グリコールチラーと水冷式チラーの違いは何ですか?
生産時に発生する熱を十分に放散させるためには、グリコールチラーと冷凍機の両方を使用することができる。この2種類のチラーの基本的な違いは、凝固点と熱伝達能力の違いである。...
Pure ethylene glycol or a mixture of ethylene glycol and water has a much lower freezing point than pure water. This means that glycol-based chillers are better suited for low-temperature environments. In contrast, water has a better ability to retain and conduct heat in the associated process than glycol mixtures. As a result, the heat transfer efficiency for water chillers will be higher than for glycol chillers.
Water: Using water as a coolant is an economical method as water is readily available at minimal cost in most cases. Alternatively, purified water (deionized water, reverse osmosis) can be used in water-based chillers for greater cooling efficiency.
Ethylene Glycol: Ethylene glycol-based coolants consist of either ethylene glycol or propylene glycol. Although the two variants have similar physical properties, they should never be mixed. The main benefits of glycol coolants are improved corrosion resistance and freeze protection.
Why use ethylene glycol for cooling?
Using a glycol-water mixture as a coolant has several advantages over using plain water as a coolant. These advantages are due to its unique physical properties, which include a lower freezing point than water.
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ベアリング急速冷凍ボックスの冷凍圧力が低すぎるのを防ぐには?
1161ベアリング・ブラスト・チラーの冷凍システムにおいて、コンデンサーの設置場所が密閉された空間でない場合、システムの排気圧力(凝縮圧力)は冬季(または低温)に低くなる傾向があり、多くの場合、コンデンサーの設置場所が密閉された空間でない場合、システムの排気圧力(凝縮圧力)は冬季(または低温)に低くなる傾向がある。
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なぜ半導体製造工程で使用される特殊ガスにチラーが必要なのか?
869When using special gases in semiconductor manufacturing processes, a chiller is required, mainly due to the following reasons: 3. Process requirements: In semiconductor manufacturing processes such as chemical vapor deposition...
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