SiliXan M – unsaturated polymers based on nano-scaled silicon dioxide

pille-m

Formulation of high-quality UV coatings as well as thermal or radical cross-linking systems

SiliXan® M binders are solvent-free inorganic-organic high-solid materials having a solids content of 80% to 90%. They consist of nano-scaled silicon oxides, which are modified at the molecular level with methacrylates or other unsaturated organic groups. This group of binders is suited for the formulation of preferably UV-curing, but also heat-induced crosslinking scratch and abrasion resistant coatings with high chemical resistance. SiliXan® M products can also be used as an additive or as a co-binder in an UV curing acrylate system. Furthermore, a combination with a cyanoacrylate or a peroxide adhesive is possible. The solvent-free SiliXan® M-binders are manufactured using a patented precipitation method. The products contain a proportion of zirconium, titanium or aluminum oxide tailored to the particular needs. The possible application fields for the product class SiliXan M are as follows:

Mode of Action of SiliXan M

EN Reaktion SX M Large
  • Transparent abrasion-resistant UV coatings (hard coats) for automotive, electronics and optical applications
  • Application as a UV-protective coating to base materials or anti-reflective coating having a high refractive index in display applications
  • High alkali resistant UV coatings for plastics and mineral substrates
  • Production of high-quality industrial adhesives and sealants

Product overview SiliXan M

SiliXan M 685

TDB MSDS
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Viscosity [mPas] 3000

Properties / application

Ungesättigtes siliciumfunktionelles Bindemittel zur Formulierung harter, kratzfester Beschichtungen mit guter Haftung auf PC, PMMA und PVC. Cobinder zur Verbesserung der Haftung, Härte und Abriebfestigkeit in UV- härtenden Formulierungen.

Unsaturated silicium functional binder for the formulation of hard, scratch resistant coatings with good adhesion to PC, PMMA and PVC. Cobinder to improve adhesion, hardness and abrasion resistance in UV-curing formulations.