Transfer valve cap

The transition stopper cap allows for easy opening and closing in either direction by using symmetrical fitting portions and reduced thread engagement, addressing the inefficiency of existing designs.

JP7722802B2Active Publication Date: 2025-08-13YOSHINO KOGYOSHO CO LTD
View PDF 4 Cites 0 Cited by

Patent Information

Application Number
JP2022075321
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2022-04-28
Publication Date
2025-08-13
Estimated Expiration
2042-04-28

AI Technical Summary

Technical Problem

Existing transition stopper caps require the screw cap to be rotated in the closing direction to open, which is inconvenient and inefficient.

Method used

A transition stopper cap design that allows the screw cap to be opened by rotating it in either the opening or closing direction, utilizing symmetrical fitting portions and reduced thread engagement to facilitate easy opening and closing.

Benefits of technology

The cap can be easily opened and closed in either direction, ensuring secure fitting and preventing disengagement, with a simple attachment mechanism that reduces the need for complex ratchet mechanisms.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure 0007722802000001
    Figure 0007722802000001
  • Figure 0007722802000002
    Figure 0007722802000002
  • Figure 0007722802000003
    Figure 0007722802000003
Patent Text Reader

Abstract

To provide a transition plug cap comprising a cap body having a transition plug body and a screw cap screwed to the cap body, in which the transition plug body can be unsealed even when the screw cap is rotated in any direction.SOLUTION: A transition plug cap comprises a cap body B attached to a mouth 1 of a container body A and a screw cap C removably attached by screwing to the cap body B. The cap body B comprises a spout cylinder 10 and a transition plug body 12 provided continuing to an inner-peripheral face side of the spout cylinder 10 through a thin-walled weakened portion 11 and formed circumferentially with a first fit portion 19, while the screw cap C comprises a top wall 40, a hermetic cylinder portion 43 extending downward from the top wall 40 and sealing the spout cylinder 10 and a second fit portion 51 allowed to mate with the first fit portion 19 of the transition plug body 12. The first fit portion 19 and the second fit portion 51 have a dovetail shape symmetric about a radial direction in plan view. As for the transition plug body 12, the thin-walled weakened portion 11 is to be broken even when the screw cap C is rotated in any direction of opening or closing the lid.SELECTED DRAWING: Figure 1
Need to check novelty before this filing date? Find Prior Art

Description

[Technical Field]

[0001] The present invention relates to a transition stop cap having a cap body with a transition stopper body, and more particularly to a transition stop cap that can be opened by rotating a screw cap in either the opening or closing direction. [Background technology]

[0002] A transition stopper cap has been known as a food container for storing contents such as dressings. The transition stopper cap seals the inside of the container body with a cap body having a transition stopper body until the container is opened. The transition stopper body is removed from the cap body by rotating the screw cap, which is attached by screwing it onto the cap body, in the opening direction, and the transition stopper body is held in the attachment portion of the screw cap, allowing the container to be opened (see, for example, Patent Document 1). [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Japanese Patent Publication No. 2022-11921 Summary of the Invention [Problem to be solved by the invention]

[0004] However, the transition stopper cap described in Patent Document 1 can be opened with a reduced opening torque by simply rotating the screw cap in the opening direction without increasing the stress on the thin-walled weakened portion. However, there have been transition stopper caps in the past that require the screw cap to be rotated once in the closing direction to open, so there has been a demand for a transition stopper cap that can be opened by rotating the screw cap in the closing direction as in the past.

[0005] The present invention aims to solve the above problem and to provide a transition stopper cap that includes a cap body having a transition stopper body and a screw cap that is screwed onto the cap body, and that allows the transition stopper body to be opened by rotating the screw cap in either direction. [Means for solving the problem]

[0006] In order to solve the above-mentioned problems, the present invention provides a transition stopper cap comprising a cap body that is attached to the mouth of a container body, and a screw cap that is screwed onto the cap body and attached so as to be freely attached and detached, the cap body comprising a dispensing tube and a transition stopper body that is connected to the inner surface of the dispensing tube via a thin-walled weakened portion and has a first fitting portion formed circumferentially, the screw cap comprising a top wall, a sealing tube portion that hangs down from the top wall and seals the dispensing tube, and a second fitting portion that can fit with the first fitting portion of the transition stopper body, the first fitting portion and the second fitting portion having a biting shape that is symmetrical in the radial direction in a plan view, and the transition stopper body adopts a configuration in which the thin-walled weakened portion breaks when the screw cap is rotated in either the opening or closing direction.

[0007] In one embodiment of the transfer stopper cap, the bite shape is a trapezoidal shape with sides that widen inward, and the cap body has an attachment portion that is attached to the mouth of the container body, a threaded wall portion that stands up from the attachment portion, and a first threaded portion that is screwed onto the outer periphery of the threaded wall portion. The screw cap has a threaded cylindrical portion that hangs down from the top wall, and a second threaded portion that is screwed onto the inner periphery of the threaded cylindrical portion and engages with the first threaded portion, and the first threaded portion and the second threaded portion have a reduced thread engagement. The attachment portion has a stopper rib on its upper surface, and the threaded cylindrical portion has a stopper portion on its lower end surface that engages with the stopper rib, and the stopper rib is configured to easily ride over the stopper portion. [Effects of the Invention]

[0008] By adopting the above-described configuration, the transfer plug cap of the present invention can be easily opened by rotating the screw cap of the transfer plug cap in either the opening or closing direction. In addition, the transition stopper cap of the present invention has a first fitting portion of the transition stopper body and a second fitting portion of the screw cap that have a fitting shape that is symmetrical in the radial direction when viewed in a plane, so that they fit into each other when the transition stopper body is opened, preventing the first fitting portion and the second fitting portion from coming off (overrun). [Brief explanation of the drawings]

[0009] [Figure 1] 1A and 1B are diagrams showing the state after the screw cap and the cap body have been set in the transfer plug cap according to an embodiment of the present invention, where (a) is a side cross-sectional view, and (b) is a cross-sectional view taken along line XX in (a). [Figure 2] 1A and 1B are diagrams showing a cap body of an embodiment, in which (a) is a top view and (b) is a side half-sectional view. [Figure 3] 1A and 1B are diagrams showing a screw cap according to an embodiment, in which (a) is a side cross-sectional view and (b) is a bottom view. [Figure 4] 1(a) is an enlarged view of the main part of the screw-on portion of the transfer plug cap according to the embodiment of the present invention, where (a) is a view of the screw-on closed state and (b) is a view of the open state. [Figure 5] 1(b) is an enlarged view of a first modified example in which the configuration of the screw cap and the cap body is changed. FIG. [Figure 6] FIG. 1(b) is an enlarged view of a second modified example in which the configuration of the screw cap and the cap body is changed. [Figure 7] FIG. 1(b) is an enlarged view of a third modification in which the configuration of the screw cap and the cap body is changed. DETAILED DESCRIPTION OF THE INVENTION

[0010] Next, the transfer plug cap of the present invention will be described with reference to the drawings by way of examples. In the following description, the upward direction in FIG. 1(a) is referred to as "upper", the downward direction as "lower", and the left-right direction as "radial direction". [Example]

[0011] In FIG. 1, A is a container body, B is a cap body attached to the container body A, and C is a screw cap that is screwed onto the cap body B and attached detachably. The container body A is made of a hard material that retains its shape, such as a bottle or PET, the cap body B is made of a material that is softer than the screw cap C, such as PE, and the screw cap C is made of a material that is harder than the cap body B, such as PP. The materials of the container body A, cap body B, and screw cap C can be changed as appropriate. As shown in FIG. 1, a container body A has a mouth 1 provided with a locking ridge 2 that fits onto a cap body B and holds it in place to prevent it from coming off.

[0012] As shown in Figures 1 and 2, the cap body B consists of an outer tube 5 on the outer periphery, an inner tube 6 on the inner periphery, and an upper wall 7 located on the top side of the mouth portion 1, and is also composed of an attachment portion 4 that forms an annular groove into which the mouth portion 1 of the container body A fits, a threaded wall portion 8 that stands upright from the attachment portion 4, a top wall 9 that extends inward from the upper end of the inner periphery of the threaded wall portion 8, and a dispensing tube 10 that stands upright from the top surface of the top wall 9.

[0013] The dispensing tube 10 has a dispensing outlet formed on the inner periphery for dispensing the contents stored in the container body A, and the upper part is enlarged in diameter and curved outward. A transfer stopper body 12 is integrally connected to the inner peripheral side of the lower end of the dispensing cylinder 10 via a thin-walled weakened portion 11 formed around the entire circumference.

[0014] The transition plug body 12 comprises a ring-shaped peripheral portion 13 connected to the inner circumference of the thin-walled weakened portion 11, a cylindrical wall 14 formed inside the peripheral portion 13, and a circular central bottom wall 16 that seals the inner side of the lower end of the cylindrical wall 14 and has a columnar protrusion 15 erected in the center.

[0015] The peripheral portion 13 has an annular groove 17 recessed from the underside to a predetermined height, a first engagement protrusion 18 constituting the first engagement portion around the lower outer periphery, and an engagement recess 19 cut out from the outer periphery and constituting the first engagement portion around the upper outer periphery at positions 0° and 180° relative to the axis. The mating recess 19 is fitted with the second mating portion of the screw cap C described later, and has a fitting shape that is symmetrical in the radial direction in a planar view so that the fitting portions fit together.The mating recess 19 is composed of an inner wall surface 19a that is formed in an arc shape along the outer periphery of the cylindrical wall 14, and inner side surfaces 19b that are formed in straight lines from both sides of the inner wall surface 19a and at an angle that approaches each other toward the outside.In a planar view, the mating recess 19 is formed in the shape of an isosceles trapezoid with the inner side surfaces 19b widening toward the inner periphery.

[0016] In addition, on the upper outer periphery of the peripheral edge portion 13, between the fitting recesses 19, arc-shaped recesses 20 are formed along the cylindrical wall 14 and recessed from the upper surface. In this embodiment, the first fitting portion is embodied as a fitting recess 19 formed on the outer periphery of the cylindrical wall 14 of the transition stopper body 12, but the number and structure of the first fitting portion are not important as long as it has recesses and protrusions in the circumferential direction of the transition stopper body 12 that fit with the second fitting portion of the screw cap C.

[0017] The threaded wall portion 8 has a male thread 26 that constitutes the first threaded portion screwed onto its outer surface, and a plurality of reinforcing ribs 27 (three in this embodiment) that are connected to the top wall 9 at their upper portions and extend in the axial direction are arranged on its inner surface. As shown in Figures 2 and 4(a), the male thread 26 is not symmetrical in cross section from top to bottom like a normal screw thread, but is composed of an inclined upper surface 26a formed with a steeply inclined upper surface, a flat lower surface 26b formed with a flat lower surface, and a vertical outer surface 26c formed between the inclined upper surface 26a and the flat lower surface 26b, and the upper end is formed as a double thread starting at 180° intervals. Furthermore, as shown in FIG. 4(a), the thread height α of the male thread 26 is formed to be as low as 0.6 mm, whereas the thread height is conventionally 1 mm. In this embodiment, the male thread 26 is a double-start thread, but depending on the height of the threaded wall portion 8, it may be a multiple-start thread with three or more starts.

[0018] The top wall 9 has a stepped portion 28 recessed toward the outer periphery at its peripheral edge, and sound-emitting protrusions 29 are arranged at two locations 180° apart on the inner periphery of the stepped portion 28.

[0019] The upper surface of the upper wall 7 is provided with stopper ribs 30 at two positions in the circumferential direction. The stopper rib 30 may be made lower than the conventional height to make it easier to climb over the screw tube portion 44 when the screw cap C described later is rotated in the closing direction, or the stopper rib 30 itself may be deformed.

[0020] The outer tube 5 has a locking reduced diameter portion 31 on its inner circumference that engages with the locking protrusion 2 of the container body A to prevent the mouth portion 1 from coming off, and has a notched recess 32 recessed radially from the outer surface around the circumference, and a separation mechanism F is provided below the notched recess 32 to separate the cap body B from the container body A so that it can be disposed of separately. As shown in Figures 1 and 2, the separation mechanism F has a gripping portion 34 provided via a slit 33 formed in the axial direction over a predetermined arc range on the lower outer peripheral surface of the outer tube 5, and the gripping portion 34 is separated from the outer tube 5 by a thin-walled vertical cut portion 35 so that it can be deployed outward.Furthermore, the notched recess 32 can be easily broken, making it easy to remove the cap body B from the container body A.

[0021] As shown in Figures 1 and 3, screw cap C has a disk-shaped top wall 40 and an outer peripheral wall 41 that hangs down from the outer edge of top wall 40. On the inner surface of top wall 40, a sealing cylinder portion 43 and a threaded cylinder portion 44 are, in order from the inside, hung down integrally with top wall 40. Furthermore, sound-producing members 45 are arranged at two locations 180° apart on a concentric circle between sealing cylinder portion 43 and threaded cylinder portion 44.

[0022] The sealing tube portion 43 has a sealing portion 47 on its outer periphery that abuts against the inner surface of the dispensing tube 10 to seal the spout when the screw cap C is attached to the cap body B, and a second engaging protrusion 48 is provided around the lower end of the inner periphery to form a second engaging portion that fits over the first engaging protrusion 18 on the peripheral portion 13 of the transition stopper body 12, and is provided with engaging protrusions 51 at the upper inner periphery that extend radially inward and form a second engaging portion that fits into the engaging recesses 19 of the transition stopper body 12, and the engaging protrusions 51 are provided at two circumferential locations, the same number as the number of engaging recesses 19.

[0023] The fitting protrusion 51 consists of an outer wall surface 51a and outer surfaces 51b on both sides so that when the screw cap C is attached to the cap body B, it fits from above into the fitting recess 19 of the transition stopper body 12, and the fitting protrusion 51 is formed in an isosceles trapezoidal shape with the outer surfaces 51b widening inward in a V-shape when viewed in a plane. In this embodiment, the second fitting portion is embodied as a fitting protrusion 51 extending radially from the inner peripheral surface of the cylindrical sealing portion 43, but the second fitting portion is not limited to the cylindrical sealing portion 43 and may be provided on the screw cap C, and as with the first fitting portion, the number and structure are not limited as long as the second fitting portion has a protrusion or recess that fits with the first fitting portion of the transition plug 12. For example, the second fitting portion may be provided on a cylindrical portion that hangs down from the top wall 40, separate from the cylindrical sealing portion 43, or may be formed inside the cylindrical sealing portion 43.

[0024] The threaded cylindrical portion 44 has a female thread 55 threaded on its inner circumference, which constitutes a second threaded portion that screws onto the male thread 26 of the cap body B, and wedge-shaped stopper portions 56 that engage with the stopper rib 30 of the upper wall 7 are formed at two locations in the circumferential direction on its lower end surface. As shown in Figures 3 and 4(a), the female thread 55 is not symmetrical in cross section from top to bottom like a normal screw thread, but is composed of a flat upper surface 55a which is formed flat on the top surface, an inclined lower surface 55b which is formed with a steep incline on the bottom surface, and a vertical inner surface 55c which is formed between the flat upper surface 55a and the inclined lower surface 55b, and the female thread 55 is formed with a shape and number of threads which allow it to thread onto the male thread 26.

[0025] Also, as shown in FIG. 4(a), the thread height β of the internal thread 55 is formed to be as low as 0.45 mm, whereas the thread height of the conventional thread is 1 mm. Furthermore, when the male thread 26 and the female thread 55 are screwed together, the engagement between the tips of the threads is set to a small value of 0.2 mm, whereas in the past it was 0.5 mm.

[0026] The sound-producing member 45 is composed of a rigid plate-like base 57 that hangs down from the underside of the top wall 40 between the threaded tube portion 44 and the sealed tube portion 43, and a rod-like vibrating piece 58 that hangs down from the base 57 and is formed to be elastically deformable. The sound-producing member 45 is set so that just before the screw cap C is completely tightened, the tip of the vibrating arm 58 comes into contact with the sound-producing protrusion 29 of the cap body B, the tightening proceeds while bending and deforming the vibrating arm 58, and at the same time as the tightening is completed, the vibrating arm 58 overcomes the sound-producing protrusion 29 and tries to restore its original shape, thereby vibrating and generating sound.

[0027] Next, the manner of use and the effects of this embodiment will be described. In this embodiment, the transfer stopper cap is formed by molding the cap body B and the screw cap C separately, and then the screw cap C is screwed onto the top of the cap body B and set in place, and then the attachment portion 4 of the cap body B is placed against the mouth portion 1 of the container body A and screwed on.

[0028] When setting the screw cap C on the cap body B, first, align and fit the fitting protrusions 51 inside the sealing cylinder portion 43 of the screw cap C from above the respective fitting recesses 19 on the peripheral portion 13 of the transition stopper body 12 of the cap body B, and then insert the screw cap C into the cap body B.

[0029] When the screw cap C is pushed into the cap body B from this state, the female thread 55 of the screw tube portion 44 of the screw cap C climbs over the male thread 26 while the inclined lower surface 55b slides against the inclined upper surface 26a of the male thread 26 of the thread wall portion 8 of the cap body B, and the screw tube portion 44 of the screw cap C comes to fit into the thread wall portion 8 of the cap body B, as shown in Figures 1 and 4(a). At this time, since the cap body B is more easily deformed than the screw cap C, the male thread 26 side mainly deforms and restores its original shape as they fit together.

[0030] As the screw cap C is further pushed in, the second engaging projection 48 of the sealing cylinder portion 43 climbs over the first engaging projection 18 formed on the peripheral edge portion 13 of the transition stopper body 12 of the cap body B and fits into it. At the same time, the lower part of the screw tube portion 44 of the screw cap C lightly abuts the upper surface of the upper wall 7 of the cap body B or comes close to it with a small gap formed, and the stopper portion 56 engages with the stopper rib 30, preventing the screw cap C from being pushed in, and the setting of the transfer stopper cap is completed. Furthermore, after setting, as shown in Figure 1(b), the respective mating protrusions 51 on the inside of the sealing cylinder portion 43 of the screw cap C fit into the respective mating recesses 19 on the peripheral portion 13 of the transition stopper body 12 of the cap body B, and further, the second engagement protrusion 48 on the sealing cylinder portion 43 fits into the first engagement protrusion 18 formed on the peripheral portion 13 of the transition stopper body 12 of the cap body B, and the transition stopper body 12 is engaged inside the screw cap C.

[0031] The transfer stopper cap thus set is then capped by placing the attachment portion 4 of the cap body B on the mouth portion 1 of the container body A filled with the contents, and is then ready for use. When the cap body B is attached to the container body A, the cap body B can be deformed and restored, and is attached to the container body A mainly by deforming and restoring itself so as not to come off. In this way, when setting the screw cap C to the cap body B, the transfer stopper cap of this embodiment can be attached to the cap body B by tapping, so there is no need to use a ratchet mechanism as with conventional transfer stopper caps to rotate and screw the screw cap C, and the setting of the screw cap C and the cap body B can be completed with a single touch.

[0032] Next, when using a container equipped with the transfer plug cap of this embodiment, the screw cap C is usually first rotated relative to the cap body B in the opening direction. As the screw cap C rotates, the mating protrusion 51 of the sealing tube portion 43 rotates, and the mating recess 19 of the transition stopper body 12 of the cap body B, which engages with the mating protrusion 51, also rotates around the columnar protrusion 15, causing the transition stopper body 12 to rotate relative to the cap body B, and the thin-walled weakened portion 11 connecting the transition stopper body 12 to the lower end of the inner circumference of the dispensing tube 10 is broken.

[0033] When the screw cap C is rotated in the opening direction, the female thread 55 of the screw cap C and the male thread 26 of the cap body B are unscrewed, and the screw cap C is lifted up relative to the cap body B. Also, at the beginning of the rotation, the tip of the vibrating bar 58 of the sound-emitting member 45 of the screw cap C abuts against the sound-emitting protrusion 29 on the top wall 9 of the cap body B, and as the rotation progresses, the vibrating bar 58 moves while bending and deforming, the tip of the vibrating bar 58 overcomes the sound-emitting protrusion 29, the bent and deformed vibrating bar 58 returns to its original shape and vibrates, emitting sound.

[0034] As the screw cap C continues to rotate, the rotational force and pulling force applied to the transition stopper body 12 eventually cause the thin-walled weakened portion 11 to break, opening an outlet inside the dispensing tube 10, and the transition stopper body 12, separated from the dispensing tube 10, is pulled up by the second engaging protrusion 48 of the sealing tube portion 43, which engages with the first engaging protrusion 18 of the peripheral portion 13, and rises together with the screw cap C. Furthermore, when the female thread 55 is unscrewed from the male thread 26 and the screw cap C is separated from the cap body B, the transition stopper 12 is removed together with the screw cap C.

[0035] As described above, when using the container, the screw cap C is normally first rotated in the opening direction relative to the cap body B. However, in the case of the transfer stopper cap of this embodiment, even if it is rotated in the opposite direction, the transfer stopper body 12 can be removed from the cap body B and the pouring outlet can be opened in the pouring tube 10, as will be explained below.

[0036] First, when the screw cap C is rotated in the closing direction, the height of the stopper rib 30 on the upper surface of the upper wall 7 of the cap body B, which engages with the stopper portion 56 of the screw tube portion 44 of the screw cap C, is lower than before, or the stopper rib 30 itself deforms, causing it to climb over the stopper portion 56 of the engaged screw tube portion 44 and lift the screw tube portion 44 upward. Furthermore, as shown in Figure 4(a), the engagement γ between the flat upper surface 55a of the female thread 55 of the threaded cylindrical portion 44 of the screw cap C and the flat lower surface 26b of the male thread 26 of the threaded wall portion 8 of the cap body B is small, and as the cap body B rotates, the male thread 26 of the cap body B deforms and overcomes the engagement, and as shown in Figure 4(b), the inner surface 55c of the female thread 55 abuts against the outer surface 26c of the male thread 26, and the male thread 26 and the female thread 55 are unscrewed.

[0037] The screw tube portion 44 of the screw cap C is unscrewed from the threaded wall portion 8 of the cap body B, and the screw tube portion 44 is lifted by climbing over the stopper rib 30, so that the screw cap C is lifted upward relative to the cap body B.

[0038] In addition, in the transition stopper cap of this embodiment, when the screw cap C is set on the cap body B, the mating recess 19 of the transition stopper body 12 and the mating protrusion 51 of the screw cap C are formed into an isosceles trapezoidal shape (a radially symmetrical fitting shape) with the sides widening inward in a V-shaped plan view, and the mating protrusion 51 of the screw cap C is fitted into the mating recess 19 of the transition stopper body 12 of the cap body B.Therefore, regardless of whether the rotation direction of the screw cap C is in the opening or closing direction, the mating recess 19 and the mating protrusion 51 will fit into each other, preventing the mating recess 19 and the mating protrusion 51 from coming off when the transition stopper body 12 is rotated relative to the cap body B. Furthermore, by removing the lifted screw cap C upward, the transfer stopper 12 can be removed together with the screw cap C, and the opened container can be used.

[0039] After the contents are poured out, the screw cap C is rotated in the closing direction and screwed onto the cap body B, so that the seal portion 47 of the sealing tube portion 43 of the screw cap C adheres tightly to the inner circumference of the pouring tube 10, sealing the inside of the container. When the screw cap C is completely closed, the tip of the vibrating piece 58 of the sound-making member 45 again comes into contact with the sound-making protrusion 29 and vibrates, emitting a sound, so that the user can intuitively know that the screw cap C is completely closed. At the same time, the stopper portion 56 of the screw cylinder portion 44 engages with the stopper rib 30 of the upper wall 7, stopping the rotation of the screw cap C and completing the closure.

[0040] When the lid is closed, the outer periphery of the lower end of the transfer stopper body 12 attached to the inside of the screw cap C comes close to the pouring outlet opened in the pouring tube 10 of the cap body B and blocks the flow of the contents, so even if the container is turned over, the contents simply adhere to the underside of the transfer stopper body 12 and can be easily collected into the container body A, and the underside of the top wall 40 of the screw cap C and the area above the pouring outlet in the pouring tube 10 do not get dirty or the contents do not accumulate, so the inside of the pouring tube 10 can be kept clean.

[0041] The transition stopper cap of this embodiment can remove the transition stopper body 12 from the cap body B and open the spout of the spout tube 10 of the cap body B regardless of the rotation direction of the screw cap C, whether it is in the opening or closing direction.

[0042] In the above embodiment, the mating recess 19 of the peripheral portion 13 of the cap body B is cut out from the outer periphery and formed into an isosceles trapezoidal shape that widens toward the inner periphery in a planar view, and the mating protrusion 51 of the sealing tube portion 43 of the screw cap C is formed in a shape that fits into the mating recess 19.The mating recess 19 and the mating protrusion 51 are engaged with each other so that they fit together when the lid is closed, and when the lid is opened, the screw cap C can be rotated in either direction to rotate the transition stopper body 12 together with the screw cap C.Therefore, modified examples in which the shapes of the mating recess 19 and the mating protrusion 51 are changed are described below.

[0043] As a first modification, as shown in FIG. 5, the fitting recess 60 of the peripheral portion 13 of the cap body B is composed of an inner wall surface 60a formed in an arc shape along the outer periphery of the cylindrical wall 14, inclined inner side surfaces 60b formed at an angle approaching the outside from both sides of the inner wall surface 60a, and a straight inner side surface 60c extending outward from the outer end of the inclined inner side surface 60b, and is formed into a hook shape that widens inward in plan view. Meanwhile, the fitting protrusion 65 of the sealing cylindrical portion 43 of the screw cap C is composed of an outer wall surface 65a, inclined outer side surfaces 65b on both sides, and a straight outer side surface 65c so as to fit into the fitting recess 60, and is formed into a hook shape that widens inward in plan view. As in the first embodiment, the fitting recess 60 and the fitting protrusion 65 are shaped to fit into each other even when the screw cap C is rotated in the opening or closing direction, so that the fitted state can be reliably maintained. The fitting protrusion 65 is not limited to a hook shape, and may be formed in a T-shape, although not shown.

[0044] In addition, as a second variant, as shown in Figure 6, the fitting recess 70 of the peripheral portion 13 of the cap body B consists of an inner wall surface 70a formed in an arc shape along the outer periphery of the cylindrical wall 14, and an inner L-shaped surface 70b that widens outward from both sides of the inner wall surface 70a and then forms a L-shaped shape approaching the inside, forming an approximately diamond shape in a planar view. The fitting protrusion 75 of the sealing cylindrical portion 43 of the screw cap C consists of an outer wall surface 75a and outer L-shaped surfaces 75b on both sides so as to fit into the fitting recess 70, and is formed an approximately diamond shape in a planar view. The fitting recess 70 and the fitting protrusion 75 are shaped to fit into each other, as in Example 1, even when the screw cap C is rotated in the opening or closing direction, so that the fitting state can be reliably maintained.

[0045] Furthermore, as a third modification, as shown in FIG. 7, the fitting recess 80 of the peripheral portion 13 of the cap body B is composed of an inner wall surface 80a formed in an arc shape along the outer periphery of the cylindrical wall 14, and arc-shaped inner surfaces 80b that widen outward from both sides of the inner wall surface 80a and then curve inward, forming an approximately barrel shape in a plan view. The fitting protrusion 85 of the sealing cylindrical portion 43 of the screw cap C is composed of an outer wall surface 85a and arc-shaped outer surfaces 85b on both sides so as to fit into the fitting recess 80, and is formed in a barrel shape in a plan view. The fitting recess 80 and the fitting protrusion 85 are shaped to fit into each other, as in Example 1, even when the screw cap C is rotated in the opening or closing direction, so that the fitted state can be reliably maintained. [Industrial Applicability]

[0046] The transition stopper cap of the present invention is a transition stopper cap that is attached to the mouth of a container body and comprises a cap body having a removable transition stopper body, and a screw cap that is screwed onto the cap body and attached so that it can be easily attached and detached.By using a combination of hard and soft materials for the screw cap and cap body, when the screw cap is rotated in the opening or closing direction, the first fitting portion and the second fitting portion easily bite into each other, reliably breaking the thin-walled breaking portion and allowing the transition stopper to be removed from the cap body, making it suitable as a transition stopper cap that can be widely used for containers of food, beverages, seasonings, etc. [Explanation of symbols]

[0047] A Container body B Cap body C screw cap F Separation mechanism α, β Thread height γ Hanging 1 Mouth 2 Locking ridges 4. Mounting part 5 outer cylinder 6 Inner cylinder 7 Upper Wall 8 Threaded wall 9 Ceiling wall 10 Pour tube 11 Thin weakened part 12 Transition plug body 13 Periphery 14 Cylindrical wall 15 Columnar projection 16 Center bottom wall 17 Circular groove 18 1st engagement protrusion (1st engagement part) 19, 60, 70, 80 Mating recess (first mating part) 19a, 60a, 70a, 80a inner wall 19b Inner surface 20 Cutout 26 Male thread (first threaded part) 26a Slanted top surface 26b Flat bottom surface 26c External surface 27 Reinforcing rib 28 Step section 29 Sound projection 30 Stopper rib 31 Locking diameter reduction part 32 Notched recess 33 Slit 34 Gripping part 35 Vertical cut 40 Top Wall 41 Peripheral wall 43 Closed envelope section 44 Threaded barrel 45 Sound-producing components 47 Seal part 48 Second locking protrusion (second locking part) 51, 65, 75, 85 Mating protrusion (second mating part) 51a, 65a, 75a, 85a External wall surface 51b External surface 55 Female thread (second threaded part) 55a flat top surface 55b Sloped bottom surface 55c inner surface 56 Stopper part 57 Base 58 Vibration piece 60b Slanted inner surface 60c straight inner surface 65b Slanted outer surface 65c straight outer surface 70b Inner surface of the dogleg 75b L-shaped outer surface 80b Inner surface of arc 85b Arc outer surface

Claims

1. The container has a cap body that is attached to the opening of the container body, and a screw cap that is screwed onto the cap body so as to be detachable, The cap body includes a pouring tube and a transition stopper body that is connected to the inner peripheral surface of the pouring tube via a thin-walled weakened portion and has a first fitting portion formed in the circumferential direction; The screw cap includes a top wall, a sealing tube portion that hangs down from the top wall and seals the pouring tube, and a second fitting portion that can be fitted with the first fitting portion of the transition stopper body, the first fitting portion and the second fitting portion have a bite shape that is symmetrical with respect to the radial direction in a plan view, The transfer stopper cap is characterized in that the thin-walled weakened portion of the transfer stopper body breaks when the screw cap is rotated in either the opening or closing direction.

2. 2. The transfer plug cap according to claim 1, wherein the bite-in shape is a trapezoidal shape with a side surface that widens toward the inner periphery.

3. The cap body includes an attachment portion that is attached to the opening of the container body, a threaded wall portion that stands upright from the attachment portion, and a first thread portion that is screwed onto the outer periphery of the threaded wall portion; The screw cap includes a threaded cylindrical portion that hangs down from the top wall, and a second threaded portion that is threaded on the inner periphery of the threaded cylindrical portion and that threadably engages with the first threaded portion; 3. The transfer plug cap according to claim 1, wherein the first and second threaded portions have reduced thread engagement.

4. The mounting part has a stopper rib on the top surface, the threaded cylindrical portion has a stopper portion on a lower end surface thereof that engages with the stopper rib; 4. The transfer plug cap according to claim 3, wherein the stopper rib is designed to easily climb over the stopper portion.

Citation Information

Patent Citations

  • Pull-out-plug cap

    JP2020083464A

  • Spout plug and packaging container including the same

    JP2020114741A

  • Unplug cap

    JP2020138793A

  • Plug opener cap

    JP2022011921A