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ACCESS® SFR MOH 50,000

1 of 111 products in this brand
ACCESS® SFR MOH 50,000 is a high-performance silicone-based defoamer offered by Access Rudolf. This product is specifically designed to reduce and eliminate foam formation in a variety of industrial applications. With its excellent foam control properties, ACCESS® SFR MOH 50,000 can help improve the efficiency and quality of your industrial processes.

Functions: Anti-Structuring Agent

Chemical Family: Silanols, Silicones

Compatible Polymers & Resins: Silicones

Synonyms: Di-Me hydroxy-terminated siloxanes, Hydroxy-terminated di-Me polysiloxanes, Hydroxy-terminated di-Me siloxanes, Silanol group-terminated polydimethylsiloxanes, Silanol-terminated di-Me polysiloxanes, Silanol-terminated di-Me siloxanes, Silanol-terminated di-Me siloxanes and silicones, Silanol-terminated dimethylpolysiloxanes, Silanol-terminated polydimethylsiloxanes

Technical Data Sheet

Knowde Enhanced TDS

Identification & Functionality

Chemical Family
Plastics & Elastomers Functions

Applications & Uses

Compatible Polymers & Resins

Properties

Physical Form
Appearance
Clear to slightly hazy colorless liquid (at 25°C)
Typical Physical Properties
ValueUnitsTest Method / Conditions
Specific Gravity (at 25°C)0.98
Refractive Index (at 25°C)1.4058

Packaging & Availability

Country Availability
Packaging Type
Regional Availability
  • Canada
  • USA
Standard Packing

Available in in 440 pound net weight steel lined drums.

Storage & Handling

Storage and Handling Conditions
  • Stored in unopened and under proper conditions, is expected to be a minimum of twelve months. It is recommended to ground the container when pouring or weighing a quantity into another container or vessel to eliminate the chance of a static diskharge.
  • ACCESS® SFR MOH 1,000 must not be in contact or mixed with strong bases or alkali such as sodium hydroxide and potassium hydroxide to preventthematerialfromgelling or polymerizing. Mixing vessel and processing equipment must be clean and free of any strong basic contaminants.