A low-power conveyor belt structure for craft beer

By introducing a moving mechanism and a linkage adjustment mechanism into the low-power conveyor belt, the problems of large space occupation and cumbersome adjustment in the existing technology are solved, and efficient and flexible beer transportation is achieved.

CN224278824UActive Publication Date: 2026-05-26ZHENGZHOU KINGSTAR BEER
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Patent Information

Application Number
CN202521333294.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-27
Publication Date
2026-05-26
Estimated Expiration
2035-06-27

AI Technical Summary

Technical Problem

Existing low-power conveyor belts occupy a large space and are cumbersome to adjust in beer production, resulting in low transportation efficiency.

Method used

The system employs a moving mechanism and a linkage adjustment mechanism. Through the cooperation of lead screws, motors, gears, and movable baffles, it enables the movement of the conveyor frame and the alignment of the guide ports, avoiding overlap and cumbersome operation of the baffles.

Benefits of technology

It improves the space utilization of the beer production workshop and enhances the efficiency and flexibility of transferring craft beer between conveyor belts after bottling.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application relates to the field of craft beer conveying technology, specifically a low-power conveyor belt structure for craft beer. After the craft beer is filled and conveyed on a low-power conveyor mechanism one, a moving mechanism aligns the corresponding guide port on a second conveyor frame with the discharge end of the first low-power conveyor mechanism. Simultaneously, a linkage adjustment mechanism connects the two corresponding inclined guide ports on the second conveyor frame, thereby transferring the filled craft beer from the first low-power conveyor belt to another low-power conveyor belt connected to the second conveyor frame. This transfer method avoids the cumbersome operations of overlapping adjacent low-power conveyor belts and repeatedly installing stop bars, thus reducing the space occupied by adjacent low-power conveyor belts in the beer production workshop. It also makes the transfer of filled craft beer between adjacent low-power conveyor belts more efficient and flexible, resulting in higher transfer efficiency.
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Description

Technical Field

[0001] This application relates to the field of craft beer conveying technology, and in particular to a low-power conveyor belt structure for craft beer. Background Technology

[0002] In the production process of craft beer, low-power conveyor belts are needed to transport bottled or canned beer, raw materials or other packaging materials, and to ensure their transportation efficiency, energy saving and reliability.

[0003] The existing low-power conveyor belt mainly consists of a conveyor frame, support rollers mounted on the conveyor frame, a conveyor belt sleeved outside the support rollers, a low-power motor mounted on the outer wall of the conveyor frame to drive the corresponding support rollers to rotate, and baffles mounted on the conveyor frame. When conveying the bottled craft beer, the bottled craft beer is placed directly on the conveyor belt so that the bottled craft beer can be conveyed during the rotation of the conveyor belt. However, when the bottled craft beer is transferred to another conveyor belt during the conveying process, the two conveyor belts need to be overlapped in parallel for a section first, and then baffles are installed between the two conveyor belts to ensure that the bottled craft beer is transferred between the two low-power conveyor belts.

[0004] While existing low-power conveyor belts can transfer craft beer from one low-power conveyor belt to another after bottling, the overlap between two adjacent low-power conveyor belts significantly occupies space in the beer production workshop, resulting in low space utilization. Furthermore, the process of transferring bottled craft beer between two low-power conveyor belts by installing baffles and ensuring overlap is cumbersome and inflexible, leading to low efficiency in transferring bottled craft beer between different low-power conveyor belts. Summary of the Invention

[0005] To address the shortcomings of existing technologies, the purpose of this application is to provide a low-power conveyor belt structure for craft beer that enables rapid transfer of filled craft beer between two low-power conveyor belts without occupying excessive space in the beer production workshop.

[0006] The above-mentioned objective of this application is achieved through the following technical solution:

[0007] A low-power conveyor belt structure for craft beer includes a conveyor frame one, on which a low-power conveying mechanism one is mounted. The low-power conveying mechanism one includes a conveyor belt one, a support roller one, and a motor one. A connecting frame is welded to the discharge end of the conveyor frame one, and a mounting frame is welded to the top of the connecting frame. A moving mechanism is mounted on the mounting frame, and the moving mechanism includes a slide, a lead screw, and a motor three. A conveyor frame two is connected to the top of the slide, and a low-power conveying mechanism two is mounted on the conveyor frame two. The low-power conveying mechanism two includes a motor two, a support roller two, and a conveyor belt two. Two fixed baffles are symmetrically mounted on both sides of the top of the conveyor frame two. Each fixed baffle has two guide ports symmetrically opened, matching the width of the conveyor belt one. A cross mounting plate is provided above the conveyor frame two. A linkage adjustment mechanism is installed between the cross mounting plate and the two fixed baffles. The linkage adjustment mechanism includes a gear two, a double gear shaft, a gear one, a motor four, an electric push rod, a connecting shaft, and a movable baffle.

[0008] Optionally, a baffle is provided on each of the two sides of the top of the conveyor frame, and a support rod is bolted to the bottom of each baffle and the conveyor frame.

[0009] Optionally, the support roller is rotatably mounted inside the conveyor frame, the conveyor belt is nested outside the support roller, and the motor is mounted outside the conveyor frame directly opposite one of the support rollers. The motor is a low-power motor.

[0010] Optionally, the motor is bolted to the middle of one side wall of the mounting frame, the lead screw is rotatably mounted in the middle of the mounting frame, and the motor is connected to the lead screw coupling.

[0011] Optionally, the slide block is slidably mounted on the mounting frame, and the lead screw passes through the slide block and is threadedly connected to the slide block.

[0012] Optionally, the second conveyor frame is bolted to the slide block, the second support roller is rotatably mounted inside the second conveyor frame, the second conveyor belt is nested outside the second support roller, and the second motor is mounted outside the second conveyor frame directly opposite one of the second support rollers. The second motor is a low-power motor.

[0013] Optionally, the height of the fixed baffle is matched with the height of the baffle bar, and there are four guide ports.

[0014] Optionally, there are two electric actuators, which are symmetrically installed on both sides of the bottom end of the cross mounting plate. The fixing parts of the two electric actuators are bolted to the corresponding fixing baffles. A motor is bolted to the center of the top of the cross mounting plate. The power output end of the motor is connected to the gear. Two double gear shafts are symmetrically installed on both sides of the gear inside the cross mounting plate.

[0015] Optionally, each of the dual gear shafts is connected to a second gear on the side opposite to the first gear. The second gear has a connecting shaft welded to the middle of its bottom end. The connecting shaft is rotatably connected to the cross mounting plate. A movable baffle is welded to the bottom end of the connecting shaft. The length of the movable baffle matches the distance between the two oblique guide ports.

[0016] In summary, this application includes at least one of the following beneficial technical effects:

[0017] This invention, by installing a mounting frame, a moving mechanism, a fixed baffle, a guide port, a cross mounting plate, a second low-power conveyor mechanism, a second conveyor frame, and a linkage adjustment mechanism on one side of a low-power conveyor mechanism, allows craft beer to be conveyed on the first low-power conveyor mechanism after bottling. The moving mechanism aligns the corresponding guide port on the second conveyor frame with the discharge end of the first low-power conveyor mechanism. Simultaneously, the linkage adjustment mechanism connects the two corresponding oblique guide ports on the second conveyor frame. This enables the bottled craft beer conveyed on the first low-power conveyor belt to be transferred to another low-power conveyor belt that is aligned with the second conveyor frame. This transfer method avoids the cumbersome operations of overlapping adjacent low-power conveyor belts and repeatedly installing baffles, thus reducing the space occupied by adjacent low-power conveyor belts in the beer production workshop, increasing space utilization, and making the transfer of bottled craft beer between adjacent low-power conveyor belts more efficient and flexible, resulting in higher transfer efficiency. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the structure provided in the embodiments of this application;

[0019] Figure 2 This is a left sectional view of the cross-shaped mounting plate provided in the embodiments of this application;

[0020] Figure 3 This is the front view provided in the embodiments of this application;

[0021] Figure 4 This is a schematic diagram of the slide provided in the embodiment of this application.

[0022] Explanation of reference numerals in the attached drawings: 1. Stop bar; 2. Support rod; 3. Conveyor frame one; 4. Low-power conveyor mechanism one; 41. Conveyor belt one; 42. Support roller one; 43. Motor one; 5. Connecting frame; 6. Moving mechanism; 61. Slide; 62. Lead screw; 63. Motor three; 7. Mounting frame; 8. Low-power conveyor mechanism two; 81. Support roller two; 82. Conveyor belt two; 83. Motor two; 9. Conveyor frame two; 10. Cross mounting plate; 11. Fixed baffle; 12. Guide port; 13. Linkage adjustment mechanism; 131. Gear two; 132. Double gear shaft; 133. Gear one; 134. Motor four; 135. Electric push rod; 136. Connecting shaft; 137. Movable baffle. Detailed Implementation

[0023] The present application will be further described in detail below with reference to the accompanying drawings.

[0024] To better understand the technical solutions shown in the embodiments of this application, the structure of existing low-power conveyor belts and the working principle of transferring bottled craft beer will be introduced first.

[0025] The existing low-power conveyor belt mainly consists of a conveyor frame, support rollers mounted on the conveyor frame, a conveyor belt sleeved outside the support rollers, a low-power motor mounted on the outer wall of the conveyor frame to drive the corresponding support rollers to rotate, and baffles mounted on the conveyor frame. When conveying the bottled craft beer, the bottled craft beer is placed directly on the conveyor belt so that the bottled craft beer can be conveyed during the rotation of the conveyor belt. However, when the bottled craft beer is transferred to another conveyor belt during the conveying process, the two conveyor belts need to be overlapped in parallel for a section first, and then baffles are installed between the two conveyor belts to ensure that the bottled craft beer is transferred between the two low-power conveyor belts.

[0026] Please see Figures 1-4This application discloses a low-power conveyor belt structure for craft beer, comprising a conveyor frame 3, on which a low-power conveying mechanism 4 is mounted. The low-power conveying mechanism 4 includes a conveyor belt 41, a support roller 42, and a motor 43. A connecting frame 5 is welded to the discharge end of the conveyor frame 3, and a mounting frame 7 is welded to the top of the connecting frame 5. A moving mechanism 6 is mounted on the mounting frame 7, and the moving mechanism 6 includes a slide 61, a lead screw 62, and a motor 63. A conveyor frame 9 is connected to the top of the slide 61, and a low-power conveying mechanism 8 is mounted on the conveyor frame 9. The low-power conveying mechanism 8 includes a motor 83, a support roller 81, and a conveyor belt 84. 82. Two fixed baffles 11 are symmetrically installed on both sides of the top of the second conveyor frame 9. Each fixed baffle 11 has two guide ports 12 that match the width of the first conveyor belt 41. A cross mounting plate 10 is set above the second conveyor frame 9. A linkage adjustment mechanism 13 is installed between the cross mounting plate 10 and the two fixed baffles 11. The linkage adjustment mechanism 13 includes a second gear 131, a double gear shaft 132, a first gear 133, a fourth motor 134, an electric push rod 135, a connecting shaft 136, and a movable baffle 137. The electric push rod 135 is controlled by an external synchronous control component to ensure that the two electric push rods 135 extend and retract synchronously during use.

[0027] Specifically, after the craft beer is bottled and conveyed onto the low-power conveyor mechanism 4, the motor 63 in the moving mechanism 6 first rotates the lead screw 62. The rotation of the lead screw 62 causes the slide 61 to move, which in turn moves the conveyor frame 9 to ensure that the corresponding guide port 12 on the conveyor frame 9 is aligned with the discharge end of the low-power conveyor mechanism 4. Simultaneously, the electric push rod 135 in the linkage adjustment mechanism 13 moves the cross mounting plate 10 upwards, positioning the movable baffle 137 above the fixed baffle 11. Then, under the action of the motor 134, the gear 133 rotates. After the gear 133 rotates... Under the action of the double gear shaft 132, the two gears 131 will rotate synchronously and in the same direction. While the gears 131 are rotating, the movable baffle 137 will rotate with the help of the connecting shaft 136. After the movable baffle 137 rotates to a certain angle, the movable baffle 137 will move down under the action of the electric push rod 135 so that the two corresponding inclined guide ports 12 on the conveyor frame 9 can be connected under the action of the movable baffle 137. This ensures that the craft beer after being conveyed on the low-power conveyor belt 41 can be transferred to another low-power conveyor belt that is connected to the conveyor frame 9 with the help of the low-power conveyor mechanism 8, and the transfer efficiency is higher.

[0028] Please see Figure 1 and Figure 3 Each of the two sides of the top of the conveyor frame 3 has a baffle 1, and each baffle 1 is connected to the bottom of the conveyor frame 3 by bolts with a support rod 2.

[0029] As one implementation, the baffle 1 can ensure the stable transport of the filled craft beer on the conveyor belt 41.

[0030] Please see Figure 1 and Figure 3 The support roller 42 is rotatably mounted inside the conveyor frame 3, the conveyor belt 41 is nested on the outside of the support roller 42, and the motor 43 is mounted outside the conveyor frame 3 directly opposite one of the support rollers 42. The motor 43 is a low-power motor.

[0031] In one implementation, motor 43 is mainly used to rotate the corresponding support roller 42. After the support roller 42 rotates, the conveyor belt 41 will rotate, so as to realize the conveying of craft beer after bottling on the conveyor frame 3.

[0032] Please see Figure 1 and Figure 3 Motor 63 is bolted to the middle of one side wall of mounting frame 7, and lead screw 62 is rotatably mounted in the middle of mounting frame 7. Motor 63 and lead screw 62 are connected by a coupling.

[0033] In one implementation, motor 63 is mainly used to provide power for the rotation of lead screw 62. After the lead screw 62 rotates, it will cause slide 61 to move along mounting frame 7 under the action of thread transmission.

[0034] Please see the figure and Figure 3 The slide block 61 is slidably mounted on the mounting frame 7, and the lead screw 62 passes through the slide block 61 and is threadedly connected to the slide block 61.

[0035] As one implementation method, the slide 61 moves and drives the second conveyor frame 9 to move, so as to align the different guide ports 12 on the second conveyor frame 9 with the discharge port on the first conveyor frame 3.

[0036] Please see Figure 1 The second conveyor frame 9 is bolted to the slide block 61. The second support roller 81 is rotatably installed inside the second conveyor frame 9. The second conveyor belt 82 is nested outside the second support roller 81. The second motor 83 is installed outside the second conveyor frame 9, directly opposite one of the second support rollers 81. The second motor 83 is a low-power motor.

[0037] In one implementation, motor 283 is mainly used to provide power for the rotation of the corresponding support roller 281, so as to ensure that the conveyor belt 282 can rotate easily. After the conveyor belt 282 rotates, the filled craft beer transferred on conveyor belt 141 will be transferred to another low-power conveyor belt.

[0038] Please see Figure 1 and Figure 3 The height of the fixed baffle 11 matches the height of the baffle 1, and there are four guide ports 12.

[0039] As one implementation method, matching the height of the fixed baffle 11 with the height of the baffle 1 can prevent accidental spillage of the filled craft beer when it is transferred from conveyor belt 41 to conveyor belt 82.

[0040] Please see Figures 1-2 There are two electric actuators 135, which are symmetrically installed on both sides of the bottom end of the cross mounting plate 10. The fixing parts of the two electric actuators 135 are bolted to the corresponding fixing baffles 11. A motor 134 is bolted to the top center of the cross mounting plate 10. The power output end of the motor 134 is connected to a gear 133. Two double gear shafts 132 are symmetrically installed on both sides of the gear 133 inside the cross mounting plate 10.

[0041] As one implementation method, the electric actuator 135 is mainly used to adjust the height of the cross mounting plate 10 so that the movable baffle 137 is higher than the fixed baffle 11. After the movable baffle 137 is higher than the fixed baffle 11, the angle of the movable baffle 137 can be adjusted under the action of the motor 134, gear 133, gear 2 131, double gear shaft 132 and connecting shaft 136.

[0042] Please see Figures 1-2 Each double gear shaft 132 is connected to a gear 2 131 on the side opposite to gear 133. A connecting shaft 136 is welded to the middle of the bottom end of gear 2 131. The connecting shaft 136 is rotatably connected to the cross mounting plate 10. A movable baffle 137 is welded to the bottom end of the connecting shaft 136. The length of the movable baffle 137 matches the distance between the two oblique guide ports 12.

[0043] In one implementation, after the angle of the movable baffle 137 is adjusted, the cross mounting plate 10 is moved down under the action of the electric push rod 135, so that the adjusted movable baffle 137 can be blocked at the corresponding guide port 12, thereby realizing the connection of the two corresponding oblique guide ports 12.

[0044] The specific working principle is as follows: When the filled craft beer is placed on conveyor belt 41, the conveyor belt 41 will rotate under the action of motor 43 and support roller 42. After the conveyor belt 41 rotates, it facilitates the transport of the filled craft beer. After the filled craft beer is transported on the low-power conveyor mechanism 4, the motor 63 in the moving mechanism 6 first rotates the lead screw 62. After the lead screw 62 rotates, the slide 61 moves. After the slide 61 moves, the conveyor frame 9 moves to ensure that the corresponding guide port 12 on the conveyor frame 9 is aligned with the discharge end of the low-power conveyor mechanism 4. At the same time, the electric push rod 135 in the linkage adjustment mechanism 13 moves the cross mounting plate 10 upward so that the movable baffle 137 is located on the upper side of the fixed baffle 11. Then, under the action of motor 134, gear 133 rotates. After gear 133 rotates, it will cause the two gears 131 to rotate synchronously and in the same direction under the action of the double gear shaft 132. While gear 131 rotates, it uses connecting shaft 136 to rotate movable baffle 137. After movable baffle 137 rotates to a certain angle, it moves downward under the action of electric push rod 135. This allows the two corresponding inclined guide ports 12 on conveyor frame 9 to be connected under the action of movable baffle 137. This ensures that the craft beer after bottling on low-power conveyor belt 41 can be transferred to another low-power conveyor belt that is connected to conveyor frame 9 via low-power conveyor mechanism 8. In this transfer method, the cumbersome operation of overlapping two adjacent low-power conveyor belts and repeatedly installing baffles 1 is avoided. This reduces the space occupied by the two adjacent low-power conveyor belts in the beer production workshop, making the space utilization rate of the craft beer production workshop higher. At the same time, it makes the transfer of bottling craft beer between the two adjacent low-power conveyor belts more efficient and flexible, and the transfer efficiency is higher.

[0045] The embodiments described in this specific implementation are preferred embodiments of this application and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A low-power conveyor belt structure for craft beer brewing, characterized in that: The system includes a conveyor frame (3), on which a low-power conveying mechanism (4) is installed. The low-power conveying mechanism (4) includes a conveyor belt (41), a support roller (42), and a motor (43). A connecting frame (5) is welded to the discharge end of the conveyor frame (3). A mounting frame (7) is welded to the top of the connecting frame (5). A moving mechanism (6) is installed on the mounting frame (7). The moving mechanism (6) includes a slide (61), a lead screw (62), and a motor (63). A conveyor frame (9) is connected to the top of the slide (61). A low-power conveying mechanism (8) is installed on the conveyor frame (9). The low-power conveying mechanism (8) includes a motor (83). The second support roller (81) and the second conveyor belt (82) are provided. Two fixed baffles (11) are symmetrically installed on both sides of the top of the second conveyor frame (9). Each fixed baffle (11) has two guide ports (12) that match the width of the first conveyor belt (41). A cross mounting plate (10) is provided above the second conveyor frame (9). A linkage adjustment mechanism (13) is installed between the cross mounting plate (10) and the two fixed baffles (11). The linkage adjustment mechanism (13) includes a second gear (131), a double gear shaft (132), a first gear (133), a fourth motor (134), an electric push rod (135), a connecting shaft (136), and a movable baffle (137).

2. The low-power conveyor belt structure for craft beer according to claim 1, characterized in that: A baffle (1) is provided on each side of the top of the conveyor frame (3), and a support rod (2) is installed between the bottom of each baffle (1) and the conveyor frame (3) by bolts.

3. The low-power conveyor belt structure for craft beer according to claim 1, characterized in that: The first support roller (42) is rotatably mounted inside the first conveyor frame (3), the first conveyor belt (41) is nested outside the first support roller (42), and the first motor (43) is mounted outside the first conveyor frame (3) directly opposite one of the first support rollers (42). The first motor (43) is a low-power motor.

4. The low-power conveyor belt structure for craft beer according to claim 1, characterized in that: The motor three (63) is bolted to the middle of one side wall of the mounting frame (7), and the lead screw (62) is rotatably mounted in the middle of the mounting frame (7). The motor three (63) is connected to the lead screw (62) by a coupling.

5. The low-power conveyor belt structure for craft beer according to claim 4, characterized in that: The slide block (61) is slidably mounted on the mounting frame (7), and the lead screw (62) passes through the slide block (61) and is threadedly connected to the slide block (61).

6. The low-power conveyor belt structure for craft beer according to claim 1, characterized in that: The second conveyor frame (9) is bolted to the slide (61). The second support roller (81) is rotatably installed inside the second conveyor frame (9). The second conveyor belt (82) is nested outside the second support roller (81). The second motor (83) is installed outside the second conveyor frame (9) directly opposite one of the second support rollers (81). The second motor (83) is a low-power motor.

7. The low-power conveyor belt structure for craft beer according to claim 2, characterized in that: The height of the fixed baffle (11) matches the height of the baffle (1), and there are four guide ports (12).

8. The low-power conveyor belt structure for craft beer according to claim 1, characterized in that: There are two electric actuators (135). The two electric actuators (135) are symmetrically installed on both sides of the bottom end of the cross mounting plate (10). The fixing part of the two electric actuators (135) is bolted to the corresponding fixing baffle (11). The top center of the cross mounting plate (10) is connected to the motor four (134) by bolts. The power output end of the motor four (134) is connected to the gear one (133). Two double gear shafts (132) are symmetrically installed on both sides of the gear one (133) inside the cross mounting plate (10).

9. The low-power conveyor belt structure for craft beer according to claim 8, characterized in that: Each of the two gear shafts (132) is connected to a gear two (131) on the side opposite to the gear one (133). The gear two (131) has a connecting shaft (136) welded to the middle of its bottom end. The connecting shaft (136) is rotatably connected to the cross mounting plate (10). The bottom end of the connecting shaft (136) has a movable baffle (137) welded to it. The length of the movable baffle (137) matches the distance between the two oblique guide ports (12).