MEDIA SUPPLYlNG APPARATUS AND IMAGE FORMING APPARATUS
20170246889 · 2017-08-31
Assignee
Inventors
Cpc classification
B65H23/28
PERFORMING OPERATIONS; TRANSPORTING
B65H19/10
PERFORMING OPERATIONS; TRANSPORTING
B65H2301/4435
PERFORMING OPERATIONS; TRANSPORTING
B65H2404/691
PERFORMING OPERATIONS; TRANSPORTING
B41J15/16
PERFORMING OPERATIONS; TRANSPORTING
B65H2801/06
PERFORMING OPERATIONS; TRANSPORTING
B65H2801/12
PERFORMING OPERATIONS; TRANSPORTING
B65H29/52
PERFORMING OPERATIONS; TRANSPORTING
International classification
B41J15/16
PERFORMING OPERATIONS; TRANSPORTING
B65H29/52
PERFORMING OPERATIONS; TRANSPORTING
B41J11/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A medium supplying apparatus with a detachable rolled medium is provided. In the medium supplying apparatus, the rolled medium is fed to a far side of a setting-and-removing direction of the rolled medium. The medium supplying apparatus includes a plurality of guide members configured to guide the rolled medium when the rolled medium is set. The guide members include at least one contact member which at least partially contacts only a lower outer periphery of the rolled medium and at least one auxiliary member which does not contact the outer periphery of the rolled medium. The contact member and the auxiliary member are connected at a base via the same rotary shaft. The auxiliary member is shorter than the contact member in a medium feeding direction, and is disposed in parallel with the contact member.
Claims
1. A medium supplying apparatus with a detachable rolled medium configured to be fed to a far side of a setting-and-removing direction of the rolled medium, the medium supplying apparatus comprising: a plurality of guide members configured to guide the rolled medium when the rolled medium is set, wherein the guide members include at least one contact member configured to at least partially contact only an outer periphery of the rolled medium and at least one auxiliary member configured not to contact the outer periphery of the rolled medium, wherein the contact member and the auxiliary member are connected at a base via a same rotary shaft, the auxiliary member is shorter than the contact member in a medium feeding direction, and the auxiliary member is disposed in parallel with the contact member.
2. A medium supplying apparatus with a detachable rolled medium configured to be fed to a far side of a setting-and-removing direction of the rolled medium, the medium supplying apparatus comprising: a plurality of guide members configured to guide the rolled medium when the rolled medium is set, wherein the guide members include at least one contact member configured to at least partially contact only an outer periphery of the rolled medium and at least one auxiliary member configured not to contact the outer periphery of the rolled medium, wherein the contact member and the auxiliary member are connected at a base via a same rotary shaft, the auxiliary member is shorter than the contact member in a medium feeding direction, and the auxiliary member is disposed non-parallel with the contact member.
3. The medium supplying apparatus according to claim 2, wherein the auxiliary member is disposed having a predetermined angle with respect to the contact member.
4. A medium supplying apparatus with a detachable rolled medium configured to be fed to a far side of a setting-and-removing direction of the rolled medium, the medium supplying apparatus comprising: a plurality of guide members configured to guide the rolled medium when the rolled medium is set, wherein the guide members include at least one contact member configured to at least partially contact only an outer periphery of the rolled medium and at least one auxiliary member configured not to contact the outer periphery of the rolled medium, wherein the contact member and the auxiliary member are connected at a base via a same rotary shaft, the auxiliary member includes an extension-and-contraction mechanism capable of extending and contracting.
5. The medium supplying apparatus according to claim 1, wherein the guide members include at least one second auxiliary member configured not to contact the rolled medium above the fed rolled medium.
6. The medium supplying apparatus according to claim 5, wherein the second auxiliary member includes an opening penetrating from an upper side to lower side of the second auxiliary member.
7. An image forming apparatus comprising the medium supplying apparatus according to claim 1.
8. The medium supplying apparatus according to claim 2, wherein the guide members include at least one second auxiliary member configured not to contact the rolled medium above the fed rolled medium.
9. The medium supplying apparatus according to claim 8, wherein the second auxiliary member includes an opening penetrating from an upper side to lower side of the second auxiliary member.
10. The medium supplying apparatus according to claim 4, wherein the guide members include at least one second auxiliary member configured not to contact the rolled medium above the fed rolled medium.
11. The medium supplying apparatus according to claim 10, wherein the second auxiliary member includes an opening penetrating from an upper side to lower side of the second auxiliary member.
12. An image forming apparatus comprising the medium supplying apparatus according to claim 2.
13. An image forming apparatus comprising the medium supplying apparatus according to claim 4.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DESCRIPTION OF EMBODIMENTS
[0026] In the following, a first embodiment of the present invention will be described referring to the accompanying drawings.
Configuration of Image Forming Apparatus
[0027] As shown in
[0028] In
[0029] An image forming unit 3 performs image forming by using an inkjet recording method, and the image forming apparatus 1 according to the present embodiment is a serial type inkjet recording apparatus.
[0030] In the image forming unit 3, a guide rod 18 and a guide rail 19 are disposed between side plates, and a carriage 20 which is movable in the main-scanning direction Y is supported by the guide rod 18 and the guide rail 19.
[0031] The carriage 20 includes liquid recording heads which eject corresponding ink droplets of black (K), yellow (Y), magenta (M), and cyan (C). Each of the liquid recording heads includes an integral sub tank used for supplying ink.
[0032] A main-scanning mechanism for moving the carriage 20 for scanning in the main-scanning direction includes a drive motor 21 disposed at one side of the main-scanning direction Y (upper left in
[0033] Tension is applied by a tension spring to the follower pulley 23 in an outward direction, that is, in a direction away from the drive pulley 22.
[0034] The belt member 24, a part of which is fixed to a belt fixing unit disposed at the rear side of the carriage 20, pulls the carriage 20 in the main-scanning direction.
[0035] An encoder sheet is disposed along the main-scanning direction Y of the carriage 20, and an encoder sensor disposed in the carriage 20 reads the encoder sheet and detects a position of the carriage 20 in the main-scanning direction Y.
[0036] Further, a reflective sensor included in the carriage 20 detects both ends of the rolled medium 10 set in the image forming apparatus 1. When both ends of the rolled medium 10 are detected, a size of the rolled medium 10 is calculated from the detected positions read by the encoder sensor.
[0037] A rolled paper which is formed by rolling an elongated paper, for example, is used as the rolled medium 10, and the rolled medium 10 includes an upper stage rolled medium 10a and a lower stage rolled medium 10b. The upper stage rolled medium 10a and the lower stage rolled medium 10b are set in a medium supplying apparatus. The medium supplying apparatus includes roll supporting members 12 which support ends of the upper stage rolled medium 10a and the lower stage rolled medium 10b in the longitudinal direction. Respective spool axles of the upper stage rolled medium 10a and the lower stage rolled medium 10b are rotatably supported by spool bearing stands 11a and 11b via core tubes. The upper stage rolled medium 10a and the lower stage rolled medium 10b are detachable.
[0038] It should be noted that the medium supplying apparatus may include an axial unit which is inserted into the core tube of the rolled medium 10. The axial unit includes a flexible diameter-increasing member in order to correspond to core tubes with different diameters. Further, a rolled medium 10 with a large-diameter core tube is supported by the axial unit with the diameter-increasing member, and a rolled medium 10 with a small-diameter core tube is supported by the axial unit from which the diameter-increasing member is separated.
[0039] The rolled medium 10 is rolled out by the medium supplying apparatus, and is conveyed to the far side in the setting-and-removing direction. Further, the medium is conveyed discontinuously in a sub-scanning direction (front direction Xa of the front-and-rear direction X in
[0040] In one end side of a main scanning area of the carriage 20, as shown in the lower right side of
[0041] The rolled out rolled medium 10, as shown in
[0042] The cutter 27 is fixed to a wire or a timing belt which is rolled around between pulleys (one of the pulleys is connected to a drive motor), and is moved by the drive motor in the main-scanning direction Y, and thus, the rolled medium 10 is cut to be the predetermined length. The cut rolled medium 10 is discharged and stacked in a discharging unit.
Configuration of Rolled Medium Setting Guide
[0043] Next, the rolled medium setting guide 40, which is one of characteristic units of the present invention, will be described referring to
[0044] A first setting guide (contact member) 41 as a guide member is disposed, as shown in
[0045] A second setting guide (auxiliary member) 45 as a guide member is disposed, as shown in
Setting and Removing the Rolled Medium
[0046] Next, setting and removing the rolled medium 10 will be described. The rolled medium 10 is detachable as an operator can set and remove the roll supporting members 12a and 12b in and from the spool bearing stands 11a and 11b at the front of the image forming apparatus 10.
[0047] When an operator wants to set the rolled medium 10 in the medium supplying apparatus, as shown in
[0048] Here, as shown in
[0049] The first setting guide 141 and the second setting guide 145 of another present embodiment rotate, as shown in
[0050] Here, in the present embodiment a position of the roll supporting member 12b (
[0051] Further, an outer diameter of the rolled medium 10 is changed in accordance with use of the rolled medium 10. For example, even in the case where the end of the rolled medium 10 in the longitudinal direction is near the position where the second setting guide 45 is disposed, when, as shown in
[0052] As described above, if the second setting guide 45 contacts the roll supporting member 12, then there is a problem in that the remaining amount of the rolled medium 10 cannot be properly followed by the second setting guide 45. Further, there is a problem of strange noise occurrence.
[0053] The second setting guide 45 according to the present embodiment has a shape in which the length in the medium feeding direction is shorter than the first setting guide 41. Further, the first setting guide 41 and the second setting guide 45 extend in parallel from the fulcrum shaft 43. Further, when the first setting guide 41 is in a state where it contacts the outer periphery of the rolled medium 10, the second setting guide 45 does not contact the outer periphery of the rolled medium 10. Therefore, even when the position of the roll supporting member 12b is changed, it is only the first setting guide 41 whose position is in a range where the first setting guide 41 does not directly contact the roll supporting member 12b, but that contacts the rolled medium 10 via the follower koro-roller 42. As a result, the first setting guide 41 can follow the remaining amount of the rolled medium 10. Further, the printing quality can be maintained because there is no interference or contact with the paper being conveyed, and thus, there is no conveyance load.
[0054] As shown in
[0055] By further including the third setting guide 46 in addition to the first setting guide 41 and the second setting guide 45, workability of setting the rolled medium 10 is improved.
[0056] Further, the third setting guide 46 includes an opening 46d among the third setting guide body 46a, the third setting guide tip 46b, and the connections 46c. In other words, the third setting guide 46 includes the opening 46d which penetrates from the upper side of the third setting guide to the lower side of the third setting guide 46.
[0057] By including the opening 46d in the third setting guide 46, visibility is improved and the rolled medium 10 can be easily set in the image forming apparatus 1. Further, because the rolled medium 10 can be pressed when there is curling in the rolled medium 10, it will not be difficult to set the curled rolled medium 10 in the image forming apparatus 1. It should be noted that the third setting guide 46 may be made transparent in order to improve the visibility.
[0058] Next, a second embodiment of the present invention will be described in detail referring to the accompanying drawings. It should be noted that a configuration in common with the image forming apparatus according to the first embodiment will be indicated by the same reference numerals and the detailed description will be omitted while a different configuration will be described in detail referring to the drawings.
[0059] The second embodiment differs from the first embodiment in that the relative positional relationship between the first setting guide and the second setting guide is different from the first embodiment. Specific descriptions are as follows.
[0060] Here, in the first embodiment, the first setting guide 41 contacts the rolled medium 10 and the second setting guide 45 does not contact the rolled medium 10. As a result, there is a problem in that the slightly rolled out tip of the rolled medium 10 may dangle in an area where the first setting guide 41 does not contact the rolled medium 10.
[0061] The first setting guide 141 and the second setting guide 145 of the present embodiment rotate around the fulcrum shaft 43, maintaining the same angle between the first setting guide 141 and the second setting guide 145, as shown in
[0062] Because the first setting guide 141 and the second setting guide 145 rotate around the fulcrum shaft 43, maintaining the same angle between the first setting guide 141 and the second setting guide 145, the tip of the rolled medium 10 in an area where the first setting guide 41 does not contact the rolled medium 10 can be prevented from dangling. As a result, workability of setting the rolled medium 10 is improved. It should be noted that the first setting guide 141 and the second setting guide 145 are not limited to the above embodiment, and that the first setting guide 141 and the second setting guide 145 may move maintaining a fixed distance offset.
[0063] Next, a third embodiment of the present invention will be described in detail referring to the accompanying drawings. It should be noted that a configuration common with the image forming apparatus according to the first embodiment will be indicated by the corresponding reference numerals and the detailed description will be omitted while a different configuration will be described in detail referring to the drawings.
[0064] The third embodiment differs from the first embodiment in that the configuration of the second setting guide is different. Specific descriptions are as follows.
[0065] Here, in order to improve workability of setting the rolled medium, a length of a conventional rolled medium setting guide in the medium feeding direction is provided as long as possible. However, as described above, the position of the roll supporting member 12b changes. As a result, if the length of the rolled medium setting guide is always the same, then the rolled medium setting guide may interfere the roll supporting member 12b. As a result, there is a problem in that the rolled medium setting guide cannot follow the remaining amount of the rolled medium.
[0066] A second setting guide 245 according to the present embodiment includes, as shown in
[0067] By including the extension-and-contraction mechanism in the second setting guide 245, even if the second setting guide 245 interferes the roll supporting member 12, the elastic member 245c can absorb a stress due to the interference. Therefore, the second setting guide 245 will not be separated from the rolled medium 10, and it becomes possible to realize the further improvement of the setting workability. It should be noted that it is not limited that only the second setting guide 245 includes the extension-and-contraction mechanism, but the first setting guide and/or the third setting guide may include the extension-and-contraction mechanism.
[0068] It should be noted that the present invention is not limited to the configurations described in the above embodiments and configurations combined with other elements, or the like may be adopted. With respect to the embodiments described above, modifications may be possible without departing from the spirit of the present invention and may be defined accordingly depending on applications.
[0069] The present application is based on and claims the benefit of priority of Japanese Priority Application No. 2015-002988 filed on Jan. 9, 2015, the entire contents of which are hereby incorporated by reference.
REFERENCE SIGNS LIST
[0070] 10 Rolled medium
[0071] 41 First setting guide (an example of a guide member)
[0072] 43 Fulcrum shaft (an example of a rotary shaft)
[0073] 45 Second setting guide (an example of a guide member)
[0074] 46 Third setting guide (an example of a guide member)
CITATION LIST
Patent Literature
[0075] [PTL 1] Patent document 1: Japanese Laid-Open Patent Application No. 2000-272794