Novel double-cavity oral liquid bottle
Patent Information
- Application Number
- CN202522120095.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-30
- Publication Date
- 2026-09-04
- Estimated Expiration
- 2035-09-30
AI Technical Summary
[0003]然而,现有的多腔体口服液瓶还存在一些缺陷,对于一些实用性功能还有待改善,例如,现有多腔体口服液瓶的旋拧瓶盖大多都能被旋动而脱离瓶体,若是儿童将旋拧瓶盖旋动而出则很可能会出现儿童误吞旋拧瓶盖的情况,十分不安全,且当口服液瓶被使用完后,旋动而出的旋拧瓶盖很可能会被随意丢弃,不便于进行口服液瓶的整体回收;另外,现有的多腔体口服液瓶的腔体密封结构所采用的密封塞在人为开启之后大多会直接脱离并掉落至口服液瓶底部,在掉落过程中密封塞可能会因为与瓶壁的摩擦而产生微粒碎屑,所产生的微粒碎屑直接掉入口服液中,在一定程度上降低了口服液的纯净度
[0014](1) The screwing part of this utility model is provided with a main locking block on the outside and a secondary locking block on the inside of the connecting part. The screwing part and the connecting part are contacted and abutted by the cooperation of the main locking block and the secondary locking block. When the screwing part is rotated counterclockwise and the screwing part moves upward a certain distance, the main locking block of the screwing part directly contacts and abuts the secondary locking block of the connecting part to prevent the screwing part from continuing to move upward and being rotated out. On the one hand, it can avoid the situation where the screwing part is rotated out due to the child's momentary negligence and is accidentally swallowed, thereby improving the safety of the oral liquid bottle. On the other hand, it is conducive to the overall recycling of the oral liquid bottle in the future, which has the advantages of being green and environmentally friendly. In addition, the limiting effect of the main locking block and the secondary locking block on the screwing part also effectively maintains the overall sealing of the oral liquid bottle, avoiding the situation where the oral liquid bottle is contaminated due to external factors during use, and ensuring the purity of the various material media inside the oral liquid bottle to the greatest extent.
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Figure CN224715522U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of container bottle technology, specifically to a novel double-cavity oral liquid bottle. Background Technology
[0002] A container bottle is a storage device used to store solid, liquid, or powdered materials and other media. Its structure is typically designed as a single-cavity or multi-cavity container according to actual needs. Taking oral liquid bottles as an example, most conventional oral liquid bottles are simple single-cavity designs, capable of storing only one type of medium. Multi-cavity oral liquid bottles, however, can store multiple different media thanks to their multiple cavities. The cavities are generally partially isolated by sealing plugs. When using the oral liquid bottle, the sealing plugs are opened to allow the media in each cavity to mix, thus achieving the effect of a mixed medium.
[0003] However, existing multi-chamber oral liquid bottles still have some shortcomings, and some practical functions need to be improved. For example, the screw caps of most existing multi-chamber oral liquid bottles can be twisted off the bottle body. If a child twists off the cap, there is a high possibility that the child may accidentally swallow the cap, which is very unsafe. Moreover, after the oral liquid bottle is used up, the twisted cap may be discarded at will, making it inconvenient to recycle the oral liquid bottle as a whole. In addition, the sealing plugs used in the cavity sealing structure of existing multi-chamber oral liquid bottles mostly detach and fall to the bottom of the oral liquid bottle after being opened by hand. During the falling process, the sealing plug may generate particulate debris due to friction with the bottle wall. The generated particulate debris falls directly into the oral liquid, which reduces the purity of the oral liquid to a certain extent. Utility Model Content
[0004] To address the problems mentioned in the background art, the purpose of this utility model is to provide a novel dual-chamber oral liquid bottle. The main and secondary locking blocks limit the movement of the screw-on component, preventing it from being rotated out and avoiding accidental swallowing by children. This also facilitates the subsequent overall recycling of the oral liquid bottle. Furthermore, by movably connecting one end of the sealing bottom plug to the connecting piece, the sealing bottom plug is prevented from falling directly to the bottom of the oral liquid bottle after detachment, thus ensuring the purity of the oral liquid.
[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows:
[0006] A novel dual-chamber oral liquid bottle includes a secondary chamber for storing secondary materials inside the screw-on component. The screw-on component is capped at one end of a connector, and the main bottle body is connected to the other end of the connector. One end of a sealing bottom plug is movably sleeved on the connector, and the other end of the sealing bottom plug is sealed and snapped into the bottom of the screw-on component. A main locking block is provided on the outer side of the screw-on component, and a secondary locking block is provided on the inner side of the connector. The screw-on component and the connector abut against each other through the cooperation of the main locking block and the secondary locking block.
[0007] Furthermore, the sealing plug includes a top sleeve, an intermediate band, and a bottom piston. The intermediate band is fixedly connected between the top sleeve and the bottom piston. The bottom piston is provided with a groove. The lower end of the screwing component is inserted into the groove. A main rib is provided on the inner side of the groove. A secondary rib is provided on the lower end of the screwing component. The bottom piston and the screwing component are movably engaged by the cooperation of the main rib and the secondary rib. The connecting component is provided with a limiting rib. The top sleeve is movably sleeved on the connecting component and contacts and abuts against the limiting rib.
[0008] Furthermore, the inner side of the screwing component is provided with a first internal thread, and the outer edge of the upper end of the connector is provided with a first external thread. The screwing component and the connector are screwed together by the cooperation of the first internal thread and the first external thread.
[0009] Furthermore, the inner side of the connector is provided with a second internal thread, and the outer edge of the upper end of the main bottle body is provided with a second external thread. The connector and the main bottle body are connected by a screw thread through the engagement of the second internal thread and the second external thread.
[0010] Furthermore, the bottom inner side of the screwing component is provided with bottom retaining teeth, and the connecting component is provided with anti-retraction teeth. The screwing component and the connecting component are movably connected through the cooperation of the bottom retaining teeth and the anti-retraction teeth.
[0011] Furthermore, the outer side of the screw-on component is provided with anti-slip texture, the top of the screw-on component is provided with an insert, the insert is provided with a silicone sheet, and the insert and the silicone sheet are sequentially passed through by the externally provided straw.
[0012] Furthermore, the main bottle body is provided with a main cavity for storing the main material.
[0013] The beneficial effects of this utility model are as follows:
[0014] (1) The screwing part of this utility model is provided with a main locking block on the outside and a secondary locking block on the inside of the connecting part. The screwing part and the connecting part are contacted and abutted by the cooperation of the main locking block and the secondary locking block. When the screwing part is rotated counterclockwise and the screwing part moves upward a certain distance, the main locking block of the screwing part directly contacts and abuts the secondary locking block of the connecting part to prevent the screwing part from continuing to move upward and being rotated out. On the one hand, it can avoid the situation where the screwing part is rotated out due to the child's momentary negligence and is accidentally swallowed, thereby improving the safety of the oral liquid bottle. On the other hand, it is conducive to the overall recycling of the oral liquid bottle in the future, which has the advantages of being green and environmentally friendly. In addition, the limiting effect of the main locking block and the secondary locking block on the screwing part also effectively maintains the overall sealing of the oral liquid bottle, avoiding the situation where the oral liquid bottle is contaminated due to external factors during use, and ensuring the purity of the various material media inside the oral liquid bottle to the greatest extent.
[0015] (2) The sealing bottom plug of this utility model includes a top sleeve, an intermediate band, and a bottom piston. The connecting piece is provided with a limiting bone, and the top sleeve is movably sleeved on the connecting piece and contacts and abuts against the limiting bone. When the screwing piece is rotated counterclockwise, the screwing piece moves upward a certain distance and its lower end stops and engages with the bottom piston. At the same time, the top sleeve moves downward and contacts and abuts against the limiting bone. The bottom piston can be suspended inside the main bottle body by means of the intermediate band and does not fall directly to the bottom of the oral liquid bottle, thereby avoiding the situation where the bottom piston falls directly into the oral liquid due to excessive collision and friction with the bottle wall. This effectively ensures the purity of the oral liquid. Attached Figure Description
[0016] Figure 1 The diagram shows a plan view (left) and a disassembled view (right) of the overall structure of a novel double-cavity oral liquid bottle according to this utility model.
[0017] Figure 2 This is a split internal sectional view of the overall structure of a novel double-cavity oral liquid bottle according to this utility model;
[0018] Figure 3 This is a schematic internal cross-sectional view of the overall structure of a novel double-cavity oral liquid bottle according to this utility model;
[0019] Figure 4 This is a schematic internal cross-sectional view of the overall structure of the double-chamber oral liquid bottle when the bottom piston of this utility model is opened;
[0020] Figure 5 This is a schematic diagram of the straw being inserted into the double-chamber oral liquid bottle in this utility model;
[0021] Figure 6 This is a partially enlarged schematic diagram of the double-chamber oral liquid bottle of this utility model.
[0022] In the diagram, 1 is the screw-on part, 101 is the bottom locking tooth, 102 is the secondary rib, 103 is the first internal thread, 104 is the main locking block, 105 is the anti-slip texture, 106 is the insertion part, 1061 is the silicone sheet, 2 is the connector, 201 is the anti-retraction tooth, 202 is the limiting rib, 203 is the first external thread, 204 is the second internal thread, 205 is the secondary locking block, 3 is the sealing bottom plug, 301 is the top sleeve, 302 is the middle band, 303 is the bottom piston, 3031 is the groove, 3032 is the main rib, 4 is the main bottle body, 401 is the second external thread, 5 is the secondary material, 6 is the secondary cavity, 7 is the main material, 8 is the main cavity, and 9 is the straw. Detailed Implementation
[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0024] As attached Figure 1-6 As shown, this utility model embodiment provides a novel dual-chamber oral liquid bottle. The dual-chamber oral liquid bottle includes a screw-on component 1, a connector 2, a sealing bottom plug 3, and a main bottle body 4. The screw-on component 1 has a secondary cavity 6 for storing secondary materials 5 inside. The screw-on component 1 is capped to one end of the connector 2, and the main bottle body 4 is connected to the other end of the connector 2. One end of the sealing bottom plug 3 is movably sleeved on the connector 2, and the other end of the sealing bottom plug 3 is sealed and snapped into the bottom of the screw-on component 1. A main locking block 104 is provided on the outer side of the screw-on component 1, and a secondary locking block 205 is provided on the inner side of the connector 2. The screw-on component 1 and the connector 2 are contacted and abutted by the cooperation of the main locking block 104 and the secondary locking block 205.
[0025] Specifically, the secondary material 5 can be set as a powder or granular solid medium.
[0026] In a specific implementation of this utility model, when the user rotates the screw-on component 1 counterclockwise, after the screw-on component 1 moves upward a certain distance, the main locking block 104 of the screw-on component 1 and the secondary locking block 205 of the connecting component 2 directly contact and abut against each other, so that the screw-on component 1 stops moving upward to prevent it from being screwed out. This effectively limits the screw-on component 1, avoiding the situation where a child accidentally screws the screw-on component 1 out and swallows it due to momentary negligence. It also facilitates the subsequent overall recycling of the oral liquid bottle.
[0027] The sealing plug 3 of this utility model includes a top sleeve 301, an intermediate belt 302, and a bottom piston 303. The intermediate belt 302 is fixedly connected between the top sleeve 301 and the bottom piston 303. The bottom piston 303 is provided with a groove 3031. The lower end of the screwing part 1 is inserted into the inside of the groove 3031. The inner side of the groove 3031 is provided with a main bone position 3032. The lower end of the screwing part 1 is provided with a secondary bone position 102. The bottom piston 303 and the screwing part 1 are movably engaged by the cooperation of the main bone position 3032 and the secondary bone position 102. The connecting part 2 is provided with a limiting bone position 202. The top sleeve 301 is movably sleeved on the connecting part 2 and contacts and abuts against the limiting bone position 202.
[0028] Specifically, the middle strip 302 is designed as a soft, elastic element.
[0029] The screwing component 1 of this utility model is provided with a first internal thread 103 on its inner side, and the upper outer edge of the connector 2 is provided with a first external thread 203. The screwing component 1 and the connector 2 are connected by the first internal thread 103 and the first external thread 203.
[0030] The connector 2 of this utility model is provided with a second internal thread 204 on its inner side, and a second external thread 401 is provided on the outer edge of the upper end of the main bottle body 4. The connector 2 and the main bottle body 4 are connected by a screw thread through the cooperation of the second internal thread 204 and the second external thread 401.
[0031] The screwing component 1 of this utility model is provided with bottom locking teeth 101 on the inner side of its bottom, and the connecting component 2 is provided with anti-retraction teeth 201. The screwing component 1 and the connecting component 2 are connected to each other through the cooperation of the bottom locking teeth 101 and the anti-retraction teeth 201.
[0032] The outer side of the screwing part 1 of this utility model is provided with anti-slip texture 105, and the top of the screwing part 1 is provided with an insert 106. The insert 106 is provided with a silicone sheet 1061. The insert 106 and the silicone sheet 1061 are sequentially passed through by the externally provided straw 9.
[0033] Specifically, the anti-slip texture 105 facilitates the user to rotate the screw-on part 1. The user can pierce the silicone sheet 1061 through the externally set oblique tip of the straw 9 so that the straw 9 can be inserted into the oral liquid bottle.
[0034] The main bottle body 4 of this utility model has a main cavity 8 for storing the main material 7 inside.
[0035] Specifically, the main material 7 is set as an oral liquid in liquid form.
[0036] Reference Appendix Figure 1-6 The usage process of this novel double-cavity oral liquid bottle is as follows:
[0037] In use, the user first holds the main bottle body 4 with one hand, and with the fingers of the other hand pinches the anti-slip texture 105 on the outside of the screw-on part 1 to rotate the screw-on part 1 counterclockwise. After the screw-on part 1 moves upward a certain distance, the main locking block 104 of the screw-on part 1 and the secondary locking block 205 of the connector 2 come into direct contact and abut, causing the screw-on part 1 to stop moving upward. At this time, the secondary rib 102 at the lower end of the screw-on part 1 and the main rib 3032 of the bottom piston 303 stop being mutually locked. The top sleeve 301 moves downward along the outside of the connector 2. After the collar 301 moves downward a certain distance, its bottom end contacts and abuts against the limiting bone 202 of the connector 2. The bottom piston 303 is suspended inside the main cavity 8 by the fixed connection between the middle belt 302 and the top collar 301. At the same time, the secondary cavity 6 is opened, and the secondary material 5 inside the secondary cavity 6 falls directly into the main cavity 8 and forms a mixture with the main material 7. The user can insert the straw 9 into the main cavity 8 by piercing the silicone sheet 1061 with the angled tip of the straw 9 from the outside. Then the user can drink the mixture directly using the straw 9.
[0038] The present invention has been described in detail above. The above description is only a preferred embodiment of the present invention and should not be construed as limiting the scope of the present invention. All equivalent changes and modifications made in accordance with the scope of this application should still fall within the scope of the present invention.
Claims
1. A novel double-chamber oral liquid bottle, characterized in that, The dual-chamber oral liquid bottle includes a screw-on component, a connector, a sealing bottom plug, and a main bottle body. The screw-on component has a secondary cavity for storing secondary materials. The screw-on component is capped at one end of the connector, and the main bottle body is connected to the other end of the connector. One end of the sealing bottom plug is movably sleeved on the connector, and the other end of the sealing bottom plug is sealed and snapped into the bottom of the screw-on component. A main locking block is provided on the outer side of the screw-on component, and a secondary locking block is provided on the inner side of the connector. The screw-on component and the connector abut against each other through the cooperation of the main locking block and the secondary locking block.
2. The novel double-chamber oral liquid bottle according to claim 1, characterized in that, The sealing plug includes a top sleeve, an intermediate band, and a bottom piston. The intermediate band is fixedly connected between the top sleeve and the bottom piston. The bottom piston has a groove. The lower end of the screwing component is inserted into the groove. A main rib is provided on the inner side of the groove. A secondary rib is provided on the lower end of the screwing component. The bottom piston and the screwing component are movably engaged by the cooperation of the main rib and the secondary rib. The connecting component has a limiting rib. The top sleeve is movably fitted onto the connecting component and contacts and abuts against the limiting rib.
3. The novel double-chamber oral liquid bottle according to claim 1, characterized in that, The inner side of the screwing component is provided with a first internal thread, and the outer edge of the upper end of the connector is provided with a first external thread. The screwing component and the connector are connected by the engagement of the first internal thread and the first external thread.
4. A novel double-chamber oral liquid bottle according to claim 1, characterized in that, The connector has a second internal thread on its inner side, and the upper outer edge of the main bottle body has a second external thread. The connector and the main bottle body are connected by the engagement of the second internal thread and the second external thread.
5. A novel double-chamber oral liquid bottle according to claim 1, characterized in that, The screwing component has bottom locking teeth on its inner side, and the connecting component has anti-retraction teeth. The screwing component and the connecting component are movably connected through the cooperation of the bottom locking teeth and the anti-retraction teeth.
6. A novel double-chamber oral liquid bottle according to claim 1, characterized in that, The outer side of the screw-on component is provided with anti-slip texture, and the top of the screw-on component is provided with an insert, and the insert is provided with a silicone sheet. The insert and the silicone sheet are sequentially passed through by the externally provided straw.
7. A novel double-chamber oral liquid bottle according to claim 1, characterized in that, The main bottle body has a main cavity inside for storing the main material.