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Recirculating Cooling Water System

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Recirculating Cooling Water System

完璧な温度制御ソリューションについては、今すぐお問い合わせください。

 

Overview of recirculating cooling water system

A cooling water system that uses water as the cooling medium and circulates it. Mainly composed of cooling equipment, water pumps and pipelines. After the cold water flows through the production equipment that needs to be cooled (often called heat exchange equipment, such as heat exchangers, condensers, reactors), the temperature rises. If it is discharged immediately, the cold water is only used once (called a once-through cooling water system), so that the cold water can be heated up. After flowing through the cooling equipment, the water temperature drops back and can be pumped back to the production equipment for reuse. The consumption of cold water is greatly reduced, often saving more than 95%. Cooling water accounts for about 70% of industrial water consumption. Therefore, the cooling water circulation system plays a role in saving a large amount of industrial water.

 

Recirculating Cooling Water System

Classification of recirculating cooling water systems

Recirculating cooling water systems are divided into open and closed types, so cooling water circulation systems are also divided into open and closed types. Open systems are more complex to design and operate.

Open

There are two types of cooling equipment: cooling pools and cooling towers, both of which mainly rely on the evaporation of water to reduce water temperature. Furthermore, cooling towers often use fans to promote evaporation, and the cooling water is often blown away. Therefore, the open cooling water circulation system must be supplied with fresh water. The circulating water is concentrated due to evaporation, and the concentration process will promote salt scaling (see sediment control). Supplementary water has a dilution effect, and its flow rate is often determined based on the concentration limit of circulating water. Usually the amount of supplementary water exceeds the amount of water lost by evaporation and wind blowing, so some circulating water (called sewage) must be discharged to maintain the balance of water volume. recirculating cooling water system In an open system, due to the contact between water flow and the atmosphere, dust, microorganisms, etc. enter the circulating water; in addition, the escape of carbon dioxide and the leakage of materials in the heat exchange equipment also change the quality of the circulating water. For this reason, circulating cooling water often requires treatment, including sediment control, corrosion control and microbial control. The determination of the treatment method is often related to the quantity and quality of the make-up water, as well as the performance of the production equipment. When using multiple agents, possible chemical reactions between agents should be avoided.

Closed

The closed recirculating cooling water system uses closed cooling equipment. The circulating water flows in the tubes, and wind is usually used outside the tubes to dissipate heat. Except for material leakage from heat exchange equipment, there are no other factors that change the quality of circulating water. To prevent salt scaling in heat exchange equipment, cooling water sometimes needs to be softened. In order to prevent heat exchange equipment from being corroded, corrosion inhibitors are often added; safety must be paid when using high-concentration, highly toxic corrosion inhibitors, and the cooling water discharged during maintenance should be properly disposed of.

Application of recirculating cooling water system

Cooling of heat-generating parts of semiconductor manufacturing equipment:

Single wafer cleaning and reprinting, printing press, automatic chuck installation device, spraying device, ion plating device, etching device, single wafer processing device, slicer, packaging machine, developer temperature management, exposure device, heating of magnetizing parts Devices etc.

Cooling of the heating parts of the laser device:

Laser processing, heating part of welding machine, laser marking device, generating device, carbon dioxide laser processing machine, etc.

Cooling of heating parts of other industrial machines:

Plasma welding, automatic packaging machines, mold cooling, cleaning machinery, gold plating tanks, precision grinders, injection molding machines, molding parts of resin molding machines, etc.

Analyze and detect the cooling of the heating parts of the machine:

The light source of an electron microscope, the light source part of an ICP luminescence spectrometric analysis device, the heating part of a spectrophotometer, the heat source of an X-ray analysis device, the heating part of an automatic pulse banner, the light source of an atomic absorption photometer, etc.

Cooling of cooling medium for CNC machine tools and machining centers.

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私達の再循環のスリラーは低温冷凍の技術を採用し、温度は- 120℃と低く、さまざまな付属品はカスタマイズ可能です。

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当社は、-150℃の温度制御範囲を持つ低温冷凍機の生産を専門としており、さまざまな業界の冷凍ニーズを満たすことができます。

温度範囲 -25°C ~ -5°Cシリーズ -45°C ~ -10°Cシリーズ -60°C ~ -10°Cシリーズ -80°C ~ -30°Cシリーズ-110°C ~ -50°Cシリーズ -150℃〜-110℃シリーズ
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車両品質テスト用温度シミュレーション:バッテリー寿命テスト、燃料噴射装置/モーターテストベンチ、エアバッグテスト、コンポーネントテストベンチなど。

 

 


 

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電子部品の精密な温度制御に適しています。過酷な環境に対応する半導体電子部品の製造では、ICパッケージの組み立てやエンジニアリング、製造テストの段階で、電子温度テストやその他の環境テストシミュレーションが行われます。

 


 

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バッテリーエネルギー貯蔵システム用液体冷却

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種類コンバーティング・ステーション用蓄電池用充電ステーション用
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冷却水分配ユニット

 

ZLFQシリーズ

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クーラント分配ユニット

液冷装置は、半導体試験、電子機器恒温試験、サーバー支持インフラ冷却、その他の流体温度制御場所に適しています。

 

 

温度範囲 +5°C ~ +35°C +5°C ~ +35°C
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温度範囲 -75°C ~ +225°C
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温度範囲 +5°C ~ +30°C +5°C ~ +30°C +5°C ~ +30°C +5°C ~ +30°C -25°C ~ +5°C -25°C ~ +5°C
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