Placing carrier for liquid leakage detection
By designing a placement carrier with stackable movable parts and a limiting slot structure, the safety and space utilization issues of leakage detection in liquor production were solved, enabling stable detection of liquor bottles of various sizes and efficient use of space.
Patent Information
- Application Number
- CN202520694380.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-04-14
AI Technical Summary
Existing leak detection vehicles used in liquor production suffer from low safety and insufficient utilization of space resources, especially when storing large-scale samples for extended periods and testing bottles of various sizes, making it impossible to effectively guarantee safety and space utilization.
Design a container for leak detection. By opening and closing the movable parts, the container body can be stacked to detect bottles lying down or standing up. The container body is equipped with limiting slots and locking structures to improve stability, and is equipped with a foldable triangular bracket and anti-slip support pads to enhance safety and space utilization.
It improves the safety and site resource utilization of leakage detection, adapts to the detection needs of wine bottles of various sizes, and enhances the stability and space utilization efficiency of detection.
Smart Images

Figure CN223919889U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of liquor production technology, specifically to a placement carrier for leak detection. Background Technology
[0002] During the packaging process, liquor producers typically test the seal of the assembled bottle and cap to ensure it meets standards, including necessary leak detection. The specific method involves placing the filled and capped product upright and horizontally on a fixed carrier for a specific time (generally 30 minutes to 8 hours), observing for any leakage under both conditions. This checks the tightness of the bottle-cap fit and the presence of any small cracks or damage to the bottle. Therefore, the safety and operability of the carrier are crucial for detecting and observing product leaks.
[0003] Currently, there are several types of fixed carriers used by liquor producers for leakage detection: placing the sample to be tested directly on a plastic plate or a fixed table on the packaging production line for testing and observation; or using a special device, such as the Chinese utility model patent with publication number CN220375135U, which discloses a liquor sample bottle storage device that can be adjusted according to the size of the bottle to ensure stable storage of the sample for easy testing and observation.
[0004] In actual production, placing wine bottles on flat plastic boards poses significant risks. Due to the lack of anti-rolling restraint structures, the safety of the products cannot be guaranteed against external impacts or slippage due to vibration during transportation. Placing them on fixed production line tables is only suitable for short-term cyclic testing of a small number of samples, and cannot meet the long-term storage needs of large-scale samples. Even if, as in the aforementioned patent, a multi-size wine bottle can be stably stored by adjusting the structure, its single-layer placement mode cannot achieve three-dimensional stacking, occupying a large amount of space and reducing space utilization. Utility Model Content
[0005] To overcome the technical problems of low detection safety and large space occupation in existing liquor bottle leakage detection methods, this utility model provides a placement carrier for leakage detection.
[0006] The technical solution adopted by this utility model to solve its technical problem is:
[0007] A container for leak detection, used for leak detection of bottles, comprises multiple container bodies. Each container body has an upward-opening receiving cavity, and each container body is equipped with multiple movable parts. The movable parts have two states: closed and open. When the movable parts are open, they extend from the top of the container body they belong to. When the movable parts are closed, the multiple container bodies are stacked, with the bottom of the upper container body and the top of the lower container body in contact. The space from the bottom of the upper container body to the bottom of the receiving cavity of the lower container body allows for horizontal placement detection of the bottle. When the movable parts are open, the multiple container bodies are stacked, with the bottom of the upper container body and the movable parts on the lower container body in contact. The space from the bottom of the upper container body to the bottom of the receiving cavity of the lower container body allows for vertical placement detection of the bottle.
[0008] This application proposes a placement carrier for leak detection of bottles. By opening and closing the movable parts, the main body of the carrier can be stacked to detect horizontal and vertical placement of the bottles, which greatly improves the utilization rate of site resources. The cavity inside the placement carrier can also improve the safety of the detection.
[0009] In some embodiments, a limiting slot is provided at the bottom of the vehicle body corresponding to the open state of the movable part; when the movable part is open, multiple vehicle bodies are stacked, and the limiting slot at the bottom of the upper vehicle body cooperates with the top of the movable part.
[0010] In some embodiments, the top and bottom of the vehicle body are respectively provided with a locking frame and a locking groove; when the movable part is closed, multiple vehicle bodies are stacked, and the locking frame and locking groove cooperate with each other.
[0011] In some embodiments, through holes are provided on the opposite side walls of the vehicle body to serve as handles.
[0012] In some embodiments, a removable anti-slip support pad is also included, with a flat bottom surface and a stepped top surface for the bottle to be laid horizontally.
[0013] In some embodiments, the movable component is a foldable triangular bracket. The foldable triangular bracket includes a guide rod, a positioning rod, a support rod, and a locking component. The positioning rod is fixedly connected to the carrier body. One end of the support rod is hinged to the positioning rod, and a groove is provided on the support rod. One end of the guide rod is hinged to the positioning rod, and the other end can slide in the groove as the support rod rotates. The locking component is used to lock the support rod.
[0014] In some embodiments, the support rod is vertical when it rotates to its maximum stroke relative to the positioning rod.
[0015] In some embodiments, a groove is provided on the side wall of the vehicle body for the installation and clearance of the foldable triangular bracket, and through holes are provided on the opposite side walls as handles. When the support rod rotates to its maximum stroke, the foldable triangular bracket does not block the through holes.
[0016] In some embodiments, each vehicle body is provided with multiple movable parts, which are distributed in a centrally symmetrical manner.
[0017] In some embodiments, a pallet is also included, on which multiple carrier bodies are stacked, and the pallet has openings in the lower part for a forklift to insert and lift.
[0018] The beneficial effects of this utility model are:
[0019] This application proposes a placement carrier for leak detection of bottles. By opening and closing the movable parts, the main body of the carrier can be stacked to detect horizontal and vertical placement of the bottles, which greatly improves the utilization rate of site resources. The cavity inside the placement carrier can also improve the safety of the detection. Attached Figure Description
[0020] Figure 1 A schematic diagram of the closed state structure of the movable component of the placement carrier for leak detection provided by this utility model;
[0021] Figure 2 A schematic diagram of the open state of the movable part of the placement carrier for leak detection provided by this utility model;
[0022] Figure 3 for Figure 1 A schematic diagram of the structure at the bottom of the main body of the vehicle;
[0023] Figure 4 for Figure 1 A schematic diagram of the stacking of the main body of the vehicle with its movable parts open;
[0024] Figure 5 for Figure 4 A diagram illustrating usage scenarios;
[0025] Figure 6 for Figure 1 A schematic diagram of the stacking of the main body of the vehicle with its movable parts closed;
[0026] Figure 7 for Figure 6 A diagram illustrating usage scenarios.
[0027] The markings in the diagram are as follows: 1-Carrier body, 2-Accommodation cavity, 3-Foldable triangular bracket, 31-Positioning rod, 32-Guide rod, 33-Support rod, 34-Locking component, 4-Mounting frame, 5-Handle, 6-Limiting slot, 7-Reinforcing rib, 8-Pattern, 9-Bottle body, 10-Anti-slip support pad, 11-Mounting groove. Detailed Implementation
[0028] The present invention will be further described below with reference to the accompanying drawings.
[0029] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this utility model and are not intended to limit this utility model.
[0030] Combination Figures 1-7 As shown, this utility model provides a placement carrier for leak detection.
[0031] The placement carrier for leak detection, used for leak detection of bottle 9, comprises multiple carrier bodies 1. Each carrier body 1 has an upward-opening receiving cavity 2, and each carrier body 1 is equipped with multiple movable parts. The movable parts have two states: closed and open. When the movable parts are open, they extend out from the top of the carrier body 1. When the movable parts are closed, the multiple carrier bodies 1 are stacked, with the bottom of the upper carrier body 1 and the top of the lower carrier body 1 in contact. The space from the bottom of the upper carrier body 1 to the bottom of the receiving cavity 2 of the lower carrier body 1 is available for horizontal placement detection of bottle 9. When the movable parts are open, the multiple carrier bodies 1 are stacked, with the bottom of the upper carrier body 1 and the movable parts on the lower carrier body 1 in contact. The space from the bottom of the upper carrier body 1 to the bottom of the receiving cavity 2 of the lower carrier body 1 is available for vertical placement detection of bottle 9.
[0032] This application proposes a placement carrier for leak detection of bottle 9. By opening and closing the movable parts, the main body 1 of the carrier can be stacked to detect the horizontal and vertical placement of the bottle 9, which greatly improves the utilization rate of site resources. The cavity 2 inside the placement carrier can also improve the detection safety.
[0033] In practice, when the movable parts are closed, the space between the bottom of the upper carrier body 1 and the bottom of the lower carrier body 1's receiving cavity 2 should be sufficient for the horizontal placement detection of the bottle 9, but not sufficient for the vertical placement detection of the bottle 9, so as to further optimize the space occupied by storage and placement.
[0034] Obviously, the upright placement test of bottle 9 requires a certain step height to achieve, for reference... Figure 7 As shown, this raises the bottom of the bottle 9 to a certain height. In practice, a built-in stepped height surface can be provided inside the carrier body 1, or it can be achieved through external attachment. In this embodiment, it is preferable to add a detachable external attachment, which can further improve the space utilization rate of the receiving cavity 2 of the carrier body 1 when the carrier body 1 is used for upright testing.
[0035] In this embodiment, a detachable anti-slip support pad 10 is also included. The bottom surface of the anti-slip support pad 10 is flat, and the top surface is stepped, so that the bottle body 9 can be placed horizontally. (See reference...) Figure 7As shown, in this embodiment, the anti-slip support pad 10 is a pearl cotton support pad, made of pearl cotton material, which is soft and has an anti-slip function. It is placed in the receiving cavity 2 of the carrier body 1 to support the bottom of the bottle body 9, so that the bottle mouth tilts downwards, realizing horizontal testing.
[0036] The movable parts can be foldable, retractable, or rotatable, with the key being to achieve closed and open states. This allows the vehicle body 1 to perform horizontal and vertical placement detection of the corresponding bottle 9 when it is stacked, while the movable parts are open and closed.
[0037] In this embodiment, the main body 1 of the vehicle is made of PP material and is injection molded.
[0038] refer to Figures 2-4 As shown, in this embodiment, a limiting slot 6 is provided at the bottom of the vehicle body 1 corresponding to the open state of the movable part; when the movable part is opened, multiple vehicle bodies 1 are stacked, and the limiting slot 6 at the bottom of the upper vehicle body 1 cooperates with the top of the movable part.
[0039] The limiting slot 6 is designed to limit the movement of moving parts, thus preventing the risk of slippage when the vehicle body 1 is stacked in multiple layers.
[0040] In this embodiment, the bottom of the vehicle body 1 is also provided with reinforcing ribs 7 to improve the load-bearing capacity of the device.
[0041] Reference Figure 1 , Figure 3 and Figure 6 As shown, in this embodiment, the top and bottom of the vehicle body 1 are respectively provided with a locking frame 4 and a locking groove 11; when the movable part is closed, multiple vehicle bodies 1 are stacked, and the locking frame 4 and the locking groove 11 cooperate with each other.
[0042] like Figure 1 As shown, in this embodiment, through holes are provided on the opposite side walls of the vehicle body 1 to serve as handles 5.
[0043] In this embodiment, the movable component is a foldable triangular bracket 3. The foldable triangular bracket 3 includes a guide rod 32, a positioning rod 31, a support rod 33, and a locking member 34. The positioning rod 31 is fixedly connected to the carrier body 1. One end of the support rod 33 is hinged to the positioning rod 31, and a sliding groove is provided on the support rod 33. One end of the guide rod 32 is hinged to the positioning rod 31, and the other end can slide in the sliding groove as the support rod 33 rotates. The locking member 34 is used to lock the support rod 33.
[0044] The positioning rod 31 is fixed to the carrier body 1 by screws. The guide rod 32 is used to ensure that the support rod 33 moves along a predetermined path and prevents deviation. The locking member 34 is used to lock the open and closed states of the foldable triangular bracket 3 to prevent accidental movement or loosening. It is equipped with a spring. When the locking member 34 is pressed, the spring is compressed, and the component can move. When the locking member 34 is released, the spring bounces it back to the locked position, re-fixing the component. The foldable triangular bracket 3 is a market standard component in the prior art, and its principle and structure will not be described in detail here.
[0045] In this embodiment, when the support rod 33 rotates to its maximum stroke relative to the positioning rod 31, the support rod 33 is vertical. This is implemented to achieve a better support effect.
[0046] Furthermore, the side wall of the carrier body 1 has a groove for the installation and clearance of the foldable triangular bracket 3, and through holes are provided on the opposite side walls as handles 5. When the support rod 33 rotates to its maximum stroke, the foldable triangular bracket 3 does not obstruct the through holes. This allows the operator to move the carrier body 1 through the handles 5 when the movable parts are opened, that is, when the carrier body 1 is stacked for upright testing of the bottle 9.
[0047] In this embodiment, each vehicle body 1 is provided with multiple movable parts, which are distributed in a centrally symmetrical manner. This ensures balanced force distribution and improves safety and stability during use.
[0048] In this embodiment, a pallet 8 is also included, on which multiple carrier bodies 1 are stacked. The pallet 8 has holes at the bottom for forklifts to insert and lift.
[0049] like Figures 4-7 As shown, the upper layer of the tray 8 can prevent four vehicle bodies 1 from being stacked on it.
[0050] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A placement carrier for leakage detection, for leakage detection of a bottle (9), characterized in that, The utility model provides a bottle carrier, which comprises a plurality of carrier bodies (1) having upwardly open accommodating cavities (2), and each carrier body (1) is provided with a plurality of movable members having two states of closing and opening, and the movable members extend out of the top of the carrier body (1) when opened. When the movable members are closed, the plurality of carrier bodies (1) are stacked, the bottom of the upper carrier body (1) is in contact with the top of the lower carrier body (1), and the space from the bottom of the upper carrier body (1) to the bottom of the accommodating cavity (2) of the lower carrier body (1) can be used for lying detection of a bottle body (9). When the movable members are opened, the plurality of carrier bodies (1) are stacked, the bottom of the upper carrier body (1) is in contact with the movable member on the top of the lower carrier body (1), and the space from the bottom of the upper carrier body (1) to the bottom of the accommodating cavity (2) of the lower carrier body (1) can be used for standing detection of a bottle body (9).
2. The placement carrier for leakage detection of claim 1, wherein, Corresponding to the opened state of the movable member, a limiting clamping groove (6) is formed in the bottom of the carrier body (1), and when the movable member is opened, the limiting clamping groove (6) in the bottom of the upper carrier body (1) is matched with the top of the movable member.
3. The placement carrier for leakage detection of claim 1, wherein, The top and bottom of the carrier body (1) are respectively provided with a clamping frame (4) and a clamping groove (11), and when the movable member is closed, the plurality of carrier bodies (1) are stacked, and the clamping frame (4) and the clamping groove (11) are matched.
4. The placement carrier for leakage detection of claim 1, wherein, Holes are formed in the opposite side walls of the carrier body (1) as handles (5).
5. The placement carrier for leakage detection of claim 1, wherein, The utility model also comprises a detachable anti-skid supporting pad (10), the bottom surface of the anti-skid supporting pad (10) is a plane, and the top surface is a stepped surface, so as to provide a lying place for the bottle body (9).
6. The placement carrier for leakage detection of claim 1, wherein, The movable member is a foldable triangular support (3), which comprises a guide rod (32), a positioning rod (31), a supporting rod (33) and a locking member (34), the positioning rod (31) is fixedly connected to the carrier body (1), one end of the supporting rod (33) is hingedly connected to the positioning rod (31), a sliding groove is formed in the supporting rod (33), one end of the guide rod (32) is hingedly connected to the positioning rod (31), the other end of the guide rod (32) can rotate and slide in the sliding groove along with the supporting rod (33), and the locking member (34) is used for locking the supporting rod (33).
7. The placement carrier for leakage detection of claim 6, wherein, When the supporting rod (33) rotates to the maximum stroke relative to the positioning rod (31), the supporting rod (33) is vertically arranged.
8. The placement carrier for leakage detection of claim 6, wherein, Holes are formed in the side walls of the carrier body (1) as handles (5), and the foldable triangular support (3) is installed and accommodated in the grooves formed in the side walls, and when the supporting rod (33) rotates to the maximum stroke, the foldable triangular support (3) does not block the holes.
9. The placement carrier for leakage detection of claim 1, wherein, A plurality of movable members are arranged on each carrier body (1), and the plurality of movable members are arranged in a central symmetrical manner.
10. The placement carrier for leakage detection according to any one of claims 1 to 9, wherein The utility model also comprises a tray (8), the plurality of carrier bodies (1) are stacked on the tray (8), and holes are formed in the lower part of the tray (8) for the insertion of a forklift.
Citation Information
Patent Citations
White spirit sample bottle storage device
CN220375135U