SOLVENT CEMENT FOR BONDING THERMOPLASTIC RESIN ARTICLES
The present invention relates to a solvent cement for bonding articles made of a thermoplastic resin, a method of bonding articles made of a thermoplastic resin to one another and the use of a solvent cement for bonding articles made of a thermoplastic resin.
1 . A solvent cement for bonding articles made of a thermoplastic resin wherein the solvent cement comprises
a) a dissolved thermoplastic resin,
b) a solvent for the thermoplastic resin indicated under item a), and
c) an at least partially imidized acrylic polymer,
wherein the solvent cement does not comprise tetrahydrofuran and wherein the solvent cement does not comprise an aliphatic compound having a hydrocarbon ring with at least two ether groups in the ring structure.
2 . The solvent cement according to claim 1 , wherein the article to be bonded comprises PVC or CPVC.
3 . The solvent cement according to claim 1 , wherein the dissolved thermoplastic resin comprises PVC or CPVC.
4 . The solvent cement according to claim 1 , wherein the dissolved thermoplastic resin has a K value of at most 57.
5 . The solvent cement according to claim 1 , wherein the dissolved thermoplastic resin has a chlorine content of at least 62 wt. %
6 . The solvent cement according to claim 1 , wherein the solvent comprises methyl ethyl ketone (MEK) or methyl isoamyl ketone (MIAK), or a mixture of both.
7 . The solvent cement according to claim 1 , wherein the at least partially imidized acrylic polymer is an at least partially imidized poly(methyl methacrylate) (PMMI).
8 . The solvent cement according to claim 1 , wherein the solvent cement further comprises a toughening resin, comprising acrylonitrile butadiene styrene (ABS) or methyl methacrylate butadiene styrene (MBS).
9 . The solvent cement according to claim 8 , wherein the toughening resin is of a core-shell type comprising a crosslinked poly(butyl acrylate) core with a grafted poly(methyl methacrylate) shell.
10 . The solvent cement according to claim 8 , wherein the solvent cement further comprises a thickener and/or a viscosity enhancer and/or a stabilizer.
11 . The solvent cement according to claim 1 , wherein the solvent cement does not comprise N-Methyl-2-Pyrrolidone (NMP) and/or wherein the solvent cement does not comprise cyclohexanone and/or wherein the solvent cement does not comprise dimethyl sulfoxide (DMSO) and/or wherein the solvent cement does not comprise dimethyl formamide (DMF).
12 . The solvent cement according to claim 1 , wherein the at least partially imidized acrylic polymer comprises less than 75 wt. % of the total amount of dissolved thermoplastic resin of item a) and c) together.
13 . The solvent cement according to claim 1 , wherein the solvent cement meets the requirements of the European standard EN 14814.
14 . A method of bonding articles made of a thermoplastic resin to one another wherein the method comprises the steps of:
i) applying a solvent cement to the surfaces of the articles to be bonded, wherein the solvent cement comprises
a) a dissolved thermoplastic resin,
b) a solvent for the thermoplastic resin indicated under item a), and
c) an at least partially imidized acrylic polymer (PMMI), and wherein the solvent cement does not comprise tetrahydrofuran and wherein the solvent cement does not comprise an aliphatic compound having a hydrocarbon ring with at least two ether groups in the ring structure,
ii) bringing the surfaces into contact with one another, and
iii) allowing the solvent cement to form a bond between the articles to be bonded.
15 . Use of a solvent cement for bonding articles made of a thermoplastic resin to one another wherein the solvent cement comprises
a) a dissolved thermoplastic resin,
b) a solvent for the thermoplastic resin indicated under item a), and
c) an at least partially imidized acrylic polymer (PMMI),
and wherein the solvent cement does not comprise tetrahydrofuran and wherein the solvent cement does not comprise an aliphatic compound having a hydrocarbon ring with at least two ether groups in the ring structure.