CN111387844B - Combined thermos bottle - Google Patents
Combined thermos bottle Download PDFInfo
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- CN111387844B CN111387844B CN202010093848.9A CN202010093848A CN111387844B CN 111387844 B CN111387844 B CN 111387844B CN 202010093848 A CN202010093848 A CN 202010093848A CN 111387844 B CN111387844 B CN 111387844B
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- bottle body
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- bottle
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47J—KITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
- A47J41/00—Thermally-insulated vessels, e.g. flasks, jugs, jars
- A47J41/02—Vacuum-jacket vessels, e.g. vacuum bottles
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47J—KITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
- A47J41/00—Thermally-insulated vessels, e.g. flasks, jugs, jars
- A47J41/0055—Constructional details of the elements forming the thermal insulation
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- Thermal Sciences (AREA)
- Engineering & Computer Science (AREA)
- Food Science & Technology (AREA)
- Details Of Rigid Or Semi-Rigid Containers (AREA)
Abstract
The invention belongs to the technical field of vacuum bottles, and particularly relates to a combined vacuum bottle which comprises a main bottle body, wherein the main bottle body is a hollow container with a vacuum layer arranged therein, a main bottle cap is connected to the main bottle body in a threaded manner, one side of the main bottle body is provided with an auxiliary bottle body, the auxiliary bottle body is detachably provided with an auxiliary bottle cap, the lower end of the main bottle body is integrally formed below the auxiliary bottle body, a supporting seat is integrally formed at one side, close to the main bottle body, of the lower end of the auxiliary bottle body, a connecting pipe is communicated with the inside of the auxiliary bottle body, a first notch is formed in the connecting pipe, a connecting blind hole is formed in the lower portion of the main bottle body, the connecting pipe penetrates through the connecting blind hole, a second notch is formed in a position, corresponding to the first notch, in the lower end of the main bottle body, is communicated with the inside of the main bottle body, the connecting blind hole is formed in one side of the main bottle body, a plurality of annular grooves are formed in the outer wall of the connecting pipe, and sealing rings are clamped in the annular grooves. The purpose is that: solves the problems that the prior thermos bottle cannot be used in the environment with poor air quality and is inconvenient to use when a user is in a moving state.
Description
Technical Field
The invention belongs to the technical field of thermos bottles, and particularly relates to a combined thermos bottle.
Background
The thermos bottle, namely a bottle capable of preserving heat, is generally a container for containing water, which is made of ceramics or stainless steel and a vacuum layer, and is provided with a cover at the top, the vacuum insulation layer can delay heat dissipation of water and other liquids in the vacuum bottle, so as to achieve the purpose of preserving heat. When the weather is severe cold, the thermos bottle is almost a necessary article for everyone, but sometimes people are thirsty and difficult to endure, water in the thermos bottle is hot and cold for a while and cannot be drunk, many people can often encounter the situation, and people give up drinking water even because of no water with proper temperature for a while, so that the thermos bottle is very inconvenient.
The thermos bottle with the cup is available in the market, when the thermos bottle is used, hot water in the thermos bottle is poured into the cup, water in the cup is less than that in the thermos bottle and can be cooled down more quickly, but the thermos bottle can only be used indoors, and once the thermos bottle is in an environment with poor air quality, the problem that the water in the cup is easy to pollute the external environment exists; moreover, such a thermos bottle is inconvenient to use because the thermos bottle can be moved only by a cup with hot water held by a user while the user is in a moving state.
Disclosure of Invention
The purpose of the invention is that: aims to provide a combined thermos bottle which is used for solving the problems that the prior thermos bottle cannot be used in the environment with poor air quality and is inconvenient to use when a user is in a moving state.
In order to achieve the technical purpose, the invention adopts the following technical scheme:
the utility model provides a combination formula thermos bottle, includes the main bottle, the main bottle is the cavity container that is equipped with the vacuum layer in, the spiro union has main bottle lid on the main bottle, one side of main bottle is equipped with vice bottle, demountable installation has vice bottle lid on the vice bottle, the lower extreme of main bottle has the supporting seat in vice bottle below integrated into one piece, the lower extreme of vice bottle is close to main bottle one side integrated into one piece and has the connecting pipe, the connecting pipe communicates inside the vice bottle, first breach has been seted up on the connecting pipe, the connecting blind hole has been seted up to main bottle lower part, the connecting pipe wears to establish in the connecting blind hole, the second breach has been seted up in first breach corresponding position to main bottle lower extreme, second breach intercommunication main bottle is inside and the connecting blind hole, a plurality of ring channels have been seted up to the connecting pipe outer wall, the ring channel inside callipers are equipped with the sealing washer.
Further limited, the side of main bottle body near vice bottle body one side transversely is fixed in the relative both sides of vice bottle body and is equipped with a plurality of reverse U-shaped spouts, vice bottle body both sides integrated into one piece has the slider, the slider is located reverse U-shaped spout. By means of the structural design, the sliding position of the auxiliary bottle body is secondarily limited through mutual matching of the sliding block and the inverted U-shaped sliding groove, displacement in other directions is avoided when the auxiliary bottle body slides left and right relative to the main bottle body, and a certain protection effect is achieved on the connecting pipe.
Further limited, the free end of the inverted U-shaped chute is detachably connected with an inverted U-shaped clamping block, the inverted U-shaped clamping block is clamped on the sliding block, the upper side and the lower side of the sliding block are integrally formed with check blocks matched with the inverted U-shaped clamping block, and the check blocks are located on the inner side of the inverted U-shaped clamping block. By means of the structural design, the stop block is blocked by the inverted U-shaped clamping block, the maximum rightward displacement distance of the auxiliary bottle body relative to the main bottle body is limited, and the fact that the connecting pipe is completely pulled out of the connecting blind hole when the auxiliary bottle body is pulled rightward relative to the main bottle body is avoided, so that water in the main bottle body directly flows out through the second notch and the connecting blind hole is avoided; the reverse U-shaped chute is detachably connected with the reverse U-shaped clamping block, so that the auxiliary bottle body can be conveniently installed on the main bottle body.
Further limiting, the outer wall of the auxiliary bottle body is provided with a plurality of radiating fins. By means of the structural design, the heat dissipation speed of water in the auxiliary bottle body can be increased, and the water in the auxiliary bottle body can be cooled more quickly.
Further limited, the radiating fin is vertically arranged, and the radiating fin is provided with an avoidance groove matched with the inverted U-shaped sliding groove and the inverted U-shaped clamping block. According to the structural design, the radiating fins are vertically arranged, so that the auxiliary bottle body is conveniently pulled transversely, and the influence of the radiating fins on the auxiliary bottle body when the auxiliary bottle body moves relative to the main bottle body can be avoided.
Further limited, the lower extreme integrated into one piece of vice bottle has the lug, set up on the supporting seat with lug assorted rectangle recess, two sets of hemisphere grooves have been seted up to the lower terminal surface of lug, set up the screw hole on the supporting seat, threaded hole spiro union has the bulb plunger, the spheroid part card of bulb plunger is established in one of them a set of hemisphere inslot. In the structural design, when the auxiliary bottle body is close to the main bottle body, the sphere part of the ball plunger is clamped in a group of hemispherical grooves positioned on the outer side; when the auxiliary bottle body is far away from the main bottle body, the sphere part of the ball plunger is clamped in a group of hemispherical grooves positioned at the inner side; the positions of the auxiliary bottle body in two states are fixed through mutual matching of the ball plunger and the two groups of hemispherical grooves, so that the auxiliary bottle body is prevented from shaking.
Further limited, the upper end integrated into one piece of vice bottle has the neck, the neck is located one side of the up end of vice bottle, vice bottle lid is installed on the neck. The structure design can enlarge the distance between the auxiliary bottle cap and the main bottle cap, is convenient for assembling and disassembling the auxiliary bottle cap and the main bottle cap, and simultaneously, is convenient for drinking water in the auxiliary bottle body.
Further defined, the secondary bottle cap is a soft rubber cap. By adopting the structural design, when water in the auxiliary bottle body needs to be drunk, the auxiliary bottle cap is directly pulled out.
Further defined, the side wall of the side of the auxiliary bottle body away from the main bottle body is a plane. When the water in the main bottle body is poured into the auxiliary bottle body, the auxiliary bottle body and the main bottle body can be pulled out for a certain distance, and then the thermos bottle is transversely placed, so that the auxiliary bottle body is arranged below, the main bottle body is arranged above, and hot water in the main bottle body flows into the auxiliary bottle body as much as possible.
The invention adopting the technical scheme has the following advantages:
1. the thermos bottle is divided into the main bottle body with the vacuum layer and the auxiliary bottle body with high heat dissipation speed, hot water which needs to be rapidly cooled is sealed in the auxiliary bottle body with high heat dissipation speed, so that the influence of external air on water is avoided, and even if a user is in a moving state, the user is worried that water in the auxiliary bottle body is spilled out, and the thermos bottle is convenient to use;
2. the main bottle body is communicated with the auxiliary bottle body through the connecting pipe, and the auxiliary bottle body is relatively moved to the main bottle body, so that the function of injecting water into the auxiliary bottle body by the main bottle body is realized, and the use is convenient.
Drawings
The invention can be further illustrated by means of non-limiting examples given in the accompanying drawings;
FIG. 1 is a schematic view of a combination thermos according to an embodiment of the present invention;
FIG. 2 is a schematic view of the main body portion of a combination thermos according to an embodiment of the present invention;
FIG. 3 is an enlarged schematic view of FIG. 2A;
FIG. 4 is a schematic view of a portion of a secondary main body of a thermos bottle according to an embodiment of the present invention;
FIG. 5 is a schematic diagram II of the secondary main body portion of a combination thermos in accordance with an embodiment of the present invention;
FIG. 6 is an enlarged schematic view of the structure shown at B in FIG. 5;
FIG. 7 is a schematic cross-sectional view of a combination thermos according to one embodiment of the present invention;
FIG. 8 is an enlarged schematic view of FIG. 7 at C;
FIG. 9 is a schematic diagram showing a sectional structure of a combination thermos according to a second embodiment of the present invention;
FIG. 10 is an enlarged schematic view of the structure of FIG. 9 at D;
the main reference numerals are as follows:
main bottle body 1, main bottle cap 10, supporting seat 11, second notch 110, connecting blind hole 12,
An inverted U-shaped chute 13, a sliding block 130, an inverted U-shaped clamping block 14, a stop block 140,
The auxiliary bottle body 2, the auxiliary bottle cap 20, the connecting pipe 21, the first notch 210,
Radiating fins 24, avoiding grooves 240, neck 25,
Bump 3, rectangular groove 30, hemispherical groove 31, threaded hole 310.
Detailed Description
The present invention will be described in detail below with reference to the drawings and the specific embodiments, wherein like or similar parts are designated by the same reference numerals throughout the drawings or the description, and implementations not shown or described in the drawings are in a form well known to those of ordinary skill in the art. In addition, directional terms such as "upper", "lower", "top", "bottom", "left", "right", "front", "rear", etc. in the embodiments are merely directions with reference to the drawings, and are not intended to limit the scope of the present invention.
As shown in fig. 1 to 10, a combined thermos bottle of this embodiment includes a main bottle body 1, the main bottle body 1 is a hollow container with a vacuum layer inside, a main bottle cap 10 is screwed on the main bottle body 1, a secondary bottle body 2 is arranged on one side of the main bottle body 1, the secondary bottle body 2 is made of single-layer glass or aluminum alloy with a thickness smaller than 1mm, a secondary bottle cap 20 is detachably mounted on the secondary bottle body 2, a supporting seat 11 is integrally formed below the secondary bottle body 2 at the lower end of the main bottle body 1, a connecting pipe 21 is integrally formed at one side of the lower end of the secondary bottle body 2 close to the main bottle body 1, the connecting pipe 21 is communicated with the interior of the secondary bottle body 2, a first notch 210 is formed on the connecting pipe 21, a connecting blind hole 12 is formed at the lower part of the main bottle body 1, the connecting pipe 21 is arranged in the blind hole 12 in a penetrating manner, a second notch 110 is formed at the lower end of the main bottle body 1 corresponding to the first notch 210, the second notch 110 is communicated with the interior of the main bottle body 1 and the blind hole 12, a plurality of annular grooves 230 are formed in the outer wall of the connecting pipe 21, and sealing rings 230 are clamped in the annular grooves 23.
The side surface of one side of the main bottle body 1, which is close to the auxiliary bottle body 2, is transversely and fixedly provided with a plurality of inverted U-shaped sliding grooves 13 on the two opposite sides of the auxiliary bottle body 2, sliding blocks 130 are integrally formed on the two sides of the auxiliary bottle body 2, and the sliding blocks 130 are positioned in the inverted U-shaped sliding grooves 13. The sliding position of the auxiliary bottle body 2 is secondarily limited by the mutual matching of the sliding block 130 and the inverted U-shaped sliding groove 13, so that the auxiliary bottle body 2 is prevented from being displaced in other directions when sliding left and right relative to the main bottle body 1, and the connecting pipe 21 is protected to a certain extent.
The free end of the inverted U-shaped chute 13 is detachably connected with an inverted U-shaped clamping block 14, the inverted U-shaped clamping block 14 is clamped on the sliding block 130, the upper side and the lower side of the sliding block 130 are integrally formed with a stop block 140 matched with the inverted U-shaped clamping block 14, and the stop block 140 is positioned on the inner side of the inverted U-shaped clamping block 14. The stop block 140 is blocked by the inverted U-shaped clamping block 14, so that the maximum rightward displacement distance of the auxiliary bottle body 2 relative to the main bottle body 1 is limited, and the connecting pipe 21 is prevented from being completely pulled out of the connecting blind hole 12 when the auxiliary bottle body 2 is pulled rightward relative to the main bottle body 1, so that water in the main bottle body 1 directly flows out through the second notch 110 and the connecting blind hole 12; the reverse U-shaped chute 13 is detachably connected with the reverse U-shaped clamping block 14, so that the auxiliary bottle body 2 can be conveniently installed on the main bottle body 1.
The outer wall of the auxiliary bottle body 2 is provided with a plurality of radiating fins 24. The heat dissipation speed of the water in the auxiliary bottle body 2 can be increased, so that the water in the auxiliary bottle body 2 can be cooled more quickly.
The radiating fins 24 are vertically arranged, and the radiating fins 24 are provided with avoiding grooves 240 matched with the inverted U-shaped sliding grooves 13 and the inverted U-shaped clamping blocks 14. The radiating fins 24 are vertically arranged, so that the auxiliary bottle body 2 is conveniently pulled transversely, and the influence of the radiating fins 24 on the auxiliary bottle body 2 in moving relative to the main bottle body 1 can be avoided by the avoiding groove 240.
The lower extreme integrated into one piece of auxiliary bottle body 2 has lug 3, has seted up on the supporting seat 11 with lug 3 assorted rectangle recess 30, two sets of hemisphere grooves 31 have been seted up to lug 3's lower terminal surface, has seted up screw hole 310 on the supporting seat 11, the spiro union has the bulb plunger in the screw hole 310, the spheroid part card of bulb plunger is established in one of them a set of hemisphere groove 31. When the auxiliary bottle body 2 is close to the main bottle body 1 (as shown in fig. 1, 7 and 8), the sphere part of the ball plunger is clamped in a group of hemispherical grooves 31 positioned on the outer side; when the auxiliary bottle body 2 is far away from the main bottle body 1 (as shown in fig. 9 and 10), the sphere part of the ball plunger is clamped in a group of hemispherical grooves 31 positioned at the inner side; the positions of the auxiliary bottle body 2 in two states are fixed through mutual matching of the ball plunger and the two groups of hemispherical grooves 31, so that the auxiliary bottle body 2 is prevented from shaking.
The upper end of the auxiliary bottle body 2 is integrally formed with a neck 25, the neck 25 is positioned on one side of the upper end face of the auxiliary bottle body 2, and the auxiliary bottle cap 20 is arranged on the neck 25. The distance between the auxiliary bottle cap 20 and the main bottle cap 10 can be increased, so that the auxiliary bottle cap 20 and the main bottle cap 10 can be conveniently assembled and disassembled, and meanwhile, water in the auxiliary bottle body 2 can be conveniently drunk.
The sub-cap 20 is a soft rubber cap. When the water in the auxiliary bottle body 2 needs to be drunk, the auxiliary bottle cap 20 is directly pulled out.
The side wall of the side of the auxiliary bottle body 2 far away from the main bottle body 1 is a plane. When pouring the water in the main bottle body 1 into the auxiliary bottle body 2, the auxiliary bottle body 2 and the main bottle body 1 can be pulled apart by a certain distance, and then the thermos bottle is transversely placed, so that the auxiliary bottle body 2 is arranged below and the main bottle body 1 is arranged above, and the hot water in the main bottle body 1 flows into the auxiliary bottle body 2 as much as possible.
In this embodiment, before use, the main bottle body 1 is grasped, the auxiliary bottle body 2 is pushed to the left, so that the left side wall of the auxiliary bottle body 2 is attached to the right side wall of the main bottle body 1, and the first notch 210 and the second notch 110 are staggered (as shown in fig. 1, 7 and 8), at this time, the space inside the main bottle body 1 and the auxiliary bottle body 2 is not communicated with each other, then the main bottle cap 10 is opened, and hot water is injected into the main bottle body 1;
when drinking water is needed, the main bottle body 1 and the auxiliary bottle body 2 are respectively grasped by two hands, the auxiliary bottle body 2 is pulled rightwards, so that the first notch 210 and the second notch 110 are aligned (as shown in fig. 9 and 10), at the moment, water in the main bottle body 1 flows into the auxiliary bottle body 2 through the second notch 110, the first notch 210 and the connecting pipe 21, then the auxiliary bottle body 2 is pushed leftwards, the left side wall of the auxiliary bottle body 2 is attached to the right side wall of the main bottle body 1, the first notch 210 and the second notch 110 are staggered, and at the moment, the water in the main bottle body 1 cannot continuously enter the auxiliary bottle body 2 under the action of the sealing ring 230;
after a certain period of time, the sub-cap 20 is opened to drink the water in the sub-bottle 2.
The combined thermos bottle provided by the invention is described in detail above. The description of the specific embodiments is only intended to aid in understanding the method of the present invention and its core ideas. It should be noted that it will be apparent to those skilled in the art that various modifications and adaptations of the invention can be made without departing from the principles of the invention and these modifications and adaptations are intended to be within the scope of the invention as defined in the following claims.
Claims (7)
1. A combination vacuum flask, characterized in that: comprises a main bottle body (1), the main bottle body (1) is a hollow container with a vacuum layer arranged in, a main bottle cap (10) is connected to the main bottle body (1) in a screwed manner, a subsidiary bottle body (2) is arranged on one side of the main bottle body (1), a subsidiary bottle cap (20) is detachably arranged on the subsidiary bottle body (2), a supporting seat (11) is integrally formed below the subsidiary bottle body (2) at the lower end of the main bottle body (1), a connecting pipe (21) is integrally formed at one side of the lower end of the subsidiary bottle body (2) close to the main bottle body (1), the connecting pipe (21) is communicated with the inside of the subsidiary bottle body (2), a first notch (210) is formed in the connecting pipe (21), a connecting blind hole (12) is formed in the lower portion of the main bottle body (1) in a penetrating manner, a second notch (110) is formed in a position corresponding to the first notch (210), a plurality of annular grooves (23) are formed in the connecting pipe (21) and the inner wall of the connecting pipe (21), the utility model discloses a bottle, including main bottle (1), auxiliary bottle (2), slider (130) are located in the side of main bottle (1) being close to auxiliary bottle (2), and the side of auxiliary bottle (2) is transversely fixed in the relative both sides of auxiliary bottle (2), auxiliary bottle (2) both sides integrated into one piece has slider (130), slider (130) are located inverted U-shaped spout (13), inverted U-shaped spout (13) free end can be dismantled and be connected with inverted U-shaped fixture block (14), inverted U-shaped fixture block (14) card is established on slider (130), both sides all integrated into one piece have with inverted U-shaped fixture block (14) assorted dog (140) about slider (130), dog (140) are located inverted U-shaped fixture block (14) inboard.
2. A modular vacuum flask as claimed in claim 1, wherein: the outer wall of the auxiliary bottle body (2) is provided with a plurality of radiating fins (24).
3. A modular vacuum flask as claimed in claim 2, wherein: the radiating fins (24) are vertically arranged, and the radiating fins (24) are provided with avoiding grooves (240) matched with the inverted U-shaped sliding grooves (13) and the inverted U-shaped clamping blocks (14).
4. A modular vacuum flask as claimed in claim 1, wherein: the lower extreme integrated into one piece of vice bottle (2) has lug (3), set up rectangular groove (30) with lug (3) assorted on supporting seat (11), two sets of hemisphere grooves (31) have been seted up to the lower terminal surface of lug (3), threaded hole (310) have been seted up on supporting seat (11), the spiro union has the bulb plunger in threaded hole (310), the spheroid part card of bulb plunger is established in one of them a set of hemisphere groove (31).
5. A modular vacuum flask as claimed in claim 1, wherein: the upper end of the auxiliary bottle body (2) is integrally formed with a neck (25), the neck (25) is positioned on one side of the upper end face of the auxiliary bottle body (2), and the auxiliary bottle cap (20) is arranged on the neck (25).
6. A modular vacuum flask as claimed in claim 1, wherein: the auxiliary bottle cap (20) is a soft rubber cap.
7. A combination vacuum flask as defined in claim 6, wherein: the side wall of the side of the auxiliary bottle body (2) far away from the main bottle body (1) is a plane.
Priority Applications (1)
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CN202010093848.9A CN111387844B (en) | 2020-02-14 | 2020-02-14 | Combined thermos bottle |
Applications Claiming Priority (1)
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CN202010093848.9A CN111387844B (en) | 2020-02-14 | 2020-02-14 | Combined thermos bottle |
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CN111387844A CN111387844A (en) | 2020-07-10 |
CN111387844B true CN111387844B (en) | 2023-05-09 |
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CN202010093848.9A Active CN111387844B (en) | 2020-02-14 | 2020-02-14 | Combined thermos bottle |
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