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Titanium Plate More Extensive

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[Abstract]:
Theclassificationoftheheatexchangerisrelativelyextensive:titaniumreactor,pressurevessel,condenser,reactionpot,spiralplateheatexchanger,bellowsheatexchanger,TitaniumPlatetitaniumtubeheatexchanger,titan
The classification of the heat exchanger is relatively extensive: titanium reactor, pressure vessel, condenser, reaction pot, spiral plate heat exchanger, bellows heat exchanger, Titanium Plate titanium tube heat exchanger, titanium plate heat exchanger, spiral plate heat exchanger Heat exchanger, heat exchanger unit, graphite heat exchanger air heat exchanger, heat exchanger, heat exchanger, heat exchanger, Titanium Plate heat exchanger, heat exchanger, heat exchanger, Titanium heat exchangers, heat transfer equipment, require the manufacture of heat exchanger materials with strong corrosion resistance. It can be made of graphite ceramic and other non-metallic materials and stainless steel titanium tantalum zirconium and other metal materials. But with graphite ceramic glass and other materials made of fragile volume, thermal difference and other shortcomings, spiral plate heat exchanger with titanium tantalum zirconium and other rare metals made of heat exchanger price is too expensive, stainless steel is difficult to tolerate many corrosive media, And produce intergranular corrosion spiral plate heat exchanger in the petrochemical industry, Titanium Plate such as energy and other industrial production, often need to heat the high temperature fluid or high temperature fluid cooling, the liquid vapor into steam or steam condensed into liquid. These processes are closely related to the heat transfer, which can be done through the heat exchanger. A heat exchanger is a device that transfers part of the heat from a hot fluid to a cold fluid, Titanium Plate also known as a heat exchanger. Heat exchanger is to achieve the chemical production process of heat exchange and transmission of indispensable equipment. In the heat exchange often have some corrosive, highly oxidizable materials, requiring the manufacture of spiral plate heat exchanger material with strong corrosion resistance.
 
Common connection methods are hot sets, mosaic, tension winding and welding. In addition, the finned tube can also be manufactured by means of integral rolling, Titanium Plate integral casting or machining. Chemical production often encountered gas heating and cooling problems. Since the convective heat transfer coefficient of the gas is small, the heat resistance of the gas side becomes a heat transfer control factor when the other fluid which is heat-exchanged with the gas is water vapor condensed or cooled water. At this point to strengthen the heat transfer, it is necessary to increase the gas side of the convective heat transfer area. Titanium Plate The fins are provided on the gas side of the heat transfer tubes so as to increase the heat transfer area on the gas side and increase the turbulence of the gas and reduce the thermal resistance on the gas side, thereby increasing the heat transfer coefficient of the gas.
 
Titanium rod light weight, high strength, superior mechanical properties, excellent corrosion resistance. It is widely used in: aerospace, ships, auto parts, bicycle parts, marine engineering desalination, mariculture, offshore oil drilling, sea water pipelines; power industry in the ocean thermal power station, condenser, steam Turbine Titanium Blade; Chlor-Alkali, Soda Ash, Urea, and Vacuum Salt Chemical Petrochemical Industry Petrochemical; Electrolytic, Electroplating in Metallurgical Industry; Textile, Papermaking, Fuel in Light Industry;