1. Field of the Invention
The present invention relates to an image forming apparatus including a gear mechanism, an opening/closing mechanism, and an opening/closing member.
2. Description of Related Art
An image forming apparatus has a damper mechanism in order to prevent the occurrence of a fault that a cover provided thereon closes too quickly (Japanese Patent Application Laid-open No. 07-244410).
If the damper mechanism is provided, it is necessary to prevent the cover from being not closed completely by receiving a reaction force of the damper. According to a conventionally proposed concept, a fractional gear is engaged with a gear which receives a force of the damper and when the cover is closed, the fractional gear is released from the engagement, so that the reaction force of the damper is not received.
However, according to this structure, when the fractional gear is about to be released from the engagement, the engagement between the fractional gear and the gear having the damper is maintained by engagement of only a tooth of the fractional gear. In a condition of the engagement with this single tooth, the reaction force of the damper applied to the tooth of the fractional gear becomes large and a large shock sound occurs when the engagement of the fractional gear is released. For this countermeasure, it is necessary to use a large fractional gear so as to reduce a reaction force of the damper applied to the tooth, thereby softening the shock sound.
An object of the invention is to provide a gear mechanism, an opening/closing mechanism, and an image forming apparatus capable of reducing a sound which occurs when engagement of the gears is released while reduction of the gear size is ensured.
To achieve above-mentioned object, an opening/closing mechanism according to the present invention comprises:
an opening/closing member capable of opening and closing with respect to a main body;
a first gear having a tooth portion and a portion with no teeth, the first gear rotating with opening and closing of the opening/closing member;
a second gear engaging the first gear, provided rotatably on the main body; and
a cam mechanism including a cam rotatable with the first gear and a cam contact portion making contact with the cam, wherein
when the opening/closing member is opened, the second gear engages the tooth portion of the first gear and when the opening/closing member is closed, the second gear opposes the portion with no teeth of the first gear, and
when the opening/closing member is rotated to be closed so that it is moved from an opening/closing angle in which the second gear opposes the tooth portion of the first gear to an opening/closing angle in which the second gear opposes the portion with no teeth of the first gear, the cam mechanism acts to bring the axes of the first gear and the second gear away from each other.
An opening/closing mechanism according to the present invention comprises:
an opening/closing member capable of opening and closing with respect to a main body;
a first gear rotating with opening and closing of the opening/closing member;
a second gear engaging the first gear; and
a cam mechanism acts to bring the axes of the first gear and the second gear away from each other when the opening/closing member is closed.
In addition, a gear mechanism according to the present invention comprises:
a first gear;
a second gear which engages the first gear; and
a cam mechanism including a cam portion provided on one of the first gear and the second gear and a cam contact portion which is provided on the other gear of the first gear and the second gear and makes contact with the cam portion, the cam mechanism acting to releasing the engaging of the first gear and the second gear by bring the axes of the first gear and the second gear away from each other.
According to the present invention, the sound which occurs when the engagement of the gears is released can be relaxed.
Hereinafter, the preferred embodiments of the present invention will be described with reference to the accompanying drawings. In all Figures of following embodiments, like reference numerals are attached to the same or corresponding components.
Hereinafter, the first embodiment of the present invention will be described with reference to the drawings.
As shown in
A sheet feeding portion 6 is provided on the bottom of the image forming apparatus main body 1. The image forming apparatus main body 1 includes inside of the body an image forming portion 7 as an image forming means, a transfer unit 8 as a transfer means, a fixing unit 9 as a fixing means and a normal sheet discharge portion 10.
The transfer unit 8 is a unit for transferring an image formed by the image forming portion 7 to a sheet. The fixing unit 9 is a unit for fixing a toner image transferred to the sheet. The normal sheet discharge portion 10 is a means for discharging a sheet on which the toner image is fixed out of the apparatus.
The sheet discharged out of the normal sheet discharge portion 10 of the apparatus main body 1 is conveyed to the top of the image forming apparatus main body 1 by the relay conveying unit 2 which is a conveying device for conveying the sheet on which the image is formed by the image forming portion 7. This sheet is conveyed into the sheet post-processing unit 3 provided on the side face of the image forming apparatus main body 1 and after the sheet post-processing is performed, it is discharged onto a discharged sheet tray 11 provided in the sheet post-processing unit 3.
(Relay Conveying Unit)
Next, the relay conveying unit 2 as a relay conveying means will be described.
As shown in
A one-way type damper mechanism 23 is provided at a hinge portion of the upper cover 21 of the relay conveying unit 2. Further, the relay conveying unit 2 is provided with the lower cover 22 which makes a pair with the upper cover 21. The upper cover 21 and the lower cover 22 are connected through the damper mechanism 23. The damper mechanism is so constructed that a force of the damper of the damper mechanism 23 is applied in the direction of closing the upper cover 21. Because the force of the damper of the damper mechanism 23 is applied, the upper cover 21 can be blocked from being closed suddenly thereby preventing something from being sandwiched by the upper cover 21 and the lower cover 22.
The opening/closing mechanism is constituted of the upper cover 21, the lower cover 22 as a main body of the opening/closing mechanism and the damper mechanism 23.
The fractional gear 24 has a cam 25 integrated therewith on an identical axis. The damper gear 26 is supported rotatably by the lower cover 22. The damper gear 26 has a flange 27 integrated with the gear on an identical axis. The fractional gear 24 and damper gear 26 are urged by a spring 28 in the direction that they approach each other. The factional gear 24 and damper gear 26 are constructed to be capable of departing from each other by the cam 25.
As shown in
If the upper cover 21 is rotated in its closing direction, the fractional gear 24 continues to rotate so that the condition shown in
When the upper cover 21 is rotated in the closing direction from the condition of
That is, when the upper cover 21 is rotated in the closing direction, the damper gear 26 is moved from an opening/closing angle in which the damper gear 26 opposes the tooth portion of the fractional gear 24 to an opening/closing angle in which the damper gear 26 opposes the portion having no tooth of the fractional gear 24. At this time, the cam 25 and the flange 27 act to bring the axes of the fractional gear 24 and the damper gear 26 away from each other so that the engagement between the damper gear 26 and the fractional gear 24 is released. Consequently, a force applied to the tooth face is relaxed. Thus, a sound generated when the tooth of the fractional gear 24 and the tooth of the damper gear 26 leave each other is relaxed.
In the meantime, in the first embodiment, the backlash between the damper gear 26 and the fractional gear 24 is set to 0.1 mm and the quantity of departure is set to 1 mm.
As described above, according to the first embodiment, the cam 25 is provided coaxially with the fractional gear 24 which interlocks with the upper cover 21 as the opening/closing member. Then, the flange 27 as a cam contact portion which receives the cam 25 is provided on the damper gear 26 which produces a force, a damper force, resisting to the motion of the upper cover 21 when the upper cover 21 is rotated in the closing direction. Consequently, without use of a large fractional gear, tooth skip sound which occurs when the reaction force of the damper is applied can be relaxed largely when the upper cover of the relay conveying unit is closed.
In the meantime, this embodiment presents an example in which a problem about sound generated when the tooth of the gear is disengaged by a damping force of the damper 29 because the damper 29 is connected to the shaft of the damper gear 26 is conceivable. However, even an example in which no damper is incorporated in a gear which engages the fractional gear can relax generation of the sound by keeping the axes of the two gears away from each other by means of the cam mechanism as already explained.
Next the image forming apparatus of the second embodiment of the present invention will be described. In the second embodiment, description of the same structure as the first embodiment is omitted.
As shown in
The image reading unit 13 is provided on the top of the image forming apparatus main body 1. A sheet feeding means 6 is provided on the bottom of the image forming apparatus main body 1. The transfer unit 8, the fixing unit 9 and the normal sheet discharge portion 10 are provided above this sheet feeding means 6.
The image forming portion 7 is an image forming means for forming an image on a sheet. The transfer unit 8 is a unit for transferring an image formed by the image forming portion 7 to the sheet. The fixing unit 9 is a unit for fixing the toner image transferred to the sheet onto the sheet. The normal sheet discharge portion 10 is a unit for discharging the sheet on which the toner image is fixed out of the apparatus main body 1.
As shown in
As shown in
The second embodiment can provide the same effect as the first embodiment.
The embodiments of the present invention have been described specifically above. The present invention is not restricted to the above-described embodiments but may be modified in various ways based on the technical philosophy of the present invention. For example, numeric values mentioned in the above embodiments are just an example and a different value may be used depending on a necessity.
This application claims priority from Japanese Patent Application No. 2006-71147 filed Mar. 15, 2006, which hereby incorporated by reference herein.
Number | Date | Country | Kind |
---|---|---|---|
2006-071147 | Mar 2006 | JP | national |
Number | Name | Date | Kind |
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Number | Date | Country |
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2-19563 | Feb 1990 | JP |
4-75073 | Jun 1992 | JP |
07-244410 | Sep 1995 | JP |
7-326102 | Dec 1995 | JP |
2001-088854 | Apr 2001 | JP |
Number | Date | Country | |
---|---|---|---|
20080034909 A1 | Feb 2008 | US |