US3715063A - Cap structure holding an inner closure - Google Patents

Cap structure holding an inner closure Download PDF

Info

Publication number
US3715063A
US3715063A US00123199A US3715063DA US3715063A US 3715063 A US3715063 A US 3715063A US 00123199 A US00123199 A US 00123199A US 3715063D A US3715063D A US 3715063DA US 3715063 A US3715063 A US 3715063A
Authority
US
United States
Prior art keywords
cap
inner closure
flange means
flange
bead
Prior art date
Legal status (The legal status 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 status listed.)
Expired - Lifetime
Application number
US00123199A
Inventor
R Susuki
S Miyamoto
H Hoshi
S Araki
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Lion Fat and Oil Co Ltd
Original Assignee
Lion Fat and Oil Co Ltd
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 Lion Fat and Oil Co Ltd filed Critical Lion Fat and Oil Co Ltd
Application granted granted Critical
Publication of US3715063A publication Critical patent/US3715063A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • 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
    • B65D47/00Closures with filling and discharging, or with discharging, devices
    • B65D47/04Closures with discharging devices other than pumps
    • B65D47/06Closures with discharging devices other than pumps with pouring spouts or tubes; with discharge nozzles or passages
    • B65D47/12Closures with discharging devices other than pumps with pouring spouts or tubes; with discharge nozzles or passages having removable closures
    • B65D47/122Threaded caps
    • 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
    • B65D51/00Closures not otherwise provided for
    • B65D51/18Arrangements of closures with protective outer cap-like covers or of two or more co-operating closures
    • 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
    • B65D2251/00Details relating to container closures
    • B65D2251/0003Two or more closures
    • B65D2251/0006Upper closure
    • B65D2251/0015Upper closure of the 41-type
    • 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
    • B65D2251/00Details relating to container closures
    • B65D2251/0003Two or more closures
    • B65D2251/0068Lower closure
    • B65D2251/0087Lower closure of the 47-type

Definitions

  • ABSTRACT A cap structure holding an inner closure within an outer cap as one body, which is conveniently fixed to a container neck by means of a capping machine and leaves the inner closure on a container neck when the outer cap is removed from a container neck after th cap has been fixed on a container neck.
  • PATENTEDFEB 6 I973 FIGS 3.715063 SHEET 40) 4 33 do 26 3o CAP STRUCTURE HOLDING AN INNER CLOSURE FIELD OF THE INVENTION
  • This invention relates to a cap structure holding an inner closure and more particularly to a cap structure holding an inner closure suitable for containers for liquids, semiliquids, granular materials, and the like.
  • an inner closure is used with the purpose of controlling the quantity of contents being dispensed, regulating the direction of distribution of contents being dispensed, or restricting the cross section of flow of contents being dispensed to such specific contour as a circle, star, etc, when liquids, semiliquids, granular materials, and the like are dispensed from containers.
  • Examples of such an inner closure are one for a liquid detergent container which controls the quantity of detergent being dispensed by means of small perforations thereon, one for a chemical seasoning container having a large number of small perforations thereon, and, one for a cream or mayonnaise container having a hole through which contents are squeezed.
  • FIG. I A conventional typical cap structure which leaves an inner closure on a container neck when the cap is removed from a container neck is shown in FIG. I.
  • This cap structure forms a cap 3 having a top plate I and a skirt section 2, on the internal periphery of the skirt section 2 being provided a bead 4, and also forms an inner closure 7 having a top plate 5 and a skirt section 6, the free end edge of the skirt section 6 being projected inwards to form a bead 8, and prevents the inner closure 7 from getting out of place by holding the external peripheral end 9 of the skirt section 6 of the inner closure 7 with the bead 4 on the said cap and also by engaging the bead 8 on the inner closure 7 with a groove 11 formed along the external periphery of the bottle neck after the cap has been fixed on the bottle neck 10.
  • this cap structure has its technical drawbacks in that the bead 4 to be formed on the internal periphery of the cap 3 and the bead 8 to be formed on the inner closure 7 can not be made so high in actuality due to difficulties in demolding 0.5 mm at best, and because of lack of uniformity in molding dimensions variation as much as 0.2 to 0.3 mm is common, the force to retain the inner closure is not so great and therefore retention of the inner closure by the cap and fixation of the inner closure to the container neck are not secure after the cap has been fixed to a container.
  • the present invention provides a cap structure which retains the inner closure most effectively, completed as the result of study with the purpose of solving drawbacks involved in the conventional cap structure as described above.
  • the primary object of the present invention is to provide a cap structure in which an inner closure is securely held in a cap before the cap is fixed on a container neck and the inner closure is securely retained on a container retained after the cap has been fixed on a container neck.
  • the secondary object of the invention is to provide a cap structure in which retention of an inner closure in a cap is secure before the cap is fixed on a container neck and retention of an inner closure on a container neck is secure and stable after the cap has been fixed on a container neck and an inner closure has the retaining mechanism suitable for plastics-molded containers which are difficult to control to accurate dimensions.
  • the third object of the invention is to provide a cap structure in which an inner closure 7 is securely held by a cap 3 while the cap is being fixed by a capping machine and an inner closure is held in such a manner that facilitates handling.
  • the fourth object of the invention is to provide a cap structure in which is held an inner closure in such a way that an inner closure is smoothly engaged with a groove formed on the external periphery of a container neck when a cap and an inner closure are fixed as one body on a container neck.
  • the fifth object of the invention is to provide a cap structure in which is held an inner closure so designed that the cap alone is easily removed when the cap is unscrewed from a container neck, yet the inner closure remains securely on a container neck.
  • the sixth object of the invention is to provide a cap structure in which retention of-an inner closure in a cap and retention of an inner closure on a container neck is made secure in spite of lack of uniformity in molding dimensions, by simply forming a moldable low bead or groove on a cap, inner closure, or container neck,
  • the invention provides, in combination, a container, an inner closure, and a cap, the container comprising a tubular neck having a portion of larger outer diameter disposed suprajacent a portion of smaller outer diameter to provide a downwardly facing shoulder means between the portions, the inner closure comprising a top plate having means defining a dispensing opening therethrough, and a peripheral skirt, circumferential resilient flange means extending generally horizontally radially inwardly and radially outwardly from connection with the skirt, near the lower extent thereof, the circumferential flange means being flexible generally angularly about the angular axis of the skirt at the level of the flange means connection therewith to general frusto-conicality, oriented to have its inner peripheral diameter disposed above where it had been when the flange means was generally horizontal and to have its outer peripheral diameter disposed below where it had been when the flange means was generally horizontal, the cap comprising a top plate and a peripheral skirt having an inner peripheral surface, the skirt having.
  • the diameter of the outer peripheryof the flange means when unflexed being at least as large as the innermost radial extent of the bead means on the cap, relative to the longitudinal axis of the inner closure so that in inserting the inner closure into the cap so the two skirts project in the same sense from the two respective top plates and urging the top plate of the innerclosure sufficiently toward the top plate of the cap that the outer periphery of the flange means passes the bead means on the cap to temporarily assemble the inner closure to the cap, the flange means are engaged by the bead means as these two pass, the diameter of the inner periphery of the flange means after the flange means outer periphery has passed the bead means on the cap being smaller than the radially outer extent of the larger outer diameter portion of the tubular neck of the container so that as the temporarily assembled inner closure and cap are installed upon the tubular neck the inner periphery of the flange means engages as
  • FIG. 1 is an overall front view of an example of a conventional well-known cap structure holding an inner closure, fixed on a container neck, major parts of the structure being shown as a sectional view;
  • FIG. 2 is a longitudinal sectional side view of an inner closure of a first embodiment of the invention, cut in the direction of diameter;
  • FIG. 3 is a longitudinal sectional side view of an inner closure, as shown in FIG. 2, held by a cap;
  • FIG. 4 is an overall front view of a cap structure of i the first embodiment of the invention fixed on a container neck, major parts of the structure being shown as a sectional view;
  • FIG. 5 is a front view same as FIG. 4 above, showing a cap structure of a second embodiment of the invention fixed on a container neck, major parts of the structure being shown as a sectional view;
  • FIG. 6 is a sectional view of a catch ofa cap.
  • the numeral designates an inner closure, integrally molded from plastics material into a hollow cylindrical shape having a top plate 21 and a skirt 22. At the center of the said top plate 21 is provided a dispensing hole 23, through which such contents as liquids, semiliquids, granular materials, and the like are dispensed.
  • a flange 24 horizontally with respect to the skirt 22.
  • the external peripheral end of this flange 24 is designated by the numeral 25, and the diameter at this part is assumed a.
  • the internal peripheral end of the flange 24 is designated by the numeral 26.
  • the numeral 27 designates a cap, integrally molded from plastics material into a hollow cylindrical shape having a top plate 28 and a skirt 29. At the intermediate position of the said skirt 29 is formed a head 30 along the internal peripheral surface thereof.
  • the inside diameter b at the internal surface above the said bead 30 is not greater than a; in other words b S a. Consequently, when the inner closure 20 is placed in the cap 27, the flange 24 of the inner closure 20 rotates inwards of the inner closure 20 around the connecting part to the skirt 22, and thus the external peripheral end 25 of the flange 24 fits to the head 30 of the cap 27, causing the inner closure 20 to be securely held.
  • the diameter of the internal peripheral end 26 of the inner closure 20 when held in the cap is assumed c.
  • the flange 24 of the inner closure 20 tends to return to the horizontal state orthogonal with respect to the skirt 22 in the vertical state as shown in FIG. 2, resulting in more secure fit.
  • the relation d c is established between d and the diameter 0 of the internal peripheral end 26 of the flange 24 when the said inner closure 20 is held securely by the cap 27.
  • the greater diameter part above the said groove 32 is designated by the numeral 33. Therefore, when the cap 27 holding the inner closure 20 is fixed on the container neck 31, the flange 24 of the inner closure 20 is rotated more than the state as shown in FIG.
  • the flange 24 of the inner closure 20 is molded on the entire periphery of the lower end of the skirt 22, but the flange may be of discontinuous type molded at a plurality of positions (at least two positions equally dividing the circumference) on the circumference.
  • FIG. 5 and FIG. 6 a cap structure in the second example of the invention is described.
  • the numeral 31 designates the container neck, on the upper part of the external periphery of which is formed a groove 32.
  • An upward tapered section 34 is formed from the upper part of the groove 32 to the upper end of the container neck 31, in order to facilitate the inner closure to be fixed.
  • the inner closure 20 is nearly of hollow cylindrical shape having a top plate 21 and a skirt 22', as with the first example described in the above.
  • a dispensing nozzle 23 To the top plate 21 is provided a dispensing nozzle 23.
  • a flange 24 which inclines toward the inside of the inner closure 20.
  • the inside diameter of the peripheral end 26 of the flange 24 is made sufficiently smaller than the outside diameter of the greater diameinternal ter part 33 above the groove 32, so that the secure engagement is accomplished.
  • a slit 36 along the entire periphery thereof. This slit 36 is to facilitate the external peripheral end of the flange 24 to bend inwards.
  • the cap 27 is nearly of hollow cylindrical shape with a top plate 28 and a skirt 29, which engages with the container neck 31.
  • On the internal periphery of the cap is formed a plurality of beads 30 at the at the positions corresponding with the external peripheral end 25 of the flange 24 of the said inner closure 20. (Six positions in the illustrated example.)
  • the outside diameter of the external peripheral end of the flange of the inner closure 20 is made considerably larger than the inside diameter of the beads 30 of the cap 27 so that the inner closure 20 is securely held inside the cap 27.
  • the inner closure 20 is securely held in the cap 27, and once the cap and inner closure are fixed as one body on a container neck 31 the internal peripheral end 26 of the flange 24 of the inner closure 20 mates with the groove 32 and disengagement in the upward direction is securely prevented by the greater diameter part 33.
  • the cap 27 is to be removed the cap can be removed with ease leaving the inner closure securely held on a container neck because the external peripheral end 25 of the flange 24 is easily bent inwards owing to the slit 36.
  • the present invention facilitates the handling of the cap because the inner closure is securely held in the cap when the cap is placed on a capping machine. Further, when the cap is removed from a container neck after the cap has been fixed on a container neck, it is possible to leave the inner closure alone on a container neck because the internal peripheral end of the flange of the inner closure is so designed as to engage securely with the groove formed on the external periphery of the container neck. Therefore, this structure can be said to be convenient for plastics-molded containers which are difficult to control their dimensions accurately.
  • a container an inner closure, and a cap
  • said container comprising a tubular neck having a portion of larger outer diameter disposed suprajacent a portion of smaller outer diameter to provide a downwardly facing shoulder means between said portions;
  • said inner closure comprising a top plate having means defining a dispensing opening therethrough, and a peripheral skirt;
  • circumferential resilient flange means extending generally horizontally radially inwardly and radially outwardly from connection with said skirt, near the lower extent thereof, said circumferential flange means being flexible generally angularly about the angular axis of the skirt at the level of the flange means connection therewith to general frusto-conicality oriented to have its inner peripheral diameter disposed above where it had been when the flange means was generally horizontal and to have its outer peripheral diameter disposed below where it had been when the flange means was generally horizontal;
  • said cap comprising a top plate and a peripheral skirt having an inner peripheral surface; said skirt having bead means formed at a level about said surface;
  • the diameter of the outer periphery of the flange means when unflexed being at least as large as the innermost radial extent of the bead means on said cap, relative to the longitudinal axis of the inner closure, so that in inserting the inner closure into the cap so the two skirts project in the same sense from the two respective top plates and urging the top plate of the inner closure sufficiently toward the top plate of the cap that the outer periphery of the flange means passes the bead means on the cap to temporarily assemble the inner closure to the cap, the flange means are engaged by the bead means as these two pass;
  • the diameter of the inner periphery of the flange means after the flange means outer periphery has passed the bead means on the cap being smaller than the radially outer extent of said larger outer diameter portion of the tubular neck of the container so that as the temporarily assembled inner closure and cap are installed upon said tubular neck the inner periphery of the flange means engages as it passes the larger outer diameter portion of the tubular neck and flexes the flange means toward said general frusto-conicality, this disposition being maintained when the inner periphery of the flange means becomes disposed below said downwardly facing shoulder means at least to such extent that the outer periphery of the flangemeans is of smaller diameter than the innermost radial extent of the bead means on said cap, relative to the longitudinal axis of the inner closure, so that the temporary assembly of the inner closure to the cap is extinguished.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Closures For Containers (AREA)

Abstract

A cap structure holding an inner closure within an outer cap as one body, which is conveniently fixed to a container neck by means of a capping machine and leaves the inner closure on a container neck when the outer cap is removed from a container neck after the cap has been fixed on a container neck.

Description

United States Patent Susuki et al.
CAP STRUCTURE HOLDING AN INNER CLOSURE Inventors: Rinnosuke Susuki, Tokyo; Hiroshi Hoshi, Narashino, Chiba-ken; Shinichi Araki, Funabashi; Shinzo Miyamoto, Soka, all of Japan Raion Yushi Kabushiki Kaisha, Tokyo, Japan Filed: March 11, 1971 Appl. No 123,199
Assignee:
Foreign Application Priority Data I March l8, 1970 Japan ..45/26067 March 19, 1970 Japan ..45/26654 U.S. Cl... ..222/545, 222/570 Int. Cl. ..'....;....B67d 3/00 Field of Search ..222/498, 147, 570, 562, 545, 222/546, 547; 215/38 R 1451 Feb, 6, 1973 [56] References Cited UNITED STATES PATENTS 3,l36,458 6/1964 Ruetz.... 222/493 973,066 10/1910 Phillips ..222/562 Primary ExaminerRobert B. Reeves Assistant Examiner-John P. Shannon Att0rneyCushman, Darby & Cushman [57] ABSTRACT A cap structure holding an inner closure within an outer cap as one body, which is conveniently fixed to a container neck by means of a capping machine and leaves the inner closure on a container neck when the outer cap is removed from a container neck after th cap has been fixed on a container neck.
5 Claims, 6 Drawing Figures PATENTED F B 5 7 SHEET 10F 4 FIG.)
3,715,063 PATENTEDFEB 6 I975 SHEET 20F 4 23 r 20 III/I01 2 sum 30F 4 FIG.4
PATENTEDFEB 6 I973 FIGS 3.715063 SHEET 40) 4 33 do 26 3o CAP STRUCTURE HOLDING AN INNER CLOSURE FIELD OF THE INVENTION This invention relates to a cap structure holding an inner closure and more particularly to a cap structure holding an inner closure suitable for containers for liquids, semiliquids, granular materials, and the like.
BACKGROUND OF THE INVENTION It is well known that an inner closure is used with the purpose of controlling the quantity of contents being dispensed, regulating the direction of distribution of contents being dispensed, or restricting the cross section of flow of contents being dispensed to such specific contour as a circle, star, etc, when liquids, semiliquids, granular materials, and the like are dispensed from containers. Examples of such an inner closure are one for a liquid detergent container which controls the quantity of detergent being dispensed by means of small perforations thereon, one for a chemical seasoning container having a large number of small perforations thereon, and, one for a cream or mayonnaise container having a hole through which contents are squeezed. In such applications it is required that a cap and an inner closure can be efficiently fixed as one body on a container neck by means of a capping machine and that when the user removes the cap from a container neck the cap is removed but the inner closure remains on a container neck. A conventional typical cap structure which leaves an inner closure on a container neck when the cap is removed from a container neck is shown in FIG. I. This cap structure forms a cap 3 having a top plate I and a skirt section 2, on the internal periphery of the skirt section 2 being provided a bead 4, and also forms an inner closure 7 having a top plate 5 and a skirt section 6, the free end edge of the skirt section 6 being projected inwards to form a bead 8, and prevents the inner closure 7 from getting out of place by holding the external peripheral end 9 of the skirt section 6 of the inner closure 7 with the bead 4 on the said cap and also by engaging the bead 8 on the inner closure 7 with a groove 11 formed along the external periphery of the bottle neck after the cap has been fixed on the bottle neck 10.
Although expressed in words as above, this cap structure has its technical drawbacks in that the bead 4 to be formed on the internal periphery of the cap 3 and the bead 8 to be formed on the inner closure 7 can not be made so high in actuality due to difficulties in demolding 0.5 mm at best, and because of lack of uniformity in molding dimensions variation as much as 0.2 to 0.3 mm is common, the force to retain the inner closure is not so great and therefore retention of the inner closure by the cap and fixation of the inner closure to the container neck are not secure after the cap has been fixed to a container.
SUMMARY OF THE INVENTION,
The present invention provides a cap structure which retains the inner closure most effectively, completed as the result of study with the purpose of solving drawbacks involved in the conventional cap structure as described above.
The primary object of the present invention is to provide a cap structure in which an inner closure is securely held in a cap before the cap is fixed on a container neck and the inner closure is securely retained on a container retained after the cap has been fixed on a container neck.
The secondary object of the invention is to provide a cap structure in which retention of an inner closure in a cap is secure before the cap is fixed on a container neck and retention of an inner closure on a container neck is secure and stable after the cap has been fixed on a container neck and an inner closure has the retaining mechanism suitable for plastics-molded containers which are difficult to control to accurate dimensions.
The third object of the invention is to provide a cap structure in which an inner closure 7 is securely held by a cap 3 while the cap is being fixed by a capping machine and an inner closure is held in such a manner that facilitates handling.
The fourth object of the invention is to provide a cap structure in which is held an inner closure in such a way that an inner closure is smoothly engaged with a groove formed on the external periphery of a container neck when a cap and an inner closure are fixed as one body on a container neck.
The fifth object of the invention is to provide a cap structure in which is held an inner closure so designed that the cap alone is easily removed when the cap is unscrewed from a container neck, yet the inner closure remains securely on a container neck.
The sixth object of the invention is to provide a cap structure in which retention of-an inner closure in a cap and retention of an inner closure on a container neck is made secure in spite of lack of uniformity in molding dimensions, by simply forming a moldable low bead or groove on a cap, inner closure, or container neck,
which does not need a precise mold nor skilled technique so much.
The invention provides, in combination, a container, an inner closure, and a cap, the container comprising a tubular neck having a portion of larger outer diameter disposed suprajacent a portion of smaller outer diameter to provide a downwardly facing shoulder means between the portions, the inner closure comprising a top plate having means defining a dispensing opening therethrough, and a peripheral skirt, circumferential resilient flange means extending generally horizontally radially inwardly and radially outwardly from connection with the skirt, near the lower extent thereof, the circumferential flange means being flexible generally angularly about the angular axis of the skirt at the level of the flange means connection therewith to general frusto-conicality, oriented to have its inner peripheral diameter disposed above where it had been when the flange means was generally horizontal and to have its outer peripheral diameter disposed below where it had been when the flange means was generally horizontal, the cap comprising a top plate and a peripheral skirt having an inner peripheral surface, the skirt having.
bead means formed at a level about the surface, the diameter of the outer peripheryof the flange means when unflexed being at least as large as the innermost radial extent of the bead means on the cap, relative to the longitudinal axis of the inner closure so that in inserting the inner closure into the cap so the two skirts project in the same sense from the two respective top plates and urging the top plate of the innerclosure sufficiently toward the top plate of the cap that the outer periphery of the flange means passes the bead means on the cap to temporarily assemble the inner closure to the cap, the flange means are engaged by the bead means as these two pass, the diameter of the inner periphery of the flange means after the flange means outer periphery has passed the bead means on the cap being smaller than the radially outer extent of the larger outer diameter portion of the tubular neck of the container so that as the temporarily assembled inner closure and cap are installed upon the tubular neck the inner periphery of the flange means engages as it passes the larger outer diameter portion of the tubular neck and flexes the flange means toward the general frustoconicality, this disposition being maintained when the inner periphery of the flange means becomes disposed below the downwardly facing shoulder means at least to such extent that the outer periphery of the flange means is of smaller diameter than the innermost radial extent of the bead means on the cap, relative to the longitudinal axis of the inner closure, so that the temporary assembly of the inner closure to the cap is extinguished.
Other objects and advantages of the invention will be apparent from the following description taken in conjugation with the accompanying drawing wherein:
FIG. 1 is an overall front view of an example of a conventional well-known cap structure holding an inner closure, fixed on a container neck, major parts of the structure being shown as a sectional view;
FIG. 2 is a longitudinal sectional side view of an inner closure of a first embodiment of the invention, cut in the direction of diameter;
FIG. 3 is a longitudinal sectional side view of an inner closure, as shown in FIG. 2, held by a cap;
FIG. 4 is an overall front view of a cap structure of i the first embodiment of the invention fixed on a container neck, major parts of the structure being shown as a sectional view;
FIG. 5 is a front view same as FIG. 4 above, showing a cap structure of a second embodiment of the invention fixed on a container neck, major parts of the structure being shown as a sectional view;
FIG. 6 is a sectional view ofa catch ofa cap.
DETAILED DESCRIPTION OF THE INVENTION With reference now to FIG. 2 and FIG. 4, the cap structure of the first embodiment of the invention is explained.
In FIG. 2 the numeral designates an inner closure, integrally molded from plastics material into a hollow cylindrical shape having a top plate 21 and a skirt 22. At the center of the said top plate 21 is provided a dispensing hole 23, through which such contents as liquids, semiliquids, granular materials, and the like are dispensed. On the free end of the skirt 22 of the said inner closure 20 is formed a flange 24 horizontally with respect to the skirt 22. The external peripheral end of this flange 24 is designated by the numeral 25, and the diameter at this part is assumed a. And the internal peripheral end of the flange 24 is designated by the numeral 26. Hence, the external peripheral end 25 and internal peripheral'end 26 of the flange 24 project inwards and outwards of the inner closure 20 a little beyond the internal and external peripheral surfaces of the skirt 22, and yet the flange 24 rotates with respect to the skirt 22 as shown by an alternate long and short dash line in FIG. 2.
In FIG. 3 the numeral 27 designates a cap, integrally molded from plastics material into a hollow cylindrical shape having a top plate 28 and a skirt 29. At the intermediate position of the said skirt 29 is formed a head 30 along the internal peripheral surface thereof. The inside diameter b at the internal surface above the said bead 30 is not greater than a; in other words b S a. Consequently, when the inner closure 20 is placed in the cap 27, the flange 24 of the inner closure 20 rotates inwards of the inner closure 20 around the connecting part to the skirt 22, and thus the external peripheral end 25 of the flange 24 fits to the head 30 of the cap 27, causing the inner closure 20 to be securely held. (Refer to FIG. 3.) The diameter of the internal peripheral end 26 of the inner closure 20 when held in the cap is assumed c. In case the inner closure 20 is made of a resilient material such as plastics as with the examples of the invention, the flange 24 of the inner closure 20 tends to return to the horizontal state orthogonal with respect to the skirt 22 in the vertical state as shown in FIG. 2, resulting in more secure fit.
Now, as described in the above, on the container neck 31 to be affixed with the cap 27 holding the inner closure 20 therein, is formed a groove 32 at the external peripheral section mating with the internal peripheral end 26 of the flange 24 of the said inner closure 20, as shown in FIG. 4. Assuming the outside diameter of this groove 32 to be d, the relation d c is established between d and the diameter 0 of the internal peripheral end 26 of the flange 24 when the said inner closure 20 is held securely by the cap 27. The greater diameter part above the said groove 32 is designated by the numeral 33. Therefore, when the cap 27 holding the inner closure 20 is fixed on the container neck 31, the flange 24 of the inner closure 20 is rotated more than the state as shown in FIG. 2, because the relation d c is established when the internal peripheral end 26 of the flange 24 fits the groove 32. (Refer to FIG. 4.) At this time the outside diameter of the external peripheral end 25 of the flange 24 decreases a little, becoming smaller than b; to be exact, it gets smaller than the inside diameter of the bead 30. Thus, the engagement of the cap 27 and the inner closure 20 is easily released, enabling one to remove the cap 27 while leaving the inner closure 20 on the container neck 31. At this time the flange 24 of the inner closure 20 is hooked by the greater diameter part 33 of the container neck 31, with complete prevention of disengagement.
In the example described in the above, the flange 24 of the inner closure 20 is molded on the entire periphery of the lower end of the skirt 22, but the flange may be of discontinuous type molded at a plurality of positions (at least two positions equally dividing the circumference) on the circumference.
Referring now to FIG. 5 and FIG. 6, a cap structure in the second example of the invention is described.
The numeral 31 designates the container neck, on the upper part of the external periphery of which is formed a groove 32. An upward tapered section 34 is formed from the upper part of the groove 32 to the upper end of the container neck 31, in order to facilitate the inner closure to be fixed. The inner closure 20 is nearly of hollow cylindrical shape having a top plate 21 and a skirt 22', as with the first example described in the above. To the top plate 21 is provided a dispensing nozzle 23. Also, at the lower end of the said skirt 22 is formed as one body a flange 24 which inclines toward the inside of the inner closure 20. Therefore, the inside diameter of the peripheral end 26 of the flange 24 is made sufficiently smaller than the outside diameter of the greater diameinternal ter part 33 above the groove 32, so that the secure engagement is accomplished. In the thickness 35 of the flange 24 is formed a slit 36 along the entire periphery thereof. This slit 36 is to facilitate the external peripheral end of the flange 24 to bend inwards.
The cap 27 is nearly of hollow cylindrical shape with a top plate 28 and a skirt 29, which engages with the container neck 31. On the internal periphery of the cap is formed a plurality of beads 30 at the at the positions corresponding with the external peripheral end 25 of the flange 24 of the said inner closure 20. (Six positions in the illustrated example.) The outside diameter of the external peripheral end of the flange of the inner closure 20 is made considerably larger than the inside diameter of the beads 30 of the cap 27 so that the inner closure 20 is securely held inside the cap 27. Therefore, when the cap is placed on a capping machine the inner closure 20 is securely held in the cap 27, and once the cap and inner closure are fixed as one body on a container neck 31 the internal peripheral end 26 of the flange 24 of the inner closure 20 mates with the groove 32 and disengagement in the upward direction is securely prevented by the greater diameter part 33. When the cap 27 is to be removed the cap can be removed with ease leaving the inner closure securely held on a container neck because the external peripheral end 25 of the flange 24 is easily bent inwards owing to the slit 36.
As described in the above, the present invention facilitates the handling of the cap because the inner closure is securely held in the cap when the cap is placed on a capping machine. Further, when the cap is removed from a container neck after the cap has been fixed on a container neck, it is possible to leave the inner closure alone on a container neck because the internal peripheral end of the flange of the inner closure is so designed as to engage securely with the groove formed on the external periphery of the container neck. Therefore, this structure can be said to be convenient for plastics-molded containers which are difficult to control their dimensions accurately.
it will be understood that'the invention is not to be limited to the exact structure described in the examples, but that various changes and modifications may be made in the detailed structure of the examples without departing from the scope of the invention, as defined in the appended claims.
We claim:
1. In combination:
a container, an inner closure, and a cap;
said container comprising a tubular neck having a portion of larger outer diameter disposed suprajacent a portion of smaller outer diameter to provide a downwardly facing shoulder means between said portions;
said inner closure comprising a top plate having means defining a dispensing opening therethrough, and a peripheral skirt;
circumferential resilient flange means extending generally horizontally radially inwardly and radially outwardly from connection with said skirt, near the lower extent thereof, said circumferential flange means being flexible generally angularly about the angular axis of the skirt at the level of the flange means connection therewith to general frusto-conicality oriented to have its inner peripheral diameter disposed above where it had been when the flange means was generally horizontal and to have its outer peripheral diameter disposed below where it had been when the flange means was generally horizontal;
said cap comprising a top plate and a peripheral skirt having an inner peripheral surface; said skirt having bead means formed at a level about said surface;
the diameter of the outer periphery of the flange means when unflexed being at least as large as the innermost radial extent of the bead means on said cap, relative to the longitudinal axis of the inner closure, so that in inserting the inner closure into the cap so the two skirts project in the same sense from the two respective top plates and urging the top plate of the inner closure sufficiently toward the top plate of the cap that the outer periphery of the flange means passes the bead means on the cap to temporarily assemble the inner closure to the cap, the flange means are engaged by the bead means as these two pass;
the diameter of the inner periphery of the flange means after the flange means outer periphery has passed the bead means on the cap being smaller than the radially outer extent of said larger outer diameter portion of the tubular neck of the container so that as the temporarily assembled inner closure and cap are installed upon said tubular neck the inner periphery of the flange means engages as it passes the larger outer diameter portion of the tubular neck and flexes the flange means toward said general frusto-conicality, this disposition being maintained when the inner periphery of the flange means becomes disposed below said downwardly facing shoulder means at least to such extent that the outer periphery of the flangemeans is of smaller diameter than the innermost radial extent of the bead means on said cap, relative to the longitudinal axis of the inner closure, so that the temporary assembly of the inner closure to the cap is extinguished.
2. The combination recited in claim 1 wherein the diameter of the outer periphery of the flange means when unflexed is larger than the innermost radial extent of the bead means on said cap, relative to the longitudinal axis of the inner closure so the flange means must flex toward said general conicality to pass said bead means when being temporarily assembled to said cap.
3. The combination recited in claim 2 further including means defining a circumferential groove in the outer periphery of the flange means for increasing the flexibility of the flange means adjacent this groove.
downwardly facing shoulder means to cam the flange means toward said frusto-conicality during said installation of the temporarily assembled inner closure and cap upon the tubular neck of the container.

Claims (5)

1. In combination: a container, an inner closure, and a cap; said container comprising a tubular neck having a portion of larger outer diameter disposed suprajacent a portion of smaller outer diameter to provide a downwardly facing shoulder means between said portions; said inner closure comprising a top plate having means defining a dispensing opening therethrough, and a peripheral skirt; circumferential resilient flange means extending generally horizontally radially inwardly and radially outwardly from connection with said skirt, near the lower extent thereof, said circumferential flange means being flexible generally angularly about the angular axis of the skirt at the level of the flange means connection therewith to general frusto-conicality oriented to have its inner peripheral diameter disposed above where it had been when the flange means was generally horizontal and to have its outer peripheral diameter disposed below where it had been when the flange means was generally horizontal; said cap comprising a top plate and a peripheral skirt having an inner peripheral surface; said skirt having bead means formed at a level about said surface; the diameter of the outer periphery of the flange means when unflexed being at least as large as the innermost radial extent of the bead means on said cap, relative to the longitudinal axis of the inner closure, so that in inserting the inner closure into the cap so the two skirts project in the same sense from the two respective top plates and urging the top plate of the inner closure sufficiently toward the top plate of the cap that the outer periphery of the flange means passes the bead means on the cap to temporarily assemble the inner closure to the cap, the flange means are engaged by the bead means as these two pass; the diameter of the inner periphery of the flange means after the flange means outer periphery has passed the bead means on the cap being smaller than the radially outer extent of said larger outer diameter portion of the tubular neck of the container so that as the temporarily assembled inner closure and cap are installed upon said tubular neck the inner periphery of the flange means engages as it passes the larger outer diameter portion of the tubular neck and flexes the flange means toward said general frusto-conicality, this disposition being maintained when the inner periphery of the flange means becomes disposed below said downwardly facing shoulder means at least to such extent that the outer periphery of the flange means is of smaller diameter than the innermost radial extent of the bead means on said cap, relative to the longitudinal axis of the inner closure, so that the temporary assembly of the inner closure to the cap iS extinguished.
1. In combination: a container, an inner closure, and a cap; said container comprising a tubular neck having a portion of larger outer diameter disposed suprajacent a portion of smaller outer diameter to provide a downwardly facing shoulder means between said portions; said inner closure comprising a top plate having means defining a dispensing opening therethrough, and a peripheral skirt; circumferential resilient flange means extending generally horizontally radially inwardly and radially outwardly from connection with said skirt, near the lower extent thereof, said circumferential flange means being flexible generally angularly about the angular axis of the skirt at the level of the flange means connection therewith to general frusto-conicality oriented to have its inner peripheral diameter disposed above where it had been when the flange means was generally horizontal and to have its outer peripheral diameter disposed below where it had been when the flange means was generally horizontal; said cap comprising a top plate and a peripheral skirt having an inner peripheral surface; said skirt having bead means formed at a level about said surface; the diameter of the outer periphery of the flange means when unflexed being at least as large as the innermost radial extent of the bead means on said cap, relative to the longitudinal axis of the inner closure, so that in inserting the inner closure into the cap so the two skirts project in the same sense from the two respective top plates and urging the top plate of the inner closure sufficiently toward the top plate of the cap that the outer periphery of the flange means passes the bead means on the cap to temporarily assemble the inner closure to the cap, the flange means are engaged by the bead means as these two pass; the diameter of the inner periphery of the flange means after the flange means outer periphery has passed the bead means on the cap being smaller than the radially outer extent of said larger outer diameter portion of the tubular neck of the container so that as the temporarily assembled inner closure and cap are installed upon said tubular neck the inner periphery of the flange means engages as it passes the larger outer diameter portion of the tubular neck and flexes the flange means toward said general frusto-conicality, this disposition being maintained when the inner periphery of the flange means becomes disposed below said downwardly facing shoulder means at least to such extent that the outer periphery of the flange means is of smaller diameter than the innermost radial extent of the bead means on said cap, relative to the longitudinal axis of the inner closure, so that the temporary assembly of the inner closure to the cap iS extinguished.
2. The combination recited in claim 1 wherein the diameter of the outer periphery of the flange means when unflexed is larger than the innermost radial extent of the bead means on said cap, relative to the longitudinal axis of the inner closure so the flange means must flex toward said general conicality to pass said bead means when being temporarily assembled to said cap.
3. The combination recited in claim 2 further including means defining a circumferential groove in the outer periphery of the flange means for increasing the flexibility of the flange means adjacent this groove.
4. The combination recited in claim 2 wherein the bead means is constituted by angularly intermittently placed discrete protuberances.
US00123199A 1970-03-18 1971-03-11 Cap structure holding an inner closure Expired - Lifetime US3715063A (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2606770 1970-03-18
JP2663470 1970-03-19

Publications (1)

Publication Number Publication Date
US3715063A true US3715063A (en) 1973-02-06

Family

ID=26363804

Family Applications (1)

Application Number Title Priority Date Filing Date
US00123199A Expired - Lifetime US3715063A (en) 1970-03-18 1971-03-11 Cap structure holding an inner closure

Country Status (1)

Country Link
US (1) US3715063A (en)

Cited By (17)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3954211A (en) * 1973-09-11 1976-05-04 The Lion Fat And Oil Co. Ltd. Pouring cap for liquid container
US4076152A (en) * 1977-05-23 1978-02-28 Owens-Illinois, Inc. Fitment-retaining closure
US4205766A (en) * 1976-03-16 1980-06-03 White Douglas J Dual compartment dispensing container
FR2577524A1 (en) * 1985-02-21 1986-08-22 Cebal Assembly of a tube, a screw cap and a pre-fitted intermediate cover
US4799599A (en) * 1982-07-30 1989-01-24 Ciba Corning Diagnostics Corp. Specimen cup and cap assembly for clinical analyzer
US4817807A (en) * 1986-07-01 1989-04-04 Hummer L Leroy Tamper-evident container
US4991729A (en) * 1989-04-18 1991-02-12 Hunter Robert M Elder-accessible child-resistant packaging
US5184746A (en) * 1992-02-26 1993-02-09 Phoenix Closures, Inc. Closure cap and fitment assembly
US5680968A (en) * 1995-05-03 1997-10-28 Phoenix Closures, Inc. Container closure system
US5694978A (en) * 1994-12-09 1997-12-09 Fresenius Ag Protective cap assembly for protecting and sealing a tubing
US5829638A (en) * 1993-05-21 1998-11-03 Lucas; Nathaniel Contact opening cap for bottle containers
US5992660A (en) * 1997-10-15 1999-11-30 Taisei Kako Company, Limited Closure for vial container
US5996833A (en) * 1997-11-05 1999-12-07 Sonoco Development, Inc. Tamper evident dust cover for a drum bung
US20080262466A1 (en) * 2007-04-19 2008-10-23 Steve Smith Storage container
US20180099790A1 (en) * 2013-08-01 2018-04-12 Mars, Incorporated Container
US20190152662A1 (en) * 2016-03-30 2019-05-23 Trevor Dedman Low profile funnel
WO2019106369A1 (en) * 2017-11-29 2019-06-06 Nolato Jaycare Limited Nozzle and closure assembly

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US973066A (en) * 1910-08-31 1910-10-18 Russia Cement Company Bottle for adhesive liquids.
US3136458A (en) * 1961-02-27 1964-06-09 Ruetz Karl Container including a neck with a pouring opening and closing device for the same

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US973066A (en) * 1910-08-31 1910-10-18 Russia Cement Company Bottle for adhesive liquids.
US3136458A (en) * 1961-02-27 1964-06-09 Ruetz Karl Container including a neck with a pouring opening and closing device for the same

Cited By (19)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3954211A (en) * 1973-09-11 1976-05-04 The Lion Fat And Oil Co. Ltd. Pouring cap for liquid container
US4205766A (en) * 1976-03-16 1980-06-03 White Douglas J Dual compartment dispensing container
US4076152A (en) * 1977-05-23 1978-02-28 Owens-Illinois, Inc. Fitment-retaining closure
US4799599A (en) * 1982-07-30 1989-01-24 Ciba Corning Diagnostics Corp. Specimen cup and cap assembly for clinical analyzer
FR2577524A1 (en) * 1985-02-21 1986-08-22 Cebal Assembly of a tube, a screw cap and a pre-fitted intermediate cover
US4817807A (en) * 1986-07-01 1989-04-04 Hummer L Leroy Tamper-evident container
US4991729A (en) * 1989-04-18 1991-02-12 Hunter Robert M Elder-accessible child-resistant packaging
US5184746A (en) * 1992-02-26 1993-02-09 Phoenix Closures, Inc. Closure cap and fitment assembly
US5829638A (en) * 1993-05-21 1998-11-03 Lucas; Nathaniel Contact opening cap for bottle containers
US5694978A (en) * 1994-12-09 1997-12-09 Fresenius Ag Protective cap assembly for protecting and sealing a tubing
US5680968A (en) * 1995-05-03 1997-10-28 Phoenix Closures, Inc. Container closure system
US5992660A (en) * 1997-10-15 1999-11-30 Taisei Kako Company, Limited Closure for vial container
US5996833A (en) * 1997-11-05 1999-12-07 Sonoco Development, Inc. Tamper evident dust cover for a drum bung
US20080262466A1 (en) * 2007-04-19 2008-10-23 Steve Smith Storage container
US20180099790A1 (en) * 2013-08-01 2018-04-12 Mars, Incorporated Container
US10259621B2 (en) * 2013-08-01 2019-04-16 Mars, Incorporated Container
US20190152662A1 (en) * 2016-03-30 2019-05-23 Trevor Dedman Low profile funnel
US10850899B2 (en) * 2016-03-30 2020-12-01 Trevor Dedman Low profile funnel
WO2019106369A1 (en) * 2017-11-29 2019-06-06 Nolato Jaycare Limited Nozzle and closure assembly

Also Published As

Publication number Publication date
DE2113017B2 (en) 1976-07-29
DE2113017A1 (en) 1971-09-30

Similar Documents

Publication Publication Date Title
US3715063A (en) Cap structure holding an inner closure
US3980211A (en) Pouring adaptor-closure assembly
US4331247A (en) One piece child-resistant closure
US3818627A (en) Bubble film holding wand
US3076573A (en) Dispensing closure
US4489844A (en) Crew-type all plastic closure
US3967745A (en) Self-positioning child-resistant closure
US2696318A (en) Closure sealing means for jars, bottles, and the like
US3125260A (en) Shaker or sifter-type dispensers
US5394999A (en) Child resistant package
US4187964A (en) Combined closure cap and pour-out fitment
US4261487A (en) Pour through stopper
US3319842A (en) Anti-splash liquid pourout fitment and closure therefor
US4494682A (en) Pouring fitment with container and closure therefor
US3189071A (en) Flexible dispensing container assemblies
US2736447A (en) Combined sealing ring and pour-out fitment
US3260423A (en) Shaker or sifter-type dispensers
US2823837A (en) Flexible dispensing nozzle with supporting closure
US3623623A (en) Childproof safety package
US3237819A (en) Shaker or sifter-type dispensers
US2808183A (en) Combination dispensing and closure device
US3260426A (en) Container closure comprising a stationary apertured cap and a rotary apertured cap
US3144964A (en) Outsert for a collapsible tube
US2805800A (en) Closures
US4511050A (en) Dose indicator closure