Fluid set comprising a pre-treatment liquid and an inkjet ink
A fluid set for textile printing includes an aqueous inkjet ink containing a pigment stabilized by anionic dispersing groups and an aqueous pre-treatment liquid. The aqueous pre-treatment liquid includes a capsule having a core including a thermally reactive crosslinker and a polymeric shell stabilized by cationic dispersing groups.
1. A fluid set for textile printing, the fluid set comprising:
an aqueous inkjet ink including a pigment stabilized by anionic dispersing groups; and
an aqueous pre-treatment liquid including a capsule including a core and a shell; wherein
the core includes a thermally reactive crosslinker and the shell includes cationic dispersing groups; and
the cationic dispersing groups are obtained by reacting a surfactant including at least one primary amine or secondary amine and a quaternary ammonium group with a compound selected from the group consisting of di- or poly-acid chlorides, di- or oligoisocyanates, di- or oligosulfochlorides, di- or oligo-chloroformates, and an isocyanate monomer included in the shell; and
wherein the surfactant is represented by Formula I:
wherein
R 1 is selected from the group consisting of a substituted or unsubstituted alkyl group, a substituted or unsubstituted alkenyl group, and a substituted or unsubstituted alkynyl group, and R 1 includes at least eight carbon atoms;
R 2 , R 3 , and R 4 are independently selected from the group consisting of a substituted or unsubstituted alkyl group, a substituted or unsubstituted alkenyl group, a substituted or unsubstituted alkynyl group, a substituted or unsubstituted aralkyl group, a substituted or unsubstituted alkaryl group, and a substituted or unsubstituted (hetero)aryl group;
Li represents a divalent linking group including no more than eight carbon atoms; and
X represents a counterion that compensates for a positive charge of the quaternary ammonium group.
2. The fluid set according to claim 1 , wherein the aqueous inkjet ink includes a resin selected from the group of an acrylic based resin, a urethane based resin, and a polyethylene wax.
3. The fluid set according to claim 2 , wherein the urethane based resin is a polyurethane resin obtained by reacting a polyester polyol, a polyether diol, a polyol or an amine including an anionic group, and a polyisocyanate; and
the polyester polyol is obtained by reacting an aromatic polycarboxylic acid and a polyol.
4. The fluid set according to claim 1 , wherein the aqueous inkjet ink includes a capsule including a core including one or more chemical reactants that form a reaction product upon application of heat and/or light, and a polymeric shell stabilized by anionic dispersing groups.
5. The fluid set according to claim 4 , wherein the one or more chemical reactants includes a thermally reactive crosslinker.
6. The fluid set according to claim 5 , wherein the thermally reactive crosslinker includes a blocked isocyanate.
7. The fluid set according to claim 6 , wherein the blocked isocyanate is derived from a di-, tri- or tetrafunctional isocyanate terminated oligomer selected from the group consisting of an isocyanate terminated oligo-ether, an isocyanate terminated oligo-ester, an isocyanate terminated oligo-carbonate, an isocyanate terminated butadiene oligomer, an isocyanate terminated hydrogenated butadiene, an isocyanate terminated isoprene oligomer, an isocyanate terminated silicone oligomer, and combinations thereof.
8. The fluid set according to claim 1 , wherein the aqueous inkjet ink includes a water-soluble organic solvent.
9. The fluid set according to claim 1 , wherein the aqueous pre-treatment liquid includes a white pigment.
10. A digital textile printing method comprising the steps of:
providing the fluid set as defined in claim 1 ;
applying the aqueous pre-treatment liquid to a textile fabric;
optionally applying heat to activate the thermally reactive crosslinker;
jetting the aqueous inkjet ink onto the textile fabric; and
applying heat to activate the thermally reactive crosslinker if the step of optionally applying heat to activate the thermally reactive crosslinker has not been performed.