This application is based on and claims the benefit of priority from Japanese Patent application No. 2016-230237 filed on Nov. 28, 2016, the entire contents of which are incorporated herein by reference.
The present disclosure relates to a fixing device and an image forming apparatus.
For example, it is known that a fixing device includes a fixing film, a pressuring roller and a pressure releasing means releasing a pressure contact state of the fixing film and the pressuring roller. The pressure releasing means has a driving member, a following member (an eccentric cam) and a buffering member. The driving member is driven and rotated by a driving means. The following member is rotatable with a rotating shaft of the driving member, follows with respect to the driving member with a predetermined play in a rotation direction, and has a cam face releasing the pressure contact state of the fixing film and the pressuring roller. The buffering member controls the predetermined play between the driving member and the following member in the rotation direction. Moreover, the following member has a gap into which the driving member and the buffering member are fitted with predetermined play in the rotation direction.
The above-mentioned fixing device may reduce impulsive sound occurring in accordance with overrunning of the following member, but cannot restrain overrunning of the following member.
In accordance with the present disclosure, a fixing device includes a heating body, a pressuring body, a lateral plate, a first supporting body, a second supporting body, a tensile spring, an eccentric cam, and a driving part. The heating body is rotated and heats a medium on which a toner image is formed. The pressuring body forms a nip with the heating roller, is rotated and pressures the medium passing through the nip. The lateral plate supports one body of the heating body and the pressuring body rotatably. The first supporting body is swingably supported to the lateral plate and supports other body being against the one body rotatably. The second supporting body is swingably supported to the lateral plate and includes a rotatable roller. The tensile spring is connected between the first supporting body and the second supporting body at its both ends to pull the first supporting body to a side of the second supporting body. The eccentric cam is rotatably supported at a position between the first supporting body and the second supporting body in the lateral plate, makes its outer circumference face come into contact with the roller, and is rotated to change a posture of the second supporting body and to extend and contract the tensile spring, and thereby, changes a nip pressure of the nip to a first pressure or a second pressure lower than the first pressure. The driving part includes a gear train connected to the eccentric cam to transmit torque rotating the eccentric cam to the eccentric cam and a driving source driving the gear train. In the outer circumference face, in a portion coming into contact with the roller between a first portion making the first pressure of the nip pressure and a second portion making the second pressure of the nip pressure, at least one depression receiving insertion of the roller is formed.
In accordance with the present disclosure, an image forming apparatus includes a forming part forming a toner image onto a medium; and the above-described fixing device fixing the toner image formed on the medium by the forming part to the medium.
The above and other objects, features, and advantages of the present disclosure will become more apparent from the following description when taken in conjunction with the accompanying drawings in which a preferred embodiment of the present disclosure is shown by way of illustrative example.
Hereinafter, entire structure of an image forming apparatus 10 (refer to
In the following description, arrows Fr and Rr in the drawings respectively correspond to a near side and a far side in an apparatus depth direction, arrows R and L in the drawings respectively correspond to a right side and a left side in an apparatus width direction, and arrows U and Lo in the drawings respectively correspond to an upper side and a lower side in an apparatus height direction. The specification will be described so that a state of the image forming apparatus 10 as viewed from the near side in the apparatus depth direction is estimated to be a front side of the image forming apparatus 10.
Firstly, the entire structure of the image forming apparatus 10 will be described. The image forming apparatus 10 is an electrographic type apparatus configured to, as shown in
The sheet feeding cartridge 20 has a function containing a so-called plain paper, an envelope and other mediums S. The sheet feeding cartridge 20 is located at a lower side inside the image forming apparatus 10 in the apparatus height direction. The sheet feeding cartridge 20 is composed of, as one example, a first sheet feeding cartridge 20A and a second sheet feeding cartridge 20B. The first sheet feeding cartridge 20A contains the plain paper and the second sheet feeding cartridge 20B contains another cardboard (a thicker paper than the plain paper), such as the envelope. Moreover, containing of the plain paper in the first sheet feeding cartridge 20A and containing of the cardboard in the second sheet feeding cartridge 20B (hereinafter, called as containing information) are inputted from a user interface UI (refer to
The toner image forming part 30 has a function carrying out respective steps of electric charging, exposing and developing to form a toner image carried on a belt TB described later. The toner image forming part 30 is composed of single color units 31Y, 31M, 31C and 31K respectively forming toner images of different colors (Y (yellow), M (magenta), C (cyan) and K (black)). Each of the single color units 31Y, 31M, 31C and 31K includes a photosensitive body 32, a charging device 34, an exposing device 36 and a developing device 38. Incidentally, in
The transferring device 40 includes the endless belt TB and has a function primarily transferring the toner image formed by the toner image forming part 30 onto the rotating belt TB (in an arrow A direction in
The conveying device 50 has a function conveying the medium S contained in the sheet feeding cartridge 20 along a conveying path (a two-dot chain line P in
The fixing device 60 has a function fixing the toner image secondarily transferred on the medium S by the transferring device 40 onto the medium S. The fixing device 60 is located above the transferring device 40 in the apparatus height direction and at a right side as viewed from a front side of the image forming apparatus 10. The fixing device 60 will be described in detail later.
The controlling part CU has a function control each component composing the image forming apparatus 10 (refer to
Each component of the image forming apparatus 10 was described above, and further, combination (hereinafter, called as a forming part 30A) of the toner image forming part 30 and the transferring device 40 can be regarded to have a function forming the toner image onto the medium S.
Next, the image forming operation of the image forming apparatus 10 of the embodiment will be described with reference to
The controlling part CU, when receiving image data from an external device (not shown) and receiving job data having data of the medium S as an image formed object and other data, operates each component of the image forming apparatus 10.
Here, the controlling part CU, in accordance with a control flow shown in
Then, when the toner image forming part 30 is operated, in each of the single color units 31Y, 31M, 31C and 31K, the charging device 34 electrically charges the photosensitive body 32, the exposing device 36 exposes the photosensitive body 32 to form a latent image on the photosensitive body 32, and the developing device 38 develops the latent image on the photosensitive body 32 to the toner image. As a result, the toner image is formed on the photosensitive body 32.
Subsequently, when the transferring device 40 and the conveying device 50 are operated, the toner image formed by the toner image forming part 30 is primarily transferred onto the belt TB. Moreover, at a timing when the toner image primarily transferred on the belt TB is secondarily transferred, the medium S contained in the sheet feeding cartridge 20 is conveyed by the conveying device 50, and then, the toner image carried by the belt TB is secondarily transferred onto the medium S. The medium S with the secondarily transferred toner image is conveyed to the fixing device 60 by the conveying device 50.
After that, when the fixing device 60 is operated and the medium S with the secondarily transferred toner image is conveyed to the fixing device 60, the toner image secondarily transferred on the medium S is fixed onto the medium S (the image is formed on the medium S).
Incidentally, the normal mode and the special mode are different in the nip pressure between the heating roller 61 and the pressuring roller 62 and its detail will be described in the description of the changing operation of the nip pressure of the fixing device 60.
Further, the medium S with the fixed toner image (the medium S on which the image is formed) is ejected to the outside of the image forming apparatus 10 by the conveying device 50, and then, the image forming operation is completed.
Next, the structure of the fixing device 60 as a main component of the embodiment will be described in detail with reference to
The fixing device 60 is configured to include a housing HG, the heating roller 61 (one example of a heating body), a heating source HT, the pressuring roller (one example of a pressuring body), lateral plates 63, first supporting bodies 64, coil springs CS, second supporting bodies 65, tensile springs ES, eccentric cams 66, a shaft 67 and a driving part 68. The housing HG, the heating roller 61, the heating source HT, the pressuring roller 62 and the shaft 67 have respective longitudinal sizes and are arranged in a state that respective longitudinal directions are parallel to the apparatus depth direction. Moreover, the fixing device 60 has a longitudinal size and is attached to a main body of the image forming apparatus 10 in a state that its longitudinal direction is parallel to the apparatus depth direction (refer to
The housing HG has a function housing components composing the fixing device 60 other than the housing HG in its inside. The housing HG is formed, as one example, in a rectangular shape as viewed from the front side of the image forming apparatus 10. At a lower side of the housing HG, an inlet HG1 is formed into which the medium S conveyed in the conveying path P by the conveying device 50 is inputted. At an upper side of the housing HG, an outlet HG2 is formed into which the medium S conveyed in the conveying path P by the conveying device 50 is outputted from the fixing device 60.
The heating roller 61 has a function heating the toner image (a toner composing it) formed on the medium S by the forming part 30A and the medium S. The heating roller 61 is, as shown in
The heating source HT is, as one example, a halogen lamp. The heating source HT is, as shown in
Incidentally, in parts at both ends of the heating roller 61, flanges (not shown) are fitted and fixed. Moreover, the respective flanges are rotatably supported to a pair of lateral plates 63 described later.
The pressuring roller 62 has a function pressuring, with the heating roller 61, the toner image (the toner composing it) formed by the toner image forming part 30 and secondarily transferred on the medium S by the transferring device 40 and the medium S, on other words, the toner image (the toner composing it) formed on the medium S by the forming part 30A (refer to
To one end of the metal shaft of the pressuring roller 62, a driving source (not shown) is connected. Moreover, the pressuring roller 62 is driven by the driving source and rotated around an axis (rotated in a clockwise direction as viewed from the front side) to rotate the heating roller 61.
The lateral plates 63 have, as shown in
The first supporting bodies 64 have a function supporting the pressuring roller 62 as being rotatable around the axis. The first supporting bodies 64 are, as shown in
The second supporting bodies 65 are, as shown in
The case 70 is, as shown in
The second pin 72 is, as shown in
The tensile springs ES are, as shown in
The eccentric cams 66 have a function rotating around an axis to swing the second supporting bodies 65. On other words, the eccentric cam 66 has a function rotating around the axis to change a posture of the second supporting body 65 and to extend and contract the tensile spring ES. The eccentric cam 66 is fitted to an outer circumference of the shaft 67 and fixed to the outer circumference at both end sides of the shaft 67. The shaft 67 is, as shown in
The eccentric cam 66 is, as shown in
The second faces 84 will be described as follows. One second face 84A of the pair of second faces 84 is, as shown in
In the embodiment, when the shaft 67 is rotated around the axis by the driving part 68 described later, the eccentric cam 66 is rotated around the axis. In such a case, the shaft 67 is set so as to stop after rotating by 180 degrees in the clockwise direction as viewed from a front side with respect to a standard (zero agree) as being the initial position of the eccentric cam 66. Moreover, the eccentric cam 66 makes the second face 84B come into contact with the roller 73, and simultaneously, rotates around the axis during a period changing its posture from the initial position to the special position. That is, during the period changing the posture from the initial position to the special position, the eccentric cam 66 is rotated around the axis while making the roller 73 insert in the plurality of depressions 84B1 in order in the middle way of rotating and making the roller 73 come into contact with the second face 84B. Therefore, during the period changing the posture of the eccentric cam 66 from the initial position to the special position, rotation of the eccentric cam 66 is braked every time the roller 73 is inserted into each depression 84B1. Incidentally, as the posture of the eccentric cam 66 is changed from the initial position to the special position, a portion at the lower end side of the case 70 is pulled by the tensile spring ES (the tensile spring ES is contracted), and then, a posture of the second supporting body 65 is changed (refer to
The driving part 68 has a function rotating the shaft 67, to which the eccentric cam 66 is fixed, around the axis. The driving part 68 is configured to include a driving source 90 (refer to
The driving source 90 has a function driving the gear train 92. The driving source 90 is, as one example, a motor. The gear train 92 is an assembly of a plurality of gears. The gear train 92 is connected to a gear (not shown) fixed to one end side of the shaft 67. Moreover, the gear train 92 is driven by the driving source 90 to rotate the shaft 67 around the axis. On other words, the gear train 92 is connected to the eccentric cam 66 via the shaft 67 and the gear of the shaft 67 to have a function transmitting a torque rotating the eccentric cam 66 around the axis to the eccentric cam 66.
Next, the changing operation of the nip pressure of the fixing device 60 will be described with reference to
The controlling part CU transmits a remote signal to the fixing device 60 when receiving the job data from the external device (not shown). Moreover, the controlling part CU drives the driving source (not shown) of the pressuring roller 62 to rotate the pressuring roller 62 around the axis by a predetermined rotation speed. According to this, the heating roller 61 is rotated by a predetermined rotation speed by following to the pressuring roller 62. In addition, in order to heat the heating roller 61, the heating source HT is activated.
Further, the controlling part CU, in accordance with the control flow shown in
By contrast, if decision of the controlling part CU at the decision step S10 is negative (it is decided that the medium S is the envelope (one example of the cardboard)), the controlling part CU selects the special mode at the step S30. In such a case, the controlling part CU rotates the eccentric cam 66 in the clockwise direction as viewed from the front side with respect to the initial position as the standard (refer to
Further, after the medium S having the formed image passes through the outlet HG2 of the fixing device 60, in a case of the normal mode, the controlling part 60 stops operation of all components to complete the fixing operation. Alternatively, after the medium S having the formed image passes through the outlet HG2 of the fixing device 60, in a case of the special mode, the controlling part 60 changes the posture of the eccentric cam 66 from the special position to the initial position (refer to
Next the effect of the embodiment will be described with reference to the drawings.
For example, in a case of a fixing device 60A of a comparative embodiment shown in
By contrast, in the fixing device 60 of the present embodiment, as a difference from the fixing device 60A of the comparative embodiment, in the second face 84B coming into contact with the roller 73 in a case where the posture of the eccentric cam 66 is changed from the initial position to the special position, the depressions 84B1 receiving insertion of the part (the roller 73) of the second supporting body 65 are formed (refer to
Therefore, in the fixing device 60 of the present embodiment, in comparison with a case no depression 84B1 receiving insertion of the part (the roller 73) of the second supporting body 65 is formed in the second face 84B coming into contact with the roller 73 while the posture of the eccentric cam 66 is changed from the initial position to the special position, the eccentric cam 66 is hard to overrun (overrunning of the eccentric cam 66 is restrained). Accordingly, in the fixing device 60 of the present embodiment, impulsive sound according to overrunning of the eccentric cam 66 is hard to occur (or even if impulsive sound occurs, its sound pressure may be reduced).
In addition, in the fixing device 60 of the present embodiment, structure braking the eccentric cam 66 as the tensile spring ES is contracted with respect to the second supporting body 65 and the eccentric cam 66 can be actualized by simple structure to the extent of forming the depression 84B1. Therefore, in the fixing device 60 of the present embodiment, it is possible to make overrunning of the eccentric cam 66 hard by the simple structure. On other words, it is possible to restrain overrunning of the eccentric cam 66 when the tensile spring ES is contrasted by rotating the eccentric cam 66 with the driving device 68.
Moreover, in the fixing device 60 of the present embodiment, the depressions 84B1 formed in the eccentric cam 66 are plural. Therefore, in the fixing device 60 of the present embodiment, in comparison with a case where the depression 84B1 is single (refer to an eccentric cam 66B of a first modified example in
Although, as described above, the present disclosure was described by citing the present embodiment as an example, the present disclosure is not restricted by the present embodiment. For example, in the technical scope of the present disclosure, the following embodiment is included.
For example, the fixing device 60 of the present embodiment was described so that the heating roller 61 is supported to the lateral plate 63 and the pressuring roller 62 is supported to the first supporting body 64. However, those supporting the rollers may be reversed.
Moreover, the fixing device 60 of the present embodiment was described so that one example of the heating body is the heating roller 61. However, one example of the heating body may be an endless belt.
Further, the fixing device 60 of the present embodiment was described so that the eccentric cam 66 is the semi-elliptic shape member (refer to
The configuration of the present disclosure may be applied to any one of various image forming apparatuses, such as a printer, a copying machine, a facsimile or a multifunction peripheral.
Incidentally, the above-description of the embodiments was described about one example of the fixing device and the image forming apparatus including this according to the present disclosure. However, the technical scope of the present disclosure is not limited to the embodiments. Components in the embodiment described above can be appropriately exchanged with existing components, and various variations including combinations with other existing components are possible. The description of the embodiment described above does not limit the content of the disclosure described in the claims.
Number | Date | Country | Kind |
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2016-230237 | Nov 2016 | JP | national |
Number | Name | Date | Kind |
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20160291514 | Fukunaga | Oct 2016 | A1 |
20170205743 | Kamiya | Jul 2017 | A1 |
20180011436 | Sato | Jan 2018 | A1 |
Number | Date | Country |
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2014-048597 | Mar 2014 | JP |
2014-199386 | Oct 2014 | JP |
Number | Date | Country | |
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20180150007 A1 | May 2018 | US |