WO2009065336A1 - Distributeur quantitatif - Google Patents

Distributeur quantitatif Download PDF

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Publication number
WO2009065336A1
WO2009065336A1 PCT/CN2008/072755 CN2008072755W WO2009065336A1 WO 2009065336 A1 WO2009065336 A1 WO 2009065336A1 CN 2008072755 W CN2008072755 W CN 2008072755W WO 2009065336 A1 WO2009065336 A1 WO 2009065336A1
Authority
WO
WIPO (PCT)
Prior art keywords
partition
chamber
opening
measuring
sealing cover
Prior art date
Application number
PCT/CN2008/072755
Other languages
English (en)
Chinese (zh)
Inventor
Shi Peng
Original Assignee
Shi Peng
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Shi Peng filed Critical Shi Peng
Publication of WO2009065336A1 publication Critical patent/WO2009065336A1/fr

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Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01FMEASURING VOLUME, VOLUME FLOW, MASS FLOW OR LIQUID LEVEL; METERING BY VOLUME
    • G01F11/00Apparatus requiring external operation adapted at each repeated and identical operation to measure and separate a predetermined volume of fluid or fluent solid material from a supply or container, without regard to weight, and to deliver it
    • G01F11/10Apparatus requiring external operation adapted at each repeated and identical operation to measure and separate a predetermined volume of fluid or fluent solid material from a supply or container, without regard to weight, and to deliver it with measuring chambers moved during operation
    • G01F11/26Apparatus requiring external operation adapted at each repeated and identical operation to measure and separate a predetermined volume of fluid or fluent solid material from a supply or container, without regard to weight, and to deliver it with measuring chambers moved during operation wherein the measuring chamber is filled and emptied by tilting or inverting the supply vessel, e.g. bottle-emptying apparatus
    • G01F11/261Apparatus requiring external operation adapted at each repeated and identical operation to measure and separate a predetermined volume of fluid or fluent solid material from a supply or container, without regard to weight, and to deliver it with measuring chambers moved during operation wherein the measuring chamber is filled and emptied by tilting or inverting the supply vessel, e.g. bottle-emptying apparatus for fluent solid material

Definitions

  • the present invention relates to a metering device for quantitatively taking fluids such as solid powders, granules or liquids.
  • the existing container with quantitative accessing function comprises a storage container and a quantitative taking mechanism connected thereto, and the quantitative taking mechanism comprises a quantitative powder collecting tank, and when the powder is in the state of being powdered, the powder is charged in the powder tank; When the powder is taken out in a quantitative manner.
  • this type of container has the following disadvantages: 1) Poor sealing, which is not conducive to the long-term and safe storage of the stored material; when taken, the taken material is easily leaked or spilled from the taking mechanism to the table top; 2) Need to use two hands for access.
  • the technical problem to be solved by the present invention is to overcome the deficiencies of the prior art and to provide a quantitative dispenser which is simple in structure, easy to handle, and has good sealing properties.
  • a quantitative dispenser comprising a tank body, a first partition plate and a second partition plate, the tank body having a tank wall and a chamber surrounded by the tank wall, The first partition and the second partition are placed in the chamber and fixed on the tank wall, and the first partition and the second partition divide the chamber into a storage chamber, a measuring chamber and a connecting chamber And a temporary storage chamber, wherein a lower portion of the storage chamber and a lower portion of the temporary storage chamber are separated by a first partition, an upper portion of the storage chamber is connected to the measuring chamber, and the connecting chamber is connected to a lower portion of the measuring chamber and the temporary portion a lower portion of the chamber, the upper portion of the temporary chamber and the measuring chamber being separated by a second partition, the upper portion of the storage chamber having a feed opening, the upper portion of the temporary chamber having a discharge opening, the measuring chamber having The opening is measured, and the feed opening, the discharge opening and the measuring opening are closed by a sealing cover.
  • the feed opening and the measuring opening are closed by the same sealing cover, and the discharging opening is closed by another sealing cover.
  • the sealing cover of the closing amount taking opening is provided with an adjusting block movable up and down, and the adjusting block extends into the measuring cavity.
  • At least one of the first partition and the second partition has a downwardly inclined portion that is inclined toward the other partition.
  • the tank wall is composed of a bottom wall and a peripheral wall, the chamber is surrounded by the bottom wall and the peripheral wall, the first partition is standing upright and fixed to the bottom wall and the peripheral wall, and the second partition is standing upright Fixed to the peripheral wall, and the second partition is raised above the bottom wall.
  • the first partition is vertical
  • the second partition has a vertical first portion and a second portion that slopes toward the first partition, and a bottom end of the second portion is adjacent the bottom wall.
  • the first partition plate and the second partition plate are respectively disposed on a doser disposed independently of the can body, the dose device further has a substrate, and the first partition plate and the second partition plate are both in the same direction from the substrate extend.
  • the tank wall is composed of a bottom wall and a peripheral wall, the second partition of the quantitative applicator is in close contact with the peripheral wall, and the first partition of the doser is in close contact with the peripheral wall or at the same time abutting the peripheral wall and the bottom wall .
  • the feed opening and the measuring opening are closed by the first sealing cover, and the discharging opening is closed by the second sealing cover, the first sealing cover has a second portion corresponding to the measuring opening and the corresponding feeding opening and can be opposite The first part of the two-part fold.
  • the joint of the first portion and the second portion of the first sealing cover is provided with a slit for folding.
  • the utility model has the beneficial effects that: 1) both are fixed structures, no moving parts, and the structure is simple; 2) the measuring can be realized by tilting the tilting, the operation can be performed with one hand, and the measuring operation is simplified; 3) The sealing of the entire metering device can be ensured, and the sealing structure is simple.
  • Figure 1 is an exploded perspective view showing a first embodiment of the quantitative applicator of the present invention
  • Figure 2 is a cross-sectional view showing a first embodiment of the quantitative applicator of the present invention
  • Figure 3 is a cross-sectional view showing the first embodiment of the quantitative applicator of the present invention in an initial state
  • Figure 4 is a cross-sectional view showing the first embodiment of the quantitative applicator of the present invention
  • 6 is a cross-sectional view of the second embodiment of the present invention
  • FIG. 7 is a cross-sectional view of the second embodiment of the quantitative applicator of the present invention
  • Figure 8 is a cross-sectional view showing the second embodiment of the quantitative applicator of the present invention in the case of quantitatively pouring out the substance
  • Figure 9 is a cross-sectional view showing the second embodiment of the quantitative applicator of the present invention when the substance is not quantitatively poured out
  • Figure 11 is a cross-sectional view showing a third embodiment of the quantitative applicator of the present invention.
  • Figure 12 is an exploded perspective view showing a fourth embodiment of the quantitative applicator of the present invention.
  • Figure 13 is a cross-sectional view of the fourth embodiment of the quantitative applicator of the present invention when the adjustment block is lowered;
  • Figure 14 is a cross-sectional view of the fourth embodiment of the quantitative applicator of the present invention when the adjustment block is lifted;
  • Figure 15 is a quantitative access of the present invention.
  • Figure 16 is a cross-sectional view showing a fifth embodiment of the metering device of the present invention.
  • the doser includes a can body 1, a doser 2, a first sealing cover 3, and a second sealing cover 4.
  • the can body 1 has a tank wall 11 and a chamber 12 surrounded by the tank wall 11.
  • the tank wall 11 is composed of a bottom wall 111 and a square peripheral wall 112, and the chamber 12 is surrounded by the bottom wall 111 and the peripheral wall 112.
  • the doser 2 includes a substrate 21, a first partition 22 and a second partition 23.
  • the substrate 21 has a square shape and is composed of four frame sides 211.
  • the first and second partitions 22 and 23 are both The frame side 211 of the substrate extends downward, and the first partition 22 and the second partition 22 are spaced apart.
  • the first partition 22 is composed of a second portion 222 which is inclined by the vertically connected first first portion 221, and the second portion 222 extends obliquely to the second partition 23, and the first portion A portion 221 and the second portion 222 form an obtuse angle.
  • the second partition 23 is composed of a vertical first portion 231, a slanted second portion 232 and a vertical third portion 233 which are integrally connected in series, and the second portion 232 extends obliquely toward the first partition 22, and The first portion 231 and the second portion 232 form an obtuse angle.
  • the doser 2 is fitted into the chamber 12 of the can body and is in close contact with the can wall 11.
  • the first partition 22 and the second partition 23 divide the chamber 12 into a storage chamber 121, a measuring chamber 122, a connecting chamber 123 and a temporary storage chamber 124, a lower portion of the storage chamber 121 and the temporary storage chamber 124.
  • the lower portion is separated by a first partition 22, and an upper portion of the storage chamber 121 is connected to the measuring chamber 122.
  • the connecting chamber 123 is connected to a lower portion of the measuring chamber 122 and a lower portion of the temporary storage chamber 124.
  • the temporary storage chamber 124 The upper portion and the measuring chamber 122 are separated by a second partition 23.
  • the upper portion of the storage chamber 121 has a feeding opening 1211.
  • the upper portion of the temporary chamber 124 has a discharge opening 1241.
  • the upper portion of the measuring chamber 122 has an upper portion.
  • the opening 1221 is measured, and the feed opening 1211, the discharge opening 1241, and the measuring opening 1221 are all closed by a sealing cover.
  • the feeding opening 1211 and the measuring opening 1221 are simultaneously closed by the first sealing cover 3, and the discharging opening 1241 is closed by the second sealing cover 4, and the first sealing cover 3 is removed, so that the substance can be loaded into the storage cavity. 121;
  • the second sealing cover 4 is removed, and the material in the temporary cavity 124 is poured out from the discharge opening 1241.
  • the first partition plate 22 is placed upright and directly against the bottom wall 111 of the can body.
  • the second partition plate 23 is placed upright and is opposite to the bottom of the can body.
  • the walls 111 are spaced a large distance apart.
  • the measuring chamber 122 is defined by the first portion 231 and the second portion 232 of the second partition 23, and the connecting chamber 123 is formed between the third portion 233 of the second partition and the first partition 22.
  • the doser has four states.
  • the measuring chamber 122 and the temporary chamber 124 are empty, and the substance 5 to be measured (such as a flowable substance such as powder, particles or liquid) is stored in In the storage chamber 121; when the entire quantitative retractor is inverted for the first time to reach the first state, under the action of gravity, part of the material in the storage chamber 121 flows into the cavity 122; the entire retractor is inverted again to reach In the second state, under the action of gravity, the substance in the measuring chamber 122 falls into the temporary cavity 124 through the connecting cavity 123; finally, when the entire quantitative extractor is inverted again to reach the third state, under the action of gravity, The contents of the temporary chamber 124 can be discharged through the discharge opening 1241. During the discharge, the first sealing cover 3 closes the feed opening 1211 and the measuring opening 1221 and the second closing cover 4 is removed.
  • the second portion 232 of the second partition 23 is inclined toward the first partition 22, during the first inversion, the material in the measuring chamber 122 can be effectively prevented from flowing directly to the temporary cavity 124; During the second inversion, the inclined second portion 232 facilitates the flow of material within the chamber 122 to the temporary chamber 124.
  • the second portion 222 of the first partition 22 is inclined toward the second partition 23, and during the second inversion, the substance is allowed to fall into the temporary chamber 124.
  • FIG. 7 to FIG. 9 which is a second embodiment of the present invention
  • the main difference between the embodiment and the first embodiment is that the second partition 23 of the doser 2 is only closely attached to the can body.
  • the peripheral wall 112 of 1, i.e., the second partition 23, does not directly contact the bottom wall 111 of the can body 1.
  • the discharge opening 1241 of the temporary storage chamber 124 is closed by a removable second sealing cover 4.
  • the measuring opening 1221 of the measuring chamber 122 and the feeding opening 1211 of the storage chamber 121 are both closed by the removable first sealing cover 3, and the first sealing cover 3 has a slit 30, which is the first
  • the sealing cover 3 is divided into a first portion 33 corresponding to the feed opening 1211 and a second portion 34 corresponding to the measuring opening 1221 such that the first portion 33 can be folded about the slit 30 relative to the second portion 34.
  • the quantitative extractor has two ways of using quantitative and non-quantitative access. When quantitatively taking, the first sealing cover 3 still closes the measuring opening 1221 and the feeding opening 1211 at the same time, and removes the second sealing cover 4 , the substance in the temporary cavity 124 is poured out through the discharge opening 1241, as shown in FIG.
  • the second sealing cover 4 closes the discharge opening 1241, and the second portion 34 of the first sealing cover 3
  • the opening 1221 is closed, and the first portion 33 of the first sealing cover 3 is folded outwardly along the slit 30 relative to the second portion 34, so that the substance in the storage chamber 121 can be directly poured out through the feeding opening 1211, as shown in FIG. Shown.
  • the first seal The first portion 33 of the cover 3 can be folded relative to the second portion 34, and the manner in which the fold is achieved can be other than the slit.
  • the feed opening, the discharge opening and the measuring opening can also be closed by three sealing covers, respectively.
  • the main difference between the embodiment and the first embodiment is that the first partition 22 of the doser 2 is vertical and directly against the can.
  • the second partition 23 On the bottom wall 111 of the body 1, the second partition 23 has a vertical first portion 231 and a slanted second portion 232, the second portion 232 extending obliquely toward the first partition 22, such that the first portion 231 and The second portion 232 is obtuse, and the second portion 232 extends straight to a position adjacent the bottom wall 111 of the can but does not directly abut the bottom wall 111.
  • FIG. 14 which is a fourth embodiment of the present invention
  • the main difference between the embodiment and the first embodiment is that the first partition 22 and the second partition 23 are directly disposed on the tank 1 .
  • the first partition 22 extends vertically upward from the bottom wall 111 of the can body 1.
  • the second partition 23 extends from the top to the bottom and has a bottom end adjacent to the bottom wall 111 of the can body.
  • the feed outlet 1211 and the take-up outlet 1221 of the can body 1 are closed by a sealing cover 3 having a vertically penetrating through hole 31 in which an adjustment block 6 is disposed, and the adjustment block 6 is The junction 125 of the chamber 122 and the storage chamber 121 is measured.
  • the adjustment block 6 When the adjustment block 6 is lowered, the adjustment block 6 blocks the connection portion 125, so that the substance in the storage chamber 121 cannot enter the measuring chamber 122; when the adjustment block 6 is lifted up, the adjustment block 6 leaves the connection portion 125. At this time, the substance in the storage chamber 121 can enter the measuring chamber 122 during the inversion process.
  • the doser 2 includes a plate-shaped substrate 21, a plate-shaped first separator 22, and a plate-shaped second separator 22, both of which are along the surface of the substrate 21. Width of the can chamber 12 The direction extends, and the widths of the first partition 22 and the second partition 23 both match the width of the chamber 1 of the can body 1.
  • the doser 2 is inserted into the can body 1.
  • the substrate 21 is in close contact with the peripheral wall 112 of the can body 1.
  • the first partition plate 22 is in close contact with the peripheral wall 112 of the can body 1.
  • the second partition plate 23 and the can body The peripheral wall 112 and the bottom wall 111 of 1 are in close contact.
  • the first sealing cover 3 and the second sealing cover 4 are used to close the opening of the chamber 12.
  • the storage chamber is for storing the fluid
  • the measuring chamber is for realizing the quantitative extraction of the fluid
  • the temporary storage chamber is for temporarily storing the fluid to be poured
  • the connecting chamber is for connecting the measuring chamber and the temporary chamber. Remaining.
  • the first and second partitions of the quantitative applicator of the present invention may be disposed on the doser, and the doser is inserted into the existing can body during use, and the fluid is realized by the cooperation with the existing can body. Quantitative access; the first and second partitions can also be directly integrated with the can body.
  • the components of the quantitative applicator of the invention are all fixed structures, and there is no moving part, so that the structure of the whole extractor is simple; the fluid can be measured by repeatedly tilting the tilting device, which can be operated by one hand; The cover ensures the tightness of the entire dosing device and makes the sealing structure simple.

Landscapes

  • Physics & Mathematics (AREA)
  • Fluid Mechanics (AREA)
  • General Physics & Mathematics (AREA)
  • Closures For Containers (AREA)
  • Containers And Packaging Bodies Having A Special Means To Remove Contents (AREA)

Abstract

La présente invention concerne un distributeur quantitatif comprenant un corps de contenant (1), une première plaque de séparation (22) et une seconde plaque de séparation (23). Le corps du contenant comprend de parois (11) et une chambre (12) fermée par les parois. Les première et seconde plaques de séparation sont positionnées à l'intérieur de la chambre et sont fixées sur les parois. Les première et seconde plaques de séparation divisent la chambre en une cavité de stockage (121), une cavité de mesure (122), une cavité de raccordement (123) et une cavité de stockage temporaire (124). Le fond de la cavité de stockage est séparé du fond de la cavité de stockage temporaire par la première plaque de séparation. Le haut de la cavité de stockage est raccordé à la cavité de mesure. La cavité de raccordement est raccordée aux fonds de la cavité de mesure et de la cavité de stockage temporaire. Les hauts de la cavité de stockage temporaire et de la cavité de mesure sont espacés par la seconde plaque de séparation. Une ouverture d'alimentation est positionnée au sommet de la cavité de stockage. Une ouverture d'évacuation est positionnée en haut de la cavité de stockage temporaire. La cavité de mesure est pourvue d'une ouverture de mesure. L'ouverture d'alimentation, l'ouverture d'évacuation et l'ouverture de mesure sont recouvertes par des capuchons étanches à l'air. Le distributeur quantitatif présente une structure simple et peut distribuer une quantité lorsqu'il est retourné. Le contenant présente une bonne performance d'étanchéité et peut être manipulé d'une seule main.
PCT/CN2008/072755 2007-11-02 2008-10-20 Distributeur quantitatif WO2009065336A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN200720170532.5 2007-11-02
CNU2007201705325U CN201095485Y (zh) 2007-11-02 2007-11-02 定量取用器

Publications (1)

Publication Number Publication Date
WO2009065336A1 true WO2009065336A1 (fr) 2009-05-28

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Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2008/072755 WO2009065336A1 (fr) 2007-11-02 2008-10-20 Distributeur quantitatif

Country Status (2)

Country Link
CN (1) CN201095485Y (fr)
WO (1) WO2009065336A1 (fr)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108438548A (zh) * 2018-04-27 2018-08-24 张星星 定量容器及定量奶粉盒
JP2021172414A (ja) * 2020-04-30 2021-11-01 株式会社吉野工業所 振出しキャップ

Families Citing this family (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN201095485Y (zh) * 2007-11-02 2008-08-06 彭实 定量取用器
WO2010045945A1 (fr) * 2008-10-21 2010-04-29 Logidos Aps Contenant doté de moyens destinés à doser une dose d’une taille prédéterminée
WO2011088663A1 (fr) * 2010-01-22 2011-07-28 Peng Shi Dispositif de mesure de liquide de type réversible et ensemble bouteille comprenant ce dispositif
CN201770157U (zh) * 2009-08-25 2011-03-23 彭实 翻转式流体量取装置及具有该装置的瓶子组件
CN102452525B (zh) * 2010-10-19 2014-04-16 彭实 阀门式流体取用装置
CN102874490A (zh) * 2012-06-13 2013-01-16 浙江吉利汽车研究院有限公司杭州分公司 一种可定量取液的器具及定量取液方法

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2071009A6 (fr) * 1969-12-15 1971-09-17 Champy Louis Daniel
CN2093155U (zh) * 1991-03-11 1992-01-15 张纪荣 定量倒出罐
CN2185734Y (zh) * 1994-05-18 1994-12-21 李克平 可调式定量出物盒
JP2000053175A (ja) * 1998-08-05 2000-02-22 Kao Corp 計量器
JP2001139072A (ja) * 1999-11-11 2001-05-22 Tsutsumi Yotaro 計量機能付きパウチ
CN201095485Y (zh) * 2007-11-02 2008-08-06 彭实 定量取用器

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2071009A6 (fr) * 1969-12-15 1971-09-17 Champy Louis Daniel
CN2093155U (zh) * 1991-03-11 1992-01-15 张纪荣 定量倒出罐
CN2185734Y (zh) * 1994-05-18 1994-12-21 李克平 可调式定量出物盒
JP2000053175A (ja) * 1998-08-05 2000-02-22 Kao Corp 計量器
JP2001139072A (ja) * 1999-11-11 2001-05-22 Tsutsumi Yotaro 計量機能付きパウチ
CN201095485Y (zh) * 2007-11-02 2008-08-06 彭实 定量取用器

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108438548A (zh) * 2018-04-27 2018-08-24 张星星 定量容器及定量奶粉盒
JP2021172414A (ja) * 2020-04-30 2021-11-01 株式会社吉野工業所 振出しキャップ

Also Published As

Publication number Publication date
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