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High Efficiency Plate Frame Heat Exchanger

High Efficiency Plate Frame Heat Exchanger

Plate type heat exchangers are used in food and beverage processing. Plate heat exchanger have one stage,two stage,three stage and multi-stages heat exchanger.

Product Introduction

                Stainless steel one stage plate type heat exchanger.


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Plate type heat exchangers are used in food and beverage processing.

1.All kinds of dairy products: fresh milk, milk powder, milk drinks, yogurt and so on;

2.vegetable protein drinks: peanut milk, milk tea, soy milk, soy milk drinks, etc.

  3.Juice drinks: fresh fruit juice, fruit tea and so on.

4.Cool tea drinks: tea drinks, reed drinks, fruit and vegetable drinks, etc.

5.Seasoning: soy sauce, rice vinegar, tomato juice, sweet chili sauce, etc.

  6.Breweries: beer, rice wine, rice wine, wine and so on.


The plate heat exchanger is applied to other industrial liquid treatment.

Pharmaceutical, printing and dyeing, heating and heat exchange, chemical, power plant, swimming bath heating, petroleum, metallurgy, hot water, ship, machinery, paper, textile, geothermal utilization, environmental protection, refrigeration.


Heat transfer plate material:

1. Stainless steel: SUS304/SUS304L/SUS316/SUS316L (suitable for corrosive conditions of acid and alkali medium, not suitable for chloride ion).

2. Industrial pure titanium: TAE (caustic soda, salt making, low temperature seawater freezing and chloride ion corrosion).

3. Ultra low carbon stainless steel: 00Cr18Ni14Mo2Cu2 (organic solvent and intercrystalline and chloride ion corrosion occasions)



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A tube heat exchanger is a highly efficient thermal device designed to transfer heat between two fluid streams while keeping them physically separate. In a 1-stage heat exchanger configuration, the process involves two streams of fluids flowing through separate sets of tubes. One fluid, known as the "hot" fluid, transfers its heat to the other fluid, referred to as the "cold" fluid, without the fluids coming into direct contact. This controlled heat transfer is vital for various industrial applications, including HVAC systems, chemical processing, and power generation.

In contrast, a 3-stage heat exchanger configuration builds upon the principles of the 1-stage setup. However, it introduces an additional layer of complexity to enhance heat exchange efficiency. The three fluid streams, each with distinct temperature levels, flow through separate sets of tubes. By strategically arranging these stages, the hottest fluid releases its heat to the medium-temperature fluid in the first stage. Subsequently, the medium-temperature fluid transfers its heat to the coldest fluid in the second stage. Finally, the coldest fluid absorbs heat in the third stage. This multi-stage approach optimizes heat transfer and minimizes temperature differences between the fluids, resulting in improved overall energy efficiency and performance.

Both the 1-stage and 3-stage tube heat exchangers play essential roles in diverse industrial processes where precise heat management is crucial for maintaining operational efficiency and reducing energy consumption.



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