Guangzhou Eric Wei Chemical Co., Ltd.
Guangzhou Eric Wei Chemical Co., Ltd.

DOW XIAMETER MEM-0075 Emulsion

DOW XIAMETER MEM-0075 Emulsion is a silicone-based defoaming emulsion from Dow’s XIAMETER® portfolio. Designed for water-based systems, it delivers rapid foam suppression and excellent stability across pH and temperature ranges. Ideal for coatings, adhesives, and industrial cleaning applications where consistent performance and low residue are critical.
  • dow xiameter mem 0075 emulsion_b0e530a1
  • dow xiameter mem 0075 emulsion_b0e530a1

Features Of DOW XIAMETER MEM-0075 Emulsion

  1. Highly stable silicone emulsion with excellent shelf life under ambient storage conditions.

  2. Low surface tension enabling superior wetting and leveling on diverse substrates.

  3. Compatible with water-based systems including acrylics, vinyl acetate copolymers, and polyurethane dispersions.

  4. Non-ionic character ensures broad formulation compatibility and minimal impact on ionic stability.

  5. Delivers soft, silky feel and improved slip without compromising film integrity in final coatings.

Typical Applications Of DOW XIAMETER MEM-0075 Emulsion

  1. Architectural and industrial waterborne paints for enhanced flow, leveling, and substrate wetting.

  2. Textile finishing agents to impart soft hand, smoothness, and anti-static properties.

  3. Printing ink additives for improved pigment dispersion and substrate adhesion on paper and film.

  4. Adhesives and sealants to reduce surface defects and improve interfacial compatibility.

  5. Personal care formulations requiring mild, non-irritating silicone delivery in rinse-off and leave-on products.

Specifications Of DOW XIAMETER MEM-0075 Emulsion

Chemical TypeDimethyl silicone polymer emulsion
Product FormOpaque white liquid emulsion
AppearanceHomogeneous, milky-white liquid
Active Content (wt%)30 ± 1%
pH (25°C)6.0 – 7.5
Viscosity (mPa·s, Brookfield, LVT, Spindle #3, 20 rpm)50 – 150
Particle Size (D50, nm)150 – 300
Freeze-Thaw StabilityStable after three cycles (−10°C/24 h → 25°C/24 h)


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