
Direct Cooling Type Block Ice Machine Features
· Adopts latest technology, no need of brine tank;
· Aerospace aluminum alloy 6063-T5, high heat transfer coefficient, high strength and robust
evaporator by enhanced welding technology;
· Direct heat exchange between the water and refrigerant in aluminum evaporator brings higher
ice making efficiency, thus ice forms 1.5 times faster than ordinary ice machine which uses
brine water;
· Easy-to-operate screw rod lifting mechanism gets feedback from the distance sensor which can
realize more precise and safe control;
· Passive reservoir control method applied to specify precise liquid supply, which increases ice
making efficiency and system reliability;
· Automatic water adding function by back type liquid level control technology;
· Silicone foam seal avoids evaporator dripping problem;
· Unique refrigeration system, using hot gas defrost technology makes easier and automatic ice
harvest;
· Integrated modular design facilitates installation and maintenance on the spot;
· Food grade manufacturing process, totally complies with food standard;
· Warranty period
How Does Aluminum Direct Type Block Ice Machine Work?
* The diagram of aluminum direct system block ice machine working principle
As shown, Ice filling plate (02) will be elevated by wire rope (14) which is driven by speed reducer (13).
Lift up the filling plate to be fastened in the lock handle (03) and get the whole aluminum alloy plate
evaporator (04) sealed. Add water into the ice grid (06) automatically through water feeding pipes (05).
At the bottom of all ice grid there is a 5mm space ensures water can flow through each ice can.
When water reaches to the standard level, it will stop to continue to add water automatically.
Refrigeration system starts to run after water adding process. Refrigerant flows into the
refrigerant runner (08) of aluminum evaporator (04) from refrigerant inlet (09)
and exchanges heat with water in ice grid to lower the water temperature.
In a certain time, all the water in ice can will turn into block ice. At this time,
refrigeration system switches to ice defrost mode. Hot gas enters into gas return
tube (12) and becomes fluid in refrigerant runner (08),
then back through liquid discharge tube (10) to the dry evaporator.
Hot gas defrosts ice surface and separates them from ice grid. At this time,
refrigeration system stops to work. Speed reducer for lifting mechanism (13) drives wire
rope to lower ice lifting plate to the bottom place of steel frame (01).
The ice on filling plate can be manually moved away or the whole
plate be taken away by forklift for swift and labor-free ice shift.
Specification of direct cooling ice block machine
Model |
Capacity |
Refrigerant |
Operating Power |
Operating weight |
Dimension |
SNB-10 |
1ton/day |
R22/R404A |
4.2kw |
950kg |
L2455XW935XH2018mm |
SNB-20 |
2ton/day |
R22/R404A |
7.2kw |
1460kg |
L4549XW1104XH1881mm |
SNB-30 |
3ton/day |
R22/R404A |
11.8kw |
2280kg |
L4300XW2100XH2050mm |
SNB-50 |
5ton/day |
R22/R404A |
18.9kw |
Unit:960kg |
L2500XW1400XH1450mm |
Evaporator:2260kg |
L2910XW1855XH1900mm |
||||
Cooling Tower:460kg |
∅1380XH2170mm |
||||
SNB-100 |
10ton/day |
R22/R404A |
34.8kw |
Unit:1680kg |
L1800XW1600XH1800mm |
Evaporator:3750kg |
L5566XW1355XH2300mm |
||||
Cooling Tower:670kg |
∅2000XH2410mm |
||||
SNB-150 |
15ton/day |
R22/R404A |
57.8kw |
Unit:2580kg |
L2270XW2170XH2200mm |
Evaporator:4680kg |
L6520XW2170XH2420mm |
||||
Cooling Tower:1120kg |
∅2175XH2565mm |
||||
SNB-200 |
20ton/day |
R22/R404A |
72kw |
Unit:2880kg |
L3080XW2140XH2460mm |
Evaporator:6540kg |
L8385XW2145XH2480mm |
||||
Cooling Tower:1300kg |
∅2650XH2645mm |
||||
SNB-250 |
25ton/day |
R22/R404A |
88.3kw |
Unit:3750kg |
L3080XW2140XH2460mm |
Evaporator:7560kg |
L10195XW2160XH2741mm |
||||
Cooling Tower:1630kg |
∅3050XH2780mm |
||||
SNB-300 |
30ton/day |
R22/R404A |
118kw |
Unit:4135kg |
L3780XW2140XH2460mm |
Evaporator:9840kg |
L11890XW2160XH2741mm |
||||
Cooling Tower:2730kg |
∅3300XH2785mm |
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