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Four Features of Titanium Heat Exchanger Plate Design

Nov 09, 2022

1. Design of the shunt area

Even with a wider plate, the fluid can be evenly distributed in all corners of the plate, reducing the pressure loss in the shunt area. The heat exchange area of the plate is involved in heat exchange, and the physical area of the plate is converted into the heat exchange area, there is no heat exchange dead zone, there is no flow dead angle, and it is not easy to cause fouling, and it is not easy to cause chloride ion corrosion caused by fouling. The allowable pressure drop can be fully utilized to increase the flow rate of the convective heat exchange part and improve the overall heat exchange efficiency.

2. Unilateral flow design

The whole Titanium Heat Exchanger uses only one type of plate, which is easier for piping, easier installation and equipment maintenance, and reduces the types and quantity of spare plates and rubber pads.

3. There are H and L two corrugation angles

Through the optimized combination of Titanium Heat Exchanger plates, the heat transfer coefficient is improved and the equipment cost is saved.

4. One-time stamping forming

On the same plate, the corrugation depth of the Titanium Heat Exchanger plate is the same, so that each contact point between the plates is well connected, and there is no excessive punching area on the plate. 0.3mm, which enhances the pressure bearing capacity of the plate, avoids thermal stress fatigue, and avoids mechanical fatigue corrosion caused by oscillation and high-frequency tremor. The mechanical properties of the plate are better, and the leakage caused by hidden cracks is reduced. When the medium flows through the plate, the turbulent flow is strengthened, the heat transfer efficiency is improved, the weight of the equipment is reduced, and a higher heat transfer coefficient can be obtained under the condition of meeting the pressure requirements.


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