China Standard Coupling Chemical Titanate Coupling Agent, Find details about China Titanate Coupling Agent, Adhesion Promoter from Standard Coupling Chemical Titanate Coupling Agent
Product Description
Abstract
Titanate Coupling Agent TCA-k44 (CAS No. 65380-84-9) is a me thane, oxygen alkanolamine coupling agent, it can provide amino thermoset reactivity. Its function is similar to Ken-React KR 44 from Kenrich Petrochemicals, Inc.
TCA-k44 is a kind of titanium compound of high commercial value. It is not only difficult to be hydrolyzed, but also completely soluble in water. Solutions are clear and stable.
Identification
Name: Bis[2-[(2-aminoethyl)amino]ethanolato][2-[(2-aminoethyl)amino]ethanolato-O](propan-2-olato)titanate
Synonyms: Isopropyl, tri(N-ethylenediamino)ethyl titanate (Titanium IV, tis(2-((2-aminoethyl)amino) thanolato-0), -propanolato
Molecular Formula: C15H40O4TiN6
CAS Registry Number: 65380-84-9
Equivalents
Ken-React KR 44 from Kenrich Petrochemicals, Inc.
Properties
Appearance: Brown, transparent viscous liquid
Purity: >95%
Specific Gravity: 1.105
Viscosity: 5000
Refractive Index: 1.521
Solubility: Soluble in is opropyl alcohol. Soluble in xylene and to luene in concentrations less than 5%. Insoluble in Mineral Oil. Reacts with DOP. Soluble in H2O, but gels within 72-hours at concentrations greater than 10%.
Applications and Performance
Coupling Agents are molecular bridges at the interface between two substrates, usually but not limited to an inorganic filler/fiber and an organic polymer matrix. Titanium-derived coupling agents react with free protons at the inorganic interface resulting in the formation of organic-titanium monomolecular layers on the inorganic surface. Additionally, the coupling agent may have up to Six Functions in the matrix-which include polymer catalysis and other heteroatom effects-independent of inorganic content.
Typically, titanate-treated inorganics are hydrophobic, organophilic, and organofunctional. Fillers may be pretreated or treated in situ absent water of condensation and drying techniques as needed with silanes. When used in polymers, titanates can increase adhesion; Improve impact strength and mechanical properties; Reduce embrittlement; Allow higher filler loadings; Optimize particulate dispersion; Increase flow of filled and unfilled polymers at lower process temperatures; Prevent phase separation; And may have other effects.
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