WO2011071301A2 - Récipient à produit cosmétique muni d'une capsule rotative - Google Patents

Récipient à produit cosmétique muni d'une capsule rotative Download PDF

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Publication number
WO2011071301A2
WO2011071301A2 PCT/KR2010/008722 KR2010008722W WO2011071301A2 WO 2011071301 A2 WO2011071301 A2 WO 2011071301A2 KR 2010008722 W KR2010008722 W KR 2010008722W WO 2011071301 A2 WO2011071301 A2 WO 2011071301A2
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WO
WIPO (PCT)
Prior art keywords
coupling
coupled
cosmetic container
knob
contents
Prior art date
Application number
PCT/KR2010/008722
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English (en)
Korean (ko)
Other versions
WO2011071301A3 (fr
Inventor
송호석
Original Assignee
(주)에스엔피월드
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Application filed by (주)에스엔피월드 filed Critical (주)에스엔피월드
Publication of WO2011071301A2 publication Critical patent/WO2011071301A2/fr
Publication of WO2011071301A3 publication Critical patent/WO2011071301A3/fr

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    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45DHAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
    • A45D34/00Containers or accessories specially adapted for handling liquid toiletry or cosmetic substances, e.g. perfumes
    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45DHAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
    • A45D34/00Containers or accessories specially adapted for handling liquid toiletry or cosmetic substances, e.g. perfumes
    • A45D34/04Appliances specially adapted for applying liquid, e.g. using roller or ball
    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45DHAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
    • A45D2200/00Details not otherwise provided for in A45D
    • A45D2200/05Details of containers
    • A45D2200/054Means for supplying liquid to the outlet of the container
    • A45D2200/055Piston or plunger for supplying the liquid to the applicator

Definitions

  • the present invention relates to a cosmetic container. Specifically, the present invention relates to a cosmetic container containing liquid cosmetics.
  • Conventional containers for liquid cosmetics include a container pressurized by the user to press the body of the container in which the liquid cosmetics are accommodated, and a pump pressurized by pressurizing a pump provided with a pressurized pump on one side of the cosmetic container.
  • the pressure of the cosmetics can be controlled according to the pressure applied to the container, but even under the same pressure, the amount of cosmetics released varies depending on the amount of cosmetics contained in the container. Or less cosmetics were discharged.
  • the container pressure-type cosmetic container is discharged only by a predetermined amount specified in the design of the pump, when the amount of cosmetics required is small, there is a problem that waste cosmetics are generated.
  • Cosmetic container equipped with a rotary knob according to the present invention aims to solve the following problems.
  • the cosmetics discharged from the container to be able to move the puff up and down to ensure that the cosmetics on the puff evenly.
  • Cosmetic container with a rotary knob has a hollow portion for receiving the contents therein is formed, the body portion formed with an opening communicating with the hollow portion on the upper side, the inside is inserted through the opening of the body portion, the outside is the body
  • a rotating part rotatably disposed along the outer circumferential surface of the part, an outlet is formed in the upper part, an inlet is formed in communication with the outlet in the lower part, the upper part is coupled to the rotating part, and the contents conveying pipe is disposed in the lower part of the hollow part; It is disposed in the hollow portion, and comprises a pressing portion rotatably coupled to the contents delivery pipe.
  • the cosmetic container is rotated by rotating the contents transfer tube is rotated in rotation, the pressing portion coupled to the contents delivery pipe is preferably moved in the downward direction from the hollow portion to press the contents contained in the hollow portion is preferably transferred to the inlet.
  • the contents conveying pipe is formed in a cylindrical shape
  • the outer peripheral surface is formed of a sliding moving portion is formed with a screw thread so that the pressing portion sliding in the downward direction
  • the rotary coupling portion is formed in the upper outer peripheral surface of the sliding movement portion is coupled to the rotating portion desirable.
  • one side of the rotating portion is made of a plate portion inserted into the hollow portion, the other side is preferably formed of a rotating knob that is bent at the edge of the plate portion, rotatably coupled to the outer peripheral surface of the body portion.
  • a recessed portion having an insertion hole formed therein is formed at the center side of the dish portion so that the contents transfer pipe can be inserted and coupled thereto.
  • the contents transfer pipe is made of a plate portion is inserted into the hollow portion of one side of the rotating portion, the other side is formed of a rotating knob that is bent at the edge of the plate portion, rotatably coupled to the outer peripheral surface of the body portion, It is preferable that the convex part is formed, and the concave part is formed with the concave part into which the concave part is inserted, and the convex part and the concave part are inserted and coupled when the rotary coupling part is inserted into the depressing part.
  • the recess is formed of the first step and the second step
  • the first step is disposed in the dispersing member for dispersing the contents discharged through the outlet to the upper surface of the dish portion
  • the second step is formed with a convex portion
  • the rotary coupling portion It is preferable to insert insert.
  • the dispersion member is formed with a through hole through which the contents are discharged, and preferably formed in a shape corresponding to the shape of the first step.
  • the dispersion member is formed in a shape corresponding to the shape of the first step, the through piece is formed in the center side and the fixing piece disposed on the first step, the dispersion piece is disposed spaced apart from the fixed piece inside the through hole; , It is preferred that a plurality of connecting pieces, one side of which is connected to the fixing piece and the other side of which is connected to the dispersion piece, is spaced apart from each other so that a slot is formed between the fixing piece and the dispersion piece.
  • the connecting piece is preferably formed in an arc shape corresponding to the through hole.
  • the sealing member is preferably disposed on the upper surface of the rotary coupling portion to be in close contact with the fixing piece so that the contents discharged from the outlet do not remain in the depression.
  • the pressing portion is formed in a shape corresponding to the shape of the flat cross-section of the hollow portion, the pressing member is formed in the center side coupled with the contents delivery pipe is formed, and bent from the edge of the pressing member is in close contact with the inner surface of the body portion It is preferably formed of a member.
  • the contact member is preferably bent so that the top and bottom is in close contact with the inner surface of the body portion, the center side is spaced apart from the inner surface of the body portion.
  • the cap is preferably coupled to the rotating part.
  • the cap has an upper insertion hole formed in the upper portion, a lower insertion hole formed in communication with the upper insertion hole in the lower portion, the lower end portion is rotatably inserted into the main insertion portion and the upper insertion hole of the main body portion, and moves up and down It is preferably made of a pressurized knob to be inserted into the lower insertion hole of the main body portion, and a puff engaging portion to be coupled to the pressurized knob.
  • the pressure knob is formed from the pressing plate, the first coupling portion protruding from the bottom of the pressing plate and coupled to the puff coupling portion, and protruding from the bottom surface of the pressing plate and spaced apart from the first coupling portion in the edge direction of the pressing plate. It is preferred that the second coupling portion is in contact with the upper insertion hole of the body portion.
  • an elastic member is inserted between the first coupling portion and the second coupling portion, and an edge member having a lower insertion hole is formed in an inner lower portion of the main body portion, and the edge member is in contact with the elastic member.
  • the engaging portion is formed in the second coupling portion in the direction of the main body portion, and a guide groove in which the engaging projection is inserted and moved between the upper insertion hole and the lower insertion hole of the main body portion is formed.
  • the guide groove preferably comprises a first guide groove formed in the vertical direction, and a second guide groove formed in the horizontal direction in communication with one side of the first guide groove.
  • the puff coupling portion is formed of a puff support member on which the puff is seated, a connection member extending from the upper surface of the puff support member, and an insertion protrusion protruding from the side of the connection member, and an insertion protrusion at the lower portion of the first coupling portion.
  • the subguide groove to be inserted is formed.
  • the sub guide groove is a first sub guide groove extending in the longitudinal direction from the lower end of the first coupling portion so that the insertion projection can be inserted
  • the second sub-channel is formed in the horizontal direction in communication with the upper side of the first sub guide groove It is preferably made of a sub guide groove.
  • the puff coupling portion is made of a puff support member to which the puff is coupled, and an adapter coupled to each other at the upper portion of the puff support member, and the adapter and the first coupling portion are preferably coupled to each other.
  • the cosmetic container according to the present invention has the effect of precisely adjusting the amount of the contents discharged from the container by forming a rotating portion, by allowing the pressing portion for pressing the contents contained in the cosmetic container to move in conjunction with the rotation of the rotating portion,
  • the dispersing member is installed on the outlet side of the outflow to distribute the cosmetics evenly discharged from the container.
  • Figure 6 is another embodiment of the present invention
  • Figure 1 is a perspective view of an embodiment of a cosmetic container equipped with a rotary knob according to an embodiment of the present invention
  • Figure 2 is an exploded perspective view of a cosmetic container equipped with a rotary knob according to an embodiment of the present invention.
  • FIG. 3 is a partially cutaway perspective view of a rotating part according to an embodiment of the present invention.
  • Figure 4 is a partially cutaway perspective view of the body portion according to an embodiment of the present invention.
  • FIG. 5 is an exploded perspective view of a cap according to an embodiment of the present invention.
  • FIG. 7 is an exploded perspective view of a cap according to another embodiment of the present invention.
  • body portion 110 hollow portion
  • second step 220 rotary knob
  • connection 540 slit
  • cap 610 main body
  • connecting member 632a engaging projection
  • cosmetic container hereinafter referred to as “cosmetic container” equipped with a rotary knob according to the present invention.
  • FIG. 1 is a perspective view of one embodiment of a cosmetic container according to the present invention
  • Figure 2 is an exploded perspective view of a cosmetic container.
  • the cosmetic container according to the present invention is coupled to the rotating part 200 and the rotating part 200, the body part 100 and the rotating part 200 disposed rotatably along the outer circumferential surface of the body part 100. Consists of the contents delivery pipe 300 is disposed in the lower portion of the 110, and the pressing portion 400 is rotatably coupled to the contents delivery pipe (300).
  • Body portion 100 of the cosmetic container according to the present invention is shown in Figure 2 and Figure 4 is a partially cutaway perspective view of the body portion 100 according to an embodiment of the present invention, the hollow portion accommodated therein It is preferable that 110 (see FIG. 4) is formed, and an opening 120 (see FIG. 2) communicating with the hollow portion 110 formed on the upper side.
  • Cosmetic container is formed in a cylindrical shape, the hollow portion 110 is formed to accommodate the contents therein, the upper side of the hollow portion 110 is in communication with the opening 120.
  • the hollow part 110 is a space in which the contents of the cosmetic are accommodated, and a hollow part 110 having a cylindrical shape may be formed as shown in FIG. 2, which is an embodiment of the present invention, and various pillars such as a square or hexagonal pillar shape. Hollow portion 110 of the shape may be formed.
  • the hollow portion 110 may be modified in various shapes as long as the contents of the cosmetic can be accommodated.
  • the opening 120 is a space in which the rotating part 200, the contents conveying pipe 300, the pressurizing part 400, and the contents are inserted and arranged, and the opening part 120 has a rotating part in a relationship with the rotating part 200 to be described later.
  • 200 is formed with a circular cross section so that it can be inserted and rotated.
  • the opening 120 of the body portion 100 may be formed in the upper and lower, if the opening 120 is formed in the lower, the lower opening 120 is lower It may be closed using the cap 130.
  • the upper surface of the lower cap 130 is formed with a concave portion 131, it is possible to allow the contents pressed by the pressing portion 400 to flow.
  • the rotating part 200 is inserted through the opening 120 of the body part 100 and is rotatably disposed along the outer circumferential surface of the body part 100.
  • the rotating part 200 is a part which the user grips to rotate the contents transfer pipe 300, as shown in FIG. 3 which is a partially cutaway perspective view of the rotating part 200 according to an embodiment of the present invention. It is preferable that the plate 210 is inserted into the 110 and the rotary knob 220 is bent to the edge of the plate 210, rotatably coupled to the outer peripheral surface of the body portion 100.
  • the dish portion 210 is a content that is dispersed so that the contents contained in the hollow portion 120 is buried in the puff 650 is seated on the upper surface, it is formed in a shape corresponding to the cross section of the opening 120 described above.
  • Rotating knob 220 is rotatably coupled to the outer peripheral surface of the body portion 100 at the edge of the dish portion 210.
  • the rotary knob 220 is bent in the upper direction at the edge of the dish portion 210, and is bent in the lower direction again to form a substantially '' shaped, inserted into the upper end of the body portion 100.
  • the dish portion 210 preferably has a recess 211 in which the insertion hole 211a is formed as shown in FIG. 3 so that the contents transfer pipe 300 can be inserted and coupled to the center side. .
  • the depression 211 is to be inserted into the contents delivery pipe 300, the depression formed in the downward direction of the plate portion 210, the insertion hole (211a) is formed in the center.
  • the contents transfer pipe 300 is inserted into the recess 211 through the insertion hole 211a from the upper direction of the dish portion 210 to the lower direction, as shown in FIG.
  • the outlet 311 is formed in the upper, it is preferable that the inlet 312 is formed in communication with the outlet 311 in the lower portion. And, the upper portion of the content transfer pipe 300 is coupled to the rotating portion 200, the lower portion is preferably disposed below the hollow portion (110).
  • the contents transfer pipe 300 has an outlet 311 formed at an upper portion thereof, an inlet 312 formed at a lower portion thereof, and a transfer path 314 between the outlet 311 and the inlet 312. ) Is in communication.
  • Outlets 311 and inlets 312 are formed at the upper end and the rear end of the sliding movement part 310, and a conveying path 314 is formed therein to convey the contents contained in the hollow part 110, in a cylindrical shape. Is formed.
  • a thread 313 is formed on the outer circumferential surface of the sliding moving part 310 so that the pressing part 400 is rotatably coupled to move downward.
  • the rotary coupling part 320 is inserted into the recess 211 and coupled to the rotating part 200, but may be formed on the sliding moving part 310, but is illustrated in FIG. 2 as an embodiment of the present invention. As described above, it is preferable that the upper portion of the side surface of the sliding movement part 310 is formed in contact with an edge contacting the upper surface.
  • the plate portion 210 and the rotary coupling portion 320 When the rotary coupling part 320 is formed to be spaced apart from the upper surface, that is, when the upper surface is spaced apart and formed on the upper side of the sliding movement part 310, the plate portion 210 and the rotary coupling portion 320 is When combined, the upper end portion of the sliding movement part 310 protrudes to the upper portion of the dish portion 210 and is combined with the dish portion 210.
  • the contents discharged through the outlet 311 formed at the upper end of the sliding movement part 310 is not evenly distributed in the dish portion 210.
  • the rotation coupling part 320 is preferably formed in contact with an edge contacting the upper surface of the upper side of the sliding movement part 310.
  • the convex portion 321 may be formed on the side surface of the rotary coupling part 320, and a part of the rotary part 200 according to the present invention may be partially cut at a portion of the recessed part 211 in contact with the side of the rotary coupling part 320.
  • FIG. 3 which is a perspective view, it is preferable that the concave portion 211b is formed so that the convex portion 321 and the concave portion 211b can be inserted and coupled when the rotary coupling portion 320 is inserted into the recessed portion 211.
  • the recess 211 includes a first step 211c and a second step 211d, and the rotation coupling part 320 is inserted between the second step 211d. It is preferably formed to be able to be combined.
  • the first step 211c is preferably formed to be bent in a downward direction from the upper surface of the dish portion 210 as a portion to which the dispersion member 500 to be described later will be coupled.
  • the second stepped portion 211d is a couple into which the rotary coupling part 320 described above is inserted, and is bent to form a stepped downward direction from the first stepped portion 211c, and the center portion of the second stepped portion 211d is provided.
  • the insertion hole 211a is formed to allow the sliding movement part 310 to be inserted therein.
  • the second stepped portion 211d and the rotary coupling part 320 may be coupled by interference, but as shown in FIG. 2, a convex portion 321 is formed on the side of the rotary coupling part 320, and the second stepped 211d is provided. ) And the rotary coupling portion 320 is in contact with the surface, as shown in Figure 3, the recess 211b is formed, it is preferable that the rotary coupling portion 320 and the plate portion 210 is more firmly coupled.
  • Pressing unit 400 is formed by pressing the member 410 and the shape of the shape corresponding to the shape of the flat cross-section of the hollow portion 110, the bending portion from the edge of the pressing member 410 body portion 100 It is preferable that the contact member 420 made in contact with the inner surface of the.
  • the pressing unit 400 is disposed in the hollow part 110 as shown in FIG. 4 and moves downward, and pressurizes the contents contained in the hollow part 110, to form a flat cross section of the hollow part 110. It is preferably formed in a corresponding shape.
  • the pressing part 400 is formed in a circular shape, and when the shape of the hollow part 110 is formed in a polygonal shape, the pressing part 400 is hollow. It may be formed in the shape of a polygon corresponding to the shape of the unit 110.
  • the pressing part 400 of the present exemplary embodiment is formed in a shape having a circular cross section. It became.
  • the center side of the pressing member 410 is preferably formed with a fastening hole 411 formed with a screw thread to be screwed with the screw thread 313 formed on the outer circumferential surface of the sliding moving part (310).
  • the close contact member 420 is bent and formed, as shown in Figures 2 and 4 so that the top and bottom is in close contact with the inner surface of the body portion 100, the center side is spaced apart from the inner surface of the body portion 100. It is preferable.
  • Guide grooves are formed in the contact member 420, and guide rails in the vertical direction in which the guide grooves are inserted in the body part 100 may be formed to induce movement of the contact member 420 in the vertical direction, but the body portion ( When the guide rail is formed at 100, the contents accommodated in the hollow part 110 may flow out to the upper portion of the pressing part 400 through the guide rail.
  • the close contact member 420 protrudes in the direction of the body portion 100 so that the upper and lower ends may be in close contact with the inner surface of the body portion 100, and the body may move downward.
  • the center side is preferably bent to be spaced apart from the inner surface of the body part 100.
  • the dispersion member 500 disposed on the first stepped portion 211c described above may have a through hole (not shown) through which contents are discharged in the center, and may have a shape corresponding to the shape of the first stepped 211c. have.
  • the dispersion member 500 may include a fixing piece 510 disposed on the first step 211c, a dispersion piece 520, and a connection piece 530.
  • the fixing piece 510 according to the present invention is preferably formed in a shape corresponding to the shape of the first step 211c, a through hole (not shown) in the center side, the dispersion piece 520 is through Inside the ball (not shown), it is preferable that the fixing piece 510 is spaced apart.
  • the plurality of connecting pieces 530 are formed to be spaced apart from each other between the fixing piece 510 and the dispersion piece 520, and a slit 540 is formed between the plurality of connecting pieces 530.
  • the fixing piece 510 is a portion that becomes the body of the dispersion member 500 and is formed in a shape corresponding to the first stepped 211c as shown in FIG. 4, and is fitted into the first stepped 211c.
  • the through hole (not shown) formed in the fixing piece 510 is formed on the upper portion of the rotary coupling part 320 inserted into and coupled to the second step 211d, and the outlet port formed at the upper end of the sliding moving part 310 ( It is formed at a position corresponding to 311).
  • Dispersion piece 520 is disposed in the through-hole (not shown) formed in the fixing piece 510 serves to evenly distribute the contents discharged from the outlet 311.
  • the connecting piece 530 formed between the fixing piece 510 and the dispersion piece 520 functions to connect the fixing piece 510 and the dispersion piece 520 and to give an elastic force to the dispersion piece 520.
  • the connecting piece 530 connected to the dispersion piece 520 is deformed by the pressure applied to the dispersion piece 520.
  • the deformed connecting piece 530 generates a restoring force to finely move the dispersion piece 520 in the downward direction.
  • the dispersion piece 520 When the dispersion piece 520 is moved downward, the contents discharged through the outlet 311 is pressurized by the dispersion piece 520 and discharged to the slit 540 between the dispersion piece 520 and the fixed piece 510. And evenly distributed in the dish portion 210.
  • the connecting piece 530 may be formed in an arc shape corresponding to the through hole.
  • a fine slit 540 is formed between the fixing piece 510 and the dispersion piece 520 in a shape corresponding to the through hole.
  • the slit 540 forms a space in which the contents are discharged between the fixing piece 510 and the dispersion piece 520, the contents discharged from the outlet 311 are formed on the upper surface of the dish portion 210 through the slit 540. More evenly distributed.
  • the sealing member 322 may be installed around the outlet 311 on the upper surface of the sliding movement part 310.
  • the sealing member 322 is installed on the sliding movement part 310 and is formed to be in contact with the bottom surface of the fixing piece 510, so that the contents discharged through the outlet 311 do not flow in the direction of the first step 211c. It serves to closely contact between the sliding moving part 310 and the fixing piece 510.
  • the dispersion member 500 When the dispersion member 500 is moved upward by a predetermined amount by the discharged pressure, the dispersion member 500 functions to disperse the contents in various directions, and when the dispersion member 500 moves downward according to the pressure, the dispersion member 500 opens and closes the outlet 311.
  • the dispersing piece 520 in a state of not being pressured by the contents contacts the outlet 311 and closes the outlet 311, and when the contents are discharged through the outlet 311, finely moves upwards. And open the outlet 311.
  • the pressing unit 400 coupled to the sliding moving part 310 of the contents conveying pipe 300 moves downward along the thread 313 of the sliding moving part 310. Done.
  • the contents pressurized by the pressing unit 400 are transferred to the conveying path 314 through the inlet 312 formed at the lower portion of the sliding moving part 310 of the contents conveying pipe 300, and to the conveying path 314.
  • the transferred contents are discharged to the outlet 311.
  • the discharged contents are evenly distributed on the dish portion 210 by the dispersion member 500.
  • Rotating portion 200 of the cosmetic container having such a configuration as shown in Figure 1 a, (cap, 600) is preferably coupled.
  • the cap 600 may simply use the cap 600 integrally formed to function to open and close the plate 210.
  • the cap 600 preferably includes a main body portion 610, a press knob 620, and a puff coupling portion 630.
  • Body portion 610 is the upper insertion hole 611 is formed at the top, the lower insertion hole 613 (see Fig. 6) is formed at the bottom, the lower end is coupled to the rotating part 200, It functions as a central support of the cap 600.
  • the body portion 610 may be formed in a hollow cylindrical shape, may be formed in a polygonal column shape, there is a circular upper insertion hole 611 and lower insertion hole 613 is formed therein, the upper insertion hole 611 and the lower insertion hole 613 is preferably formed to be in communication with each other.
  • the pressure knob 620 is rotatably inserted into the upper insertion hole 611 of the main body 610, as shown in Figure 5 is a partial cutaway perspective view of the cap 600 to be moved up and down , Combined with the pub fixing part 630 to shake and rotate the puff 650.
  • the pub fixing part 630 As shown in FIGS. 2 and 5, the pub fixing part 630 according to the present invention is inserted into the lower insertion hole 613 of the main body part 610, and is coupled to the pressure knob 620. 650 is seated at the bottom.
  • the pressure knob 620 is a pressure plate 621, the first coupling portion 622 is formed from the bottom of the pressing plate 621 is coupled to the puff coupling portion 630, and the pressure plate 621 Protruding from the bottom of the bottom surface and spaced apart from the first coupling portion 622 in the edge direction of the pressing plate 621 to the second coupling portion 623 which is in contact with the upper insertion hole 611 of the main body portion 610. It is preferable to make.
  • the pressure plate 621 is a portion in which the user applies pressure to the pressure knob 620, but in this embodiment, a substantially plate-shaped pressure plate 621 is employed, but is not necessarily limited to such a shape, such as rectangular, hexagonal shape, etc. It can be formed in various shapes.
  • the first coupling part 622 is coupled to the puff coupling part 630 and protrudes downward from the bottom of the first coupling part 622.
  • the first coupling part 622 is formed in a cylindrical shape, but is not necessarily limited to the shape, and may be modified in various shapes as long as it can be coupled to the puff coupling part 630. .
  • an insertion protrusion 622a protruding toward the main body portion 610 is formed at a lower portion of the first coupling portion 622, and a lower portion of the first coupling portion 622 is formed.
  • An incision groove 622c is formed.
  • Insertion protrusion 622a is when the pressing knob 620 is inserted into the main body 610, as shown in Figure 5 so as not to be separated in the upper direction, it is engaged with the rim member 612 is narrow in the lower direction ,
  • the upper direction is formed in the shape of a wide wedge.
  • the cutting groove 622c formed in the first coupling part 622 makes the deformation of the first coupling part 622 easier when the insertion protrusion 622a contacts the edge member 612 which will be described later.
  • the coupling part 622 may be more easily inserted into the body 610.
  • the second coupling portion 623 is in contact with the upper insertion hole 611 when inserted into the body portion 610, protruding from the bottom of the pressing plate 621, the first coupling in the direction of the edge of the pressing plate 621 It is formed spaced apart from the portion 622.
  • the elastic member 640 is inserted between the first coupling part 622 and the second coupling part 623 according to the present invention as shown in FIGS. 2 and 5.
  • the elastic member 640 is to restore the pressing knob 620 moved in the downward direction in this embodiment, as shown in Figure 2 and 5, but the coil spring was used, but is not limited to the coil spring, the leaf spring Various elastic members such as these may be used.
  • the edge member 612 having a lower insertion hole 613 formed in the inner lower part of the main body part 610. Is preferably formed.
  • the edge member 612 is formed in the inner direction of the main body 610, and is formed to be in contact with the elastic member 640 inserted between the first coupling portion 622 and the second coupling portion 623. .
  • the puff coupling part 630 includes a puff support member 631 on which the puff 650 is seated, and a connection member 632 extending on an upper surface of the puff support member 631. It is preferable that it consists of).
  • the side of the puff connection member 632, the engaging projection 632a is formed protruding, it is preferable that the insertion projection 632b is formed on the top surface of the puff connection member 632.
  • connection member 632 extends upward from the upper surface of the puff support member 631 as a portion that is coupled to the first coupling portion 622.
  • a coupling protrusion 632a protruding in the direction of the main body 610 is formed at the side of the connection member 632, and a coupling hole 622b into which the coupling protrusion 632a is inserted at the center of the first coupling portion 622. Is formed.
  • the coupling member 632 is deformed more smoothly so that the coupling protrusion 632a.
  • the insertion protrusion 632b is formed to be coupled to the coupling hole 622b.
  • the engaging portion 623a is formed in the second coupling portion 623 in the main body portion 610, and the upper insertion hole 611 of the main body portion 610 is formed. It is preferable that the guide groove 614 is formed between the lower insertion holes 613 so that the locking protrusion 623a is inserted and moved.
  • the engaging protrusion 623a formed in the second coupling part 623 and the guide groove 614 formed in the main body part 610 guide the movement direction when the pressure knob 620 moves.
  • the guide groove 614 is preferably made of a first guide groove 614a formed in the longitudinal direction, and a second guide groove 614b formed in the horizontal direction in communication with one side of the first guide groove 614a. .
  • the vertical direction refers to the height direction of the main body 610 as illustrated in FIG. 2, and the horizontal direction refers to the width direction of the main body 610.
  • the first guide groove 614a formed in the vertical direction guides the movement of the pressure knob 620 in the vertical direction
  • the second guide groove 614b guides the movement of the pressure knob 620 in the rotational direction.
  • the second guide groove 614b communicates with the second guide groove 614b communicating with the upper end of the first guide groove 614a and the lower end of the first guide groove 614a. It can be divided into three guide grooves (614c).
  • the second guide groove 614b and the third guide groove 614c are merely divided according to the formation position of the guide groove 614 for easier explanation.
  • the pressure knob 620 may move in the vertical direction, but the locking projection 623a is the second guide groove 614b and the third guide groove 614c. ), The locking protrusion 623a may not move in contact with the inner surfaces of the second guide groove 614b and the third guide groove 614c even when the pressing knob 620 is pressed upward and downward.
  • the pressure knob 620 is moved downward to protrude the puff 650, and the locking projection 623a is formed in the third guide groove ( 614c is used to rotate the pressure knob 620 to fix the puff 650.
  • the pressure knob 620 when not in use, the pressure knob 620 is moved upwards, and the locking projection 623a is positioned in the second guide groove 614b to fix the pressure knob 620 so as not to move downward. Can be used.
  • Insertion protrusion 632b is formed on the side of the connection member 632 of the puff coupling portion 630, and a sub guide groove 622d into which the insertion protrusion 632b is inserted is formed at the lower portion of the first coupling portion 622. It may be.
  • the insertion protrusion 632b is inserted into the subguide groove 622d formed inside the first coupling part 622, and the puff coupling part 630 and the pressure knob 620 are coupled to each other. It functions to make it easier to separate.
  • the subguide groove 622d is formed on the inner side of the first coupling part 622, but the formation position of the subguide groove 622d is formed at a position corresponding to the position of the insertion protrusion 632b. It can be changed depending on the formation position of the insertion protrusion 632b.
  • the sub guide groove 622d includes a first sub guide groove 622d1 extending in a longitudinal direction from the lower end of the first coupling portion 622 so that the insertion protrusion 632b can be inserted therein, and the first sub guide groove.
  • the second sub guide groove 622d2 is formed in communication with the upper side of the 622d1 and is bent in the horizontal direction.
  • the pressure knob 620 and the puff coupling part 630 may be coupled or separated, and the insertion protrusion 632b may be disposed in the second sub guide groove 622d1.
  • the pressure knob 620 and the puff coupling part 630 are stably coupled.
  • the puff coupling part 630 includes a puff support member 631 to which the puff 650 is coupled, and an adapter 634 coupled to each other at an upper portion of the puff support member 631.
  • the adapter 634 and the first coupling part 622 may be coupled to each other.
  • a connection member 632 coupled to the adapter 634 is formed on an upper surface of the puff support member 631, a protrusion 633 is formed on a bottom surface thereof, and a puff coupled to the puff 650 on an inner surface of the protrusion 633.
  • a locking jaw 633a is formed.
  • the adapter 634 is composed of an adapter support member 634a, an adapter coupling member 634b, and a support member coupling protrusion 634e.
  • the adapter support member 643a is a portion that becomes the body of the adapter 634, and an adapter coupling member 634b coupled to the first coupling portion 622 is formed on an upper surface thereof, and a support portion coupled to the connection member 632 on the bottom surface thereof.
  • the recombination protrusion 634e is formed.
  • the adapter coupling member 634b is formed with an adapter coupling protrusion 634c coupled to the coupling hole 622b of the pressure knob 620, and the adapter coupling member 634b has an adapter coupling protrusion 634c with a coupling hole ( When inserted into the 622b, the inlet groove 634d is formed to facilitate the deformation of the adapter coupling member 234b to facilitate the coupling of the coupling hole 622b and the adapter coupling protrusion 634c.
  • connection member 632 and the support member coupling protrusion 634e may be coupled using various coupling methods such as male and female coupling and screw coupling, and are coupled in a screw coupling manner in this embodiment.
  • the edge of the adapter support member 634a contacts the bottom of the edge member 612 of the body portion 610 so that the pressure knob 620 is the body portion 610.
  • the puff coupling part 630 having such a structure is a puff support member 631 and a support member coupling protrusion 634e to which the puff 630 is coupled, so that the puff support member 631 is screwed into the support member coupling protrusion 634e. It can be combined and separated more easily.

Landscapes

  • Closures For Containers (AREA)
  • Containers And Packaging Bodies Having A Special Means To Remove Contents (AREA)

Abstract

Selon l'invention, un récipient à produit cosmétique muni d'une capsule rotative comprend: un corps principal dont l'intérieur présente une partie creuse de rétention du contenu et le côté supérieur une ouverture communiquant avec la partie creuse; un module rotatif dont l'intérieur est inséré dans l'ouverture du corps principal et l'extérieur arrangé rotatif le long de la surface extérieure du corps principal; un tube de distribution du contenu dont la partie supérieure comprend un orifice de sortie et la partie inférieure un orifice d'entrée communiquant avec l'orifice de sortie, la partie supérieure étant rattachée au module rotatif et la partie inférieure étant située sous la partie creuse; et un module de pression disposé dans la partie creuse et couplé rotatif au tube de distribution du contenu. Le récipient à produit cosmétique de l'invention comprend un module rotatif et permet au module de pression, destiné à presser le contenu placé dans le récipient à produit cosmétique, de se déplacer suivant la rotation du module rotatif, dosant ainsi avec précision la quantité de contenu déchargée du récipient à produit cosmétique. De plus, le récipient à produit cosmétique de l'invention comprend un module de dispersion disposé au niveau de l'orifice de sortie pour décharger le contenu et disperser de manière uniforme le produit cosmétique déchargée du récipient.
PCT/KR2010/008722 2009-12-08 2010-12-07 Récipient à produit cosmétique muni d'une capsule rotative WO2011071301A2 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
KR10-2009-0121446 2009-12-08
KR1020090121446A KR101123050B1 (ko) 2009-12-08 2009-12-08 회전노브가 구비된 화장품 용기

Publications (2)

Publication Number Publication Date
WO2011071301A2 true WO2011071301A2 (fr) 2011-06-16
WO2011071301A3 WO2011071301A3 (fr) 2011-11-10

Family

ID=44146041

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/KR2010/008722 WO2011071301A2 (fr) 2009-12-08 2010-12-07 Récipient à produit cosmétique muni d'une capsule rotative

Country Status (2)

Country Link
KR (1) KR101123050B1 (fr)
WO (1) WO2011071301A2 (fr)

Cited By (4)

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CN108773556A (zh) * 2018-08-10 2018-11-09 佛山市觉醒自律智能科技有限公司 液体容纳瓶
US20200187626A1 (en) * 2018-12-14 2020-06-18 Amorepacific Corporation Cosmetic container
US10752412B1 (en) 2019-11-06 2020-08-25 Berlin Packaging, Llc Child resistant container with pump actuator
USD920805S1 (en) 2019-05-30 2021-06-01 Berlin Packaging, Llc Container with pump actuator

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KR101300090B1 (ko) * 2011-11-14 2013-08-30 주식회사 삼화플라스틱 액상 용기의 배출 장치
KR101159307B1 (ko) * 2012-01-27 2012-06-22 신기봉 화장품 용기
KR200479430Y1 (ko) * 2013-07-15 2016-01-27 강성일 행정거리가 짧은 배출펌프와 내용물 확산부재를 구비한 파운데이션 용기
KR101666012B1 (ko) * 2015-04-28 2016-10-14 (주)연우 스틱형 화장품 용기
KR101894490B1 (ko) * 2016-12-08 2018-09-03 주식회사 뷰티랩 화장품 용기
KR101896042B1 (ko) * 2017-03-10 2018-09-06 (주)셀트리온 가압 토출식 콤팩트 용기

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KR200242026Y1 (ko) * 2001-03-10 2001-10-06 강성일 회전식 배출 장치를 구비한 화장품 용기
KR200288441Y1 (ko) * 2002-03-14 2002-09-10 강성일 회전식 배출구조를 갖는 화장품 용기
KR20050072658A (ko) * 2004-01-07 2005-07-12 고도부키 인사츠시코 가부시키가이샤 액체용기
KR20070040057A (ko) * 2005-10-11 2007-04-16 변영광 토출형 액상 화장품용기

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KR200242026Y1 (ko) * 2001-03-10 2001-10-06 강성일 회전식 배출 장치를 구비한 화장품 용기
KR200288441Y1 (ko) * 2002-03-14 2002-09-10 강성일 회전식 배출구조를 갖는 화장품 용기
KR20050072658A (ko) * 2004-01-07 2005-07-12 고도부키 인사츠시코 가부시키가이샤 액체용기
KR20070040057A (ko) * 2005-10-11 2007-04-16 변영광 토출형 액상 화장품용기

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108773556A (zh) * 2018-08-10 2018-11-09 佛山市觉醒自律智能科技有限公司 液体容纳瓶
US20200187626A1 (en) * 2018-12-14 2020-06-18 Amorepacific Corporation Cosmetic container
US11547197B2 (en) * 2018-12-14 2023-01-10 Amorepacific Corporation Cosmetic container
USD920805S1 (en) 2019-05-30 2021-06-01 Berlin Packaging, Llc Container with pump actuator
US10752412B1 (en) 2019-11-06 2020-08-25 Berlin Packaging, Llc Child resistant container with pump actuator

Also Published As

Publication number Publication date
KR20110064730A (ko) 2011-06-15
KR101123050B1 (ko) 2012-03-16
WO2011071301A3 (fr) 2011-11-10

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