Vinyltrimethoxysila...

Vinyltrimethoxysilane used in adhesives

Vinyltrimethoxysilane used in adhesives

Min.Order / FOB Price:Get Latest Price

1 Metric Ton

Negotiable

  • Min.Order :1 Metric Ton
  • Purity: ≥99.0%
  • Payment Terms : L/C,T/T

Keywords

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Quick Details

  • Appearance:Colorless Transparent Liquid
  • Application:Polymer modification Cross-linking of silane-grafted polymers
  • PackAge:200kg/drum or 950kg/IBC drum
  • ProductionCapacity:|Metric Ton|Day
  • Storage:Store in a cool, dry place. Keep container closed when not in use
  • Transportation:depends on the goods

Superiority:

Professional:
60 years devoted to chemical industry.
 
Market segments:
Covering more than 12 industries
 
Supply chain management:
Customer tailored logistics portfolio
 
Global vision:
More than 20 years of cooperation with international partners
 
Application development:
Cross industry New application

Details:

Features of Vinyltrimethoxysilane

  • Product Name: Vinyltrimethoxysilane
  • Chemical Formula: C5H12O3Si
  • CAS No.: 2768-02-7
  • Dangerous Grade: III Flammable Liquid

Technical Data of Vinyltrimethoxysilane

ITEMS

SPECIFICATION

Appearance

Colorless transparent liquid

Reactive index(n25D)

1.3930±0.0050

Assay

99%

Package and Storage:

  • 200kg/drum or 950kg/IBC drum
  • Store in a cool, dry place. Keep container closed when not in use

Application /Application Industries:

Polymer modification
CG-V171 is used to modify polyethylene and other polymers by grafting its vinyl group to the polymer backbone using a radical initiator, such as peroxide. This provides a polymer with pendant trimethoxysilyl groups that may be used as moisture-activated crosslinking sites via hydrolysis of the alkoxy groups followed by condensation of the resulting silanols. 

Cross-linking of silane-grafted polymers

The reaction of Silane-grafted polyethylene to form a crosslinked or vulcanized polyethylene uses water to form the crosslinks. This technology is widely used around the world for commercial applications in wire and cable insulation, tubing, and other similar uses. The basic reaction sequence is as follows: polyethylene is reacted (grafted) with vinyltrimethoxysilane, using a peroxide initiator, in an extruder. The grafted polyethylene is then formed into a finished product, such as cable jacketing, wire insulation, or pipe. The forming step is usually done by a second extrusion, during which a catalyst for the moisture-cure step is added. Finally, the formed article is exposed to moisture or hot water to cause hydrolysis of the Silane and condensation to form crosslinks via Si-O-Si bond formation.

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