CN109760938B - Adjustable inverted quantitative liquid outlet container - Google Patents

Adjustable inverted quantitative liquid outlet container Download PDF

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Publication number
CN109760938B
CN109760938B CN201910083950.8A CN201910083950A CN109760938B CN 109760938 B CN109760938 B CN 109760938B CN 201910083950 A CN201910083950 A CN 201910083950A CN 109760938 B CN109760938 B CN 109760938B
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China
Prior art keywords
liquid outlet
liquid
bottle
upper cover
quantitative
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CN201910083950.8A
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CN109760938A (en
Inventor
李红彪
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Zhongshan Huabaole Daily Necessities Co ltd
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Zhongshan Huabaole Daily Necessities Co ltd
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Priority to CN201910083950.8A priority Critical patent/CN109760938B/en
Publication of CN109760938A publication Critical patent/CN109760938A/en
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Publication of CN109760938B publication Critical patent/CN109760938B/en
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Abstract

The application discloses an adjustable inverted quantitative liquid outlet container, which comprises a bottle body, a middle cover, an upper cover and a quantitative liquid outlet pipe, wherein a separation block is arranged at the lower end of the quantitative liquid outlet pipe, the inner side wall of the middle cover, the inner side wall of the bottle body, the outer side wall of the quantitative liquid outlet pipe and the upper part of the separation block form a containing cavity for containing liquid, when the quantitative liquid outlet pipe is driven to move upwards with the separation block, liquid in the containing cavity flows into a liquid storage cavity from a liquid inlet through a one-way valve, the liquid storage cavity is communicated with the inner side wall of the quantitative liquid outlet pipe, the liquid in the liquid storage cavity can be directly poured out, and the upward moving distance of the quantitative liquid outlet pipe reflects the volume of the liquid flowing into the liquid storage cavity.

Description

Adjustable inverted quantitative liquid outlet container
[ field of technology ]
The application relates to a container bottle, in particular to an adjustable inverted quantitative liquid outlet container.
[ background Art ]
In chemical experiments, cooking and other places, the liquid to be poured out needs to be metered. For example, a certain amount of physiological saline is added into a reaction container, and the normal operation is to firstly add the physiological saline in a container bottle into a measuring cylinder to measure a corresponding amount, then add the physiological saline into the reaction container, and if the accuracy requirement is higher, auxiliary tools such as a rubber head dropper are needed, so that the time and the labor are consumed.
The application is researched and proposed for overcoming the defects of the prior art.
[ application ]
The application aims to solve the technical problem of providing an adjustable inverted quantitative liquid outlet container which can quantitatively pour out liquid in a bottle body, and can ensure that the solution in the bottle is always in a sealed state after being used, so as to ensure that substances in the bottle body have a longer quality guarantee period.
In order to solve the technical problems, the adjustable inverted quantitative liquid outlet container comprises a hollow bottle body with an opening at the upper end, a middle cover and an upper cover, wherein the middle cover comprises a middle cover body which is sealed and rotatably connected to the opening at the upper end of the bottle body and a tubular connecting part positioned in the middle of the middle cover body, the upper cover is hermetically connected to the upper end of the tubular connecting part, a hollow quantitative liquid outlet pipe is connected to the inner wall of the tubular connecting part in a threaded manner, a separation block is arranged at the lower end of the quantitative liquid outlet pipe, an outer ring of the separation block is slidably and hermetically connected with the inner side wall of the bottle body, a rotation stopping block A which limits the separation block to rotate relative to the bottle body is arranged at the bottom of the bottle body, so that when the middle cover is rotated, a liquid storage cavity which is communicated with the inner cavity of the quantitative liquid outlet pipe is formed between the bottom of the separation block and the bottle body and the inner side wall of the bottom of the bottle body, a liquid inlet for liquid in the liquid storage cavity is formed in the separation block, a one-way valve for enabling liquid to flow into the liquid storage cavity is arranged on the liquid inlet, a one-way valve for enabling liquid to flow into the liquid storage cavity from the bottle body, a mark is arranged on the liquid inlet, and a mark is arranged on the liquid inlet for displaying the liquid cavity when the bottle body is arranged on the outer side of the bottle body.
According to the adjustable inverted quantitative liquid outlet container, the anti-counterfeiting sealing sheet is arranged at the upper end of the tubular connecting part of the middle cover, and the pull ring for completely tearing off the anti-counterfeiting sealing sheet from the tubular connecting part is arranged on the anti-counterfeiting sealing sheet.
The upper end of the tubular connecting part is provided with the middle cover liquid outlet communicated with the inner cavity of the quantitative liquid outlet pipe, the upper cover is provided with the upper cover liquid outlet communicated with the middle cover liquid outlet, and the outer side of the middle cover liquid outlet is provided with the liquid outlet flange which can extend out of the upper cover liquid outlet.
Based on the conception of the bottle with the adjustable poured liquid volume, the application further provides an adjustable inverted quantitative liquid container which comprises a hollow bottle body with an opening at the upper end, a middle cover and an upper cover, wherein the middle cover comprises a middle cover body which is sealed and rotatably connected at the opening at the upper end of the bottle body and a tubular connecting part positioned at the middle part of the middle cover body, the inner wall of the tubular connecting part is sealed and slidably connected with a hollow quantitative liquid outlet pipe, the upper cover is connected at the upper end of the tubular connecting part, the upper cover comprises an upper cover body which is slidably and sealingly connected at the upper end of the tubular connecting part, an upper cover driving part which is in threaded connection with the inner side wall of the quantitative liquid outlet pipe is arranged at the inner side of the upper cover body, a separation block is arranged at the lower end of the quantitative liquid outlet pipe, an outer ring of the separation block is slidably and sealingly connected with the inner side wall of the bottle body, a rotation stop block B which is used for limiting the separation block to rotate relative to the bottle body is arranged at the bottom of the bottle body or on the middle cover, so that when the upper cover is rotated, the quantitative liquid outlet pipe moves upwards and the inner side wall of the separation block and the inner side wall of the bottle body are connected with the upper cover body, the upper cover body is provided with an upper cover driving part which is in threaded connection with the upper cover driving part, the upper cover body and the inner cover body with the inner cover body which is in threaded connection with the inner side of the quantitative liquid cover body.
The upper cover driving part is provided with the upper cover liquid outlet B communicated with the inner cavity of the quantitative liquid outlet pipe, the tubular connecting part is provided with the middle cover liquid outlet communicated with the upper cover liquid outlet B, the upper cover body is provided with the upper cover liquid outlet A communicated with the middle cover liquid outlet, and the outer side of the middle cover liquid outlet is provided with the liquid outlet flange which can extend out from the upper cover liquid outlet.
Based on the conception of the bottle with the volume of the poured liquid adjustable, the application also provides an adjustable quantitative liquid outlet container which comprises a hollow bottle body with an opening at the upper end, a middle cover and an upper cover, wherein the middle cover comprises a middle cover body which is sealed and rotatably connected with the opening at the upper end of the bottle body and a tubular connecting part which is positioned in the middle of the middle cover body, the upper cover is connected with the upper end of the tubular connecting part, the inner wall of the tubular connecting part is sealed and slidingly connected with a hollow quantitative liquid outlet pipe, the lower end of the quantitative liquid outlet pipe is provided with a separation block, the outer ring of the separation block is slidingly and hermetically connected with the inner side wall of the bottle body, a liquid storage cavity which is communicated with the inner cavity of the quantitative liquid outlet pipe is formed between the bottom of the separation block and the bottom of the bottle body when the quantitative liquid outlet pipe is driven to move upwards, a liquid inlet which is used for allowing liquid in the bottle body to enter the cavity is arranged on the liquid inlet, a one-way valve which is only used for allowing the liquid to flow into the cavity from the bottle body is arranged on the liquid inlet, and a scale which is used for displaying the volume of the liquid flowing from the bottle body.
According to the adjustable inverted quantitative liquid outlet container, the anti-counterfeiting sealing sheet is arranged at the upper end of the tubular connecting part of the middle cover, the anti-counterfeiting sealing sheet is provided with the pull ring for tearing the anti-counterfeiting sealing sheet out of the tubular connecting part to facilitate pouring of liquid in the quantitative liquid outlet pipe, and the pull ring leaves the anti-counterfeiting sealing sheet out of the tubular connecting part together with the sealing sheet on the tubular connecting part after tearing the anti-counterfeiting sealing sheet out of the tubular connecting part to drive the quantitative liquid outlet pipe to move upwards.
According to the adjustable inverted quantitative liquid outlet container, the pull ring positioning column for positioning the pull ring is arranged on the middle cover body.
According to the adjustable inverted quantitative liquid outlet container, the clamping block for positioning the anti-counterfeiting sealing sheet is arranged at the upper end of the tubular connecting part.
Compared with the prior art, the application can directly pour the liquid with the required volume in the bottle, has the advantages of simple structure, convenient operation, improved quantitative measuring efficiency, time saving and labor saving. In addition, the liquid inlet is provided with the one-way valve, so that the solution in the bottle is always in a sealed state after the bottle is used, and the substances in the bottle are ensured to have a longer shelf life.
[ description of the drawings ]
The application is described in further detail below with reference to the attached drawing figures, wherein:
fig. 1 is a schematic structural view of a first embodiment of embodiment 1 of the present application;
FIG. 2 is one of the full sectional views of the first embodiment of embodiment 1 of the present application;
FIG. 3 is a second full sectional view of the first embodiment of embodiment 1 of the present application;
FIG. 4 is a schematic view of the structure of a bottle in embodiment 1 of the present application;
FIG. 5 is a schematic diagram of a quantitative liquid outlet pipe in embodiment 1 of the present application;
FIG. 6 is a full sectional view of a second embodiment of embodiment 1 of the present application;
FIG. 7 is a schematic structural diagram of embodiment 2 of the present application;
FIG. 8 is a full cross-sectional view of the first embodiment of example 2 of the present application;
fig. 9 is a schematic structural diagram of a medium-volume liquid outlet pipe according to a first embodiment of embodiment 2 of the present application;
FIG. 10 is a full sectional view of a second embodiment of the application of example 2;
FIG. 11 is one of the full sectional views of the first embodiment of embodiment 3 of the present application;
FIG. 12 is a second full sectional view of the first embodiment of embodiment 3 of the present application;
FIG. 13 is a full sectional view of a second embodiment of the application of example 3;
FIG. 14 is a schematic diagram showing the structure of a quantitative liquid outlet tube in the second embodiment of the present application in example 3;
fig. 15 is an enlarged view of a portion a marked in fig. 14.
FIG. 16 shows another embodiment of the present application wherein a check valve is coupled to a spacer block.
[ detailed description ] of the application
Embodiments of the present application will be described in detail below with reference to the accompanying drawings.
The bottle of the present application mainly comprises: bottle 1, well lid 2, upper cover 3 and ration drain pipe 4 to be equipped with separate piece 41 in the lower extreme of ration drain pipe 4, the holding chamber of splendid attire liquid is constituteed to the inside wall of well lid 2, bottle 1, the lateral wall of ration drain pipe 4 and separate piece 41 upper portion, when the upward movement of drive ration drain pipe 4 carrying separate piece 41, hold intracavity liquid and can flow into liquid storage chamber 100 from inlet 411 through check valve 412, liquid storage chamber 100 is interior to communicate with the inside wall of ration drain pipe 4, be in liquid storage chamber 100 liquid can directly pour out, the distance that ration drain pipe 4 upwards moved has reacted the volume of the liquid that flows into liquid storage chamber 100, consequently can directly read out the volume of the liquid that flows into liquid storage chamber 100 at reasonable setting scale 7, the operating personnel of being convenient for pour out the quantitative material in the bottle. After the pouring operation is finished, the one-way valve 412 is automatically closed, so that the solution in the bottle can be always in a sealed state after the use, and the substances in the bottle can be ensured to have a longer quality guarantee period.
Example 1:
example 1 contains two specific schemes.
As shown in fig. 1 to 5, an adjustable inverted quantitative liquid outlet container of the first aspect of embodiment 1 includes a hollow bottle body 1 with an opening at an upper end, a middle cap 2, and an upper cap 3, wherein the middle cap 2 includes a middle cap body 21 sealed and rotatably connected to the opening at the upper end of the bottle body 1, and a tubular connection portion 22 located in the middle of the middle cap body 21, the upper cap 3 is sealed and connected to the upper end of the tubular connection portion 22, the inner wall of the tubular connection portion 22 is in threaded connection with a hollow quantitative liquid outlet pipe 4, the outer side of the upper portion of the quantitative liquid outlet pipe 4 and the inner wall of the tubular connection portion 22 are provided with threads that cooperate with each other, the lower end of the quantitative liquid outlet pipe 4 is provided with a separation block 41, and an outer ring of the separation block 41 is slidably and hermetically connected to the inner wall of the bottle body 1; the bottom of the bottle body 1 is provided with a rotation stopping block A51 for limiting the rotation of the separation block 41 relative to the bottle body 1, so that when the middle cover 2 is rotated, the quantitative liquid outlet pipe 4 moves upwards, a liquid storage cavity 100 communicated with the inner cavity of the quantitative liquid outlet pipe 4 is formed between the separation block 41 and the bottom of the bottle body 1 and between the separation block 41 and the inner side wall of the bottom of the bottle body 1, the separation block 41 is provided with a liquid inlet 411 for allowing liquid in the bottle body 1 to enter the liquid storage cavity 100, the liquid inlet 411 is provided with a one-way valve 412 only for allowing the liquid to flow into the liquid storage cavity 100 from the bottle body 1, the separation block 41 moves upwards and simultaneously is equivalent to 'extruding' the liquid in the bottle body 1, so that the bottle body 1 is flushed through the one-way valve 412 and enters the liquid storage cavity 100, the rotation stopping block A51 is used for limiting the rotation of the separation block 41 relative to the bottle body 1, and is matched with a hexagonal positioning hole at the lower end of the quantitative liquid outlet pipe 4 as shown in fig. 4 and 5, and a notch is arranged on the rotation stopping block A51 so that the liquid storage cavity 100 is communicated with the inner cavity of the quantitative liquid outlet pipe 4, and the rotation stopping block A51 is designed into other shapes, of course, and the application can be designed into other shapes; in this embodiment, the middle cap 2 is rotated to further drive the quantitative liquid outlet pipe 4 to move upwards, so that the rotation angle of the middle cap 2 relative to the bottle body 1 can reflect the volume flowing into the liquid storage cavity 100 from the bottle body 1 in the rotation process, a marking block 6 (an arrow shown in fig. 1 may be replaced by another arrow) is arranged on the outer side of the middle cap body 21, and a scale 7 for displaying the volume of the liquid flowing into the liquid storage cavity 100 from the bottle body 1 when the middle cap 2 is rotated is arranged on the outer side of the bottle body 1 and below the marking block 6.
When the upper cover is uncovered, in order to facilitate the understanding of whether the upper cover is used by a person before purchase and play a role in preventing counterfeiting, the upper end of the tubular connecting part 22 of the middle cover 2 is provided with a counterfeiting sealing sheet 8, and the counterfeiting sealing sheet 8 is provided with a pull ring 81 for completely tearing off the counterfeiting sealing sheet 8 from the tubular connecting part 22.
As shown in fig. 3, the upper end of the tubular connection portion 22 is provided with a middle cap liquid outlet 221 which is communicated with the inner cavity of the quantitative liquid outlet 4, the upper cap 3 is provided with an upper cap liquid outlet 301 which is communicated with the middle cap liquid outlet 221, and in order to facilitate the smooth pouring of the liquid in the liquid storage cavity 100, the outer side of the middle cap liquid outlet 221 is provided with a liquid outlet flange 222 which can extend from the upper cap liquid outlet 301, and the liquid outlet flange 222 has elasticity and can retract.
As shown in fig. 6, the second embodiment of embodiment 1 is different from the first embodiment of embodiment 1 in that: when the middle cover is rotated, the anti-counterfeiting sealing sheet 8 is punched out in the process that the tubular connecting part 22 moves upwards, and then the anti-counterfeiting sealing sheet 8 is completely torn off from the tubular connecting part 22.
Implementation 2:
the main difference between this embodiment and embodiment 1 is that in embodiment 1, the lid 2 is rotated to drive the quantitative liquid outlet tube 4 to move up and down, and in this embodiment, the lid 3 is rotated to drive the quantitative liquid outlet tube 4 to move up and down.
Example 2 contains two specific schemes.
As shown in fig. 7 to 9, an adjustable inverted quantitative liquid container according to the first aspect of embodiment 2 includes a hollow bottle body 1 with an opening at the upper end, a middle cap 2, and an upper cap 3, the middle cap 2 includes a middle cap body 21 with an opening at the upper end of the bottle body 1 and a tubular connection portion 22 located in the middle of the middle cap body 21, the inner wall of the tubular connection portion 22 is sealed and slidingly connected with a hollow quantitative liquid outlet pipe 4, the upper cap 3 is connected to the upper end of the tubular connection portion 22, the upper cap 3 includes an upper cap body 31 slidingly and sealingly connected to the upper end of the tubular connection portion 22, an upper cap driving portion 32 in threaded connection with the inner side wall of the quantitative liquid outlet pipe 4 is disposed on the inner side of the upper cap body 31, a separation block 41 is disposed at the lower end of the quantitative liquid outlet pipe 4, an outer ring of the separation block 41 is slidingly and sealingly connected to the inner side wall of the bottle body 1, a rotation-restricting rotation-stopping block 41B 52 is disposed on the middle cap 2, such that when the quantitative liquid outlet block 3 is rotationally connected to the inner wall of the bottle body 1, the upper cap 3 is slidingly and sealingly connected to the inner side wall of the bottle body 1, a mark 411 is disposed on the inner side of the bottle body 1, and the inner side of the bottle body 1 is disposed at the inner side of the upper cap 1, and the upper cap 1 is disposed at the inner side of the upper cap driving portion 32, and the upper cap 1, the upper cap 1 is screwed with an upper cap driving portion 1, and upper cap portion 1, which is screwed with an upper cap driving portion 1, which is disposed with an inner cap 1, and upper cap 1, which is disposed at 1, and upper cap 41, which is disposed in middle cap 41.
In embodiment 2, the middle cap 2 does not rotate relative to the quantitative liquid outlet pipe 4, so the rotation stop block B52 can be arranged on the middle cap 2, as shown in fig. 8 and 9, in the first scheme of embodiment 2, the rotation stop block B52 is a bump arranged on the inner wall of the tubular connecting portion 22, and correspondingly, a groove 520 matched with the rotation stop block B52 is arranged on the outer side wall of the quantitative liquid outlet pipe 4.
As shown in fig. 8, in order to facilitate pouring out the liquid in the liquid storage cavity 100, the upper cover driving portion 32 is provided with an upper cover liquid outlet B303 which is communicated with the inner cavity of the quantitative liquid outlet pipe 4, the tubular connecting portion 22 is provided with a middle cover liquid outlet 221 which is communicated with the upper cover liquid outlet B303, the upper cover body 31 is provided with an upper cover liquid outlet a302 which is communicated with the middle cover liquid outlet 221, and the outer side of the middle cover liquid outlet 221 is provided with a liquid outlet flange 222 which is capable of extending from the upper cover liquid outlet 301.
As shown in fig. 10, the second embodiment of embodiment 2 differs from the first embodiment of embodiment 2 in that: the rotation stopping block B of this embodiment is disposed at the bottom of the bottle body 1, and the function of the rotation stopping block B of this embodiment is the same as that of the rotation stopping block a of the first embodiment of embodiment 1, so that the description will not be repeated.
Example 3:
the main difference between this embodiment and the embodiment 1 is that in the embodiment 1, the lid 2 is rotated to drive the quantitative liquid outlet tube 4 to move up and down, and in this embodiment, the quantitative liquid outlet tube 4 is directly driven to move up and down.
Example 3 contains two specific schemes.
As shown in fig. 11 and 12, an adjustable inverted quantitative liquid container according to the first embodiment of embodiment 3 includes a hollow bottle body 1 with an open upper end, a middle cover 2 and an upper cover 3, the middle cover 2 includes a middle cover body 21 with an open upper end and a tubular connection portion 22 located in the middle of the middle cover body 21, the upper cover 3 is connected to the upper end of the tubular connection portion 22, the inner wall of the tubular connection portion 22 is sealed and slidingly connected with a hollow quantitative liquid outlet tube 4, a separation block 41 is disposed at the lower end of the quantitative liquid outlet tube 4, an outer ring of the separation block 41 is slidingly and sealingly connected with the inner wall of the bottle body 1, when the quantitative liquid outlet tube 4 is driven to move upwards, a cavity 100 communicating with an inner cavity of the quantitative liquid outlet tube 4 is formed between the bottom of the separation block 41 and the bottom of the bottle body 1, a liquid inlet liquid storage hole 411 is formed in the middle of the bottle body 1, a liquid inlet hole 412 is formed in the liquid storage hole of the bottle body 1, and a scale mark 7 is further arranged on the liquid inlet hole 411, and the scale mark 7 is read from the bottle body 4.
The upper end of the tubular connecting part 22 of the middle cover 2 is provided with an anti-counterfeiting sealing sheet 8, the anti-counterfeiting sealing sheet 8 is provided with a pull ring 81 for tearing an opening of the anti-counterfeiting sealing sheet 8 from the tubular connecting part 22 so as to facilitate the liquid in the quantitative liquid outlet pipe 4 to be poured out, and the pull ring 81 leaves the anti-counterfeiting sealing sheet 8 on the tubular connecting part 22 together with the sealing sheet after tearing the opening from the tubular connecting part 22 so as to drive the quantitative liquid outlet pipe 4 to move upwards.
As shown in fig. 12, in order to put the tamper-evident band 8 in an open state for pouring liquid, a tab positioning post 91 for positioning the tab 81 is provided on the middle cap body 21.
As shown in fig. 13 to 15, the second embodiment of embodiment 3 is different from the first embodiment of embodiment 3 in that: a clamping block 92 for positioning the anti-counterfeiting sealing sheet 8 is arranged at the upper end of the tubular connecting part 22, and the clamping block 92 clamps the positioning anti-counterfeiting sealing sheet 8 so that the anti-counterfeiting sealing sheet 8 is in an open state, as shown in fig. 13.
As shown in FIG. 16, an elastic rubber block is fixedly connected to the bottom of the separation block, and the elastic rubber block can be made of materials such as silica gel and moves along with the separation block, a notch or a through hole is formed in the separation block and communicated with the inner cavity of the bottle body, and a corresponding cut is formed in the position of the notch or the through hole correspondingly on the elastic rubber block to form a one-way valve.

Claims (6)

1. The utility model provides an adjustable ration play liquid container, its characterized in that includes cavity and upper end open-ended bottle (1), well lid (2) and upper cover (3), well lid (2) contain sealed and rotate and connect in bottle (1) upper end open-ended well lid body (21) and be located the tubular connection portion (22) at well lid body (21) middle part, upper cover (3) sealing connection in tubular connection portion (22) upper end, the inner wall threaded connection of tubular connection portion (22) has hollow ration drain pipe (4), the lower extreme of ration drain pipe (4) is equipped with separate piece (41), separate piece (41) outer lane and bottle (1) inside wall slip and sealing connection, bottle (1) bottom is equipped with the limit separate piece (41) relative bottle (1) pivoted and ends a commentaries on classics piece A (51) for when rotatory well lid (2) bottom and separate piece (41) and bottle (1) bottom and inner wall (1) between the inner wall screw thread connection have hollow ration drain pipe (4), separate piece (41) and separate piece (1) are equipped with the inner chamber (100) of liquid that separate piece (1) are equipped with and are equipped with in the cavity (100) of liquid feed into in the cavity (1), the liquid inlet (411) is provided with a one-way valve (412) only for liquid to flow into the liquid storage cavity (100) from the bottle body (1), the outer side of the middle cover body (21) is provided with a marking block (6), and a scale (7) for displaying the volume of the liquid flowing into the liquid storage cavity (100) from the bottle body (1) when the middle cover (2) is rotated is arranged on the outer side of the bottle body (1) and below the marking block (6);
the separation block (41) moves upwards and simultaneously extrudes liquid in the bottle body (1), so that the bottle body (1) is flushed through the one-way valve (412) to enter the liquid storage cavity (100), and the process stops the rotating block A (51) to be used for limiting the rotation of the separation block (41) relative to the bottle body (1).
2. The adjustable pouring type quantitative liquid outlet container according to claim 1, characterized in that an anti-counterfeiting sealing sheet (8) is arranged at the upper end of the tubular connecting part (22) of the middle cover (2), and a pull ring (81) for completely tearing the anti-counterfeiting sealing sheet (8) from the tubular connecting part (22) is arranged on the anti-counterfeiting sealing sheet (8).
3. The adjustable inverted quantitative liquid outlet container according to claim 1 or 2, characterized in that the upper end of the tubular connecting part (22) is provided with a middle cover liquid outlet (221) communicated with the inner cavity of the quantitative liquid outlet pipe (4), the upper cover (3) is provided with an upper cover liquid outlet (301) communicated with the middle cover liquid outlet (221), and the outer side of the middle cover liquid outlet (221) is provided with a liquid outlet flange (222) which can extend from the upper cover liquid outlet (301).
4. The utility model provides an adjustable ration play liquid container, its characterized in that includes cavity and upper end open-ended bottle (1), well lid (2) and upper cover (3), well lid (2) contain sealed and swivelling joint in bottle (1) upper end open-ended well lid body (21) and be located well lid body (21) middle part tubular connection portion (22), the inner wall of tubular connection portion (22) is sealed and sliding connection has hollow ration drain pipe (4), upper cover (3) connect in tubular connection portion (22)'s upper end, upper cover (3) contain the upper cover body (31) of sliding and sealing connection in tubular connection portion (22) upper end, the inboard of upper cover body (31) be equipped with the upper cover drive portion (32) of ration drain pipe (4) inside wall threaded connection, the lower extreme of ration drain pipe (4) is equipped with separation piece (41), the outer lane of separation piece (41) and bottle (1) inside wall sliding and sealing connection, the bottom (1) of bottle (2) or be equipped with when the separation piece (41) are equipped with and stop rotating bottle (41) in the time of rotation of bottle (1), the quantitative liquid outlet pipe (4) moves upwards, a liquid storage cavity (100) communicated with the inner cavity of the quantitative liquid outlet pipe (4) is formed between the separation block (41) and the bottom of the bottle body (1) and between the separation block and the inner side wall of the bottom of the bottle body (1), a liquid inlet (411) for allowing liquid in the bottle body (1) to enter the liquid storage cavity (100) is formed in the separation block (41), a one-way valve (412) for allowing liquid to flow into the liquid storage cavity (100) from the bottle body (1) only is arranged on the liquid inlet (411), a marking block (6) is arranged on the outer side of the upper cover body (31), and a scale (7) for displaying the volume of the liquid flowing into the liquid storage cavity (100) from the bottle body (1) when the upper cover (3) is rotated is arranged on the outer side of the middle cover body (21) and below the marking block (6); the liquid in the bottle body can be poured quantitatively, and the solution in the bottle can be always in a sealed state after the bottle is used.
5. The adjustable inverted quantitative liquid outlet container according to claim 4, wherein the upper cover driving part (32) is provided with an upper cover liquid outlet B (303) communicated with the inner cavity of the quantitative liquid outlet pipe (4), the tubular connecting part (22) is provided with a middle cover liquid outlet (221) communicated with the upper cover liquid outlet B (303), the upper cover body (31) is provided with an upper cover liquid outlet A (302) communicated with the middle cover liquid outlet (221), and the outer side of the middle cover liquid outlet (221) is provided with a liquid outlet flange (222) which can extend out from the upper cover liquid outlet (301).
6. The utility model provides an adjustable ration play liquid container, its characterized in that includes cavity and upper end open-ended bottle (1), well lid (2) and upper cover (3), well lid (2) contain sealed and rotate and connect well lid body (21) at bottle (1) upper end open-ended and be located well lid body (21) middle part tubular connection portion (22), upper cover (3) connect in tubular connection portion (22) upper end, tubular connection portion (22) inner wall seals and sliding connection has hollow ration drain pipe (4), the lower extreme of ration drain pipe (4) is equipped with separate piece (41), separate piece (41) outer lane and bottle (1) inside wall slip and sealing connection, when the drive ration drain pipe (4) upwards remove, be formed with between separate piece (41) and bottle (1) bottom inside wall with the communicating stock solution chamber (100) of ration drain pipe (4), separate piece (41) on be equipped with supply in the liquid (1) liquid inlet (411) of liquid inlet (100) of liquid inlet (1) of liquid inlet valve (411), the upper end of the quantitative liquid outlet pipe (4) is also provided with a scale (7) for displaying the volume of the liquid flowing into the liquid storage cavity (100) from the bottle body (1); the upper end of the tubular connecting part (22) of the middle cover (2) is provided with an anti-counterfeiting sealing sheet (8), the anti-counterfeiting sealing sheet (8) is provided with a pull ring (81) for tearing the anti-counterfeiting sealing sheet (8) out of the tubular connecting part (22) to facilitate the pouring of the liquid in the quantitative liquid outlet pipe (4), and the pull ring (81) leaves the anti-counterfeiting sealing sheet (8) out of the tubular connecting part (22) together with the sealing sheet on the tubular connecting part (22) after tearing the anti-counterfeiting sealing sheet (8) out of the tubular connecting part (22) to drive the quantitative liquid outlet pipe (4) to move upwards; a pull ring positioning column (91) for positioning the pull ring (81) is arranged on the middle cover body (21); the upper end of the tubular connecting part (22) is provided with a clamping block (92) for positioning the anti-counterfeiting sealing sheet (8).
CN201910083950.8A 2019-01-29 2019-01-29 Adjustable inverted quantitative liquid outlet container Active CN109760938B (en)

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CN109760938B true CN109760938B (en) 2023-09-19

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CN110371434A (en) * 2019-07-04 2019-10-25 中山市华宝勒生活用品实业有限公司 A kind of dosing container
CN113712445A (en) * 2020-05-26 2021-11-30 浙江天喜厨电股份有限公司 Quantitative water draining device
CN113697229B (en) * 2021-07-20 2023-01-24 浙江吉利控股集团有限公司 Wine container convenient for accurately blending wine and method convenient for accurately blending wine

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