BN.11050202 High-Absorbency Polyester-Nylon Cleanroom Wipe

Brief Description: The leader in absorbency within its series, this 75/25 polyester-nylon blend wipe delivers superior liquid uptake (185.91%) for efficient cleaning, making it the top-performing choice for general-purpose cleanroom and industrial wiping tasks where quick, effective absorption is key.

Overview & Positioning

The BN.11050202 is engineered for users who prioritize high absorption efficiency in a standard-weight wipe. As the best-in-class performer among the 105 GSM series, its 185.91% water absorption rate sets it apart for tasks requiring quick spill management and effective soil removal. It represents the optimal blend of performance and value for demanding daily operations.

Product NameCleanroom Wiper
Product CodeBN.11050202
Packaging100 pcs × 40 bags
Gross Weight11 kg
Net Weight10 kg
Dimensions33 × 33 × 52 cm
Material Composition75% Polyester + 25% Nylon
ConstructionStandard Knit/Weave (Non‑composite)
Key PerformanceWater Absorption Rate: 185.91%

Key Product Features

Superior Absorption Capacity: Boasts the highest documented absorption rate (185.91%) in its product family, enabling it to hold more liquid, solvent, or contaminant per wipe, thereby improving cleaning efficiency and reducing wipe usage frequency.

Effective Soil Removal: The combination of high absorbency and the blended fabric’s texture allows for effective entrapment and removal of particulate matter, light oils, and moisture from surfaces.

Durable & Reusable Construction: The strength of polyester and the abrasion resistance of nylon create a robust fabric that can withstand repeated use and proper laundering cycles, offering a lower total cost of ownership.

Low-Lint Performance: Manufactured to minimize fiber shedding, helping to maintain a cleaner environment by reducing airborne particles and contamination transfer.

Chemical Compatibility: Suitable for use with a wide range of common cleaning agents, including isopropyl alcohol (IPA) and diluted aqueous solutions, without significant material degradation.