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Why Titanium Material Mesh Demister is So Important?
Product name: Titanium mesh demister
The titanium mesh demister has excellent corrosion resistance,
especially in various concentrations of nitric acid, organic acid,
chloride, wet chlorine and alkali. Titanium is a very active metal,
its equilibrium potential is very low, and its thermodynamic
corrosion tendency in the medium is large. But in fact, titanium is
very stable in many media, for example, titanium is corrosion
resistant in oxidizing, neutral and weak reducing media. This is
because titanium and oxygen have a great affinity. In air or
oxygen-containing media, a dense, adhesive and inert oxide film is
formed on the titanium surface, which protects the titanium matrix
from corrosion. Even due to mechanical wear, it will recover or
regenerate quickly. This indicates that titanium is a metal with
strong passivation tendency. The oxide film of titanium always
keeps this characteristic when the medium temperature is below 315
℃. Industrial pure titanium includes TA1, TA2, TA10 and other
brands.
Because of its excellent corrosion resistance, mechanical
properties and technological properties, titanium is widely used in
many sectors of the national economy. Especially in chemical
production, using titanium instead of stainless steel, nickel-based
alloys and other rare metals as corrosion resistant materials is of
great significance in increasing production, improving product
quality, extending equipment service life, reducing consumption,
reducing energy consumption, reducing costs, preventing pollution,
improving labor conditions and improving productivity. In recent
years, the scope of titanium used in China's chemical industry has
been expanding, and the consumption has increased year by year.
Titanium has become one of the main anti-corrosion materials in
chemical equipment. As a corrosion-resistant structural material
used in chemical equipment, titanium has established its position,
and as an ideal material in chemical equipment, titanium has also
increasingly attracted the attention of engineering and technical
personnel.
Titanium and its alloys have many excellent characteristics, such
as light weight, high strength, strong heat resistance, corrosion
resistance, and so on. They are known as "the metal of the future"
and are new structural materials with development prospects.
Titanium and its alloys not only have very important applications
in aviation and aerospace industry, but also have been widely used
in many industrial sectors such as chemical industry, petroleum,
light industry, metallurgy, power generation and so on.