WO2013018233A1 - Récipient de mélange de liquide - Google Patents

Récipient de mélange de liquide Download PDF

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Publication number
WO2013018233A1
WO2013018233A1 PCT/JP2011/067913 JP2011067913W WO2013018233A1 WO 2013018233 A1 WO2013018233 A1 WO 2013018233A1 JP 2011067913 W JP2011067913 W JP 2011067913W WO 2013018233 A1 WO2013018233 A1 WO 2013018233A1
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WO
WIPO (PCT)
Prior art keywords
liquid
solution
cap member
bag
mixed
Prior art date
Application number
PCT/JP2011/067913
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English (en)
Japanese (ja)
Inventor
益山 巌
Original Assignee
東京パーツ株式会社
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 東京パーツ株式会社 filed Critical 東京パーツ株式会社
Priority to PCT/JP2011/067913 priority Critical patent/WO2013018233A1/fr
Publication of WO2013018233A1 publication Critical patent/WO2013018233A1/fr

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D81/00Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents
    • B65D81/32Containers, packaging elements, or packages, for contents presenting particular transport or storage problems, or adapted to be used for non-packaging purposes after removal of contents for packaging two or more different materials which must be maintained separate prior to use in admixture
    • B65D81/3233Flexible containers disposed within rigid containers
    • B65D81/3238Flexible containers disposed within rigid containers with additional means facilitating admixture

Definitions

  • the present invention relates to a mixed liquid container, and can be applied to, for example, hair dyeing with a two-component hair dye.
  • the two-component hair dye is composed of an oxidation dye, an alkali agent, a surfactant, and an oxidation stabilizer, and contains two components such as an acid, an oxidant, and a thickener. If the oxidative dye and the two oxidizers are mixed for a long time, a large pigment molecule is formed by oxidative polymerization and the pigment does not enter the hair. Thus, a two-component liquid container has been proposed in the past in which hair is decolorized and at the same time a dye is infiltrated into the hair to cause oxidative polymerization to develop color (see Patent Document 1).
  • this type of two-component liquid mixture container can be safely and disposable with simple operations as much as possible, considering that a general user can dye his hair at home using this. It is desirable to be a thing.
  • the present invention has been made in view of the above points, and intends to propose a mixed liquid container having a simple configuration.
  • an inner plug member is fitted into the liquid outlet of the liquid mixture container main body that stores the first solution while maintaining the first space communicating with the liquid outlet,
  • the liquid storage bag member that stores the second solution while leaving the second space in the first space is suspended, and can be rotated to the liquid outlet of the liquid mixture container body in which the inner plug member is fitted.
  • the liquid storage bag member When the cap member is mounted and the cap member is rotated with respect to the inner plug member, the liquid storage bag member is broken by winding the bag distal end portion of the liquid storage bag member with the bag winding portion, and the second solution is The solution is dropped onto one solution, thereby obtaining a mixed solution of the first solution and the second solution.
  • the liquid storage bag member for storing the second solution is suspended from the liquid mixture container main body for storing the first solution while maintaining the first space, By winding the bag tip of the liquid storage bag member with the bag winding unit, the liquid storage bag member is broken to drop the second solution onto the first solution to obtain a mixed solution, so that the user can It is possible to easily obtain a mixed solution without staining.
  • FIG. 1 is a cross-sectional view showing a mixed liquid container according to an embodiment of the present invention.
  • FIG. 2 is an exploded cross-sectional view showing the configuration of each part of the mixed liquid container 1 of FIG.
  • FIG. 3 is a schematic plan view showing the detailed configuration of the inner plug member.
  • FIG. 4 is a schematic plan view showing a detailed configuration of the cap member.
  • FIG. 5 is a schematic plan view for explaining the winding operation of the bag winding unit 18.
  • FIG. 6 is a cross-sectional view for explaining the discharge operation of the second solution in the mixed solution container 1.
  • FIG. 7 is a cross-sectional view for explaining the stirring and mixing operation of the first and second solutions in the mixed liquid container 1.
  • FIG. 1 is a cross-sectional view showing a mixed liquid container according to an embodiment of the present invention.
  • FIG. 2 is an exploded cross-sectional view showing the configuration of each part of the mixed liquid container 1 of FIG.
  • FIG. 3 is a schematic plan view showing the detailed configuration of
  • FIG. 8 is a schematic plan view for explaining the rotation amount detection operation and the lock operation of the cap member 4.
  • FIG. 9 is a schematic diagram for explaining the rotation amount detection operation of the cap member 4.
  • FIG. 10 is a schematic diagram for explaining the locking operation of the cap member 4.
  • FIG. 11 is a schematic diagram for explaining the unlocking operation of the mixed liquid container.
  • FIG. 12 is an exploded cross-sectional view for explaining the operation of removing the disposable member 40 from the mixed liquid container body 2.
  • FIGS. 1 and 2 1 indicates a mixed liquid container as a whole, and is made of a synthetic resin material, and the liquid collecting of a cylindrical mixed liquid container body 2 having a closed bottom surface.
  • the cap member 4 is screwed so as to fit the inner plug member 3 into the outlet 2A and to cover the liquid outlet 2A from above.
  • FIG. 2 (C) in the lower half of the mixed liquid container main body 2, one agent (dye, alkali agent, surfactant) is used with the first space 11 held in the upper half.
  • a first solution 12 composed of an oxidation stabilizer).
  • the inner plug member 3 fitted in the liquid outlet 2A is a partition having a central through hole 3B so as to cross the cylindrical portion 3A molded by a synthetic resin material.
  • a plate portion 3C is provided.
  • the cylindrical portion 3A is fitted so as to be in contact with the inner peripheral surface 2B of the liquid outlet 2A, and a support flange portion 3D provided so as to protrude outward from the upper outer peripheral edge is formed on the upper end surface 2C of the liquid outlet 2A.
  • the inner plug member 3 is integrally fitted into the liquid outlet 2A.
  • four split grooves 3A1 are provided at the lower end edge of the cylindrical portion 3A from the lower side at 90 [°] intervals with respect to the center line L0.
  • the inner plug member 3 is locked together so as not to rotate around the center line L0 in the liquid outlet 2A.
  • a bag front end portion 15A of the liquid storage bag member 15 is inserted into the center through hole 3B from below, and the bag front end portion 15A extends along the plate surface of the partition plate portion 3C to the fixing member 3E at the outer edge position. It is pulled in and held firmly.
  • the liquid storage bag member 15 is made of a sheet material 15B obtained by processing a polyethylene sheet or a polypropylene sheet into a bag shape, and “two agents” (acid, oxidant) are left in the lower half so that the second space 16 is left in the upper half. , A thickener and the like are blended).
  • the sheet material 15B is selected to have a shape in which the lower half of the second solution 17 together with the stirring rod 21 has a large diameter and the bottom surface or side surface is rounded. The portion that holds the two spaces 16 is sealed in a state of being constricted into a tapered shape as it goes upward so as to exhibit a conical shape.
  • the sheet material 15B constituting the bag tip portion 15A is bundled into one bundle, and the bundle passes through the central through hole 3B of the inner plug member 3 and is drawn into the fixing member 3E along the upper surface of the partition plate portion 3C.
  • the tip is fixed to the fixing member 3E.
  • the liquid storage bag member 15 is suspended from the central through hole 3 ⁇ / b> B of the inner plug member 3 in the first space 11 of the mixed liquid container body 2.
  • the fixing member 3E has three fixing protrusions 3E1 erected on the partition plate portion 3C at an outer position away from the central through hole 3B.
  • the bag tip 15A of the liquid storage bag member 15 is fixed by making the sheet material 15B entangled with the three fixing protrusions 3E1.
  • An annular guide groove 3F is drilled in the partition plate portion 3C of the inner plug member 3 so as to pass through a position between the center through hole 3B and the fixing member 3E, as shown in FIG.
  • the four winding protrusions 4A of the cap member 4 (projected at angularly equidistant positions of 90 [°]) are guided by the guide groove 3F in the direction of the arrow a around the center through hole 3B.
  • a cylindrical plate portion 4C extending downward is provided on the peripheral edge of the circular top plate portion 4B, and the inner surface of the cylindrical plate portion 4C.
  • the screw portion 4D formed on the center of the liquid mixture container body 2 can be rotated around the center line L0 while being screwed into the screw portion 2D provided on the outer peripheral surface of the liquid outlet 2A (FIG. 2C). It is made like that.
  • a shaft portion 4E extending downward is provided so as to face the cylindrical plate portion 4C (FIG. 2A).
  • a center restraining portion 4F having a diameter corresponding to the central through hole 3B of the inner plug member 3 is provided at the lower end of the shaft portion 4E, and similarly to the central through hole 3B above the center restraining portion 4F.
  • An auxiliary element 4G having a corresponding size is provided.
  • the use preparation state (state of FIG. 1) in which the second solution 17 is held in the liquid storage bag member 15 is maintained.
  • An annular soft packing 19 is provided at a position of the cap member 4 facing the support collar portion 3D of the inner plug member 3, whereby the cap member 4 is screwed into the liquid outlet 2A in a ready state for use.
  • the cap member 3 and the cap Even if liquid between the top plate portion 4 ⁇ / b> B of the member 4 is contained, it is sealed in the cap member 4.
  • the user who performs the hair dyeing operation sets the center line L0 on the cap member 4 while supporting the mixed liquid container body 2 of the mixed liquid container 1 in the ready-to-use state of FIG. It is rotated in the direction of the screwing direction a as the center.
  • the cap member 4 is screwed into the screw portion 2D of the liquid outlet 2A by screwing the screw portion 4D, so that the lower end surface 4H is the base portion of the liquid outlet 2A around the liquid outlet 2A.
  • suppressing part 4F provided in the axial part 4E of the cap member 4 protrudes below the partition plate part 3C through the central through-hole 3B of the inner plug member 3.
  • the bag take-up portion 18 (FIG. 5) provided between the inner plug member 3 and the top plate portion 4B of the cap member 4 is connected to the liquid storage bag member via the central through hole 3B of the inner plug member 3. Fifteen sheet materials 15B are pulled in.
  • the bag winder 18 winds the sheet material 15B on the partition plate 3C around the winding protrusion 4A. As the winding of the sheet material 15B proceeds, the second space 16 of the liquid storage bag member 15 becomes smaller, so that the portion where the second solution 17 is stored approaches the central through hole 3B of the inner plug member 3. As shown in FIG.
  • the second solution 17 and the stirring rod in which the bottom portion 15C was broken and stored as shown in FIG. 21 is dropped onto the first solution 12 stored in the mixed liquid container body 2.
  • a blade-like portion having a sharp cross section is formed around the stirrer 2 so that when the sheet material 15B is wound around the bag take-up portion 18, it becomes easy to make a hole.
  • the mixed solution container body 2 contains the first solution 12 and the second solution 17 together with the stirring bar 21 in a state where the cap member 4 is screwed into the liquid outlet 2 ⁇ / b> A.
  • the mixed liquid 22 remains.
  • the stirrer 21 makes the two liquids in an appropriate state by stirring the first and second solutions 12 and 17 constituting the mixed liquid 22 by the user swinging the mixed liquid container body 2 as a whole. Can be mixed.
  • (3) Cap member rotation amount detection / locking operation The liquid mixing process described above with reference to FIGS. 4 to 7 is applied to the screw portion 2D of the liquid outlet 2A provided with the inner plug member 3 of the mixed liquid container body 2.
  • the mixing operation can be realized simply by screwing the screw portion 4D of the member 4 by a rotation amount set in advance with respect to the liquid outlet 2A, for example, 1.5 rotations.
  • the detection of the rotation amount of the cap member 4 and the end timing of the mixing operation can be realized by the user feeling the click operation of the cap member 4 with his / her hand.
  • the rotation detection operation of the cap member 4 is performed as shown in FIG. 9 in which the cap-side detection ridge 30 ⁇ / b> A as shown in FIG.
  • the rotation amount detection unit 30 including the liquid outlet side detection ridge 30B provided at the reference height position LV on the outer surface of the liquid outlet 2A.
  • the cap-side detection ridge 30A is in a state in which the center restraining portion 4F of the cap member 4 restrains the central through hole 3B of the inner plug member 3 by screwing the screw portion 4D of the cap member 4 into the screw portion 2D of the liquid outlet 2A.
  • the cap member 4 becomes the base portion 2E of the mixed liquid container body 2 in accordance with the rotation direction b and the rotation of the cap member 4.
  • the lower end 30A1 is brought into contact with the liquid outlet side detection ridge 30B.
  • the user who wants to screw the cap member 4 makes the cap member 4 in a normal assembled state due to resistance when the cap-side detection ridge 30A interferes with the liquid outlet side detection ridge 30B and stops rotating. I can confirm that there is.
  • the cap member is in a state where the mixed liquid container body 2 is supported by hand. 4 is rotated with a strong force that overcomes the resistance felt by the hand when the lower end 30A1 of the cap-side detection ridge 30A of the cap member 4 is in contact with the liquid outlet-side detection ridge 30B.
  • the cap-side detection ridge 30A gets over the liquid outlet side detection ridge 30B and rotates in the direction of the rotation direction b. In this way, when the cap-side detection ridge 30A moves over the liquid outlet side detection ridge 30B at the reference height position LV and moves in the direction of the rotation direction b, the user feels no resistance until then.
  • the sheet material 15 ⁇ / b> B of the liquid storage bag member 15 can be taken up by the bag take-up unit 18.
  • the threaded portion 4D of the cap member 4 is screwed into the threaded portion 2D of the liquid outlet 2A, so that the cap-side detection ridge 30A moves downward in the tightening direction c.
  • the cap member 4 by rotating the cap member 4 by 1.5 times and winding up the bag tip 15A corresponding thereto, the bottom portion 15C of the sheet material 15B is broken as described above with reference to FIG.
  • the second solution 17 and the stirring rod 21 stored in the liquid storage bag member 15 can be mixed with the first solution 12 stored in the mixed solution container body 2.
  • the user rotates the cap member 4 again with a strong force in the state of FIG. 9B, so that the cap-side detection ridge 30A gets over the liquid outlet side detection ridge 30B and further reaches 0. 0 in the rotation direction b. Operate it so that it is rotated by 5 revolutions.
  • the lock portion 35 is provided with a locking engagement groove 35A as shown in FIG. 10A on the lower end surface 4H of the cap member 4, and the base portion 2E of the liquid outlet 2A facing the lower end surface 4H.
  • a locking engagement protrusion 35B is provided so as to protrude from the upper surface.
  • the locking engagement groove 35A includes a vertical surface 35A1 along the descending direction e and an inclined surface 35A2 that becomes shallower from the deepest position of the vertical surface 35A1 to the lower end surface 4H. It is configured.
  • the tip of the inclined surface 35A2 of the locking engagement groove 35A is located on the locking engagement protrusion 35B, as shown in FIG.
  • the lock engaging groove 35A is locked as shown in FIG. 10C by moving in the rotational direction d while descending in the downward direction e.
  • the engagement protrusion 35B is engaged.
  • the vertical surface 35A1 of the locking engagement groove 35A comes into contact with the locking engagement protrusion 35B, whereby the rotation of the cap member 4 in the rotation direction d is stopped.
  • the user who has rotated the cap member 4 stops the locking engagement groove 35A by the locking engagement protrusion 35B, so that the amount of rotation of the cap member 4 is a limit value, that is, 1.5 rotations from the resistance. You can feel that.
  • This means that the mixed solution 22 is obtained after the mixing operation of the first solution 12 and the second solution 17 is completed in the mixed solution container body 2 (FIG. 7).
  • the cap member 4 is removed upward from the liquid outlet 2A as shown in FIG.
  • the center restraining portion 4F and the auxiliary element 4G projecting downward from the top plate portion 4B.
  • the auxiliary element 4G on the upper side contacts the lower edge of the central through hole 3B of the inner plug member 3, so that the inner plug member 3 is integrated with the cap member 4 and the inner periphery of the liquid outlet 2A. It is drawn upward along the surface 2B.
  • the cap member 4 and the inner plug member 3 and the bag take-up portion 18 therebetween are taken up.
  • the sheet material 15 ⁇ / b> B is removed from the mixed liquid container body 2 as the disposable member 40.
  • the mixed solution container body 2 from which the disposable member 40 has been removed is in a state where the lid of the liquid outlet 2A is removed while the mixed solution 22 of the first solution 12 and the second solution 17 is housed therein. This remains at the user's hand as the mixed solution tool 41.
  • a cap as a separate lid or a mixed liquid discharge jig provided with a mixed liquid discharge pump is screwed into the liquid outlet 2A of the mixed liquid tool 41, and then the mixed liquid tool 41 is It is used for hair dyeing operation using the liquid mixture 22 by the user.
  • the assembled state can be recognized by the user by a sense of resistance caused by a state in which the lower end 30A1 of the cap-side detection ridge 30A is in contact with the liquid outlet side detection ridge 30B.
  • the user performs an operation of screwing the cap member 4 while holding the mixed liquid container body 2 of the mixed liquid container 1 by hand.
  • the cap-side detection ridge 30A (FIG. 9) is in contact with the liquid outlet side detection ridge 30B, but the user is strong enough that the cap-side detection ridge 30A gets over the liquid outlet side detection ridge 30B.
  • the cap member 4 is screwed into the liquid outlet 2A by performing the screwing operation with a normal force.
  • the bag take-up portion 18 (FIG. 5) is configured such that the sheet of the liquid storage bag member 15 is interposed between the partition plate portion 3C of the inner plug member 3 and the top plate portion 4B of the cap member 4.
  • the material 15B is taken up (FIGS. 3 to 5).
  • the bottom portion 15C of the liquid storage bag member 15 is broken by the stirring rod 21 (FIG. 6), and the second solution 17 stored in the liquid storage bag member 15 is removed.
  • the mixed liquid 22 mixed with the first solution 12 in the mixed liquid container main body 2 remains in the mixed liquid container main body 2 together with the stirring rod 21 (FIGS. 6 and 7).
  • the user has the stirring rod 21 together with the mixed liquid 22 in the mixed liquid container body 2, and only the sheet material 15 ⁇ / b> B storing the second solution 17 among the liquid storage bag members 15 is the inner plug member 3.
  • the first solution 12 and the second solution constituting the mixed solution 22 using the stirring rod 21 by being able to obtain a state of being caught in the bag winding portion 18 provided between the top plate portion 4B of the cap member 4 and the top plate portion 4B.
  • the solution 17 can be appropriately agitated and mixed in a state where the cap member 4 is put on the mixed liquid container main body 2.
  • the user reversely rotates the cap member 4 to remove the cap member 4 from the liquid outlet 2A (FIGS.
  • the locking engagement groove 35A of the cap member 4 releases the lock with the locking engagement projection 35B (FIGS. 11A to 11B) and is released from the liquid outlet 2A while rotating in the reverse rotation direction. (FIG. 12). Since the cap member 4 in this state is separated from the liquid outlet 2A with the inner plug member 3 attached integrally therein, the user disposes it as the disposable member 40 and holds the mixed liquid 22 therein.
  • the hair mixture operation can be performed using the inside of the mixed solution container body 2 as the mixed solution tool 41. According to the above configuration, the user who performs the hair dyeing operation simply stores the liquid mixture container 1 assembled as shown in FIG. 1 by holding the liquid mixture container body 2 and screwing the cap member 4 into the liquid container 1.
  • the bag member 15 is broken and the second solution 17 inside is mixed with the first solution 12.
  • the sheet material 15B from which the second solution 17 has been released is wound between the cap member 4 and the inner plug member 3 in accordance with the rotation of the cap member 4.
  • the cap member 4 is reversely rotated from the liquid outlet 2A and removed, the hair dye mixed with the two liquids is taken out from the liquid mixture container body 2 containing the liquid mixture 22, and the hair is easily dyed. be able to.
  • the user can easily obtain a hair dye solution as a mixed solution by simply screwing or unscrewing the cap member 4 without directly touching the first and second solutions. .
  • the screwing range between the screw portion 4D and the screw portion 2D is set so that the center pressing portion 4F of the cap member 4 is the center of the partition plate portion 3C as shown in FIG.
  • the cap member 4 is screwed from the position where the through hole 3B is closed to the position where the center holding portion 4F and the auxiliary element 4G are in contact with the lower side of the central through hole 3B of the partition plate portion 3C. Or it is provided in the range which can be screwed back.
  • the user rotates the cap member 4 with respect to the mixed liquid container 1 in a state where the center restraining portion 4F of the cap member 4 restrains the central through hole 3B of the partition plate portion 3C, thereby allowing the sheet material 15B of the liquid storage bag member 15 to rotate. Is started to be wound by the bag winder 18.
  • the screw portion 4D of the cap member 4 after that, when the screw portion 4D of the cap member 4 is screwed in until it passes over the screw portion 2D of the liquid outlet 2A, the screw portion 4D of the cap member 4 becomes the screw portion of the liquid outlet 2A. The screw is disengaged at the lower position of 2D.
  • the rotation of the cap member 4 in the tightening direction (the direction approaching the base portion 2E of the mixed liquid container body 2) is idle, and the cap member 4 does not perform the approaching operation.
  • the winding operation for the sheet material 15B of the liquid storage bag member 15 by the bag winding portion 18 of the cap member 4 can be continued, so the liquid storage bag member 15 is described above with reference to FIGS.
  • the bottom portion 15B is broken and the second solution 17 and the stirring rod 21 are dropped into the first solution 12, so that the mixed solution 22 can be obtained.
  • the present invention can be used when two types of solutions are mixed to obtain a mixed solution.
  • SYMBOLS 1 ... Mixed liquid container, 2 ... Mixed liquid container main body, 2A ... Liquid extraction outlet, 2B ... Inner peripheral surface, 2B1 ... Locking protrusion, 2C ... Upper end surface, 2D ... Screw part, 2E ... ... Base part, 3 ... Internal plug member, 3A ... Cylindrical part, 3A1 ... Split groove, 3B ... Center through-hole, 3C ... Partition plate part, 3D ... Support collar part, 3E ...

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Package Specialized In Special Use (AREA)

Abstract

La présente invention permet d'obtenir facilement un mélange de liquide. Un corps principal de récipient de mélange de liquide (2) loge une première solution (12) tout en maintenant un premier espace (11), et un élément de sac de logement de liquide (15) qui loge une seconde solution (17) est suspendu dans le corps principal de récipient de mélange de liquide (2), laissant un second espace (16). Une partie d'extrémité avant de sac (15A) de l'élément de sac de logement de liquide (15) est enroulée à l'aide d'une partie d'enroulement de sac (18) d'un élément de bouchon intérieur (3), ce qui permet de la sorte de rompre l'élément de sac de logement de liquide (15), et une seconde solution (17) tombe dans la première solution (12) de manière à obtenir un mélange de liquide (22) ; en conséquence de quoi, un mélange de liquide peut être facilement obtenu sans que les mains d'un utilisateur en soient salies.
PCT/JP2011/067913 2011-07-29 2011-07-29 Récipient de mélange de liquide WO2013018233A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PCT/JP2011/067913 WO2013018233A1 (fr) 2011-07-29 2011-07-29 Récipient de mélange de liquide

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/JP2011/067913 WO2013018233A1 (fr) 2011-07-29 2011-07-29 Récipient de mélange de liquide

Publications (1)

Publication Number Publication Date
WO2013018233A1 true WO2013018233A1 (fr) 2013-02-07

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PCT/JP2011/067913 WO2013018233A1 (fr) 2011-07-29 2011-07-29 Récipient de mélange de liquide

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Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE4008615A1 (de) * 1990-03-17 1991-09-19 Wella Ag Zweikomponentenbehaelter fuer fluessige oder pastoese produkte
JP2005530656A (ja) * 2002-06-25 2005-10-13 アメリカ合衆国 混合バイアル
JP2009083923A (ja) * 2007-10-03 2009-04-23 Kichinosuke Nagashio 開封時に開放される粉末収納体付き容器用キャップ

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE4008615A1 (de) * 1990-03-17 1991-09-19 Wella Ag Zweikomponentenbehaelter fuer fluessige oder pastoese produkte
JP2005530656A (ja) * 2002-06-25 2005-10-13 アメリカ合衆国 混合バイアル
JP2009083923A (ja) * 2007-10-03 2009-04-23 Kichinosuke Nagashio 開封時に開放される粉末収納体付き容器用キャップ

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