Image forming apparatus with density measuring portion
09983532 ยท 2018-05-29
Assignee
Inventors
Cpc classification
International classification
Abstract
An image forming apparatus includes: a roller arranged in a position between a drive roller and an idle roller and downstream from the drive roller in a rotation direction of an intermediate transfer belt while pressing an outer surface of the belt; and a density measuring portion arranged between the drive roller and the roller applying pressure. The density measuring portion optically detects the density of a test patch formed on the outer surface and in a given position of a width direction of the belt. The density measuring portion includes: an optical sensor provided above the outer surface of the belt; and a support member abutting on an inner surface of the belt in a position in which the support member faces the optical sensor across the belt in the rotation direction.
Claims
1. A toner image forming apparatus comprising: a first roller; a second roller juxtaposed to the first roller; an endless transfer belt stretched rotatably between the first roller and the second roller; a third roller arranged in a position parallel to the first roller and the second roller and downstream from the first roller in a rotation direction of the transfer belt while pressing an outer surface of the transfer belt; and a density measuring portion arranged between the first roller and the third roller, the density measuring portion optically detecting a toner density of a test patch which is a toner image formed on the outer surface of the transfer belt and in a given position of a width direction of the transfer belt, wherein the density measuring portion comprises: an optical sensor provided between the first roller and the third roller and above the outer surface of the transfer belt, the optical sensor making measurement in a position that corresponds to a pathway of the test patch in the width direction formed on the transfer belt; and a support member abutting on an inner surface of the transfer belt in a position in which the support member faces the optical sensor across the transfer belt in the rotation direction, the support member including a ridge extending parallel to the width direction of the transfer belt and abutting on the transfer belt at the ridge.
2. The toner image forming apparatus according to claim 1, wherein the optical sensor is arranged downstream from a place of the abutment of the support member on the transfer belt in the rotation direction.
3. The toner image forming apparatus according to claim 1, wherein the support member includes a low-friction material provided in a place where the support member abuts on the transfer belt.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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(5)
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(6) As shown in
(7) The image forming portion 10 includes a laser scanning unit 1, and image forming portions 10A to 10D prepared for the corresponding colors and including comparable structures. The laser scanning unit 1 includes a casing. The casing houses a laser element and an optical component such as a polygon mirror for laser light scanning that are prepared for each color. The laser scanning unit 1 exposes and scans surface of each of photoreceptor drums 2A to 2D of the image forming portions 10A to 10D respectively in the axis direction (main scanning direction) of each photoreceptor drum with laser light modulated in corresponding relationship with image data of each color resulting from conversion, thereby forming an electrostatic latent image of each color. The image forming portion 10A, which will be described as a representative, includes the photoreceptor drum 2A. The image forming portion 10A includes a charger 3A, a developing unit 4A, and a cleaning portion 5A arranged in the direction of rotation of the photoreceptor drum 2A (sub-scanning direction) to surround the photoreceptor drum 2A.
(8) The intermediate transfer portion 20 includes an endless intermediate transfer belt 21, a drive roller 22, an idle roller 23, primary transfer rollers 24A to 24D, and a cleaning portion 25. The intermediate transfer portion 20 transfers a toner image of each color formed on the circumferential surface of corresponding one of the photoreceptor drums 2A to 2D primarily onto a surface of the rotating intermediate transfer belt 21. The secondary transfer portion 30 transfers the toner image on the surface of the intermediate transfer belt 21 secondarily onto a recording sheet. The fixing portion 40 heats and fixes the toner image transferred onto the recording sheet and outputs the recording sheet to an output tray. The sheet feed portion 50 includes a sheet feed cassette and a manual feed tray and feeds a selected recording sheet from a corresponding sheet feed cassette to the sheet conveyor path 60.
(9) The cleaning portion 25 of the intermediate transfer portion 20 is arranged to abut on the belt surface of the intermediate transfer belt 21 from above (from outside) on rotation path along which the intermediate transfer belt 21 rotates from a side adjacent to the drive roller 22 toward the idle roller 23. Referring to
(10) A density measuring portion 26 is arranged on the upper half portion of the intermediate transfer belt 21 on the rotation path and between the drive roller 22 and the idle roller 23. The density measuring portion 26 includes an optical sensor 27 arranged externally to (above) the intermediate transfer belt 21, and a support member 28 arranged in a position facing the optical sensor 27 across the intermediate transfer belt 21.
(11) Referring to
(12) Regarding the respective toner colors of the test patches TP1 to TP4, the test patch 191 is in black and the test patches TP2 to TP4 are in yellow, cyan, and magenta respectively, for example. As for the black color, the density of the test patch TP1 is generally evaluated based on the intensity of light resulting from regular reflection. As for the other colors, the respective densities of the test patches TP2 to TP4 are generally evaluated based on the respective intensities of light resulting from irregular reflection.
(13) The support member 28 is formed of a plate member made of metal or resin, for example, that extends long in the width direction of the intermediate transfer belt 21 while having a band-like shape of a required width. The support member 28 includes an abutting portion 280 formed in a place facing the optical sensor 27 across the intermediate transfer belt 21. The abutting portion 280 includes a crest portion 281 bent upward into a rectangular shape as viewed in the rotation direction, for example. As shown in
(14) A point of measurement Pd in the rotation direction by the optical sensor 27 is set to be downstream from an intermediate position of the crest portion 281 in the rotation direction (the point of measurement Pd is on the left side of the intermediate position in
(15) In
(16) A support member 128 shown as a second embodiment in
(17) A support member 228 shown as a third embodiment in
(18) In each of the second and third embodiments, an abutting portion may be formed of a portion including the crest portion 1281 or 2281 provided only in a position facing the optical sensor 27.
(19) It should be noted that the foregoing description of the embodiments is in all aspects illustrative and not restrictive. The scope of this invention is defined by the appended claims rather than by the embodiments described above. All changes that fall within a meaning and a range equivalent to the scope of the claims are therefore intended to be embraced by the claims.