Image forming apparatus
US-2019137923-A1 · May 9, 2019 · US
US11714365B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11714365-B2 |
| Application number | US-202117374036-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 13, 2021 |
| Priority date | Mar 22, 2016 |
| Publication date | Aug 1, 2023 |
| Grant date | Aug 1, 2023 |
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When, in a state where a developer borne by a developer bearing member is sandwiched by an opposing portion of an image bearing member and the developer bearing member, C denotes capacitance between the image bearing member and the developer bearing member, ΔV denotes a development contrast, Q/S denotes a charge amount per unit area of the developer borne by the developer bearing member, and Δv denotes a peripheral velocity ratio which is a ratio of a peripheral velocity of the developer bearing member to a peripheral velocity of the image bearing member, a first peripheral velocity ratio is set so that |Q/S×Δv|≤|C×ΔV| is satisfied, and a second peripheral velocity ratio which is larger than the first peripheral velocity ratio is set so that |Q/S×Δv|>|C×ΔV| is satisfied.
Opening claim text (preview).
What is claimed is: 1. An image forming apparatus, comprising: an image bearing member; a developer bearing roller configured to contact the image bearing member and perform a development operation in which an electrostatic image formed on the image bearing member is developed with a developer; a motor configured to rotationally drive the image bearing member and the developer bearing roller respectively so that peripheral velocities of each is variable individually; an exposure device configured to form the electrostatic image on the image bearing member by exposing a surface of the image bearing member at a predetermined exposure amount and by forming a light-part potential from a dark-part potential on the image bearing member; a high-voltage power supply configured to apply a developing voltage to the developer bearing roller; and a controller configured to control the developing voltage and the exposure amount, wherein when a peripheral velocity ratio is defined as a ratio of the peripheral velocity of the developer bearing roller to the peripheral velocity of the image bearing member, the motor is configured to drive the image bearing member and the developer bearing roller at a first peripheral velocity ratio and a second peripheral velocity ratio which is larger than the first peripheral velocity ratio, and wherein a development contrast formed between the developing voltage applied to the developer bearing roller and the light-part potential formed on the image bearing member when a temperature is a first temperature and a humidity is a first humidity is defined as a first development contrast, and the development contrast when the temperature is a second temperature higher than the first temperature and the humidity is a second humidity higher than the first humidity is defined as a second development contrast, wherein the controller controls a magnitude of the developing voltage or the exposure amount so that, when the development operation is performed at the second peripheral velocity ratio, the second development contrast is smaller than the first development contrast. 2. The image forming apparatus according to claim 1 , wherein the first peripheral velocity ratio and the second peripheral velocity ratio are set so that an amount of the developer remaining on the developer bearing roller after the development operation in a case where the development operation is performed at the second peripheral velocity ratio is larger than that in a case where the development operation is performed at the first peripheral velocity ratio. 3. The image forming apparatus according to claim 1 , further comprising a sensor configured to detect temperature and humidity. 4. The image forming apparatus according to claim 1 , wherein the motor is configured to rotate the image bearing member and the developer bearing roller so that the image bearing member and the developer bearing roller move in a same direction at an opposing portion where the image bearing member and the developer bearing roller oppose each other. 5. The image forming apparatus according to claim 1 , wherein the motor is configured to: set the peripheral velocity of the image bearing member, in a case of the first peripheral velocity ratio, to be the same as the peripheral velocity of the image bearing member in a case of the second peripheral velocity ratio; and set the peripheral velocity of the developer bearing roller higher, in the case of the second peripheral velocity ratio, to be larger than the peripheral velocity of the image bearing member in the case of the first peripheral velocity ratio. 6. The image forming apparatus according to claim 1 , wherein the motor is configured to: set the peripheral velocity of the developer bearing roller in a case of the first peripheral velocity ratio, to be the same as that in a case of the second peripheral velocity ratio; and set the peripheral velocity of the image bearing member in the case of the second peripheral velocity ratio, to be lower than that in the case of the first peripheral velocity ratio. 7. The image forming apparatus according to claim 1 , wherein the motor is configured to make the second peripheral velocity ratio larger than the first peripheral velocity ratio by: setting the peripheral velocity of the developer bearing roller lower in a case of the second peripheral velocity ratio than that in a case of the first peripheral velocity ratio; and setting the peripheral velocity of the image bearing member lower in the case of the second peripheral velocity ratio than that in the case of the first peripheral velocity ratio, wherein an amount of reduction of the peripheral velocity of the developer bearing roller is different from an amount of reduction of the peripheral velocity of the image bearing member. 8. The image forming apparatus according to claim 1 , wherein the first peripheral velocity ratio and the second peripheral velocity ratio are set so that a laid-on level of the developer per unit area of an image formed on a recording material in a case of the second peripheral velocity ratio is higher than that in a case of the first peripheral velocity ratio. 9. The image forming apparatus according to claim 1 , further comprising: a supplying roller configured to supply a developer to the developer bearing roller; a developing chamber in which the supplying roller is arranged; a housing chamber configured to communicate with the developing chamber and house the developer; and a stirring member arranged in the housing chamber and configured to convey the developer toward the developing chamber, wherein a communication port through which the developing chamber and the housing chamber communicate is positioned above the stirring member in the housing chamber.
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