Post-processing apparatus including a transport member including a reinforcing portion
10274886 ยท 2019-04-30
Assignee
Inventors
Cpc classification
B65H31/02
PERFORMING OPERATIONS; TRANSPORTING
G03G15/6538
PHYSICS
B65H2405/11151
PERFORMING OPERATIONS; TRANSPORTING
B65H31/36
PERFORMING OPERATIONS; TRANSPORTING
B65H2301/4212
PERFORMING OPERATIONS; TRANSPORTING
B65H2801/27
PERFORMING OPERATIONS; TRANSPORTING
B65H31/3063
PERFORMING OPERATIONS; TRANSPORTING
B65H31/18
PERFORMING OPERATIONS; TRANSPORTING
B65H2801/06
PERFORMING OPERATIONS; TRANSPORTING
B65H31/3081
PERFORMING OPERATIONS; TRANSPORTING
B65H31/10
PERFORMING OPERATIONS; TRANSPORTING
B42C1/12
PERFORMING OPERATIONS; TRANSPORTING
B65H2301/4213
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65H31/36
PERFORMING OPERATIONS; TRANSPORTING
B65H31/18
PERFORMING OPERATIONS; TRANSPORTING
B65H31/10
PERFORMING OPERATIONS; TRANSPORTING
B65H31/30
PERFORMING OPERATIONS; TRANSPORTING
G03G15/00
PHYSICS
B42C1/12
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A post-processing apparatus includes a storing unit in which plural recording media are stored for performing post-processing and a transport member that transports a recording medium to the storing unit as a result of rotating while being in contact with a surface of the recording medium. The transport member includes a blade that comes into contact with a recording medium and a reinforcing portion that reinforces a strength of a portion of the blade that does not come into contact with the recording medium.
Claims
1. A post-processing apparatus comprising: a storing unit configured to store a plurality of recording media for performing post-processing; and a transport member configured to transport a recording medium to the storing unis as a result of rotating while being in contact with a surface of the recording medium, wherein the transport member includes: a blade configured. to come into contact with the recording medium; and a reinforcing portion configured to reinforce a strength of a)portion of the blade, wherein the reinforcing portion does not come into contact with the recording medium, and wherein the blade is formed of an elastic member, and the reinforcing portion is formed of a resin member.
2. The post-processing apparatus according to claim 1, wherein the elastic member is made of an elastic rubber having a high elastic limit and a low modulus of elasticity.
3. The post-processing apparatus according to claim 2, wherein the transport member is attachable and detachable to and from a rotary shaft that is driven so as to rotate.
4. The post-processing apparatus according to claim 1, wherein the transport member is attachable and detachable to and from a rotary shaft that is driven so as to rotate.
5. A post-processing apparatus comprising: a storing unit configured to store a plurality of recording media for perforating post-processing; and a transport member configured to transport a recording medium to the storing unit as a result of rotating while being in contact with a surface of the recording medium, wherein the transport member includes: a blade configured to come into contact with the recording medium; and a reinforcing portion configured to reinforce a strength of a portion of the blade, wherein the reinforcing portion does not come into contact with the recording medium, wherein the post-processing apparatus further comprises: a driving source configured to drive the transport member so that the transport member rotates; and a stop-position setting unit configured to set a stop position of the transport member to a predetermined position when a driving force of the driving source is not applied to the transport member, wherein the transport member has a structure in which, when the transport member stops at the stop position set by the stop-position setting unit, the blade does not come into contact with a recording medium passing under the transport member and allows the recording medium to pass under the transport member without transporting the recording medium toward the storing unit, and wherein the blade is formed of an elastic member, and the reinforcing portion is formed of a resin member.
6. The post-processing apparatus according to claim 5, wherein the elastic member is made of an elastic rubber having a high elastic limit and a low modulus of elasticity.
7. The post-processing apparatus according to claim 6, wherein the transport member is attachable and detachable to and from a rotary shaft that is driven so as to rotate.
8. The post-processing apparatus according to claim 5, wherein the transport member is attachable and detachable to and from a rotary shaft that is driven so as to rotate.
9. A post-processing apparatus comprising: a storing unit configured to store a plurality of recording media for performing post-processing; and a transport member configured to transport a recording medium to the storing as a result of rotating while being in contact with a surface of the recording medium, wherein the transport member includes: a blade configured to come into contact with the recording medium; and a reinforcing portion configured to reinforce a strength of a portion of the blade, wherein the reinforcing portion does not come into contact with the recording medium, wherein the post-processing apparatus further comprises: a driving source configured to drive the transport member so that the transport member rotates; and a stop-position setting unit configured to set a stop position of the transport member to a predetermined position when a driving force of the driving source is not applied to the transport member, wherein the transport member has a structure in which, when the transport member stops at the stop position set by the stop-position setting unit, the blade does not come into contact with a recording medium passing under the transport member and allows the recording medium to pass under the transport member without transporting the recording medium toward the storing unit, wherein the transport member has a structure in which the center of rotation of the transport member does not move in a vertical direction both when transporting, a recording medium to the storing unit and when allowing a recording medium to pass under the transport member without transporting the recording medium toward the storing unit, and wherein the blade is formed of an elastic member, and the reinforcing portion is formed of a resin member.
10. The post-processing apparatus according to claim 9, wherein the elastic member is made of an elastic rubber having a high elastic limit and a low modulus of elasticity.
11. The post-processing apparatus according to claim 10, wherein the transport member is attachable and detachable to and from a rotary shaft that is driven so as to rotate.
12. The post-processing apparatus according to claim 9, wherein the transport member is attachable and detachable to and from a rotary shaft that is driven so as to rotate.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Exemplary embodiments of the present invention will be described in detail based on the following figures, wherein:
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DETAILED DESCRIPTION
(19) Exemplary embodiments of the present invention will now be described in detail below with reference to the drawings.
(20)
(21) As illustrated in
(22) A state in which the post-processing apparatus 10 is used by being connected to a printer 90 is illustrated in
(23)
(24) The configuration of the post-processing apparatus 10 according to the present exemplary embodiment for performing the post-processing on printing sheets and performing an ejecting operation that is to be performed after the post-processing has been performed will now be described.
(25)
(26) Referring to
(27) The transport rollers 21 transport a printing sheet that is ejected from a printer or the like and on which the post-processing is to be performed.
(28) The compilation tray 25 is a storing unit in which plural printing sheets are stored for performing the post-processing. A post-processing mechanism (not illustrated) performs the post-processing such as, for example, stapling or punching on a stack of the printing sheets stored in the compilation tray 25.
(29) The main paddles 23 and the sub-paddles 22 are each formed in such a manner as to have the shape of a paddle (blade) having flexibility and are transport members that transport a printing sheet in a given direction as a result of rotating.
(30) The sub-paddles 22 transport a printing sheet transported from the upstream side of a transport path by the transport rollers 21 in a direction toward the compilation tray 25. More specifically, each of the sub-paddles 22 is a transport member that transports a recording medium, such as a printing sheet, to the compilation tray 25 as a result of rotating while being in contact with a surface of the recording medium.
(31) Each of the sub-paddles 22 according to the present exemplary embodiment includes blades each of which comes into contact with a printing sheet and a reinforcing portion that reinforces the strengths of portions of the blades that do not come into contact with the printing sheet. A detailed configuration of each of the sub-paddles 22 will be described later.
(32) The main paddles 23 keep transporting a printing sheet transported by the sub-paddles 22 further toward the compilation tray 25 until an end of the printing sheet reaches the end guide 24.
(33) The end guide 24 is a sheet-aligning unit used for aligning a trailing end of a stack of the printing sheets accommodated in the compilation tray 25.
(34) A tamper (not illustrated) operates in accordance with the timing at which printing sheets reach the end guide 24, and as a result, alignment of a stack of the printing sheets on the compilation tray 25 in a width direction is performed.
(35) The ejection belts 27 are driven when ejecting a stack of printing sheets on which the post-processing has been performed, and a pair of the stoppers 28 are mounted on each of the ejection belts 27. As a result of each of the ejection belts 27 being driven, the corresponding two stoppers 28 perform an operation for ejecting the stack of printing sheets, on which the post-processing has been performed in the compilation tray 25, from the ejection port 26 by moving in such a manner as to push the trailing end of the stack of printing sheets.
(36)
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(38) Referring to
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(40) Referring to
(41) In each of the sub-paddles 22, the blades are not arranged in such a manner as to be equally spaced over 360 degrees, and each of the blades is provided at a position at which the blade does not hinder a printing sheet from passing through a sheet-transport path when the pulley 33 is stopped at the certain position.
(42) In other words, when the sub-paddles 22 are stopped at the stop positions that are set as a result of the pulley 33 being pulled by the spring 35, the blades do not come into contact with a printing sheet passing through the sheet-transport path and allow the printing sheet to pass through the sheet-transport path without transporting the printing sheet to the compilation tray 25.
(43) As described above, each of the sub-paddles 22 according to the present exemplary embodiment has a structure in which the center of rotation thereof does not move in the vertical direction both in the case of transporting a printing sheet to the compilation tray 25 and in the case of allowing a printing sheet to pass through the sheet-transport path without transporting the printing sheet to the compilation tray 25.
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(46) Note that, in the present exemplary embodiment, although a case is described in which the motor 31 is a dedicated motor for driving the sub-paddles 22, there is a case where the motor 31 also serves as a driving source of another mechanism. In such a case, a one-way clutch (overrunning clutch) may be provided in the pulley 33 such that the pulley 33 idles when a rotational driving force in the opposite direction is applied to the pulley 33.
(47) The operation of the post-processing apparatus 10 according to the present exemplary embodiment will now be described with reference to
(48) First, in an initial state, since the motor 31 is not excited, the stop positions of the sub-paddles 22 are set by an urging force of the spring 35, and the blades of the sub-paddles 22 are stationary at positions at which the blades face away from the sheet-transport path as illustrated in
(49) Thus, as illustrated in
(50) In the state illustrated in
(51) Then, as illustrated in
(52) Subsequently, when the next printing sheet P is transported by the transport rollers 21, an operation similar to the above is performed, and as a result, the plural printing sheets P are accommodated and stacked one on top of the other in the compilation tray 25 as illustrated in
(53) When a predetermined number of printing sheets P are accommodated in the compilation tray 25 by repeating such control, post-processing is performed on a stack of the printing sheets P.
(54) When ejecting the stack of the printing sheets P, on which the post-processing has been performed, as illustrated in
(55) By performing control such as that described above, a stack of printing sheets obtained by performing the post-processing on plural printing sheets, on each of which a printing operation has been performed, is ejected to the ejection tray 30.
(56) A detailed configuration of each of the sub-paddles 22, which have been described above, will now be described with reference to
(57) As illustrated in
(58) Each of the blades 41 to 43 is formed of, for example, an elastic member made of an elastic rubber or the like, which is a material such as ethylene-propylene-diene rubber (EPDM) having a high elastic limit and a low modulus of elasticity. The base portion 50 is formed of, for example, a member made of a resin. The blades 41 to 43 are mounted on the base portion 50 by being fitted into the base portion 50.
(59) While the blades 41 to 43 are mounted on the base portion 50, the base portion 50 functions as a reinforcing portion that reinforces the strengths of portions of the blades 41 to 43 that do not come into contact with a printing sheet. More specifically, the base portion 50 has a structure in which support portions 61 to 63 respectively support and reinforce the bottom portions of the blades 41 to 43 on the rear sides of the blades 41 to 43 when the blades 41 to 43 come into contact with a printing sheet.
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(61) The sub-paddles 22 according to the present exemplary embodiment are detachable from the shaft (rotary shaft) 34, which is driven so as to rotate, and when the sub-paddles 22 are required to be replaced due to deterioration thereof, the sub-paddles 22 may be easily replaced.
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(63) The sub-paddle 22a illustrated in
(64) [Modification]
(65) In the above-described exemplary embodiment, although a case has been described in which the present invention is applied to a post-processing apparatus that is configured to be installed onto a printer, the present invention is not limited to such a post-processing apparatus and may also be applied to post-processing apparatuses each having any structure for performing post-processing on a sheet on which a printing operation has been performed.
(66) 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.