Embodiments of the invention relate to spray devices and more particularly to spray devices incorporating a vent, dip tube, or snorkel to allow the intake and expulsion of air with a product.
Spray devices such as trigger sprayers, pumps, battery operated sprayers, and other dispensers are used with a wide-variety of consumer products. For example, hard surface cleaners, garden products, water, and other fluids are dispensed using various dispensing devices. While such devices may be used to distribute and spray or stream fluids, the costs associated with such products may not be feasible for certain applications. In addition, in lower-cost applications, closures and simple sprayers may allow for the aspiration of a spray in a vertical position, but when positioned in an inverted position, or pointing downwards, aspiration of a fluid with air is difficult or impossible to achieve. Thus, new and improved dispensing systems may be desirable.
According to certain embodiments of the invention, a gas or air path may be incorporated with a spray device to provide a gas or air stream capable of mixing with a fluid during dispersion from a spray device or dispenser.
In some embodiments of the invention, a spray cap may be fitted with a dip tube configured to be in communication with an air or gas source during operation. In other embodiments, a spray cap may include a connection adapted to fit into a blown-in dip tube incorporated into a bottle to provide a gas or air source that can be mixed with a fluid being dispensed from the spray device.
According to certain embodiments of the invention, a snorkel or dip tube may be incorporated with a spray device to provide a gas or air path for the spray device and a container to which the spray device is attached may include an air chamber or feature to provide improved access for the snorkel or dip tube to air or gas during operation.
While the specification concludes with claims particularly pointing out and distinctly claiming particular embodiments of the present invention, various embodiments of the invention can be more readily understood and appreciated by one of ordinary skill in the art from the following descriptions of various embodiments of the invention when read in conjunction with the accompanying drawings in which:
According to embodiments of the invention, a spray device includes a container 900 and a spray closure 100 attached to the bottle as illustrated in
As illustrated in
In operation, a user may squeeze the container 900 to force fluid through the dip tube 110 and out of the spray closure 100. As the container 900 is squeezed, air in the container—as illustrated in
An example of a spray device in use according to certain embodiments of the invention is illustrated in the
According to various embodiments of the invention, a spray closure 100 may include various features 190 to attach to a container 900. Traditional threaded screw features may be used with the spray closure 100 and container 900 to attach them together. In other embodiments, a bayonet style closure system may be used. In still other embodiments, the spray closure 100 may be configured to snap onto the container 900 or a neck of the container 900 in such a way that it cannot be easily removed.
A spray closure 100 may also include other features. For example, as illustrated in
A spray closure 100 according to various embodiments of the invention includes an air intake and a fluid intake. The air intake and fluid intake may be in communication with the mixing chamber 150.
A spray device according to other embodiments of the invention is illustrated in
While a certain design for an air pocket 200 is illustrated in
A spray device according to still other embodiments of the invention is illustrated in
In some embodiments, a snorkel 120 may be attached to a spray closure 100 and configured to connect the spray closure 100 to the blown-in dip tube 920. In certain embodiments, a snorkel 120 may fit into and seal with an interior diameter of a blown-in dip tube 920 as illustrated. In other embodiments, a snorkel 120 may seal against an outer diameter of a blown-in dip tube 920. In some embodiments of the invention, a snorkel 120 may be molded as part of the spray closure 100 and fitted to or sealed with a blown-in dip tube 920 as illustrated.
In use, air flows into the blown-in dip tube 920 and into the snorkel 120 where it is delivered to a mixing chamber 150 to mix with fluid and be sprayed out of an orifice 130.
While various embodiments of the invention are illustrated and described as including a dip tube 110, it is understood that in some embodiments of the invention a dip tube 110 may be omitted. In other words, a spray device may only include a snorkel 120 and not a dip tube 110. In such embodiments, when the container 900 is tipped from a non-vertical position to a horizontal or inverted position, fluid may flow into the spray closure 100 through an opening in the spray closure 100. Depending on the amount of fluid in the container 900, the spray device may need to be tipped further when there is a lesser amount of fluid in the container 900. However, for completely inverted applications, this may not be an issue and a dip tube 110 may be omitted.
In some embodiments of the invention, the spray closure 100 may also be fitted with or configured to include a valve. For example, a duck-bill valve, slit valve, ball valve, bellow, or other valve may be fitted in the spray closure 100 to prevent dispersion of fluid from the spray closure 100 until a certain pressure is applied to the container 900 to overcome the valve forces. In such embodiments, a spray device may be inverted without leaking fluid until the container 900 is squeezed or has another force applied thereto.
Having thus described certain particular embodiments of the invention, it is understood that the invention defined by the appended claims is not to be limited by particular details set forth in the above description, as many apparent variations thereof are contemplated. Rather, the invention is limited only be the appended claims, which include within their scope all equivalent devices or methods which operate according to the principles of the invention as described.
Filing Document | Filing Date | Country | Kind |
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PCT/US2018/023188 | 3/19/2018 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
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WO2018/170519 | 9/20/2018 | WO | A |
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Number | Date | Country | |
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20200130001 A1 | Apr 2020 | US |
Number | Date | Country | |
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62472714 | Mar 2017 | US |