EP0146012A2

Faced foam insulation board and froth-foaming method for making same.

Abstract

A method for continuously producing an insulation board comprising a rigid plastic foam core having two major surfaces and a facing material on one or both of the major surfaces, the method including conveying a facing material along a production line, depositing a partially expanded froth foam of a plastic mixture, which contains at least one frothing agent, on the facing material, and further expanding and curing the froth foam in contact with the facing material to form the insulation board. The board is particularly useful as roof insulation.

EP0146012A2, drawing sheet 1
Sheet 1 of 17

Term

Term ended

Projected expiry passed 24 November 2004, 21.8 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

12 claims: 5 independent, 7 dependent

  1. 1
    A method for continuously producing an insulation board comprising a rigid plastic foam core having two major surfaces and a facing material on at least one of the major surfaces, the method characterized by comprising:(a) conveying a facing material along a production line, (b) depositing a partially expanded froth foam of a plastic mixture, which contains at least one frothing agent, on the facing material, and (c) further expanding and curing the froth foam in contact with the facing material to form the insulation board.
  2. 5
    The method of any one of claims 2 to 4, characterized in that the partially expanded froth foam is formed from at least two liquid components including a polyisocyanate-containing component and a polyol-containing component, the steps of forming the froth foam comprising:(a) providing the liquid components, a low boiling blowing agent being premixed with either the polyisocyanate-containing component or the polyol-containing component, the blowing agent preferably being trichloromonofluoromethane, (b) passing the liquid components through separate conduits which discharge into a mixing head, (c) charging one of the liquid components in its conduit with a volatile liquid frothing agent, the boiling point of the frothing agent being lower than that of the blowing agent, the frothing agent preferably being dichlorodifluoromethane, (d) mixing the liquid components after their discharge into the mixing head, (e) discharging the resulting mixture from the mixing head into a depositing means and (f) depositing the mixture from the depositing means onto the lower fibrous layer in the form of a partially expanded froth foam.
  3. 9
    The insulation board of claims 7 or 8, characterized in that the core is a polyisocyanurate foam comprising the reaction product of (a) an organic polyisocyanate mixture of the formula:wherein n is an integer from 0 to 8 inclusive, and the mixture has: (1) a functionality of 2.1 to 3.8, (2) an equivalent weight between 120 and 180, and (3) a viscosity at 25°C. between 100 and 4,000 centipoises, and (b) a minor amount of (1) an aromatic polyester polyol, the aromatic polyester polyol preferably being (i) an aromatic polyester polyol prepared by the transesterification, with a glycol of molecular weight from about 60 to 400, of a by-product fraction from the manufacture of dimethyl terephthalate, the major portion of said fraction comprising about 15 to 70 weight percent of dimethyl terephthalate, and about 85 to 30 weight percent of a mixture of monomethyl terephthalate, bi-ring esters and polymeric materials, the aromatic polyester polyol (i) preferably being transesterified with diethylene glycol and characterized by a viscosity in cps at 25° C. of about 700 to 2500, a free diethylene glycol content of from about 10 to 30 percent by weight of said mixture, a hydroxyl number within a range of from about 350 to 468, and an acid number of about .2 to 10, or (ii) an aromatic polyester polyol prepared by the transesterification, with a glycol of molecular weight from about 60 to about 400, of a residue remaining after dimethyl terephthalate and methyl p-toluate have been removed from a dimethyl terephthalate esterified oxidate reaction product, the major portion of said residue comprising a mixture of methyl and benzyl esters of benzene and biphenyl di- and tricarboxylic acids, the aromatic polyester polyol (ii) preferably being transesterified with diethylene glycol and characterized by a viscosity in cps at 25° C of about 1,600 to about 2,800, a free diethylene glycol content of from about 20 to about 30 percent by weight of said mixture, a hydroxyl number within a range of from about 400 to about 490, and an acid number of about .2 to about 8, (2) mixtures of the aromatic polyester polyols, or (3) mixtures of the aromatic polyester polyols with an alkylene oxide adduct of an aromatic amine of the formula wherein Z is a divalent aromatic radical, x, x', y, and y' each independently have an average value from about 1 to about 5, and each R is independently selected from the group consisting of hydrogen, alkyl or aryl, provided that the adduct is capped with ethylene oxide units, the alkylene oxide adduct of an aromatic amine preferably being an ethylene oxide adduct of toluene diamine isomers of the formula wherein the average number of oxyethylene units per polyoxyethylene chain is from 2 to 3.
  4. 10
    The insulation board of any one of claims 7 to 9, characterized in that the core has on each of the major surfaces (a) a mat of chopped, short glass fibers held together by a binder or (b) a mat of long, generally straight glass fibers held together by a binder, the long glass fibers of the mat being arranged in layers and the direction of the glass fibers in each layer being at an angle to the direction of the glass fibers in each next adjacent layer.
  5. 11
    The insulation board of any one of claims 7 to 10, characterized in that the cells of the core contain a mixture of a more volatile frothing agent and a less volatile blowing agent.