Product Introduction

The core structure of the Stainless Steel Heat Exchanger Plate consists of corrugated plates, gaskets, clamping bolts and a frame. Adjacent plates are arranged in reverse to form two independent flow channels, and the cold and hot media conduct efficient heat exchange through the plate walls to realize the recycling of energy.
Core Features
The Stainless Steel Heat Exchanger Plate has high material purity and excellent corrosion resistance, which can adapt to complex working conditions such as acid-base solutions and media containing impurities; the plate thickness is uniform, with strong pressure-bearing capacity and not easy to deform; the sealing structure is optimally designed, with low leakage risk and stable operation; the overall structure is compact, and its volume is only 1/5 to 1/10 of that of a shell-and-tube heat exchanger under the same heat exchange area, which greatly saves installation space and is suitable for various site layout requirements.

Product Image


Installation Process
Before installation, check the appearance of the product to ensure that the plates and gaskets are free from damage and deformation, the connecting parts are complete, and the product specifications are consistent with the installation requirements.
The installation site shall be flat, dry and well-ventilated, with sufficient maintenance space reserved, avoiding direct sunlight, rain and corrosion by corrosive gases.
During installation, ensure that the plates are arranged neatly and the clamping bolts are tightened with uniform force to avoid plate deformation and sealing leakage caused by uneven local stress.
After installation, a hydrostatic test shall be carried out, and the pressure shall be maintained for 20-25 minutes. It can be put into use only after confirming no leakage.
Product detail display image



Maintenance and Care
Regular cleaning
Clean the plates every 3-6 months according to the medium condition to avoid scaling affecting heat exchange efficiency; use a suitable cleaning agent during cleaning, avoid using highly corrosive cleaners, rinse thoroughly with clean water after cleaning, and reassemble after drying.
Regular inspection
Check the wear condition of the gaskets every month. If aging, cracking or deformation occurs, replace them in time; check the tightness of the clamping bolts and tighten the loose bolts in time; check the surface of the plates, and repair or replace them in time if corrosion or deformation occurs.
Long-term shutdown
If the equipment is not used for a long time, drain the internal medium, clean the plates thoroughly, seal the inlet and outlet after drying, and place it in a dry and well-ventilated environment to avoid moisture and corrosion.
Fault handling
If leakage occurs, it is mostly due to damaged gaskets or deformed plates. The equipment needs to be disassembled to replace the gaskets or repair the plates; if the heat exchange efficiency decreases, it is mostly due to plate scaling, which needs to be cleaned in time;
processing flow



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