Knitted mesh consists of wires of various metals or threads of other materials that are woven into a net-like structure, resulting in a matrix of interlocking rings that can move freely on the same plane without distorting the grid. (Each loop can actually move freely in three directions, and the finished metal knit allows for bi-directional stretching.)
In addition, each ring acts as a small spring when subjected to compressive stress. As a result, compression knitted metal mesh filters generate pressure when subjected to shock and vibration stresses, but depending on the structure, can be immediately restored to 90% of their original size when the force is removed.
The knitted wire mesh can be flexibly used in combination with various materials. It can be made of any metal, non-metal, or a combination of metal and non-metal materials. Through careful selection of the material combination, it can provide functions such as appropriate filtration, vibration resistance, noise reduction, and sealing in corrosive environments, extremely high and low temperatures, as well as in the presence of radioactive contaminated dust particles, oil, or other extreme operating conditions.
The use of knitted wire mesh can produce "flat" or "three-dimensional" forms, providing entrainment with the above functions and an ideal tortuous path. This can be achieved by carefully balancing the following variables:
The main raw materials:
A wide range of materials are available including stainless steel wire (200,300 and 400 series),Galvanized Steel, Aluminum, Copper, Tinned Copper, Titanium Inconel, Monel, Hastelloy, Tungsten, Tantalum, Platinum, Gold Alloy, Gold Plated Copper, Silver Plated Copper, Silver Plated Brass, Polypropylene, Polyethylene, Gold Alloy, Nylon, Teflon.
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