A beer filling aid
By utilizing the auxiliary pressing and supporting components of the beer filling auxiliary equipment, along with alloy rings, hydraulic dampers, and magnetic adsorption structures, the high labor costs caused by multiple operators have been solved, achieving automated and efficient filling.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- XIAMEN SIWEI INTELLIGENT MANUFACTURING TECHNOLOGY CO LTD
- Filing Date
- 2025-09-29
- Publication Date
- 2026-07-24
Smart Images

Figure CN224548061U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of beer bottling technology, and in particular to an auxiliary device for beer bottling. Background Technology
[0002] Referring to the patent document entitled "CN202311765715.1" entitled "A beer filling equipment and its usage method", this patent document sets up a filling component and a support component. The bottle pushes the receiving plate, so that the guide tube is automatically inserted into the bottom of the bottle. Then, beer is filled in as the guide tube moves up along the irregular sliding groove. The rising speed of the beer liquid level is synchronized with the rising speed of the guide tube, and the discharge port faces the inner side wall of the bottle. This ensures that the guide tube is always kept at a very short distance from the beer in the bottle and avoids strong impact, so as to ensure that less foam is generated during the filling process.
[0003] The existing filling mechanism uses manual pressing of a slide bar to fill beer into the raw material tank. Although manually pressing the slide bar is convenient, the amount filled each time varies. In some cases, it only takes a few seconds to press the slide bar and then release it, while in others, it takes several minutes to press the slide bar continuously. Furthermore, a single person can only operate two slide bars. When there are many filling mechanisms that require long filling times, more staff are needed to operate the equipment, which not only increases the workload of the staff but also increases labor costs.
[0004] To address this, we designed a beer bottling auxiliary device. Utility Model Content
[0005] The purpose of this utility model is to solve the problem of high labor costs in the existing technology by proposing a beer bottling auxiliary device.
[0006] To achieve the above objectives, the present invention adopts the following technical solution: A beer bottling auxiliary device includes a bottling pipe, a sliding groove disposed on the side wall of the bottling pipe, a sliding rod disposed within the sliding groove, and a connecting pipe disposed at the top of the bottling pipe, and further includes: An auxiliary pressing assembly includes an alloy ring disposed on the side wall of the filling tube, an inner groove rod symmetrically disposed on the side wall of the alloy ring, a sleeve rod disposed within the inner groove rod, hydraulic dampers symmetrically disposed on both sides of the filling tube, and a connecting rod disposed on the top of the hydraulic dampers. A support component is disposed within a sliding groove.
[0007] Preferably, the alloy ring is fixed to the side wall of the filling tube by multiple rivets, the side wall of the inner groove rod is fixed to the alloy ring, one end of the sleeve rod is pressed against the slide rod, and the other end of the sleeve rod is slidably connected on the inner groove rod.
[0008] Preferably, one end of the hydraulic damper is pressed against the inner groove rod, one end of the connecting rod is fixed to the top of the hydraulic damper, and the other end of the connecting rod is fixedly connected to the sleeve rod.
[0009] Preferably, the supporting assembly includes a fixed body disposed in a sliding groove, upright plates symmetrically disposed on the fixed body, a first rotating shaft disposed at the top of the upright plate, a tension plate disposed on the first rotating shaft, a second rotating shaft disposed on the side wall of the tension plate, an auxiliary plate disposed on the second rotating shaft, and a docking assembly disposed on the auxiliary plate.
[0010] Preferably, the fixing body is fixed to the sliding groove, the first rotating shaft is fixed to the top of the upright plate, the second rotating shaft is fixed to the tension plate, the tension plate rotates on the first rotating shaft, and the auxiliary plate rotates on the second rotating shaft.
[0011] Preferably, the docking assembly includes an I-shaped pattern on the auxiliary plate, positive magnetic grooves symmetrically arranged on the I-shaped pattern, rubber covers symmetrically arranged on one side of the I-shaped pattern, a fixing strip at the bottom of the slide bar, and negative magnets symmetrically arranged at the bottom of the fixing strip.
[0012] Preferably, the rubber cover is connected to the positive magnetic groove, the fixing strip is fixed to the slide rod, and the negative magnet is adapted to the positive magnetic groove.
[0013] The beneficial effects of this utility model are as follows: 1. This utility model, through the setting of the I-shaped shape and the fixing strip, allows the staff to simply grasp the rubber body and slide the slide rod onto the I-shaped shape when a large amount of beer needs to be injected into the raw material tank. This allows the negative magnet on the fixing strip to connect with the positive magnetic groove on the I-shaped shape, keeping the filling tube open and improving the beer injection efficiency. At the same time, the staff does not need to manually support it for a long time, which not only reduces the workload of the staff but also lowers the labor cost.
[0014] 2. This utility model, through the setting of hydraulic damper and inner groove rod, allows the operator to push the slide rod downward when the required amount of beer in the raw material tank is appropriate, and make a decision based on the indicators of the transparent scale bar. When the operator pushes it to a specific position, under the restriction of hydraulic damper and inner groove rod, the slide rod and sleeve rod move upward slowly at the same time, reducing the inconvenience caused by the operator operating multiple slide rods at the same time, thereby improving the operator's work efficiency. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the structure of a beer bottling auxiliary device proposed in this utility model; Figure 2 This is a rear view of a beer bottling auxiliary device proposed in this utility model; Figure 3 This is a side view of a beer bottling auxiliary device proposed in this utility model; Figure 4 for Figure 3 Enlarged view of the structure of the Chinese A-label; Figure 5 This is a bottom view of a beer bottling auxiliary device proposed in this utility model; Figure 6 for Figure 5 Enlarged view of the structure of the B-number.
[0016] In the diagram: 1. Filling tube; 101. Sliding groove; 102. Sliding rod; 103. Rubber body; 104. Connecting tube; 105. Transparent graduated strip; 2. Alloy ring; 201. Inner groove rod; 202. Sleeve rod; 203. Rivet; 3. Hydraulic damper; 301. Connecting rod; 4. Fixing body; 401. Vertical plate; 402. First rotating shaft; 403. Tensioning plate; 404. Second rotating shaft; 405. Auxiliary plate; 406. I-shaped; 407. Positive magnetic groove; 408. Rubber cover; 5. Fixing strip; 501. Negative magnet. Detailed Implementation
[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the protection scope of the present utility model.
[0018] Reference Figures 1-6 A beer filling auxiliary device includes a filling pipe 1, a sliding groove 101 disposed on the side wall of the filling pipe 1, a slide rod 102 disposed in the sliding groove 101, and a connecting pipe 104 disposed on the top of the filling pipe 1. It also includes an auxiliary pressing component and a supporting component. The auxiliary pressing component is mainly used when the required amount of beer in the raw material tank is moderate, and the operator needs to open several filling pipes 1, to slowly close the outlet of the slide rod 102, thereby assisting in beer filling. The supporting component is mainly used when the raw material tank requires a large amount of beer to be injected and the injection is prolonged, to increase the restriction on the slide rod 102, keeping the outlet unobstructed and reducing the discomfort of long-term manual pressing by the operator. Before beer filling, the filling tube 1, sliding groove 101, slide bar 102 and connecting tube 104 need to be tested to ensure that all the above structures can be used normally. Then, the rubber body 103 is put on the slide bar 102 and twisted a few times to make the connection between the rubber body 103 and the slide bar 102 more secure. Then, the transparent scale strip 105 is installed on the filling tube 1 to ensure that the staff can observe the beer filling status and scale. It should be noted that the rubber body 103 is a rubber handle in the prior art, used to improve the feel of contact and reduce hand soreness caused by prolonged pressing; The transparent scale bar 105 is mainly to help staff clearly know the current beer filling status, and the transparent scale bar 105 needs to be sealed with sealant to prevent leakage during the beer filling process.
[0019] Specifically, the auxiliary pressing assembly includes an alloy ring 2 disposed on the side wall of the filling tube 1, an inner groove rod 201 symmetrically disposed on the side wall of the alloy ring 2, a sleeve rod 202 disposed in the inner groove rod 201, a hydraulic damper 3 symmetrically disposed on both sides of the filling tube 1, and a connecting rod 301 disposed on the top of the hydraulic damper 3. The alloy ring 2 is fixed to the side wall of the filling tube 1 by multiple rivets 203, the side wall of the inner groove rod 201 is fixed to the alloy ring 2, one end of the sleeve rod 202 is pressed against the slide rod 102, and the other end of the sleeve rod 202 is slidably connected on the inner groove rod 201. One end of the hydraulic damper 3 is pressed against the inner groove rod 201, one end of the connecting rod 301 is fixed to the top of the hydraulic damper 3, and the other end of the connecting rod 301 is fixedly connected to the sleeve rod 202. When the amount of beer to be filled in the filling tube 1 is appropriate, simply push the rubber body 103 to make the slide bar 102 slide in the sliding groove 101, and determine the appropriate range according to the maximum injection range of the transparent scale bar 105. The appropriate range is usually less than half of the transparent scale bar 105. Just release the slide bar 102 before it reaches the support component. When the injection amount is small, just release the slide bar 102 at half the position of the sliding groove 101. Subsequently, the hydraulic damper 3 will push the sleeve 202 on the slide bar 102 to slowly rise. One end of the sleeve 202 moves in the inner groove rod 201 and achieves the effect of slowly closing the injection outlet. The connecting rod 301 at the top of the hydraulic damper 3 is fixed to the bottom of the sleeve 202 by welding. The inner groove rod 201 is mainly fixed to both sides of the filling tube 1 by the alloy ring 2. After the inner wall of the alloy ring 2 is pressed against the filling tube 1, it is fixed to the filling tube 1 by inserting multiple screws into the pre-opened holes. The bottom of the inner groove rod 201 is fixed to the side wall of the alloy ring 2 by welding. The sleeve rods 202 on both sides are integrated by connecting the sliding rod 102 and are fixed to each other by screws. It should be noted that the hydraulic damper 3 is a hydraulic feed speed control device that can freely adjust the cylinder feed speed from low speed to high speed within the desired range.
[0020] The support component is disposed within the sliding groove 101; The supporting assembly includes a fixed body 4 disposed in the sliding groove 101, a vertical plate 401 symmetrically disposed on the fixed body 4, a first rotating shaft 402 disposed at the top of the vertical plate 401, a tension plate 403 disposed on the first rotating shaft 402, a second rotating shaft 404 disposed on the side wall of the tension plate 403, an auxiliary plate 405 disposed on the second rotating shaft 404, and a docking assembly disposed on the auxiliary plate 405. The fixed body 4 is fixed to the sliding groove 101, the first rotating shaft 402 is fixed to the top of the vertical plate 401, the second rotating shaft 404 is fixed to the tension plate 403, the tension plate 403 rotates on the first rotating shaft 402, and the auxiliary plate 405 rotates on the second rotating shaft 404. When the filling tube 1 needs to inject a large amount of beer over a long period of time, the slide bar 102 is first pushed to the fixed body 4 and pressed against the docking component. At the same time, the docking component is kept pressed against the fixed body 405. The bottom of the upright plate 401 is fixed to both sides of the fixed body 4 by welding. The first rotating shaft 402 at the top of the upright plate 401 rotates on the upright plate 401 through a bearing. The tension plate 403 rotating on the first rotating shaft 402 is connected by a spring so that it is pulled when it is under pressure. The second rotating shaft 404, which is also set at the top of the tension plate 403, is also fixed by a bearing. When the docking component on the auxiliary plate 405 is contacted by the slide bar 102, it is pulled downward, thereby holding the slide bar 102 and keeping it stable.
[0021] The docking assembly includes an I-shaped 406 disposed on the auxiliary plate 405, a positive magnetic groove 407 symmetrically disposed on the I-shaped 406, a rubber cover 408 symmetrically disposed on one side of the I-shaped 406, a fixing strip 5 disposed at the bottom of the slide bar 102, and a negative magnet 501 symmetrically disposed at the bottom of the fixing strip 5. The rubber cover 408 is connected to the positive magnetic groove 407, the fixing strip 5 is fixed to the slide rod 102, and the negative magnet 501 is adapted to the positive magnetic groove 407. Subsequently, the fixing strip 5 at the bottom of the slide bar 102 will align the negative magnet 501 with the positive magnetic groove 407 on the I-shaped 406, thereby achieving an adsorption effect and fixing the slide bar 102 on the I-shaped 406. When the beer filling is nearing completion, the negative magnet 501 can be pushed out of the positive magnetic groove 407 by pressing the rubber cover 408 at the bottom of the positive magnetic groove 407 with a single finger. Then, under the slow push of the hydraulic damper 3, the filling outlet is slowly closed, thereby reducing the workload of the staff and improving the efficiency of beer filling. It should be noted that the positive magnetic groove 407 is arranged in a ring on the top of the I-shaped 406 by positive magnets. When the negative magnet 501 enters the positive magnetic groove 407, it is attracted to the positive magnetic groove 407 by the side wall of the negative magnet 501. Since the I-shaped plate 406 is fixed on the auxiliary plate 405, when the slide rod 102 is connected to the I-shaped plate 406, the hydraulic damper 3 will lift the slide rod 102 slightly upward under the restriction of the first rotating shaft 402 and the second rotating shaft 404, so as to avoid the hydraulic damper 3 from malfunctioning due to long-term compaction.
[0022] The working principle of this utility model is as follows: When beer needs to be filled, the filling volume needs to be determined based on the amount to be filled. When the amount to be filled is moderate and less than the required amount, simply push the rubber body 103 to half the distance between the sliding groove 101 and the docking component and release it. Under the slow push of the hydraulic damper 3, the speed at which the filling tube 1 closes the beer outlet is reduced. When a large amount of beer needs to be filled, simply push the rubber body 103 to the bottom of the sliding groove 101 so that the negative magnet 501 at the bottom of the slide rod 102 docks with the positive magnetic groove 407 on the I-shaped 406, thereby fixing the slide rod 102 under the I-shaped 406. At this time, the filling tube 1 remains in a continuous filling state. When the beer filling work is nearing its end, push the rubber cover 408 with one finger to disengage the negative magnet 501 from the positive magnetic groove 407, and under the push of the hydraulic damper 3, slowly close the beer injection outlet, thereby reducing the workload of the staff. With the setting of the I-shaped 406 and the fixing bar 5, when a large amount of beer needs to be injected into the raw material tank, simply grasp the rubber body 103 to drive the slide bar 102 to slide onto the I-shaped 406, so that the negative magnet 501 on the fixing bar 5 is connected to the positive magnetic groove 407 on the I-shaped 406, keeping the filling tube 1 open and improving the beer injection efficiency. At the same time, the staff does not need to manually support it for a long time, which not only reduces the workload of the staff, but also reduces labor costs.
[0023] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A beer filling auxiliary device, comprising a filling pipe (1), a sliding groove (101) disposed on the side wall of the filling pipe (1), a sliding rod (102) disposed in the sliding groove (101), and a connecting pipe (104) disposed on the top of the filling pipe (1), characterized in that, Also includes: The auxiliary pressing assembly includes an alloy ring (2) disposed on the side wall of the filling tube (1), an inner groove rod (201) symmetrically disposed on the side wall of the alloy ring (2), a sleeve rod (202) disposed in the inner groove rod (201), a hydraulic damper (3) symmetrically disposed on both sides of the filling tube (1), and a connecting rod (301) disposed on the top of the hydraulic damper (3). A support component is disposed within a sliding groove (101).
2. The beer bottling auxiliary equipment according to claim 1, characterized in that, The alloy ring (2) is fixed to the side wall of the filling tube (1) by multiple rivets (203), the side wall of the inner groove rod (201) is fixed to the alloy ring (2), one end of the sleeve rod (202) is pressed against the slide rod (102), and the other end of the sleeve rod (202) is slidably connected on the inner groove rod (201).
3. The beer bottling auxiliary equipment according to claim 2, characterized in that, One end of the hydraulic damper (3) is pressed against the inner groove rod (201), one end of the connecting rod (301) is fixed to the top of the hydraulic damper (3), and the other end of the connecting rod (301) is fixedly connected to the sleeve rod (202).
4. The beer bottling auxiliary equipment according to claim 1, characterized in that, The supporting assembly includes a fixed body (4) disposed in a sliding groove (101), a vertical plate (401) symmetrically disposed on the fixed body (4), a first rotating shaft (402) disposed at the top of the vertical plate (401), a tension plate (403) disposed on the first rotating shaft (402), a second rotating shaft (404) disposed on the side wall of the tension plate (403), an auxiliary plate (405) disposed on the second rotating shaft (404), and a docking assembly disposed on the auxiliary plate (405).
5. The beer bottling auxiliary equipment according to claim 4, characterized in that, The fixing body (4) is fixed to the sliding groove (101), the first rotating shaft (402) is fixed to the top of the upright plate (401), the second rotating shaft (404) is fixed to the stretching plate (403), the stretching plate (403) rotates on the first rotating shaft (402), and the auxiliary plate (405) rotates on the second rotating shaft (404).
6. The beer bottling auxiliary equipment according to claim 4, characterized in that, The docking assembly includes an I-shaped character (406) on the auxiliary plate (405), a positive magnetic groove (407) symmetrically arranged on the I-shaped character (406), a rubber cover (408) symmetrically arranged on one side of the I-shaped character (406), a fixing strip (5) arranged at the bottom of the slide bar (102), and a negative magnet (501) symmetrically arranged at the bottom of the fixing strip (5).
7. The beer bottling auxiliary equipment according to claim 6, characterized in that, The rubber cover (408) is connected to the positive magnetic groove (407), the fixing strip (5) is fixed to the slide rod (102), and the negative magnet (501) is adapted to the positive magnetic groove (407).