Slush-Maker sind eine preiswerte, platzsparende Alternative zu Eismaschine im Test: Deluxe Ice Crusher und Slushie Maker von. Der Magic Freez' Slushy Maker funktioniert mit der patentierten Schnellfrier-Technologie, mit dem Du in Sekunden leckeres Slush-Eis machen kannst. hallo Ich habe diesen Slush maker chillfactor ich friere ihn immer ein Unser gefrierfachtrühe steht auf und mehr können wir nicht mehr.
SlusheismaschinenSlush Eis Maschine Slushmaschine Ice Maker Softeis Slusheis LED 2 x 10 Liter. Brandneu. CHF , CHF 75,70 Versand · Aus. Mit einer eigen Slush Maschine können Sie Ihr leckeres Eis einfach zuhause selber machen. Sie bestimmen was dort rein kommt und was Sie oder Ihre Kinder. Der Magic Freez' Slushy Maker funktioniert mit der patentierten Schnellfrier-Technologie, mit dem Du in Sekunden leckeres Slush-Eis machen kannst.
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To prevent the water in the ice making section 12 from forming an icy slush, the electronic control 34 is used to turn off the water pump 32 once the water temperature probe 34a senses that the temperature of the water circulating through the water supply tube 30 has dropped to a sensed temperature of about 38OF corresponding to an actual temperature of about F.
The electronic control 34 maintains the water pump turned-off for a predetermined period of time, preferably about 20 seconds to about 60 seconds, and more preferably for about 40 seconds.
After the predetermined period of time has expired, the electronic control 34 signals the water pump 32 to turn on and the water pump again begins recirculating water from the sump 18a through the water supply tube 30, through the water distributor 28 and over the evaporator plates As water at or near about F circulates over the evaporator plates 26, as indicated by reference numeral 38 in Figure 4, it freezes to the ice crystals 36 and the ice crystals 36 begin to grow.
Put differently, the prior formation cf the ice crystals 36 on the evaporator plates 26 enables water at or near a temperature of about F to freeze more readily to the evaporator plates, which prevents the circulating water from becoming sub-cooled i.
Thus, as the water 38 is recirculated through the various components of the ice making section 12, and particularly over the evaporator plates 26, the temperature of the water circulating through the components of the ice making section 12 is maintained at an actual temperature of about F.
This, in turn, prevents the water in the sump 18a from becoming sub-cooled i. During the time that the water pump 32 is causing water 38 to be circulated, the ice crystals 36 continue to grow until they become fully formed ice cubes ready for harvest, as shown in Figure 5.
The ice formed on the evaporator plates 26 is then harvested, preferably using a hot gas bypass system in which the evaporator plates 26 are warmed to a temperature above F.
This causes the ice cubes formed on the evaporator plates 26 to fall onto the cubed deflector 24 and into the ice bin 14 Figure 1. During this harvesting step, the electronic control 34 signals a conventional fluid flow valve not shown to admit water from the water line 16 Figure 1 into the sump 18a.
The float 35 indicates to the sump level control 33 when the sump 18a is full. Once the harvesting of ice is complete, the electronic control 34 again signals the water pump 32 to turn on and begin pumping water through the various components of the ice making section Once the circulating water is cooled down to a sensed temperature of about F corresponding to an actual temperature of about IF , the electronic control 34 again causes the water pump 32 to be turned-off for the predetermined period of time i.
The key element is that the "off" period be sufficiently long to allow residual water remaining on the evaporator plates 26 to freeze into ice crystals 36 before the water pump 32 is again turned-on.
The preferred methods of the present invention thus enable the formation of icy slush within the sump 18a of the ice making section 12 to be eliminated without materially reducing the efficiency of the ice making section The preferred methods of the present invention, most importantly, enable the ice maker 10 to operate without incurring the problem of icy slush forming in the sump 18a, which would negatively affect its efficiency.
Therefore, while this invention has been described in connection with particular examples thereof, the true scope of the invention should not be so limited since other modifications will become apparent to the skilled practitioner upon a study of the drawings, specification and following claims.
A method for preventing the formation of icy slush in a water reservoir of an ice maker, said method comprising the steps of: filling said water reservoir with a predetermined amount of water; causing said water to be pumped over at least one plate of an evaporator of said ice maker by a water pump; monitoring the temperature of said water; when said water is cooled down to a predetermined temperature, causing said water pump to turn off for a predetermined period of time until residual water remaining on said plate of said evaporator freezes to form ice crystals thereon; and after said predetermined period of time has expired, turning on said water pump to again cause water to be circulated over said plate of said evaporator, whereby said ice crystals facilitate the freezing of water flowing over said evaporator plates, thereby preventing said circulating water from cooling to a temperature below about F, and thereby preventing the formation of said icy slush in said reservoir.
The method of claim 1, further comprising the step of monitoring the amount of ice formed on said plate of said evaporator; and after a predetermined amount of ice is formed on said plate of said evaporator, harvesting said ice on said plate by causing said plate to be warmed to a temperature above approximately 32F, whereupon ice cubes formed on said plate of said evaporator are released and deposited in a storage bin of said ice maker.
The method of claim 2, further comprising the steps of causing said water reservoir to be refilled with water after said ice cubes are harvested from said evaporator plate; continuing to monitor said temperature of said water, as said water flows over said plate of said evaporator; again turning off said water pump when said temperature of said water is cooled down to said predetermined temperature; and keeping said water pump turned-off for said predetermined period of time.
The method according to any preceding claim, wherein said predetermined time period comprises a time period between approximately 20 seconds to about 60 seconds.
The method of claim 4, wherein said predetermined time period comprises a time of approximately 40 seconds. The method according to any preceding claim, wherein said water pump of said ice maker is turned-off when said water temperature is measured to about F.
A method for preventing the formation of icy slush in a water reservoir of an ice maker, said method comprising the steps of: filling said water reservoir with an amount of water; causing said water to be pumped over at least one evaporator plate of said ice maker; interrupting the circulation of water for a predetermined time interval to allow residual water remaining on said evaporator plate to freeze and form ice crystals on said evaporator plate; and resuming the circulation of water over said evaporator plate, whereby said water flows over said evaporator plate, said ice crystals formed thereon facilitate the freezing of said water to said evaporator plate and prevent said water from cooling to a temperature below about F, to thereby prevent the formation of said icy slush in said reservoir.
The method of claim 7, wherein said circulation of water is interrupted for a period of between about 20 seconds to about 60 seconds.
The method of claim 8, wherein said circulation of said water is interrupted for a time of about 40 seconds. A method for preventing the formation of icy slush in a water reservoir of an ice maker, said method comprising the steps of:.
The method of claim 10, wherein said desired time and removal is approximate 20 seconds to about 60 seconds.
It measures in at Conclusion : Although this is a commercial-style slushie machine, it can work well in both commercial and residential areas.
If there is a flavor that you like, you can mix it with ease using this machine. You can even come up with your own flavor combinations, mixing cherry with coke, caramel coffee with vanilla, and anything else you can dream up.
Each one promises to be available quickly. Overall, we feel if you are searching for an icy beverage maker, this seems like a great option that most people should be happy with.
So we picked them up to be on our best slushy makers list. Check Price on Amazon Whether your kids and you enjoy slushies or you prefer something a little more enjoyable, like a margarita or a daiquiri, this is a great option for your frozen beverages.
Nostalgia MSB64 has the look of a blender, but the ability to blend icy treats. It has a powerful motor to provide consistency when mixing frozen drinks.
With this machine, you can make up to ounces at a time. The Nostalgia margarita and slush maker is lightweight at only 9-pounds. It measures 7.
This makes it a good fit for most countertop spaces. It has an easy flow spout that dispenses your drinks quickly.
You get a detachable cup rest and drip tray to keep your counter clean. The blending chamber is also removable from the base to ensure an easy clean up when you are finished using it.
Conclusion : In our opinion, there are unlimited ways for you to use this machine. You can keep kids happy all summer long, or yourself happy throughout the year.
You can explore different flavor options or stick with the flavors you already know and love. As a bonus, with it making up to ounces at a time, it will be something that you can break out when guests come by or as a movie night treat.
Either way, we feel that most people will enjoy it. This convinced us of putting Nostalgia MSB64 on the best slushy makers list.
Check Price on Amazon As with most things, when you make homemade shaved ice or slushies, you are able to make it healthier. You can use sugar-free, all-natural juices, or organic mixes that you and your family can enjoy.
You simply plug it in, add ice cubes, shave them, and add your favorite syrup, juices, or fruits. You can use it for cocktails, mocktails, and as a frozen treat for your family to enjoy when temperatures climb.
This compact and lightweight machine is easy enough to use that kids can do it. It works with the help of an watt motor.
It is also something that is fun to use. This machine is backed by a 1-year warranty from its U. This is a slush machine that resembles more of a blender and in fact comes with a shave and blend function.
This is therefore a step up from your every-day blender and given the fact it has a ounce jar, you can start making multiple slush drinks with minimal fuss.
It comes with different settings such as blend only or shave only so if you want a bit of variety in your frozen drinks, the BFCM can certainly provide you with it.
This is an 8-ounce cup to which you add a liquid of your choosing and watch it turn to a slush drink in 7 minutes. It does this by using a frozen inner core which you mix and scrape once you have added your liquid before it freezes before your eyes.
It is small enough to easily sit in your freezer which means it is always ready to use and you are never more than 7 minutes away from enjoying a great frozen drink.
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