accommodating groove, and an end of the blow molding stand away from the blow molding base is located in the placing groove.

[0010] By using the above technical scheme, when the second connecting block is sequentially located in the accommodating groove through the second through hole and the first through hole, the blow molding stand and the first connecting block are moved towards the blow molding stand, and the blow molding stand is clamped with the placing groove. The first connecting block and the blow molding stand are detachable, which facilitates transportation, is simple in structure, easy to install, saves time and improves efficiency.

[0011] Optionally, the blow molding stand is provided with a reinforcing mechanism, the reinforcing mechanism comprises a first reinforcing block and a second reinforcing block, the first reinforcing block is arranged on the blow molding stand, and the second connecting block is provided with a first reinforcing groove clamped with the first reinforcing block.

[0012] By using the above technical scheme, when the second connecting block is sequentially located in the accommodating groove through the second through hole and the first through hole, and the blow molding stand is clamped with the placing groove, the first reinforcing block can be clamped with the reinforcing groove on the second connecting block, so as to improve the stability of the blow molding stand and the blow molding stand when they are connected.

[0013] Optionally, the reinforcing mechanism further comprises a second reinforcing block, the second reinforcing block is arranged on the blow molding stand, the first connecting block is provided with a second reinforcing groove clamped with the second reinforcing block, and the relative height of the first reinforcing block relative to the blow molding stand is lower than the relative height of the second reinforcing block relative to the blow molding stand.

[0014] By using the above technical scheme, when the blow molding stand and the first connecting block are moved towards the blow molding stand, and before the blow molding stand enters the placing groove, the second reinforcing block enters the placing groove first, and then the first reinforcing block enters the placing groove. When the first reinforcing block is clamped with the first reinforcing groove on the second connecting block, the second reinforcing block is clamped with the first reinforcing groove on the first connecting block, and the blow molding stand is clamped with the placing groove on the first connecting block. Therefore, the second reinforcing block not only improves the stability of the blow molding stand on the blow molding stand, but also plays a guiding role.

[0015] Optionally, the blow molding stand is formed with a shoulder groove, and the blow molding stand abuts against the side wall and the bottom wall of the shoulder groove.

[0016] By using the above technical scheme, when the blow molding stand abuts against the side wall and the bottom wall of the shoulder groove, the shoulder groove can support the blow molding stand, so as to improve the stability of the blow molding stand and the blow molding stand when they are connected.

[0017] Optionally, the blow molding base is formed with a mounting hole and a limiting groove in communication with the mounting hole, and the blow molding column is provided with a limiting block at one end, the limiting block is clamped with the limiting groove, and the end of the blow molding column close to the limiting block is located in the mounting hole.

[0018] By using the above technical scheme, the end of the blow molding column away from the limiting block passes through the mounting hole of the blow molding base from bottom to top, and the limiting block is clamped with the limiting groove, so that the stability of the blow molding column when connected with the blow molding base can be reduced; and the detachable blow molding base and the blow molding column can facilitate transportation.

[0019] Optionally, the blow molding base and the blow molding column are both formed with a counterweight cavity, the end of the blow molding column away from the limiting block and the blow molding base are both formed with an injection port in communication with the counterweight cavity, a water cover is clamped at the injection port, and the injection port and the water cover on the blow molding column are located in the placement groove of the first connecting block.

[0020] By using the above technical scheme, after the blow molding column is installed on the blow molding base, water or sand is injected into the counterweight cavity through the injection port to increase the counterweight of the blow molding column and the blow molding base, thereby improving the stability of the basketball stand; then the water cover is clamped with the injection port; when the first connecting block is connected with the blow molding column, the water cover is located in the placement groove of the first connecting block, which can reduce the phenomenon that the water cover on the blow molding column is opened when it is not needed to be opened.

[0021] Optionally, a guide column is rotatably arranged on the second reinforcing block, a third through hole is formed on the first connecting block for the guide column to pass through; a strip-shaped block is fixedly arranged on the guide column, a strip-shaped hole is formed on the first connecting block for the strip-shaped block to communicate, and the strip-shaped hole is in communication with the third through hole.

[0022] By using the above technical scheme, when the second reinforcing block is clamped with the second reinforcing groove on the first connecting block, the end of the guide column away from the second reinforcing block passes through the third through hole, and the strip-shaped block passes through the strip-shaped hole; then the strip-shaped hole and the strip-shaped hole are dislocated by rotating the strip-shaped block and the guide column, so that the first connecting block is better limited on the blow molding column, thereby improving the stability of the blow molding backboard on the blow molding column.

[0023] In summary, the present application has at least one of the following beneficial technical effects:

[0024] 1. The non-metal connecting mechanism can facilitate the replacement of the injection molded basketball ring, thereby improving the replacement efficiency; and the use of metal of the basketball stand is less, which can reduce the corrosion of the basketball stand, prolong the service life of the basketball stand, and reduce the maintenance cost;

[0025] 2. The reinforcing mechanism can improve the stability of the blow molding basket plate and the blow molding stand when connected. BRIEF DESCRIPTION OF DRAWINGS

[0026] Figure 1 The structure diagram of the full-plastic swimming pool basketball stand in embodiment 1 of the present application is shown.

[0027] Figure 2 The structure diagram of the limiting block in embodiment 1 of the present application is shown.

[0028] Figure 3 The structure diagram of the first connection in embodiment 1 of the present application is shown.

[0029] Figure 4 The structure diagram of the reinforcing mechanism in embodiment 1 of the present application is shown.

[0030] Figure 5 The structure diagram of the first reinforcing slot of the first reinforcing block and the second connecting block in embodiment 1 of the present application is shown.

[0031] Figure 6 The structure diagram of the second reinforcing block in embodiment 2 of the present application is shown.

[0032] Figure 7 The structure diagram of the fixing mechanism in embodiment 2 of the present application is shown.

[0033] Figure 8 The structure diagram of the gear in embodiment 2 of the present application is shown.

[0034] Reference signs: 1, blow molding base; 11, mounting hole; 12, limiting slot; 2, blow molding stand; 21, shoulder slot; 3, blow molding basket plate; 31, second through hole; 4, injection molding basket ring; 5, non-metallic connecting mechanism; 51, first connecting block; 511, accommodating slot; 512, first through hole; 513, placing slot; 514, second reinforcing slot; 52, second connecting block; 521, first reinforcing slot; 6, reinforcing mechanism; 61, first reinforcing block; 62, second reinforcing block; 71, limiting block; 72, water cover; 81, guide column; 82, strip block; 91, fixing block; 92, moving block; 93, rotating shaft; 94, gear; 95, rack. DETAILED DESCRIPTION

[0035] The following will be described in detail in combination with the accompanying Figures 1-8 The present application will be further described in detail.

[0036] The embodiments of the present application disclose a full-plastic swimming pool basketball stand.

[0037] Embodiment 1

[0038] Reference Figure 1The utility model provides a kind of all-plastic swimming pool basketball stand, including blow molding pedestal 1, blow molding pedestal 1 is provided with blow molding stand 2, blow molding stand 2 is provided with blow molding backboard 3, blow molding backboard 3 is provided with injection molding hoop 4;Injection molding hoop 4 is provided with the non-metallic connecting mechanism 5 connected with blow molding backboard 3.

[0039] Reference Figure 2 Blow molding pedestal 1 is formed with mounting hole 11, and the limiting groove 12 in communication with the mounting hole 11 is formed on the blow molding pedestal 1, and the limiting groove is located on the side of the blow molding pedestal 1 close to the swimming pool.The one end of the blow molding stand 2 is integrally provided with the limiting block 71 which is clamped with the limiting groove 12.

[0040] The one end of the blow molding stand 2 away from the limiting block 71 is passed through the mounting hole 11 on the blow molding pedestal 1 from bottom to top, and the limiting block 71 is clamped with the limiting groove 12 on the blow molding pedestal 1, and finally the blow molding pedestal 1 is placed on the side of the swimming pool.

[0041] Reference Figure 2 、 Figure 3 And Figure 4 The one end of the blow molding pedestal 1 away from the limiting block 71 is formed with the shoulder groove 21, and the blow molding backboard 3 abuts against the side wall and the bottom wall of the shoulder groove 21;Two second through holes 31 are formed on the blow molding backboard 3.

[0042] The non-metallic connecting mechanism 5 includes the first connecting block 51 integrally provided on the blow molding backboard 3, the first connecting block 51 is formed with the placing groove 513, and the one end of the blow molding stand 2 formed with the shoulder groove 21 is entered into the placing groove 513 and clamped with the placing groove 513;Two accommodating grooves 511 in communication with the placing groove 513 are formed on the first connecting block 51, and two first through holes 512 are formed on the first connecting block 51, one of the first through holes 512 is in communication with one of the second through holes 31 and one of the accommodating grooves 511, and the other of the first through holes 512 is in communication with the other of the second through holes 31 and the other of the accommodating grooves 511.

[0043] The second connecting block 52 is integrally provided on the injection molding hoop 4, and the one end of the second connecting block 52 away from the injection molding hoop 4 is sequentially passed through the second through hole 31 on the blow molding backboard 3 and the first through hole 512 on the first connecting block 51 and then located in the accommodating groove 511 of the first connecting block 51.

[0044] The one end of the second connecting block 52 away from the injection molding hoop 4 is sequentially passed through the second through hole 31 on the blow molding backboard 3 and the first through hole 512 on the first connecting block 51 and then located in the accommodating groove 511 of the first connecting block 51, and then the blow molding backboard 3 and the first connecting block 51 are moved towards the direction close to the blow molding stand 2, so that the one end of the blow molding stand 2 away from the limiting block 71 is entered into the placing groove 513 of the first connecting block 51 and clamped with the placing groove 513, and the blow molding backboard 3 abuts against the side wall and the bottom wall of the shoulder groove 21 on the blow molding stand 2.

[0045] Referring to Figure 4 and Figure 5 The blow molding stand 2 is provided with a reinforcing mechanism 6, the reinforcing mechanism 6 comprises two first reinforcing blocks 61 integrally arranged on the blow molding stand 2, the two first reinforcing blocks 61 are respectively located in the two second connecting blocks 52 in the accommodating groove 511, and the second connecting block 52 is provided with a first reinforcing groove 521 for clamping the first reinforcing block 61; the blow molding stand 2 between the two first reinforcing blocks 61 is integrally provided with a second reinforcing block 62, and the first connecting block 51 is provided with a second reinforcing groove 514 for clamping the second reinforcing block 62. And the relative height of the second reinforcing block 62 relative to the blow molding stand 2 is higher than the relative height of the first reinforcing block 61 relative to the blow molding stand 2.

[0046] When the blow molding stand 2 and the first connecting block 51 move towards the direction close to the blow molding stand 2, and before the blow molding stand 2 enters the placing groove 513 of the first connecting block 51, the second reinforcing block 62 will first enter the placing groove 513, and then the first reinforcing block 61 enters the placing groove 513; when the first reinforcing block 61 clamps the first reinforcing groove 521 on the second connecting block 52, the second reinforcing block 62 clamps the first reinforcing groove 521 on the first connecting block 51, and the blow molding stand 2 clamps the placing groove 513 on the first connecting block 51.

[0047] Referring to Figure 1 and Figure 5 The blow molding stand 2 and the blow molding base 1 are both formed with a counterweight cavity, the end of the blow molding stand 2 away from the blow molding base 1 and the blow molding base 1 are both formed with an injection port in communication with the counterweight cavity, and a water cover 72 is clamped in the injection port.

[0048] After the blow molding stand 2 is installed on the blow molding base 1, water or sand is injected into the counterweight cavity through the injection port to increase the counterweight of the blow molding stand 2 and the blow molding base 1; then the water cover 72 is clamped with the injection port. Then the first connecting block 51 is connected with the blow molding stand 2, and the injection port and the water cover 72 on the blow molding stand 2 are located in the placing groove 513 of the first connecting block 51.

[0049] In this application, the first connecting block 51, the second connecting block 52, the first reinforcing block 61, the second reinforcing block 62, the limiting block 71 and the water cover 72 are all made of plastic.

[0050] The implementation principle of the embodiment 1 of the application is that the end of the blow molding base 1 away from the limiting block 71 is first inserted through the mounting hole 11 on the blow molding base 1, and the limiting block 71 is clamped with the limiting groove 12 on the blow molding base 1; then water or sand is injected into the counterweight cavities of the blow molding stand 2 and the blow molding base 1, and the water cover 72 is clamped with the injection hole.

[0051] Then the second connecting block 52 is located in the accommodating groove 511 of the first connecting block 51; then the blow molding basket plate 3 and the first connecting block 51 are moved, the first reinforcing block 61 is clamped with the first reinforcing groove 521 on the second connecting block 52, the second reinforcing block 62 is clamped with the second reinforcing groove 514 on the first connecting block 51, the injection port and the water cover 72 on the blow molding stand column 2 are located in the placing groove 513 of the first connecting block 51, and the blow molding stand column 2 is clamped with the placing groove 513 of the first connecting block 51; and the blow molding basket plate 3 abuts against the side wall and the bottom wall of the shoulder groove 21 on the blow molding stand column 2.

[0052] Embodiment 2

[0053] Reference Figure 6 and Figure 7 Different from the embodiment 1, the second reinforcing block 62 is provided with a clamping groove, a guide column 81 is placed in the clamping groove, and the guide column 81 can rotate in the clamping groove; the first connecting block 51 is provided with a third through hole in communication with the second reinforcing groove 514, and an end of the guide column 81 away from the second reinforcing block 62 penetrates through the third through hole of the first connecting block 51. An end of the guide column 81 away from the second reinforcing block 62 is fixedly connected with a strip-shaped block 82, the first connecting block 51 is provided with a strip-shaped hole for the strip-shaped block 82 to penetrate through, the strip-shaped hole is in communication with the third through hole, and the cross section of the strip-shaped block 82 is the same as the cross section of the strip-shaped block 82.

[0054] When the second reinforcing block 62 is clamped with the second reinforcing groove 514 on the first connecting block 51, the end of the guide column 81 away from the second reinforcing block 62 penetrates through the third through hole on the first connecting block 51, and the strip-shaped block 82 penetrates through the strip-shaped hole on the first connecting block 51; then the strip-shaped block 82 and the guide column 81 are rotated, so that the strip-shaped hole is dislocated with the strip-shaped hole.

[0055] Reference Figure 6 and Figure 8 The second reinforcing block 62 is provided with a fixing groove in communication with the clamping groove, and the guide column 81 placed in the clamping groove is provided with an annular groove. The guide column 81 is provided with a fixing mechanism, the fixing mechanism comprises a fixing block 91 slidably connected in the annular groove, a part of the fixing block 91 can enter the fixing groove and can rotate in the fixing groove; the guide column 81 forms a cavity, the guide column 81 is provided with a fourth through hole in communication with the cavity and the annular groove, the fixing block 91 is integrally provided with a moving block 92, an end of the moving block 92 away from the fixing block 91 penetrates through the fourth through hole and is located in the cavity; the guide column 81 is rotatably connected with a rotating shaft 93, the rotating shaft 93 is keyed with a gear 94; the moving block 92 is integrally provided with a gear rack 95 engaged with the gear 94.

[0056] First, the guide column 81 is close to the end of the fixed block 91 and the second reinforcing block 62 on the card slot card, then rotate the shaft 93, the shaft 93 drive gear 94 rotation, gear 94 drive rack 95 movement, rack 95 drive moving block 92 movement, moving block 92 drive fixed block 91 movement, make the fixed block 91 far away from the end of the moving block 92 into the fixed slot. Thus realize the guide column 81 stably connected in the second reinforcing block 62.

[0057] The implementation principle of the embodiment 2 of the application is: first, the guide column 81 is close to the end of the fixed block 91 and the second reinforcing block 62 on the card slot card, then make the fixed block 91 far away from the end of the moving block 92 into the fixed slot of the second reinforcing block 62; then make the guide column 81 pass through the third through hole on the first connecting block 51, and the strip block 82 pass through the strip hole on the first connecting block 51, at this time, it indicates that the second reinforcing block 62 is carded with the first reinforcing slot 521 on the first connecting block 51, and the first reinforcing block 61 is carded with the first reinforcing slot 521 on the second connecting block 52; finally, rotate the strip block 82 and the guide column 81, so that the strip block 82 is dislocated with the strip hole, thereby making the first connecting block 51 better connected with the blow molding stand column 2.

[0058] The above are the preferred embodiments of the application, not limited to the protection scope of the application, therefore: all equivalent changes made according to the structure, shape, principle of the application should be covered in the protection scope of the application.

Claims

1. A fully plastic swimming pool basketball hoop, comprising a blow-molded base (1), a blow-molded column (2), a blow-molded backboard (3), and an injection-molded rim (4), wherein the blow-molded column (2) is disposed on the blow-molded base (1), and the blow-molded backboard (3) is disposed on the blow-molded column (2); characterized in that, It also includes a metal-free connection mechanism (5), which includes a first connecting block (51) and a second connecting block (52). The first connecting block (51) is disposed on the blow-molded backboard (3) and connected to the blow-molded column (2). The first connecting block (51) has a receiving groove (511) and a first through hole (512) communicating with the receiving groove (511). The blow-molded backboard (3) has a second through hole (31) communicating with the first through hole (512). The second connecting block (52) is disposed on the injection-molded basket (4), and the end of the second connecting block (52) away from the injection-molded basket (4) passes through the second through hole (31) and the first through hole (512) and is located in the receiving groove (511).

2. The all-plastic swimming pool basketball hoop according to claim 1, characterized in that, The first connecting block (51) has a placement groove (513) that communicates with the receiving groove (511), and the end of the blow-molded column (2) away from the blow-molded base (1) is located in the placement groove (513).

3. The all-plastic swimming pool basketball hoop according to claim 2, characterized in that, The blow-molded column (2) is provided with a reinforcing mechanism (6), which includes a first reinforcing block (61) and a second reinforcing block (62). The first reinforcing block (61) is provided on the blow-molded column (2), and the second connecting block (52) is provided with a first reinforcing groove (521) that engages with the first reinforcing block (61).

4. The all-plastic swimming pool basketball hoop according to claim 3, characterized in that, The reinforcement mechanism (6) further includes a second reinforcement block (62), which is disposed on the blow-molded column (2). The first connecting block (51) has a second reinforcement groove (514) that engages with the second reinforcement block (62). The relative height of the first reinforcement block (61) relative to the blow-molded column (2) is lower than the relative height of the second reinforcement block (62) relative to the blow-molded column (2).

5. A fully plastic swimming pool basketball hoop according to claim 2, characterized in that, The blow-molded column (2) has a shoulder groove (21) formed on it, and the blow-molded backboard (3) abuts against the side wall and bottom wall of the shoulder groove (21).

6. A fully plastic swimming pool basketball hoop according to claim 2, characterized in that, The blow-molded base (1) has an installation hole (11) and a limiting groove (12) communicating with the installation hole (11). One end of the blow-molded column (2) is provided with a limiting block (71). The limiting block (71) is engaged with the limiting groove (12), and the end of the blow-molded column (2) near the limiting block (71) is located in the installation hole (11).

7. A fully plastic swimming pool basketball hoop according to claim 6, characterized in that, Both the blow-molded base (1) and the blow-molded column (2) have counterweight cavities. Both the end of the blow-molded column (2) away from the limiting block (71) and the blow-molded base (1) have injection ports that communicate with the counterweight cavities. A water cap (72) is snapped into the injection port. The injection port and the water cap (72) on the blow-molded column (2) are located in the placement groove (513) of the first connecting block (51).

8. A fully plastic swimming pool basketball hoop according to claim 4, characterized in that, The second reinforcing block (62) is rotatably provided with a guide post (81), and the first connecting block (51) is provided with a third through hole for the guide post (81) to pass through; the guide post (81) is fixedly provided with a strip block (82), and the first connecting block (51) is provided with a strip hole for the strip block (82) to communicate with, and the strip hole communicates with the third through hole.