Claims
- 1. An electrophotographic device for transferring, onto a receptor sheet, a plural color toner image superimposed on a photosensitive layer after a processing of image on image development of a plurality of color toners, comprising;
a photosensitive layer which is formed electrostatic latent image thereon; one or more charging units charging the photosensitive layer; one or more exposure units forming an electrostatic latent image on the photosensitive layer by exposing a selected area in the photosensitive layer using an image modulated light beam; one or more development units supplying a developer to the electrostatic latent image in order to forming a toner image on the photosensitive layer; a transfer unit transferring the toner image to the receptor sheet; one or more detectors detecting physical values on the photosensitive layer; and a control section controlling operations of at least one or more of the charging units, the exposure units, and the development units in order to obtain forces satisfying a relationship designated by a following inequality, in which these forces are applied to previously developed toners close to selectively-exposed subsequent toner area where no previously developed toners are present, wherein the previously developed toner area is not exposed during this selective exposure process performed after the completion of the charging process by the charging unit after the completion of the development for the previous toner by the previous development unit, 5qΔ V10-4≤R12 D2[3k T4(εt-εmεt+εm)2+3h Ve162(nt2-nm2)2(nt2+nm2)32]-14π εmε0q2R2,where q is a toner charge per previously developed toner, ΔV is a voltage difference between a surface voltage Vo of the previously developed toner after the completion of the subsequent charging process and a surface voltage VL at a selectively-exposed area, R is a radius of a previously developed toner, D is a distance between previously developed toners (a surface distance), ∈t and nt are a relative dielectric constant and a refractive index of the previously developed toner, respectively, ∈m and nm are a relative dielectric constant and a refractive index in a medium in which the previously developed toners are present respectively, k is Boltzmann's constant, “T” is absolute temperature, “∈0” is a dielectric constant of vacuum, “h” is Planck's constant, and “Ve” is a toner-absorption frequency.
- 2. The electrophotographic device according to claim 1,
wherein toners having the radius R, the relative dielectric constant ∈t, and the refractive index nt as initial values are selected in order to determine the right side of the inequality, and wherein the control section controls at least one or more the power of the charging units, the exposure level of the exposure units, and the toner charge q per toner based on the toner charge q and the voltage difference ΔV detected by the detectors in order to satisfy the left side of the inequality.
- 3. The electrophotographic device according to claim 1,
wherein the transfer unit contains a intermediate transfer member, and the plural color toner image superimposed on the photosensitive layer is transferred to the intermediate transfer member and the toner image on the intermediate transfer member is transferred to the receptor sheet.
- 4. The electrophotographic device according to claim 3,
wherein the intermediate transfer member is in contact with the photosensitive layer.
- 5. The electrophotographic device according to claim 1,
wherein the plurality of color toners are four color toners such as yellow color toner, magenta color toner, cyan color toner, and black color toner, and wherein the combination of the charging unit, the exposure unit, the development unit, and the detector is provided per color toner and each combination is placed in parallel around the photosensitive layer.
- 6. The electrophotographic device according to claim 1,
wherein the plurality of color toners are four color toners such as yellow color toner, magenta color toner, cyan color toner, and black color toner, and wherein the combination of the charging unit, the exposure unit, and the development unit is provided per color toner and each combination is placed in parallel around the photosensitive layer.
- 7. The electrophotographic device according to claim 1,
wherein the plurality of color toners are three color toners such as yellow color toner, magenta color toner, and cyan color toner, and wherein the combination of the charging unit, the exposure unit, and the development unit is provided per color toner and each combination is placed in parallel around the photosensitive layer.
- 8. The electrophotographic device according to claim 1,
wherein each exposure unit is a laser device for outputting a laser beam in order to form the electrostatic latent image on the photosensitive layer based on the control of the control section.
- 9. The electrophotographic device according to claim 1,
wherein each exposure unit is a light emitting diode (LED) for outputting a LED beam in order to form the electrostatic latent image on the photosensitive layer based on the control of the control section.
- 10. The electrophotographic device according to claim 1,
wherein the electrophotographic device is an electrophotographic device of a liquid type using plural liquid color toners.
- 11. The electrophotographic device according to claim 10,
wherein toners having the radius R, the relative dielectric constant ∈t, and the relative index nt as initial values are selected in order to determine the right side of the inequality, and wherein the control section controls at least one or more the power of the charging units, the exposed level of the exposure units, and the toner charge q per toner based on the toner charge q and the voltage difference ΔV detected by the detectors in order to satisfy the left side of the inequality.
- 12. The electrophotographic device according to claim 10,
wherein the transfer unit contains a intermediate transfer member and the plural color toner image superimposed on the photosensitive layer is transferred to the intermediate transfer member in the first transfer process, and then the toner image on the intermediate transfer member is transferred to the receptor sheet in the second transfer process.
- 13. The electrophotographic device according to claim 12,
wherein the intermediate transfer member is in contact with the photosensitive layer and the receptor sheet in the first and the second transfer process, respectively, by applying mechanical process.
- 14. The electrophotographic device according to claim 10,
wherein the plurality of color toners are four color toners such as yellow color toner, magenta color toner, cyan color toner, and black color toner, and wherein the combination of the charging unit, the exposure unit, the development unit, and the detector is provided per color toner and each combination is placed in parallel around the photosensitive layer.
- 15. The electrophotographic device according to claim 10,
wherein the plurality of color toners are four color toners such as yellow color toner, magenta color toner, cyan color toner, and black color toner, and wherein the combination of the charging unit, the exposure unit, and the development unit is provided per color toner and each combination is placed in parallel around the photosensitive layer.
- 16. The electrophotographic device according to claim 10,
wherein the plurality of color toners are three color toners such as yellow color toner, magenta color toner, and cyan color toner, and wherein the combination of the charging unit, the exposure unit, the development unit, and the detector is provided per color toner and each combination is placed in parallel around the photosensitive layer.
- 17. The electrophotographic device according to claim 10,
wherein each exposure unit is a laser device for outputting a laser beam in order to form the electrostatic latent image on the photosensitive layer based on the control of the control section.
- 18. The electrophotographic device according to claim 10,
wherein each exposure unit is a light emitting diode (LED) for outputting a LED beam in order to form the electrostatic latent image on the photosensitive layer based on the control of the control section.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2000-282236 |
Sep 2000 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims benefit of priority under 35 USC §119 to Japanese Patent Application No.P2000-282236, filed on Sep. 18, 2000, the entire contents of which are incorporated herein by reference.