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Brand Name:
Model Number:
Nominal filtration rating:
Application:
Operating pressure:
Working temperature:
Replacement or not:Replacement
Structural Construction: Textile fiber wires are tightly wound around a porous framework to form a gradient filtration layer.
Material Selection: High-quality fiber wires such as polypropylene, degreased cotton, and glass fiber ensure stable filtration performance.
Basic Function: Effectively intercept impurities of different particle sizes to achieve deep purification of fluids.
Working Process
Fluid Inflow: Fluids containing impurities flow in from the outside of the filter element and come into contact with the wound fiber layer.
Layered Filtration: From the outside to the inside, large particles are first intercepted by the outer layer, and small particles are gradually retained by the inner layer.
Clean Output: The clean fluid that has passed through layer-by-layer filtration flows out from the central hole of the filter element, completing the filtration.
Feature | Description |
Gradient Pore Size Design | The outer layer has large pores, and the inner layer has small pores, enabling deep progressive filtration. |
High Dirt Holding Capacity | The multi-layer winding structure can accommodate a large amount of impurities, reducing replacement frequency. |
Strong Chemical Resistance | Multiple materials are available, suitable for different chemical environments such as acids and alkalis. |
Flexible Customization | Wire diameter, winding density, and filter element size can be customized according to requirements. |
Parameter Item | Details |
Filtration Precision | 1 - 100μm |
Filter Element Length | 10", 20", 30", 40" |
Filter Element Outer Diameter | 65 - 80mm |
Maximum Operating Temperature | Polypropylene: 82℃; Glass Fiber: 120℃ |
Maximum Working Pressure | 0.35MPa (25℃) |
Petrochemical Industry: Filtration of lubricating oil and chemical solvents.
Power Industry: Filtration of power plant circulating water and transformer oil.
Water Treatment: Pretreatment of industrial water and domestic drinking water.
Machinery Manufacturing: Filtration of hydraulic oil and cutting fluid.
Food Processing: Preliminary filtration of liquid such as edible oil and syrup.
Q1: What are the differences in applications of wire-wound filter elements with different materials?
A: Polypropylene materials have good chemical stability and cost-effectiveness, suitable for general industrial filtration. Degreased cotton materials are natural and environmentally friendly, often used in the food and beverage industry. Glass fiber materials are heat-resistant and have high precision, more suitable for high-temperature and high-precision scenarios, such as the filtration of high-temperature fluids in the chemical industry.
Q2: Can wire-wound filter elements be cleaned and reused after clogging?
A: Generally, wire-wound filter elements are single-use products. Due to their complex structure, it is difficult to restore the original filtration performance and precision after cleaning, and the cleaning process may damage the fiber structure and affect the filtration effect. It is recommended to replace them in a timely manner when the service life is reached or when they are clogged.
With its unique gradient pore size design, high dirt holding capacity, and strong chemical resistance, the wire-wound filter element plays a crucial role in fluid filtration in multiple industries. Whether in harsh chemical environments or food processing with high cleanliness requirements, it can provide reliable filtration protection, escorting the production and operation of enterprises and reducing comprehensive operating costs.
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