High-Performance Ethoxylated Acetylenic Diol: Wetting Agent for Coatings & Inks

Discover a superior nonionic, low-foam wetting agent designed to enhance your water-based formulations. Our ethoxylated acetylenic diol offers exceptional surface tension reduction and wetting capabilities, making it an ideal choice for demanding applications in coatings, inks, and beyond. We are a trusted manufacturer and supplier in China, committed to providing high-quality, efficient solutions.

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Key Advantages for Your Formulations

Enhanced Substrate Wetting

Our ethoxylated acetylenic diol is specifically engineered to dramatically reduce dynamic surface tension, ensuring superior wetting even on difficult-to-wet surfaces. This leads to improved adhesion and a more uniform film appearance in your waterborne coatings and inks.

Defoaming and De-airentrainment Properties

Beyond its wetting capabilities, this surfactant also offers valuable defoaming and de-airentrainment benefits. This is crucial for applications such as concrete and oil field cements, where controlling air entrapment is vital for performance and integrity.

Versatile Application Range

This product is highly recommended for a broad spectrum of water-based applications, including industrial coatings, printing inks, water-based adhesives, and fountain solutions. Its compatibility ensures reliable performance across various formulations, making it a smart purchase for diverse manufacturing needs.

Broad Spectrum of Application Use

Waterborne Coatings

Improve flow and leveling, enhance substrate wetting for better adhesion and gloss in architectural, industrial, and automotive coatings.

Printing Inks

Achieve excellent printability and substrate wetting for vibrant and consistent ink laydown on various printing substrates.

Adhesives

Enhance wetting and bonding strength for water-based adhesive formulations, ensuring reliable performance.

Fountain Solutions

Optimize wetting properties in printing fountain solutions, contributing to consistent print quality and reduced defects.