This application is based on and claims priority under 35 USC 119 from Japanese Patent Application No. 2022-049095 filed Mar. 24, 2022.
The present disclosure relates to a connection structure and an image forming apparatus.
JP1997-197789A discloses a developer replenishing container having a container body that has an opening portion, a shutter that is for closing the opening portion of the container body, shutter supporting means for supporting the shutter to obtain a closing position where the opening portion is closed and an open position where the opening portion is open by retracting from the closing position, a recessed shutter guide portion that is formed in the shutter supporting means, and a seal member that is attached to a surface of the shutter on an opening portion side over the opening portion and the shutter guide portion, in which in a space formed between both side surfaces, which are substantially parallel to a moving direction of the shutter, and the shutter guide portion, an elastic portion for sealing a part of the space is provided.
JP2010-55035A discloses a toner receiving apparatus that receives a toner replenished from a toner replenishing apparatus having a toner discharging member in which a toner discharge port is formed in a lower surface and a first shutter member which can open and close the toner discharge port, the toner receiving apparatus including a toner receiving member, in which a toner receiving port for receiving the toner discharged from the toner discharge port is formed and the toner receiving port is positioned below the toner discharge port in a case of being connected to the toner discharging member, a second shutter member that can open and close the toner receiving port, and a shutter opening and closing mechanism that brings the second shutter member from a closed state to an open state and then brings the first shutter member from the closed state to the open state, in a case of being connected to the toner replenishing apparatus.
Providing a leading surface for leading a developing machine to a connecting portion for connecting the developing machine to a replenisher is conceivable. However, in a case where the leading surface is provided, a gap between the leading surface and a surface of the developing machine in the vicinity of a receiving port may be wide, and a developer may leak from the gap.
Aspects of non-limiting embodiments of the present disclosure relate to a connection structure and an image forming apparatus that suppress leakage of a developer from a connecting portion between a developing machine and a replenisher compared to a configuration where the developing machine and the replenisher are connected to each other so that an opening and closing member of the developing machine is brought into contact with a leading surface provided at the connecting portion of the replenisher.
Aspects of certain non-limiting embodiments of the present disclosure overcome the above disadvantages and/or other disadvantages not described above. However, aspects of the non-limiting embodiments are not required to overcome the disadvantages described above, and aspects of the non-limiting embodiments of the present disclosure may not overcome any of the disadvantages described above.
According to an aspect of the present disclosure, there is provided a connection structure including a receiving port for a developer, that is provided in a developing machine, a supply port for a developer, that is provided in a replenisher, a connecting portion that is provided in a vicinity of the supply port of the replenisher and connects the developing machine and the replenisher to each other in a state where a developer is suppliable from the supply port to the receiving port in a case where a portion in a vicinity of the receiving port of the developing machine is inserted, a leading surface that is provided at the connecting portion and leads the portion in the vicinity of the receiving port of the developing machine to the connecting portion, an opening and closing member that opens and closes the receiving port by moving in an insertion direction of the developing machine, and a contact member that is provided at the opening and closing member and comes into contact with the leading surface in an elastically deformed state in a case where the developing machine and the replenisher are connected to each other.
Exemplary embodiment(s) of the present invention will be described in detail based on the following figures, wherein:
Hereinafter, one exemplary embodiment of the present disclosure will be described with reference to the drawings. For convenience of description, an arrow UP shown in each drawing will be referred to as an upward direction of an apparatus, an arrow LH will be referred to as a left direction (a left direction in a case of being viewed from the front) of the apparatus, and an arrow FR (a front side of the page in
Image Forming Apparatus
An image forming apparatus 10 of the present exemplary embodiment will be described with reference to
As shown in
The developer G has, as major components, a toner T that is an example of powder charged to a negative polarity and a carrier C made of iron that is an example of a magnetic body charged to a positive polarity and is configured to contain an additive. The toner T is made of, for example, a polyester resin. In addition, the toner image TA is an example of a developer image.
The image forming portion 20 has four photoreceptors 22, four charging rollers 24, four exposure devices 26, and four developing devices 40 corresponding to colors including yellow (Y), magenta (M), cyan (C), black (K), respectively. The image forming portion 20 has one transfer unit 30 and one fixing unit 31. The photoreceptor 22 is an example of an image holding body that can hold an image. The developing device 40 is an example of a developing machine that forms a developer image (toner image TA) on the image holding body (photoreceptor 22).
The photoreceptor 22 is configured by a cylindrical conductive substrate and is rotationally driven in an arrow direction shown with the apparatus front-rear direction as an axial direction. A charge generation layer and a charge transporting layer (both are not shown) are formed at an outer peripheral surface of the conductive substrate configuring the photoreceptor 22. Therefore, an outer peripheral surface of the photoreceptor 22 is brought into a charged state due to discharge caused by a potential difference from the charging roller 24, and an electrostatic latent image is formed (held) on the outer peripheral surface by being irradiated (exposed) with light from the exposure device 26 in this charged state.
The developing device 40 develops the electrostatic latent image formed on the outer peripheral surface of the photoreceptor 22 using the developer G. To describe specifically, the developing device 40 has a housing 42 that is an example of a developing device body storing the developer G replenished from a replenishing device 50, which is an example of a replenisher, a developing roller 44 that is rotatably provided in the housing 42 with the apparatus front-rear direction as an axial direction, and an auger 46 that is rotatably provided in the housing 42 with the apparatus front-rear direction as an axial direction.
The developing roller 44 is formed in a cylindrical shape and is provided with a plurality of magnetic poles (not shown) arranged on an inner peripheral surface side in a circumferential direction. The developing roller 44 holds the developer G replenished from the replenishing device 50 with an outer peripheral surface by means of a magnetic force of the magnetic poles.
The auger 46 is rotatably supported in the housing 42 by a front cover (not shown) and a rear cover 48 of the housing 42. The auger 46 moves the developer G in the housing 42 forward while agitating the developer, by means of a rotational force from a rotational drive unit (not shown). The auger 46 is an example of a transport member that transports a developer.
In the present exemplary embodiment, the photoreceptor 22 and the developing device 40 are integrated with each other. Specifically, the photoreceptor 22 and the developing device 40 are connected to each other by a bracket (not shown). For this reason, the photoreceptor 22 and the developing device 40 are integrally mounted or removed with respect to the apparatus body 12. The present disclosure is not limited thereto, and the photoreceptor 22 and the developing device 40 may be separate bodies. Herein, a mounting direction of the developing device 40, that is, an insertion direction into the apparatus body 12 is rearward in the apparatus front-rear direction. On the other hand, a removing direction of the developing device 40, that is, an opposite direction to the insertion direction into the apparatus body 12 is forward in the apparatus front-rear direction.
As shown in
The transfer unit 30 includes an intermediate transfer belt 32, a primary transfer roller 34, a secondary transfer roller 36, and a facing roller 38 that faces the secondary transfer roller 36 with the intermediate transfer belt 32 sandwiched therebetween.
The transfer unit 30 primarily transfers the toner image TA developed by the developing device 40 onto the intermediate transfer belt 32 by means of a potential difference between the photoreceptor 22 and the primary transfer roller 34. Then, the transfer unit 30 secondarily transfers the toner image TA on the intermediate transfer belt 32 to the recording medium P transported by the transport unit 14 by means of a potential difference between the secondary transfer roller 36 and the facing roller 38.
The fixing unit 31 heats and pressurizes the toner image TA transferred to the recording medium P and fixes the toner image to the recording medium P. The recording medium P to which the toner image TA is fixed by the fixing unit 31 is discharged to, for example, a discharge portion (not shown) provided outside the apparatus body 12. The developer G remaining on the outer peripheral surface of the photoreceptor 22 without being transferred onto the intermediate transfer belt 32 is removed from the outer peripheral surface by a cleaning device 28.
Connection Structure
Next, a connection structure S of the present exemplary embodiment will be described.
As shown in
Receiving Port
As shown in
Supply Port
As shown in
Holder
As shown in
As shown in
As shown in
As shown in
Leading Surface
As shown in
Shutter
As shown in
Seal Member
As shown in
In addition, as shown in
As shown in
In addition, as shown in
In a state where the developing device 40 is connected to the replenishing device 50 via the holder 60, the seal member 70 of the present exemplary embodiment is a member that is bent along the leading surface 66 in a contact state with the leading surface 66. Specifically, the contact portion 74 of the seal member 70 is bent along the leading surface 66 (see
In addition, as shown in
Next, action of the exemplary embodiment of the present disclosure will be described.
In the present exemplary embodiment, in a case where the developing device 40 is connected to the holder 60 of the replenishing device 50, the seal member 70 provided at the receiving port shutter 67 comes into contact with the leading surface 66 in an elastically deformed state, as shown in
In addition, in the present exemplary embodiment, the seal member 70 is in surface-contact with the leading surface 66 as shown in
In addition, in the present exemplary embodiment, since the seal member 70 includes the plate-shaped attachment portion 72 and the plate-shaped contact portion 74, leakage of the developer G may be suppressed compared to a configuration where the tip of the plate-shaped attachment portion 72 is brought into contact with the leading surface 66.
In addition, in the present exemplary embodiment, the tip of the attachment portion 72 of the seal member 70 protrudes from the tip of the receiving port shutter 67. For this reason, in the present exemplary embodiment, as shown in
In addition, in the present exemplary embodiment, the receiving port shutter 67 is biased against the coil spring 68 and is in contact with the holder 60. For this reason, in the present exemplary embodiment, the seal member 70 may be reliably brought into contact with the leading surface 66 compared to a configuration where the receiving port shutter 67 is separated from the holder 60.
In addition, in the present exemplary embodiment, the rear cover 48 is provided at the receiving portion 76 that receives the developer G. As shown in
In addition, in the present exemplary embodiment, the contact portion 74 of the seal member 70 extends in the direction intersecting (a direction orthogonal to, in the present exemplary embodiment) the moving direction of the receiving port shutter 67. For this reason, the developer G adhered in the vicinity of the receiving port 49 may be sent to the receiving portion 76 compared to a case where the contact portion 74 is inclined to an opposite side to the insertion direction of the developing device 40. In particular, as the contact portion 74 of the seal member 70 extends in a direction orthogonal to the attachment portion 72, the developer G may be effectively sent to the receiving portion 76.
In addition, in the present exemplary embodiment, since the image forming apparatus 10 includes the connection structure S, leakage of the developer G from the space between the developing device 40 and the replenishing device 50 is suppressed. For this reason, in the present exemplary embodiment, contamination caused by the developer G in the image forming apparatus 10 may be suppressed compared to a configuration of not including the connection structure S. In particular, since the developer G is received by the receiving portion 76, the contamination caused by the developer G in the image forming apparatus 10 is effectively suppressed compared to a configuration of not including the receiving portion 76.
Although the seal member 70 formed of a resin material is brought into contact with the leading surface 66 to suppress leakage of the developer G in the exemplary embodiment described above, the present disclosure is not limited to this configuration. For example, as shown in
In addition, although the seal member 70 is in surface-contact with the leading surface 66 in the exemplary embodiment described above, the present disclosure is not limited to this configuration, and the seal member 70 may be configured to be in line-contact with the leading surface 66. Also in this case, leakage of the developer G from the space between the developing device 40 and the holder 60 of the replenishing device 50 may be suppressed.
In addition, although the seal member 70 includes the plate-shaped attachment portion 72 and the plate-shaped contact portion 74 in the exemplary embodiment described above, the present disclosure is not limited to this configuration. For example, a block-shaped seal member may be provided at the tip of the receiving port shutter 67.
In addition, although the tip (rear end) of the attachment portion 72 protrudes from the tip (rear end) of the receiving port shutter 67 in the exemplary embodiment described above, the present disclosure is not limited to this configuration. Even in a case where the tip of the attachment portion 72 is at the same position as the tip of the receiving port shutter 67, the tip of the attachment portion may be on the front.
In addition, although the receiving port shutter 67 is biased against the coil spring 68 and is in contact with the holder 60 in the exemplary embodiment described above, the present disclosure is not limited to this configuration. For example, the receiving port shutter 67 may be in contact with the holder 60 via the seal member 70.
In addition, although the tip of the attachment portion 72 of the seal member 70 protrudes from or is at the same position as the rear end of the rear cover 48 in a state where the receiving port shutter 67 closes the receiving port 49 in the exemplary embodiment described above, the present disclosure is not limited to this configuration. For example, the tip of the attachment portion 72 of the seal member 70 may be in front of the rear end of the rear cover 48 in a state where the receiving port shutter 67 closes the receiving port 49.
In addition, although the contact portion 74 of the seal member 70 extends in the direction orthogonal to the attachment portion 72, in other words, has an L-shape in side view in the exemplary embodiment described above, the present disclosure is not limited to this configuration. The contact portion 74 of the seal member 70 may be inclined toward the apparatus front with respect to the attachment portion 72.
The present disclosure is not limited to the exemplary embodiment, and various modifications, changes, and improvements can be made without departing from the gist thereof. For example, the plurality of modification examples described above may be configured in combination as appropriate.
The foregoing description of the exemplary embodiments of the present invention has been provided for the purposes of illustration and description. It is not intended to be exhaustive or to limit the invention to the precise forms disclosed. Obviously, many modifications and variations will be apparent to practitioners skilled in the art. The embodiments were chosen and described in order to best explain the principles of the invention and its practical applications, thereby enabling others skilled in the art to understand the invention for various embodiments and with the various modifications as are suited to the particular use contemplated. It is intended that the scope of the invention be defined by the following claims and their equivalents.
Number | Date | Country | Kind |
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2022-049095 | Mar 2022 | JP | national |
Number | Name | Date | Kind |
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5614996 | Tanda | Mar 1997 | A |
20170153576 | Fujimura | Jun 2017 | A1 |
Number | Date | Country |
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H09197789 | Jul 1997 | JP |
2010055035 | Mar 2010 | JP |