Process for the production of polyurethane foams
A process for the production of a polyurethane foam having a resilience of at least 50%, said process comprising reacting (i) a first polyether polyol comprising polyether chains containing no more than 20% ethylene oxide content, and having a primary hydroxyl content of no more than 25%; (ii) a second polyether polyol comprising polyether chains containing at least 50% ethylene oxide content; and (iii) one or more aromatic polyisocyanates, in the presence of one or more catalysts having gelling and/or blowing activities.
1. A process for the production of a polyurethane foam having a resilience of at least 50% measured by ball rebound test, said process comprising (1) reacting (i) a first polyether polyol comprising polyether chains containing at least 3 wt % and no more than 20 wt % oxyethylene content, and having a primary hydroxyl content of no more than 20% and a functionality of at most 3.5 and a hydroxyl value of at least 40 mg KOH/g; (ii) a second polyether polyol comprising polyether chains containing at least 50 wt % oxyethylene content and having a hydroxyl value of at most 48 mg KOH/g; and (iii) one or more aromatic polyisocyanates, in the presence of one or more catalysts having gelling and/or blowing activities, and (2) allowing a full rise of the foam, wherein the weight ratio of the first polyether polyol to the second polyether polyol is at least 5:1, and wherein the first polyether polyol is prepared by ring-opening polymerisation of alkylene oxides onto a hydroxyl containing starting material in the presence of a composite metal cyanide complex catalyst.
2. The process according to claim 1 , wherein the first polyether polyol comprises at least 80 wt % oxypropylene content.
3. The process according to claim 1 , wherein the second polyether polyol contains at least 65 wt % oxyethylene content.
4. The process according to claim 1 , wherein a primary hydroxyl content of the second polyether polyol is more than 20%.
5. The process according to claim 1 , wherein a remainder of an alkylene oxide content in the polyether chains of the second polyether polyol is derived from propylene oxide.