Lola Fa'asalalau Fa'asalalau Polypropylene Laminate

Fa'amatalaga Puupuu:

G4 lanu moana/pa'epa'e/uliuli fa'asalalau fa'apipi'i uaea

E ala i le faasolosolo malie faiga fa'ailoga fa'ailoga e iloa ai le maualalo o le tete'e muamua, maualuga le pefu o lo'o umia le gafatia fa'atinoga. E mafai ona fa'aogaina e fai ai le filiga fa'apipi'i pe a uma ona fa'apalapala uaea.

 

 

 


Fa'amatalaga Oloa
Faailoga o oloa

Lola fa'asalalau fa'asalalau polypropylene laminate

Fa'amatalaga o oloa

Talosaga:

Fa'aaogaina mo le gaosia o le filiga fa'apipi'i

Fa'amama fa'amama mo faiga fa'amama ea
E fetaui mo le faamama ituaiga gaugau
Vaega o Mea'ai:
Fa'aaogāina o le polypropylene synthetic, fa'asolosolo fa'ailoga fa'ailoga faiga;
Le maualalo o le tetee muamua, maualuga le malosi o le taofiofia o le pefu;
Tete'e afi lelei, tulaga fa'avasegaina afi e mafai ona fetaui ma Europa DIN53438-F1;
E mafai ona oʻo atu le susu i le 100%;

Fa'amatalaga Ole tele masani e pei o le taimi mulimuli, isi lapopo'a e mafai ona fa'avasegaina
Leai. Mea Nu.  Fa'amatalaga
1 G4 lanumoana/pa'epa'e ala o faasalalauga laminated uaea 24”/610mm lautele * 150m umi
Faʻasalalau papaʻe: 610mm lautele; uaea mata: 580mm lautele
2 25”/635mm lautele * 150m umi
Faʻasalalau papaʻe: 635mm lautele; uaea mata: 605mm lautele
3 20”/508mm lautele * 150m umi
Fa'asalalau paepae: 508mm lautele; Mesh uaea: 478mm lautele
4 28”/711mm lautele * 150m umi
Faʻasalalau papaʻe: 711mm lautele; uaea mesh: 681mm lautele
 Ituaiga Fua   Fa'asalaina averesi Ea
Saosaoa
Muamua
omiga
Maualuluga ℃
W×L×H Filifili % m/s ae
  Vasega      
AY-G3 0.61m*150m G3 ≤50 2.5 60 80
IS-G4 0.61m*150m G4 ≤82 2.5 75 80

 

What is Synthetic Air Filter Media and Why is it Used in Filtration?


Synthetic air filter media is a man-made filtration material composed of engineered polymers such as polyester, polypropylene, or blended fibers. Unlike traditional materials like fiberglass or cellulose, synthetic media offers superior durability, moisture resistance, and customizable filtration efficiency. It is widely used in HVAC systems, automotive filters, and industrial applications because of its ability to capture fine particles while maintaining high airflow rates. The material’s hydrophobic properties prevent mold and bacterial growth, making it ideal for humid environments. Additionally, synthetic media can be electrostatically charged to enhance particle attraction, improving filtration without increasing airflow resistance. Its versatility, longevity, and performance consistency make it a preferred choice for modern filtration needs where reliability and efficiency are critical.

 

Multi-Layer Synthetic Air Filter Rolls for High Dust Holding Capacity 


Multi-layer synthetic air filter rolls are designed to maximize dust-holding capacity while maintaining optimal airflow. These filters use a gradient density structure, with progressively finer layers that capture larger particles first while allowing smaller ones to be trapped deeper within the media. This design prevents premature clogging and extends filter life, reducing maintenance frequency. The synthetic fibers provide high tensile strength, resisting tears and deformation even under heavy particulate loads. Applications include commercial HVAC systems, industrial dust collectors, and automotive air intake filters, where high dust loads are common. The multi-layer approach ensures consistent performance over time, making these rolls cost-effective for high-demand environments that require both efficiency and longevity.

 

Synthetic vs Fiberglass Air Filter Media 


Synthetic air filter media outperforms fiberglass in several key aspects, including durability, moisture resistance, and filtration efficiency. While fiberglass is cost-effective and provides decent filtration, it is fragile and prone to tearing, especially in high-velocity airflow systems. Synthetic media, on the other hand, is more robust, resistant to humidity, and can be engineered for higher dust-holding capacity. Fiberglass filters often require a supportive frame, whereas synthetic media maintains structural integrity independently. Additionally, synthetic filters can incorporate electrostatic enhancement for better particle capture without sacrificing airflow. However, fiberglass remains useful in high-temperature applications where certain synthetic materials may degrade. For most modern HVAC and automotive uses, synthetic media is the superior choice due to its balance of strength, efficiency, and longevity.

 

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