Claims
- 1) An improved toner, comprising:
(a) at least one colorant; (b) at least one toner resin mixed with the colorant and formed into combined colorant and resin particles having an average size less than 15 microns; and (c) surface additive particles wherein the surface additives are adhered to the colorant and toner resin by an impaction process in a quantity greater than three (3) percent of the combined weight of resin and colorant in the toner.
- 2) The improved toner of claim 1, wherein the quantity of surface additives is greater than four (4) percent of the combined weight of resin and colorant in the toner.
- 3) The improved toner of claim 1, wherein the quantity of surface additives is greater than five (5) percent of the combined weight of resin and colorant in the toner.
- 4) The improved toner of claim 1, wherein the quantity of surface additives is greater than six (6) percent of the combined weight of resin and colorant in the toner.
- 5) The improved toner of claim 1, wherein the average size of colorant and resin particles is between 4 and 10 microns.
- 6) The improved toner of claim 1, wherein the AAFD percent value after 6kJ of sonification energy is greater than 25 percent.
- 7) The improved toner of claim 1, wherein the AAFD percent value after 6 kJ of sonification energy is greater than 40 percent.
- 8) The improved toner of claim 7, wherein the MFD values were obtained using four (4) ⅝ inch horns emitting at a frequency of 19.95 kHz from a distance of approximately 2 mm.
- 9) The improved toner of claim 1, wherein the toner is blended for less than 10 minutes.
- 10) The improved toner of claim 7, the AAFD percent value is measured on toners blended for less than 10 minutes.
- 11) The improved toner of claim 1, wherein the AAFD percent value after 3 kJ of sonification energy is greater than 35 percent.
- 12) The improved toner of claim 11, wherein the AAFD percent value after 3 kJ of sonification energy is greater than 50 percent.
- 13) The improved toner of claim 1, wherein the percent cohesion between particles of colorant and resin is less than 25 percent.
- 14) The improved toner of claim 1, wherein the percent cohesion between particles of colorant and resin is less than 20 percent.
- 15) An improved toner made by an improved process, comprising:
(a) forming toner particles averaging 4 to 10 microns in size and comprised of at least one toner resin and at least one colorant; and (b) blending sufficient surface additive particles and the toner particles in a high intensity blender for less than 10 minutes such that the weight of surface additives that become attached to toner particles is greater than three (3) percent of the weight of the classified particles
- 16) The improved toner made by the improved process of claim 15, wherein the step of forming further comprises:
(a) mixing a toner resin and a colorant; (b) extruding the resin and colorant mixture; (c) attriting the resin and colorant mixture; and (d) classifying the attrited particles into particles averaging 4 to 10 microns in size.
- 17) The improved toner made by the improved process of claim 15, wherein the step of forming further comprises forming the toner particles using an emulsion/aggregation/coalescence process.
- 18) The improved toner of claim 15, wherein the weight of attached surface additives is greater than four (4) percent of the weight of the classified particles.
- 19) The improved toner of claim 15, wherein the weight of attached surface additives is greater than five (5) percent of the weight of the classified particles.
- 20) The improved toner of claim 15, wherein the weight of attached surface additives is greater than six (6) percent of the weight of the classified particles.
- 21) The improved toner of claim 15, wherein the blending is intense enough to yield MFD percent values after 6 kJ of energy greater than 25 percent.
- 22) The improved toner of claim 15, wherein the: blending is intense enough to yield MFD percent values after 3 kJ of energy is greater than 35 percent.
- 23) An improved process for making toners, comprising:
(a) forming toner particles averaging 4 to 10 microns in size and comprised of at least one toner resin and at least one colorant; and (b) blending sufficient surface additive particles and the toner particles in a high intensity blender for less than 10 minutes such that the weight of surface additives that become attached to toner particles is greater than three (3) percent of the weight of the classified particles
- 24) The improved process of claim 23, wherein the step of forming further comprises:
(a) mixing a toner resin and a colorant; (b) extruding the resin and colorant mixture; (c) attriting the resin and colorant mixture; and (d) classifying the attrited particles into particles averaging 4 to 10 microns in size.
- 25) The improved process of claim 23, wherein the step of forming further comprises forming the toner particles using an emulsion/aggregation/coalescence process.
- 26) The improved process of claim 23, wherein the blending is intense enough to yield AAFD percent values after 6 kJ of sonification energy greater than 25 percent.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This is a divisional of application Ser. No. 09/943,958, filed Aug. 31, 2001.
Divisions (1)
|
Number |
Date |
Country |
Parent |
09943958 |
Aug 2001 |
US |
Child |
10321967 |
Dec 2002 |
US |