The present invention relates to a developing apparatus that is used in an electrophotographic image forming apparatus.
An image forming apparatus such as a copier or a laser beam printer that forms an image on a recording material using an electrophotographic system forms an electrostatic image (latent image) by applying light corresponding to image data onto an electrophotographic photosensitive member (photosensitive drum) that is uniformly changed by a charging unit. Subsequently, a developing apparatus feeds toner as a developer to the electrostatic image, and the electrostatic image is thereby visualized as a toner image (developer image). The toner image is transferred to the recording material such as recording paper from the photosensitive drum by a transfer apparatus. The toner image transferred to the recording material is fixed onto the recording material by a fixing apparatus.
Japanese Patent Application Laid-open No. H4-31880 describes a developing apparatus in which the surface of a developing roller as a developer carrying member is selectively caused to hold charges and a large number of minute closed electric fields are formed in the vicinity of the surface of the developing roller, whereby toner is fed onto the surface of the developing roller and the developing roller is caused to carry the toner. In addition, Japanese Patent Application Laid-open No. 2014-238568 describes a developing apparatus that is configured such that a guide surface having an inclination angle of at least an angle of repose of toner and less than 90 degrees is provided in an inner wall of a toner storage chamber of a developing container, and the toner slides down the guide surface by its own weight and moves toward the developing roller. According to these configurations, unlike a conventional art, even without providing a toner feed roller for feeding the toner to the developing roller, it becomes possible to feed the toner to the developing roller.
In recent years, due to request from the market, an increase in the capacity of the developing apparatus is desired. However, in the case where the container is designed so as to have a large angle of the inner wall of the container of the developing apparatus in consideration of the maximum angle of repose during use of the toner, the dimensions of the container are increased upwardly in the gravity direction. As a result, a large load is applied to lower toner, the toner having received the load flows in the developing apparatus, and degradation of the toner is thereby accelerated. When the degradation of the toner occurs, a toner attraction effect by the minute closed electric field is reduced. Consequently, image failure is caused by the toner degradation in the latter half of the use period of the developing apparatus, and the convenience of a user may be spoiled.
An object of the present invention is to provide a technique capable of preventing the degradation of the toner and maintaining image quality until the latter half of the use period of the developing apparatus over a long time period while achieving an increase in the storage amount of the toner.
In order to attain the above object, a developing apparatus of the present invention comprises: a frame in which a developer is stored; and a developer carrying member that is disposed below a storage chamber of the frame, with the developer being stored in the storage chamber, and that carries the developer, the developer carrying member having a surface for carrying the developer that is configured such that a plurality of dielectric portions are dispersed on a conductive portion, wherein an upper region of the storage chamber of the frame is enlarged further in a horizontal direction than a lower region in which the developer carrying member is disposed, and the frame has: a lower guide surface that guides the developer to the developer carrying member and is inclined at a first angle, which is equal to or greater than a degree of an angle of repose of the developer and less than 90 degrees, relative to a horizontal plane in an inner wall of the lower region; and an upper guide surface that is coupled to the lower guide surface, guides the developer to the lower region, and is inclined at a second angle that is less than the first angle relative to the horizontal plane in an inner wall of the upper region.
In order to attain the above object, a developing apparatus of the present invention comprises: a frame in which a developer is stored; and a developer carrying member that is disposed below a storage chamber of the frame, with the developer being stored in the storage chamber, and that carries the developer, the developer carrying member having a surface for carrying the developer that is configured such that a plurality of dielectric portions are dispersed on a conductive portion, wherein an upper region of the storage chamber of the frame is enlarged further in a horizontal direction than a lower region in which the developer carrying member is disposed, and the frame has: a lower guide surface that guides the developer to the developer carrying member and includes a curved surface having a tangent plane that is inclined at a first angle, which is equal to or greater than a degree of an angle of repose of the developer and less than 90 degrees, relative to a horizontal plane in an inner wall of the lower region; and
an upper guide surface that is coupled to the lower guide surface, guides the developer to the lower region, and includes a curved surface having a tangent plane that is inclined at a second angle that is less than the first angle relative to a horizontal plane.
In order to attain the above object, a developing apparatus of the present invention comprises: a frame in which a developer is stored; a developer carrying member that is disposed below a storage chamber of the frame, with the developer being stored in the storage chamber, and that carries the developer, the developer carrying member having a surface for carrying the developer that is configured such that a plurality of dielectric portions are dispersed on a conductive portion; and a guide surface that is provided in part of an inner wall of the frame that forms the storage chamber and guides the developer to the developer carrying member, wherein a tangent plane at a lower end of the guide surface is inclined at a first angle, which is equal to or greater than a degree of an angle of repose of the developer and less than 90 degrees, relative to a horizontal plane, and the guide surface has a portion in which a tangent plane is inclined at a second angle that is less than the first angle relative to the horizontal plane above the lower end.
Further features of the present invention will become apparent from the following description of exemplary embodiments (with reference to the attached drawings).
Hereinafter, a description will be given, with reference to the drawings, of embodiments of the present invention. However, the sizes, materials, shapes, their relative arrangements, or the like of constituents described in the embodiments may be appropriately changed according to the configurations, various conditions, or the like of apparatuses to which the invention is applied. Therefore, the sizes, materials, shapes, their relative arrangements, or the like of the constituents described in the embodiments do not intend to limit the scope of the invention to the following embodiments.
In the developing apparatus 40, an opening portion that extends longitudinally is provided in the frame 41, and a developing roller 42 is provided so as to cover the opening portion. The developing roller 42 is provided so as to rotate at a position opposing the photosensitive drum 1. In the developing roller 42 of the present invention, a dielectric portion and a conductive portion each having a minute area are mixed on its surface. A large number of minute closed electric fields (microfields) are formed in the vicinity of the surface by selectively causing the surface of the developing roller 42 to hold charges, and hence it is possible to cause the surface of the developing roller 42 to carry a large amount of toner and transfer the toner to a developing zone. In addition, the developing apparatus 40 has a regulating blade 44 having elasticity that is provided in the frame 41 so as to be in contact with the surface of the developing roller 42 as a regulating member that regulates the thickness of the layer of the toner 90 carried by the developing roller 42. In addition, the developing apparatus 40 has a flexible sheet 45 that is provided in the frame 41 so as to be in contact with the developing roller 42 in a region different from a region in which the regulating blade 44 is in contact with the developing roller 42, and prevents leakage of the toner 90 from a gap between the opening portion of the frame 41 and the developing roller 42 to the outside of the storage chamber.
More specifically, the image forming apparatus according to the present embodiment has a configuration in which a conventional toner feed/stripping member is omitted in the developing apparatus, and uses gradient force generated by the above-mentioned microfields in order to cause the surface of the developing roller 42 to carry the toner 90 having many layers. Herein, the developing roller 42 used in the present embodiment will be described in detail with reference to
As shown in
The size of the dielectric portion 31 (the size of a portion (circular portion) exposed on the peripheral surface of the developing roller 42 (the conductive portion 32)) is set such that the outer diameter of the dielectric portion 31 is, e.g., about 5 to 500 μm. This is the optimum value for holding charges on the surface and preventing image unevenness. In the case where the outer diameter<5 μm is satisfied, a potential amount held on the surface of the dielectric portion 31 is small, and it is not possible to form sufficient minute closed electric fields. In the case where the outer diameter>500 μm is satisfied, a difference in potential between the dielectric portion 31 and the conductive portion 32 is large, and the image has much unevenness. The dielectric portion 31 needs to maintain the potential difference between the dielectric portion 31 and the conductive portion 32 to a certain degree and maintain the minute closed electric field during a time period from when the dielectric portion 31 passes through a toner layer thickness regulation position by the regulating blade 44 to when the dielectric portion 31 passes through the toner layer thickness regulation position again. In addition, in order to form the minute closed electric field indicated by the line of electric force E in
In order to form the surface layer 42c shown in
The characteristic configuration of the developing apparatus according to the present embodiment will be described with reference to
The developing apparatus 40 according to the present embodiment has a configuration in which the frame 41 stores the toner 90 above the developing roller 42, and the developing apparatus 40 guides the toner 90 to the vicinity of the developing roller 42 by using inclined surfaces 47a and 47b provided in the inner wall that forms a toner storage chamber 41a (storage chamber) and gravity (by its own weight). Specifically, in the frame 41, the inclined surfaces 47a and 47b of which an angle changes in two stages are formed from the lower part to the upper part in the toner storage chamber 41a as guide surfaces that guide the toner 90 to the developing roller 42 in part of the inner wall that forms the toner storage chamber 41a. As shown in
The magnitude of the inclination angle of the inclined surface 47a, i.e., an angle θ1 (corresponds to a first angle) formed by the inclined surface 47a and a horizontal plane (a horizontal line in
Herein, the angle of repose of the toner will be described. The angle of repose of the toner denotes an inclination angle of a ridge of a mountain of the toner formed on a plane when the toner is dropped on the plane. In the present embodiment, the angle of repose thereof is measured by using Powder Tester PT-S (manufactured by Hosokawa Micron Corporation). 150 g of toner is laid on a mesh having an opening of 250 μm, and the toner is accumulated on a circular table having a diameter of 8 cm via a funnel by vibrating the toner on the mesh. At this point, the toner is accumulated to the extent that the toner spills from the end of the table. The angle of repose is determined by measuring an angle formed between the ridge of the toner accumulated on the table and the surface of the circular table. The angle of repose of the toner changes through repeated operation of the developing apparatus. That is, the angle of repose of the toner that remains in the toner storage chamber 41a without being used for development of the latent image while the developing apparatus operates in an image forming operation or the like changes as a time period during which the toner remains in the toner storage chamber 41a is prolonged. When the toner is not used yet, i.e., in the case where the developing apparatus has never operated since the storage of the toner in the toner storage chamber 41a, the angle of repose of the toner is lowest (the angle is smallest). Thereafter, while the developing apparatus performs the image forming operation repeatedly, the toner is degraded and its fluidity is reduced due to, for instance, friction of the toner in the toner storage chamber 41a and friction between the toner and the regulating blade 44, and the angle of repose of the toner is increased. Particularly in the case where the remaining amount of the toner is small, the progress of the degradation is accelerated. In the present embodiment, toner subjected to a sphering treatment is used, and the angle of repose of the toner when the toner is not used yet (the toner is new) is about 20 degrees, and the angle of repose of the toner at the time of the end of toner life is about 60 degrees. That is, the range of the angle of repose of the toner in the present embodiment is the range of 20 degrees to 60 degrees.
In the present embodiment, the time of the end of toner life is defined in the following manner. A lower end 47d of the inclined surface 47a is determined by a toner surface when available toner in the developing apparatus is exhausted (hereinafter referred to as the end of toner life). This is shown in
The inclined surface 47a as the lower guide surface is extended upwardly at an angle of 70 degrees from the lower end 47d that corresponds to the height of the surface of the toner when the toner has reached the end of toner life. The lower end 47d of the inclined surface 47a is positioned above the lower end of the developing roller 42 and below the central axis of the rotation of the developing roller 42. In addition, the lower end 47d of the inclined surface 47a is positioned below a position at which the regulating blade 44 is in contact with the developing roller 42 and the tip (lower end) of the regulating blade 44 that is in contact with the developing roller 42. The inclination angle (first angle) of the inclined surface 47a may be at least the angle of repose at the time of the end of toner life as a first angle of repose (at least 60 degrees in the present embodiment) and less than 90 degrees and, the setting range in the present embodiment is at least 60 degrees and not more than 80 degrees. Herein, as described above, the angle of repose at the time of the end of toner life is the angle of repose of the toner that remains in the toner storage chamber 41a when the developing apparatus has performed the image forming operation the number of times that causes the reduction in the toner laid-on level as the predetermined number of times since the storage of the toner in the toner storage chamber 41a. The inclined surface 47a is extended upwardly at an angle of 70 degrees, and is coupled to the inclined surface 47b.
The inclined surface 47b as the upper guide surface is extended further upwardly at an angle of 30 degrees from the upper end of the inclined surface 47a as the lower guide surface. The inclination angle (second angle) of the inclined surface 47b may be at least the angle of repose when the toner is not used yet as a second angle of repose (at least 20 degrees in the present embodiment) and less than the first angle of repose, and the setting range is at least 20 degrees and not more than 40 degrees in the present embodiment. Herein, as described above, the angle of repose when the toner is not used yet is the angle of repose of the toner in the case where the developing apparatus has never performed the image forming operation since the storage of the toner in the toner storage chamber 41a.
That is, as described above, the angle θ1 formed by the inclined surface 47a and the horizontal plane (the horizontal line in
When the remaining amount of the toner is large, the toner degradation is small and the angle of repose is low. When the developing apparatus repeats the image forming operation and the remaining amount of the toner is reduced, the toner degradation progresses and the angle of repose is increased. In order to cause the toner to move to the developing roller 42 by its own weight, it is preferable that the inclined surface on which the toner is laid is inclined at an angle suitable for the current state of the toner, i.e., it is preferable to maintain an angle of at least the predetermined angle of repose in accordance with the remaining amount and the degradation degree of the toner.
A boundary between the upper region and the lower region in the toner storage chamber 41a of the frame 41 of the developing apparatus 40 is set in the following manner in the present embodiment. The height of a boundary portion 47c between the inclined surface 47a and the inclined surface 47b (the upper end of the inclined surface 47a or the lower end of the inclined surface 47b) is set to a height substantially equal to the height of the toner surface when the toner in an amount corresponding to half (50%) of the maximum capacity of the toner storage chamber 41a of the frame 41 is stored in the toner storage chamber 41a. In the toner storage chamber 41a, a space region below the horizontal plane passing through the boundary portion 47c serves as the lower region, and a space region above the horizontal plane serves as the upper region, and the horizontal plane that separates the two regions from each other serves as the boundary.
With the configuration described above, each of the inclined surfaces 47a and 47b of the inner wall of the toner storage chamber 41a maintains the inclination angle of at least the desired angle of repose corresponding to the remaining amount and the degradation degree of the toner stored in the toner storage chamber 41a, and hence it is possible to smoothly slide and carry the toner to the developing roller 42.
Herein, as a comparative example,
However, the developing apparatus having the virtual configuration that includes the developing roller that partially has charges on the surface and has the operation of attracting the toner, and the inner wall that has the angle of at least the angle of repose of the toner and guides the toner to the vicinity of the developing roller is considered to have the following problem. An increase in the capacity of the developing apparatus is desired and, in the case where the container is designed so as to have a large angle of the inner wall of the container of the developing apparatus in consideration of the maximum angle of repose during the use of the toner, the dimensions of the container are increased upwardly in the gravity direction. As a result, a large load is applied to lower toner, the toner having received the load flows in the developing apparatus, and degradation of the toner is thereby accelerated. When the degradation of the toner occurs, a toner attraction effect by the minute closed electric field is reduced. Consequently, image failure is caused by the toner degradation in the latter half of the use period of the developing apparatus, and the convenience of a user may be spoiled.
As described above, according to the present embodiment, the inclination angle θ2 of the upper inclined surface 47b is smaller than the inclination angle θ1 of the lower inclined surface 47a, and the toner storage chamber 41a is configured such that the storage space is enlarged laterally (horizontal direction) in the upward direction. Consequently, in the case where the toner in a large amount close to the maximum capacity of the toner storage chamber 41a is stored, according to the present embodiment, it is possible to make the height of the toner surface lower than that in the configuration in which the storage space extends vertically, as in the configuration shown in
For instance, the above-described setting of the inclination angle of each of the inclined surfaces 47a and 47b and the above-described setting of the position (height) of the boundary portion 47c between the inclined surfaces 47a and 47b are only exemplary. It goes without saying that there are cases where the optimum set values are changed in accordance with, for instance, the type of the stored toner and the capacity of the toner storage chamber 41a, and are appropriately set in accordance with the specifications of the apparatus. In particular, with regard to the position (height) of the boundary portion 47c between the inclined surface 47a and the inclined surface 47b where the inclination angle is changed, the optimum set value thereof may be determined by actually measuring the transition of the change of the angle of repose of the toner resulting from an increase in the number of times of use of the developing apparatus. Alternatively, the optimum set value may also be determined by preparing a plurality of developing apparatuses having different inclination angles of the inclined surfaces and checking the toner remaining amount in the latter half of the use period of the developing apparatus and comparing the toner remaining amounts with each other.
In addition, in the present embodiment, the guide surface for guiding the toner to the developing roller is formed of two inclined surfaces, but the number of the inclined surfaces is not limited to two. A configuration in which the guide surface is formed of three or more inclined surfaces, i.e., the guide surface having the inclination angle that changes in three or more stages is provided may also be adopted. The boundary (inner wall height) of the change of the inclination angle in this case may be appropriately set such that the inclination angle of the inclined surface on which the toner is laid changes to an optimum angle in accordance with the remaining amount and the degradation degree of the toner (the change of the angle of repose).
The developing apparatus according to the present embodiment may be configured to be detachable from the apparatus main body of the image forming apparatus (the portion of the image forming apparatus other than the developing apparatus), or may also be configured to be fixed to the apparatus main body so as not to be detachable therefrom. In addition, the developing apparatus 40 may constitute a process cartridge together with the photosensitive drum 1 and the charging apparatus 2, and the developing apparatus may also be configured to be detachable from the apparatus main body of the image forming apparatus as part of the process cartridge.
A developing apparatus according to a second embodiment of the present invention will be described with reference to
As shown in
Consideration will be given to the guide surface 48 by determining, as a boundary portion 48c, a line at substantially the same height as that of the toner surface when the toner in an amount corresponding to half (50%) of the maximum capacity of the toner storage chamber 41a of the frame 41 is stored in the toner storage chamber 41a, and dividing the guide surface 48 into a lower curved surface 48a and an upper curved surface 48b. The curved surface 48a as a lower guide surface is a curved surface in which an angle θ1 (corresponding to the first angle) formed by the tangent plane in contact with the curved surface at any height and the horizontal plane falls within a range of at least 60 degrees and not more than 80 degrees, and is capable of obtaining the same effect as that of the lower inclined surface 47a in the first embodiment. The curved surface 48b as an upper guide surface is a curved surface in which an angle θ2 (corresponding to the second angle) formed by the tangent plane in contact with the curved surface at any height and the horizontal plane falls within a range of at least 20 degrees and less than 60 degrees, and is capable of obtaining the same effect as that of the upper inclined surface 47b in the first embodiment. That is, it is possible to consider that, in the guide surface 48, the two different curved surfaces 48a and 48b form one continuous curved surface. That is, the curved surface 48a as the lower guide surface has the tangent plane that is inclined at an angle of at least the first angle of repose. The curved surface 48b as the upper guide surface has the tangent plane that is inclined at an angle of less than the first angle of repose and at least the second angle of repose relative to the horizontal plane. The inclination angle of the tangent plane of the curved surface 48b as the upper guide surface is less than the inclination angle of the tangent plane of the curved surface 48a as the lower guide surface.
In the guide surface 48, an angle formed by the guide surface 48 and the horizontal plane is increased in a downward direction. When the developing apparatus 40b repeats the printing operation, the toner 90 stored in the toner storage chamber 41a of the frame 41 is reduced while being degraded, and hence the angle of repose of the stored toner is increased as the toner surface is lowered. On the other hand, in a state in which the toner surface is high and the use of the toner is just started, the fluidity of the toner is high, and the angle of repose thereof is low. According to the present embodiment, the guide surface 48 maintains the inclination angle of at least the desired angle of repose corresponding to the remaining amount and the degradation degree of the toner, and hence it is possible to smoothly slide and carry the toner to the developing roller 42 over a long use period. In addition, the toner storage chamber 41a is configured such that the storage space is enlarged laterally (the horizontal direction) in the upward direction by the guide surface 48. With this, it is possible to reduce the influence of the weight of the upper toner on the lower toner in the toner storage chamber 41a, and prevent the acceleration of the toner degradation by the weight of the toner. By preventing the acceleration of the toner degradation, it is possible to maintain the image quality until the latter half of the use period of the developing apparatus, and improve the convenience of the user.
In the present embodiment, the guide surface 48 is the curved surface that forms a curve in which the degree of the change of the inclination angle is constant in a cross-sectional shape when viewed in the rotation axis direction of the developing roller 42, but other various configurations can be adopted as long as the configurations are capable of achieving the guide effect of the toner described above. For example, the guide surface 48 may also be a curved surface that forms a curve in which the inclination angle falls within the predetermined range of the angle of repose but the degree of the change of the inclination angle is irregular in the cross-sectional shape described above.
A developing apparatus according to a third embodiment of the present invention will be described with reference to
As shown in
In addition, as shown in
According to the present embodiment, the guide surface 49 maintains the inclination angle of at least the desired angle of repose corresponding to the remaining amount and the degradation degree of the toner, and hence it is possible to smoothly slide and carry the toner to the developing roller 42 over a long use period. In addition, the toner storage chamber 41a is configured such that the storage space is enlarged laterally (in the horizontal direction) in the upward direction by the guide surface 49. With this, it is possible to reduce the influence of the weight of the upper toner on the lower toner in the toner storage chamber 41a, and prevent the acceleration of the toner degradation by the weight of the toner. By preventing the acceleration of the toner degradation, it is possible to maintain the image quality unit the latter half of the use period of the developing apparatus, and improve the convenience of the user.
With regard to the embodiments described above, the individual configurations may be combined with each other whenever possible. For example, a configuration in which the guide surface obtained by combining the flat inclined surface in the first embodiment with the curved surface in the second embodiment is provided may be adopted. Note that, in the case where the flat inclined surface is used, the tangent plane corresponds to the inclined surface.
According to the present invention, it is possible to prevent the degradation of the toner and maintain the image quality until the latter half of the use period of the developing apparatus over a long time period while achieving an increase in the storage amount of the toner.
While the present invention has been described with reference to exemplary embodiments, it is to be understood that the invention is not limited to the disclosed exemplary embodiments. The scope of the following claims is to be accorded the broadest interpretation so as to encompass all such modifications and equivalent structures and functions.
This application claims the benefit of Japanese Patent Applications No. 2016-065871, filed Mar. 29, 2016, and No. 2017-050656, filed Mar. 15, 2017, which are hereby incorporated by reference herein in their entirety.
Number | Date | Country | Kind |
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2016-065871 | Mar 2016 | JP | national |
2017-050656 | Mar 2017 | JP | national |
Number | Date | Country | |
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Parent | 15471457 | Mar 2017 | US |
Child | 15976187 | US |