The following relates to a vent, dispenser and holder for a container. More particularly, the following relates to a vent which can receive a dispenser tube which can be stored when not in use in a recess of the container. In certain aspects, the container is configured such that it can stack.
Numerous containers have been designed in a manner that they can contain liquids and other materials therein. However, often times when a liquid is to be poured out of these containers, it is difficult to control the outflow because at the same time air must replace the emptied space where the liquid used to be. In this manner, air will enter the container as liquid leaves, many times through the same orifice. Depending on how fast the liquid is poured out or how much the container is tilted, the flow rate may not be constant due to the air constantly trying to catch up to the flow of liquid. This produces an effect which may be referred to as “glugging.” Meaning, that the flow rate of liquid out the container experiences large fluctuations which make it difficult to accurately pour the liquid out of the container.
Furthermore, some containers such as gas cans have been designed to have a stow away tube, but the problem with many of these designs is that the tube is designed to be reversed and placed inside the container (with the gasoline) while in storage. When in use, the user takes the tube out and fastens it to the opening. While this may provide acceptable space minimization in storage, the fact that the liquid contacts the outer part of the tube means that the user will get their hands dirty by touching the tube and that gasoline in contact with the tube during storage will be exposed to the external environment, causing the user to touch the gasoline or at minimum experience an un-wanted smell.
Thus, it is desirable to provide a system for dispensing liquid from a container that is easy to use, avoids “glugging” (i.e. an un-even dispensing stream due to difficulty equalizing air pressure) and while at the same time being easy and convenient to store in a space saving manner.
Therefore, it is an object of the present invention to provide an easy to install vent system to enable smooth pouring of liquid out of a container.
It is a further object of the present invention to provide a dispenser that can be easily stored on the outside of the container when not in use but can be readily installed in a configuration to enable ease of pouring.
It is a further object of the present invention to provide for dispenser storage without requiring the dispenser to contact liquid in the container when in storage.
The terms “first” and “second” are used to distinguish one element, set, data, object or thing from another, and are not used to designate relative position or arrangement in time.
Therefore, one embodiment of the present invention a container dispenser system is provided. The system includes a container, a first dispenser, and a second dispenser. The container has an orifice and the first dispenser is fitted into the orifice. The first dispenser has at least first and second openings. The first opening is configured to allow liquid to exit the container there through and the second opening is configured to allow fluid to enter the container there through. The second dispenser is configured to connect to the first opening of the first dispenser in a using configuration. The container also has a recess positioned in an outer surface thereof, and the second dispenser is configured to fit into the recess in a storage configuration. The recess has two end portions and a centerline defined there between. At least one portion of the recess is curved such that the centerline curves at least once between the two end portions.
In some embodiments, the first dispenser fits into the orifice such that a cap can be attached to the container to seal the orifice with the first dispenser installed in the orifice.
In some embodiments, the system also includes a flange positioned on the first dispenser. The orifice has first and second sections, the first section positioned outwardly with respect to outward fluid flow from the container with respect to the second section. The first section has a diameter greater than a diameter of the second section such that the flange inserts partially into the orifice at the first section but is prohibited from being inserted into the orifice beyond a location where the first and second sections meet.
In some embodiments, the system also includes an extension in communication with the second opening of the first dispenser. The extension has a through-hole and extends from a bottom side of the first dispenser away from a top side of the first dispenser such that the fluid entering the second opening passes through both the second opening and the through-hole.
In some embodiments, the system also includes a hose located inside the container. The hose has a first end configured to be coupled to the extension of the first dispenser and a second end positioned in a handle of the container such that the fluid entering the second opening passes through the hose and is released inside the container at an area near the handle.
In some embodiments, the second dispenser includes a connector and a tube member. The connector is configured to insert at least partially into the first opening of the first dispenser and the tube member is connected to the connector opposite an end that inserts into the first opening. In some embodiments, the connector has a first section and a second section. The first section is configured to insert into the first opening of the first dispenser and the second section is configured to connect to the tube member. The first section has a first outer diameter greater than a second outer diameter of the second section. The second outer diameter is less than or equal to an inner diameter of the tube member such that the tube member receives the second section.
In some embodiments, the recess includes a center portion connected to the two end portions by two respective intermediate portions. Each of the two intermediate portions are at least partially curved such that the centerline of the recess curves at least twice between the two end portions.
In some embodiments, the system also includes at least two opposed undercut surfaces located on opposite sides of the recess such that upon insertion of the second dispenser past the at least two opposed undercut surfaces, the second dispenser is retained within the recess.
In some embodiments, the system also includes at least one clip configured to attach to the container transverse to the recess such that the at least one clip retains the second dispenser within the recess without interfering with the container being interlocked and stacked with a matching container.
In another embodiment of the present invention, a container vent dispenser is provided. The vent dispenser includes a body having a first side and a second side. The first side including at least first and second openings, both of which pass all the way through the body. The first opening is configured to allow liquid to exit the container there through and the second opening is configured to allow fluid to enter the container there through to equalize pressure due to the liquid that exits the first opening. The first side includes a flange that has a first diameter and a segment extending from the flange towards the second side. The segment has a second diameter smaller than the first diameter. The second side includes a first face with at least two voids therein. The at least two voids extending towards the first side a distance less than a distance between the first and second sides.
In some embodiments, the vent dispenser is configured to be fitting into an orifice of the container. The orifice has first and second sections. The first section positioned outwardly with respect to outward fluid flow from the container with respect to the second section. The first section has a diameter greater than a diameter of the second section such that the flange of the vent dispenser inserts partially into the orifice at the first section but is prohibited from being inserted into the orifice beyond a location where the first and second sections meet.
In some embodiments, the vent dispenser also includes an extension in communication with the second opening and extending from the second side away from the first side and having a through-hole such that the fluid entering the second opening passes through both the second opening and the through-hole.
In some embodiments, the at least two voids are sized and shaped such that a maximum wall thickness of the body is no more than 30% greater than a minimum wall thickness of the body.
In some embodiments, the vent dispenser also includes a spout configured to connect to the first opening in a using configuration. The spout has a connector and a tube member. The connector is configured to insert at least partially into the first opening and the tube member is connected to the connector opposite an end that inserts into the first opening. In some embodiments, the spout is configured to fit into a recess of the container in a storage configuration. The recess is positioned in an outer surface of the container and has two end portions and at least one curved portion there between such that the recess has a centerline that curves at least once between the two end portions. In other embodiments, the recess also includes at least two opposed undercut surfaces located on opposite sides of the recess such that upon insertion of the spout past the at least two opposed undercut surfaces, the spout is retained within the recess.
In an alternative embodiment of the present invention, a container for holding and dispensing liquid is provided. The container includes a hollow vessel, a vent dispenser, and a spout. The vessel has an orifice and the vent dispenser is fitted into the orifice. The vent dispenser includes a body having a first side and a second side. The first side includes at least first and second openings, both of which pass all the way through the body. The first opening is configured to allow liquid to exit the vessel there through and the second opening is configured to allow fluid to enter the vessel there through to equalize pressure due to the liquid that exits the first opening. A flange is positioned on the first side of the body such that the first side has a first diameter that is greater than a second diameter of the second side. The second side includes a first face having at least two voids therein. The at least two voids extending towards the first side a distance less than a distance between the first and second sides. The orifice includes first and second sections. The first section positioned outwardly with respect to outward liquid flow from the vessel with respect to the second section. The first section has a third diameter greater than a fourth diameter of the second section such that the flange of the vent dispenser inserts partially into the orifice at the first section but is prohibited from being inserted into the orifice beyond a location where the first and second sections meet. The spout is configured to connect to the first opening of the vent dispenser in a using configuration. The spout has a connector and a tube member. The connector is configured to insert at least partially into the first opening and the tube member is connected to the connector opposite an end that inserts into the first opening. The vessel also includes a recess that is positioned in an outer surface thereof. The spout is configured to fit into the recess in a storage configuration. The recess has two end portions and at least two curved portions there between such that the recess has a centerline that curves at least twice between the two end portions.
In some embodiments, the container also includes an extension in communication with the second opening of the vent dispenser. The extension has a through-hole and extends from the second side of the vent dispenser away from the first side of the vent dispenser such that the fluid entering the second opening passes through both the second opening and the through-hole.
In some embodiments, the container also includes at least two opposed undercut surfaces located on opposite sides of the recess such that upon insertion of the spout past the at least two opposed undercut surfaces, the spout is retained within the recess.
Other objects of the invention and its particular features and advantages will become more apparent from consideration of the following drawings and accompanying detailed description.
Referring now to the drawings, wherein like reference numerals designate corresponding structure throughout the views. The following examples are presented to further illustrate and explain the present invention and should not be taken as limiting in any regard.
In some embodiments, the opening 122 has a lower spout 124 that preferably extends from the lower end 123 away from the upper end 121. The lower spout 124 has an upper hole 128, a lower hole 130, and outer ribs or rings 126. The outer ribs 126 are configured to secure to a vent hose 150, which is positioned inside the container 100 in some embodiments, as depicted in
In preferred embodiments, the upper end 121 of the vent 118 has a circumferential flange 136 such that the upper end 121 has an outer diameter greater than an outer diameter of the body 125 of the vent 118. As shown in
The underside of the container as shown in
As is also shown, the end portions 1015 of the recess 1001 are wider than the straight and curved portions connecting the end portions, which may enable wider dispenser nozzles to be stored in the container with the tubes. For example, a shower head type nozzle could be connected to one end of the tube and may be designed to fit in an end portion 1015 where the clip 1200 covers and secures that larger nozzle.
The container 100 may be manufactured by blow molding whereas the vent 118 may be manufactured by injection molding. In this manner, the vent 118 can be removed from the container 100 by pulling it out of the orifice 117. When the tube 138 is stored, a screw cap can seal the container 100 either with or without the vent 118. Therefore, in manufacturing, the container and vent may be made and the vent 118 later installed by inserting it into the orifice 117 of the container 100. In some embodiments, the vent 118 is bonded to the container 100 once installed, for example by a glue or by heating/fusing the plastic parts.
Although the invention has been described with reference to a particular arrangement of parts, features and the like, these are not intended to exhaust all possible arrangements or features, and indeed many other modifications and variations will be ascertainable to those of skill in the art.
Number | Name | Date | Kind |
---|---|---|---|
2516728 | Smith | Jul 1950 | A |
2812120 | Beall, Jr. | Nov 1957 | A |
2915223 | Beall, Jr. | Dec 1959 | A |
3173587 | Stearns | Mar 1965 | A |
3506167 | Orr | Apr 1970 | A |
3717289 | Laurizio | Feb 1973 | A |
3858766 | Schiemann | Jan 1975 | A |
3901417 | Schiemann | Aug 1975 | A |
4273265 | Anderson | Jun 1981 | A |
D266017 | Kellogg | Aug 1982 | S |
4509665 | Goodall | Apr 1985 | A |
4650100 | Echazabal, Jr. | Mar 1987 | A |
5108016 | Waring | Apr 1992 | A |
5110013 | Clark | May 1992 | A |
5232110 | Purnell | Aug 1993 | A |
5377882 | Pham | Jan 1995 | A |
5400928 | Resnick | Mar 1995 | A |
5406994 | Mitchell et al. | Apr 1995 | A |
5433346 | Howe | Jul 1995 | A |
5472124 | Martushev | Dec 1995 | A |
5538165 | Frohn | Jul 1996 | A |
5597097 | Morris | Jan 1997 | A |
5651908 | Mansfield | Jul 1997 | A |
5671868 | Herr | Sep 1997 | A |
5711355 | Kowalczyk | Jan 1998 | A |
5746358 | Crosby | May 1998 | A |
5850949 | Koerbel | Dec 1998 | A |
5897035 | Schlomer | Apr 1999 | A |
5924608 | Chiu | Jul 1999 | A |
6029858 | Srokose | Feb 2000 | A |
6045013 | Yang | Apr 2000 | A |
6050455 | Soehnlen | Apr 2000 | A |
6068161 | Soehnlen | May 2000 | A |
6082591 | Healey | Jul 2000 | A |
6196425 | Fielding et al. | Mar 2001 | B1 |
6230944 | Castellano | May 2001 | B1 |
6360924 | Franzen | Mar 2002 | B1 |
6382475 | Weikinger | May 2002 | B1 |
6494344 | Kressel, Sr. | Dec 2002 | B1 |
6845885 | Morgenroth | Jan 2005 | B2 |
6968983 | Laible | Nov 2005 | B2 |
7331490 | Yamana | Feb 2008 | B2 |
7513394 | Bone | Apr 2009 | B2 |
7959044 | Christian | Jun 2011 | B1 |
8091744 | Zwahlen | Jan 2012 | B2 |
8157132 | Johnson | Apr 2012 | B1 |
8201588 | Bonner | Jun 2012 | B2 |
8245891 | Eriksen | Aug 2012 | B2 |
8578974 | Bonner | Nov 2013 | B2 |
8640930 | Nunez | Feb 2014 | B2 |
8662359 | Hickey | Mar 2014 | B1 |
8727187 | Magley, II | May 2014 | B2 |
8833617 | Compton | Sep 2014 | B1 |
8910835 | Ouderkirk | Dec 2014 | B2 |
9096357 | Brausen | Aug 2015 | B2 |
9669972 | Stratton | Jun 2017 | B2 |
9926104 | Olarte | Mar 2018 | B2 |
10273056 | Hoffman | Apr 2019 | B2 |
20010054628 | Harbaugh | Dec 2001 | A1 |
20050092780 | Yamana | May 2005 | A1 |
20060081662 | Miura | Apr 2006 | A1 |
20090045226 | Munlin | Feb 2009 | A1 |
20110233236 | Brown et al. | Sep 2011 | A1 |
20120193318 | Meager | Aug 2012 | A1 |
20120228338 | Magley, II | Sep 2012 | A1 |
20120280001 | Leadbeater | Nov 2012 | A1 |
20130299522 | Magley, II | Nov 2013 | A1 |
20140021222 | Forbis | Jan 2014 | A1 |
20140144948 | Brausen | May 2014 | A1 |
20140332568 | Stratton | Nov 2014 | A1 |
20170029168 | Olarte | Feb 2017 | A1 |
20170297766 | Olarte | Oct 2017 | A1 |
20170327281 | Cross | Nov 2017 | A1 |
Number | Date | Country |
---|---|---|
2343443 | Apr 2003 | GB |
Entry |
---|
M.C. Song, et al., “Research on effects of injection process parameters on the molding process for ultra-thin wall plastic parts.” Journal of Materials Processing Technology 187-188 (2007) 668-671 (Year: 2007). |
SureCan 5-Gallon Gas Can, Jan. 16, 2019, retrieved online from: https://www.kotulas.com/deals/ProductDisplay?catalogId=10602&storeId=10152&productId=56657&langId=-1&utm_source=google_pla&utm_medium=Tools-Garage-Fuel-Storage-Transfer&utm_content=61275&gclid=CjwKCAiAyfvhBRBsEiwAe2t_i7iC_kOrRXtnL5djH8I1fufL2rq8U1SwdytwWo5jJUdC2DS76B6zhhoCeBUQAvD_BwE. |
Number | Date | Country | |
---|---|---|---|
20190248552 A1 | Aug 2019 | US |
Number | Date | Country | |
---|---|---|---|
62629757 | Feb 2018 | US |