Aqueous epoxy resin dispersions
The invention relates to an aqueously dispersible epoxy resin E, comprising building blocks derived from an aliphatic polyether polyol A, an epoxy resin B having at least two epoxide groups per molecule, an epoxy resin B′ having at least two epoxide groups per molecule, which may be identical to B, or different from B, an epoxy-functional fatty acid ester D, and an aromatic polyol C, a process for the preparation thereof, and a method of use thereof.
1. A process of making an aqueously dispersible epoxy resin E comprising building blocks derived from an aliphatic polyether polyol A, an epoxy resin B having at least two epoxide groups per molecule, an epoxy resin B′ having at least two epoxide groups per molecule, which may be identical to B, or different from B, an epoxy-functional fatty acid ester D, and an aromatic polyol C, which process comprises
reacting in a first step an aliphatic polyether polyol A and an epoxy resin B having at least two epoxide groups per molecule, wherein an adduct AB is formed,
the adduct AB, a further epoxy resin B′ and an aromatic polyol C are first reacted in a second step in the presence of a catalyst until at least 90% of the epoxy groups present in the reaction mixture have been consumed, and then adding the epoxy functional fatty acid ester D, and optionally further catalyst, and carrying the reaction to completion.
2. The process of claim 1 wherein the amount of D is chosen such that a portion of at least 5% thereof remains unreacted.
3. The process of claim 1 wherein in the first step, the quantities of the aliphatic polyether polyol A and an epoxy resin B having at least two epoxide groups per molecule are chosen such that the ratio of the number of OH groups in the aliphatic polyol A to the number of epoxy groups of the epoxy compound B is from 1:0.85 to 1:3.5, and the specific amount of substance of epoxy groups of the adduct AB being between 0.002 mol/kg and 5 mol/kg.
4. An aqueously dispersible epoxy resin E, comprising building blocks derived from an aliphatic polyether polyol A, an epoxy resin B having at least two epoxide groups per molecule, an epoxy resin B′ having at least two epoxide groups per molecule, which may be identical to B, or different from B, an epoxy-functional fatty acid ester D, and an aromatic polyol C, wherein said resin E is obtained by a process comprising
reacting in a first step an aliphatic polyether polyol A and an epoxy resin B having at least two epoxide groups per molecule, wherein an adduct AB is formed,
the adduct AB, a further epoxy resin B′ and an aromatic polyol C are first reacted in a second step in the presence of a catalyst until at least 90% of the epoxy groups present in the reaction mixture have been consumed, and then adding the epoxy functional fatty acid ester D, and optionally further catalyst, and carrying the reaction to completion.