This application relates generally to caps for liquid containers, and more particularly to a pour cap for liquid containers such as sports bottles.
Athletes engaged in sport activities have for a long time recognized the need to stay constantly hydrated. Liquid containers, such as sports bottles, provide an easily accessible liquid source for athletes and other persons engaged in various strenuous activities. Conventionally, sport bottles have had caps of multiple shapes and sizes that allow the athlete to gain easy access to the contents of the liquid container without fully removing the lid or the cap of the bottle, by way of valves of different type. There has also been an increasing trend in bottle design and innovation to adapt these bottles for greater integration with the athletes' activity and optimal ease of access to a hydration source without disturbing the activity substantially.
For pouring the liquid out of a conventional sports bottle, the cap can be screwed off, and the liquid poured out of the mouth of the bottle. Manually openable valves are also known, which can open the liquid conduit of the sports bottle by pulling on the valve mouthpiece with the fingers. In some instances, when the athlete's hands are occupied at other tasks, for instance maneuvering a bicycle, teeth or lips of the athlete may be used while the bottle is held in one hand. Further opening mechanisms requiring a certain level of dexterity or manipulations have also been explored, such as pop-out spouts which in most cases necessitate a firm grip on the bottle with one hand and another hand free for opening the spout.
However, these liquid release and sport bottle opening mechanisms can be inconvenient in many situations, particularly during strenuous activities such as cycling or running. If the cap is fully removed from a conventional sports bottle, the liquid is more likely to spill out of the bottle. Since the mouth of a conventional sports bottle has a relatively large diameter, the liquid is thus prone to fall out of the sides of the bottle and splatter onto a person's face and clothes.
Manually-actuated release mechanisms are also disadvantageous during some activities, in that they require both hands to be available, or in that the mouthpiece come in contact with the athlete's mouth, sometimes at high velocity. They can also sometimes be difficult to access properly without using the athlete's vision, causing him or her to disturb the activity to focus on the cap mechanism. Other liquid release and opening mechanisms requiring a greater degree of dexterity for manipulation also have the same limitations.
It is an aim of the present disclosure to provide a sport bottle that addresses issues related to the prior art.
Therefore, in accordance with the present disclosure, there is provided a sport bottle comprising: a liquid container body defining a cavity with top open end, the cavity adapted to contain a liquid; a cap releasably connected to the container body to close the cavity, said cap having a body with a spout extending outwardly from the body, a conduit extending transversely through the cap and opened on opposed sides of a circumference of the body of the cap, the conduit being in fluid communication with the spout and having at least one passage in fluid communication with the cavity of the liquid container body; and a valve formed of at least two pistons disposed onto a shaft, said valve inserted into the conduit with ends of the valve projecting out of the opposite sides of the circumference of the body, the pistons being sized to sealingly define with the conduit an interstitial space, the valve displaceable by pressing the ends between a closed configuration in which the pistons block liquid from the cavity from entering the interstitial space in the conduit, and a dispensing configuration in which the interstitial space is aligned with the at least one passage and the spout to allow liquid from the cavity to enter the interstitial space in the conduit and reach the spout.
Reference will now be made to the exemplary embodiments illustrated, and specific language will be used herein to describe the same. It will nevertheless be understood that no limitation of the scope of the invention is thereby intended.
Referring to the drawings and more particularly to
The container body 11 is to be generally cylindrical in shape and having an outside diameter sized for handling by a user. In a preferred embodiment, the container body 11 can have a ridge 16 or otherwise a form of depression on a part of a sidewall 17 so that the bottle can be held captive more easily to a bottle rack of a bicycle or other connecting mechanism of sport equipment. The central region may for example be shaped to facilitate easier grasping of the sport bottle 10 by a user. It is within the scope of the present disclosure that other configurations may be utilized.
The container body 11 can be formed from any suitable material or combination of materials. Illustrative examples of materials that may be used include polycarbonate, polyethylene, polypropylene, glass, metal, and the like. Some embodiments may require the materials to be translucent or semi-translucent so as to allow the athlete to see the remaining quantity of liquid in the bottle and in other embodiments, more rigid opaque materials can be favored. Moreover, it is considered to provide the container body 11 with an insulating layer embedded in its sidewall 17, or sandwiched between a pair of sidewalls, such as shown in
The cap 12 is to be connected, and typically removably connected, to the neck 15 of the liquid container, by cooperation between the tapped connector 13 and the threaded connector 14. By “removably connected,” it is meant that the cap assembly is designed, or adapted, to be repeatedly connected to and disconnected from the neck 15 of the container body 11 without deformity of the cap body 12 or the neck 15. When properly connected to the neck 15, the cap body 12 forms a seal with the neck 15 of the container body 11 and thereby selectively seals the internal compartment of the container to prevent or limit the liquid from being dispensed accidently through the junction between the container body 11 and the cap 12.
The cap 12 contains a body from which protrudes a spout 18 extending outward. In a preferred embodiment, the body has a tubular cylindrical base 12A of a cylindrical shape so as to be of a slightly larger diameter than the neck 15. A bottom of the base 12A is thus open, and a top is closed by a disk-like surface 12B. The spout 18 extends upward from the top of the cap body 12, i.e., from the disk-like panel 12B. A tapering frusto-conical like portion 12C is between the base 12A and the disk-like panel 12B. The closing mechanism is located in the frusto-conical like portion 12C, as will be described hereinafter.
Referring concurrently to
Referring to
Referring to
The cap body 12 contains a closing mechanism comprising a valve 40 in the conduit 20, which the user can move along its longitudinal axis to configure the closing mechanism from a closed to a dispensing configuration. The valve 40 is comprised of a shaft 41 on which are positioned a number of pistons 42. In an embodiment, two sets of two pistons 42 are present on the shaft 41 with the same distance relative to each other and separated by a central portion 46. This symmetrical arrangement of two sets of two pistons 42 allows for the valve 40 to be replaced interchangeably without distinction from one side to the other, i.e., without a specific orientation. While the disclosure contemplates other piston arrangements, any symmetrical arrangement accomplishes the purpose of simplifying the task of replacing the valve 40 if it was removed for cleaning purposes. In an embodiment, the two sets of pistons 42 are to be closer to end heads 45 of the shaft 41 so as to define the central portion 46 which is larger than the distance of the outward piston 42 to the tip of their respective end head 45, as the central portion 46 will occupy a portion of the dispensing conduit 20 as will be described hereinafter, and thus reduce its volume. The pistons 42 may contain grooves 43 on which can be removably but firmly inserted seals such as O-rings 44 made of rubber or some other resilient sealing material. Alternatively, the pistons 42 could be molded in a material effecting the seal without the need for additional seals such as the O-rings 44. Without limiting the generality of the disclosure, the shaft 41 may be of a cylindrical shape of varying diameter and the pistons 42 may be round protuberances of a larger diameter. In an embodiment, the O-rings 44 are integrally molded and disposed about the outer surface of the pistons 42 into the grooves 43 of complementary shape.
Referring to
The valve 40 must be so designed or manufactured so that the shaft 41, with protruding pistons 42 must fit when inserted into the cylindrical conduit 20 positioned transversally through the cap body 12. While this disclosure contemplates all possible dispositions of the cylindrical conduit 20, a preferred embodiment is a cylindrical shaped conduit disposed on the longitude of the cross-section of the cap body 12, hence opened at diametrically opposed sides of the base of the cap body 12.
Referring to concurrently to
In
The user, by applying pressure on the stop member 51 of the stopper 50 positioned at the tip of the valve 40, can thus push the valve 40 through the cylindrical conduit 20 on its longitudinal axis until the stop member 51 abuts the periphery of the opening of the conduit 20. This movement is reciprocal, as the valve 40 may be shifted in the opposite direction, this movement being delimited by the other stop member 51. It is also considered that the outermost pistons 42 on the valve 40 reach the end of the cylindrical conduit 20, to help preventing further movement by the sealing effect of the O-ring 44 on the piston 42 at the entrance of the cylindrical conduit 20. Therefore, the reciprocal movement allows the user to shift the valve 40 between closed and dispensing configurations. From an ergonomical standpoint, it is possible for the user to perform this reciprocal movement with the same hand that is holding the sport bottle 10. Indeed, the user 10 may hold the bottle by its container body 11, using his/her palm and middle finger, ring finger and little finger, with the index finger on one end of the valve 40 (e.g., stopper 50), and the thumb on the other end of the valve 40 (e.g., other stopper 50). The index finger and thumb may apply sufficient force to perform the reciprocal movements between the closed and dispensing configurations.
The valve 40 thus acts as a flow control member by which the pistons 42 in the two distinct configurations either restrict or allow the flow of liquid to the user through the interstitial space A. Such movement of the valve 40 will define the closed and dispensing configuration based on the relative position of the pistons 42 on the valve 40 to the passages 22 in the cylindrical conduit 20.
In the closed configuration, the valve 40 prevents the passage of liquid from the container body 12 to the interstitial space A of the conduit 20.
The dispensing configuration is thus defined in that no sets of pistons 42 disrupt the flow of liquid from the container body 11 through the interstitial space A and into the opening tube 19 of the spout 18. The liquid is thus directed straight to the user and is contained within the confines of the container body 11 through the combined effect of the tapped connector 13 and threaded connector 15 and the restraining effect of the innermost pistons 42 defining the interstitial space A with the conduit A. While multiple inner spaces can be defined with various configurations of openings and pistons, the preferred embodiment contemplates one set of passages 22 defined by two pistons 42.
The foregoing description and the illustrative embodiments of the present invention have been described in detail in varying modifications and alternate embodiments. It should be understood, however, that the foregoing description of the present invention is exemplary only, and that the scope of the present invention is to be limited to the claims as interpreted in view of the prior art. Moreover, the invention illustratively disclosed herein suitably maybe practiced in the absence of any element which is not specifically disclosed herein.
Number | Name | Date | Kind |
---|---|---|---|
1356837 | Stegmaier | Oct 1920 | A |
2472555 | Ward | Jun 1949 | A |
3146913 | Kiyoshi | Sep 1964 | A |
4026442 | Orton | May 1977 | A |
4095727 | Dorsch | Jun 1978 | A |
4271986 | Stecker | Jun 1981 | A |
5699933 | Ho et al. | Dec 1997 | A |
6523711 | Hughes et al. | Feb 2003 | B1 |
6896161 | Patz | May 2005 | B2 |
8302823 | Lim | Nov 2012 | B2 |
8397940 | Steininger | Mar 2013 | B2 |
8608016 | Chiu et al. | Dec 2013 | B2 |
8844742 | Fujita et al. | Sep 2014 | B2 |
8955718 | Ciavarella et al. | Feb 2015 | B2 |
20080257884 | Geberzahn | Oct 2008 | A1 |
Entry |
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Canadian Office Action for corresponding application No. 2,829,830; Report Dated Mar. 31, 2015. |
Number | Date | Country | |
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20150097007 A1 | Apr 2015 | US |