Device and method for producing clear ice spheres
09784492 · 2017-10-10
Assignee
Inventors
Cpc classification
F25C1/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25D2500/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F25C1/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F25C1/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
Exemplary embodiments of a device and method for making clear ice spheres employing a large half mold (11) releasably connected to a small half mold (30), and an insulated vessel (70). When the device is filled with liquid and submitted to freezing temperatures the liquid freezes from the top down leaving a clear ice sphere in the mold.
Claims
1. A device for producing a piece of ice when the device is placed in a freezing environment, wherein the piece of ice has a shape, the device comprising: an insulating vessel designed and configured to be placed into the freezing environment, the insulating vessel having an interior, an upper portion, and a lower portion and including an opening in the upper portion; a mold designed and configured to be removably installed into the insulating vessel via the opening each time the device is used to make the piece of ice, the mold: having an upper end and a lower end spaced from the upper end; defining a hollow void between the lower end of the mold and the interior of the insulating vessel when mold is installed in the insulating vessel during use of the device; defining a cavity between the upper and lower ends and having the shape of the piece of ice, the cavity designed and configured to receive a liquid to be frozen into the piece of ice during use of the device; including an exit hole at the lower end, the exit hole designed and configured to place the cavity of the mold into communication with the hollow void so as to allow the liquid to flow into the hollow void from the cavity of the mold during use of the device; and including a fill opening in the upper end, the fill opening designed and configured to allow the liquid to flow into the cavity of the mold, wherein the fill opening is used to fill the hollow void and the cavity with the liquid during use of the device to make the piece of ice; and a cup designed and configured to: receive the mold so as to laterally constrain the mold during use of the device; be inserted into the insulating vessel during use of the device; and include an opening in registration with the exit hole of the mold so as to allow the exit hole to fluidly communicate with the hollow void; wherein the cup has a substantially cylindrical interior and the mold has a like-shaped exterior designed and configured to confront the cylindrical interior when the mold is fully engaged with the cup.
2. The device according to claim 1, wherein the cavity is spherical.
3. The device according to claim 1, wherein the mold is a split mold having a vertical split when the device is deployed in the freezing environment.
4. The device according to claim 3, wherein the mold includes a first mold half and a second mold half that join at the vertical split.
5. The device according to claim 4, wherein the mold further comprises a top portion that fully remains with the first mold half when the second mold half is disengaged from the first mold half.
6. The device according to claim 1, wherein the insulating vessel has a rim around the opening and the mold includes a lip engaging the rim of the vessel during use of the device.
7. The device according to claim 1, wherein the cavity is spherical.
8. The device according to claim 1, wherein the mold includes an overflow region adjacent the fill opening, the overflow region designed and configured to contain an overflow of the liquid during filling of the hollow void and cavity.
9. The device according to claim 1, wherein the cavity has a lowest point when the device is deployed for use and the exit hole is located at the lowest point of the cavity.
10. The device according to claim 1, wherein the fill opening comprises a hole in the mold.
11. The device according to claim 1, wherein, during deployment of the device to make the piece of ice, the upper end of the mold is directly exposed to the freezing environment and the lower end of the mold and hollow void are insulated from the freezing environment by the insulating vessel.
12. A method of making a piece of clear ice having a shape, the method comprising: providing a cavity having the shape of the piece of ice; providing a hollow void adjacent to the cavity and in fluid communication with the cavity; adding a clear liquid to the cavity so as to fill the hollow void and the cavity; causing the clear liquid to directionally freeze from a location distal from the hollow void toward the hollow void so as to drive air and/or impurities in the clear liquid from the cavity and into the clear liquid in the hollow void so as to form the piece of clear ice in the cavity; overfilling the cavity with the clear liquid so as to create overfill and causing the overfill to freeze into frozen overfill.
13. The method according to claim 12, wherein causing the clear liquid to directionally freeze includes creating cloudy ice in the hollow void.
14. The method according to claim 13, further comprising separating the piece of clear ice from the cloudy ice.
15. The method according to claim 12, wherein causing the clear liquid to directionally freeze includes insulating the cavity and hollow void except at the location distal from the hollow void.
16. The method according to claim 15, wherein causing the clear liquid to directionally freeze includes placing a device containing the cavity and hollow void, each of which contains the clear liquid, into a freezer.
17. The method according to claim 12, further comprising removing the frozen overfill from the piece of clear ice.
Description
DRAWINGS
Figures
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DRAWINGS
Reference Numerals
(11) 11 Large half mold 12 Large half mold fill hole 13 Large half mold semi-spherical cavity 14 Large half mold exit hole 15 Outer flange 16 Cap 17 DELETED 18 Overflow cavity 30 Small half mold 31 Small half mold fill hole 32 Inner flange 33 Small half mold exit hole 34 Small half mold semi-spherical cavity 35 DELETED 50 Cup 51 Cup cavity 52 DELETED 60 Cup exit hole 70 Insulated Vessel 71 Vessel cavity 72 DELETED
DETAILED DESCRIPTION
First Embodiment—FIGS. 1-10
(12) The following detailed description is of the best currently contemplated modes of carrying out exemplary embodiments of the invention. The description is not to be taken in a limiting sense, but is made merely for the purpose of illustrating the general principles of the invention, since the scope of the invention is best defined by the appended claims. Broadly, an embodiment of the present invention provides a device and method for producing clear ice shapes that may include two half molds that fit together; a cup with a cavity wherein two half molds may be placed inside of the cavity; and an insulated vessel wherein the cup and half molds may be placed inside the upper portion of the insulated vessel leaving a hollow space in the lower portion.
(13) One exemplary embodiment of the large half mold 11 is illustrated in
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(15) Cup 50 is illustrated in
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(18) Operation
(19) Operation of the device requires assembly of the device, filling and freezing a liquid in the device, and finally extraction of the clear ice ball.
(20) Assembly of the device is illustrated in
(21) With the device assembled it can be filled with liquid, typically water, but any liquid that will freeze at normal freezer temperatures (e.g. 0 degrees Fahrenheit) may be used. The liquid may be slowly poured into large half mold fill hole 12 until it rises above the hole and into overflow cavity 18. The filled vessel may be shaken, tapped or otherwise agitated to release trapped air; additional liquid may need to be added if the liquid level drops below large half mold fill hole 12 after any air is released. Once filled the device is submitted to temperatures below the freezing point of the liquid. Insulated vessel 70 prevents the liquid from freezing on all sides which would trap gases and impurities. Only the top of the device is unprotected from the freezing temperatures thus the liquid freezes from the top down with liquid at the bottom of insulated vessel 70 freezing last. This forces gases and impurities down out of the spherical cavity through the exit holes and into the unfrozen liquid leaving a crystal clear ice sphere in the spherical cavity and a mass of cloudy ice in the lower section of insulated vessel cavity 71.
(22) Once the liquid in the spherical mold cavity is frozen the clear ice sphere may be removed. First the two half molds and cup 50 are removed. This is accomplished by either lifting the assembly out of insulated vessel 70 by cap 16 or by rotating cap 16 while keeping insulated vessel 70 fixed to break cup 50 free from ice formed in the lower section of insulated vessel 70. Warm liquid may be used to expedite or ease this extraction. Next the two half molds may be removed from cup 50 by either lifting them out by cap 16 or by again rotating cap 16 while fixing cup 50 to break the half molds free from any ice formed between cup 50 and the two half molds. Again warm liquid may be used to expedite or ease this extraction. Lastly small half mold 30 is removed from large half mold 11 by pulling small half mold 30 away starting from large half mold 11 at small half mold exit hole 33. Again warm liquid may be used to expedite or ease this extraction. The clear ice sphere may now be removed from the device.
Alternative Embodiments
(23) One exemplary additional embodiment removes cup 50 from the device and modifies the shape of insulated vessel cavity 71 to conform to the shape of the two half molds mated together (a cylinder in the exemplary embodiment illustrated in
(24) Other embodiments of small half mold 30 and large half mold 11, which are oriented vertically when mated in the exemplary embodiment illustrated in
CONCLUSION
(25) Accordingly the reader will see that the exemplary embodiments can create clear ice using a top down freezing method and can produce clear ice spheres, all without complex or expensive equipment.
(26) Although the description above contains many specificities, these should not be construed as limiting the scope of the embodiments, but as merely providing illustrations of some of several embodiments. For example, cap 16 may have a different shape such as square, triangle, etc.; the half molds may mate vertically, horizontally, or at some angle in between; cup 50 may be removed, etc.
(27) Thus the scope of the embodiments should be determined by the appended claims and their legal equivalents, rather than by the examples given.