Spherical omnibearing sliding cover

文档序号:767337 发布日期:2021-04-09 浏览:9次 中文

阅读说明:本技术 球面全方位滑盖 (Spherical omnibearing sliding cover ) 是由 陈世亮 陈杰 吴小华 姚旭 于 2021-01-31 设计创作,主要内容包括:本发明公开了一种球面全方位滑盖,包括杯体,在杯体的杯口部连接有外盖,外盖内螺接有内盖,内盖的下端设有出水口,内盖的上端设有圆盘,圆盘的上表面为球面形,圆盘上表面的环槽内设有铁质环片,圆盘的中部设有导筒,导筒内设有磁铁滑块,磁铁滑块的下部与出水口挡盘连接,顶盖的底面与圆盘的上表面相适配、且该底面中部的凹槽内设有固定磁铁;当推移顶盖使固定磁铁位于导筒上方时,固定磁铁吸附磁铁滑块上移,磁铁滑块带动出水口挡盘上移,出水口关闭;推移顶盖使固定磁铁吸附于铁质环片时,出水口挡盘随磁铁滑块下落,出水口开通。本发明的球面全方位滑盖,任意水平方向均可打开杯盖,开盖特别方便,且任意方向均可饮水。(The invention discloses a spherical all-dimensional sliding cover, which comprises a cup body, wherein an outer cover is connected at the cup mouth part of the cup body, an inner cover is screwed in the outer cover, a water outlet is formed in the lower end of the inner cover, a disc is arranged at the upper end of the inner cover, the upper surface of the disc is spherical, an iron ring sheet is arranged in a ring groove in the upper surface of the disc, a guide cylinder is arranged in the middle of the disc, a magnet sliding block is arranged in the guide cylinder, the lower part of the magnet sliding block is connected with a water outlet blocking disc, the bottom surface of a top cover is matched with the upper surface of the disc; when the top cover is pushed to enable the fixed magnet to be located above the guide cylinder, the fixed magnet adsorbs the magnet slide block to move upwards, the magnet slide block drives the water outlet blocking disc to move upwards, and the water outlet is closed; when the top cover is pushed to make the fixed magnet be adsorbed on the iron ring piece, the water outlet blocking disc falls down along with the magnet sliding block, and the water outlet is opened. The spherical omnibearing sliding cover can open the cup cover in any horizontal direction, is particularly convenient to open, and can drink water in any direction.)

1. The utility model provides an all-round sliding closure of sphere, includes cup (13), its characterized in that: an outer cover (10) is connected to the cup mouth of the cup body (13), an inner cover (6) is screwed in the outer cover (10), a water outlet (6-1) is formed in the lower end of the inner cover (6), a disc (6-2) used for supporting the top cover (1) is arranged at the upper end of the inner cover (6), the upper surface of the disc (6-2) is spherical, an iron ring piece (5) is arranged in a ring groove in the upper surface of the disc (6-2), a guide cylinder (6-3) extending downwards is arranged in the middle of the disc (6-2), a magnet sliding block (4) is arranged in the guide cylinder (6-3), the lower part of the magnet sliding block (4) is connected with a water outlet baffle disc (8), the bottom surface of the top cover (1) is matched with the upper surface of the disc (6-2), and a fixed magnet (2) for adsorbing the magnet sliding block (4) is arranged in a groove in the middle of the bottom surface;

when the top cover (1) is pushed to enable the fixed magnet (2) to be located above the guide cylinder (6-3), the fixed magnet (2) adsorbs the magnet sliding block (4) to move upwards, the magnet sliding block (4) drives the water outlet blocking disc (8) to move upwards, so that the water outlet blocking disc (8) is blocked at the water outlet (6-1), and the water outlet (6-1) is closed;

when the top cover (1) is pushed to enable the fixed magnet (2) to be adsorbed on the iron ring piece (5), the water outlet blocking disc (8) falls along with the magnet sliding block (4), and the water outlet (6-1) is opened.

2. The spherical omni-directional sliding cover according to claim 1, wherein: the magnet sliding block (4) and the fixed magnet (2) are both cylindrical.

3. The spherical omni-directional sliding cover according to claim 2, wherein: the middle part of the magnet sliding block (4) is provided with a through hole, the middle part of the water outlet baffle disc (8) is provided with a guide pillar (8-1) extending upwards, the connecting piece (3) penetrates through the through hole to connect the magnet sliding block (4) to the upper end of the guide pillar (8-1), the diameter of the magnet sliding block (4) is larger than that of the guide pillar (8-1), the upper inner hole of the guide cylinder (6-3) is matched with the magnet sliding block (4), and the lower inner hole of the guide cylinder (6-3) is matched with the guide pillar (8-1).

4. A spherical omni-directional sliding cover according to any one of claims 1 to 3, wherein: a water retaining disc sealing ring (9) is arranged in a ring groove at the outer edge of the water outlet retaining disc (8); an inner cover sealing ring (7) which seals with the appearance is arranged on the inner cover (6); and an outer cover sealing ring (11) for sealing with the cup mouth is arranged on the outer cover (10).

Technical Field

The invention relates to a cup cover of a water cup, in particular to a spherical all-dimensional sliding cover.

Background

In the conventional water cup, the cup cover is basically connected with the cup body through a threaded screwing structure, the whole cup cover is required to be screwed out to drink water when the cup cover is opened, the operation is troublesome, and the screwed-out cup cover is required to be stored so as to be screwed in the cup body after drinking water. As an improvement, cup lids which automatically bounce after being pressed are also available in the market, but the cup lids need a user to search for the opening direction, only water can be drunk from a specific part, and the cup lids still have defects and inconvenience.

Disclosure of Invention

The invention aims to provide a spherical all-dimensional sliding cover, which can be used for opening a cup cover in any horizontal direction, is particularly convenient to open and can be used for drinking water in any direction.

In order to achieve the purpose, the invention adopts the following technical scheme:

a spherical omnibearing sliding cover comprises a cup body, wherein an outer cover is connected to the cup mouth of the cup body, an inner cover is screwed in the outer cover, a water outlet is formed in the lower end of the inner cover, a disc for supporting a top cover is arranged at the upper end of the inner cover, the upper surface of the disc is spherical, an iron ring sheet is arranged in an annular groove in the upper surface of the disc, a guide cylinder extending downwards is arranged in the middle of the disc, a magnet sliding block is arranged in the guide cylinder, the lower part of the magnet sliding block is connected with a water outlet blocking disc, the bottom surface of the top cover is matched with the upper surface of the disc, and a fixed magnet for adsorbing the magnet sliding block; when the top cover is pushed to enable the fixed magnet to be located above the guide cylinder, the fixed magnet adsorbs the magnet sliding block to move upwards, the magnet sliding block drives the water outlet blocking disc to move upwards, so that the water outlet blocking disc is blocked at the water outlet, and the water outlet is closed; when the top cover is pushed to make the fixed magnet be adsorbed on the iron ring piece, the water outlet blocking disc falls down along with the magnet sliding block, and the water outlet is opened.

The magnet sliding block and the fixed magnet are both cylindrical.

The middle part of the magnet slider is provided with a through hole, the middle part of the water outlet baffle disc is provided with a guide pillar extending upwards, the connecting piece penetrates through the through hole to connect the magnet slider to the upper end of the guide pillar, the diameter of the magnet slider is larger than that of the guide pillar, an inner hole in the upper part of the guide cylinder is matched with the magnet slider, and an inner hole in the lower part of the guide cylinder is matched with the guide pillar.

A water retaining disc sealing ring is arranged in the annular groove at the outer edge of the water outlet blocking disc; an inner cover sealing ring for sealing with the appearance is arranged on the inner cover; and the outer cover is provided with an outer cover sealing ring for sealing with the cup mouth.

Compared with the prior art, the invention has the beneficial effects that: by adopting the technical scheme, when the top cover is pushed to enable the fixed magnet to be positioned above the guide cylinder, the fixed magnet adsorbs the magnet slide block to move upwards, the magnet slide block drives the water outlet blocking disc to move upwards so as to enable the water outlet blocking disc to be blocked at the water outlet, and the water outlet is closed; when the top cover is pushed to enable the fixed magnet to be adsorbed on the iron ring piece, the fixed magnet releases the magnet sliding block, the water outlet blocking disc falls along with the magnet sliding block, the water outlet is opened, water in the cup body flows through the water outlet hole through the water outlet along with the inclination of the cup body, and finally flows out of the cup mouth, and due to the structure, the iron ring piece is in the shape of a circular ring, the water outlet can be opened when the top cover is pushed to any horizontal direction, the top cover is adsorbed on the iron ring piece, the cover is particularly convenient to open, and water can be; especially, the upper surface of the disc adopts a spherical shape, which is not only beneficial to sliding, but also beneficial to aligning the top cover and the disc (namely, the center line is superposed) under the action of magnetic force when the top cover is pushed to ensure that the fixed magnet is positioned above the guide cylinder, and can increase the interest, namely, the spherical radius of the upper surface of the disc can be adjusted according to the requirement, when the spherical radius is smaller, the spherical radius of the top cover matched with the spherical radius is also smaller and approaches to a hemisphere, and when the spherical radius is larger, the spherical radius of the top cover matched with the spherical radius is also larger and approaches to a plane, thus being capable of meeting various requirements of users.

The further beneficial effects are that: because the magnet slide block and the fixed magnet are both made of magnet materials and are cylindrical, the automatic centering effect is the best when the magnets attract each other (certainly, the N pole and the S pole attract each other).

Drawings

FIG. 1 is a schematic structural view of a closed state of a top cover according to the present invention;

FIG. 2 is a schematic structural view showing a top cover pushed open state according to the present invention;

FIG. 3 is a schematic diagram of the lid of FIG. 1 in a disassembled configuration;

FIG. 4 is a schematic view of the construction of the middle cap of FIG. 1;

FIG. 5 is a cross-sectional view of the closure of the present invention;

fig. 6 is a sectional view showing a state where the top cover is pushed open according to the present invention.

The technical features represented by the reference numerals in the figures are as follows:

1. the water cup comprises a top cover, 2 parts of a fixed magnet, 3 parts of a connecting piece, 4 parts of a magnet sliding block, 5 parts of an iron ring piece, 6 parts of an inner cover, 6-1 parts of a water outlet, 6-2 parts of a disc, 6-3 parts of a guide cylinder, 7 parts of an inner cover sealing ring, 8 parts of a water outlet baffle disc, 9 parts of a water baffle disc sealing ring, 10 parts of an outer cover, 11 parts of an outer cover sealing ring, 12 parts of a water guide cover, 13 parts of a cup body.

Detailed Description

In order to make the technical solution of the present invention clearer, the present invention will be described in detail below with reference to fig. 1 to 6. It should be understood that the detailed description and specific examples, while indicating the scope of the invention, are intended for purposes of illustration only and are not intended to limit the scope of the invention.

The invention relates to a spherical omnibearing sliding closure, which comprises a cup body 13, wherein an outer cover 10 is connected to the cup mouth part of the cup body 13, an inner cover 6 is screwed in the outer cover 10, a water outlet 6-1 is arranged at the lower end of the inner cover 6, a disc 6-2 for supporting a top cover 1 is arranged at the upper end of the inner cover 6, the upper surface of the disc 6-2 is spherical, an iron ring piece 5 is arranged in a ring groove on the upper surface of the disc 6-2, a guide cylinder 6-3 extending downwards is arranged in the middle part of the disc 6-2, a magnet sliding block 4 is arranged in the guide cylinder 6-3, the lower part of the magnet sliding block 4 is connected with a water outlet baffle disc 8, the bottom surface of the top cover 1 is matched with the upper surface of the disc 6-2, and a fixed magnet 2 for;

when the top cover 1 is pushed to enable the fixed magnet 2 to be located above the guide cylinder 6-3, the fixed magnet 2 adsorbs the magnet slide block 4 to move upwards, the magnet slide block 4 drives the water outlet baffle disc 8 to move upwards, so that the water outlet baffle disc 8 is blocked at the water outlet 6-1, and the water outlet 6-1 is closed;

when the water cup is in a closed state, the water cup can be opened by horizontally pushing the top cover 1 in any direction. When the top cover 1 is pushed to enable the fixed magnet 2 to be adsorbed on the iron ring piece 5, the water outlet blocking disc 8 falls along with the magnet sliding block 4, the water outlet 6-1 is opened, water in the cup body 13 flows through the water outlet 6-1 and the water outlet 6-4 along with the inclination of the cup body 13, and finally flows out of the cup mouth, and the water outlet 6-1 can be opened when the top cover is pushed to any horizontal direction due to the fact that the iron ring piece 5 is in the shape of a circular ring, and the top cover 1 is enabled to be adsorbed on the iron ring piece 5.

Preferably, the magnet slider 4 and the fixed magnet 2 are both cylindrical. The middle part of the magnet sliding block 4 is provided with a through hole, the middle part of the water outlet baffle disc 8 is provided with a guide pillar 8-1 extending upwards, the connecting piece 3 penetrates through the through hole to connect the magnet sliding block 4 to the upper end of the guide pillar 8-1, the diameter of the magnet sliding block 4 is larger than that of the guide pillar 8-1, the upper inner hole of the guide cylinder 6-3 is matched with the magnet sliding block 4, and the lower inner hole of the guide cylinder 6-3 is matched with the guide pillar 8-1. A water retaining disc sealing ring 9 is arranged in a ring groove at the outer edge of the water outlet blocking disc 8; an inner cover sealing ring 7 for sealing with the appearance is arranged on the inner cover 6; the outer cover 10 is provided with an outer cover sealing ring 11 for sealing with the cup mouth.

According to the technical scheme, the water outlet can be opened by pushing the top cover to any direction, the top cover is adsorbed on the iron ring, the cover is particularly convenient to open, and water can be drunk at any opening position; especially, the upper surface of the disc adopts a spherical shape, the magnet slide block and the fixed magnet are both made of magnet materials and are cylindrical, so that the sliding is facilitated, the top cover and the disc can be automatically centered (namely, the central lines are overlapped) under the action of magnetic force when the top cover is pushed to enable the fixed magnet to be positioned above the guide cylinder, the interestingness can be increased, the spherical radius of the upper surface of the disc can be adjusted as required, when the spherical radius is smaller, the spherical radius of the top cover matched with the spherical radius is also smaller and approaches to a hemisphere, when the spherical radius is larger, the spherical radius of the top cover matched with the spherical radius is also larger and approaches to a plane, the multifunctional magnetic disc can meet various requirements of users, and the multifunctional magnetic disc is very suitable for being used.

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