Titanium Woven mesh
Structure
Titanium woven mesh is formed by weaving titanium alloy wires into an interlaced mesh structure. Common weaving patterns include plain weave and twill weave, resulting in different mesh shapes and sizes.
Manufacturing process
Titanium woven mesh is typically manufactured using titanium alloy wires. The process involves cutting, drawing, and weaving the wire material.


Characteristics
High strength: Titanium alloy wires possess excellent strength, resulting in titanium woven mesh having high tensile strength and durability.
Excellent corrosion resistance: Titanium alloys exhibit outstanding resistance to corrosion, enabling titanium woven mesh to withstand the corrosive effects of acids, alkalis, salts, and other corrosive media.
Breathability: The interwoven structure of titanium woven mesh provides good breathability, making it suitable for applications requiring the flow of gases or liquids.
Applications
Titanium woven mesh is widely used in chemical, petroleum, aerospace, and other industries due to its high strength, excellent corrosion resistance, and breathability. It is commonly utilized as gasket materials, filters, and protective screens for applications such as liquid or gas filtration, separation, screening, and protection.
Titanium Expanded Mesh
Structure
Titanium expanded mesh is produced by stretching titanium alloy sheets, creating a grid-like structure with uniformly distributed apertures.
Manufacturing process
The manufacturing process of titanium expanded mesh includes cutting, stretching, and heat treatment of titanium alloy sheets. The stretching process introduces apertures in both horizontal and vertical directions while increasing the mesh's strength and rigidity.


Characteristics
Lightweight: Titanium stretched mesh, made from titanium alloy sheets, is lightweight, making it suitable for applications with weight requirements.
High strength and rigidity: The stretching process creates holes in both horizontal and vertical directions, enhancing the strength and rigidity of the titanium stretched mesh, enabling it to withstand significant forces and pressures.
Corrosion resistance: Similar to titanium woven mesh, titanium stretched mesh also possesses excellent corrosion resistance, protecting it from chemical corrosion.
Applications
Titanium expanded mesh finds widespread applications in aerospace, chemical, medical, and other industries due to its lightweight nature, high strength, and corrosion resistance. It is commonly used as filters, isolation plates, and protective screens for gas or liquid filtration, isolation, and protection purposes.




