This application is based on and claims priority under 35 USC 119 from Japanese Patent Application No. 2017-179085 filed Sep. 19, 2017.
The present invention relates to a retracting device, an accommodating device, and an image forming apparatus
A function (retracting function) is known that enables an accommodating unit, when the accommodating unit is accommodated into a body apparatus, to be accommodated into the body apparatus without requiring a user to apply a force to the accommodating unit after the accommodating unit has been retracted to a predetermined position in the body apparatus by the user.
According to an aspect of the invention, there is provided a retracting device including a housing that is disposed in or on an accommodating unit, the accommodating unit being configured to be pulled out from a body apparatus that includes a protrusion, and that has a groove extending from a first position to a second position and having an opening formed at the first position, the first position corresponding to a position of the protrusion when the accommodating unit moving in a direction in which the accommodating unit is accommodated into the body apparatus reaches a predetermined position and the second position corresponding to a position of the protrusion when the accommodating unit is accommodated in the body apparatus, and a movable unit that is disposed in the housing and that moves, when the accommodating unit reaches the predetermined position and the protrusion enters the opening, while holding the protrusion in such a manner as to cause the protrusion to move along the groove and with respect to the housing toward the second position.
Exemplary embodiments of the present invention will be described in detail based on the following figures, where in:
Configuration
As illustrated in
The sheet-feeding units 13 accommodate recording media and feed the recording media to the image forming unit 12. The recording media are, for example, sheets. The recording media, however, are not limited to sheets and may be any media as long as images are to be formed thereon. As illustrated in
The housing 10 has a side surface 10a that forms an end surface of the housing 10 facing the direction of arrow −x in
For example, when supplying the recording media to one of the sheet-feeding units 13, a user pulls out the sheet-feeding unit 13 from the front surface of the housing 10 in the pull-out direction. As a result, the sheet-feeding unit 13 is moved from the closed position illustrated in
In this case, once the sheet-feeding unit 13 has reached a predetermined position between the open position and the closed position, the sheet-feeding unit 13 is retracted into the housing 10 by a corresponding one of retracting devices 30 and reaches the closed position. Consequently, a user does not need to keep pushing the sheet-feeding unit 13 until the sheet-feeding unit 13 reaches the closed position. The predetermined position is, for example, a position that is spaced away from the closed position by an amount equal to a retraction distance on a straight line connecting the open position and the closed position. The retraction distance may be, for example, in a range of about a few centimeters to about a few tens of centimeters. The function of retracting the sheet-feeding unit 13 is provided as a result of one of protruding portions 20 and the corresponding retracting device 30 cooperating with each other.
Each of the support portions 21 has an L shape. Each of the support portions 21 has a first surface 211 fixed to the side surface 10a of the housing 10 in such a manner as to be located inside the housing 10 and a second surface 212 extending from toward the inside of the housing 10 the side surface 10a in the direction of arrow x in
The sheet-feeding units 13 are provided with the retracting devices 30. Each of the retracting devices 30 serves to cause the corresponding sheet-feeding unit 13 to retract into the housing 10 by using the corresponding protruding portion 20 as a fixed fulcrum. As illustrated in
The housing 31 has a box shape and accommodates the movable unit 32, the elastic member 33, the transmission members 34a and 34b, and the damper 35. In other words, the movable unit 32, the elastic member 33, the transmission members 34a and 34b, and the damper 35 are disposed in the housing 31. The housing 31 is an example of a second housing. At least a portion of the housing 31 is integrated with a housing of the corresponding sheet-feeding unit 13. For example, the lid of the housing 31 may be formed of the housing of the sheet-feeding unit 13. The housing 31 has a bottom surface 31a that forms an end surface of the housing 31 facing the direction of arrow −z in
The groove 36 is, for example, a through groove and extends from a start position P1 to an end position P2. The start position P1 is an example of a first position, and the end position P2 is an example of a second position. At least a portion of the groove 36 has a curved shape. The start position P1 is a position corresponding to the position of the protrusion 23 when the sheet-feeding unit 13 reaches the predetermined position. The position corresponding to the position of the protrusion 23 is, for example, a position at which the protrusion 23 is present. In the housing 31, the start position P1 is located at an end in the direction of arrow y in
The movable unit 32 has a plate-like shape and is rotatably supported by a shaft 321. A cutout portion 322 is formed in a first end portion of the movable unit 32. When the sheet-feeding unit 13 is moved from the open position in the retraction direction and reaches the predetermined position, the protrusion 23 enters the opening 361. The cutout portion 322 has a shape corresponding to the protrusion 23. The cutout portion 322 receives and holds the protrusion 23, which has entered the opening 361. The protrusion 23 is inserted into the cutout portion 322 and fixed in place in the cutout portion 322.
The elastic member 33 applies a force that causes the movable unit 32 to rotate in a rotation direction D1 in
The movable unit 32 has the center of gravity G1 at a position where a moment in the rotation direction D1 in
More specifically, the movable unit 32 is formed in a shape such that the center of gravity G1 is located at the position where the moment in the rotation direction D1 is equal to or lower than the threshold. For example, the movable unit 32 has a hole 323 formed between the shaft 321 and the cutout portion 322. As a result, the center of gravity G1 is located at a position that is superposed with the shaft 321. The position of the center of gravity G1 is an example of a target position.
Note that the rear edge of the first end portion of the movable unit 32 in the rotation direction D1 is in contact with the housing 31, and thus, in the state illustrated in
The transmission members 34a and 34b transmit a rotational force of the movable unit 32 to the damper 35. The transmission members 34a and 34b are, for example, gears. The transmission member 34a is connected to the movable unit 32. The transmission member 34b is connected to the transmission member 34a and the damper 35. The damper 35 reduces the speed at which the movable unit 32 rotates.
Operation
When the user pushes the sheet-feeding unit 13 deeper, the protrusion 23 moves along the groove 36. During the period when the protrusion 23 is moving from the start position P1 to a reference position that is indicated by a solid line in
Along with rotation of the movable unit 32, the protrusion 23 moves from the reference position toward the end position P2 along the groove 36. Note that, during the period when the protrusion 23 is moving from the start position P1 toward the end position P2, the protrusion 23 moves along the groove 36, which has a curved shape, within the predetermined range R1 illustrated in
Next, assume the case where one of the sheet-feeding units 13 is pulled out by a user. As described above, each of the movable units 32 has the center of gravity G1 at the position where the moment in the rotation direction D1 is equal to or lower than the threshold. However, if the movable unit 32 has the center of gravity G1 at a position where the moment in the rotation direction D1 is greater than the threshold, there is a possibility that the following problems will occur.
In the second exemplary embodiment, when a user vigorously pulls out the sheet-feeding unit 13, the vigorous pulling force may sometimes cause the movable unit 42 to rotate. In this case, even if the sheet-feeding unit 13 reaches the predetermined position, the protrusion 23 will not be held by the cutout portion 422, and thus, a retraction mechanism will not function. In addition, since the movable unit 42 has rotated, even if the protrusion 23 moves from the start position P1 along the groove 36 as a result of the user pushing the sheet-feeding unit 13, the protrusion 23 will be obstructed by the movable unit 42 before reaching the end position P2. In this case, the protrusion 23 is not capable of reaching the end position P2, and thus, the sheet-feeding unit 13 will not reach the closed position and will not be completely closed.
In contrast, as illustrated in
According to the above-described first exemplary embodiment, the housing 10 includes the protruding portions 20, and the sheet-feeding units 13 include the retracting devices 30. In this configuration, the retracting devices 30 do not need to be disposed in the housing 10. In general, each of the retracting devices 30 has a larger size than each of the protruding portions 20. Thus, by arranging the retracting devices 30 in or on the sheet-feeding units 13, a space in the housing 10 required for realizing a retracting function is reduced.
Here, each of the retracting devices 30 may be disposed in the housing of the corresponding sheet-feeding unit 13 (may be built into the corresponding sheet-feeding unit 13). In this case, the total volume of the retracting devices 30 and the sheet-feeding units 13 is reduced. In addition, since each of the retracting devices 30 is integrated with the housing of the corresponding sheet-feeding unit 13, the number of components forming the retracting device 30 is reduced.
Each of the movable units 32 has the center of gravity G1 at the position where the moment in the rotation direction D1 is equal to or lower than the threshold, that is, the center of gravity G1 of each of the movable units 32 is not located on the side on which the opening 361 is present when viewed from the shaft 321, and thus, the probability of the movable unit 32 rotating as a result of the corresponding sheet-feeding unit 13 being pulled out is reduced. In addition, the hole 323 is formed in the movable unit 32 so that the center of gravity G1 is located at the position where the moment in the rotation direction D1 of the movable unit 32 is equal to or lower than the threshold. According to this method, the position of the center of gravity G1 may be easily changed.
Modifications
The exemplary embodiments described above are examples of the present invention. The present invention is not limited to the above-described exemplary embodiments. For example, modifications may be made to the above-described exemplary embodiments as follows. In addition, two or more of the following modifications may be combined with each other.
In the first exemplary embodiment, the center of gravity G1 of each of the movable units 32 is not limited to being located at a position that is superposed with the corresponding shaft 321.
In the first exemplary embodiment, a method of changing the position of the center of gravity G1 of each of the movable units 32 is not limited to a method of forming the hole 323 in the movable unit 32. For example, the position of the center of gravity G1 of the movable unit 32 may be changed by changing the shape of the movable unit 32. In another example, the position of the center of gravity G1 may be changed by adding a weight to the movable unit 32. For example, the position of the center of gravity G1 may be changed by placing a weight between the second end portion of the movable unit 32 and the shaft 321. Alternatively, the position of the center of gravity G1 may be changed by changing the material of the movable unit 32. For example, the position of the center of gravity G1 may be changed by forming a portion between the second end portion of the movable unit 32 and the shaft 321 by using a material having a specific gravity greater than that of the material of a portion between the first end portion of the movable unit 32 and the shaft 321.
The retracting devices 30 are not limited to being arranged at the positions that are mentioned as examples in the above-described exemplary embodiments. For example, in the sheet-feeding units 13, the retracting devices 30 may be positioned at the end in the direction of arrow y in
In the above-described exemplary embodiments, the housing 31 of each of the retracting devices 30 may be formed independently of the housing of the corresponding sheet-feeding unit 13. In this case, the retracting devices 30 may be retrofitted to the corresponding sheet-feeding units 13.
In the above-described exemplary embodiments, in the case where one of the sheet-feeding units 13 has a large size, the corresponding retracting device 30 may be arranged at a position in the sheet-feeding unit 13 other than the end in the direction of arrow z in
In the above-described exemplary embodiments, the movable units 32 are not limited to moving by rotating. For example, each of the movable units 32 may move by sliding in a direction in which the corresponding groove 36 extends. The wording “move by sliding” refers to moving the position of the entire movable unit 32 without changing the angle of the movable unit 32. In this case, for example, each of the movable units 32 is slidably supported by a rail. Each of the elastic members 33 applies a force that causes the corresponding movable unit 32 to slide and move along the corresponding groove 36 to the movable unit 32.
In the above-described exemplary embodiments, the retracting devices 30 are not limited to being provided in or on the sheet-feeding units 13. The retracting devices 30 may be provided in or on any accommodating units as long as the accommodating units are configured to be pulled out from a body apparatus. In addition, the body apparatus is not limited to the image forming apparatus 1. The body apparatus may be any apparatus as long as the apparatus accommodates an accommodating unit.
In the above-described exemplary embodiments, the retracting devices 30 may be provided as discrete devices. In addition, accommodating units such as the sheet-feeding units 13 may be provided as discrete accommodating devices.
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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JP2017-179085 | Sep 2017 | JP | national |
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20160334745 | Kwon | Nov 2016 | A1 |
20170277102 | Takai | Sep 2017 | A1 |
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Entry |
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Office Action dated Jul. 13, 2021 in Japanese Application No. 2017-179085. |
Communication dated Nov. 3, 2021 from the China National Intellectual Property Administration in CN Application No. 201810413143.3. |
Communication dated Mar. 31, 2022 from the China National Intellectual Property Administration in CN Application No. 201810413143.3. |
Number | Date | Country | |
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20190086852 A1 | Mar 2019 | US |