Oligomeric Siloxane ​Silane Coupling Agent Crosile1090 Vinyl Silane Concentrate Containing Vinyl and Methoxy Groups

Sales Oligomeric Siloxane ​Silane Coupling Agent Crosile1090 Vinyl Silane Concentrate Containing Vinyl and Methoxy Groups


Crosile®1090 is a colourless, nearly odorless low-viscosity liquid.

Crosile®1090 is an excellent compatibiliser between inorganic fillers (e.g. kaolin, MDH, ATH) and organic polymers (e.g. EPDM, EVA, PE).

The high boiling point of Crosile®1090, together with its high flash point, gives it outstanding advantages with respect to safety and handling during processing. From an environmental viewpoint it should be noted that the amount of released hydrolysis methanol (VOC) is significantly reduced compared to monomeric vinyl silanes.


  • Properties : ECOPOWER Crosile®1090, colourless, nearly odorless low-viscosity liquid. Crosile®1090 is a vinyl silane concentrate (oligomeric siloxane) containing vinyl and methoxy groups.

Product Detail  

Oligomeric Siloxane Silane Coupling Agent Crosile1090 Vinyl Silane Concentrate Containing Vinyl and Methoxy Groups 


Chemical Properties

ECOPOWER Crosile®1090, A major field of application for mineral-filled compounds is the cable industry. EPDM and EVA can be processed into highly filled cable compounds through the adhesion promoting and hydrophobising effect of Crosile®1090.
The EPDM and EVA polymers with Crosile®1090 are for the halogen-free, non-toxic, environmentally-friendly flame retardant cable compounds (HFFR) based on ATH and MDH.
In addition, Crosile®1090 can be used in many other applications such as filler and pigment coating, dispersions etc. 


Synonyms

Dynasylan 6490


Specifications

Item

Target Values

(Spec,Limits) 

Appearance

colorless

Density (20 °C、g/cm3)

Approx 1.0

SiO2-content 

54.0%±2.0%

Viscosity Dynamic 25℃ mPas

2-4


Application


Typical property improvements obtained by using Crosile®1090 in filled polymers are:

-Improve filler dispersion

-Good processability significantly

-Reduced water-uptake  

-Excellent balance between tensile strength and elongation at break at a high level

-Improved chemical resistance

-Higher impact strength  

-Higher wear resistance

-Strongly reduced tendency to crack under pressure



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