Abstract:
The invention relates to an insulated glass unit having an increased service life. Wherein an outer glass pane and inner glass pane are sealed to a spacer to provide an improved gas impermeable space.
Abstract:
A stabilized thermoplastic resin composition is disclosed which comprises structural units derived at least one substituted or unsubstituted polycarbonate, at least one substituted or unsubstituted polyester and a combination of at least two quenchers, wherein said quencher is selected from a group consisting of phosphorus compound, carboxylic acid, derivates of carboxylic acids, epoxy functional polymers and boron compound. Also disclosed is a stabilized thermoplastic resin composition comprising: structural units derived at least one substituted or unsubstituted polycarbonate, at least one substituted or unsubstituted polyester, an epoxy functional polymers and a combination of at least one quenchers, wherein said quencher is selected from a group consisting of phosphorus compounds, carboxylic acid compounds, polyols, and boron compounds. In addition the composition disclosed possess good optical properties, thermal properties and stability.
Abstract:
The present invention provides for a room temperature cured silicone thermoplastic resin sealant composition with reduced gas permeability useful in the manufacture of glazing such as windows and doors.
Abstract:
Novel esteramide compositions have been discovered. Copolymer composition comprising structural units derived from a substituted or unsubstituted diacid, a substituted or unsubstituted diol and said ester amide have also been disclosed. Also disclosed is a thermoplastic resin composition comprising structural units derived from substituted or unsubstituted polycarbonate and the copolyesteramides of the present invention. In addition methods for the preparation of the esteramides, copolymers and thermoplastic composition is discussed and articles derived from said thermoplastic composition is disclosed.