Claims
- 1. An apparatus comprised of a charging component, a development component, a transport component, a photoconductive component, and a fusing component, and wherein the development component contains a toner comprising at least one binder in an optional amount of from about 85 to about 99 percent by weight, at least one colorant in an optional amount of from about 0.5 to about 15 percent by weight, and calcium stearate in an optional amount of from about 0.05 to about 2 percent by weight and wherein following triboelectric contact with carrier particles, the toner has a charge Q measured in femtocoulombs per particle diameter D measured in microns (Q/D) of from about −0.1 to about −1 fC/μm with a variation during development of from about 0 to about 0.25 fC/μm and wherein the distribution is substantially unimodal and possesses a peak width of from about 0.1 fC/μm to about 0.5 fC/μm and the toner possesses a charge to mass M, as measured in grams, ratio (Q/M) of from about −25 to about −70 μC/gram with variation of Q/M during development of from about 0 to about 15 μC/gram.
- 2. An apparatus in accordance with claim 1 wherein said apparatus is a xerographic device.
- 3. An apparatus in accordance with claim 1 wherein the charge to mass ratio of the toner is from about −30 to about −60 μC/gram.
- 4. An apparatus in accordance with claim 1 wherein the toner contains low charge toner particles of equal to or less than about 15 percent of the total number of toner particles, and wrong sign toner particles equal to or less than about 5 percent of the total number of toner particles.
- 5. An apparatus in accordance with claim 1 wherein the toner contains low charge toner of equal to or less than about 6 percent of the total number of toner particles, and wrong sign toner particles equal to or less than about 3 percent of the total number of toner particles.
- 6. An apparatus in accordance with claim 1 wherein the toner possesses a volume median diameter of from about 6.9 to about 7.9 microns.
- 7. An apparatus in accordance with claim 1 wherein the toner possesses a size distribution such that about 30 percent or less of the total number of toner particles have a size less than about 5 microns, and about 0.7 percent or less of a total volume of toner particles with a size greater than about 12.70 microns.
- 8. An apparatus in accordance with claim 1 wherein the toner possesses a volume median diameter of from about 7.1 to about 7.7 microns.
- 9. An apparatus in accordance with claim 1 wherein the toner has a low volume ratio GSD of approximately 1.23, and a volume GSD of about 1.21.
- 10. An apparatus in accordance with claim 1 wherein the toner melt viscosity is from about 3×104 to about 6.7×104 poise at a temperature of about 97° C., from about 4×103 to about 1.6×104 poise at a temperature of about 116° C., or from about 6.1×102 to about 5.9×103 poise at a temperature of about 136° C.
- 11. An apparatus in accordance with claim 1 wherein the toner elastic modulus is from about 6.6×105 to about 2.4×106 dynes per square centimeter at a temperature of about 97° C., from about 2.6×104 to about 5.9×105 dynes per square centimeter at a temperature of about 116° C., and from about 2.7×103 to about 3×105 dynes per square centimeter at a temperature of about 136° C.
- 12. An apparatus in accordance with claim 1 wherein the toner melt flow index (MFI) is from about 1 to about 25 grams per about 10 minutes at a temperature of about 117° C.
- 13. An apparatus in accordance with claim 1 wherein said binder has a glass transition temperature of from about 52° C. to about 64° C.
- 14. An apparatus in accordance with claim 1 wherein said binder comprises a propoxylated bisphenol A fumarate resin, and said resin possesses an overall gel content of from about 2 to about 9 percent by weight of the binder.
- 15. An apparatus in accordance with claim 1 wherein the colorant is carbon black, magnetite, or mixtures thereof, cyan, magenta, yellow, blue, green, red, orange, violet, brown, or mixtures thereof.
- 16. An apparatus in accordance with claim 1 further including external additives of a silicon dioxide powder, a metal oxide powder, or mixtures thereof.
- 17. An apparatus in accordance with claim 16 wherein the metal oxide powder is titanium dioxide or aluminum oxide.
- 18. An apparatus in accordance with claim 1 wherein said external additives are of a SAC×size (theoretical surface area coverage×primary particle size of the external additive in nanometers) of from about 4,500 to about 7,200.
- 19. An apparatus in accordance with claim 1 wherein different colors of said toner develop a latent image upon said photoconductive surface by image-on-image processing with hybrid scavengeless development, the developed images then being transferred to an image receiving substrate.
- 20. An apparatus in accordance with claim 1 wherein said calcium stearate is present in an amount of from about 0.05 to about 2 weight percent.
- 21. A xerographic apparatus containing a development component and a photoconductive component, and which component contains a toner comprised of at least one binder in an amount of from about 70 to about 98 percent by weight, at least one colorant in an amount of from about 0.5 to about 15 percent by weight, and calcium stearate in an amount of from about 0.05 to about 2 percent by weight and wherein following triboelectric contact with carrier particles, the toner has a charge Q measured in femtocoulombs per particle diameter D measured in microns (Q/D) of from about −0.1 to about −1 fC/μm with a variation during development of from about 0 to about 0.25 fC/μm and wherein the distribution is substantially unimodal and possesses a peak width of from about 0.1 fC/μm to about 0.5 fC/μm and the toner possesses a charge to mass M, as measured in grams, ratio (Q/M) of from about −25 to about −70 μC/gram with variation of Q/M during development of from about 0 to about 15 μC/gram.
- 22. A toner comprised of a binder in an amount of from about 70 to about 98 percent by weight, at least one colorant in an amount of from about 0.5 to about 15 percent by weight, and calcium stearate in an amount of from about 0.05 to about 2 percent by weight and wherein following triboelectric contact with carrier particles, the toner has a charge Q measured in femtocoulombs per particle diameter D measured in microns (Q/D) of from about −0.1 to about −1 fC/μm with a variation during development of from about 0 to about 0.25 fC/μm and wherein the distribution is substantially unimodal and possesses a peak width of from about 0.1 fC/μm to about 0.5 fC/μm and the toner possesses a charge to mass M, as measured in grams, ratio (Q/M) of from about −25 to about −70 μC/gram with variation of Q/M during development of from about 0 to about 15 μC/gram.
- 23. A toner in accordance wiwth claim 22 wherein said toner further includes external additives of silica, a metal oxide, or mixtures thereof.
Parent Case Info
[0001] This is a divisional of U.S. application Ser. No. 10/261,129 filed Sep. 27, 2002 by the same inventors, and claims priority therefrom.
Divisions (1)
|
Number |
Date |
Country |
Parent |
10261129 |
Sep 2002 |
US |
Child |
10871299 |
Jun 2004 |
US |