304 Stainless Steel Bag Filter, 2" NPT Bag Filter Housing Sock Filter, Heavy Duty Solid-Liquid Separation Tool, 30-40t/h Water Filters Purification Equipment, Industrial Fluid Filtering Machine
R 29,594
Availability: Currently in Stock
Delivery: 10-20 working days
304 Stainless Steel Bag Filter, 2" NPT Bag Filter Housing Sock Filter, Heavy Duty Solid-Liquid Separation Tool, 30-40t/h Water Filters Purification Equipment, Industrial Fluid Filtering Machine
Efficient Filtration: The 7.1*31.9 inch filter bag has a high filtration area of 4.95 square feet. The filtrate flows into the filter bag from the side inlet of the filter housing, allowing the liquid to flow from high to low so that the filter bag is not affected by turbulence, which improves the filtration efficiency and service life.
Excellent Performance: The filter unit mainly consists of the filter barrel body, the filter drum cover, the quick-opening mechanism, and the stainless steel filter bag reinforcing mesh basket. The filter bag installed in the reinforced mesh basket can effectively intercept the impurity particles, and the qualified filtrate can be obtained after the liquid penetrates the filter bag of the required fineness level, thereby achieving the effects of liquid filtration, purification, separation, and recovery.
Considerate Design: The low probability of side leakage of the filter bag ensures filtration precision and the rapid replacement of the filter bag reduces the operation cost. The filter bag is supported by a metal mesh basket to help extend its service life.
Adjustable Height: You can adjust the overall height of the stainless steel bag filter(45.1-52.9 inches) by adjusting the support feet to determine the height of the machine from the ground according to the height of the inlet and outlet.
Real Time Monitoring: This solid-liquid separation tool is equipped with an excellent pressure gauge with 2.5-level accuracy and 1.0MPa measurement range, which is convenient for real-time and accurate monitoring of internal pressure and timely release of excess pressure.