Composite particles for toner additives
US-2024417537-A1 · Dec 19, 2024 · US
US10620557B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10620557-B2 |
| Application number | US-201916515103-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 18, 2019 |
| Priority date | Jul 30, 2018 |
| Publication date | Apr 14, 2020 |
| Grant date | Apr 14, 2020 |
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A toner comprising a binder resin and a near-infrared light absorbing material is provided. The toner in the form of a pellet has: a chroma C* of 20 or less in the L*C*h color space; a hue angle h of from 50 to 90 degrees in the L*C*h color space; and a spectral reflectance of 5% or less at a wavelength of from 800 to 900 nm.
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The invention claimed is: 1. A toner, comprising: a binder resin; and a near-infrared light absorbing material, wherein: the toner in the form of a pellet has: a chroma C* of 20 or less in the L*C*h color space, a hue angle h of from 50 to 90 degrees in the L*C*h color space, and a spectral reflectance of 5% or less at a wavelength of from 800 to 900 nm; and the toner reflects visible light having a wavelength of 400 nm to 700 nm. 2. The toner according to claim 1 , wherein the binder resin comprises a polyester resin. 3. The toner according to claim 1 , further comprising: an ester wax. 4. The toner according to claim 1 , wherein a solid image formed of the toner with a deposition amount of 0.6 mg/cm 2 has: the chroma C* of 20 or less in the L*C*h color space; the hue angle h of from 50 to 90 degrees in the L*C*h color space; and a spectral reflectance of 40% or less at a wavelength of from 800 to 900 nm. 5. The toner according to claim 1 , wherein tetrahydrofuran-soluble matter in the toner has a weight average molecular weight Mw of from 6,000 to 12,000. 6. The toner according to claim 1 , wherein the toner has a ½ outflow temperature of from 105 to 120 degrees C. 7. A toner set, comprising: a color toner comprising a binder resin and a colorant; and the toner according to claim 1 . 8. A toner accommodating unit, comprising: a container; and the toner according to claim 1 accommodated in the container. 9. An image forming method, comprising: forming an electrostatic latent image on an electrostatic latent image bearer; developing the electrostatic latent image formed on the electrostatic latent image bearer with the toner according to claim 1 to form an invisible toner image; transferring the invisible toner image formed on the electrostatic latent image bearer onto a surface of a recording medium; and fixing the invisible toner image on the surface of the recording medium. 10. The image forming method according to claim 9 , wherein the invisible toner image includes a solid image portion formed of the toner with a deposition amount of 0.6 mg/cm 2 , and the solid image portion has: the chroma C* of 20 or less in the L*C*h color space; the hue angle h of from 50 to 90 degrees in the L*C*h color space; and a spectral reflectance of 40% or less at a wavelength of from 800 to 900 nm. 11. The image forming method according to claim 10 , wherein a difference in 60-degree gloss value between the recording medium and the solid image portion of the invisible toner image fixed on the recording medium is 10 or less. 12. The image forming method according to claim 9 , wherein the recording medium comprises lignin. 13. The image forming method according claim 9 , further comprising: developing the electrostatic latent image with a color toner to form a color toner image, wherein the invisible toner image is closer to the recording medium than the color toner image is. 14. An image forming apparatus, comprising: an electrostatic latent image bearer; an electrostatic latent image forming device configured to form an electrostatic latent image on the electrostatic latent image bearer; a developing device containing the toner according to claim 1 , configured to develop the electrostatic latent image formed on the electrostatic latent image bearer with the toner to form an invisible toner image; a transfer device configured to transfer the invisible toner image formed on the electrostatic latent image bearer onto a surface of a recording medium; and a fixing device configured to fix the invisible toner image on the surface of the recording medium. 15. The image forming apparatus according to claim 14 , wherein the invisible toner image includes a solid image portion formed of the toner with a deposition amount of 0.6 mg/cm 2 , and the solid image portion has: the chroma C* of 20 or less in the L*C*h color space; the hue angle h of from 50 to 90 degrees in the L*C*h color space; and a spectral reflectance of 40% or less at a wavelength of from 800 to 900 nm. 16. The image forming apparatus according to claim 15 , wherein a difference in 60-degree gloss value between the recording medium and the solid image portion of the invisible toner image fixed on the recording medium is 10 or less. 17. The image forming apparatus according to claim 14 , wherein the recording medium comprises lignin. 18. The image forming apparatus according claim 14 , further comprising: a color toner developing device containing a color toner, configured to develop the electrostatic latent image with the color toner to form a color toner image, wherein the invisible toner image is closer to the recording medium than the color toner image is. 19. The toner according to claim 1 , which is an invisible toner. 20. The toner according to claim 1 , wherein the toner reflects the visible light having the wavelength of 400 nm to 700 nm with a reflectance of at least about 50% over the wavelength of 400 nm to 700 nm, as indicated by a spectral reflectance curve of a solid image formed of the toner.
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