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Brand Name : | ANGES |
Model Number : | ACK-50(F) |
Price : | Negotiation |
Payment Terms : | T/T, L/C |
Supply Ability : | 400 units/ month |
Delivery Time : | 10-35 days |
50ton Air Cooled Industrial Water Chiller with four compressors for injection molding Machine
The four-compressor chiller significantly improves energy
efficiency and reliability through intelligent load distribution,
redundant design, and fine temperature control.
It is especially suitable for injection molding production
scenarios with strict stability requirements.
Although its initial investment is higher than that of a
single-compressor model, in the long run, it can quickly recover
its costs through comprehensive benefits such as energy saving,
waste reduction, and extended equipment life.
Specification
Item Model | ACK-50F | |
Nominal cooling capacity | Kcal/h | 125904 |
kw | 146.4 | |
Input power | kw | 43.92 |
Power supply | 3PH 380V 50HZ | |
Refrigerant | Type | R22 |
Type of control | Expansion valve | |
Compressor | Type | Hermetic scroll |
Power(kw) | 36.8 | |
Condenser | Type | Finned copper tube + low noise outer rotor fan |
Power(kw) | 3.12 | |
Cooling air flow(m3/h) | 50000 | |
Evaporator | Type | Shell and tube |
Min Chilled fluid flow(m3/h) | 25.24 | |
Inlet/outlet pipe caliber(inch) | 3 | |
Water tank | Volume(L) | 345 |
Pump | Power(kw) | 4 |
Flow(m3/h) | 42 | |
Lift(m) | 21 | |
safety protection | compressor over temperature protection, over load protection, high and low pressure protection, flow switch protection, reversed and lacking phase protection, anti-freezing protection,fusible protection. | |
Weight | kg | 1550 |
Dimension | mm | 2350*1760*2100 |
Compared with the single compressor design, the advantages of
configuring four compressors in the chiller for injection molding
production are as follows:
1. Significantly improved energy efficiency, energy saving and
consumption reduction
Flexible load adjustment
The four compressors can be started and stopped independently, and
the number of operations can be intelligently allocated according
to the actual cooling demand. For example: only 1-2 compressors are
started at low load, and all are running at high load to avoid
energy waste of "big horse pulling a small cart".
Partial load efficient operation
The efficiency of a single compressor decreases at low load, while
the multi-compressor system operates in stages to always maintain
each compressor in the high efficiency range, and the comprehensive
energy efficiency ratio (COP) is improved by 20%-30%.
2. Enhanced operation stability and reduced failure rate
Redundant backup function
If a compressor fails, the remaining compressors can continue to
work, avoiding the shutdown of the entire chiller due to a single
point failure, and ensuring the continuous operation of the
production line.
Spreading workload
Multiple compressors operate alternately to reduce the start-stop
frequency and wear of a single compressor and extend the overall
life of the equipment (especially suitable for 24-hour continuous
production scenarios).
3. Precise temperature control to adapt to complex processes
More sophisticated capacity adjustment
The four compressors provide multi-level cooling capacity
adjustment (such as 25%, 50%, 75%, 100%), accurately matching the
mold cooling requirements and avoiding the impact of temperature
fluctuations on product accuracy.
Quick response to load changes
When the injection molding machine frequently switches between
different products or materials, the multi-compressor system can
quickly adjust the output power to maintain a constant water
temperature.
4. Convenient maintenance and reduced operating costs
Modular design, independent maintenance
A single compressor can be disassembled and repaired separately
without shutting down the entire machine, reducing production
interruption time.
Optimized spare parts costs
Multi-compressor systems usually use compressors of the same model,
with universal spare parts and simpler inventory management.
Benefits of a chiller with four compressors compared to a single
compressor
1. Energy saving and consumption reduction, reducing compressor
wear and avoiding frequent start and stop.
2. Balance energy efficiency and cooling speed to adapt to the
intermittent high demand of injection molding machines.
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