Long body printer with multiple source and take-up rolls and a tension applying mechanism
10960692 ยท 2021-03-30
Assignee
Inventors
Cpc classification
B65H2801/06
PERFORMING OPERATIONS; TRANSPORTING
B65H18/103
PERFORMING OPERATIONS; TRANSPORTING
B41J15/04
PERFORMING OPERATIONS; TRANSPORTING
B65H23/16
PERFORMING OPERATIONS; TRANSPORTING
B41J15/16
PERFORMING OPERATIONS; TRANSPORTING
B65H2511/14
PERFORMING OPERATIONS; TRANSPORTING
B41J15/165
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A printer includes a printer main body that performs printing on a medium, a supporting frame that supports the printer main body from a lower side, a tension applying mechanism including a tension bar that comes into contact with a medium before printing and applies a tension to the medium, and a first roll attaching portion and a second roll attaching portion to which the medium before printing wound into a roll shape is attachable. The roll attaching portion, the tension bar, and the roll attaching portion are disposed on a back side of the supporting frame and are disposed in such order from a supporting frame side; and a medium after printing is wound into a roll shape on a front side of the supporting frame. The tension applying mechanism includes a frame having a guide groove for guiding the tension bar in a vertical direction.
Claims
1. A printer comprising a printer main body that performs printing on a long medium, a supporting frame that supports the printer main body from a lower side, a tension applying mechanism including a tension bar that comes into contact with a medium before printing and applies a tension to the medium, and a first roll attaching portion and a second roll attaching portion to which the medium before printing wound into a roll shape is attachable, wherein the first roll attaching portion, the tension bar, and the second roll attaching portion are disposed on one side of the supporting frame in a first direction, which is one direction in a horizontal direction, and are disposed in such order from the supporting frame side in the first direction; a medium after printing is wound into the roll shape on another side of the supporting frame in the first direction; assuming that the medium before printing wound into the roll shape and attached to the first roll attaching portion is a first roll and the medium before printing wound into the roll shape and attached to the second roll attaching portion is a second roll, a maximum outer diameter of the second roll is larger than a maximum outer diameter of the first roll; and the tension applying mechanism includes a frame in which a guide groove having a slit shape for guiding the tension bar in a vertical direction is formed, the medium that is wound up by the first roll and the second roll are both transported to the tension bar from above the tension bar, and then transported above the tension bar after passing underneath the tension bar.
2. A printer comprising a printer main body that performs printing on a long medium, a supporting frame that supports the printer main body from a lower side, a tension applying mechanism including a tension bar that comes into contact with a medium after printing and applies a tension to the medium, and a first roll attaching portion and a second roll attaching portion to which the medium after printing wound into a roll shape is attachable, wherein the first roll attaching portion, the tension bar, and the second roll attaching portion are disposed on one side of the supporting frame in a first direction, which is one direction in a horizontal direction, and are disposed in such order from the supporting frame side in the first direction; a medium before printing is wound into the roll shape on another side of the supporting frame in the first direction; assuming that the medium after printing wound into the roll shape and attached to the first roll attaching portion is a first roll and the medium after printing wound into the roll shape and attached to the second roll attaching portion is a second roll, a maximum outer diameter of the second roll is larger than a maximum outer diameter of the first roll; and the tension applying mechanism includes a frame in which a guide groove having a slit shape for guiding the tension bar in a vertical direction is formed, the medium that is wound out by the first roll and the second roll are both transported to the tension bar from above the tension bar, and then transported above the tension bar after passing underneath the tension bar.
3. The printer according to claim 1, wherein the guide groove is inclined so as to approach the supporting frame towards the lower side.
4. The printer according to claim 1, further comprising a supporting body including a supporting member to which a lower end of the supporting frame is fixed, wherein the frame is detachably attached to the supporting body.
5. The printer according to claim 2, wherein the guide groove is inclined so as to approach the supporting frame towards the lower side.
6. The printer according to claim 2, further comprising a supporting body including a supporting member to which a lower end of the supporting frame is fixed, wherein the frame is detachably attached to the supporting body.
7. The printer according to claim 1, wherein a guide roller, for transporting the medium, is disposed between the tension bar and the second roll attaching portion in the first direction, and the guide roller is disposed above the tension bar.
8. The printer according to claim 2, wherein a guide roller, for transporting the medium, is disposed between the tension bar and the second roll attaching portion in the first direction, and the guide roller is disposed above the tension bar.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF EMBODIMENT
(9) Hereinafter, an embodiment of the present disclosure will be described with reference to the accompanying drawings.
(10) (Configuration of Printer)
(11)
(12) The printer 1 of the present embodiment is an inkjet printer for business use. The printer 1 includes a printer main body 3 that performs printing on a long medium 2 (sheet-like medium 2) such as paper, fabric, or a resin sheet, the supporting body 4 that supports the printer main body 3 from a lower side, the tension applying mechanism 5 that comes into contact with a medium 2 before printing to apply tension to the medium 2, and the tension applying mechanism 6 that comes into contact with a medium 2 after printing to apply tension to the medium 2. Furthermore, the printer 1 includes the roll attaching portions 7, 8, and 9 to which the medium 2 before printing wound into a roll shape can be attached, and the roll attaching portions 10, and 11 to which the medium 2 after printing wound into a roll shape can be attached.
(13) The printer 1 of the present embodiment includes three roll attaching portions 7 to 9 to which the medium 2 before printing wound into a roll shape can be attached, and two roll attaching portions 10, and 11 to which the medium 2 after printing wound into a roll shape can be attached. In the printer 1, the medium 2 before printing is attached to one of the roll attaching portions 7 to 9, and the medium 2 after printing is wound in the roll attaching portion 10 or the roll attaching portion 11 (see
(14) Assuming that the medium 2 before printing wound into a roll shape and attached to the roll attaching portion 7 is a roll 2A, the medium 2 before printing wound into a roll shape and attached to the roll attaching portion 8 is a roll 2B, and the medium 2 before printing wound into a roll shape and attached to the roll attaching portion 9 is a roll 2C, a maximum outer diameter of the roll 2C is larger than a maximum outer diameter of the roll 2B, and the maximum outer diameter of the roll 2B is larger than a maximum outer diameter of the roll 2A.
(15) That is, the outer diameter of a new roll 2C set in the roll attaching portion 9 is larger than the outer diameter of a new roll 2B set in the roll attaching portion 8, and the outer diameter of the new roll 2B set in the roll attaching portion 8 is larger than the outer diameter of the new roll 2A set in the roll attaching portion 7. The maximum outer diameter of the roll 2C is, for example, about 500 (mm) to 600 (mm). Furthermore, for example, the maximum outer diameter of the roll 2B is about half the maximum outer diameter of the roll 2C, and the maximum outer diameter of the roll 2A is about one third of the maximum outer diameter of the roll 2B. The roll attaching portion 8 of the present embodiment is a first roll attaching portion and the roll attaching portion 9 is a second roll attaching portion. Furthermore, the roll 2B of the present embodiment is a first roll and the roll 2C is a second roll.
(16) Furthermore, assuming that the medium 2 after printing wound into a roll shape and attached to the roll attaching portion 10 is a roll 2D, and the medium 2 after printing wound into a roll shape and attached to the roll attaching portion 11 is a roll 2E, a maximum outer diameter of the roll 2E is larger than a maximum outer diameter of the roll 2D. That is, the maximum outer diameter of the roll 2E that can be wound in the roll attaching portion 11 after printing is larger than the maximum outer diameter of the roll 2D that can be wound in the roll attaching portion 10 after printing. For example, the maximum outer diameter of the roll 2E is equal to the maximum outer diameter of the roll 2B, and the maximum outer diameter of the roll 2D is equal to the maximum outer diameter of the roll 2A.
(17) The printer main body 3 includes a carriage 14 on which an inkjet head that ejects ink droplets toward the medium 2 is mounted, a carriage driving mechanism (not shown) that moves the carriage 14 in a main scanning direction (X direction in
(18) Furthermore, the printer main body 3 includes a medium transporting mechanism (not shown) that transports the medium 2 placed on the platen 16 in a sub-scanning direction (Y direction in
(19) The supporting body 4 includes a supporting frame 18 that supports the printer main body 3 from the lower side and has a columnar shape, and a supporting member 19 to which a lower end of the supporting frame 18 is fixed. The printer main body 3 is fixed to an upper end of the supporting frame 18. The supporting member 19 is formed so as to extend from the lower end of the supporting frame 18 to both sides in the front-back direction. The supporting frame 18 supports two places, a right end of the printer main body 3 and a left end of the printer main body 3, from the lower side. That is, the supporting body 4 includes two supporting frames 18 and two supporting members 19 disposed on both left and right end sides.
(20) Furthermore, the supporting body 4 includes two connecting frames 20 that connect the two supporting frames 18. As shown in
(21) The tension applying mechanism 5 is disposed on a back side of the supporting frame 18. Furthermore, the tension applying mechanism 5 is disposed on a lower side of the printer main body 3. The tension applying mechanism 5 includes a tension bar 23 that comes into contact with the medium 2 before printing and applies a tension to the medium 2, and two frames 24 each having a slit-shaped guide groove 24a for guiding the tension bar 23 in the vertical direction.
(22) The tension bar 23 is configured by an inner bar 25 formed into an elongated circular columnar shape and an outer bar 26 formed into an elongate cylindrical shape through which the inner bar 25 is inserted to an inner peripheral side. The tension bar 23 is disposed so that an axial direction (longitudinal direction) of the inner bar 25 and the outer bar 26 coincides with the left-right direction. That is, the tension bar 23 is disposed so that the axial direction of the tension bar 23 coincides with the left-right direction. The tension bar 23 is disposed such that the axial direction of the tension bar 23 is orthogonal to a transporting direction of the medium 2.
(23) The two frames 24 are fixed to the supporting body 4. Specifically, one of the two frames 24 is fixed to the supporting frame 18 and the supporting member 19 disposed on the right end side, and the other frame 24 is fixed to the supporting frame 18 and the supporting member 19 disposed on the left end side. Furthermore, the frames 24 are fixed to the supporting frames 18 and the supporting members 19 by screws, so that the frames 24 are detachable with respect to the supporting frames 18 and the supporting members 19. That is, the frames 24 are detachably attached to the supporting body 4. More specifically, the frames 24 are detachably attached to the supporting body 4 by screws. A screw hole, to which a screw for fixing the frame 24 is screwed in, is formed on a back surface of each of the supporting frames 18. A screw hole, to which a screw for fixing the frame 24 is screwed in, is also formed on an upper surface of each of the supporting members 19.
(24) One end side portion of the inner bar 25 is inserted to the guide groove 24a of one of the two frames 24 and another end side portion of the inner bar 25 is inserted to the guide groove 24a of the other frame 24. Each of the guide groove 24a is inclined so as to be directed toward the front side as it goes towards the lower side. That is, each of the guide grooves 24a is inclined so as to approach the supporting frame 18 as it goes towards the lower side. The outer bar 26 is disposed between the two frames 24. The outer bar 26 is rotatable relative to the inner bar 25 with the left-right direction as the axial direction of rotation. The outer bar 26 is brought into contact with the medium 2. It should be noted that the tension bar 23 may have an integral structure in which a portion corresponding to the inner bar 25 and a portion corresponding to the outer bar 26 are integrated.
(25) As shown in
(26) The tension applying mechanism 6 is disposed on a front side of the supporting frames 18. Furthermore, the tension applying mechanism 6 is disposed on the lower side of the printer main body 3. The tension applying mechanism 6 is configured similarly to the tension applying mechanism 5, and includes a tension bar 23 that comes into contact with the medium 2 after printing and applies tension to the medium 2, and two frames 24 each having a guide groove 24a for guiding the tension bar 23 in the vertical direction. The tension applying mechanism 5 and the tension applying mechanism 6 are arranged line-symmetrically with a center line of the supporting frame 18 in the left-right direction as an axis of symmetry when viewed from the left-right direction. Therefore, in the tension applying mechanism 6, each of the guide grooves 24a is inclined so as to be directed toward the back side as it goes towards the lower side. That is, each of the guide grooves 24a is inclined so as to approach the supporting frame 18 as it goes towards the lower side in the tension applying mechanism 6 as well.
(27) Since the tension applying mechanism 6 is configured similarly to the tension applying mechanism 5, the description on the specific configuration of the tension applying mechanism 6 will be omitted. A screw hole, into which a screw for fixing the frame 24 of the tension applying mechanism 6 is screwed, is formed on the front surface of each of the supporting frames 18. A screw hole, into which a screw for fixing the frame 24 of the tension applying mechanism 6 is screwed, is also formed on the upper surface of each of the supporting members 19.
(28) The roll attaching portions 7 to 9 are disposed on the back side of the supporting frame 18. That is, the medium 2 before printing is wound into a roll shape on the back side of the supporting frame 18. The roll attaching portion 7 includes two shaft supporting portions 30 that support both ends of an elongate cylindrical winding shaft around which the roll 2A is wound. The shaft supporting portions 30 are held by a guide shaft 31 so as to be movable in the front-back direction. The shaft supporting portions 30 each are movable in the front-back direction along the guide shaft 31. Furthermore, the shaft supporting portions 30 each are connected to a drive mechanism that rotates the shaft supporting portion 30.
(29) The roll attaching portion 8 includes a rotating shaft 32 inserted to an elongate cylindrical winding shaft around which the roll 2B is wound (see
(30) The roll attaching portion 9 includes a rotating shaft inserted to an elongate cylindrical winding shaft around which the roll 2C is wound. The rotating shaft is disposed so that the axial direction of the rotating shaft and the left-right direction coincide. Both ends of the rotating shaft are rotatably supported by a supporting frame 34 disposed on a back side of the supporting body 4. Furthermore, the rotating shaft is connected to a drive mechanism that rotates the rotating shaft. A wheel 35 is attached to the lower end of the supporting frame 34. Therefore, the roll attaching portion 9 and the supporting frame 34 can be easily moved. A guide roller 36 for guiding the medium 2 is attached to an upper end side of a front end of the supporting frame 34. The guide roller 36 is disposed on a front side of the roll attaching portion 9.
(31) As described above, the roll attaching portion 8, the tension bar 23 of the tension applying mechanism 5, and the roll attaching portion 9 are disposed on the back side of the supporting frames 18. Furthermore, the roll attaching portion 8, the tension bar 23 of the tension applying mechanism 5, and the roll attaching portion 9 are disposed in this order from the front side to the back side. That is, the roll attaching portion 8, the tension bar 23 of the tension applying mechanism 5, and the roll attaching portion 9 are disposed in this order from the supporting frame 18 side in the front-back direction, the roll attaching portion 8 is disposed on the supporting frame 18 side of the tension bar 23 of the tension applying mechanism 5 and the roll attaching portion 9 is disposed at a position farther away from the supporting frames 18 than the tension bar 23 of the tension applying mechanism 5. Moreover, the roll attaching portion 9 is disposed on a back side with respect to the printer main body 3 and the supporting members 19.
(32) The roll attaching portion 7 is disposed on a lower side of the roll attaching portion 8. Furthermore, the roll attaching portion 7 is disposed on a front side of the tension bar 23 of the tension applying mechanism 5. When the medium 2 before printing is attached to the roll attaching portion 7 (see
(33) The roll attaching portions 10, and 11 are disposed on the front side of the supporting frames 18. That is, the medium 2 after printing is wound into a roll shape on the front side of the supporting frames 18. The roll attaching portion 10 is configured similarly to the roll attaching portion 7 and includes two shaft supporting portions 40 that support both ends of an elongated cylindrical winding shaft around which the roll 2D is wound. The shaft support portions 40 are held by a guide shaft 41 so as to be movable in the front-back direction. The shaft supporting portions 40 each are movable in the front-back direction along the guide shaft 41. Furthermore, the shaft supporting portions 40 each are connected to a drive mechanism that rotates the shaft supporting portion 40.
(34) The roll attaching portion 11 is configured similarly to the roll attaching portion 8 and includes a rotating shaft 42 inserted to an elongate cylindrical winding shaft around which the roll 2E is wound. The rotating shaft 42 is disposed so that an axial direction of the rotating shaft 42 and the left-right direction coincide. A right end of the rotating shaft 42 is rotatably supported by the frame 24 disposed on the right end side of the tension applying mechanism 6, and a left end of the rotating shaft 42 is rotatably supported by the frame 24 disposed on the left end side of the tension applying mechanism 6. Flange members 43 disposed on both sides of the roll 2E in the left-right direction are fixed to both ends of the rotating shaft 42. The rotating shaft 42 is connected to a drive mechanism that rotates the rotating shaft 42.
(35) The roll attaching portions 10, and 11 are disposed on a back side with respect to the tension bar 23 of the tension applying mechanism 6. That is, the roll attaching portions 10, and 11 are disposed at positions closer to the supporting frames 18 than the tension bar 23 of the tension applying mechanism 6. Furthermore, the roll attaching portion 10 is disposed on a lower side of the roll attaching portion 11. Moreover, the roll attaching portion 10 is disposed on the back side of the tension bar 23 of the tension applying mechanism 6.
(36) (Usage Modes of Printer)
(37)
(38) As described above, in the printer 1, the medium 2 before printing is attached to one of the roll attaching portions 7 to 9, and the medium 2 after printing is wound by the roll attaching portion 10 or the roll attaching portion 11. For example, in the printer 1, as shown in
(39) When the medium 2 before printing is attached to the roll attaching portions 8, and 9, the tension applying mechanism 5 is used. The tension bar 23 of the tension applying mechanism 5 is in contact with the upper surface side of the medium 2. When the medium 2 before printing is attached to the roll attaching portion 8, the medium 2 passes through a lower side of the tension bar 23 of the tension applying mechanism 5 toward the back side and is then transported toward the upper side. When the medium 2 before printing is attached to the roll attaching portion 9, the medium 2 passes through the lower side of the tension bar 23 of the tension applying mechanism 5 toward the front side and is then transported toward the upper side.
(40) Furthermore, when the medium 2 before printing is attached to the roll attaching portions 8, and 9, a guide roller 45 for guiding the medium 2 is disposed on the upper side of the tension applying mechanism 5. The guide roller 45 is turnably attached to supporting members 46. The supporting members 46 each are fixed to the upper end side of each of the supporting frames 18. The guide roller 45 is disposed on the back side with respect to the printer main body 3. Furthermore, the guide roller 45 is in contact with the front surface side of the medium 2.
(41) On the other hand, when the medium 2 before printing is attached to the roll attaching portion 7, the tension applying mechanism 5 and the guide roller 45 are not used. In this case, as shown in
(42) Furthermore, when the medium 2 after printing is wound in the roll attaching portion 11, the tension applying mechanism 6 is used. The tension bar 23 of the tension applying mechanism 6 is in contact with the upper surface side of the medium 2. The medium 2 passes through the lower side of the tension bar 23 of the tension applying mechanism 6 toward the back side. On the other hand, when the medium 2 after printing is wound in the roll attaching portion 10, the tension applying mechanism 6 is not used. In this case, as shown in
(43) In this embodiment, as shown in
(44) (Main Effect of the Present Embodiment)
(45) As described above, in the present embodiment, the roll attaching portion 8, the tension bar 23 of the tension applying mechanism 5, and the roll attaching portion 9 are disposed on the back side of the supporting frames 18 and are disposed in this order from the supporting frame 18 side in the front-back direction, where the roll attaching portion 9 is disposed at a position away from the supporting frames 18. Specifically, the roll attaching portion 9 is disposed on the back side with respect to the supporting members 19 of the supporting body 4. Therefore, in the present embodiment, a distance between the medium 2 after printing (i.e., roll 2D or roll 2E) wound into a roll shape on the front side of the supporting frames 18 and the roll 2C attached to the roll attaching portion 9 can be separated. Therefore, in the present embodiment, the maximum outer diameter of the roll 2C attached to the roll attaching portion 9 can be set without being subjected to a restriction of an outer diameter of the roll 2D or the roll 2E.
(46) Furthermore, in the present embodiment, since the roll attaching portion 9 is disposed on the back side of the printer main body 3, the maximum outer diameter of the roll 2C can be set without being subjected to a restriction of the printer main body 3. Further, in the present embodiment, since the roll attaching portion 9 is disposed at a position distant from the supporting frames 18, the maximum outer diameter of the roll 2C can be set without being subjected to a restriction of the connecting frame 20 connecting the two supporting frames 18.
(47) In the present embodiment, the tension applying mechanism 5 includes the frames 24 each having the guide groove 24a for guiding the tension bar 23 in the vertical direction, and the tension bar 23 moves in the vertical direction along the guide grooves 24a. Therefore, in the present embodiment, the tension applied to the medium 2 by the tension bar 23 is unlikely to change according to the vertical position of the tension bar 23. Therefore, in the present embodiment, even if the guide grooves 24a are disposed so that a degree of freedom of arrangement of other members does not lower, an appropriate tension can be applied to the medium 2 fed out from the roll 2B attached to the roll attaching portion 8 and the medium 2 fed out from the roll 2C attached to the roll attaching portion 9. That is, in the present embodiment, even if an appropriate tension can be applied to the medium 2 fed out from the roll 2B attached to the roll attaching portion 8 and the medium 2 fed out from the roll 2C attached to the roll attaching portion 9, a degree of freedom of design of the printer 1 can be ensured.
(48) In the feeding side tension applying means of the inkjet printer described in Japanese Unexamined Patent Publication No. 2013-78953, the media arm, to which the tension bar is attached at the distal end, is turnable around the basal end of the media arm, and since the tension bar turns with the basal end of the media arm as a turning center, the tension applied to the medium by the tension bar easily changes according to a turning angle of the media arm with the basal end of the media arm as the turning center. Therefore, in the printer 1 of the present embodiment, when the feeding side tension applying means described in Japanese Unexamined Patent Publication No. 2013-78953 is adopted, unless the turning center of the media arm is disposed at an optimum position, it becomes difficult to apply an appropriate tension to the medium 2 fed out from the roll 2B attached to the roll attaching portion 8 and the medium 2 fed out from the roll 2C attached to the roll attaching portion 9.
(49) On the other hand, in a case where the turning center of the media arm is arranged at the optimum position, the degree of freedom of arrangement of other members lowers. That is, in the printer 1 of the present embodiment, when the feeding side tension applying means described in Japanese Unexamined Patent Publication No. 2013-78953 is adopted, the degree of freedom of design of the printer 1 lowers to apply an appropriate tension to the medium 2 fed out from the roll 2B attached to the roll attaching portion 8 and the medium 2 fed out from the roll 2C attached to the roll attaching portion 9.
(50) In the present embodiment, in the tension applying mechanism 5, each of the guide grooves 24a for guiding the tension bar 23 in the vertical direction is inclined so as to be directed toward the front side as it goes towards the lower side. Therefore, in the present embodiment, a worker can easily access the roll attaching portion 7 when setting the roll 2A to the roll attaching portion 7 disposed on the front side of the tension bar 23 of the tension applying mechanism 5, as compared with a case where each of the guide grooves 24a is inclined so as to be directed toward the back side as it goes towards the lower side.
(51) Similarly, in the present embodiment, in the tension applying mechanism 6, each of the guide grooves 24a for guiding the tension bar 23 in the vertical direction is inclined so as to be directed toward the back side as it goes towards the lower side, and thus the worker can easily access the roll attaching portion 10 when setting the roll 2D to the roll attaching portion 10 disposed on the back side of the tension bar 23 of the tension applying mechanism 6, as compared with a case where each of the guide grooves 24a is inclined so as to be directed toward the front side as it goes towards the lower side.
(52) In the present embodiment, the frames 24 are detachably attached to the supporting body 4. Therefore, in the present embodiment, when the printer 1 does not use the tension applying mechanisms 5, and 6, the tension applying mechanisms 5, and 6 can be easily detached from the supporting body 4.
(53) (Other Embodiment)
(54) The above-described embodiment is an example of a preferred embodiment of the present disclosure, but the present disclosure is not limited thereto, and various modifications can be made without changing the gist of the present disclosure.
(55) In the embodiment described above, the guide grooves 24a may be inclined away from the supporting frames 18 toward the lower side, or may be parallel to the vertical direction. Furthermore, in the above-described embodiment, the frames 24 may not be detachable to the supporting body 4. Moreover, in the above-described embodiment, the printer 1 may not include the roll attaching portion 7. Furthermore, the printer 1 may not include the roll attaching portion 10 or the roll attaching portion 11.
(56) In the above-described embodiment, the printer 1 may include a second roll attaching portion configured similarly to the roll attaching portion 9 as the roll attaching portion to which the medium 2 after printing wound into a roll shape can be attached. In this case, a maximum outer diameter of the second roll, which is the medium 2 after printing wound into a roll shape and attached to the second roll attaching portion, is larger than the maximum outer diameter of the roll 2E. The tension applying mechanism 6 is used when the medium 2 after printing is wound in the second roll attaching portion.
(57) Furthermore, in this case, the roll attaching portion 11, the tension bar 23 of the tension applying mechanism 6, and the second roll attaching portion are disposed in this order from the back side toward the front side. That is, the roll attaching portion 11, the tension bar 23 of the tension applying mechanism 6, and the second roll attaching portion are disposed on the front side of the supporting frames 18 and disposed in this order from the supporting frames 18 side in the front-back direction, where the second roll attaching portion is disposed at a position farther away from the supporting frames 18 than the tension bar 23 of the tension applying mechanism 6. Furthermore, the second roll attaching portion is disposed on the front side with respect to the printer main body 3 and the supporting members 19. The roll attaching portion 11 in this case is the first roll attaching portion, and the roll 2E is the first roll.
(58) In this case, since the second roll attaching portion is disposed at a position away from the supporting frames 18, the medium 2 before printing (specifically, roll 2A or roll 2B) wound into a roll shape on the back side of the supporting frames 18 and the second roll attached to the second roll attaching portion can be separated. Therefore, a maximum outer diameter of the second roll attached to the second roll attaching portion can be set without being subjected to a restriction of an outer diameter of the roll 2A or the roll 2B. Furthermore, since the second roll attaching portion is disposed on the front side with respect to the printer main body 3, the maximum outer diameter of the second roll can be set without being subjected to the restriction of the printer main body 3. Moreover, since the second roll attaching portion is disposed at a position distant from the supporting frame 18, the maximum outer diameter of the second roll can be set without being subjected to the restriction of the connecting frame 20.
(59) In this case, the tension applying mechanism 6 includes the frames 24 each having the guide groove 24a for guiding the tension bar 23 in the vertical direction, and the tension bar 23 moves in the vertical direction along the guide grooves 24a, whereby the tension applied to the medium 2 by the tension bar 23 is unlikely to change according to the vertical position of the tension bar 23. Therefore, in this case, as with the above-described embodiment, even if the guide grooves 24a are disposed so as not to lower the degree of freedom of arrangement of other members, an appropriate tension can be applied to the medium 2 wound around the roll 2E attached to the roll attaching portion 11 and the medium 2 wound around the second roll attached to the second roll attaching portion. That is, even if an appropriate tension can be applied to the medium 2 wound around the roll 2E attached to the roll attaching portion 11 and the medium 2 wound around the second roll attached to the second roll attaching portion, the degree of freedom of design of the printer 1 can be ensured.
(60) In the printer 1, in a case where the winding side tension applying means described in Japanese Unexamined Patent Publication No. 2013-78953 is adopted, as in the above-described embodiment, it becomes difficult to apply an appropriate tension to the medium 2 wound around the roll 2E attached to the roll attaching portion 11 and the medium 2 wound around the second roll attached to the second roll attaching portion unless the turning center of the media arm is disposed at an optimum position, while if the turning center of the media arm is disposed at an optimum position, the degree of freedom of arrangement of other members lowers, and hence the degree of freedom of design of the printer 1 lowers so as to apply an appropriate tension to the medium 2 wound around the roll 2E attached to the roll attaching portion 11 and the medium 2 wound around the second roll attached to the second roll attaching portion.
(61) It will be apparent to those skilled in the art that various modifications and variations can be made to the disclosed embodiments without departing from the scope or spirit of the disclosure. In view of the foregoing, it is intended that the disclosure covers modifications and variations provided that they fall within the scope of the following claims and their equivalents.