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| Company Info. |
| Zhejiang Huier Coating Environmental Protection Equipment Co., Ltd |
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| Product List |
I. Core Structure and Operating Principle
1. Main Structure
Compressor: Utilizes a fully enclosed scroll or screw compressor,
offering high energy efficiency and low noise, supporting variable
frequency speed regulation to adapt to load fluctuations.
Evaporator: Typically constructed of titanium alloy or 316L
stainless steel, the shell-and-tube design allows for direct heat
exchange with the oxidizing fluid, resisting strong acid corrosion
and preventing scaling.
Condenser: Water-cooled (with a cooling tower) or air-cooled (with
finned heat dissipation), efficiently exchanges heat with the
refrigerant through copper tubes.
Expansion Valve: Selected Danfoss expansion valves from Denmark
precisely control refrigerant flow and pressure, achieving a
temperature differential adjustment of ±1°C.
2. Operating Principle
Direct Cooling Cycle: The refrigerant directly absorbs heat from
the oxidizing fluid in the evaporator and releases this heat
through compression, condensation, and throttling, creating a
closed-loop refrigeration system with a temperature control range
of -8°C to 30°C. Multi-Level Protection: Built-in protection
modules for refrigerant shortage, overheating, and overload ensure
stable system operation.
II. Equipment Features
1. Corrosion-Resistant Design
The evaporator and piping are made of titanium alloy or 316L
stainless steel, resistant to corrosion from strong acidic and
alkaline oxidizing solutions with a pH range of 1-14.
The circulation pump is made of stainless steel to prevent metal
ion contamination of the tank liquid.
2. Intelligent Control
PLC touch screen control displays real-time temperature and
pressure parameters, supports ±1°C precision adjustment, and
provides fault alarms.
The flow protection device automatically shuts down the system in
the event of abnormal water flow, preventing damage.
3. Energy-Saving and High-Efficiency
The direct-cooling evaporator eliminates the intermediate heat
exchange step, reducing energy consumption by 20%-30%.
The variable-frequency compressor adjusts power according to load,
reducing energy waste.
III. Application Scenarios
Hard Oxidation: Controls the bath temperature between -8°C and
2°C to improve the hardness and uniformity of the oxide film.
Anodizing: Maintains a constant temperature (typically 25°C to
28°C) to prevent overheating and film shedding.
Electrophoretic Coating: Cools the electrophoretic paint solution
to reduce solvent evaporation and enhance coating adhesion.
IV. Typical Technical Parameters
| Parameters | Typical Values/Range |
| Cooling capacity | 10HP (≈30kW) to 300HP (≈900kW) |
| Temperature control accuracy | ±1°C |
| Applicable tank volume | ≤50m³ |
| Refrigerant type | R22/R407C |
V. Selection and Maintenance Key Points
1. Selection Recommendations
Select a two-stage compressor based on the oxidation process
temperature requirements (e.g., hard oxidation requires a lower
temperature).
Prioritize modular design to facilitate future expansion and
maintenance.
2. Maintenance Requirements
Regularly clean the evaporator scale and condenser dust to prevent
decreased heat exchange efficiency.
Check the refrigerant pressure monthly and refill or replace it
promptly.
I. Core Refrigeration Cycle Components
1. Compressor
Adopting a fully enclosed scroll or screw design, it compresses
low-temperature, low-pressure gaseous refrigerant into
high-temperature, high-pressure gas. It supports variable frequency
speed regulation to adapt to load fluctuations in the oxidation
process.
2. Evaporator
Maintaining a shell-and-tube structure made of titanium alloy or
316L stainless steel, it directly contacts the highly acidic and
alkaline oxidizing liquid for heat exchange, preventing corrosion
and scaling and improving heat exchange efficiency.
3. Condenser
Water-cooled (with a cooling tower) or air-cooled (with finned heat
dissipation), it efficiently releases refrigerant heat through
copper tubes or aluminum fins to adapt to different environmental
requirements.
4. Expansion Valve
Electronic or thermal expansion valves precisely control refrigerant flow and pressure, ensuring that temperature fluctuations within the evaporator are within ±1°C.
II. Auxiliary Systems and Special Designs
1. Circulation Pump
A corrosion-resistant stainless steel or fluoroplastic pump
circulates the oxidizing liquid within the evaporator, preventing
metal ion contamination of the tank liquid. 2. Filtration Device
The filter drier absorbs moisture and impurities from the
refrigerant, protecting the expansion valve and compressor from ice
or impurity blockage.
3. Control System
The PLC with an integrated touchscreen monitors temperature (-8°C
to 30°C), pressure, and flow parameters in real time, supporting
automatic alarms, multi-level protection, and historical data
logging.
4. Liquid Storage Tank
Balances the refrigerant circulation pressure, stores excess liquid
refrigerant, and enhances system stability.
III. Key Design Features
1. Corrosion Resistance
The evaporator, piping, and pump are constructed of titanium alloy
or 316L stainless steel, resistant to corrosion from oxidizing
solutions with a pH of 1 to 14.
2. Efficient Heat Exchange
The direct-cooled evaporator reduces intermediate heat transfer
losses, increasing cooling efficiency by 20% to 30%.
The condenser's enhanced heat dissipation design (such as bellows
and fin structures) reduces energy consumption.
3. Flexible Adaptability
The modular unit supports parallel expansion to meet the cooling
needs of large-scale oxidation tanks.
IV. Typical Technical Parameters
| Components/Parameters | Features |
| Compressor Type | Scroll/Screw (Variable Frequency/Fixed Frequency) |
| Evaporator Corrosion Resistance Grade | Titanium Alloy (pH 1-14 Resistant) |
| Refrigerant Type | R22/R407C (Environmentally Friendly Option Available) |
| Temperature Control Range | -8°C to 30°C (Hard Anodized Requires Two-Stage Compression) |
1.High cost performance: Based on the customer's product
positioning and development strategy, and with economic
affordability as the foundation, we achieve the best cost
performance.
2.The advanced and meticulous design concept of the equipment,
along with the highly automated industrial equipment, showcases the
image of a modern and advanced enterprise.
3. It has high adaptability, meeting the current production
requirements and reserving room for development, taking into
account the needs of increased production and improved quality in
the future.
4.Quality compliance strictly adheres to the ISO900 quality
management system, with every minute detail of the entire equipment
installation being strictly controlled.

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