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Integrated dryer C series

Integrated dryer C series

Description

Product introduction: 1. The product has the characteristics of fast heating speed of the dehumidifying dryer and the use of the dehydrating dryer without being affected by the external environmental temperature. 2. Suitable for drying of most materials. Integrated drying

Integrated dryer C series

product description:

1, the product has both the characteristics of fast temperature rise of the dehumidification dryer and the dehydration dryer is not affected by the external environmental temperature, the characteristics of all-weather use, and can be freely switched between the two modes.

2. Suitable for drying of most materials.

The integrated dryer is mainly composed of four parts: a finned evaporator, a compressor, a finned condenser, and a throttle valve. It allows the working fluid to continuously evaporate and absorb the heat from the outdoor environment (or the water vapor in the drying room). → Compression → Condensation (releasing heat in the indoor drying room) → throttling → re-evaporation thermal cycle process, so that the heat in the external low temperature environment (or the water vapor in the drying room) is transferred to the drying room, the refrigerant It is circulated in the system by the compressor. It completes the gaseous step-up and temperature rise process in the compressor (temperature up to 100 ℃). It enters the internal machine and releases high-temperature heat to heat and dry the air in the room. At the same time, it is cooled and converted into a liquid state when it runs to the external machine. After that, the liquid quickly absorbs heat and evaporates again to turn into a gaseous state. At the same time, the temperature can drop to -20 ° C to -30 ° C. At this time, the air around the heat sink will continuously transfer heat to the refrigerant.

When the integrated dryer works, like ordinary air conditioners, it absorbs the energy in the medium in the evaporator QA: it consumes a part of the energy itself, that is, the power consumption of the compressor QB: it is released when it is in the condenser through the working fluid circulation system Heat QC, QC = QA + QB, so the efficiency of the heat pump drying unit is (QB + QC) / QB, so the heating efficiency of the heat pump drying unit is much greater than the efficiency of other heating equipment. It can be seen that using a heat pump drying unit as a drying device can Save energy without any emissions of CO2 and other pollutants, achieving the effect of energy saving and emission reduction.


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