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Heat exchange plates with superior flow and heat transfer performance

2019-08-16


1 rich plate combinations bring technical advantages plate heat transfer performance and mobility with the length, width, slot depth and corrugation angle of the different plates, because the heat transfer conditions vary widely, and each type of plate generally only in a range of conditions to achieve the best heat transfer effect, so the rich combination of plates can better match the different heat transfer conditions, in order to obtain the most heat transfer effect at the same time and can Significantly reduce the cost of the plate heat exchanger, and can obtain a higher inter-plate flow rate, thereby reducing the corrosion and scaling rate of the plate.

2 The unique plate design uses numerical simulation technology with ultra-fine mesh combined with sophisticated experimental measurement methods to design heat exchanger plates with superior flow and heat transfer performance. The unique design of the plate pattern can make the fluid can produce turbulent flow at lower flow rate, which greatly improves the heat transfer coefficient. The plate mold design is more reasonable, forming as many as thousands of contact points between the plates, bearing pressure uniformly, and can withstand high pressure up to 25KG.

3 Advanced manifold area The manifold area of the plate is designed with flow guide grooves to balance the difference in flow resistance caused by uneven distribution of fluid in different flow channels, avoiding the disadvantages of uneven flow distribution and dead-end flow, such as reduced heat transfer efficiency, pitting and dead-end fouling.

4 Super gasket and sealing groove adopt non-adhesive snap-on gasket, which bites firmly with the plate to avoid misalignment under pressure. And two seals are set between the hot and cold fluids, with the leakage area in the middle. Even if a gasket is damaged, the leakage that occurs will not cause the two fluids to mix, but flow to the outside world through the leakage hole.

5 The scientific frame structure adopts a 5-point positioning suspension system, which not only ensures accurate positioning of the plates up and down, but also ensures that the plates can be automatically interlocked when clamping, so it is easy to precisely align the plates when they are reset, eliminating human operation errors, thus ensuring the performance of the heat exchanger after disassembly and installation, and the service life of the gasket is more durable.

The front and rear baffles are CNC cut, formed in one piece and micro-forged on the surface to enhance surface strength.

The locking nuts and rolling parts are selected with unique design and made of high strength, high wear resistance and high anti-corrosion material.



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