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1 Kilogram |
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Silane, trimethoxyvinyl- CAS:2768-02-7 Union Carbide A-171
Vinyltrimethoxysilane CAS:2768-02-7 98%min
The EquivalentProducts to other Manufacturers
GE |
Dowcorning |
ShinEtsu |
Degussa |
Chisso |
A-171 |
Z-6300 |
KBM-1003 |
VTMO |
S21O |
TypicalPhysical Properties
Chemical Name |
Vinyltrimethoxysilane |
CAS No. |
2768-02-7 |
EINECS No. |
220-449-8 |
Formula |
C5H12O3Si |
Appearance |
Colorless transparent liquid |
Density(ρ20, g/cm3) |
0.9718±0.0050 |
Refractive Index(n25D) |
1.3925±0.0050 |
Purity |
98% |
Applications
PolymerModification
Vinyltrimethoxysilaneis used to modify polyethylene and other polymers by grafting its vinyl groupto the polymer backbone using a radical initiator, such as peroxide. Thisprovides a polymer with pendant trimethoxysilyl groups that may be used asmoisture-activated crosslinking sites via hydrolysis of the alkoxy groupsfollowed by condensation of the resulting silanols.
Crosslinking ofSilane-Grafted Polymers
The reaction ofSilane-grafted polyethylene to form a crosslinked or vulcanized polyethyleneuses water to form the crosslinks. This technology is widely used around theworld for commercial applications in wire and cable insulation, tubing, andother similar uses.
The basicreaction sequence is as follows: polyethylene is reacted (grafted) withvinyltrimethoxysilane, using a peroxide initiator, in an extruder. The graftedpolyethylene is then formed into a finished product, such as cable jacketing,wire insulation, or pipe. The forming step is usually done by a secondextrusion, during which a catalyst for the moisture-cure step is added.Finally, the formed article is exposed to moisture or hot water to causehydrolysis of the Silane and condensation to form crosslinks via Si-O-Si bondformation.
Benefits ofCrosslinking
Higher maximumuse temperature
Reduceddeformation under load (creep)
Improvedchemical resistance
Superior environmentalstress crack resistance
Increasedabrasion resistance
Improved impactstrength
Memorycharacteristics (shrink film, tubing)
Improved impactstrength
Advantages ofSilane Crosslinking over Radiation or Peroxide Crosslinking
Low capitalinvestment
Low operating(energy) costs
Higherproductivity
Processingversatility
Thick, thin, orvariable thicknesses possible
Complex shapspossible
Wilderprocessing latitude (control of premature crosslinking)
Useful withfilled composites
Applicable toall polyethylene densities and copolymers.
Packing
210LIron Drum: 200kg/drum
1000LIBC Container: 950kg/container
Our company is rich in the commercial manufacturing experience like VINYLTRIMETHOXYSILANE TRIMETHOXYVINYLSILANE etc from the research, R&D, pilot and production, establishing the close partnership with leading pharmaceutical manufacturers at home and abroad and being noticeably competitive in trimethoxyvinyl-silan VTMO timing, quality and pricing. Our company has set up four a171 kbm1003 production bases in Heze and Liaocheng in Shandong, Yibin in Sichuan and Yueyang in Hunan. All kinds of production facilities are offered and conform to the SOP and GMP management standards for the domestic and overseas customers.
Our company provides custom synthesis and production of other pyrimidine and azine products,The company's production base is equipped with enamel reactors from 50L to 5000L, stainless steel ultra-low temperature reactors and conventional separation and drying equipment,Our company provides custom synthesis and production of piperidine and piperazine products,Our team has 20 years of R&D, production and management experience and concepts, and domestic and foreign market experience,Our company has a 400 square meter R&D center. The company's production base is mainly located in Liaocheng City, Shandong Province, Yuncheng City, Shanxi Province
If you are looking for Vinyltrimethoxysilane Dynasylan VTMO manufacturer,ETHENYLTRIMETHOXYSILAN factory or DOW CORNING(R) PRODUCT Q9-6300 supplier, and get a171(silanederivative) price information, please contact us to get ethenyltrimethoxy-Silane COA (Certificate of Analysis,MSDS(Material safety data)
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