CN220810421U - Double-channel elbow container cover - Google Patents

Double-channel elbow container cover Download PDF

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Publication number
CN220810421U
CN220810421U CN202322787170.6U CN202322787170U CN220810421U CN 220810421 U CN220810421 U CN 220810421U CN 202322787170 U CN202322787170 U CN 202322787170U CN 220810421 U CN220810421 U CN 220810421U
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CN
China
Prior art keywords
elbow
nozzle
cover
seat
bent
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CN202322787170.6U
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Chinese (zh)
Inventor
杨标
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Taicang Xianghao Plastic Technology Co ltd
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Taicang Xianghao Plastic Technology Co ltd
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Abstract

The utility model discloses a double-channel elbow container cover, which comprises: the lower cover comprises a threaded cover and a spoiler at the top; the upper cover comprises a bent seat, a bent nozzle, an air return channel and a partition plate, wherein the bent seat is arranged at the top of the lower cover, the bent nozzle is arranged at one side of the top of the bent seat, the air return channel is arranged at the top of the inner surface of the bent nozzle, the partition plate is arranged at one end of the air return channel, and the partition plate extends into the bent seat; the cover cap is connected to one side of the upper cover, a leakage stopping ring is arranged in the cover cap, the cover cap is matched with the outer surface of the elbow nozzle, and the leakage stopping ring is matched with the inner surface of the elbow nozzle; the pouring direction is controlled by adopting the elbow structure, the container cover is divided into two channels for air inlet and liquid outlet, so that the air pressure balance is kept inside and outside the container, the fluid outflow speed is accelerated, meanwhile, the fluid entering the air return channel is reduced by the partition plate and the side overflow preventing side plate, and on the other hand, the fluid movement direction is disturbed by the spoiler, so that the fluid is mutually mixed before pouring, and the container is prevented from being blocked by the stagnation phenomenon.

Description

Double-channel elbow container cover
Technical Field
The utility model belongs to the technical field of transportation packaging, and particularly relates to a double-channel elbow container cover.
Background
The container cover is a structure for quickly closing and opening the container, and is an indispensable device in industry and life as large as a melting furnace and as small as a water bottle.
The container cover has a simple structure, and in practical use, some inconvenient places appear, for example, because the container is a closed structure, the air pressure in the container is reduced when the fluid is poured, the fluid is reversely pulled, so that the pouring speed is slowed down or interrupted until the air pressure difference is recovered, meanwhile, part of the fluid has high viscosity, and after long-term standing, molecular chains are combined, so that stagnation is generated, and the fluid is not easy to flow out. Accordingly, the present application addresses the above issues by innovating and improving container closures.
The existing container covers mainly have the following problems:
1. Most of the existing container covers have the problem of negative internal pressure, and because the container is of a closed structure, the air pressure in the container is reduced when the fluid is poured, and the fluid is reversely pulled, so that the pouring speed is reduced or interrupted until the air pressure difference is recovered, and the pouring speed is reduced.
2. Most of the existing container covers are not suitable for pouring large-viscosity fluid, and part of the fluid is large in viscosity, and molecules are combined after long-term standing, so that stagnation is generated, and the fluid is not easy to flow out.
Disclosure of utility model
The utility model aims to: in order to overcome the defects, the utility model aims to provide the double-channel elbow container cover, which adopts an elbow structure to control the dumping direction, divides the container cover into two channels of air inlet and liquid outlet through a separation elbow nozzle, ensures that the air pressure inside and outside the container is balanced, accelerates the outflow speed of fluid, simultaneously reduces the fluid entering an air return channel through a separation plate and an anti-side overflow plate, and on the other hand, the fluid moving direction is disturbed through a spoiler, so that the fluids are mutually mixed before dumping, and the container is prevented from being blocked by a stagnation phenomenon.
The technical scheme is as follows: in order to achieve the above object, the present utility model provides a dual channel elbow container cover, comprising:
The lower cover comprises a threaded cover and a spoiler, wherein threads are arranged on the inner surface of the threaded cover, and the spoiler is arranged at the top of the threaded cover;
The upper cover comprises a bent seat, a bent nozzle, an air return channel and a partition plate, wherein the bent seat is arranged at the top of the lower cover, the bent nozzle is arranged at the top of the bent seat, the bent nozzle is arranged at one side of the bent seat, the air return channel is arranged at the top of the inner surface of the bent nozzle, the partition plate is arranged at one end of the air return channel, and the partition plate extends into the bent seat;
The nut cap is connected to one side of the upper cover, a leakage stopping ring is arranged in the nut cap and matched with the outer surface of the elbow nozzle, and the leakage stopping ring is matched with the inner surface of the elbow nozzle.
According to the utility model, the elbow container cover is arranged, on one hand, the elbow structure is adopted to control the dumping direction, the container cover is divided into the two channels for air inlet and liquid outlet through the separation elbow nozzle, so that the air pressure balance between the inside and the outside of the container is kept, the outflow speed of fluid is accelerated, meanwhile, the fluid entering the air return channel is reduced through the separation plate and the side overflow preventing plate, and on the other hand, the fluid moving direction is disturbed through the spoiler, so that the fluid is mutually mixed before dumping, and the phenomenon of stagnation is avoided to block the container.
The elbow container cover is arranged, the elbow nozzle is closed by using the cover cap, fluid is prevented from flowing out accidentally, the elbow container cover is sealed by the leakage-stopping ring, and the tightness of the container cover is improved.
The air return channel comprises a separation bottom plate and an anti-side-overflow plate, wherein the separation bottom plate is arranged in the elbow nozzle, the separation bottom plate separates the elbow nozzle, the anti-side-overflow plate is arranged on two sides of the separation bottom plate, one side of the anti-side-overflow plate is fixed on the separation bottom plate, the other side of the anti-side-overflow plate is fixed on the top of the inner surface of the elbow seat, and a gap is arranged between the anti-side-overflow plate and the side surface of the elbow seat.
According to the arrangement of the air return channel, a certain space flows out of two sides of the elbow seat through the side overflow preventing plate, so that even if a part of fluid enters one side of the air return channel in a certain inclined dumping state of the container, the fluid can flow into a gap between the side overflow preventing plate and the elbow seat, and the air return channel cannot be blocked.
The top of the threaded cover is provided with a mounting channel, a first mounting convex ring is fixed on the outer side of the middle section of the mounting channel, a second mounting convex ring is arranged on the inner side of the bottom of the elbow seat, the first mounting convex ring is matched with the second mounting convex ring, the distance from the bottom of the first mounting convex ring to the bottom of the mounting channel is larger than the distance from the bottom of the second mounting convex ring to the bottom of the elbow seat, and the distance from the bottom of the first mounting convex ring to the bottom of the mounting channel is smaller than the distance from the top of the second mounting convex ring to the bottom of the elbow seat.
The upper cover can be separated by the arrangement of the assembly convex ring, and fluid can be poured directly through the lower cover, so that the flow is increased and the effect of the spoiler is maintained.
The spoiler comprises an annular guide plate, a cross flow distribution rod and an annular flow distribution plate, wherein the annular guide plate is arranged in the threaded cover, the annular guide plate is hollow, the cross flow distribution rod is connected inside the annular guide plate and is in a cross shape, and the annular flow distribution plate is surrounded at the middle section of the cross flow distribution rod.
According to the utility model, the spoiler is arranged to split liquid, so that the stagnation state generated by long-term standing is broken, fluid is uniform, the viscosity is reduced, and the pouring speed is improved.
The inner diameter of the cap is in transition fit with the outer diameter of the elbow nozzle, the outer diameter of the leakage stop ring is in interference fit with the inner diameter of the elbow nozzle, and the outer diameter of the leakage stop ring is larger than the inner diameter of the elbow nozzle.
According to the utility model, the leakage stop ring is arranged, and the tightness between the leakage stop ring and the elbow nozzle is increased through interference fit.
The outside of the leak-proof ring is rounded near one end.
According to the utility model, the arrangement of the leakage stop ring generates a certain cambered surface through the rounded corners, so that the leakage stop ring can conveniently enter the elbow nozzle, and the leakage stop ring and the elbow nozzle are prevented from collision with each other.
The outside of the cap is provided with a cover opening pivot.
The cover opening support point is arranged, so that a hypodynamia platform is provided, and the cover opening is convenient.
The outside of the threaded cover is circumferentially provided with anti-skid textures.
The anti-skid texture is arranged, so that the lower cover is convenient to open and screw.
The technical scheme can be seen that the utility model has the following beneficial effects:
1. According to the double-channel elbow container cover, on one hand, an elbow structure is adopted to control the dumping direction, and the container cover is divided into two channels for air inlet and liquid outlet through the separation elbow nozzle, so that the air pressure balance between the inside and the outside of the container is kept, the fluid outflow speed is increased, and meanwhile, the fluid entering the air return channel is reduced through the separation plate and the side overflow prevention plate.
2. According to the double-channel elbow container cover, the movement direction of fluid is disturbed by the spoiler, so that the fluid is mutually mixed before pouring, the stagnation state generated by standing for a long time is broken, the fluid is uniform, the viscosity is reduced, and the pouring speed is improved.
3. According to the double-channel elbow container cover, the elbow nozzle is closed by the cover cap, so that unexpected outflow of fluid is avoided, the sealing is realized through the leakage-stopping ring, and the tightness of the container cover is improved.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is a schematic view of the structure of the return air channel of the present utility model;
FIG. 3 is a schematic view of the structure of the mounting channel of the present utility model;
FIG. 4 is a schematic view of a spoiler according to the present utility model;
FIG. 5 is an exploded view of the overall structure of the present utility model;
in the figure: the anti-slip device comprises a threaded cover-1, a mounting channel-11, a first assembly convex ring-12, an anti-slip texture-13, a spoiler-2, an annular guide plate-21, a cross flow distribution rod-22, an annular flow distribution plate-23, an elbow seat-3, a second assembly convex ring-31, an elbow nozzle-4, an air return channel-5, a separation bottom plate-51, an anti-side overflow edge plate-52, a separation plate-6, a cap-7, a cover opening pivot-71 and a leakage stop ring-8.
Detailed Description
The utility model is further elucidated below in connection with the drawings and the specific embodiments.
Embodiments of the present utility model are described in detail below, examples of which are illustrated in the accompanying drawings, wherein like or similar reference numerals refer to like or similar elements or elements having like or similar functions throughout. The embodiments described below by referring to the drawings are illustrative and intended to explain the present utility model and should not be construed as limiting the utility model.
Example 1
A two-channel elbow container cover as shown in fig. 1-5, comprising:
The lower cover comprises a threaded cover 1 and a spoiler 2, wherein threads are arranged on the inner surface of the threaded cover 1, and the spoiler 2 is arranged on the top of the threaded cover 1;
The upper cover comprises a bent seat 3, a bent nozzle 4, an air return channel 5 and a partition plate 6, wherein the bent seat 3 is arranged at the top of the lower cover, the bent nozzle 4 is arranged at the top of the bent seat 3, the bent nozzle 4 is arranged at one side of the bent seat 3, the air return channel 5 is arranged at the top of the inner surface of the bent nozzle 4, the partition plate 6 is arranged at one end of the air return channel 5, and the partition plate 6 extends into the bent seat 3;
The cover cap 7 is connected to one side of the upper cover, a leakage stopping ring 8 is arranged inside the cover cap 7, the cover cap 7 is matched with the outer surface of the elbow nozzle 4, and the leakage stopping ring 8 is matched with the inner surface of the elbow nozzle 4.
The air return channel 5 in this embodiment includes a separation bottom plate 51 and an anti-side-overflow plate 52, the separation bottom plate 51 is arranged inside the elbow nozzle 4, the separation bottom plate 51 separates the elbow nozzle 4, two sides of the separation bottom plate 51 are provided with the anti-side-overflow plate 52, one side of the anti-side-overflow plate 52 is fixed on the separation bottom plate 51, the other side of the anti-side-overflow plate 52 is fixed on the top of the inner surface of the elbow seat 3, and a gap is provided between the anti-side-overflow plate 52 and the side surface of the elbow seat 3.
In this embodiment, the top of the screw cap 1 is provided with a mounting channel 11, a first assembling convex ring 12 is fixed on the outer side of the middle section of the mounting channel 11, a second assembling convex ring 31 is arranged on the inner side of the bottom of the elbow seat 3, the first assembling convex ring 12 is matched with the second assembling convex ring 31, the distance from the bottom of the first assembling convex ring 12 to the bottom of the mounting channel 11 is greater than the distance from the bottom of the second assembling convex ring 31 to the bottom of the elbow seat 3, and the distance from the bottom of the first assembling convex ring 12 to the bottom of the mounting channel 11 is less than the distance from the top of the second assembling convex ring 31 to the bottom of the elbow seat 3.
The spoiler 2 in this embodiment includes annular baffle 21, cross flow distribution rod 22 and annular flow distribution plate 23, screw cap 1 inside is provided with annular baffle 21, annular baffle 21 cavity, annular baffle 21 internally connected has cross flow distribution rod 22, cross flow distribution rod 22 is the cross, cross flow distribution rod 22 middle section encircles annular flow distribution plate 23.
In the embodiment, the inner diameter of the cap 7 is in transition fit with the outer diameter of the elbow nozzle 4, the outer diameter of the leakage stop ring 8 is in interference fit with the inner diameter of the elbow nozzle 4, and the outer diameter of the leakage stop ring 8 is larger than the inner diameter of the elbow nozzle 4.
The outside of the leak-stopping ring 8 in this embodiment is rounded near one end.
The cap 7 described in the present embodiment is provided outside with a cap opening fulcrum 71.
The thread cover 1 described in this embodiment is provided with a non-slip texture 13 around the outside.
Example 2
A dual channel elbow container cap as shown in figures 1, 3 and 4 comprising:
The lower cover comprises a threaded cover 1 and a spoiler 2, wherein threads are arranged on the inner surface of the threaded cover 1, and the spoiler 2 is arranged on the top of the threaded cover 1;
The upper cover comprises a bent seat 3, a bent nozzle 4, an air return channel 5 and a partition plate 6, wherein the bent seat 3 is arranged at the top of the lower cover, the bent nozzle 4 is arranged at the top of the bent seat 3, the bent nozzle 4 is arranged at one side of the bent seat 3, the air return channel 5 is arranged at the top of the inner surface of the bent nozzle 4, the partition plate 6 is arranged at one end of the air return channel 5, and the partition plate 6 extends into the bent seat 3;
The cover cap 7 is connected to one side of the upper cover, a leakage stopping ring 8 is arranged inside the cover cap 7, the cover cap 7 is matched with the outer surface of the elbow nozzle 4, and the leakage stopping ring 8 is matched with the inner surface of the elbow nozzle 4.
In this embodiment, the top of the screw cap 1 is provided with a mounting channel 11, a first assembling convex ring 12 is fixed on the outer side of the middle section of the mounting channel 11, a second assembling convex ring 31 is arranged on the inner side of the bottom of the elbow seat 3, the first assembling convex ring 12 is matched with the second assembling convex ring 31, the distance from the bottom of the first assembling convex ring 12 to the bottom of the mounting channel 11 is greater than the distance from the bottom of the second assembling convex ring 31 to the bottom of the elbow seat 3, and the distance from the bottom of the first assembling convex ring 12 to the bottom of the mounting channel 11 is less than the distance from the top of the second assembling convex ring 31 to the bottom of the elbow seat 3.
The spoiler 2 in this embodiment includes annular baffle 21, cross flow distribution rod 22 and annular flow distribution plate 23, screw cap 1 inside is provided with annular baffle 21, annular baffle 21 cavity, annular baffle 21 internally connected has cross flow distribution rod 22, cross flow distribution rod 22 is the cross, cross flow distribution rod 22 middle section encircles annular flow distribution plate 23.
Example 3
A two-channel elbow container cover as shown in fig. 1, comprising:
The lower cover comprises a threaded cover 1 and a spoiler 2, wherein threads are arranged on the inner surface of the threaded cover 1, and the spoiler 2 is arranged on the top of the threaded cover 1;
The upper cover comprises a bent seat 3, a bent nozzle 4, an air return channel 5 and a partition plate 6, wherein the bent seat 3 is arranged at the top of the lower cover, the bent nozzle 4 is arranged at the top of the bent seat 3, the bent nozzle 4 is arranged at one side of the bent seat 3, the air return channel 5 is arranged at the top of the inner surface of the bent nozzle 4, the partition plate 6 is arranged at one end of the air return channel 5, and the partition plate 6 extends into the bent seat 3;
The cover cap 7 is connected to one side of the upper cover, a leakage stopping ring 8 is arranged inside the cover cap 7, the cover cap 7 is matched with the outer surface of the elbow nozzle 4, and the leakage stopping ring 8 is matched with the inner surface of the elbow nozzle 4.
In the embodiment, the inner diameter of the cap 7 is in transition fit with the outer diameter of the elbow nozzle 4, the outer diameter of the leakage stop ring 8 is in interference fit with the inner diameter of the elbow nozzle 4, and the outer diameter of the leakage stop ring 8 is larger than the inner diameter of the elbow nozzle 4.
The outside of the leak-stopping ring 8 in this embodiment is rounded near one end.
The foregoing is merely a preferred embodiment of the utility model, and it should be noted that modifications could be made by those skilled in the art without departing from the principles of the utility model, which modifications would also be considered to be within the scope of the utility model.

Claims (8)

1. A binary channels elbow container lid, its characterized in that: comprising the following steps:
The lower cover comprises a threaded cover (1) and a spoiler (2), wherein threads are arranged on the inner surface of the threaded cover (1), and the spoiler (2) is arranged at the top of the threaded cover (1);
The upper cover comprises a bent head seat (3), a bent head nozzle (4), an air return channel (5) and a partition plate (6), wherein the bent head seat (3) is arranged at the top of the lower cover, the bent head nozzle (4) is arranged at the top of the bent head seat (3), the bent head nozzle (4) is arranged at one side of the bent head seat (3), the air return channel (5) is arranged at the top of the inner surface of the bent head nozzle (4), the partition plate (6) is arranged at one end of the air return channel (5), and the partition plate (6) extends into the bent head seat (3);
The nut cap (7) is connected to one side of the upper cover, a leakage stopping ring (8) is arranged in the nut cap (7), the nut cap (7) is matched with the outer surface of the elbow nozzle (4), and the leakage stopping ring (8) is matched with the inner surface of the elbow nozzle (4).
2. A dual channel elbow container cap according to claim 1, wherein: the air return channel (5) include separate bottom plate (51) and prevent side-overflow board (52), separate bottom plate (51) and arrange inside elbow mouth (4), separate bottom plate (51) and separate elbow mouth (4), separate bottom plate (51) both sides and be provided with prevent side-overflow board (52), prevent that side-overflow board (52) one side is fixed in on separating bottom plate (51), prevent that side-overflow board (52) opposite side is fixed in elbow seat (3) internal surface top, prevent being provided with the clearance between side-overflow board (52) and elbow seat (3) side.
3. A dual channel elbow container cap according to claim 1, wherein: the screw thread lid (1) top be provided with installation passageway (11), installation passageway (11) middle section outside is fixed with first assembly bulge loop (12), elbow seat (3) bottom inboard is provided with second assembly bulge loop (31), first assembly bulge loop (12) cooperate with second assembly bulge loop (31), the distance of first assembly bulge loop (12) bottom to installation passageway (11) bottom is greater than the distance of second assembly bulge loop (31) bottom to elbow seat (3) bottom, the distance of first assembly bulge loop (12) bottom to installation passageway (11) bottom is less than the distance of second assembly bulge loop (31) top to elbow seat (3) bottom.
4. A dual channel elbow container cap according to claim 1, wherein: the spoiler (2) include annular baffle (21), cross reposition of redundant personnel pole (22) and annular reposition of redundant personnel board (23), screw cap (1) inside is provided with annular baffle (21), annular baffle (21) cavity, annular baffle (21) internally connected has cross reposition of redundant personnel pole (22), cross reposition of redundant personnel pole (22) are the cross, cross reposition of redundant personnel pole (22) middle section is encircleed and is had annular reposition of redundant personnel board (23).
5. A dual channel elbow container cap according to claim 1, wherein: the inner diameter of the cap (7) is in transition fit with the outer diameter of the elbow nozzle (4), the outer diameter of the leakage stop ring (8) is in interference fit with the inner diameter of the elbow nozzle (4), and the outer diameter of the leakage stop ring (8) is larger than the inner diameter of the elbow nozzle (4).
6. A dual channel elbow container cap according to claim 5, wherein: the outside of the leak-stopping ring (8) is close to one end and is subjected to rounding treatment.
7. A dual channel elbow container cap according to claim 1, wherein: the outside of the cap (7) is provided with a cover opening pivot (71).
8. A dual channel elbow container cap according to claim 1, wherein: the outer side of the thread cover (1) is circumferentially provided with anti-slip textures (13).
CN202322787170.6U 2023-10-18 2023-10-18 Double-channel elbow container cover Active CN220810421U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322787170.6U CN220810421U (en) 2023-10-18 2023-10-18 Double-channel elbow container cover

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322787170.6U CN220810421U (en) 2023-10-18 2023-10-18 Double-channel elbow container cover

Publications (1)

Publication Number Publication Date
CN220810421U true CN220810421U (en) 2024-04-19

Family

ID=90699080

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322787170.6U Active CN220810421U (en) 2023-10-18 2023-10-18 Double-channel elbow container cover

Country Status (1)

Country Link
CN (1) CN220810421U (en)

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