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cxjl series metal mesh filter element-0

Air filter

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CXJL series metal mesh filter element

The CXJL series metal mesh frame filter cartridge is made of stainless steel woven mesh and sintered felt as the core filter material, which is formed by multi-layer folding and corrugated technology and nested inside the plate frame filter chamber. The filter material adopts a gradient mesh arrangement, with the aperture gradually decreasing from the outside to the inside, effectively improving the efficiency of impurity capture. The working temperature ranges from -10℃ to+300℃, with a pressure difference tolerance of 0.2MPa and a filtration accuracy of up to 10μm. It is suitable for precision filtration of various media such as oil, gas, and liquid. Stainless steel frame with O-ring seal, stable pressure bearing, reliable sealing, supports backwashing and ultrasonic cleaning regeneration, can be reused, and is an ideal upgrade alternative to traditional paper and synthetic board frame filter elements.

  • Product Introduction
  • Product Description
  • Application Scenarios
  • Competitive advantage
  • Common problems and solutions
  • Related Products

Product Introduction

The CXJL series metal mesh filter element is specially designed to meet the needs of industrial grade precision filtration. The CXJL series metal mesh filter element uses high-quality stainless steel woven mesh and stainless steel sintered felt as the core filter material. It is precision formed through folding and corrugated technology, and has outstanding performance such as excellent breathability, low resistance, and large pollutant capacity. As a powerful alternative to traditional paper and synthetic filter cartridges, this product achieves comprehensive surpassing in high temperature resistance, corrosion resistance, and high mechanical strength. It can be widely adapted to multiple mainstream filtration equipment, helping enterprises reduce costs, increase efficiency, and operate in a green manner.

Brand Name DFFILTRI
Model CXJL
Rated air volume 1800m³/h,3600m³/h
Initial resistance ≤65Pa

Product Description

The CXJL series metal mesh filter element uses stainless steel metal mesh as the main filter material, and the skeleton adopts a diamond shaped protective mesh structure. The end cap is injection molded and sealed with an O-ring to ensure both filtration efficiency and sealing performance. The filter material is arranged in multiple layers of wavy staggered stacking, and the mesh gradually decreases from the outside to the inside, which promotes the fluid to change direction multiple times when passing through, greatly improving the capture capacity. The working temperature ranges from -10 ℃ to+300 ℃, with a maximum withstand pressure difference of 0.2MPa. The filtration accuracy can reach the level of 10 μ m, and the inlet and outlet diameter specifications are complete. It is suitable for precision filtration of various media such as oil, gas, and liquid. The filter element supports regeneration methods such as backwashing and ultrasonic cleaning, and can be reused, significantly extending the replacement cycle.

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Application Scenarios

The CXJL series metal mesh filter element has a wide range of applications: hydraulic systems - matched with oil filters, used for circulating purification of hydraulic oil, phosphate hydraulic oil, emulsions, water ethylene glycol and other media; Gas engineering - interception of impurities in non corrosive gases such as natural gas, artificial gas, and liquefied gas; Industrial ventilation - primary filtration for high temperature and high dust environments such as central air conditioning, oil mist filtration in paint spraying rooms, and automotive painting workshops; Electric metallurgy - hydraulic systems for rolling mills, continuous casting machines, and oil purification systems for nuclear and thermal power plants; Environment.

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Competitive advantage

Compared to traditional filter element, CXJL series metal mesh filter cartridges can be regarded as the "steel guardians" in the filtration field. Firstly, it can be reused - by backwashing and ultrasonic cleaning, the filtering performance can be restored, significantly reducing the cost of consumables; Secondly, it can withstand extreme working conditions - high temperatures up to 300 ℃, acid and alkali corrosion resistance, and stable operation even in harsh environments; Thirdly, excellent mechanical strength - the stainless steel woven mesh structure eliminates the risk of fiber detachment and protects downstream precision equipment; Fourth, low pressure difference and high pollutant absorption - a scientific combination of pleat depth and quantity to achieve lower pressure loss and longer service life; Fifth, green environmental protection - reducing the generation of waste filter cartridges, in line with the trend of sustainable industrial development.

Common problems and solutions

Frequent clogging of filter element is usually caused by high levels of impurities in the incoming water or the growth of microorganisms on the surface of the filter cartridge. It is recommended to strengthen pre-treatment measures, regularly add antibacterial agents, and continuously monitor the pressure difference between the inlet and outlet. Once the set value is reached, timely treatment should be carried out.

Filter cartridges that are flattened or broken are often caused by severe pollution and blockage, resulting in pressure differences exceeding the maximum tolerance value. It is necessary to strictly control the operating pressure difference to not exceed the design allowable range. Once the pressure difference approaches the limit, the filter cartridge must be replaced immediately to avoid structural damage.

The outflow flow rate has significantly decreased, usually due to clogged filter cartridges causing a decrease in flux. It is necessary to check the pressure difference gauge reading in a timely manner. When the flow rate cannot meet the requirements of the operating conditions, a new filter cartridge should be replaced promptly.

The filtration effect does not meet the standard, and the common reasons are the aging and damage of the O-ring or the misalignment of the filter element during installation. When replacing the filter element, the O-ring should be replaced synchronously, and the installation should strictly follow the standard torque. Before starting up, it is necessary to do a good airtightness test to ensure that everything is foolproof.

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