IP Library Granted Patent US 8,455,166
Granted Patent B2
US 8,455,166 · App. 12/219,555 · Granted Jun 4, 2013

UV curable toner with improved scratch resistance

Inventors: Werner Op De Beeck (Putte, BE); Michel Vervoort (Gierle, BE); Lode Deprez (Wachtebeke, BE)
Assignee: Xeikon Manufacturing N.V.
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Quick Facts
Patent No.
US 8,455,166
App. No.
12/219,555
Granted
Jun 4, 2013
Kind
B2
Abstract

A radiation curable toner is described having at least a radiation curable binder (e.g. a UV curable polymer), a photoinitiator, and a wax; wherein the wax is present in a concentration ranging from 0.3 to 3% by weight. The ratio of scratch resistance before curing is preferably at least 2. The toner may be used in a developer, e.g. a two-component developer, for printing or copying.

Claims (45)

1. A toner comprising a UV curable polymer, a photoinitiator and a wax, wherein the amount of wax is at least 0.3 and below 3% by weight of said toner,

wherein the toner is configured so that when toner particles of the toner are image-wise deposited and fused on a substrate, the ratio of scratch resistance after curing to scratch resistance before curing is at least 2, and

wherein said toner is melt-extruded.

2. The toner according to claim 1 , wherein said wax has a melting point below 140° C.

3. The toner according to claim 1 , wherein said wax has a main peak molecular weight, as measured by GPC, ranging from 500 to 20,000 and a ratio weight average molecular weight to number average molecular weight ranging from 1.0 to 20.

4. The toner according to claim 1 , wherein the toner particles are non-encapsulated.

5. The toner according to claim 1 , wherein said UV curable polymer is selected from the group consisting of (meth)acrylated polyester resin, (meth)acrylated epoxy/polyester resin and blends of (a) (meth)acrylated epoxy/polyester and (b) (meth)acrylated polyurethane resin.

6. The toner according to claim 1 , wherein said UV curable polymer comprises a polyester-based polymer.

7. The toner according to claim 1 , wherein the particles of said toner have a volume average diameter between 3 and 20 μm.

8. The toner according to claim 1 , wherein the particles of said toner have a viscosity ranging from 50 to 5,000 Pa·s at 120° C.

9. The toner according to claim 1 , wherein said UV curable polymer have a milli-equivalent amount of double bounds per gram of said UV curable polymer>0.7 meq/gr.

10. The toner according to claim 1 , wherein the glass transition temperature of said polymer is above 45° C. and the glass transition temperature of the toner is higher than 40° C.

11. The toner according to claim 1 , wherein the amount of photoinitiator is between 0.5 and 6% by weight of said toner.

12. The toner according to claim 1 , where the shape factor of the toner is higher than 0.94.

13. A dry electrostatographic developer composition comprising carrier particles and a toner comprising a UV curable polymer, a photoinitiator and a wax,

wherein the amount of wax is at least 0.3 and below 3% by weight of said toner, and

wherein the toner is configured so that when toner particles of the toner are image-wise deposited and fused on a substrate, the ratio of scratch resistance after curing to scratch resistance before curing is at least 2, and

wherein said toner is melt-extruded.

14. The dry electrostatographic developer composition according to claim 13 , wherein said carrier particles have a volume average particle size comprised between 30 and 65 μm, said carrier particles comprise a core particle coated with a resin in an amount of between 0.4 and 2.5% by weight, and the absolute charge expressed as fC/10 μm is between 3 and 13 fC/10 μm.

15. A method of fusing and curing a dry UV curable toner comprising a UV curable polymer, a photoinitiator and a wax, wherein:

the amount of wax is at least 0.3 and below 3% by weight of said toner, and

the ratio of scratch resistance after curing to scratch resistance before curing is at least 2, said method comprising the steps of:

image-wise depositing the toner particles on a substrate,

fusing said toner particles on the substrate,

curing said toner particles by means of UV-radiation.

16. The method according to claim 15 wherein the fusing step and the curing step are done in-line.

17. A substrate marked with fused toner particles comprising a UV curable polymer, a photoinitiator and a wax, wherein the amount of wax is at least 0.3 and below 3% by weight of said toner, and

wherein the toner is configured so that when toner particles of the toner are image-wise deposited and fused on a substrate, the ratio of scratch resistance after curing to scratch resistance before curing is at least 2, and

wherein said toner is melt-extruded.

18. The toner according to claim 1 , wherein said toner particles with carrier particles coated with a resin in an amount of between 0.4 and 2.5% by weight and having a volume average particle size comprised between 30 and 65 μm have an absolute charge expressed as fC/10 μm between 3 and 13 fC/10 μm.

19. A toner comprising a UV curable polymer, a photoinitiator and a wax, wherein the amount of wax is at least 0.3 and below 3% by weight of said toner,

wherein the toner is configured so that when toner particles of the toner are image-wise deposited and fused on a substrate, the ratio of scratch resistance after curing to scratch resistance before curing is at least 2, and

wherein the toner particles are non-encapsulated.

20. The toner according to claim 19 , wherein said wax has a melting point below 140° C.

21. The toner according to claim 19 , wherein said wax has a main peak molecular weight, as measured by GPC, ranging from 500 to 20,000 and a ratio weight average molecular weight to number average molecular weight ranging from 1.0 to 20.

22. The toner according to claim 19 , wherein said UV curable polymer is selected from the group consisting of (meth)acrylated polyester resin, (meth)acrylated epoxy/polyester resin and blends of (a) (meth)acrylated epoxy/polyester and (b) (meth)acrylated polyurethane resin.

23. The toner according to claim 19 , wherein said UV curable polymer comprises a polyester-based polymer.

24. The toner according to claim 19 , wherein said toner is melt-extruded.

25. The toner according to claim 19 , wherein the particles of said toner have a volume average diameter between 3 and 20 μm.

26. The toner according to claim 19 , wherein the particles of said toner have a viscosity ranging from 50 to 5,000 Pa·s at 120° C.

27. The toner according to claim 19 , wherein said UV curable polymer have a milli-equivalent amount of double bounds per gram of said UV curable polymer>0.7 meq/gr.

28. The toner according to claim 19 , wherein the glass transition temperature of said polymer is above 45° C. and the glass transition temperature of the toner is higher than 40° C.

29. The toner according to claim 19 , wherein the amount of photoinitiator is between 0.5 and 6% by weight of said toner.

30. The toner according to claim 19 , where the shape factor of the toner is higher than 0.94.

31. The toner according to claim 19 , wherein the wax concentration is between 0.3 and 2.0% by weight of the toner.

Assignments (2)
CHANGE OF NAME Recorded May 1, 2013
From: PUNCH GRAPHIX INTERNATIONAL N.V.
To: XEIKON MANUFACTURING N.V.
Reel/Frame 030325/0466 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 1, 2008
From: OP DE BEECK, WERNER; VERVOORT, MICHEL; DEPREZ, LODE
To: PUNCH GRAPHIX INTERNATIONAL N.V.
Reel/Frame 021614/0996 →
Priority Claims (1)
EP 07014478 · Jul 24, 2007 · regional
Continuity (1)
Related Publication 20090029278A1 · Jan 29, 2009