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Liquid Cooled Battery Racks

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Liquid Cooled Battery Racks

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。

 

As the main energy storage component of electric vehicles, battery modules are key components of electric vehicles and directly affect the performance of electric vehicles. During the use of the battery module, due to the certain internal resistance of the internal cells, a certain amount of heat will be generated during normal operation, causing the internal temperature of the module to rise. The normal operating temperature range of the battery core is 15~35℃. Exceeding 60℃ will cause certain safety hazards. The generation and rapid accumulation of heat will inevitably increase the internal temperature of the battery, especially when used in high temperature environments or when charging and discharging with large currents. , may trigger a violent chemical reaction inside the battery, generating a large amount of heat. If the heat does not have time to dissipate and quickly accumulates inside the battery, the battery may leak, gas, smoke, etc. In severe cases, the battery may burn violently or even explode. In order to eliminate this danger, the battery module needs to be dissipated to prevent the battery core from being in a high temperature state for a long time, which will affect the performance of the battery core and reduce the service life of the battery core.

The working principle of the liquid cooling plate is that the excess heat generated by the battery operation is transferred through contact with the surface of the plate-shaped aluminum device. The liquid cooling system utilizes the characteristics of the large heat transfer coefficient of liquid flow and relies on the liquid flow to transfer high heat, and is eventually used. The cooling liquid passing through the internal flow channel of the device is carried away.

 

Liquid Cooled Battery Racks

 

Battery modules have certain requirements for liquid cooling plates. The first is the high heat dissipation power, which can quickly take away the heat generated by the module and prevent the temperature from rising sharply; the second is high reliability. When the vehicle is walking on the road, the battery pack in working condition must undergo various environmental tests and vibrations. , impact, high and low temperature and other relatively harsh working environments, the working voltage of the power battery pack can easily reach several hundred volts, and the leakage of coolant will become a very serious problem. Even if a coolant with good insulation performance is used, it will encounter external substances. After being doped, its insulation performance will be immediately reduced, causing certain safety risks. Therefore, the reliability of the sealing of the liquid cooling plate is very important; in addition, the heat dissipation design must be precise to avoid excessive temperature differences within the system and the impact of the operating temperature on the battery. The performance and aging of the battery have a very important impact; the last is the weight requirement. The battery pack currently focuses on lightweighting, which requires every component in the pack to be lightweight. If the liquid cooling plate takes up too much weight, It will directly affect the energy density of the battery module, which is unacceptable.

In response to the above problems, liquid cooling plates generally use copper tubes buried in aluminum substrates during the design process. That is, the aluminum substrate is machined and milled with computer numerical control technology, and then a stamping machine is used to press the bent copper tubes onto the aluminum substrate. Perform brazing welding. This design, on the one hand, reduces the weight of aluminum and controls costs, and on the other hand, makes full use of the high thermal conductivity of copper tubes. Finally, two inlets and outlets are set up to inject the corresponding liquid refrigerant, usually water or a mixture of water and organic alcohol (alcohol can prevent water from freezing at low temperatures), and the water pump controls the circulation of the liquid. Water or a mixture of it and organic alcohol is used as a liquid cooling agent because in physics, the thermal conductivity coefficient and specific heat capacity of water are much larger than that of air, the heat conduction speed is fast, and the temperature rise is relatively slow, so water is a relatively Ideal heat dissipation medium. In the battery pack, because depending on the environment, water is easy to freeze when a low temperature environment occurs, which is very detrimental to heat dissipation. In order to solve this problem, a mixture ratio of water and organic alcohol is generally used as the refrigerant, and the results are very good. verification.

Liquid cooling refers to the cooling liquid that passes through the internal cooling pipes and cold plates of the battery pack to take away the heat generated by the battery during operation to reduce the temperature of the battery. The advantages are its high heat transfer coefficient, large thermal energy, fast cooling efficiency, and remarkable battery consistency. The disadvantage is that because the liquid exists inside, the safety performance is relatively high in a sealed space. Compared with air cooling and natural cooling, the cost is also relatively low.

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温度範囲 -18°C ~ +30°C +5°C ~ +35°Cシリーズ
冷却能力0.35 ~ 0.9kW1.8~50kW

 


 

循環式冷凍機

循環式チラー

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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。

温度範囲 -25°C ~ +30°Cシリーズ -45°C ~ +30°Cシリーズ -60°C ~ -20°Cシリーズ -80°C ~ -20°Cシリーズ -120°C ~ -70°Cシリーズ
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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
冷却能力12~360kW6~180kW6~180kW4〜180kW2~120kW2.5 ~ 11kW

 


 

Chillers for Automotive Test

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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。

 

 


 

Chillers for Semiconductor

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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
冷却能力45kW5 ~ 8.5kW4kW

 


 

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
冷却能力15~150kW200~500kW

 


 

サーマルチャック

 

MDサーマルチャックシリーズ

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RFデバイスや高密度パワーデバイス(IGBTやMOSFET)のテストに使用され、実験用フラットパネル(プラズマ、生物学的製品、バッテリー)などの急速冷却にも使用できる。

 

 

温度範囲 -75°C ~ +225°C
温度精度±0.1℃

 


スクリュー冷凍機

 

スクリュー冷凍機 (カスタムデザイン)

低温スクリュー冷凍機と常温スクリュー冷凍機

 

 

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
冷却能力107~1027kW(シングルコンプレッサー)299~2134kW(デュアルコンプレッサー)98~934kW(シングルコンプレッサー)272~1940kW(デュアルコンプレッサー)48~467kW(シングルコンプレッサー)51~497kW(シングルコンプレッサー)

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