The invention relates to a developer stirring unit for stirring developer, a developing device including the developer stirring unit, and an image forming apparatus comprising the developing device; especially, relates to a developer stirring unit, a developing device and an image forming apparatus that can detect remainder amount of developer.
In recent years, many image forming apparatuses of electronic photography type are utilized such as printer, facsimile apparatus, copying apparatus, multiplex apparatus and the like. As such apparatus, it has an image formation composed of respective processes of charging, exposing, developing, transferring, fixing and cleaning. In these processes, developing process is to use a developing device to make developing roller serving as developer carrying body carry developer (i.e. toner) so as to perform a development of electrostatic latent image with respect to photosensitive drum serving as an electrostatic latent image carrying body.
In such developing device, besides the developing roller, a supplying roller for supply toner to the developing roller, and a toner stirring unit for stirring toner as developer stirring unit are furnished.
A toner stirring unit 100, as shown by
When a rotation force is transferred from a driving unit (not shown) so that the driving section 104 rotates, the stirring bar 103 rotates together with the supporting pivot 106, after its tip rotated to an uppermost position i.e. an upper dead point position, the stirring bar 103 rotates to drop quicker than the driving section 104 through its own weight. Then, as shown by
Patent Document 1: Japan patent publication of No. Heisei 09-054488.
However, in such conventional toner stirring unit 100, in the case that the remainder amount of the toner 101 in the toner hopper 102 becomes little, as shown by
It is, therefore, an object of the invention to provide a developer stirring unit, a developing device and an image forming apparatus that can solve the above problem, so as to correctly judge a remainder amount of developer in accommodating tank.
A first aspect of the invention is to provide a developer stirring unit, the developer stirring unit comprises a accommodating tank that accommodates developer; a stirring member that has at least one shaft portion and is used to stir the developer accommodated in the accommodating tank; a bearing member that couples with the shaft portion, and supports the stirring member to possibly rotate around the shaft portion serving as rotation axis and to possibly move along a axis direction of the rotation axis; a driving section that drives the stirring member to rotate; and a judging section that judges a remainder amount of the developer in the accommodating tank, wherein the stirring member is controlled to move along an axis direction of the rotation axis together with rotating along a rotation direction of the rotation axis.
A second aspect of the invention is to provide a developing device, the developing device comprises a developer stirring unit that includes a accommodating tank that accommodates developer; a stirring member that has at least one shaft portion and is used to stir the developer accommodated in the accommodating tank; a bearing member that couples with the shaft portion, and supports the stirring member to possibly rotate around the shaft portion serving as rotation axis and to possibly move along a axis direction of the rotation axis; a driving section that drives the stirring member to rotate; and a judging section that judges a remainder amount of the developer in the accommodating tank, wherein the stirring member is controlled to move along an axis direction of the rotation axis together with rotating along a rotation direction of the rotation axis.
A third aspect of the invention is to provide an image forming apparatus, the image forming apparatus comprises a developing device, wherein the developing device has a developer stirring unit that includes a accommodating tank that accommodates developer; a stirring member that has at least one shaft portion and is used to stir the developer accommodated in the accommodating tank; a bearing member that couples with the shaft portion, and supports the stirring member to possibly rotate around the shaft portion serving as rotation axis and to possibly move along a axis direction of the rotation axis; a driving section that drives the stirring member to rotate; and a judging section that judges a remainder amount of the developer in the accommodating tank, wherein the stirring member is controlled to move along an axis direction of the rotation axis together with rotating along a rotation direction of the rotation axis.
According to the developer stirring unit, the developing device and the image forming apparatus of the invention, because the stirring member drops in accordance with bearing member while moving along a rotation axis direction, even if developer in accommodating tank becomes little, rebound or vibration can be prevented from occurring. Therefore, it is possible to correctly judge remainder amount of developer.
The above and other objects and features of the present invention will become apparent from the following detailed description and the appended claims with reference to the accompanying drawings.
Embodiments of the invention will be described in detail hereinbelow with reference to the drawings. Here, it is to explain example when applying the present invention to a stirring unit, a developing device which has the toner stirring unit and an electronic photographic printer which includes the developing device.
A printer 10, as an image forming apparatus of electronic photographic type, which includes a developing device containing toner stirring unit, as shown by
Further, the printer 10 comprises a printer controlling section (not shown) for controlling the respective sections 11˜14. The printer controlling section includes a control substrate 15 to perform supply of voltage from a power source (not shown) to respective sections; perform drives of respective motors (not shown) for controlling respective rollers (described below) to rotate; perform print control and the like on the basis of information of respective sensors. Further, the printer controlling section, as a judging section, has a function to judge remainder amount of toner (i.e. developer).
With a start of print process, the printer controlling section starts to supply electric current to the fixing mechanism section 13.
The fixing mechanism section 13, as shown by
When the surface of the heat roller 16 comes to a predetermined fixation temperature, the printer controlling section controls respective rollers in the printing mechanism section 12 to rotate. Then, at a predetermined timing, the paper feeding mechanism section 11 starts to feed paper to the printing mechanism section 12.
The paper feeding mechanism section 11, as shown by
When the hopping roller 20 starts to rotate by a control of the printer controlling section, the print medium 18 accommodated in the cassette 19 is conveyed to medium conveyance route. Then, through rotation of the upper registration roller 21 and the lower registration roller 22, the print medium 18 is conveyed to the printing mechanism section 12.
The printing mechanism section 12, as shown by
The image forming unit 23 has a photosensitive drum 26 as an image carrying body. The photosensitive drum 26 is furnished to expose from the underside of the image forming unit 23 so that its surface contacts with the transfer roller 25.
In the image forming unit 23, around the photosensitive drum 26, a charging roller 27 serving as charging unit, a developing roller 28 serving as developer carrying body, and a cleaning roller 29 serving as cleaning means are furnished to contact with the surface of the photosensitive drum 26.
Further, in the image forming unit 23, a sponge roller 30 serving as developer supply member, and a blade 31 serving as layer regulating member are furnished around the developing roller 28.
Furthermore, on the upside of the image forming unit 23, a toner cartridge 32 is removably attached for accommodating toner serving as developer. The toner cartridge 32 has a toner accommodating space 33 for accommodating toner, and has a shutter (not shown). After the toner cartridge 32 is installed in a predetermined position, when a lever (not shown) is rotated, the shutter of the toner cartridge 32 is opened, the toner accommodated in the toner accommodating space 33 is replenished to a toner keeping space 34 inside the image forming unit 23 and is kept in the toner keeping space 34. The toner kept in the toner keeping space 34 is supplied by the developing roller 28, and a toner layer with a predetermined thickness is formed on the surface of the developing roller 28 by the blade 31.
Further, in the image forming unit 23, a sensor section 35 is furnished for detecting toner remainder amount in the toner keeping space 34. Regarding a detail explanation of the sensor section 35, it will be stated below.
When the print medium 18 fed by the paper feeding mechanism section 11 reaches a predetermined position, the printer controlling section controls the charging roller 27 to uniformly charge the surface of the photosensitive drum 26, and controls the exposing unit 24 to emit light. Thereby, on the surface of the photosensitive drum 26, an electrostatic latent image is formed. Then, toner on the developing roller 28 adheres to the electrostatic latent image so that a toner image is formed on the surface of the photosensitive drum 26.
When the print medium 18 is conveyed and reaches between the photosensitive drum 26 and the transfer roller 25, the toner image on the photosensitive drum 26 is transferred onto the surface of the print medium 18 by the transfer roller 25. Then, transfer remainder toner that is remaining on the surface of the photosensitive drum 26 is removed by the cleaning roller 29. The print medium 18 on which the toner image is transferred, is further conveyed to the fixing mechanism section 13.
In the fixing mechanism section 13, the heat roller 16 is driven to rotate, with the rotation of the heat roller 16, the backup roller 17 is also driven to rotate. When the print medium 18 is conveyed in between the heat roller 16 and the backup roller 17, the print medium 18 is heated and pressed so that the toner image transferred in the printing mechanism section 12 is fixed. Later, the print medium 18 is conveyed from the fixing mechanism section 13 to the paper ejecting mechanism section 14.
The paper ejecting mechanism section 14, as shown by
When the print medium 18 which is performed by a fixing process of toner image by the fixing mechanism section 13, is conveyed to the paper ejecting mechanism section 14, through a control of the printer controlling section, the respective ejecting rollers 36˜39 start to rotate. The print medium 18, after conveyed by the ejecting rollers 36˜37, is ejected to the stacker 40 furnished at the upside of the printer 10 by the ejecting rollers 38˜39.
Next, it is to explain a detail structure of the image forming unit 23.
The image forming unit 23 includes a developing device. The developing device has a toner stirring unit as a developer stirring unit. Further, the image forming unit 23 includes a unit body section 41, in the unit body section 41, a toner hopper 43 is furnished as a accommodating tank in which toner 42 is accommodated.
On the upper of the unit body section 41 of the image forming unit 23, the toner cartridge 32 is installed for replenishing the toner 42 to the toner keeping space 34 (
In the toner hopper 43, a stirring bar 44 is furnished as stirring member.
The stirring bar 44 is made from iron in the embodiment, and is rotatively supported by bearing drive member and bearing member that will be described below. The stirring bar 44, as shown by
In the image forming unit 23, the sensor section 35 is placed under the toner hopper 43 as position detection section.
The sensor section 35, as shown by
Further, near to the back edge of the sensor lever 46, a sensor 49 is furnished for detecting position of the back edge of the sensor lever 46. In the embodiment, the sensor 49 is a photo sensor having light emitting element and light receiving element, the sensor 49 detects shining state or shading state and outputs ON/OFF signal to the printer controlling section according to the detection.
For example, on the one hand, as shown by
On the other hand, as shown by
The printer controlling section, as position detecting section and judging section, when ON/OFF signal is inputted from the sensor 49, judges a remainder amount of the toner 42 in the toner hopper 43 on the basis of the signal. That is, when OFF signal is inputted, the printer controlling section judges that the toner remainder amount is not little; when ON signal is inputted, the printer controlling section judges that the toner remainder amount is little.
Moreover, as a position detecting section, instead of the sensor section 35, magnetic sensor also can be applied. In the case, through furnishing a magnet to the inside of the stirring portion 44c of the stirring bar 44, the magnetic sensor detects the strength of magnetic field produced by the magnet. Then, the printer controlling section can obtain position information of the stirring portion 44c on the basis of detection information. The printer controlling section performs a judgment of toner remainder amount on the basis of the obtained position information.
Next, it is to explain structure of toner stirring unit of the embodiment.
In a toner stirring unit 50 of the embodiment, on the side wall portion of the toner hopper 43, a bearing member 51 which supports the stirring bar 44 to possibly rotate, and a bearing drive member 45 are furnished respectively.
The bearing member 51 is fixed on the side wall portion of the toner hopper 43, and couples with the shaft portion 44a′ of the stirring bar 44 as shown by
As shown by
The bearing drive member 45, as bearing member and drive member, is placed on the side wall portion of the toner hopper 43; and couples with the shaft portion 44a as shown by
The bearing drive member 45, as shown by
The cylindrical portion 52 of the bearing drive member 45, as shown by
The cylindrical portion 52, as shown by
The drive portion 52a is a part to press the shaft portion 44a of the stirring bar 44 and drive the stirring bar 44 to rotate.
The slant portion 52b regulates the position of the stirring bar 44 in the rotation axis direction on the basis of the shape of itself, as bearing slant portion.
The contact portion 52c is a part to contact the stirring bar 44 when the stirring bar 44 drops toward the lower dead point position (
The bearing drive member 45 makes one end of the cylindrical portion 52 project toward the outside of the side wall portion of the toner hopper 43. Then, the stirring gear 53 is coupled with the projecting part. The stirring gear 53 rotates with the rotation of the photosensitive drum 26 (
In the image forming unit 23, as shown by
Through rotations in the rotation drive mechanism section, the bearing drive member 45 rotates together with the stirring gear 53 and the cylindrical portion 52. When the drive portion 52a of the cylindrical portion 52 contacts with the shaft portion 44a of the stirring bar 44, the stirring bar 44 is pressed through the drive portion 52a drives the shaft portion 44a so as to rotate together with the bearing drive member 45.
Next, it is to explain rotation operation of the stirring bar 44 in the toner stirring unit 50 in detail.
First is to explain stirring operation to stir the toner 42 in the toner stirring unit 50 and remainder amount judging operation of the toner 42 in the printer 10 on which the toner stirring unit 50 is installed by using drawing, in the case that a lot of toner 42 is accommodated in the toner hopper 43.
In the toner stirring unit 50, the bearing drive member 45 (
The bearing drive member 45 and the stirring bar 44 rotate together, as shown by
In the printer 10 on which the toner stirring unit 50 is installed, the printer controlling section judges the remainder amount of the toner 42 on the basis of an input signal outputted just after the drive portion 52a of the bearing drive member 45 reaches an uppermost position (
The bearing drive member 45 continues to rotate at a predetermined speed after the stirring bar 44 dropped. Then, when the drive portion 52a catches up with the stirring bar 44 to contacts with the shaft portion 44a, the drive portion 52a rotates while pressing the shaft portion 44a. Thereby, the stirring portion 44c of the stirring bar 44 is pressed into the toner 42 accumulated in the toner hopper 43, and rotates while stirring the toner 42 (
As stated above, the remainder amount of the toner 42 in the toner hopper 43 is judged on the basis of signal outputted from the sensor section 35.
Next, it is to explain stirring operation to stir the toner 42 in the toner stirring unit 50 and remainder amount judging operation of the toner 42 in the printer 10, in the case that a little of toner 42 is accommodated in the toner hopper 43.
When the drive portion 52a of the bearing drive member 45 contacts with the shaft portion 44a of the stirring bar 44 (
Then, as shown by
In the printer 10, the printer controlling section judges the remainder amount of the toner 42 in the toner hopper 43 on the basis of an input signal outputted just after the drive portion 52a of the bearing drive member 45 reaches an uppermost position (
The bearing drive member 45 continues to rotate at a predetermined speed, when the drive portion 52a contacts with the shaft portion 44a of the stirring bar 44, the drive portion 52a rotates together with the stirring bar 44 while pressing the shaft portion 44a (
As stated above, it is judged that the stirring bar 44 drops to the lower dead point position, and the remainder amount of the toner 42 is little.
However, in conventional toner stirring unit, in the case that the remainder amount of toner in toner hopper becomes little, as shown by
However, in the toner stirring unit 50 of the embodiment, the stirring bar 44 is supported to possibly rotate along a rotation axis direction through the bearing drive member 45 and the bearing member 51, when the stirring bar 44 drops toward the lower dead point position due to deadweight, once the orthogonal portion 44b contacts with the slant portion 52b of the bearing drive member 45, the orthogonal portion 44b smoothly drops along the slant portion 52b in the contact state. In the case, the stirring bar 44 moves along a direction of an arrow C shown in
Moreover, when the drive portion 52a catches up with the stirring bar 44 to contact with the shaft portion 44a (
As stated above, in the toner stirring unit and the printer of the embodiment, slant portions are furnished on bearing member and bearing drive member, through the bearing member and the bearing drive member, stirring bar is supported to possibly rotate and possibly move along rotation axis direction. Therefore, it is possible to inhibit rebound or vibration when stirring bar drops. As a result, it is possible to correctly judge remainder amount of toner.
A toner stirring unit 60 of the embodiment is different from embodiment 1 to furnish a slant portion 61a on a toner hopper 61.
Moreover, in the embodiment, regarding the same component as that in embodiment 1, it is set to have the same symbol, and its detail explanation is omitted.
In the toner stirring unit 60, on side wall portion of the toner hopper 61, bearing member 62 and bearing drive member 45 to support the stirring bar 44 to possibly rotate, are furnished respectively.
The bearing member 62 is fixed on the side wall portion of the toner hopper 61, and shaft portion 44a′ of the stirring bar 44 is inserted into an open end of the bearing member 62 as shown by
Further, on the open end, as shown by
Regarding stirring operation of the toner stirring unit 60 in the embodiment, it is similar to embodiment 1.
In the case that remainder amount of toner in the toner hopper 61 is little, the stirring bar 44, after being driven to rotate to an upper dead point position by a bearing drive member 45, drops toward the lower dead point position due to deadweight. Then, once the orthogonal portion 44b contacts with the bearing drive member 45, the stirring bar 44 smoothly drops along the slant portion 61a while moving along a direction of an arrow C in
Moreover, when the stirring bar 44 is driven to rotate to an upper dead point position by the bearing drive member 45, once the orthogonal portion 44b′ contacts with the slant portion 61a of the toner hopper 61, the stirring bar 44 rises while moving along a direction of an arrow D (
As stated above, in the toner stirring unit of the embodiment, by comparison with embodiment 1, instead of the slant portion furnished on the bearing member, through furnishing such slant portion on the toner hopper, it is possible to obtain the same effect as that in the embodiment 1. Therefore, it is possible to inhibit chattering phenomenon from happening. As a result, it is possible to correctly judge remainder amount of toner.
In the toner stirring unit of the embodiment, the shape of a slant portion 72b furnished on cylindrical portion 72 of bearing drive member 71 is different from that in embodiment 1.
Moreover, in the embodiment, regarding the same component as that in embodiment 1, it is set to have the same symbol, and its detail explanation is omitted.
In the toner stirring unit of the embodiment, the bearing drive member 71, as bearing member and driving section, has a cylindrical portion 72, and a stirring gear 53 coupled with the cylindrical portion 72.
The cylindrical portion 72 of the bearing drive member 71, as shown by
In the bearing drive member 45 of embodiment 1, the slant portion 52b is formed by cutting the cylindrical portion 52 in straight line shape. However, in the embodiment, in the bearing drive member 71 of the embodiment, as shown by
Regarding stirring operation of the toner stirring unit in the embodiment, it is similar to embodiment 1.
In the case that remainder amount of toner 42 in the toner hopper 43 is little, the stirring bar 44, after being driven to rotate to an upper dead point position by a bearing drive member 71, drops toward the lower dead point position due to deadweight. Then, in a state that the orthogonal portion 44b contacts with the bearing drive member 71, the stirring bar 44 smoothly drops along the slant portion 61a while moving along a rotation axis direction; and the shaft portion 44a collides with the contact portion 72c of the bearing drive member 71 and stops operating. During dropping, because the stirring bar 44 can further smoothly drop on the basis of the shape of the slant portion 72b, so it is possible to further inhibit rebound or vibration of the stirring bar 44 from occurring.
As stated above, in the toner stirring unit of the embodiment, through forming the slant portion of bearing drive member into arc shape, it is possible to further inhibit chattering phenomenon from happening. As a result, it is possible to further correctly judge remainder amount of toner.
In a toner stirring unit 80 of the embodiment, a structure is different from embodiment 1 to form a spring 82 supplying elastic force to bearing member 81.
Moreover, in the embodiment, regarding the same component as that in embodiment 1, it is set to have the same symbol, and its detail explanation is omitted.
In the toner stirring unit 80 of the embodiment, on side wall portion of a toner hopper 83, bearing member 81 and bearing drive member 45 to support the stirring bar 44 to possibly rotate, are furnished respectively.
The bearing member 81 is placed on the side wall portion of the toner hopper 83, and shaft portion 44a′ of the stirring bar 44 is supported to rotate possibly.
In the bearing member 81, as shown by
Regarding stirring operation of the toner stirring unit 80 in the embodiment, it is similar to embodiment 1.
The stirring bar 44 rotates while its position is regulated in the rotation axis direction on the basis of the elastic force supplied by the bearing member 81 via the bearing member 81 and on the basis of the shape of the bearing drive member 45. Then, because the stirring bar 44 smoothly drops due to deadweight along the slant portion 52b of the bearing drive member 45, when the stirring bar 44 collides with the contact portion 52c, such occurrence of rebound or vibration is inhibited.
As stated above, in the toner stirring unit of the embodiment, through furnishing bearing member to move possibly along rotation axis direction and furnishing a spring to supply elastic force to the stirring bar via the bearing member, it is possible to inhibit chattering phenomenon from happening. As a result, it is possible to correctly judge remainder amount of toner.
The toner stirring unit of the embodiment has a similar structure to the toner stirring unit 80 of embodiment 4, but the shape of a slant portion 92b of a cylindrical portion 92 of bearing drive member 91 is different from that in embodiment 4.
Moreover, in the embodiment, regarding the same component as that in embodiment 4, it is set to have the same symbol, and its detail explanation is omitted.
In the toner stirring unit of the embodiment, the bearing drive member 91, as bearing member and driving section, has a cylindrical portion 92, and a stirring gear 53 coupled with the cylindrical portion 92.
The cylindrical portion 92 of the bearing drive member 91, as shown by
In the bearing drive member 45 of embodiments 1 and 4, the slant portion 52b is formed by cutting the cylindrical portion 52 from an approximate center portion toward open end. However, in the embodiment, in the bearing drive member 91 of the embodiment, as shown by
Regarding stirring operation of the toner stirring unit in the embodiment, it is similar to embodiment 4.
The stirring bar 44 rotates while its position is regulated in the rotation axis direction, after passed through the upper dead point position, then, smoothly drops due to deadweight along the slant portion 92b of the bearing drive member 91. Therefore, when the stirring bar 44 collides with the contact portion 92c, such occurrence of rebound or vibration is inhibited.
As stated above, in the toner stirring unit of the embodiment, through changing the shape of the slant portion of the bearing drive member together with supplying elastic force to the stirring bar, it is possible to obtain the same effect as the embodiment 4. As a result, it is possible to correctly judge remainder amount of toner.
In respective embodiments of the present invention, the bearing drive member, as bearing member, includes a slant portion that, as bearing slant portion, has a slant with respect to a direction of rotation axis, on a contact portion with stirring bar serving as stirring member; and the stirring bar moves along an axis direction of rotation axis together with rotating along rotation direction of rotation axis. However, the present invention is not limited in these embodiments.
Further, in the above stated explanation, only such case is explained that the present invention is applied to a printer as an image forming apparatus on which a developing device having a toner stirring unit is installed. However, the present invention is not limited in this case. The present invention also can be applied to various devices such as monochrome printer, copying apparatus, facsimile apparatus, multiplex apparatus having two functions or over and the like.
The present invention is not limited to the foregoing embodiments but many modifications and variations are possible within the spirit and scope of the appended claims of the invention.
Number | Date | Country | Kind |
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2008-018981 | Jan 2008 | JP | national |
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Number | Date | Country |
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09-054488 | Feb 1997 | JP |
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Number | Date | Country | |
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20090190938 A1 | Jul 2009 | US |