Galvanized Steel Coil Self-Sealing Filters - Asymmetric Filter Elements – POROYAL
Short Description:
Galvanized Steel Coil Self-Sealing Filters - Asymmetric Filter Elements – POROYAL Detail:
This is a type of special designed high porous stainless steel filter element with asymmetric structure metallic membrane, the layer of membrane is approximately 200um and the pore size of the metallic membrane is commonly smaller than 3um, compared to the support porous material the metallic membrane is extremely thinner with much smaller pore size. That makes this product with much smaller filter grades and much lower pressure drop.
Filter grades: 0.1um/0.3um/0.5um/1um/2um/3um
Shapes: seamless filter tubes, discs,sheet.
Advantages:
1) Big porosity, high flow rate, low pressure drop.
2) Complete back-flushing, easy regeneration.
3) Higher filtration efficiency compared with the common porous filter elements.
Applications:
Solid-liquid separation, solid-gas separation with particles smaller than 3um.
Product detail pictures:
Related Product Guide:
SOLIDWORKSWORLD 2019: Global R&D Team Discusses New and Improved Features in SOLIDWORKS | 3DPrint.com | Sintered Filter Tube
MXA WEEKEND NEWS ROUND-UP: ORANGE DAWN ARRIVES | Metal Sintered Filter Sheet
We not only will try our greatest to offer you excellent services to each individual client, but also are ready to receive any suggestion offered by our buyers for Galvanized Steel Coil Self-Sealing Filters - Asymmetric Filter Elements – POROYAL, The product will supply to all over the world, such as: Belarus , Uzbekistan , Austria , Furthermore, all of our products are manufactured with advanced equipment and strict QC procedures in order to ensure high quality. If you are interested in any of our products, please don't hesitate to contact us. We will do our best to meet your needs.
By Denise from Italy - 2015.11.28 16:25
Customer service staff and sales man are very patience and they all good at English, product's arrival is also very timely, a good supplier.
By Cindy from Uganda - 2016.10.25 15:53