Water outlet structure of a thermal container

CN224797573UActive Publication Date: 2026-09-25SHANGHAI WANSHENG VACUUM FLASK & VESSEL
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Patent Information

Application Number
CN202521572863.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-28
Publication Date
2026-09-25
Estimated Expiration
2035-07-28

AI Technical Summary

Technical Problem

[0002]常规保温容器出水口的结构为平面式,此种结构方式出水效果还不理想,倒水时出水口出水常有分喷飞溅的状态,分喷飞溅出来的水弄湿桌面还有可能对人手造成烫伤因而不能到达欧洲标准的要求

Benefits of technology

[0006]本实用新型的优点是增加一个出水挡片3小零件,装配在旋塞2的出水口处,改变水流的方向,使倒水时出水口出水集中顺畅。结构简单合理,降低了生产难度,从而节约生产成本,提高生产效率,增加了产品的稳定性。装配方便、零件生产效率高、操作方便、成本低、功能性好,大大改善保温容器出水口出水时水喷溅问题,使出水更流畅集中。

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Abstract

The water outlet structure of the heat preservation container comprises a movable plug, a plug, a water outlet baffle, a shoulder, a plug sealing ring, a mouth ring, a bottle core, a clamping ring, a compression spring and a hand pressing switch. A clamping ring is arranged between the shoulder and the bottle core for connection. The shoulder is provided with a mouth ring. The plug is connected with the shoulder through threads. The plug sealing ring is arranged between the plug and the shoulder. The movable plug is installed at the center of the plug. The compression spring is arranged between the movable plug and the plug. The clamping ring is buckled at the top of the movable plug. The movable plug and the plug are in a normally closed structure under the action of no external force. The water outlet of the plug is provided with a water outlet baffle. The top end of the movable plug is in abutment with the bottom of the hand pressing switch. The water outlet structure has the advantages of simple structure, convenient assembly, high production efficiency of parts, convenient operation, low cost, good functionality, improvement of the water spattering problem when the water outlet of the heat preservation container discharges water, and smooth and concentrated water discharge.
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Description

Technical Field

[0001] This utility model relates to insulated containers, and in particular to a water outlet structure for an insulated container, a centralized and smooth water outlet structure for an insulated container. Background Technology

[0002] The conventional insulated container's water outlet has a flat structure. This design is not ideal for water flow, often resulting in splashing during pouring. This splashing water wets the table and can potentially burn hands, failing to meet European standards. One solution is to add a step to the outlet on the shoulder of the container to align it with the valve's outlet surface. However, this results in excessively thick shoulder walls, causing shrinkage marks on the part, an unsuitable structure, poor appearance, and increased production costs due to manufacturing difficulties. Therefore, a new structural design is needed to address the splashing issue at the insulated container's outlet. Summary of the Invention

[0003] The purpose of this utility model is to address the deficiencies in existing technologies by providing a water outlet structure for an insulated container. This utility model includes: a movable plug 1, a stopcock 2, a water outlet baffle 3, a shoulder 4, a stopcock sealing ring 5, a mouth ring 6, a bottle liner 7, a retaining ring 8, a compression spring 9, and a manual switch 10. The key feature is that a retaining ring is provided between the shoulder 4 and the bottle liner 7 for connection, and the mouth ring 6 is provided between the shoulder 4 and the bottle liner 7 to prevent water leakage. The stopcock 2 is connected to the shoulder 4 via threads. A stopcock sealing ring 5 is provided between the stopcock 2 and the shoulder 4. The stopcock sealing ring 5 provides a seal to prevent water leakage. The movable plug 1 is installed on the central axis of the stopcock 2, and the top of the movable plug 1 abuts against the bottom of the manual switch 10. A compression spring 9 and a retaining ring 8 are provided between the movable plug 1 and the rotary stopper 2. The retaining ring 8 is fastened in the groove at the top of the movable plug 1 and is the upper limit of the compression spring 9. The bottom of the compression spring 9 presses against the rotary stopper 2, so that the movable plug 1 is always in a compressed state. Under the action of no external force, the movable plug 1 and the rotary stopper 2 are normally closed. A water outlet baffle 3 is provided at the outlet of the rotary stopper 2. The water outlet baffle 3 changes the direction of water flow, so that the water outlet is concentrated and smooth when pouring. The movable stopper 1 can slide up and down within the stopper 2. Under normal conditions, the movable stopper 1 moves up to the top under the action of the spring 9. At this time, the movable stopper 1 and the stopper 2 are in a normally closed state. When the top of the movable stopper 1 is pressed down by the hand switch 10, the movable stopper 1 moves down and separates from the lower end face of the stopper 2. At this time, it is in an open state. When pouring water, lift and tilt the insulated container. The water inside the bottle liner 7 flows out from the gap between the movable stopper 1 and the stopper 2 and flows into the outlet of the stopper 2. After being intercepted by the water outlet baffle 3, the water flow direction turns 90 degrees and flows to the mating surface of the stopper 2 and the shoulder 4. This allows the water to flow together along the plane of the shoulder 4 and concentrate on the water outlet platform of the shoulder 4. Thus, the entire structure has a concentrated and smooth water discharge function when in use, achieving a better effect.

[0004] The water outlet baffle 3 is a rectangular sheet-like component made of soft silicone. It has a groove that can be inserted into the rectangular hole of the valve 2 and fixed in place. The protruding part fits against the two sides of the water outlet hole of the valve 2.

[0005] The shoulder 4 and the inner bottle 7 are divided into upper and lower parts at the buckle. The shoulder 4 is provided with a ring of hooks, and the inner bottle 7 is provided with a ring of grooves. The hooks on the shoulder 4 are fastened into the grooves on the inner bottle 7.

[0006] The advantages of this invention are the addition of a small water outlet baffle 3, which is fitted at the outlet of the stopcock 2 to change the direction of water flow, making the water flow concentrated and smooth when pouring. The structure is simple and reasonable, reducing production difficulty, thereby saving production costs, improving production efficiency, and increasing product stability. It is easy to assemble, has high parts production efficiency, is easy to operate, has low cost, and good functionality, greatly improving the problem of water splashing when water is discharged from the outlet of the insulated container, making the water flow smoother and more concentrated. Attached Figure Description

[0007] Figure 1 A schematic diagram of the assembly cross-sectional structure of this utility model.

[0008] In the diagram: 1. Movable stopper, 2. Plug, 3. Water outlet baffle, 4. Shoulder, 5. Plug sealing ring, 6. Bottle ring, 7. Bottle liner, 8. Buckle, 9. Compression spring, 10. Hand-operated switch, 11. Water flow direction. Detailed Implementation

[0009] The embodiments of this utility model are further described below with reference to the accompanying drawings.

[0010] See Figure 1This embodiment consists of a movable stopper 1, a rotary stopper 2, a water outlet baffle 3, a shoulder 4, a rotary stopper sealing ring 5, a mouth ring 6, a bottle liner 7, a buckle 8, a compression spring 9, and a hand-operated switch 10. A buckle 8 is provided between the shoulder 4 and the bottle liner 7 for connection. The buckle divides the shoulder 4 and the bottle liner 7 into upper and lower parts; the shoulder 4 has a ring of hooks, and the bottle liner 7 has a ring of grooves, achieving a tight fit under external force and instantaneous deformation of the material itself. In this embodiment, a mouth ring 6 is provided between the shoulder 4 and the bottle liner 7, which serves to seal and prevent water leakage. The rotary stopper 2 is connected to the shoulder 4 via threads. A rotary stopper sealing ring 5 is provided between the rotary stopper 2 and the shoulder 4. The rotary stopper sealing ring 5 serves to seal and prevent water leakage. The movable stopper 1 is installed on the central axis of the rotary stopper 2, and the top of the movable stopper 1 abuts against the bottom of the hand-operated switch 10. A compression spring 9 and a retaining ring 8 are provided between the movable plug 1 and the rotary plug 2. The retaining ring 8 is fastened into the groove on the top of the movable plug 1, which is the upper limit of the compression spring 9. The bottom of the compression spring 9 presses against the rotary plug 2, keeping the movable plug 1 in a compressed state. Under normal conditions without external force, the movable plug 1 and the rotary plug 2 are in a normally closed structure. A water outlet baffle 3 is provided at the outlet of the rotary plug 2. The water outlet baffle 3 is a rectangular sheet-like component made of soft silicone. It has a groove that can be inserted into the rectangular hole of the rotary plug 2 and fixed in place. The protruding part fits against the two sides of the water outlet of the rotary plug 2. The water outlet baffle 3 changes the direction of the water flow, making the water flow concentrated and smooth. The movable stopper 1 can slide up and down within the stopper 2. Under normal conditions, the movable stopper 1 moves upward to the top under the action of the spring 9, at which time the movable stopper 1 and the stopper 2 are in a normally closed state. When the top of the movable stopper 1 is pressed down by the hand switch 10, the movable stopper 1 moves downward, separating the movable stopper 1 from the lower end face of the stopper 2, at which point it is in the open state. When pouring water, the insulated container is lifted and tilted, and the water inside the bottle liner 7 flows out from the gap between the movable stopper 1 and the stopper 2, flowing into the outlet of the stopper 2. After being intercepted by the water outlet baffle 3, the water flow direction turns 90 degrees and is buffered, and then flows vertically to the mating surface of the stopper 2 and the shoulder 4, so that the water can flow together along the plane of the shoulder 4 and concentrate on the water outlet platform of the shoulder 4. Thus, the entire structure has a better concentrated and smooth effect when pouring water from the insulated container. For details on the water flow direction 11, see Figure 1 .

Claims

1. A water outlet structure for an insulated container, comprising: The components include a movable stopper (1), a stopper (2), a water outlet baffle (3), a shoulder (4), a stopper sealing ring (5), a mouth ring (6), a bottle liner (7), a retaining ring (8), a compression spring (9), and a hand-operated switch (10). The feature is that a retaining ring is provided between the shoulder (4) and the bottle liner (7) for connection; a mouth ring (6) is provided between the shoulder (4) and the bottle liner (7); the stopper (2) is connected to the shoulder (4) via a thread; a stopper sealing ring (5) is provided between the stopper (2) and the shoulder (4); and the movable stopper (1) is installed on the central axis of the stopper (2). Above the line, a spring (9) is provided between the movable plug (1) and the rotary plug (2). The retaining ring (8) is fastened in the groove at the top of the movable plug (1) and is the upper limit of the spring (9). The bottom of the spring (9) presses against the rotary plug (2). When there is no external force, the movable plug (1) and the rotary plug (2) are normally closed. A water outlet baffle (3) is provided at the outlet of the rotary plug (2). The water outlet baffle (3) has a groove fixed at the rectangular hole of the outlet of the rotary plug (2). The top of the movable plug (1) abuts against the bottom of the hand-operated switch (10).

2. The water outlet structure of the insulated container according to claim 1, characterized in that... The water outlet baffle (3) is a rectangular sheet-like component made of soft silicone. It has a groove that can be inserted into the rectangular hole of the stopcock (2) and fixed. The protruding part fits against the two sides of the water outlet hole of the stopcock (2).

3. The water outlet structure of the insulated container according to claim 1, characterized in that... The shoulder (4) and the bottle liner (7) are divided into two parts from the buckle. The shoulder (4) is provided with a ring of hooks, and the bottle liner (7) is provided with a ring of grooves. The hooks on the shoulder (4) are fastened into the grooves on the bottle liner (7).