Claims
- 1. Apparatus for making ice comprising:
- a substantially planar refrigerated surface;
- a flexible ice forming membrane coupled to said refrigerated surface forming a chamber therebetween;
- a water supply means for supplying water to said ice forming membrane;
- remote reservoir means in fluid communication with said chamber for storing a flexing fluid;
- hydrostatic liquid pressure means coupled to said chamber for flexing said membrane into contact with said refrigerated surface by the application of a lower than ambient pressure to said chamber, whereby said ice is formed on said membrane;
- pump means for pumping said flexing fluid into said chamber and flexing said membrane away from said refrigerated surface, whereby said ice is detached from said membrane.
- 2. The apparatus of claim 1 further comprising:
- heating means for maintaining said flexing fluid at a temperature above 32.degree. F., whereby the detachment of said ice is facilitated by warming said membrane when said warm flexing fluid is pumped into said chamber.
- 3. The apparatus of claim 2 wherein said heating means includes an electrical resistance heater.
- 4. The apparatus of claim 2 wherein said heating means includes a heat exchanger means for heating said flexing fluid.
- 5. The apparatus of claim 4 wherein said heat exchanger means exchanges heat between the ambient air and said flexing fluid.
- 6. The apparatus of claim 4 wherein said heat exchanger means exchanges heat between tap water used for ice making and said flexing fluid, whereby said tap water is pre-cooled to increase the ice production of said ice making apparatus.
- 7. The apparatus of claim 4 wherein said heat exchanger means exchanges heat between the refrigerant in the high temperature portion of the refrigeration system used to refrigerate said refrigerated surface and said flexing fluid.
- 8. The apparatus of claim 2 further comprising:
- means for circulating said flexing fluid through said chamber whereby said membrane is heated to assist the detachment of said ice from said membrane.
- 9. Apparatus for making ice comprising:
- a refrigerated surface;
- a flexible ice forming membrane coupled to said refrigerated surface forming a chamber therebetween;
- a water supply means adjacent said ice forming membrane for distributing water onto the exterior side of said ice forming membrane;
- hydrostatic liquid pressure means coupled to said chamber for flexing said membrane into contact with said refrigerated surface by the application of a lower than ambient pressure to said chamber, whereby said ice is formed on said membrane;
- pump means for pumping a flexing fluid into said chamber and flexing said membrane away from said refrigerated surface, whereby said ice is detached from said membrane;
- means for detecting a leakage of said flexing fluid from said chamber;
- control circuitry connected to said leakage detecting means to deactivate said ice making apparatus if leakage of said flexing fluid from said chamber is detected.
- 10. Apparatus for making ice comprising:
- a substantially planar refrigerated surface;
- a flexible ice forming membrane coupled to said refrigerated surface forming a chamber therebetween;
- a water supply means for supplying water to said ice forming membrane;
- means for flexing said membrane into and out of contact with said refrigerated surface whereby said ice forms on said membrane when said membrane is flexed into contact with said refrigerated surface, and said ice is detached from said membrane when said membrane is flexed out of contact with said refrigerated surface;
- means for producing areas of high and areas of low thermal conductivity between said refrigerated surface and said membrane whereby said ice forms on said membrane over said areas of high thermal conductivity and ice does not form on said membrane over said areas of low thermal conductivity;
- means for constraining said membrane when it is flexed out of contact with said refrigerated surface such that said membrane is flexed into the shape of two or more arcs.
- 11. Apparatus for making ice comprising:
- a refrigerated surface;
- a flexible ice forming membrane coupled to said refrigerated surface forming a chamber therebetween;
- a water supply means adjacent said ice forming membrane for distributing water onto the exterior side of said ice forming membrane;
- means for flexing said membrane into and out of contact with said refrigerated surface whereby said ice forms on said membrane when said membrane is flexed into contact with said refrigerated surface, and said ice is detached from said membrane when said membrane is flexed out of contact with said refrigerated surface;
- means for producing areas of high and areas of low thermal conductivity between said plate and said membrane whereby said ice forms on said membrane over said areas of high thermal conductivity and ice does not form on said membrane over said areas of low thermal conductivity;
- means for constraining said membrane when it is flexed out of contact with said refrigerated surface such that said membrane is flexed into the shape of two or more arcs, wherein said constraining means are vertically oriented struts located proximate on said exterior side of said membrane.
- 12. A method for making ice cubes, comprising the steps of:
- providing areas of high thermal conductivity and areas of low thermal conductivity between a substantially planar refrigerated surface and a flexible membrane;
- flowing water across the exterior side of said membrane;
- pumping a flexing fluid at a temperature above 32.degree. F. into a sealed chamber formed between said refrigerated surface and said membrane, thereby filling said chamber with said flexing fluid and flexing said membrane out of contact with said refrigerated surface;
- withdrawing said flexing fluid from said sealed chamber thereby causing said membrane to be drawn into stationary contact with said refrigerated surface by fluid pressure and causing said ice cubes to form on said exterior side of said membrane over said high thermal conductivity areas;
- again pumping said flexing fluid at a temperature above 32.degree. F. into said sealed chamber, thereby flexing said membrane away from said refrigerated surface and heating said membrane causing said ice cubes to become detached from said membrane through the combined action of the flexing and heating of said membrane.
- 13. The method of claim 12 wherein:
- said flexing fluid is withdrawn from said sealed chamber by gravity into a reservoir located below the level of said chamber, whereby said membrane is drawn into contact with said refrigerated surface by hydrostatic pressure and ice forms on said exterior side of said flexible membrane over said high thermal conductivity areas.
- 14. Apparatus for making ice comprising:
- an ice forming membrane;
- a substantially planar refrigerated surface proximate said ice forming membrane;
- a water supply means for supplying water to said ice forming membrane;
- means for moving said ice forming membrane into stationary engagement with said refrigerated surface whereby said ice is formed on said ice forming membrane;
- means for flexing said ice forming membrane out of engagement with said refrigerated surface for disengaging said ice from said ice forming membrane;
- a membrane heating means for heating said ice forming membrane while said membrane is out of engagement with said refrigerated surface, whereby said ice is detached from said membrane through the action of flexing and heating of said membrane.
- 15. Apparatus for making ice comprising:
- an ice forming membrane;
- a water supply means for supplying water to said ice forming membrane;
- a substantially planar refrigerated surface proximate said ice forming membrane, forming areas of high thermal conductivity and areas of low thermal conductivity between said ice forming membrane and said refrigerated surface whereby ice forms over said areas of high thermal conductivity and ice is not formed over said areas of low thermal conductivity such that the cross-sectional shape of said ice is determined by said areas of high and areas of low thermal conductivity;
- said ice forming membrane and said refrigerated surface forming and defining a chamber therebetween;
- a flexing fluid means located within said chamber for facilitating the movement of said ice forming membrane into and out of contact with said refrigerated surface;
- a flexing fluid moving means for introducing said flexing fluid into said chamber whereby said membrane is moved out of intimate contact with said refrigerated surface and for extracting said flexing fluid from said chamber whereby said membrane is moved into intimate stationary contact with said refrigerated surface.
- 16. The apparatus of claim 15 further comprising:
- reservoir means coupled to said flexing fluid moving means, located beneath said chamber and open to atmospheric pressure for gravitational extraction of said flexing fluid from said chamber, whereby said membrane is drawn against and into conformity with said refrigerated surface by a hydrostatically induced lower than ambient pressure in said chamber.
- 17. The apparatus of claim 15 further comprising:
- a membrane heating means provided by maintaining said flexing fluid above a temperature of 32 degrees F with a fluid heating means whereby said ice forming membrane is heated when said warm flexing fluid is moved into said chamber by said flexing fluid moving means, disengaging said ice from said membrane through the action of flexing and heating of said membrane.
- 18. The apparatus of claim 17 wherein said fluid heating means includes an electrical resistance heater.
- 19. The apparatus of claim 17 wherein said fluid heating means includes a heat exchanger means for heating said flexing fluid.
- 20. The apparatus of claim 19 wherein said heat exchanger means exchanges heat between tap water used for ice making and said flexing fluid, whereby said tap water is pre-cooled to increase the ice production of said ice making apparatus.
- 21. The apparatus of claim 19 wherein said heat exchanger means exchanges heat between the ambient air and said flexing fluid.
- 22. The apparatus of claim 19 wherein said heat exchanger means exchanges heat between said flexing fluid and the refrigerant in the high temperature portion of the refrigeration system used to refrigerate said refrigerated surface.
- 23. The apparatus of claim 17 further comprising:
- circulating means to circulate said flexing fluid past said fluid heating means and through said chamber whereby the heating of said ice forming membrane is facilitated by said circulation of said warm flexing fluid.
- 24. Apparatus for making ice comprising:
- an ice forming membrane;
- a refrigerated surface proximate said ice forming membrane;
- a water supply means for supplying water to said ice forming membrane;
- sealing means between said ice forming membrane and said refrigerated surface for defining a chamber therebetween;
- a reservoir of flexing fluid, said flexing fluid consisting of a low freezing temperature liquid;
- conduit means connecting said reservoir with said chamber;
- fluid removing means for removing said flexing fluid from said chamber through said conduit means and into said reservoir and causing said ice forming membrane to be drawn by fluid pressure into engagement with said refrigerated surface whereby said ice is formed on said ice forming membrane;
- fluid moving means for moving said flexing fluid out of said reservoir through said conduit means into said chamber thereby causing said ice forming membrane to flex away from said refrigerated surface for disengaging said ice from said ice forming membrane;
- means for detecting a leakage of said flexing fluid from said chamber;
- control circuitry connected to said leakage detecting means to deactivate said ice making apparatus if leakage of said flexing fluid from said chamber is detected.
- 25. A method for making ice cubes comprising the steps of:
- flexing an ice forming membrane into stationary contact with a refrigerated surface;
- flooding said membrane with water causing said ice to form on said membrane;
- flexing said membrane out of contact with said refrigerated surface, causing said ice to mechanically detach from said membrane;
- heating said membrane to thermally detach said ice from said membrane.
- 26. A method for making ice cubes comprising the steps of:
- flexing an ice forming membrane into stationary contact with a refrigerated surface by extracting a flexing fluid from the space between said membrane and said refrigerated surface;
- flooding said membrane with water causing said ice to form on said membrane;
- introducing said flexing fluid at a temperature above 32 degrees Fahrenheit into said space to flex said membrane out of contact with said refrigerated surface, causing said ice to mechanically detach from said membrane and heating said membrane to thermally detach said ice from said membrane.
- 27. Apparatus for making ice cubes comprising:
- an ice forming membrane;
- a substantially planar refrigerated surface proximate said ice forming membrane, forming areas of high thermal conductivity and areas of low thermal conductivity between said ice forming membrane and said refrigerated surface, the size and shapes of said areas of high thermal conductivity defining the cross-sectional sizes and shapes of said ice cubes;
- a water supply means for supplying water to said ice forming membrane;
- means for moving said ice forming membrane into stationary engagement with said refrigerated surface whereby said ice cubes form on said ice forming membrane at said areas of high thermal conductivity and said ice does not form on said ice forming membrane at said areas of low thermal conductivity;
- means for flexing said ice forming membrane away from said refrigerated surface for disengaging said ice cubes from said ice forming membrane.
TECHNICAL FIELD
This invention relates generally to Refrigeration. More particularly, this invention concerns a method and apparatus for freezing ice cubes on a flexible membrane. This invention is a continuation-in-part and improvement over my prior application Ser. No. 271,228, filed Nov. 14, 1988, now U.S. Pat. No. 4,522,723 and entitled "Apparatus and Method for Making Ice Cubes Without a Defrost Cycle."
US Referenced Citations (19)
Foreign Referenced Citations (6)
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Date |
Country |
150952 |
May 1904 |
DE2 |
1601076 |
May 1970 |
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Non-Patent Literature Citations (2)
Entry |
English translation of French Publication 2,343,209. |
Patent Cooperation Treaty International Search Report PCT/US 89/05001. |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
271228 |
Nov 1988 |
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