Printing apparatus
The printing device addresses adhesive transfer issues in linerless labels by using friction-reducing guide sections to prevent paper jams, ensuring smooth operation.
Patent Information
- Application Number
- JP2021103567
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2021-06-22
- Publication Date
- 2025-11-06
- Estimated Expiration
- 2041-06-22
AI Technical Summary
In roll paper with linerless labels, adhesive transfer to the recording surface can cause paper jams due to the adhesive adhering to components that come into contact with the recording surface.
The printing device incorporates a first guide section with a friction reduction mechanism, such as protrusions or low-friction surfaces, to reduce the frictional force between the recording surface and guide sections, preventing the recording surface from adhering to these components.
This configuration effectively prevents paper jams by minimizing adhesive transfer and recording surface adherence to guide components, ensuring smooth paper feeding and ejection.
Smart Images

Figure 0007764693000001 
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Figure 0007764693000003
Abstract
Description
[Technical Field]
[0001] The present invention relates to a printing device. [Background technology]
[0002] As disclosed in Patent Document 1, a printer device equipped with a recording paper guide that comes into contact with the adhesive surface of a linerless label and guides the linerless label has been known. The recording paper guide is provided with a protrusion that prevents the adhesive surface of the linerless label from adhering to the recording paper guide. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Japanese Patent Application Laid-Open No. 2015-071476 Summary of the Invention [Problem to be solved by the invention]
[0004] In roll paper that is wound with recording paper having a recording surface and an adhesive surface, such as linerless labels, the adhesive applied to the adhesive surface can transfer to the recording surface and remain on the recording surface. In this case, the recording surface of the recording paper may adhere to components that come into contact with the recording surface, which can cause paper jams. [Means for solving the problem]
[0005] The printing device of the present invention comprises a roll paper holder that stores roll paper wound with recording paper having a recording surface and an adhesive surface opposite the recording surface, a feed roller that contacts the adhesive surface and pulls out the recording paper from the roll paper and feeds it, a print head that prints on the recording surface, and a first guide section that contacts the recording surface and guides the recording paper, the first guide section having a first friction reduction section that reduces the frictional force generated between the recording surface and the first guide section. [Brief explanation of the drawings]
[0006] [Figure 1] FIG. 2 is a perspective view of the printing device with the access cover closed. [Figure 2] FIG. 2 is a perspective view of the printing device with the access cover open. [Figure 3] FIG. [Figure 4] FIG. 2 is a perspective view of the first and second parts. [Figure 5] 5 is a perspective view of the first and second parts, seen from an angle different from that of FIG. 4. FIG. [Figure 6] FIG. 2 is a cross-sectional view of the first and second parts. DETAILED DESCRIPTION OF THE INVENTION
[0007] Hereinafter, a printing device 1, which is one embodiment of a printing device, will be described with reference to the accompanying drawings. Note that the following description will use directions based on the XYZ Cartesian coordinate system shown in each drawing, but these directions are merely for the convenience of explanation and do not limit the following embodiment in any way.
[0008] As shown in FIGS. 1 and 2, the printing device 1 is formed in a substantially rectangular parallelepiped shape and includes a device main body 3 and an opening / closing cover 5.
[0009] The device main body 3 is formed in a box shape with an open surface facing the -Y direction, and a roll paper holder 7 is provided inside the device main body 3. The roll paper holder 7 stores roll paper R, which is wound with recording paper P, the printing medium (see Figure 3). The roll paper R is inserted into the roll paper holder 7 using a drop-in method. The printing device 1 prints on the recording paper P pulled out from the roll paper R stored in the roll paper holder 7.
[0010] Recording paper P has a recording surface Pa and an adhesive surface Pb on the opposite side of recording surface Pa. An adhesive is applied to adhesive surface Pb. No backing paper is attached to adhesive surface Pb, and it is exposed. In other words, recording paper P is a so-called linerless label. In roll paper R, recording paper P is wound so that recording surface Pa is on the outside and adhesive surface Pb is on the inside. In roll paper R, recording surface Pa and adhesive surface Pb are in contact with each other.
[0011] The access cover 5 opens and closes the roll paper holder 7. The access cover 5 is attached to the -Y and -Z end of the device body 3 so that it can rotate around an axis that is approximately parallel to the X direction. An outlet 9 is provided between the tip of the access cover 5, i.e., the end in the +Z direction, and the device body 3. The outlet 9 is formed in a roughly rectangular shape that is long in the X direction. Printed recording paper P is ejected from the outlet 9.
[0012] As shown in FIG. 3, the printing device 1 includes a platen roller 11, a thermal head 13, a relay roller 15, multiple roll paper guide rollers 17, a cutter 19, a first section 21, a second section 23, and a second guide section 25. The platen roller 11, relay roller 15, roll paper guide roller 17, and a discharge roller 37 (described later) are arranged so that their rotation axes are substantially parallel to the X direction. The path along which the recording paper P is fed is referred to as the feed path 27. The recording paper P pulled from the roll paper R passes through the feed path 27 and is sent to the discharge port 9.
[0013] The platen roller 11 is provided inside the openable cover 5 so as to face the thermal head 13 across the feed path 27. The platen roller 11 holds the recording paper P between itself and the thermal head 13, and rotates using a feed motor (not shown) as its drive source, thereby pulling the recording paper P from the roll paper R and feeding it in the -Y direction toward the discharge port 9. The platen roller 11 comes into contact with the adhesive surface Pb of the recording paper P.
[0014] The thermal head 13 is provided in the device body 3 so as to be located on the opposite side of the feed path 27 from the platen roller 11. The thermal head 13 comes into contact with the recording surface Pa of the recording paper P. The thermal head 13 has multiple heating elements (not shown) and prints on the recording surface Pa of the recording paper P pulled out from the roll paper R.
[0015] The relay roller 15 is located inside the openable / closable cover 5, in the feed path 27, between the roll paper holder 7 and the platen roller 11. The relay roller 15 rotates when it comes into contact with the recording paper P being fed from the roll paper holder 7 to the platen roller 11, and guides the feeding of the recording paper P between the roll paper holder 7 and the platen roller 11.
[0016] Multiple roll paper guide rollers 17 are provided inside the roll paper holder 7 so as to come into contact with the outer surface of the roll paper R stored in the roll paper holder 7. The roll paper guide rollers 17 guide the rotation of the roll paper R as the recording paper P is pulled out.
[0017] The cutter 19 is provided on the feed path 27 between the thermal head 13 and the discharge port 9. The cutter 19 cuts the recording paper P in the width direction of the recording paper P, i.e., the X direction, behind the printed portion. The cutter 19 includes a movable blade 29, a fixed blade 31, and a cutter motor 33. The movable blade 29 and cutter motor 33 are provided in the device body 3, positioned between the thermal head 13 and the discharge port 9.
[0018] The movable blade 29 is driven by a cutter motor 33 to move toward and away from the fixed blade 31, and cuts the recording paper P between itself and the fixed blade 31. The fixed blade 31 is provided inside the openable cover 5 so as to face the movable blade 29 across the feed path 27. The cutting edge of the movable blade 29 is provided with a notch (not shown) so that the movable blade 29 cuts the recording paper P while leaving a portion of the recording paper P in the width direction. This allows the cut recording paper P to remain at the discharge port 9 without falling out of the discharge port 9.
[0019] The first portion 21, the second portion 23, and the second guide portion 25 are provided on the feed path 27 between the thermal head 13 and the platen roller 11 and the discharge opening 9, and guide the recording paper P in the thickness direction of the recording paper P, i.e., the Z direction. The first portion 21 and the second portion 23 are provided on the device body 3 so as to be located on the same side of the feed path 27 as the thermal head 13, and come into contact with the recording surface Pa of the recording paper P. The second guide portion 25 is provided inside the openable cover 5 so as to be located on the same side of the feed path 27 as the platen roller 11, and comes into contact with the adhesive surface Pb of the recording paper P. After passing through the thermal head 13 and the platen roller 11, the recording paper P passes between the first portion 21, the second portion 23, and the second guide portion 25 and is sent to the discharge opening 9.
[0020] The first portion 21 is located between the thermal head 13 and the cutter 19 and is attached to the cutter 19. The second portion 23 is located between the cutter 19 and the discharge port 9 and is attached to the cutter 19. The first portion 21 and the second portion 23 will be described in detail below.
[0021] The second guide section 25 includes a roller support member 35 and two discharge rollers 37. The roller support member 35 rotatably supports the discharge rollers 37. The surface of the roller support member 35 in the +Z direction, i.e., the surface facing the feed path 27, is referred to as a discharge guide surface 39.
[0022] A plurality of discharge guide protrusions 41 protrude from the discharge guide surface 39, aligned in the X direction, i.e., the width direction of the recording paper P (see FIG. 2). The discharge guide protrusions 41 are formed as ribs extending in the Y direction, i.e., the feed direction of the recording paper P. The adhesive surface Pb of the recording paper P contacts only the discharge guide protrusions 41 on the discharge guide surface 39. In other words, the discharge guide protrusions 41 reduce the contact area between the adhesive surface Pb of the recording paper P and the discharge guide surface 39. Therefore, the discharge guide protrusions 41 reduce the frictional force generated between the adhesive surface Pb of the recording paper P and the discharge guide surface 39 when the recording paper P passes through the second guide section 25.
[0023] The two discharge rollers 37 are arranged side by side in the Y direction, i.e., the feed direction of the recording paper P. The +Z direction end of each discharge roller 37 and the +Z direction end of each discharge guide protrusion 41 are located at approximately the same position in the Z direction. The discharge roller 37 rotates when it comes into contact with the adhesive surface Pb of the recording paper P as the recording paper P passes through the second guide section 25. Therefore, the discharge roller 37 reduces the frictional force generated between the adhesive surface Pb of the recording paper P and the discharge roller 37 as the recording paper P passes through the second guide section 25.
[0024] Here, the movable blade 29 of the cutter 19 is provided on the opposite side of the feed path 27 from the second guide section 25, so that when the recording paper P is cut, the movable blade 29 presses the recording paper P against the discharge guide surface 39 of the second guide section 25. This makes it easier for the adhesive surface Pb of the recording paper P to adhere to the discharge guide surface 39.
[0025] In contrast to this, in this embodiment, as described above, the second guide section 25 is provided with the discharge guide protrusions 41 and the discharge roller 37, which reduces the frictional force that occurs between the adhesive surface Pb of the recording paper P and the discharge guide surface 39 or the discharge roller 37 when the recording paper P passes through the second guide section 25, thereby preventing the adhesive surface Pb of the recording paper P from sticking to the discharge guide surface 39. In addition, the user can smoothly remove the cut recording paper P from the discharge opening 9.
[0026] As described above, in the roll paper R around which recording paper P is wound, the recording surface Pa and the adhesive surface Pb are in contact. For this reason, adhesive transferred from the adhesive surface Pb may remain on the recording paper P when it is pulled out from the roll paper R, and there is a risk that the recording surface Pa will adhere to a member that comes into contact with the recording surface Pa. In particular, the first portion 21 and the second portion 23 are located between the thermal head 13 and the discharge port 9, and come into contact with the recording surface Pa of the recording paper P, whose adhesive strength has increased due to heating by the thermal head 13, making it easier for the recording surface Pa to adhere to the first portion 21 and the second portion 23.
[0027] Therefore, in this embodiment, the recording surface Pa of the recording paper P is prevented from adhering to the first portion 21 and the second portion 23 as well, as will be described below.
[0028] 4 to 6, the first portion 21 includes a first mounting portion 43 and a first guide body 45. The first mounting portion 43 is formed in the shape of a substantially rectangular plate that is substantially parallel to the XZ plane, and is attached to the surface of the cutter 19 in the +Y direction.
[0029] The first guide body 45 is provided at the -Z direction end of the first mounting portion 43. The first guide body 45 is formed in the shape of a substantially rectangular plate that is substantially parallel to the XY plane. The -Z direction surface of the first guide body 45, i.e., the surface that faces the recording surface Pa of the recording paper P fed along the feed path 27, is referred to as the first guide surface 47. The first guide surface 47 is inclined in the -Z direction from the +Y direction toward the -Y direction with respect to the XY plane that is parallel to the feed path 27. In other words, the end of the first guide surface 47 on the discharge port 9 side is located closer to the feed path 27 than the end on the platen roller 11 side.
[0030] A plurality of first guide protrusions 49 protrude from the first guide surface 47, aligned in the X direction, i.e., the width direction of the recording paper P. The first guide protrusions 49 are formed like ribs extending in the Y direction, i.e., the feed direction of the recording paper P. The recording surface Pa of the recording paper P comes into contact with only the first guide protrusions 49 of the first guide surface 47. In other words, the first guide protrusions 49 reduce the contact area between the recording surface Pa of the recording paper P and the first guide surface 47. Therefore, the first guide protrusions 49 reduce the frictional force generated between the recording surface Pa of the recording paper P and the first guide surface 47 when the recording paper P passes through the first portion 21.
[0031] The second portion 23 includes two second mounting portions 51 and a second guide body 53. The two second mounting portions 51 are attached to the cutter 19 so as to sandwich the cutter 19 in the X direction.
[0032] The second guide body 53 is provided between the -Z direction ends of the two second mounting portions 51 so as to be located in the -Y direction with respect to the cutter 19. The -Z direction surface of the second guide body 53, i.e., the surface facing the recording surface Pa of the recording paper P fed along the feed path 27, is called the second guide surface 55. The second guide surface 55 is inclined in the -Z direction from the +Y direction toward the -Y direction with respect to the XY plane parallel to the feed path 27. In other words, the end of the second guide surface 55 on the discharge port 9 side is located closer to the feed path 27 than the end on the platen roller 11 side.
[0033] A plurality of second guide protrusions 57 protrude from the second guide surface 55, aligned in the X direction, i.e., the width direction of the recording paper P. The second guide protrusions 57 are formed like ribs extending in the Y direction, i.e., the feed direction of the recording paper P. The recording surface Pa of the recording paper P comes into contact only with the second guide protrusions 57 on the second guide surface 55. In other words, the second guide protrusions 57 reduce the contact area between the recording surface Pa of the recording paper P and the second guide surface 55. Therefore, the second guide protrusions 57 reduce the frictional force generated between the recording surface Pa of the recording paper P and the second guide surface 55 when the recording paper P passes through the second portion 23.
[0034] Incidentally, recording paper P pulled out from the roll paper R tends to curl in a direction that makes the recording surface Pa concave. This is thought to be because, since no backing is attached to the adhesive surface Pb, the adhesive applied to the adhesive surface Pb is stretched when the recording paper P is peeled off from the roll paper R, and this shape is retained even after it is peeled off. As a result, recording paper P advances in the +Z direction when fed along feed path 27, and as a result, there is a risk that it may enter a gap provided in the +Z direction with respect to feed path 27, such as opening 59 (see FIG. 6) through which movable blade 29 appears and disappears.
[0035] In contrast, in this embodiment, as described above, the first guide surface 47 and the second guide surface 55 are inclined in the -Z direction from the +Y direction to the -Y direction, thereby preventing the recording paper P from moving in the +Z direction.
[0036] As described above, according to the printing device 1 of this embodiment, the first portion 21 and the second portion 23 that come into contact with the recording surface Pa of the recording paper P are provided with the first guide protrusions 49 and the second guide protrusions 57, respectively, thereby reducing the frictional force that occurs between the recording surface Pa of the recording paper P and the first portion 21 and the second portion 23. This makes it possible to prevent the recording surface Pa of the recording paper P from adhering to the first portion 21 or the second portion 23 and causing a paper jam.
[0037] [Other variations] It goes without saying that the present invention is not limited to the above-described embodiment, and various configurations can be adopted within the scope of the spirit thereof. For example, the above-described embodiment can be modified in the following manner in addition to the above. Furthermore, the embodiment and the modified examples may be combined with each other.
[0038] The first portion 21 is not limited to a configuration including first guide protrusions 49 protruding from the first guide surface 47, but may be configured to include a means for reducing the frictional force generated between the recording surface Pa of the recording paper P and the first portion 21. For example, the first portion 21 may be configured to include grooves in the first guide surface 47, or the first guide surface 47 may be a surface that has been subjected to a low-friction surface treatment such as fluorine treatment, or may be configured to include a roller such as the discharge roller 37. These variations are also applicable to the second portion 23. Thus, the "first friction-reducing portion" is a concept that includes not only protrusions but also grooves, low-friction surface treatments, rollers, etc., and the first portion 21 and the second portion 23 may be configured to include one or more of the "first friction-reducing portion," such as protrusions, grooves, low-friction surface treatments, rollers, etc. Note that the "friction-reducing portion" may also be referred to as an "adhesion-suppressing portion."
[0039] The second guide portion 25 is not limited to a configuration including a discharge roller 37 and a discharge guide protrusion 41 protruding from the discharge guide surface 39, but may be configured to include a means for reducing the frictional force generated between the adhesive surface Pb of the recording paper P and the second guide portion 25. For example, the second guide portion 25 may be configured to include a groove provided in the discharge guide surface 39, or the discharge guide surface 39 may be a surface that has been subjected to a low-friction surface treatment such as fluorine treatment. In this way, the "second friction reduction portion" is a concept that includes not only protrusions and rollers, but also grooves, low-friction surface treatments, etc., and the second guide portion 25 may be configured to include one or more of the "second friction reduction portion," such as protrusions, grooves, low-friction surface treatments, rollers, etc.
[0040] The printing device 1 is not limited to a configuration including both the first section 21 and the second section 23, but may be configured to include either one of them. Furthermore, the first section 21 and the second section 23 are not limited to a configuration in which they are provided between the thermal head 13 and the discharge port 9 on the feed path 27, but one or both of them may be provided between the roll paper holder 7 and the thermal head 13.
[0041] The printing device 1 may be configured to include, for example, an inkjet head that ejects ink by an inkjet method, instead of the thermal head 13. In other words, the term "print head" is a concept that includes not only the thermal head 13 but also inkjet heads and the like.
[0042] [Note] The following additional information is provided regarding the printing device. The printing device comprises a roll paper holder that stores roll paper wound with recording paper having a recording surface and an adhesive surface opposite the recording surface, a feed roller that contacts the adhesive surface and pulls out the recording paper from the roll paper and feeds it, a print head that prints on the recording surface, and a first guide section that contacts the recording surface and guides the recording paper, the first guide section having a first friction reduction section that reduces the frictional force generated between the recording surface and the first guide section.
[0043] According to this configuration, the first guide section that comes into contact with the recording surface of the recording paper is provided with a first friction-reducing section, which reduces the frictional force that occurs between the recording surface of the recording paper and the first guide section, thereby preventing the recording surface of the recording paper from adhering to the first guide section and causing a paper jam. The platen roller 11 is an example of a "feed roller." The first portion 21 is an example of a "first guide portion." Similarly, the second portion 23 is an example of a "first guide portion."
[0044] In this case, the first friction-reducing portion preferably includes a protrusion that protrudes from the surface of the first guide portion that faces the recording surface and comes into contact with the recording surface.
[0045] According to this simple configuration, the frictional force generated between the recording surface and the first guide portion can be reduced. The first guide protrusion 49 is an example of a "protrusion." Similarly, the second guide protrusion 57 is an example of a "protrusion." Furthermore, the first guide surface 47 is an example of a "surface facing the recording surface." Similarly, the second guide surface 55 is an example of a "surface facing the recording surface."
[0046] In this case, it is preferable that the print head is a thermal head having a plurality of heat generating elements, and the first guide section is provided in the feeding path of the recording paper between the print head and the discharge outlet through which the recording paper is discharged.
[0047] According to this configuration, the first guide portion comes into contact with the recording surface of the recording paper, whose adhesive strength has increased due to heating by the thermal head, but because the first guide portion has a first friction reduction portion, it is possible to prevent the recording surface of the recording paper from adhering to the first guide portion.
[0048] In this case, it is preferable that the feed path includes a cutter that is provided between the print head and the discharge outlet and cuts the recording paper, and that the first guide section includes a first portion that is provided between the print head and the cutter on the feed path.
[0049] This configuration can prevent the recording surface of the recording paper from adhering to the first portion provided between the print head and the cutter.
[0050] In this case, it is preferable that the first guide portion includes a first portion and a second portion, and the second portion is provided between the cutter and the discharge port on the feed path.
[0051] This configuration makes it possible to prevent the recording surface of the recording paper from adhering to the first portion provided between the print head and the cutter, and the second portion provided between the cutter and the discharge outlet.
[0052] In this case, it is preferable that the recording paper feed path includes a second guide portion that is provided between the feed roller and the discharge outlet from which the recording paper is discharged, comes into contact with the adhesive surface, and guides the recording paper, and that the second guide portion has a second friction reduction portion that reduces the friction force generated between the adhesive surface and the second guide portion.
[0053] According to this configuration, the second guide section that comes into contact with the adhesive surface of the recording paper is provided with a second friction-reducing section, which reduces the frictional force that occurs between the adhesive surface of the recording paper and the second guide section, thereby preventing the adhesive surface of the recording paper from adhering to the second guide section and causing a paper jam.
[0054] The printing device comprises a roll paper holder that stores roll paper wound with recording paper having a recording surface and an adhesive surface opposite the recording surface, a feed roller that pulls the recording paper from the roll paper and feeds it, a print head that is located on the opposite side of the feed roller from the feed path along which the recording paper is fed and prints on the recording paper, and a first guide section that is located on the same side of the feed path as the print head and guides the recording paper, and the first guide section has a first friction reduction section that reduces the friction force generated between the recording surface and the first guide section.
[0055] According to this configuration, the first guide section, which is located on the same side of the feed path as the print head, is provided with a first friction-reducing section, which reduces the frictional force generated between the recording surface of the recording paper and the first guide section, thereby preventing the recording surface of the recording paper from adhering to the first guide section and causing paper jams. [Explanation of symbols]
[0056] 1...printing device, 9...ejection port, 11...platen roller, 13...thermal head, 19...cutter, 21...first part, 23...second part, 25...second guide part, 27...feed path, 37...ejection roller, 39...ejection guide surface, 41...ejection guide protrusion, 47...first guide surface, 49...first guide protrusion, 55...second guide surface, 57...second guide protrusion, P...recording paper, Pa...recording surface, Pb...adhesive surface, R...roll paper.
Claims
1. a roll paper holder for accommodating roll paper around which recording paper having a recording surface and an adhesive surface provided on the opposite side of the recording surface is wound; a feed roller that contacts the adhesive surface and feeds the recording paper by pulling it out from the roll paper; a print head that prints on the recording surface; a first guide portion that contacts the recording surface and guides the recording paper; a second guide portion that is provided in the feeding path of the recording paper between the feeding roller and an outlet through which the recording paper is discharged, and that comes into contact with the adhesive surface and guides the recording paper; the first guide portion has a first friction reduction portion that reduces a friction force generated between the recording surface and the first guide portion, The printing device, characterized in that the second guide portion has a second friction reduction portion that reduces the friction force generated between the adhesive surface and the second guide portion.
2. 2. The printing device according to claim 1, wherein the first friction reducing portion includes a protrusion that protrudes from a surface of the first guide portion that faces the recording surface and that comes into contact with the recording surface.
3. the print head is a thermal head having a plurality of heating elements, 3. The printing device according to claim 1, wherein the first guide portion is provided in the feeding path of the recording paper between the print head and an outlet through which the recording paper is discharged.
4. a cutter that is provided in the feed path between the print head and the discharge outlet and cuts the recording paper; The first guide portion includes a first portion, 4. The printing device according to claim 3, wherein the first portion is provided in the feed path between the print head and the cutter.
5. The first guide portion includes the first portion and a second portion, 5. The printing device according to claim 4, wherein the second portion is provided in the feed path between the cutter and the discharge port.
6. a roll paper holder for accommodating roll paper around which recording paper having a recording surface and an adhesive surface provided on the opposite side of the recording surface is wound; a feed roller that contacts the adhesive surface and feeds the recording paper by pulling it out from the roll paper; a print head that prints on the recording surface; a first guide portion that contacts the recording surface and guides the recording paper, the first guide portion has a first friction reduction portion that reduces a friction force generated between the recording surface and the first guide portion, the first friction reducing portion extends toward an outlet through which the recording paper is discharged, A printing device, characterized in that the end of the first friction reducing portion on the discharge port side is located closer to the feeding path of the recording paper than the end of the first friction reducing portion on the feeding roller side.
7. 7. The printing device according to claim 6, further comprising a relay roller that guides the adhesive surface at a position upstream of the feed roller in the feeding direction of the recording paper.
8. a second guide portion that contacts the adhesive surface and guides the adhesive surface, The printing device according to claim 6 , wherein the second guide portion has a protrusion that can come into contact with the adhesive surface.
Citation Information
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