As a commonly used depth filter element, the structural design of string-wound filter cartridges directly determines their filtration precision, contamination holding capacity and service life. The core of the filter cartridge adopts a composite structure of "skeleton + winding thread", supplemented
In the field of fluid filtration, pleated filter cartridges have gradually replaced some traditional filter cartridges to become the mainstream choice by virtue of their unique structural and material advantages. Compared with traditional filter cartridges such as PP melt-blown, string-wound and act
The biaxial plastic geogrid (Contact: 188-5385-9699) is made from high-molecular polymers through extrusion, sheet forming, punching, and subsequent longitudinal and transverse stretching. This material boasts high tensile strength in both longitudinal and transverse directions. Its structure forms
Selection GuidelinesWhen selecting a High‑Flow Pleated Filter Cartridge Housings, the following key factors need to be taken into consideration: 1. Fluid Properties: Clarify the chemical composition, pH value, temperature and viscosity of the liquid to select appropriate filter cartridge and housing
Main Application Fields:High-flux filter cartridge housings are widely used in industries that require pre-filtration, clarification filtration or protective filtration of large volumes of liquid.Application IndustrySpecific Application ScenariosCommon Filtration PrecisionWater TreatmentPre-treatmen
OverviewHigh-flux filter cartridge filters, also known as high-flow filters or multi-cartridge filters, are filtration systems designed for handling high-velocity and large-volume liquid streams. Their core feature lies in the adoption of single or multiple large-sized filter cartridges (typically w
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Specifications
| specifications | Range/Options |
| OD | φ20–200mm, commonly 60mm, customizable |
| length | Standard: 5″, 9.75″, 10″, 20″, 30″, 40″ (≈125–1016mm), can be customized to 1500mm |
| Port type | DOE, 222/226 card type, M20/M30/M32 threads, flat press head, etc. |
| Sealing ring | Silicone, EPDM, Viton, PTFE, etc. |
1.Filtration accuracy and pore structure
Pore size range: 0.2–200µm, common grades are 0.5, 1, 3, 5, 10, 20, 50, 75, 100µm.
High porosity and uniform distribution (approximately 35–60%), forming a gradient deep filter structure.
Particle retention rate: high, 0.45µm filter element particle interception rate can reach ≥99.8%.
2.Temperature and pressure capability
Operating temperature: up to 280–371°C at room temperature (water state 280°C).
Maximum pressure difference: up to 17.3 bar (≈250psid), reverse pressure difference is about 3.5 bar.
The material has high mechanical strength and is resistant to damage and impact.
3.Cleaning and reusing
Supports hot water, chemical cleaning (such as acid and alkali, oxidizer), backwash and ultrasonic waves. The filter element can be reused to restore ≥90% of the filtration performance, and is cost-effective.
No binder, no particles falling off, meets the medical and food clean grade.
Advantages and Features
1.Extreme working conditions: high temperature, high pressure, corrosion resistance, wide adaptability range.
2.High filtration efficiency: deep structure, can filter particles above 0.5µm, efficiency ≥99.5%
3.Low pressure loss, large flux: high porosity reduces resistance and large flow.
4.Cleanable regeneration: reduces replacement frequency and cost.
Application scenarios
1.High temperature/high pressure fluid filtration: steam, hot oil, chemical solvents, etc.
2.Corrosive media purification: strong acid/alkali liquid and gas treatment.
3.Accurate filtration: pharmaceutical preparations, food and beverages, pure water treatment.
4.Industrial gas and catalytic processes: gas purification, oil field water and gas separation
Select suggestions
1.Determine that the filter element size (length, diameter) meets the equipment diameter;
2.Select pore size and porosity according to the accuracy and flow requirements;
3.Select the appropriate level according to the temperature and pressure conditions; ensure that the port is compatible with the system connection;
4.Choose the appropriate sealing material.
Specifications
| specifications | Range/Options |
| OD | φ20–200mm, commonly 60mm, customizable |
| length | Standard: 5″, 9.75″, 10″, 20″, 30″, 40″ (≈125–1016mm), can be customized to 1500mm |
| Port type | DOE, 222/226 card type, M20/M30/M32 threads, flat press head, etc. |
| Sealing ring | Silicone, EPDM, Viton, PTFE, etc. |
1.Filtration accuracy and pore structure
Pore size range: 0.2–200µm, common grades are 0.5, 1, 3, 5, 10, 20, 50, 75, 100µm.
High porosity and uniform distribution (approximately 35–60%), forming a gradient deep filter structure.
Particle retention rate: high, 0.45µm filter element particle interception rate can reach ≥99.8%.
2.Temperature and pressure capability
Operating temperature: up to 280–371°C at room temperature (water state 280°C).
Maximum pressure difference: up to 17.3 bar (≈250psid), reverse pressure difference is about 3.5 bar.
The material has high mechanical strength and is resistant to damage and impact.
3.Cleaning and reusing
Supports hot water, chemical cleaning (such as acid and alkali, oxidizer), backwash and ultrasonic waves. The filter element can be reused to restore ≥90% of the filtration performance, and is cost-effective.
No binder, no particles falling off, meets the medical and food clean grade.
Advantages and Features
1.Extreme working conditions: high temperature, high pressure, corrosion resistance, wide adaptability range.
2.High filtration efficiency: deep structure, can filter particles above 0.5µm, efficiency ≥99.5%
3.Low pressure loss, large flux: high porosity reduces resistance and large flow.
4.Cleanable regeneration: reduces replacement frequency and cost.
Application scenarios
1.High temperature/high pressure fluid filtration: steam, hot oil, chemical solvents, etc.
2.Corrosive media purification: strong acid/alkali liquid and gas treatment.
3.Accurate filtration: pharmaceutical preparations, food and beverages, pure water treatment.
4.Industrial gas and catalytic processes: gas purification, oil field water and gas separation
Select suggestions
1.Determine that the filter element size (length, diameter) meets the equipment diameter;
2.Select pore size and porosity according to the accuracy and flow requirements;
3.Select the appropriate level according to the temperature and pressure conditions; ensure that the port is compatible with the system connection;
4.Choose the appropriate sealing material.