Cap unit and container with cap
The cap unit with a valve member and locking mechanism addresses vent reliability issues, preventing leakage and improving usability through controlled venting and sealing.
Patent Information
- Application Number
- JP2022060411
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-03-31
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2042-03-31
AI Technical Summary
Existing cap units with straws face issues with reliable vent hole operation and closure, leading to potential leakage and difficulty in visually confirming proper fitting, which affects usability.
A cap unit design with a valve member featuring first and second vent holes, a locking mechanism with a biasing member, and a stopper to control vent opening and closure, ensuring proper sealing and vent operation.
Prevents beverage leakage and ensures effective venting, enhancing usability by allowing controlled air release and straw operation.
Smart Images

Figure 0007797290000001 
Figure 0007797290000002 
Figure 0007797290000003
Abstract
Description
[Technical Field]
[0001] The present invention relates to a cap unit and a capped container. [Background technology]
[0002] Conventionally, there have been capped containers equipped with a cap unit (stopper) that can be detachably attached to a container body with an open top. Among these, a proposed cap unit with a straw includes a cap body that closes the top opening of the container body and has a flexible straw protruding from the top, a lid body that is rotatably attached to the cap body via a hinge, a lid lock mechanism that fixes the lid body to the cap body, and a waterproof gasket (sealing member) that seals the gap between the container body and the cap body (see, for example, Patent Documents 1 and 2 listed below).
[0003] In a beverage container equipped with such a cap unit, when the lid is secured to the cap body by the lid locking mechanism, the straw is placed inside the lid in a bent state. Furthermore, a protrusion on the inside of the lid abuts against the straw, crushing it and blocking the straw's liquid passage. Meanwhile, when the lid is released from its locked position by the lid locking mechanism, the straw elastically returns from its bent state to its original state while rotating the lid in the opening direction. This allows the beverage inside the container body to be consumed through the straw. [Prior art documents] [Patent documents]
[0004] [Patent Document 1] Patent No. 4524681 [Patent Document 2] Patent No. 5662536 Summary of the Invention [Problem to be solved by the invention]
[0005] In the cap unit with a straw described above, when the lid body is released from its fixed position by the lid locking mechanism, the air inside the container body is released to the outside (the pressure inside the container is released to the outside) through an air vent provided at the top of the cap body to prevent the remaining liquid in the straw from splashing outside.
[0006] In this case, it is necessary to reliably open the vent hole before the straw elastically returns to its original state from the bent state. In addition, when the lid body is fixed to the cap body by the lid locking mechanism, it is necessary to reliably close the vent hole.
[0007] The vent hole is formed by a central hole in a cylindrical protrusion provided on the waterproof gasket. The waterproof gasket is made of a ring-shaped elastic member and is fitted inside the cap body with the cylindrical protrusion protruding upward from a through hole provided on the top of the cap body.
[0008] In this case, it is necessary to press the cylindrical protrusion into the through-hole from below and fix the waterproof gasket in an appropriate position inside the cap body. Furthermore, if the cylindrical protrusion is not pressed into the through-hole sufficiently, when the protrusion for closing the vent presses the cylindrical protrusion, the cylindrical protrusion may fall off the through-hole or the pressing force of the protrusion may be insufficient, making it difficult to properly open and close the vent. This may also cause the beverage in the container body to leak out.
[0009] Furthermore, when fitting the watertight gasket inside the cap body, it is difficult to visually check whether the cylindrical protrusion has been securely pressed into the through hole, and if the cylindrical protrusion is not pressed into the through hole sufficiently, the watertight gasket may shift from its appropriate position when the cap body is screwed onto the mouth and neck of the container body.
[0010] The present invention was proposed in consideration of the above-mentioned conventional circumstances, and aims to provide a cap unit with a straw that prevents the beverage inside the container body from leaking out and allows the air vent to be opened and closed properly, as well as a capped container that is equipped with such a cap unit, thereby enabling further improvement in usability. [Means for solving the problem]
[0011] In order to achieve the above object, the present invention provides the following means. [1] A cap unit that can be detachably attached to a container body having an open top, a cap body that is attached to the container body in a state where the top opening is closed; a straw member including a straw portion protruding from an upper portion of the cap body; a lid body that is rotatably attached to the cap body via a first hinge portion and that houses the straw portion inside in a folded state; a lid locking mechanism located on the opposite side of the cap body from the first hinge portion, the lid locking mechanism fixing the lid body to the cap body when the lid body closes the top of the cap body; a valve member detachably attached to an upper portion of the cap body between the straw portion and the lid locking mechanism, the cap body has a fitting portion into which the valve member is fitted, and a first through-hole and a second through-hole penetrating a bottom portion of the fitting portion, the valve member has a first vent hole and a second vent hole; A cap unit characterized in that the valve member is fitted into the fitting portion while the first through hole and the first air vent are connected and the second through hole and the second air vent are connected. [2] The valve member has a cylindrical protrusion portion in which the first air vent hole or the second air vent hole is provided, The cap unit according to [1] above, wherein the cylindrical protrusion is fitted into the first through hole or the second through hole. [3] The lid locking mechanism includes a locking member rotatably attached to the front side of the cap body via a second hinge portion, a biasing member that biases the locking member toward one side in the rotation direction, and a plug portion provided on the locking member, The locking member is rotatable between a locked position where a first engaging portion provided on the locking member side is engaged with a first engaged portion provided on the lid body side, and an unlocked position where the engaged state between the first engaging portion and the first engaged portion is released, When the locking member is biased by the biasing member and is in the locked position, the plug portion comes into close contact with the periphery of the first air vent, thereby blocking the first air vent, The cap unit described in [1] or [2] is characterized in that when the locking member is in the unlocked position against the bias of the biasing member, the plug portion moves away from the periphery of the first air vent, thereby opening the first air vent. [4] The locking member has an upper arm portion extending upward from the second hinge portion, a lower arm portion extending downward from the second hinge portion, and a rear arm portion extending rearward from the upper arm portion, the first locking portion is provided on the tip side of the upper arm portion, The cap unit described in [3] above is characterized in that the stopper portion is provided on the tip side of the rear arm portion. [5] The lid locking mechanism has a second locking portion provided on the locking member side and a second locked portion provided on the lid body side, When the locking member is rotated from the locked position to the unlocked position from a state in which the lid body is fixed to the cap body, the second engaging portion is engaged with the second engaged portion at a position in which the first air vent is opened, and rotation of the lid body to the one side is restricted, A cap unit as described in [3] or [4], characterized in that from this state, by rotating the locking member from the unlocked position to the locked position, the engagement between the second engaging portion and the second engaged portion is released and the lid body is rotated toward the one side. [6] The lid has a protrusion protruding from the inner lower surface, The cap unit described in any one of [1] to [5] above, characterized in that when the lid body is fixed to the cap body by the lid locking mechanism, the protrusion abutting the straw portion crushes the straw portion, blocking the liquid passage of the straw portion, and the straw portion crushed by the protrusion comes into close contact with the periphery of the second air hole, thereby blocking the second air hole. [7] The cap body has a peripheral wall portion, an upper wall portion covering an upper surface of the peripheral wall portion, an attachment hole penetrating the upper wall portion, and a fitting protrusion protruding from a lower surface of the upper wall portion, The straw member has a seal portion protruding in a radially expanding direction from a midpoint in the length direction of the straw portion, and a fitting hole provided in the seal portion, The straw member is detachably attached to the cap body by passing the straw member through the attachment hole, and fitting the fitting protrusion into the fitting hole, and then fitting the seal member to the inside of the cap body. A cap unit described in any one of [1] to [6], characterized in that when the cap body is attached to the container body, the seal portion seals the space between the container body and the cap body. [8] The cap unit according to any one of [1] to [7] above; A capped container comprising: a container body to which the cap unit is attached. [9] The capped container according to [8], wherein the container body has a vacuum insulation structure. [Effects of the Invention]
[0012] As described above, according to the present invention, it is possible to provide a cap unit with a straw that prevents the beverage inside the container body from leaking out and allows the air vent to be opened and closed properly, as well as a capped container that is equipped with such a cap unit, thereby enabling further improvement in usability. [Brief explanation of the drawings]
[0013] [Figure 1] 1 is a perspective view showing the appearance of a capped container equipped with a cap unit according to one embodiment of the present invention; [Figure 2] 10 is a cross-sectional view showing a closed state of a cap unit provided in a capped container. FIG. [Figure 3] 10 is a cross-sectional view showing an unlocked state of a cap unit provided in a capped container. FIG. [Figure 4] 10 is a cross-sectional view showing an open state of a cap unit provided on a capped container. FIG. [Figure 5] FIG. 2 is an exploded perspective view of the configuration of the cap unit as viewed from above. [Figure 6] FIG. 2 is an exploded perspective view of the configuration of the cap unit as viewed from below. [Figure 7] FIG. 2 is a plan view of the configuration of the cap unit as viewed from below. [Figure 8] FIG. 10 is a cross-sectional view showing a modified example of the cap unit. [Figure 9] FIG. 10 is a perspective view showing a configuration in which a notched recess is provided in a cap unit. [Figure 10] FIG. 10 is a perspective view showing a configuration in which a gripping piece is provided on a valve member of a cap unit. [Figure 11] 11 is a cross-sectional view showing a closed state of the cap unit shown in FIG. 10. FIG. [Figure 12] FIG. 10 is a perspective view showing a configuration in which a waterproof gasket of the cap unit is provided separately. DETAILED DESCRIPTION OF THE INVENTION
[0014] Hereinafter, embodiments of the present invention will be described in detail with reference to the drawings. As one embodiment of the present invention, a capped container 100 including a cap unit 1 shown in, for example, FIGS. 1 to 12 will be described.
[0015] FIG. 1 is a perspective view showing the appearance of a capped container 100 including a cap unit 1. FIG. 2 is a cross-sectional view showing a closed state of the cap unit 1 included in the capped container 100. FIG. 3 is a cross-sectional view showing an unlocked state of the cap unit 1 included in the capped container 100. FIG. 4 is a cross-sectional view showing an open state of the cap unit 1 included in the capped container 100. FIG. 5 is an exploded perspective view of the cap unit 1 as viewed from above. FIG. 6 is an exploded perspective view of the cap unit 1 as viewed from below. FIG. 7 is a plan view of the cap unit 1 as viewed from below. FIG. 8 is a cross-sectional view showing a modified example of the cap unit 1. FIG. 9 is a perspective view showing a configuration in which a notched recess 32 is provided in the cap unit 1. FIG. 10 is a perspective view showing a configuration in which a gripping piece 33 is provided on the valve member 11 of the cap unit 1. FIG. 11 is a cross-sectional view showing a closed state of the cap unit 1 shown in FIG. 10. FIG. 12 is a perspective view showing a configuration in which a waterproof gasket 34 of the cap unit 1 is provided separately.
[0016] As shown in Figures 1 to 4, the capped container 100 of this embodiment is a beverage container that comprises a cap unit 1 with a straw and a container body 2 to which the cap unit 1 is detachably attached, and allows the beverage (liquid) in the container body 2 to be drunk through the straw portion 7a described below.
[0017] Furthermore, in the capped container 100 of this embodiment, the container body 2 having a vacuum insulation structure makes it possible to keep the beverage (contents) contained in the container body 2 cold (or hot).
[0018] Specifically, the container body 2 has a cylindrical outer container 3 and an inner container 4 with a bottom made of, for example, stainless steel, and is configured as a double-structure container in which the mouths of the outer container 3 and the inner container 4 are joined together with the inner container 4 housed inside the outer container 3. A vacuum insulation layer 5 is provided between the outer container 3 and the inner container 4. The vacuum insulation layer 5 can be formed, for example, by blocking a vent hole provided in the center of the bottom of the outer container 3 in a chamber that has been reduced to a high vacuum (evacuated).
[0019] The container body 2 has a substantially circular bottom 2a, a body 2b that stands in a substantially cylindrical shape from the outer periphery of the bottom 2a, and a substantially cylindrical mouth / neck 2c that is tapered in diameter at the upper side of the body 2b. The upper end of the mouth / neck 2c opens in a circular shape as an upper opening 2d of the container body 2.
[0020] In the capped container 100 of this embodiment, the container body 2 has an overall substantially cylindrical external shape, but the external shape of the container body 2 is not particularly limited and can be modified as appropriate to suit the size, design, etc. In addition, the outer peripheral surface of the container body 2 may be painted, printed, or the like.
[0021] As shown in Figures 2 to 7, the cap unit 1 of this embodiment comprises a cap body 6 that closes the upper opening 2d of the container body 2, a straw member 7 including a straw portion 7a protruding from the upper part of the cap body 6, a lid body 9 that is rotatably attached to the cap body 6 via a first hinge portion 8, a lid locking mechanism 10 that fixes the lid body 9 to the cap body 6, and a valve member 11 that is attached to the upper part of the cap body 6 between the straw portion 7a and the lid locking mechanism 10.
[0022] In the capped container 100 of this embodiment, the side on which the first hinge portion 8 of the cap unit 1 is provided will be referred to as the "rear side," and the side opposite the side on which the first hinge portion 8 is provided will be referred to as the "front side."
[0023] The cap body 6 is made of a synthetic resin such as polypropylene, etc. The cap body 6 has a peripheral wall portion 6a formed in a substantially cylindrical shape, and an upper wall portion 6b covering the upper surface of the peripheral wall portion 6a.
[0024] The cap body 6 is detachably attached by screwing to the neck portion 2c of the container body 2. For this purpose, a female screw portion 12 is provided on the inner peripheral surface of the peripheral wall portion 6a. On the other hand, a male screw portion 13 that screws into the female screw portion 12 is provided on the outer peripheral surface of the neck portion 2c of the container body 2.
[0025] The cap body 6 has a mounting hole 14 penetrating substantially the center of the upper wall portion 6b, and a fitting protrusion 15 located forward of the mounting hole 14 and protruding from the lower surface of the upper wall portion 6b.
[0026] The straw member 7 is made of an elastic material such as silicone rubber or an elastomer, and has a tubular straw portion 7a, a seal portion 7b that protrudes in the radial direction from the middle of the length of the straw portion 7a, a fitting hole 7c provided in the seal portion 7b, and a pipe connection portion 7d provided at the lower end of the straw portion 7a.
[0027] The straw member 7 is removably attached to the cap body 6 by passing the straw portion 7a through the mounting hole 14, fitting the fitting protrusion 15 into the fitting hole 7c, and then fitting the seal portion 7b inside the cap body 6.
[0028] Furthermore, the straw member 7 can be removed from the cap body 6 and washed separately from the cap body 6, making it possible to keep the space between the straw member 7 and the cap body 6 hygienic.
[0029] The straw part 7a protrudes from the upper part of the cap body 6 and is bent forward.
[0030] When the cap body 6 is attached to the neck portion 2c of the container body 2, the sealing portion 7b comes into close contact with the upper opening 2d (the upper end of the neck portion 2c) around the entire circumference, thereby functioning as a waterproof gasket that seals the space between the container body 2 and the cap body 6.
[0031] A suction pipe 16 that sucks in the beverage contained in the container body 2 is connected to the pipe connection part 7d. The suction pipe 16 extends cylindrically from the pipe connection part 7d to near the bottom of the container body 2. This makes it possible to drink the beverage to the last drop even when there is little beverage left in the container body 2.
[0032] The lower end of the suction pipe 16 can be appropriately modified, such as by cutting a portion of it diagonally or by cutting a portion in a wave-like shape, etc. This prevents the suction pipe 16 from sticking or making it difficult to drink the beverage in the container body 2, even if the lower end of the suction pipe 16 abuts against the inside bottom or side of the container body 2.
[0033] The lid 9 is made of a synthetic resin such as polypropylene. The lid 9 has a peripheral wall 9a formed in a substantially cylindrical shape and a top wall 9b covering the top surface of the peripheral wall 9a. The lid 9 is rotatably attached to the cap body 6 via a first hinge 8 provided at the top of the rear end of the cap body 6.
[0034] Furthermore, a protrusion 17 is provided on the lower surface of the inside of the lid 9 so as to protrude downward. The straw part 7a is accommodated inside the lid 9 in a bent state by this protrusion 17.
[0035] The lid locking mechanism 10 has a locking member 19 rotatably attached to the front side of the cap body 6 via a second hinge portion 18, a biasing member 20 that biases the locking member 19 toward one side in the rotation direction, and a stopper portion 21 provided on the locking member 19.
[0036] The locking member 19 has an upper arm portion 19a extending upward from the second hinge portion 18, a lower arm portion 19b extending downward from the second hinge portion 18, and a rear arm portion 19c extending rearward from the upper arm portion 19a.
[0037] The biasing member 20 is made of an elastic member such as a coil spring. The biasing member 20 is disposed in a compressed state between the lower arm portion 19b and the peripheral wall portion 6a. Note that the biasing member 20 may also be made of an elastic member such as rubber, elastomer, or the like, such as silicone rubber.
[0038] The stopper portion 21 is provided so as to protrude downward from the tip end side of the rear arm portion 19c.
[0039] The lid locking mechanism 10 has a first locking portion 22 provided on the locking member 19 side and a first locked portion 23 provided on the lid body 9 side. The first locking portion 22 consists of a hook portion that protrudes rearward from the tip of the upper arm portion 19a. The first locked portion 23 consists of a hook portion that protrudes frontward from the lower end portion on the front side of the lid body 9.
[0040] In the lid locking mechanism 10, as shown in Figure 2, when the lid body 9 closes the top of the cap body 6, the first engaging portion 22 on the locking member 19 side, which is biased by the biasing member 20, engages with the first engaged portion 23 on the lid body 9 side, thereby fixing the lid body 9 to the cap body 6.
[0041] The locking member 19 is freely rotatable between a locked position in which the first engaging portion 22 is engaged with the first engaged portion 23, and an unlocked position in which the engaged state between the first engaging portion 22 and the first engaged portion 23 is released.
[0042] Therefore, in the lid locking mechanism 10, as shown in Figure 3, by pressing the lower arm portion 19b of the locking member 19 against the force of the biasing member 20, it is possible to rotate the locking member 19 from the locked position to the unlocked position, thereby releasing the locked state between the first locking portion 22 and the first locked portion 23.
[0043] The lid locking mechanism 10 also has a second locking portion 24 provided on the locking member 19 side and a second locked portion 25 provided on the lid 9 side. The second locking portion 24 consists of a hook portion that protrudes upward from the tip of the rear arm portion 19c. The second locked portion 25 consists of a hook portion that protrudes rearward from the lower end of the front side of the lid 9.
[0044] In the lid locking mechanism 10, as shown in Fig. 2, when the lid body 9 is fixed to the cap body 6, pressing the lower arm portion 19b of the locking member 19 rotates the locking member 19 from the locked position to the unlocked position as shown in Fig. 3, whereby the locked state between the first locking portion 22 and the first locked portion 23 is released, and then the second locking portion 24 on the locking member 19 side is locked with the second locked portion 25 on the lid body 9 side. This restricts the rotation of the lid body 9 to one side (opening direction).
[0045] On the other hand, in the lid lock mechanism 10, from the unlocked state shown in Fig. 3, the pressing operation on the locking member 19 is released, and the locking member 19, biased by the biasing member 20, rotates from the unlocked position to the locked position as shown in Fig. 4, thereby releasing the locked state between the second locking portion 24 and the second locked portion 25. This allows the lid body 9 to rotate (open and close).
[0046] On the other hand, in the lid lock mechanism 10, by rotating the lid 9 from the state shown in FIG. 4 in a direction (closing direction) that closes the top of the cap body 6, the first engaging portion 22 and the first locked portion 23 slide against each other, and the locking member 19 rotates from the locked position to the unlocked position against the biasing force of the biasing member 20. Furthermore, as the first engaging portion 22 climbs over the first locked portion 23, the locking member 19 is rotated from the unlocked position to the locked position by the biasing force of the biasing member 20. At this time, the first engaging portion 22 is locked by the first locked portion 23. As a result, the lid 9 closes the top of the cap body 6, as shown in FIG. 2, and the lid 9 can be fixed to the cap body 6.
[0047] As shown in FIGS. 2 to 7, the valve member 11 is made of an elastic material such as rubber, elastomer, etc., such as silicone rubber, and is formed in the shape of a generally rectangular flat plate as a whole. The valve member 11 has a cylindrical projection 27 with a first vent hole 26 formed on the front side thereof, and a second vent hole 28 on the rear side thereof.
[0048] The cap body 6 has a fitting portion 29 into which the valve member 11 is fitted, a first through hole 30 that penetrates the front side of the bottom of the fitting portion 29, and a second through hole 31 that penetrates the rear side of the bottom of the fitting portion 29.
[0049] The valve member 11 is detachably attached to the cap body 6 by being fitted inside the fitting portion 29 with the cylindrical protrusion portion 27 fitted into the first through-hole 30. As a result, the second vent hole 28 is in communication with the second through-hole 31.
[0050] Furthermore, by removing the valve member 11 from the cap body 6, it can be washed separately from the cap body 6, and the space between the valve member 11 and the cap body 6 can be kept hygienic.
[0051] In this embodiment, the fitting portion 29 is configured as a recess provided on the upper part of the cap body 6, but is not necessarily limited to this configuration. For example, it may be configured such that a rib into which the valve member 11 can be fitted protrudes from the upper surface of the cap body 6.
[0052] In the cap unit 1 of this embodiment having the above-described configuration, as shown in Fig. 2, when the lid body 9 closes the top of the cap body 6, the straw portion 7a is bent at two points and stored inside the lid body 9. In addition, the protrusions 17 abutting against the straw portion 7a crush the straw portion 7a, thereby closing the liquid passage of the straw portion 7a.
[0053] At this time, the stopper portion 21 of the locking member 19 comes into close contact with the periphery of the first air vent 26 of the valve member 11, thereby blocking the first air vent 26. In addition, the straw portion 7a, which has been crushed by the protrusion 17 of the lid body 9, comes into close contact with the periphery of the second air vent 28, thereby blocking the second air vent 28.
[0054] This makes it possible to prevent the beverage in the container body 2 from leaking out when the lid body 9 is closing the top of the cap body 6.
[0055] In the cap unit 1 of this embodiment, from the closed state shown in Figure 2, by pressing the lower arm portion 19b side of the locking member 19, as shown in Figure 3, the locking member 19 is rotated from the locked position to the unlocked position, thereby releasing the locked state between the first locking portion 22 and the first locked portion 23.
[0056] At this time, second locking portion 24 is locked to second locked portion 25. Also, plug portion 21 of locking member 19 moves away from the periphery of first air vent 26, thereby opening first air vent 26.
[0057] Furthermore, when locking member 19 is rotated from the locked position to the unlocked position, first air vent 26 is opened before cover 9 is rotated in the open direction. At this time, first air vent 26 is opened before the locked state between first engaging portion 22 and first engaged portion 23 is released.
[0058] This allows the air inside the container body 2 to be released to the outside through the first air vent 26 (releasing the pressure inside the container body 2 to the outside), and then the straw portion 7a elastically returns to its original position, opening the liquid passage of the straw portion 7a, making it possible to prevent residual liquid inside the straw portion 7a from scattering to the outside.
[0059] In the cap unit 1 of this embodiment, by releasing the pressure on the locking member 19 from the unlocked state shown in Figure 3 as shown in Figure 4, the locking member 19, which is biased by the biasing member 20, rotates from the unlocked position to the locked position, and the locked state between the second locking portion 24 and the second locked portion 25 is released.
[0060] At this time, the straw portion 7a elastically returns to its original state from the bent state while pushing up the lid body 9. As the straw portion 7a elastically returns to its original state, the lid body 9 is rotated in the opening direction. Furthermore, the straw portion 7a moves away from the periphery of the second air vent 28, so that the second air vent 28 is opened.
[0061] Meanwhile, the stopper portion 21 of the locking member 19 comes into close contact with the periphery of the first vent hole 26, thereby again closing the first vent hole 26. This prevents the beverage in the container body 2 from leaking out, and allows the beverage in the container body 2 to be drunk by sucking it through the straw portion 7a.
[0062] Furthermore, as the amount of beverage in the container body 2 decreases, the pressure inside the container body 2 becomes negative. At this time, outside air is introduced into the container body 2 through the second air vent 28. This causes the pressure inside the container body 2 to return to atmospheric pressure, making it possible to continue drinking the beverage inside the container body 2 through the straw part 7a.
[0063] As described above, in the cap unit 1 of this embodiment, the valve member 11 provided with the above-mentioned first air vent 26 and second air vent 28 is configured to be fitted into the fitting portion 29 provided on the upper part of the cap body 6, making it possible to attach the valve member 11 to an appropriate position on the cap body 6.
[0064] Furthermore, in the cap unit 1 of this embodiment, the valve member 11, which is separate from the straw member 7 described above, is attached to the outside of the cap body 6, so there is no misalignment of the first air vent 26 and the second air vent 28 provided in the valve member 11.
[0065] Furthermore, in the cap unit 1 of this embodiment, the stopper portion 21 provided on the locking member 19 described above makes it possible to appropriately open and close the first vent hole 26 provided in the valve member 11. Also, the second through-hole 31 provided in the cap body 6 and the second vent hole 28 provided in the valve member 11 can be easily aligned.
[0066] Furthermore, in the cap unit 1 of this embodiment, the valve member 11 is attached to or detached from the cap body 6 by pressing the lower arm portion 19b of the locking member 19 against the biasing force of the above-mentioned biasing member 20 and rotating the locking member 19 from the locked position to the unlocked position, so that the valve member 11 is not removed by mistake. Furthermore, the stopper portion 21 of the locking member 19 biased by the above-mentioned biasing member 20 comes into contact with the valve member 11, thereby preventing the valve member 11 from falling off from the cap body 6.
[0067] Furthermore, in the cap unit 1 of this embodiment, the sealing portion 7b is fitted inside the cap body 6 with the fitting protrusion 15 of the cap body 6 fitted into the fitting hole 7c of the straw member 7. This makes it possible to prevent twisting or displacement of the sealing portion 7b, which is in sliding contact with the upper opening 2d (the upper end of the neck portion 2c), when the cap body 6 is attached to the neck portion 2c of the container body 2 by screwing.
[0068] In addition, in the cap unit 1 of this embodiment, by using a straw member 7 in which the straw portion 7a and the seal portion 7b described above are integrated, the structure can be simplified and it can be easily attached and detached to and from the cap body 6.
[0069] As described above, the cap unit 1 of this embodiment prevents the beverage in the container body 2 from leaking to the outside, and also makes it possible to appropriately open and close the first vent hole 26 and the second vent hole 28, which release air to the outside from the container body 2. Therefore, by providing the capped container 100 of this embodiment with such a cap unit 1, it is possible to further improve usability.
[0070] The present invention is not necessarily limited to the above-described embodiment, and various modifications can be made without departing from the spirit of the present invention. For example, the cap unit 1 is not necessarily limited to the configuration of the valve member 11 described above, and may be configured as a valve member 11A shown in Fig. 8. The valve member 11A has a cylindrical protrusion 27 with a first air vent 26 on the front side and a second air vent 28 on the rear side.
[0071] In this configuration, the cylindrical protrusion portion 27 of the valve member 11A is fitted into the second through hole 31 of the cap body 6, and the valve member 11A is fitted into the fitting portion 29 of the cap body 6 with the first air vent 26 of the valve member 11A connected to the first through hole 30 of the cap body 6.
[0072] Furthermore, in the cap unit 1, as shown in FIG. 9, for example, a cutout recess 32 may be provided around the fitting portion 29 to make it easier to remove the valve member 11 from the fitting portion 29.
[0073] Furthermore, in the cap unit 1, for example, as shown in FIG. 10, a gripping piece 33 may be provided on the valve member 11, and the valve member 11 may be configured to be easily removed from the fitting portion 29 by pulling the gripping piece 33.
[0074] Furthermore, when such a gripping piece 33 is provided, as shown in Figure 11, the straw portion 7a is crushed by the protrusion 17 of the lid body 9, bending the gripping piece 33 and coming into close contact with the periphery of the second air vent 28, thereby making it possible to block the second air vent 28.
[0075] Furthermore, in the cap unit 1, for example, as shown in FIG. 12, it is also possible to configure the seal portion 7b of the straw member 7 as a waterproof packing 34 provided separately from the straw member 7.
[0076] In the above embodiment, the present invention is applied to a capped container 100 that has a cold (or hot) insulation function provided by a container body 2 having a vacuum insulation structure, but the present invention is not necessarily limited to a container having a container body 2 having such a vacuum insulation structure. In other words, the present invention can be widely applied to a capped container in which a cap unit with a straw is detachably attached to the container body. [Explanation of symbols]
[0077] 100...container with cap 1...cap unit 2...container body 3...outer container 4...inner container 5...vacuum insulation layer 6...cap body 7...straw member 7a...straw portion 7b...seal portion 8...first hinge portion 9...lid body 10...lid locking mechanism 11, 11A...valve member 12...female thread portion 13...male thread portion 14...mounting hole 15...fitting protrusion 16...suction pipe 17...projection portion 18...second hinge portion 19...locking member 19a...upper arm portion 19b...lower arm portion 19c...rear arm portion 20...urging member 21...plug portion 22...first locking portion 23...first locked portion 24...second locking portion 25...second locked portion 26...first air vent 27... Cylindrical protrusion portion 28... Second ventilation hole 29... Fitting portion 30... First through hole 31... Second through hole 32... Notched recess 33... Grip piece 34... Watertight packing
Claims
1. A cap unit that can be detachably attached to a container body having an open top, a cap body that is attached to the container body in a state where the top opening is closed; a straw member including a straw portion protruding from an upper portion of the cap body; a lid body that is rotatably attached to the cap body via a first hinge portion and that houses the straw portion inside in a folded state; a lid locking mechanism located on the opposite side of the cap body from the first hinge portion, the lid locking mechanism fixing the lid to the cap body when the lid closes the top of the cap body; a valve member detachably attached to an upper portion of the cap body between the straw portion and the lid locking mechanism, the cap body has a fitting portion into which the valve member is fitted, and a first through-hole and a second through-hole that penetrate a bottom portion of the fitting portion, the valve member has a first vent hole and a second vent hole; the valve member is fitted into the fitting portion in a state in which the first through-hole and the first vent hole are in communication with each other and the second through-hole and the second vent hole are in communication with each other; the lid locking mechanism has a locking member attached to the front side of the cap body, the locking member has a first engaging portion and a second engaging portion; the lid body has a first locked portion and a second locked portion, the locking member is rotatable via a second hinge portion between a locking position where the first engaging portion is engaged with the first engaged portion and an unlocking position where the engaged state between the first engaging portion and the first engaged portion is released, When the locking member is in the locked position, the liquid passage of the straw part is closed, and the first air vent and the second air vent are closed. When the locking member is in the unlocked position, the second engaging portion is engaged with the second engaged portion, and the first ventilation hole and the second ventilation hole are in an open state; A cap unit characterized in that, when both the first engaging portion and the second engaging portion are not engaged with the first engaged portion and the second engaged portion, the liquid passage of the straw portion is open, the first air vent is closed, and the second air vent is open.
2. When the locking member moves from the unlocked position to the locked position, the second engaging portion disengages from the second engaged portion, the lid body opens, and both the first engaging portion and the second engaging portion are no longer engaged with the first engaged portion and the second engaged portion, The cap unit according to claim 1, wherein in this state, the first air vent is closed by the locking member, and the liquid passage of the straw portion and the second air vent are opened.
3. A cap unit as described in claim 1 or 2, characterized in that when the locking member changes from the locked position to the unlocked position, the first air vent is opened before the locked state between the first engaging portion and the first engaged portion is released.
4. the valve member has a cylindrical protrusion portion in which the first air vent hole or the second air vent hole is provided, 4. The cap unit according to claim 1, wherein the cylindrical protrusion is fitted into the first through hole or the second through hole.
5. the lid locking mechanism includes the locking member rotatably attached to the front side of the cap body via a second hinge portion, a biasing member that biases the locking member toward one side in a rotation direction, and a stopper portion provided on the locking member; When the locking member is biased by the biasing member and is in the locked position, the plug portion comes into close contact with the periphery of the first air vent, thereby blocking the first air vent, A cap unit described in any one of claims 1 to 4, characterized in that when the locking member is in the unlocked position against the force of the biasing member, the stopper portion moves away from the periphery of the first air vent, thereby opening the first air vent.
6. the locking member has an upper arm portion extending upward from the second hinge portion, a lower arm portion extending downward from the second hinge portion, and a rear arm portion extending rearward from the upper arm portion, the first locking portion is provided on a tip side of the upper arm portion, The cap unit according to claim 5 , wherein the plug portion is provided on the tip side of the rear arm portion.
7. When the lid body is fixed to the cap body, the locking member is rotated from the locked position to the unlocked position, so that, in a position where the first air vent is opened, the second engaging portion is engaged with the second engaged portion, and rotation of the lid body to one side is restricted; A cap unit as described in claim 5 or 6, characterized in that from this state, by rotating the locking member from the unlocked position to the locked position, the engagement between the second engaging portion and the second engaged portion is released and the lid body is rotated toward the one side.
8. The lid has a protrusion protruding from the inner lower surface, A cap unit as described in any one of claims 1 to 6, characterized in that when the lid body is fixed to the cap body by the lid locking mechanism, the protrusion abutting the straw portion crushes the straw portion, blocking the liquid passage of the straw portion, and the straw portion crushed by the protrusion is tightly attached to the periphery of the second air hole, thereby blocking the second air hole.
9. the cap body has a peripheral wall portion, an upper wall portion covering an upper surface of the peripheral wall portion, an attachment hole penetrating the upper wall portion, and a fitting protrusion protruding from a lower surface of the upper wall portion; The straw member has a seal portion protruding in a radially expanding direction from a midpoint in the length direction of the straw portion, and a fitting hole provided in the seal portion, The straw member is detachably attached to the cap body by passing the straw member through the attachment hole, and fitting the fitting protrusion into the fitting hole, and then fitting the seal member to the inside of the cap body. The cap unit according to any one of claims 1 to 8, characterized in that when the cap body is attached to the container body, the seal portion seals the space between the container body and the cap body.
10. A cap unit according to any one of claims 1 to 9, A capped container comprising: a container body to which the cap unit is attached.
Citation Information
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