Block ice machine with multi-surface ice making function and ice making and taking method
A function and ice machine technology, applied in ice making, ice making, household appliances, etc., can solve problems such as long time spent, inability to make ice cubes, difficulty in satisfying, etc., to speed up the ice making process and improve ice making efficiency , The effect of adjustable lifting height
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Embodiment 1
[0049] refer to figure 1 and figure 2 , is an ice block machine with multi-faceted ice-making functions disclosed in the present invention, comprising: a frame 1 , a lifting platform 2 , an evaporator 3 , a driving mechanism 4 and a medium supply system 5 .
[0050] The evaporator 3 comprises: a side plate 31, a dividing plate 32, a first pipeline 33 and a second pipeline 34, and a plurality of side plates 31 and a plurality of dividing plates 32 are arranged in a criss-cross pattern to form several ice trays, and the side plates 31 and the dividing plate 32 There are flow passages arranged in a detour inside, and the two first pipes 33 are arranged at the end of the side plate 31 (in other embodiments, they can also be provided at the top of the side plate 31 ) and are connected with the flow passages in the side plate 31 respectively. Two second pipes 34 are respectively arranged on both sides of the top of the partition 32 and communicate with the inlet and outlet of the ...
Embodiment 2
[0066] refer to figure 1 and Image 6 , is an ice making and ice taking method disclosed in the present invention, based on the block ice machine with multi-face ice making function described in Embodiment 1, the ice making and ice taking method includes: S1. Start the drive mechanism 4, and pass the drive mechanism 4 The drive platform main body 21 rises until the bottom sealing plate 22 abuts against the bottom of the evaporator 3 and then closes the drive mechanism 4; S2. Start the medium supply system 5, and supply the first pipeline 33, the second pipeline 34 and / or the medium supply system 5 through the medium supply system 5 Or input the refrigerant medium in the third pipeline 23; S3. After the ice cubes are formed, stop the input of the refrigerant medium and restart the drive mechanism 4, and drive the platform main body 21 to descend through the drive mechanism 4 until the ice cubes leave the evaporator 3 and then close the drive mechanism 4; S4. Start the medium s...
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