Conveying device for billiard ball processing

By designing a conveying device for billiards processing, the automated conveying of the billiards processing process is realized, the problems of low efficiency and high labor intensity of traditional manual operation are solved, and the processing efficiency and space utilization are improved.

CN223015551UActive Publication Date: 2025-06-24JINAN JUNLEI CNC MASCH CO LTD
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Patent Information

Application Number
CN202422109914.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-29
Publication Date
2025-06-24
Estimated Expiration
2034-08-29

AI Technical Summary

Technical Problem

During the traditional billiards processing, loading, carving and unloading are manually carried out, which is inefficient and increases the labor intensity of workers.

Method used

A conveying device for billiards processing is designed, including a fixture module, a feeding conveying table, a processing workbench and a feeding conveying table. The fixture module is loaded, processed and discharged in turn through these tables to realize automatic conveying.

Benefits of technology

It improves the working efficiency of billiards processing, reduces the intensity of manual labor, and makes full use of the work space to ensure smooth processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of billiard ball machining, and provides a conveying device for billiard ball machining, a feeding conveying table and a discharging conveying table are symmetrically arranged relative to a machining workbench, and a clamp module sequentially carries out feeding, machining and discharging through the feeding conveying table, the machining workbench and the discharging conveying table. A conveying assembly for conveying a clamp module is arranged on the first rack in the length direction of the first rack, and a first transferring assembly for transferring the clamp module to the machining workbench is arranged on the first rack in the direction perpendicular to the length direction of the first rack. The jacking assembly and the supporting tables are both arranged on the second rack, the supporting tables are located on the two sides of the jacking assembly, pressing assemblies used for fixing the clamp module are arranged on the supporting tables, and a second transferring assembly used for transferring the clamp module is arranged at the output end of the jacking assembly. The feeding station, the machining station and the discharging station can be carried out at the same time, the working efficiency is improved, the labor intensity of workers is reduced, meanwhile, the working space is fully utilized, and machining is smooth.
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Description

Technical Field

[0001] The utility model relates to the technical field of billiard processing, in particular to a conveying device for billiard processing. Background Technique

[0002] Billiards, also known as pool and snooker, is an elegant indoor sport that is widely popular internationally. It is an indoor entertainment and sports project where a cue is used to hit the balls on the table, and the winner is determined by calculating the scores. Initially, billiard balls were made of wood, and now they are all made of synthetic resin.

[0003] During the production process of billiard balls, it is necessary to polish the processed and formed billiard balls to make their surfaces meet the usage requirements, and it is also necessary to add numbers to the billiard balls. Traditionally, engraving is carried out by the engraving method, which is usually manually fed and unloaded after engraving. The efficiency is low, and at the same time, the labor intensity of workers is increased.

[0004] Therefore, in view of the above problems, a conveying device for billiard processing is proposed to solve the above problems. Content of the Utility Model

[0005] In view of the deficiencies of the prior art, the utility model develops a conveying device for billiard processing. The feeding, processing, and discharging of the utility model can be carried out simultaneously at three stations, improving the working efficiency, reducing the labor intensity of workers. At the same time, the working space is fully utilized and the processing is smooth.

[0006] The technical solution for the utility model to solve the technical problems is as follows: The utility model provides a conveying device for billiard processing, which includes a fixture module, a feeding conveyor table, a processing workbench, and a discharging conveyor table. The feeding conveyor table and the discharging conveyor table are symmetrically arranged with respect to the processing workbench. The fixture module successively performs feeding, processing, and discharging via the feeding conveyor table, the processing workbench, and the discharging conveyor table. The feeding conveyor table and the discharging conveyor table both include a frame one, a conveying component, and a transferring component one. On the frame one, a conveying component for conveying the fixture module is arranged along the length direction of the frame one, and a transferring component one for transferring the fixture module to the processing workbench is arranged along the direction perpendicular to the length direction of the frame one. The processing workbench includes a frame two, a supporting table, a lifting component, a pressing component, and a transferring component two. The lifting component and the supporting table are both arranged on the frame two. The supporting table is located on both sides of the lifting component. A pressing component for fixing the fixture module is arranged on the supporting table, and a transferring component two for transferring the fixture module is arranged at the output end of the lifting component.

[0007] As an optimization, the conveying component includes a driving roller, a first motor, a synchronous pulley, and a third synchronous belt. The driving roller is rotatably arranged on the first bench along the length direction of the first bench. The first motor is arranged on the first bench and is located below the driving roller. Synchronous pulleys are arranged at the output end of the first motor and one end of the driving roller, and a third synchronous belt is connected between the synchronous pulleys on the first motor and the driving roller.

[0008] As an optimization, the first transfer component includes a first transfer frame, a first cylinder, a first conveyor belt component, a first synchronous shaft, and a second motor. The first cylinder is arranged on the first bench, and the output end of the first cylinder is provided with the first transfer frame. The first transfer frame is arranged along the direction perpendicular to the length direction of the first bench. The first conveyor belt components are respectively arranged on both sides of the first transfer frame, and each group of the first conveyor belt components is arranged between two adjacent driving rollers. The first conveyor belt component includes a first synchronous belt and a first belt pulley. The first belt pulley is rotatably arranged at the end of the first transfer frame, and the two first belt pulleys are connected by the first synchronous belt. A first synchronous shaft is arranged between the two first belt pulleys at the same end. The second motor is arranged on the first transfer frame, and the output end of the second motor is connected to the first synchronous shaft.

[0009] As an optimization, the lifting component includes a second cylinder. The second cylinder is arranged on the second bench, and the output end of the second cylinder is provided with the second transfer component.

[0010] As an optimization, the position of the second transfer component is adapted to the position of the first transfer component. The second transfer component includes a second transfer frame, a second conveyor belt component, a second synchronous shaft, and a third motor. The second transfer frame is arranged along the direction perpendicular to the length direction of the first bench. The second conveyor belt components are respectively arranged on both sides of the second transfer frame. The second conveyor belt component includes a second synchronous belt and a second belt pulley. The second belt pulley is rotatably arranged at the end of the second transfer frame, and the two second belt pulleys are connected by the second synchronous belt. A second synchronous shaft is arranged between the two second belt pulleys at the same end. The third motor is arranged on the second transfer frame, and the output end of the third motor is connected to the second synchronous shaft.

[0011] As an optimization, the pressing component includes a third cylinder and a pressing block. Two supporting platforms are provided and are respectively arranged on both sides of the lifting component. The third cylinder is arranged at the end of the supporting platform, and the output end of the third cylinder is provided with the pressing block. The two pressing blocks are arranged close to each other.

[0012] As an optimization, the fixture module includes a fixture base, a support plate, a fixed seat, and a carving fixture plate. The support plates are arranged in rows at equal intervals on the fixture base. The carving fixture plate is arranged on the top of the support plate. A fixed seat for placing the billiard ball is arranged between two adjacent support plates. A space for clamping the billiard ball is formed between the fixed seat and the carving fixture plate.

[0013] The effects provided in the utility model content are only the effects of the embodiments, rather than all the effects of the utility model. The above technical solutions have the following advantages or beneficial effects:

[0014] By setting up a fixture module, a loading conveyor table, a processing workbench, and an unloading conveyor table, the fixture module is loaded, processed, and unloaded successively via the loading conveyor table, the processing workbench, and the unloading conveyor table. The three workstations can operate simultaneously, improving work efficiency, reducing the labor intensity of workers, and at the same time, making full use of the working space and ensuring smooth processing. Description of the Drawings

[0015] The drawings are used to provide a further understanding of the present invention and form a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation to the present invention.

[0016] Figure 1 Schematic diagram of the overall structure of the present invention;

[0017] Figure 2 Structural diagram of the processing workbench of the present invention;

[0018] Figure 3 Structural diagram of the fixture module of the present invention;

[0019] Figure 4 Structural diagram of the loading conveyor table or the unloading conveyor table of the present invention.

[0020] In the figures, 11 is the first platform frame; 12 is the conveying assembly; 121 is the driving roller; 122 is the first motor; 123 is the synchronous pulley; 124 is the third synchronous belt; 13 is the first transfer assembly; 131 is the first transfer frame; 132 is the first cylinder; 133 is the first synchronous belt; 134 is the first belt pulley; 135 is the first synchronous shaft; 136 is the second motor; 21 is the second platform frame; 22 is the support platform; 231 is the second cylinder; 24 is the pressing assembly; 241 is the third cylinder; 242 is the pressing block; 25 is the second transfer assembly; 251 is the second transfer frame; 252 is the second synchronous belt; 253 is the second belt pulley; 254 is the second synchronous shaft; 255 is the third motor; 3 is the fixture module; 31 is the fixture base; 32 is the support plate; 33 is the fixed seat; 34 is the engraving fixture plate. Detailed Embodiment

[0021] In order to clearly illustrate the technical features of the present solution, the present utility model will be described in detail below through specific embodiments and in conjunction with its accompanying drawings. The following disclosure provides many different embodiments or examples for implementing different structures of the present utility model. To simplify the disclosure of the present utility model, the components and settings of specific examples are described below. In addition, the present utility model may repeat reference numerals and / or letters in different examples. This repetition is for the purpose of simplification and clarity, and does not itself indicate the relationship between the various embodiments and / or settings discussed. It should be noted that the components illustrated in the drawings are not necessarily drawn to scale. The present utility model omits the description of well-known components, processing technologies and processes to avoid unnecessarily limiting the present utility model. The orientation or positional relationship indicated by terms such as "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. is based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be construed as a limitation of the present utility model. In addition, the terms "first", "second", "third" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance. In the description of the present utility model, it should be noted that unless otherwise clearly specified and limited, the terms "installation", "connection", "connection" should be understood in a broad sense. For example, it may be a fixed connection, a detachable connection, or an integral connection; it may be a mechanical connection or an electrical connection; it may be directly connected, or indirectly connected through an intermediate medium, and it may be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific circumstances.

[0022] As Figures 1 to 4 shown, a conveying device for billiard processing includes a fixture module 3, a loading conveying table, a processing workbench, and an unloading conveying table. The loading conveying table and the unloading conveying table are symmetrically arranged with respect to the processing workbench. The fixture module 3 successively performs loading, processing, and unloading via the loading conveying table, the processing workbench, and the unloading conveying table. Both the loading conveying table and the unloading conveying table include a frame one 11, a conveying component 12, and a transfer component one 13. A conveying component 12 for conveying the fixture module 3 is arranged on the frame one 11 along the length direction of the frame one 11, and a transfer component one 13 for transferring the fixture module 3 to the processing workbench is arranged on the frame one 11 along the direction perpendicular to the length direction of the frame one 11. The processing workbench includes a frame two 21, a support table 22, a lifting component, a pressing component 24, and a transfer component two 25. The lifting component and the support table 22 are both arranged on the frame two 21. The support table 22 is located on both sides of the lifting component. A pressing component 24 for fixing the fixture module 3 is arranged on the support table 22, and a transfer component two 25 for transferring the fixture module 3 is arranged at the output end of the lifting component.

[0023] By setting up the fixture module 3, the loading conveyor table, the processing workbench, and the unloading conveyor table, the fixture module 3 is loaded, processed, and unloaded successively via the loading conveyor table, the processing workbench, and the unloading conveyor table. The three workstations can operate simultaneously, improving work efficiency, reducing the labor intensity of workers, and at the same time, making full use of the working space and ensuring smooth processing.

[0024] In this embodiment, the transmission assembly 12 includes a transmission roller 121, a first motor 122, a synchronous pulley 123, and a third synchronous belt 124. The transmission roller 121 is rotatably arranged on the first platform 11 along the length direction of the first platform 11. The first motor 122 is arranged on the first platform 11 and is located below the transmission roller 121. Synchronous pulleys 123 are arranged at the output end of the first motor 122 and one end of the transmission roller 121, and a third synchronous belt 124 is connected between the synchronous pulleys 123 on the first motor 122 and the transmission roller 121. When the first motor 122 is started, the first motor 122 drives the transmission roller 121 to move through the synchronous pulley 123 and the third synchronous belt 124, so that the fixture module 3 is moved to a proper position.

[0025] The transfer component 13 includes a first transfer frame 131, a first cylinder 132, a first conveyor belt component, a first synchronizing shaft 135, and a second motor 136. The first cylinder 132 is arranged on the first bench 11, and the output end of the first cylinder 132 is provided with the first transfer frame 131. The first transfer frame 131 is arranged along the length direction perpendicular to the first bench 11. The first conveyor belt components are respectively arranged on both sides of the first transfer frame 131. Each group of the first conveyor belt components is arranged between two adjacent driving rollers 121. The first conveyor belt component includes a first synchronous belt 133 and a first pulley 134. The first pulley 134 is rotatably arranged at the end of the first transfer frame 131, and the two first pulleys 134 are connected by the first synchronous belt 133. The first synchronizing shaft 135 is arranged between the two first pulleys 134 at the same end. The second motor 136 is arranged on the first transfer frame 131, and the output end of the second motor 136 is connected to the first synchronizing shaft 135. When the jig module 3 moves above the first transfer component 13 of the loading conveyor table, the first cylinder 132 is started, and the first cylinder 132 extends, causing the first transfer frame 131 to rise, and further causing the first synchronous belt 133 to contact the jig module 3, lifting the jig module 3 from the driving roller 121. At this time, the second motor 136 is started to move the jig module 3 to a position close to the processing workbench by the first synchronous belt 133. When the jig module 3 moves from the processing workbench to the unloading conveyor table, first, the first cylinder 132 is started, and the first cylinder 132 extends, causing the first transfer frame 131 to rise, and further causing the first synchronous belt 133 to contact the jig module 3. At this time, the second motor 136 is started to move the jig module 3 to a suitable position on the unloading conveyor table by the first synchronous belt 133. Then, the first cylinder 132 retracts, causing the jig module 3 to fall onto the driving roller 121 of the unloading conveyor table. The first motor 122 is started, and the first motor 122 drives the driving roller 121 to move through the synchronous pulley 123 and the third synchronous belt 124, causing the jig module 3 to continue to move to the next working station.

[0026] In this embodiment, the jacking component includes a second cylinder 231. The second cylinder 231 is arranged on the second bench 21, and the output end of the second cylinder 231 is provided with the second transfer component 25. When the second cylinder 231 is started, the second transfer component 25 rises to the same height as the first transfer component 13 to receive the jig module 3 onto the second transfer component 25.

[0027] The position of the second transfer component 25 is adapted to the position of the first transfer component 13. The second transfer component 25 includes a second transfer frame 251, a second conveyor belt assembly, a second synchronizing shaft 254, and a third motor 255. The second transfer frame 251 is arranged along the length direction of the first vertical frame 11. The second conveyor belt assembly is arranged on both sides of the second transfer frame 251. The second conveyor belt assembly includes a second synchronous belt 252 and second pulleys 253. The second pulleys 253 are rotatably arranged at the ends of the second transfer frame 251. The two second pulleys 253 are connected by the second synchronous belt 252. The second synchronizing shaft 254 is arranged between the two second pulleys 253 at the same end. The third motor 255 is arranged on the second transfer frame 251, and the output end of the third motor 255 is connected to the second synchronizing shaft 254. The working process of the second transfer component 25 is the same as the working principle of the first transfer component 13. When the second transfer component 25 transfers the fixture module 3 above the support table 22, the second cylinder 231 retracts, and at the same time, the third motor 255 stops working, so that the fixture module 3 falls above the support table 22.

[0028] The pressing component 24 includes a third cylinder 241 and a pressing block 242. Two support tables 22 are provided and are respectively arranged on both sides of the lifting component. The third cylinder 241 is arranged at the end of the support table 22, and the pressing block 242 is arranged at the output end of the third cylinder 241. The two pressing blocks 242 are arranged close to each other. When the fixture module 3 falls above the support table 22, the third cylinder 241 is started, so that the pressing block 242 presses the fixture module 3 on the support table 22.

[0029] In this embodiment, the fixture module 3 includes a fixture base 31, a support plate 32, a fixed seat 33, and a carving fixture plate 34. The support plates 32 are arranged in rows at equal intervals on the fixture base 31. The carving fixture plate 34 is arranged on the top of the support plate 32. A fixed seat 33 for placing billiard balls is arranged between two adjacent support plates 32. A space for clamping billiard balls is formed between the fixed seat 33 and the carving fixture plate 34. The fixture module 3 selects the existing pneumatic lifting and clamping method to fix the workpiece. The base is integrally cast, and the four-corner positioning holes are designed for positioning, realizing the interchangeability of the fixture module on the assembly line, which will not be elaborated here.

[0030] Although the specific implementation manners of the utility model are described above in conjunction with the drawings, it is not a limitation to the protection scope of the utility model. Based on the technical solutions of the utility model, various modifications or deformations that can be made by those skilled in the art without creative efforts are still within the protection scope of the utility model.

Claims

1. A billiard ball processing conveying device, characterized in that: The invention comprises a fixture module (3), a loading conveyor platform, a processing workbench and a unloading conveyor platform. The loading conveyor platform and the unloading conveyor platform are symmetrically arranged with respect to the processing workbench. The fixture module (3) is loaded, processed and unloaded in sequence via the loading conveyor platform, the processing workbench and the unloading conveyor platform. The loading conveyor platform and the unloading conveyor platform both comprise a platform (11), a transmission component (12) and a transfer component (13). The transmission component (12) for transmitting the fixture module (3) is arranged along the length direction of the platform (11) on the platform (11). The vertical platform (13) is arranged along the upper side of the platform (11). A transfer assembly (13) for transferring the fixture module (3) to the processing workbench is arranged in the length direction of the first (11); the processing workbench comprises a second frame (21), a support platform (22), a lifting assembly, a clamping assembly (24) and a transfer assembly (25); the lifting assembly and the support platform (22) are both arranged on the second frame (21); the support platform (22) is located on both sides of the lifting assembly; a clamping assembly (24) for fixing the fixture module (3) is arranged on the support platform (22); and a transfer assembly (25) for transferring the fixture module (3) is arranged at the output end of the lifting assembly.

2. The billiard ball processing conveying device according to claim 1, characterized in that: The transmission assembly (12) comprises a transmission roller (121), a motor (122), a synchronous wheel (123) and a synchronous belt (124); the transmission roller (121) is rotatably arranged on the platform (11) along the length direction of the platform (11); the motor (122) is arranged on the platform (11) and is located below the transmission roller (121); the synchronous wheel (123) is arranged at the output end of the motor (122) and one end of the transmission roller (121); and the synchronous belt (124) is connected between the motor (122) and the synchronous wheel (123) on the transmission roller (121).

3. The billiard ball processing conveying device according to claim 2, characterized in that: The transfer assembly (13) includes a transfer frame (131), a cylinder (132), a conveyor belt assembly (1), a synchronous shaft (135) and a motor (136). The cylinder (132) is arranged on the platform (11). The transfer frame (131) is arranged at the output end of the cylinder (132). The transfer frame (131) is arranged along the length direction perpendicular to the platform (11). Conveyor belt assemblies (1) are respectively arranged on both sides of the transfer frame (131). Each set of conveyor belt assemblies (1) is arranged on two adjacent conveyor belt assemblies. A conveyor belt assembly (134) is provided between the transmission rollers (121), and includes a synchronous belt (133) and a pulley (134). The pulley (134) is rotatably arranged at the end of the transfer frame (131). The two pulleys (134) are connected via the synchronous belt (133). A synchronous shaft (135) is provided between the two pulleys (134) at the same end. A motor (136) is provided on the transfer frame (131), and an output end of the motor (136) is connected to the synchronous shaft (135).

4. The billiard ball processing conveying device according to claim 3, characterized in that: The lifting assembly comprises a second cylinder (231), which is arranged on a second stand (21), and a second transfer assembly (25) is arranged at the output end of the second cylinder (231).

5. The billiard ball processing conveying device according to claim 4, characterized in that: The position of the transfer assembly 2 (25) is adapted to the position of the transfer assembly 1 (13). The transfer assembly 2 (25) comprises a transfer frame 2 (251), a conveyor belt assembly 2, a synchronous shaft 2 (254) and a motor 3 (255). The transfer frame 2 (251) is arranged along the length direction of the vertical platform 1 (11). The conveyor belt assembly 2 is arranged on both sides of the transfer frame 2 (251). The conveyor belt assembly 2 comprises a synchronous belt 2 (252) and a pulley 2 (253). The pulley 2 (253) is rotatably arranged at the end of the transfer frame 2 (251). The two pulleys 2 (253) are connected by the synchronous belt 2 (252). The synchronous shaft 2 (254) is arranged between the two pulleys 2 (253) at the same end. The motor 3 (255) is arranged on the transfer frame 2 (251), and the output end of the motor 3 (255) is connected to the synchronous shaft 2 (254).

6. The billiard ball processing conveying device according to claim 5, characterized in that: The clamping assembly (24) comprises a cylinder three (241) and a clamping block (242). Two clamping blocks (242) are provided on the support platform (22) and are respectively provided on both sides of the jacking assembly. The cylinder three (241) is provided at the end of the support platform (22), and the clamping block (242) is provided at the output end of the cylinder three (241). The two clamping blocks (242) are provided close to each other.

7. The billiard ball processing conveying device according to claim 1, characterized in that: The fixture module (3) comprises a fixture seat (31), a support plate (32), a fixing seat (33) and an engraving fixture plate (34); the support plates (32) are arranged in rows at even intervals on the fixture seat (31); the engraving fixture plate (34) is arranged on the top of the support plates (32); a fixing seat (33) for placing billiard balls is arranged between two adjacent support plates (32); and a space for clamping billiard balls is formed between the fixing seat (33) and the engraving fixture plate (34).