Brief: Discover the Pressure Wire Mesh Filter Leaf 5 Layers, a high-efficiency filtration solution for vertical and horizontal pressure leaf filters. Made from AISI304 or 316L stainless steel, these filter leaves offer a 98% filtration rating and come in rectangle, square, or round shapes. With a 5-layer construction for durability and longer replacement cycles, they are ideal for industries like edible oil processing, pharmaceuticals, and chemicals.
Related Product Features:
Constructed with 5 layers of stainless steel woven mesh for enhanced durability and filtration efficiency.
Available in rectangle, square, and round shapes to fit various pressure leaf filter configurations.
Made from high-quality AISI304 or 316L stainless steel for corrosion resistance and long service life.
Features a 98% filtration rating, ensuring high purity in filtered outputs.
Designed for vertical and horizontal pressure leaf filters, accommodating 10 to 60 filter leaves per unit.
Longer replacement cycle reduces maintenance costs and downtime.
Suitable for industries like edible oil processing, pharmaceuticals, and chemical manufacturing.
Customizable models available with varying heights, widths, and filter areas to meet specific needs.
متداول:
What materials are used in the Pressure Wire Mesh Filter Leaf?
The filter leaves are made from AISI304 or 316L stainless steel woven mesh, ensuring durability and resistance to corrosion.
What is the filtration rating of the Pressure Wire Mesh Filter Leaf?
The filter leaves offer a 98% filtration rating, providing high efficiency in solid-liquid separation processes.
In which industries are these filter leaves commonly used?
These filter leaves are widely used in edible oil processing, pharmaceuticals, chemical manufacturing, and other industries requiring high-purity filtration.
How many layers does the Pressure Wire Mesh Filter Leaf have?
Each filter leaf consists of 5 layers: 2 layers of fine wire mesh, 2 layers of supporting mesh, and 1 layer of drain mesh, all bound together for optimal performance.