Filter media, meltblown, composite materials, spun bond non woven, PP spun bond non woven, PET non woven, needle punch, thermal bond, felt, acoustic panel, stitch bond, spunlace, chemical bond, ultrasonic composite, hot melt adhesive compound, etc.
Filter media, meltblown, composite materials, spun bond non woven, PP spun bond non woven, PET non woven, needle punch, thermal bond, felt, acoustic panel, stitch bond, spunlace, chemical bond, ultrasonic composite, hot melt adhesive compound, etc.
Filter media, meltblown, composite materials, spun bond non woven, PP spun bond non woven, PET non woven, needle punch, thermal bond, felt, acoustic panel, stitch bond, spunlace, chemical bond, ultrasonic composite, hot melt adhesive compound, etc.
  • Filter media, meltblown, composite materials, spun bond non woven, PP spun bond non woven, PET non woven, needle punch, thermal bond, felt, acoustic panel, stitch bond, spunlace, chemical bond, ultrasonic composite, hot melt adhesive compound, etc.
  • Filter media, meltblown, composite materials, spun bond non woven, PP spun bond non woven, PET non woven, needle punch, thermal bond, felt, acoustic panel, stitch bond, spunlace, chemical bond, ultrasonic composite, hot melt adhesive compound, etc.
  • Filter media, meltblown, composite materials, spun bond non woven, PP spun bond non woven, PET non woven, needle punch, thermal bond, felt, acoustic panel, stitch bond, spunlace, chemical bond, ultrasonic composite, hot melt adhesive compound, etc.

Electrostatic cotton filter material

Description

The first section (core: basic physical properties, ensuring the processing adaptability of the finished filter product)

This 60g electrostatic cotton, with a basis weight of 60±10% g/m² and a thickness of 0.8±0.2 mm, creates a stable substrate morphology, perfectly suited to the batch processing needs of finished filter products. For industrial filter material processing plants, its uniform basis weight and thickness ensure morphological stability during automated production processes such as cutting, lamination, and sewing, minimizing issues like stretching deformation and uneven thickness, making it suitable as the inner functional substrate for industrial filter bags. For fresh air filter production workshops, the material's lightweight and thin characteristics are compatible with multi-layer composite processes for filter elements, without increasing the volume of the finished product. Finished products produced in these facilities can be used in industrial dust collector filter bags, fresh air system pre-filters, and other applications, ensuring structural regularity and processing consistency from the substrate layer.

 

Customized materials: All performance parameters, efficiency parameters, and specifications such as basis weight and thickness of the materials can be customized to meet specific needs.


The second section (core: the balance between wind resistance and breathability, helping the finished product adapt to the circulation needs of multiple devices)

Leveraging its performance combination of wind resistance ≤2 Pa and air permeability ≥3200 L/㎡・S, this electrostatic cotton can precisely match the equipment adaptation needs of different finished product production: When automotive air conditioning component manufacturers use it as a functional layer in air conditioning filters, its low wind resistance characteristics can prevent airflow attenuation after the finished product is installed in the vehicle, ensuring the air output efficiency of the vehicle's air conditioning; when industrial environmental protection equipment filter material production bases use it to make pre-filters for dust removal in workshops, its high air permeability can ensure the airflow of the dust removal system, preventing a decrease in workshop dust purification efficiency due to filter material obstruction. The finished products produced by these production sites correspond to scenarios such as automotive air conditioning filtration and industrial workshop dust removal, achieving a dual adaptation of "low-energy flow" and "high-efficiency filtration".

 

The third section (core: electrostatic filtration efficiency, enhancing the ability to intercept fine impurities in the finished product)

With its electrostatic adsorption properties and a filtration efficiency of ≥65%, this electrostatic cotton helps improve the impurity interception effect in finished product manufacturing : In air purifier filter manufacturing plants, it can be used as the core adsorption layer of the filter, efficiently capturing fine particles such as PM2.5 and pollen through electrostatic effects, making the finished product suitable for home air purification scenarios; in industrial workshops, it can be used as a pre-filter layer to intercept dust and debris floating in the workshop in advance, reducing the load on the main filter material and extending the product's lifespan. Finished products produced in these facilities cover scenarios such as home air purification and industrial workshop pre-filtering, enhancing the fine filtration capabilities of the finished product from a functional perspective.