This application is the national phase of International Application No. PCT/CN2017/101157, titled “PROCESS CARTRIDGE,” filed on Sep. 11, 2017, which claims priority to Chinese Patent Application No. 201611130909.4 titled “PROCESS CARTRIDGE”, filed with the Chinese State Intellectual Property Office on Dec. 9, 2016, which are incorporated herein by reference in their entirety.
The present application relates to a process cartridge used for an image forming apparatus.
The process cartridge is a cartridge detachably mounted in the main body of an image forming apparatus, and the process cartridge as an integral unit includes a housing, a photosensitive drum, a developer roller, and the like. The process cartridge is detachable relative to the device host for easy maintenance of the device. The image forming apparatus adopting an electrophotographic image forming manner operates as follows: a photosensitive drum that has been uniformly charged by a charging unit is selectively exposed by light of the image forming apparatus to form an electrostatic latent image, which is developed into a toner image with the toner by the developer roller, and the formed toner image is transferred onto a recording medium by a transfer device, and finally an image is formed on the recording medium.
The process cartridge is mounted in the image forming apparatus, and if the developer roller is in close contact with the photosensitive drum on the image forming apparatus for a long time, the developer roller may contaminate the photosensitive drum on the image forming apparatus, thereby causing print quality defects. In order to solve this problem, it is necessary to separate the developer roller from the photosensitive drum on the image forming apparatus after the development is completed and to bring the developer roller into contact with the photosensitive drum on the image forming apparatus again during development. Since the developer roller needs to receive power from the image forming apparatus, the process cartridge is provided with a driving force receiving assembly, and when the developer roller and the photosensitive drum on the image forming apparatus are separated or contacted, it is necessary to simultaneously separate or engage the developer roller and the driving force receiving assembly and the image forming device.
An object of the present application is to provide a process cartridge that can realize separation and contact between a developer roller and an image forming apparatus.
In order to realize the above object, the present application adopts the following technical solutions:
Specifically, when the first stopper or the second stopper moves forward relative to the toner cartridge, the driving force receiving head of the driving force receiving assembly extends outward in the axial direction of the driving force receiving assembly; and when the first stopper or the second stopper moves backward relative to the toner cartridge, the driving force receiving head of the driving force receiving assembly retracts inward in the direction of the driving force receiving assembly.
Specifically, the first stopper is provided on one side wall in the axial direction of the toner cartridge by a rotation shaft, and the side wall of the toner cartridge is further provided with a first locking portion, and a first spring is provided between the first stopper and the toner cartridge, wherein the first spring is in a pre-compressed state, so that the first stopper is abutted against the first locking portion; when there is an external force which makes the first stopper overcomes a pre-compression force of the first spring, the first stopper separates from the first locking portion and rotates forward relative to the toner cartridge about the rotation shaft, and further compresses the first spring.
The second stopper is provided on the other side wall in the axial direction of the toner cartridge by a rotation shaft, and the other side wall of the toner cartridge is provided with a second locking portion, and a second spring is further provided between the second locking portion and the toner cartridge, wherein the second spring is in the pre-compressed state, so that the first stopper is abutted against the second locking portion; when there is the external force which makes the second stopper overcome the pre-compression force of the second spring, the second stopper separates from the second locking portion and rotates forward relative to the toner cartridge about the rotation shaft, and further compresses the second spring.
Specifically, the driving force receiving assembly includes the driving force receiving head, a return spring, a driving block, a driving gear, a positioning bracket, and a position-limiting bracket; the positioning bracket and the driving gear are fixed relative to the toner cartridge in the axial direction of the driving force receiving assembly, and the first stopper is connected to the positioning bracket by a connection rod, and the connection rod drives the positioning bracket to rotate about the axial direction of the driving force receiving assembly;
Specifically, the pushing protrusion portion is provided at an outer edge of the positioning bracket.
Specifically, the first stopper and the second stopper, under a pushing of the imaging forming apparatus, drive the toner cartridge and the developer roller to move.
According to the above technical solution, a stopper is provided at the bottom of the toner cartridge by the present application, and the stopper can push the toner cartridge and the developer roller to be in contact with or separate from the photosensitive drum on the image forming apparatus. When the developer roller is in contact with or separated from the photosensitive drum on the image forming apparatus, the stopper controls the driving force receiving head of the driving force receiving assembly of the process cartridge to extend outward or retract inward, so that to engage or disengage with the driving portion of the image forming apparatus. Thereby, after the development is completed, the developer roller and the photosensitive drum on the image forming apparatus can be separated to prevent the developer roller from being in contact with the photosensitive drum for a long time, contaminating the photosensitive drum on the image forming apparatus, and causing print quality defects.
A process cartridge detachably mounted in an image forming apparatus, including:
Specifically, when the first stopper and/or the second stopper move, the toner cartridge approaches to or moves away from a power portion of the image forming apparatus relative to the bracket in the axial direction of the driving force receiving assembly.
Specially, when the first stopper and/or the second stopper move forward relative to the toner cartridge, the toner cartridge approaches the power portion of the image forming apparatus in the axial direction of the driving force receiving assembly; and when the first stopper and/or the second stopper move backward relative to the toner cartridge, the toner cartridge moves away from the power portion of the image forming apparatus in the axial direction of the driving force receiving assembly.
Specifically, a toner cartridge movable spring is provided between at least one side wall of the toner cartridge and the bracket, and the toner cartridge movable spring enables the toner cartridge to approach to or move away from the power portion of the image forming apparatus.
Specifically, the first stopper is connected with a first pendulum rod, and the first stopper and the first pendulum rod are connected with one side wall in the axial direction of the bracket by the rotation shaft, a first spring is provided between the first stopper and the toner cartridge, and two ends of the first spring are respectively abutted against the first stopper and the bracket; and
Specifically, a first gap is provided between the side wall of the bracket provided with the first stopper and the side wall of the toner cartridge on the same side; a second gap is provided between the side wall of the bracket provided with the second stopper and the side wall of the toner cartridge on the same side; and
Specifically, when the first pendulum rod wedges into the first gap, the second pendulum rod exits the second gap; and when the second pendulum rod wedges into the second gap, the first pendulum rod exits the first gap.
Specifically, the process cartridge further includes a toner cartridge displacement control assembly which is provided between the side wall of the toner cartridge and the bracket, and the toner cartridge displacement control assembly includes a slider, a first movable rod, a second movable rod and a slider spring;
Specifically, when the slider spring is in an initial state, the included angle between the first movable rod and the second movable rod is the smallest; when the slider spring is subjected to an external force to generate a maximum deformation amount, the included angle between the first movable rod and the second movable rod is the largest.
Specifically, the toner cartridge displacement control assembly is provided between the axial side wall of the toner cartridge away from the driving force receiving assembly and the bracket.
Specifically, the toner cartridge movable spring is provided between the axial side wall of the toner cartridge mounted with the driving force receiving assembly and the bracket.
Specifically, the toner cartridge displacement control assembly is provided between two axial side walls of the toner cartridge and the bracket, and the toner cartridge displacement control assembly on the same side of the driving force receiving assembly is a first control assembly, and the toner cartridge displacement control assembly on the opposite side to the driving force receiving assembly is a second control assembly; and
Specifically, the first stopper is connected with the first pendulum rod, the second stopper is connected with the second pendulum rod, and the first pendulum rod and the second pendulum rod are respectively connected to the sliders of the toner cartridge displacement control assembly on the corresponding side; when the first stopper rotates, the first pendulum rod is driven to rotate to drive the slider movement of the toner cartridge displacement control assembly on the corresponding side; and when the second stopper rotates, the second pendulum rod is driven to rotate to drive the slider movement of the toner cartridge displacement control assembly of the corresponding side.
Specifically, the second movable rod is integrally formed with the rotation shaft for movable rod to form a T-shaped rod, the vertical rod of the T-shaped rod is the rotation shaft for movable rod, and the end of the transverse rod of the T-shaped rod is hinged to the bracket; the slider is provided with a ferrule which is sleeved on the rotation shaft for movable rod, and the slider drives the rotation shaft for movable rod to move.
Specifically, the rotation shaft for movable rod is fixedly provided on the slider and moves with the slider; one end of the second movable rod is sleeved on the rotation shaft for movable rod and rotatable about the rotation shaft for movable rod; and one end of the first movable rod is sleeved on the rotation shaft for movable rod and rotatable about the rotation shaft for movable rod.
Specifically, the axis of the rotation shaft for movable rod is perpendicular to the axis of the driving force receiving assembly and perpendicular to the moving direction of the slider; and the slider is reciprocally movable in the direction perpendicular to the axial direction of the driving force receiving assembly by the slider spring and an external force.
It can be seen from the above technical solution that the present application includes a bracket and a toner cartridge, and a stopper is provided at the bottom of the bracket, and the stopper may drive the toner cartridge, the developer roller or the photosensitive drum to move under the pushing of the image forming apparatus; the toner cartridge is movable relative to the bracket in the axial direction of the rotation axis of the driving force receiving assembly, so that the driving force receiving assembly can be in contact with or separated from the photosensitive drum on the image forming apparatus, thereby separating the developer roller and the photosensitive drum on the image forming apparatus after the development is completed. The developer roller is prevented from being in contact with the photosensitive drum for a long time, from contaminating the photosensitive drum on the image forming apparatus, and from causing print quality defects.
In order to more clearly illustrate the embodiments of the present application, a brief description of the drawings used in this embodiments or the conventional art description will be briefly described below. Obviously, the drawings in the following description are only some embodiments of the present application, and those skilled in the art can obtain other drawings according to the drawings without any creative work.
The core of the present application is to provide a process cartridge which can realize separation and contact between the developer roller and the image forming apparatus.
The present application will be described in detail below with reference to the accompanying drawings. When the embodiments of the present application are described in detail, for the convenience of description, the drawings showing the structure of the device will not be partially enlarged according to the general proportion, and the schematic diagram is only an example, which should not intend to limit the scope of protection of the present application. It should be noted that the drawings all adopt a very simplified form and all use non-precision ratios, which are only used to conveniently and clearly assist the purpose of illustrating the embodiments of the present application.
As shown in
With reference to
As shown in
It can be understood that when the first stopper 101 and the second stopper 102 are not rotated, the first spring 103 and the second spring 104 are both in a pre-compressed state, so that the first stopper 101 is in contact with the first locking portion 105 under the elastic force of the first spring 103, and the second stopper 102 is in contact with the second locking portion 106 under the elastic force of the second spring 104. The first locking portion 105 and the second locking portion 106 are provided on the toner cartridge.
That is to say, when there is an external force to rotate the first stopper 101 and the second stopper 102, in fact, the first spring 103 and the second spring 104 may be further compressed.
As shown in
The positioning bracket 306 has a pushing protrusion portion 306a protruding from a surface of the positioning bracket along the rotating axis L. The pushing protrusion portion 306a has a movement slope s connecting a top surface of the positioning bracket 306 and a top surface of the pushing protrusion portion 306a, and a protrusion portion 307a abutted against the positioning bracket is provided at the bottom of the position-limiting bracket 307. When the positioning bracket 306 rotates about the rotation axis L, the protrusion portion 307a of the position-limiting bracket 307 is movable between the top surface of the positioning bracket 306 and the top surface of the pushing protrusion portion 306a along the movement slope s, so that the position-limiting bracket 307 reciprocally moves along the rotation axis L. As shown in
The driving block 303 is provided on the position-limiting bracket 307, and the driving gear 304 is sleeved outside the driving block 303, and the driving force receiving head 301 passes through the driving gear 304 and the driving block 303. A bottom of the driving force receiving head 301 can extend into the position-limiting bracket 307. The return spring 302 is sleeved outside the driving force receiving head 301, and the return spring 302 has one end abutted against the driving gear 304 and another end abutted against the driving block 303. When the position-limiting bracket 307 moves along the rotation axis L, the driving block 303 and the driving force receiving head 301 are driven to move along the rotation axis L together.
The operation process during mounting and disassembling of the process cartridge will be described below with reference to
As shown in
When the image forming apparatus is ready to image, the image forming apparatus pushes the first stopper 101 and the second stopper 102 to move forward in a direction perpendicular to the rotation axis L, and the toner cartridge 100, the developer roller 200 and the driving force receiving assembly 300 are driven to move forward synchronously by compressing the first spring 103 and the second spring 104 until the developer roller 200 comes into contact with the photosensitive drum provided on the image forming apparatus. The photosensitive drum can be fixedly provided on the image forming apparatus, and can also be mounted on the image forming apparatus in advance.
When the developer roller 200 is in contact with the photosensitive drum provided on the image forming apparatus, since the positions of the toner cartridge and the developer roller are limited and no longer moved, as the image forming apparatus continues to push the first stopper 101 and the second stopper 102, the first stopper 101 and the second stopper 102 start to leave the first locking portion 105 and the second locking portion 106, and the first stopper 101 drives the positioning bracket 306 to rotate about the rotation axis L through the connection rod 1011 while moving. When the positioning bracket 306 rotates, the protrusion portion 307a of the position-limiting bracket 307 starts to move from the top surface of the positioning bracket 306 toward the top surface of the pushing protrusion portion 306a along the movement slope s, and compresses the return spring 302. With reference to
After the imaging is finished, since the driving force receiving head 301 is still engaged with the power portion of the image forming apparatus and is not movable, when the image forming apparatus pushes the first stopper 101 and the second stopper to move backward, the first stopper 101 controls the positioning bracket 306 to rotate in a reverse direction by the connection rod 1011. The protrusion portion 307a of the position-limiting bracket 307 moves along the movement slope s from the top surface of the pushing protrusion portion 306a toward the top surface of the positioning bracket 306 under the elastic force of the return spring 302, and the position-limiting bracket 307 moves toward the positioning bracket 306, and the driving force receiving head 301 is retracted from the extended state to the retracted state until the driving force receiving head 301 returns to the maximum retracted position shown in
As shown in
As shown in
The first operation assembly includes a first stopper 101 (in this embodiment, the first stopper 101, the toner cartridge movable spring 401 and the driving force receiving assembly are on the same side as the bracket), a first spring 103, and a first locking portion 105 (not shown). The first stopper 101 in this embodiment is connected with a first pendulum rod 1012, the first stopper 101 and the first pendulum 1012 are connected with the bracket 400 by a rotation shaft, and the axis of the rotation shaft is parallel to the rotation axis L. The first spring 103 has one end abutted against the first stopper 101, and another end abutted against the bracket 400 in the direction of the side wall of the bracket. The second operation assembly includes a second stopper 102, a second spring 104, and a second locking portion 106. The second stopper 102 in this embodiment is connected with a second pendulum rod 1013, and the second stopper 102 and the second pendulum 1013 are connected with the bracket 400 through a rotation shaft. The second spring 104 has one end abutted against the second stopper 102, and another end abutted against the bracket 400 in the direction of the side wall of the bracket. The first stopper 101 is in contact with the first locking portion 105, and the second stopper 102 is in contact with the second locking portion 106.
In this embodiment, since a gap is provided between the side wall of the bracket and the side wall of the toner cartridge, both the first pendulum rod 1012 and the second pendulum rod 1013 may wedge between the side wall of the bracket and the side wall of the toner cartridge. For convenience of description, the gap between the side wall of the bracket provided with the first stopper and the side wall of the toner cartridge on the same side may be referred as a first gap, and the gap between the side wall of the bracket provided with the second stopper and the side wall of the toner cartridge on the same side may be referred as a second gap. However, the first pendulum rod 1012 and the second pendulum rod 1013 form a reverse motion relationship, specifically, when the second pendulum rod 1013 wedges into the gap (the second gap) between the bracket 400 and the toner cartridge 300, the first pendulum rod 1012 can exit the gap (the first gap) between the bracket 400 and the toner cartridge 300, and vice versa.
When the process cartridge is mounted in the image forming apparatus and the imaging operation has not been started, the toner cartridge 100 is moved away from the power portion of the image forming apparatus under the pushing of the toner cartridge movable spring 401, and the driving force receiving assembly 300 is also away from the image forming apparatus. When the toner cartridge 100 is away from the power portion of the image forming apparatus to the maximum position, the driving head is separated from the power portion, and at this time, the driving force receiving head 301 extends from the outer side wall of the bracket by a length b2, as shown in
When ready for development, the image forming apparatus pushes the first stopper 101 and the second stopper 102 to move forward in the direction perpendicular to the rotation axis L. The first stopper 101 and the second stopper 102 respectively drive the toner cartridge 100 and the bracket 400 to move forward by a pressure transmission of compressing the first spring 103 and the second spring 104, and the driving force receiving assembly 300 also moves forward synchronously. When the developer roller 200 is in contact with the photosensitive drum provided on the image forming apparatus, the toner cartridge 100 stops moving.
As the image forming apparatus continues to push the first stopper 101 and the second stopper 102, due to the gap between the side wall of the bracket and the side wall of the toner cartridge, when the first stopper 101 and the second stopper 102 respectively continues to compress the first spring 103 and the second spring 104, the first stopper 101 drives the first pendulum rod 1012 to wedge into the gap between the side wall of the bracket and the side wall of the toner cartridge, and the second stopper 102 drives the second pendulum rod 1013 to exit the gap between the side wall of the bracket and the side wall of the toner cartridge. The first pendulum rod 1012 and the second pendulum rod 1013 enable the toner cartridge 100 to approach to the power portion of the image forming apparatus along the rotation axis L by overcoming the elastic force of the toner cartridge movable spring 401. When the toner cartridge 100 is closest to the power portion of the image forming apparatus, the driving force receiving head 301 extends from the outer side wall of the bracket by a length b1, b1>b2, at which time the driving force receiving head 301 can engage with the power portion on the image forming apparatus (
After the imaging is finished, when the image forming apparatus pushes the first stopper 101 and the second stopper 102 to move backward, since the driving force receiving head 301 is still engaged with the power portion of the image forming apparatus and is not movable, the first stopper 101 and the second stopper 102 are displaced relative to the toner cartridge 100 in the direction perpendicular to the rotation axis L, so that the first stopper 101 drives the first pendulum rod 1012 to exit the gap between the side wall of the bracket and the side wall of the toner cartridge, the second stopper 102 drives the second pendulum rod 1013 to wedge into the gap between the side wall of the bracket and the side wall of the toner cartridge, so that the toner cartridge movable spring 401 is reset, thereby controlling the toner cartridge 100 to be away from the power portion of the image forming apparatus. When the toner cartridge 100 is away from the power portion of the image forming apparatus to the maximum position, the driving force receiving head 301 and the power portion of the image forming apparatus are disengaged. The first stopper 101 and the second stopper 102 are also restored to be in contact with the first locking portion 105 and the second locking portion 106 respectively. As the image forming apparatus continues to push, the first stopper 101 and the second stopper 102 respectively push the toner cartridge to move backward through the first locking portion 105 and the second locking portion 106, so that the developer roller 200 and the photosensitive drum provided on the image forming apparatus are separated.
In this embodiment, related variations can also be made. For example, the first stopper 101 is not provided with the first pendulum rod 1012, but the second stopper 102 drives the second pendulum rod 1013 to wedge into or exit the gap between the sidewall of the bracket and the side wall of the toner cartridge, so that the toner cartridge movable spring 401 is restored or compressed, thereby further controlling the toner cartridge 100 to move away from or close to the power portion of the image forming apparatus, completing the connection of the driving head and the driving force receiving head. The second stopper 102 may also not be provided with the second pendulum rod 1013, and only the first stopper 101 is provided with the first pendulum rod 1012, and only the first stopper 101 drives the first pendulum rod 1012 to wedge into or exit the gap between the side wall of the bracket and the side wall of the toner cartridge, so that the toner cartridge movable spring 401 is compressed or reset, thereby controlling the toner cartridge 100 to move close to or away from the power portion of the image forming apparatus, and completing the connection between the driving head and the driving force receiving head. The toner cartridge movable spring may also be not provided.
Referring to
The second movable rod 109 is in a transvers T-shape, and an end of the transverse rod is arranged on the bracket 400 by a hinge, and a vertical rod portion forms a rotation shaft for movable rod. The slider 107 is sleeved on the rotation shaft for movable rod through a ferrule provided on the slider 107 and can drive the rotation shaft for movable rod to move. One end of the first movable rod 108 is sleeved on the rotation shaft for movable rod and rotatable about the rotation shaft for movable rod and the other end (a free end) of the first movable rod 108 is in contact with the side wall of toner cartridge 100. The axis of the rotation shaft for movable rod is perpendicular to the rotation axis L and perpendicular to the moving direction of the slider.
With reference to
When the process cartridge is mounted in the image forming apparatus and the imaging has not been started, the slider 107 is farthest from the bracket 400 under the pushing of the slider spring 402, and the distance between two oppositely disposed ends of the transverse rods of the first movable rod 108 and the second movable rod 109 is the smallest, and the included angle between the transverse rods of the first movable rod 108 and the second movable rod 109 is the smallest; and since there is no external force, the state in which the slider spring 402 is located can be referred as an initial state, that is, the state in which the slider spring 402 is not applied with an external force. At this time, the toner cartridge 100 is located on one side away from the power portion of the image forming apparatus under the pushing of the toner cartridge movable spring 401, and the driving assembly 300 provided on the toner cartridge 100 is also away from the power portion of the image forming apparatus, and the driving force receiving head 301 is separated from the power portion of the image forming apparatus (
When ready for development, the image forming apparatus pushes the first stopper 101 and the second stopper 102 to move forward, and the first stopper 101 and the second stopper 102 drive the bracket 400 and the toner cartridge to move forward by compressing the first spring 103 and the second spring 104, respectively. When the developer roller comes into contact with the photosensitive drum provided on the image forming apparatus, the toner cartridge and the bracket stop moving. At this time, one end (the free end) of the slider 107 not in contact with the slider spring comes into contact with the image forming apparatus, so that the slider 107 starts to compress the slider spring 402, and the slider 107 drives the rotation shaft for movable rod to move through the ferrule, forcing the first movable rod 108 rotates about the rotation shaft for movable rod, and the distance between two oppositely disposed ends of the transverse rods of the first movable rod 108 and the second movable rod 109 starts to become larger. The first movable rod 108 has an outer end abutted against the toner cartridge, and the transverse rod of the second movable rod 109 has an outer end abutted against the side wall of the bracket. Since the side wall of the bracket is relatively fixed, the first movable rod 108 pushes the toner cartridge 100 in a direction close to the power portion of the image forming apparatus. When the slider 107 is pushed to the rear side of the bracket 400 (away from the toner cartridge), that is, when the slider spring 402 is at the maximum compression amount, the distance between two oppositely disposed ends (two ends of the outer sides) of the transverse rods of the first movable rod 108 and the second movable rod 109 becomes the largest, and the included angle between the first movable rod 108 and the second movable rod 109 is the largest. The toner cartridge 100 is pushed closest to the power portion of the image forming apparatus, and the driving force receiving assembly 300 is on the side closest to the power portion of the image forming apparatus, and the driving force receiving head 301 and the power portion of the image forming apparatus may be engaged (
After the imaging is finished, when the image forming apparatus pushes the first stopper 101 and the second stopper 102 to move backward, the driving force receiving head is still engaged with the power portion of the image forming apparatus and is not movable. The first stopper 101 and the second stopper 102 are displaced in the direction perpendicular to the rotation axis L, the slider 107 moves away from the bracket, and drives the rotation shaft for movable rod (the vertical rod of the second movable rod 109) to move, thereby driving the first movable rod 108 rotates about the rotation shaft for movable rod, so that the distance between two oppositely disposed ends of the first movable rod 108 and the second movable rod 109 starts to become smaller, and the toner cartridge starts to move away from the power portion of the image forming apparatus. When the toner cartridge 100 is away from the power portion of the image forming apparatus to the maximum position, the driving force receiving head 301 and the power portion of the image forming apparatus are disengaged. As the image forming apparatus continues to push, the first stopper 101 and the second stopper 102 push the toner cartridge 100 to move backward by the first locking portion 105 and the second locking portion 106, respectively, to separate the developer roller 200 from the photosensitive drum provided on the image forming apparatus.
The embodiment can also perform related variations, for example, the toner cartridge displacement assembly and the driving force receiving assembly are provided on the same side. When the process cartridge is mounted in the image forming apparatus and the imaging operation has not been started, the slider spring 402 drives the slider 107 to a position closest to the rear side of the bracket 400, the distance between two oppositely disposed ends of the transverse rods of the first movable rod 108 and the second movable rod 109 is the largest, and the toner cartridge is located on one side away from the power portion of the image forming apparatus, and the driving assembly 300 provided on the toner cartridge 100 is away from the power portion of the image forming apparatus, and the driving force receiving head 301 is separated from the power portion of the image forming apparatus. When ready for development, the image forming apparatus pushes the first stopper 101 and the second stopper 102 to move forward, and drives the bracket 400 and the toner cartridge to move forward by compressing the first spring 103 and the second spring 104. When the toner cartridge moves forward, the slider 107 compresses the slider spring 402 and drives the rotation shaft for movable rod to move, so that the distance between two oppositely disposed ends of the transverse rods of the first movable rod 108 and the second movable rod 109 starts to become smaller. The toner cartridge 100 is pushed closest to power portion of the image forming apparatus, and the driving force receiving assembly 300 is also closest to one side of the power portion of the image forming apparatus, and the driving force receiving head 301 can be engaged with the power portion on the image forming apparatus.
Alternatively, the toner cartridge displacement control assembly is provided between the side walls of two ends of the toner cartridge and the brackets, and the movement process of the slider of the toner cartridge displacement control assembly on the same side as the driving force receiving assembly and the first and second movable rods is opposite to the movement process of the slider of the toner cartridge displacement control assembly provided on the opposite side to the driving force receiving assembly and the first and second movable rods. That is, when the distance between two oppositely disposed ends of the transverse rods of the first movable rod and the second movable rod of the toner cartridge displacement control assembly provided on the same side of the driving force receiving assembly is the largest, the distance between two oppositely disposed ends of the transverse rods of the first movable rod and the second movable rod of the toner cartridge displacement control assembly provided on the opposite side to the driving force receiving assembly is the smallest. At this time, the toner cartridge is farthest from the power portion of the image forming apparatus, the driving force receiving head and the power portion of the image forming apparatus are disengaged. When the distance between two oppositely disposed ends of the first movable rod and the second movable rod of the toner cartridge displacement control assembly provided on the same side of the driving force receiving component is the smallest, the distance between two oppositely disposed ends of the first movable rod and the second movable rod of the toner cartridge displacement control assembly on the opposite side to the driving force receiving assembly is the largest. At this time, the toner cartridge is closest to the power portion of the image forming apparatus, and the driving force receiving head and the power portion of the image forming apparatus are engaged. When the toner cartridge displacement control assembly is provided between the side walls of two ends of the toner cartridge and the brackets, the toner cartridge movable spring may not be provided.
The difference between this embodiment and Embodiment 3 is only the shape of the second movable rod in the toner cartridge displacement control assembly, and the rotation shaft for movable rod is fixedly provided on the slider 107 and moves with the slider. The second movable rod 109 has a rod shape, and has one end (a free end) freely in contact with the bracket 400 (which is also movably provided on the bracket 400 by a hinge) and another end sleeved on the rotation shaft for movable rod provided on the slider 107 and rotatable about the rotation shaft for movable rod. One end of the first movable rod 108 is sleeved on the rotation shaft for movable rod and rotatable about the rotation shaft for movable rod and the other end (the free end) of the first movable rod 108 is in contact with the side wall of the toner cartridge 100. The axis of the rotation shaft for movable rod is perpendicular to the rotation axis L and perpendicular to the moving direction of the slider.
Referring to
When the process cartridge is mounted in the image forming apparatus and the imaging operation has not been started, the slider 107 is farthest from the bracket 400 under the pushing of the slider spring 402, and the distance between two oppositely disposed ends of the first movable rod 108 and the second movable rod 109 is the smallest. At this time, the toner cartridge 100 is located on one side away from the power portion of the image forming apparatus under the pushing of the toner cartridge movable spring 401. The driving assembly 300 provided on the toner cartridge 100 is also away from the power portion of the image forming apparatus, and the driving force receiving head 301 and the power portion of the image forming apparatus are separated (
When ready for development, the image forming apparatus pushes the first stopper 101 and the second stopper 102 to move forward, and the first stopper 101 and the second stopper 102 drive the bracket 400 and the toner cartridge to move forward by compressing the first spring 103 and the second spring 104 respectively. When the developer roller comes into contact with the photosensitive drum provided on the image forming apparatus, the toner cartridge and the bracket stop moving. At this time, one end (a free end) of the slider 107 not contacting the slider spring is in contact with the image forming apparatus, so that the slider 107 starts to compress the slider spring 402, and the first movable rod 108 and the second movable rod 109 start to rotate under the driving of the slider 107, and the distance between two oppositely disposed ends of the first movable rod 108 and the second movable rod 109 starts to become larger, and the first movable rod 108 has an outer end abutted against the toner cartridge, and the second movable rod 109 has an outer end abutted against the side wall of the bracket, pushing the toner cartridge 100 to move in a direction close to the power portion of the image forming apparatus. When the slider 107 is pushed closest to the rear side of the bracket 400 (away from the toner cartridge), the distance between two oppositely disposed ends (the outer ends) of the first movable rod 108 and the second movable rod 109 becomes the largest, the toner cartridge 100 is pushed closest to the power portion of the image forming apparatus, and the driving force receiving assembly 300 is also closest to one side of the power portion of the image forming apparatus, and the driving force receiving head 301 and the power portion on the image forming apparatus can be engaged (
After the imaging is finished, when the image forming apparatus pushes the first stopper 101 and the second stopper 102 to move backward, the driving force receiving head is still engaged with the power portion of the image forming apparatus and cannot move. The first stopper 101 and the second stopper 102 are displaced in the direction perpendicular to the rotation axis L, the slider 107 moves in the direction away from the bracket, and drives the first movable rod 108 and the second movable rod 109 to rotate about the rotation shaft, so that the distance between two oppositely disposed ends of the first movable rod 108 and the second movable rod 109 starts to become smaller, and the toner cartridge starts to move away from the power portion of the image forming apparatus. When the toner cartridge 100 is away from the power portion of the image forming apparatus to the maximum position, the driving force receiving head 301 and the power portion of the image forming apparatus are disengaged, and as the image forming apparatus continues to push, the first stopper 101 and the second stopper 102 push the toner cartridge 100 to move backward through the first locking portion 105 and the second locking portion 106, respectively, to separate the developer roller 200 from the photosensitive drum provided on the image forming apparatus.
Related variations can be made to this embodiment, for example, the toner cartridge displacement assembly and the driving force receiving assembly are provided on the same side. When the process cartridge is mounted in the image forming apparatus and the imaging operation has not been started, the slider spring 402 drives the slider 107 to be located closest to the rear side of the bracket 400. The distance between two oppositely disposed ends of the first movable rod 108 and the second movable rod 109 is the largest, and the toner cartridge is located on one side away from the power portion of the image forming apparatus, and the driving assembly 300 provided on the toner cartridge 100 is also away from the power portion of the image forming apparatus, and the driving force receiving head 301 is separated from the power portion of the image forming apparatus. When ready for development, the image forming apparatus pushes the first stopper 101 and the second stopper 102 to move forward, and the bracket 400 and the toner cartridge are driven to move forward by compressing the first spring 103 and the second spring 104. When the toner cartridge moves forward, the slider 107 compresses the slider spring 402, so that the distance between two oppositely disposed ends of the first movable rod 108 and the second movable rod 109 starts to become smaller, and the toner cartridge 100 is pushed to the position closest to the image forming apparatus, the driving force receiving assembly 300 is also closest to the one side of the power portion of the image forming apparatus, and the driving force receiving head 301 and the power portion of the image forming apparatus can be engaged
Alternatively, a toner cartridge displacement control assembly is provided between the each of the side walls of two ends of the toner cartridge and the bracket, and the movement process of the slider of the toner cartridge displacement control assembly on the same side as the driving force receiving assembly and the first and second movable rods is opposite to the movement process of the slider of the toner cartridge displacement control assembly provided on the opposite side to the driving force receiving assembly and the first and second movable rods. That is, when the distance between two oppositely disposed ends of the transverse rods of the first movable rod and the second movable rod of the toner cartridge displacement control assembly provided on the same side as the driving force receiving assembly is the largest, the distance between two oppositely disposed ends of the transverse rods of the first movable rod and the second movable rod of the toner cartridge displacement control assembly provided on the opposite side to the driving force receiving assembly is the smallest. At this time, the toner cartridge is farthest from the power portion of the image forming apparatus, the driving force receiving head and the power portion of the image forming apparatus are disengaged. When the distance between two oppositely disposed ends of the first movable rod and the second movable rod of the toner cartridge displacement control assembly provided on the same side of the driving force receiving component is the smallest, the distance between two oppositely disposed ends of the first movable rod and the second movable rod of the toner cartridge displacement control assembly on the opposite side to the driving force receiving assembly is the largest. At this time, the toner cartridge is closest to the power portion of the image forming apparatus, and the driving force receiving head and the power portion of the image forming apparatus are engaged. When the toner cartridge displacement control assembly is provided between the side wall of two ends of the toner cartridge and the bracket, the toner cartridge movable spring may not be provided.
The above description of the disclosed embodiments enables those skilled in the field to make or use the present application. Various modifications to these embodiments will be apparent to those skilled in the field, such as combining the structures of Embodiment 2 or 3, or 2 and 4, the free end of the pendulum rod in Embodiment 2 is fixed to the slider 107 of Embodiment 3, the slider 107 is moved by the swing of the pendulum rod to realize the axial movement of the toner cartridge along the axial direction of the driving force receiving assembly relative to the bracket. In addition, the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present application. Therefore, the present application is not intended to be limited to the embodiments shown herein, but is to be accorded with the broadest scope of the principles and novel features disclosed herein.
Number | Date | Country | Kind |
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2016 1 1130909 | Dec 2016 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2017/101157 | 9/11/2017 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
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WO2018/103393 | 6/14/2018 | WO | A |
Number | Name | Date | Kind |
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20060034637 | Kim et al. | Feb 2006 | A1 |
20130136492 | Xu | May 2013 | A1 |
20150005134 | Shimizu | Jan 2015 | A1 |
Number | Date | Country |
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1734365 | Feb 2006 | CN |
103760757 | Apr 2014 | CN |
105974755 | Sep 2016 | CN |
2001109356 | Apr 2001 | JP |
2005043538 | Feb 2005 | JP |
Entry |
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State Intellectual Property Office of the P.R. China, International Search Report and Written Opinion for International Application No. PCT/CN2017/101157, dated Dec. 14, 2017. |
Number | Date | Country | |
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20190346810 A1 | Nov 2019 | US |