Claims
- 1. A printing ink in paste form for the printing of documents by the method of engraved steel die printing, said ink comprising print forming ink solids which contain oleoresinous components, and at least one volatile organic solvent to be evaporated during or after printing, wherein said ink solids contain a film forming macromolecular hydrophilic surface active composition having a .[.number.]. .Iadd.weight .Iaddend.average molecular weight of at least 1,000 in partial replacement of said oleoresinous components, the weight ratio between said surface active composition and said oleoresinous components being in the range of (10-60):(10-80), and wherein the amount of said volatile organic solvents is less than about 15% by weight of the total weight of the printing ink, the ink containing up to about .[.40%.]. .Iadd.30% .Iaddend.by weight of water.
- 2. The printing ink of claim 1, wherein said content of volatile organic solvents is less than about 12% by weight.
- 3. The printing ink of claim 1, wherein said content of volatile organic solvents is less than about 5% by weight.
- 4. The printing ink of claim 1, wherein said film forming macromolecular hydrophilic surface active composition is selected from nonionic, anionic, cationic and zwitterionic substances and their mixtures.
- 5. The printing ink of claim 1, wherein said film forming macromolecular hydrophilic surface active composition is used in combination with low molecular surfactants of anionic, nonionic, cationic or zwitterionic nature.
- 6. The printing ink of claim 4, wherein said film forming macromolecular hydrophilic surface active composition is selected from anionic substances being the salts of carboxylic or sulfonic acid groups in said macromolecules with metals or amines.
- 7. The printing ink of claim 4, wherein said film forming macromolecular hydrophilic surface active composition is selected from cationic substances being the salts of amino groups in said macromolecules with organic or inorganic acids.
- 8. The printing ink of claim 1, wherein said macromolecular hydrophilic surface active composition is selected from anionic substances being the salts of carboxylic or sulfonic acid groups in said macromolecules with metals or amines.
- 9. The printing ink of claim 1, wherein said macromolecular hydrophilic surface active composition is selected from cationic substances being the salts of amino groups in said macromolecules with organic or inorganic acids.
- 10. The printing ink of claim 1, wherein said macromolecular hydrophilic surface active composition is selected from mixtures of anionic and cationic substances forming an intermolecular neutralization product.
- 11. The printing ink of claim 1, for the printing of paper sheets or webs, comprising up to about 20% by weight of volatile matter, 1% to about 8% by weight thereof being water with said organic solvent or solvents as the remainder not exceeding 15% by weight, all percentages referring to the total weight of the printing ink.
- 12. The printing ink of claim 1, for the printing of paper sheets, comprising up to about 30% by weight of volatile matter, about 8% to about 20% by weight thereof being water, with said organic solvent or solvents as the remainder not exceeding 15% by weight, all percentages referring to the total weight of the printing ink.
- 13. The printing ink of claim 1, for the continuous printing of paper webs, comprising up to about 35% by weight of volatile matter, about 8% to about 30% by weight thereof being water, with said organic solvent or solvents as the remainder not exceeding 15% by weight, all percentages referring to the total weight of the printing ink.
- 14. A printing substrate printed with an engraved steel die printing ink in paste form comprising print forming ink solids which contain oleoresinous components, and at least one volatile organic solvent to be evaporated during or after printing, wherein said ink solids contain a film forming macromolecular hydrophilic surface active composition having a .[.number.]. .Iadd.weight .Iaddend.average molecular weight of at least 1,000 in partial replacement of said oleoresinous components, and the weight ratio between said surface active composition and said oleoresinous components being in the range of (10-60):(10-80).
- 15. A method for the printing of documents by engraved steel die printing, wherein a printing ink is used as defined in claim 1, and wherein the printing operation is effected without interleaving of the printed document.
- 16. In a paste form security printing ink for engraved steel die printing comprising an oleo-resinous compound, extender, pigment and volatile organic solvent, the improvement which comprises the amount of said volatile organic solvent being less than 15 weight % of the ink, a part of said oleoresinous compound being replaced by a film-forming macromolecular hydrophilic surfactant having a .[.number.]. .Iadd.weight .Iaddend.average molecular weight of 1,000 to 150,000, said ink having a viscosity of 1 to 15 Psa. at 40.degree. C. and a shear of 1,000 sec.sup.-1, the weight ratio between said surfactant and said oleoresinous compound being in the range of (10-60):(10-80), and the ink containing up to about 30% by weight of water.
- 17. The paste form security printing ink of claim 16 in which the amount of volatile organic solvent is less than 12 weight %, said film-forming macromolecular hydrophilic surfactant has a .[.number.]. .Iadd.weight .Iaddend.average molecular weight of 3,000 to 20,000 and said ink has a viscosity of 3 to 8 Pa.s at 40.degree. C., and a shear of 1,000 sec..sup.-1.
Parent Case Info
This is a continuation-in-part of application Ser. No. 186,598 filed Apr. 28, 1988, and now abandoned.
US Referenced Citations (10)
Foreign Referenced Citations (1)
Number |
Date |
Country |
1469717 |
Apr 1977 |
GBX |
Non-Patent Literature Citations (3)
Entry |
Chemical Abstracts 106:86377y, 1986. |
Chemical Abstracts 106:86378w, 1986. |
The Printing Ink Manual, 4th ed. by R. H. Leach, Norstrand Reinhold (Intern.) Publishers, pp. 20-21, 34-39, 59-60. |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
186598 |
Apr 1988 |
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Reissues (1)
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Number |
Date |
Country |
Parent |
313092 |
Feb 1989 |
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