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Contact SuppliersCAS NO.3179-76-8
3-Aminopropylmethyldiethoxysilane acts as an adhesion promoter between inorganic materials and organic polymers, as a surface modifier and for material changes to chemical substances.
Countertype of Dynasylan 1505, DowCorning Z-6015, DP-A210, KH-902
Chemical Structure
		
Introduction
gamma-Aminopropylmethyldiethoxysilane acts as an adhesion promoter between inorganic materials and organic polymers, as a surface modifier and for material changes to chemical substances.
Typical Physical Properties
| 
						 Chemical Name:  | 
					
						 gamma-Aminopropylmethyldiethoxysilane  | 
				
| 
						 CAS No.:  | 
					
						 3179-76-8  | 
				
| 
						 EINECS No.:  | 
					
						 221-660-8  | 
				
| 
						 Empirical Formula:  | 
					
						 C 8 H 21 NO 2 Si  | 
				
| 
						 Molecular Weight:  | 
					
						 191.3  | 
				
| 
						 Boiling Point:  | 
					
						 88°C [15mmHg]  | 
				
| 
						 Flash Point  | 
					
						 68°C  | 
				
| 
						 Color and Appearance:  | 
					
						 Colorless transparent liquid  | 
				
| 
						 Density [25°C]:  | 
					
						 0.916  | 
				
| 
						 Refractive Index [25°C]:  | 
					
						 1.4272 [20°C]  | 
				
| 
						 Min. Purity by GC  | 
					
						 98.0%  | 
				
Applications
		gamma-Aminopropylmethyldiethoxysilane is an important or even essential constituent in many applications. It is particularly important as an additive to cold-curing phenolic and furan foundry resins to improve the flexural strength of sand/resin elements with very long shelf life of the resins.
		
		Further examples are:
		Glass fiber/glass fabric composites: as size constituent or finish
		Glass and metal primers
		Abrasives: as additive to phenolic resin binders
		Sealants and adhesives: as primer or additive and for chemical modification
		Mineral-filled composites: for pretreatment of fillers and pigments or as additive
		Synthesis of functional silicones
		
		The most important effects which can be achieved using KH-902 are improvements in product properties, such as:
		Adhesion;
		Mechanical properties, for example flexural strength, tensile strength, impact strength and modulus of elasticity;
		Moisture and corrosion resistance;
		Electrical properties, for example dielectric constant, volume resistivity;
		
		And improvements in processing properties, such as:
		Better filler dispersion;
		Rheological behavior: reduction in viscosity, Newtonian behaviour;
		Higher degree of filling.