Titanium reactor can be mainly divided into pure titanium reactor, composite titanium reactor, titanium lined reactor three categories, respectively used in different process environments.
At present, titanium reactor can be mainly divided into pure titanium reactor, composite titanium reactor, titanium lined reactor three categories, respectively used in different process environments. Among them, the composite titanium reactor is widely used because of its superior performance and lower price than the pure titanium reactor.
Titanium reactor can do corrosive experiments, titanium is originally very active, but easy to form passivation, and the passivation layer is relatively stable, usually used in the reaction of corrosive materials.
Due to its high specific strength, excellent heat resistance, corrosion resistance and fracture toughness, titanium reactors are greatly favored in aviation, aerospace, petrochemical, medical and geological fields.
Titanium reactors are also increasingly widely used in civilian fields, such as automobiles, electricity, leisure and other industries. With the widespread use of titanium and its alloys, its weldability is paid more and more attention by users.
Scope of application
Titanium reactor in aviation, aerospace, petrochemical, medical and geological fields are greatly favored; Titanium reactors are also increasingly widely used in civilian fields, such as automobiles, electricity, leisure and other industries. With the widespread use of titanium and its alloys, its weldability is paid more and more attention by users.
Device characteristics
Titanium has the advantages of high specific strength, excellent heat resistance, corrosion resistance and fracture toughness.