Transport device and printer
The conveying device with overlapping ascending and descending paths and a movable cover unit addresses interference and media damage issues, enabling efficient path length expansion and easy media removal.
Patent Information
- Application Number
- JP2025136416
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-08-19
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2040-12-23
AI Technical Summary
The inkjet recording device configuration, which includes a descending and ascending section in the transport path to increase path length without increasing device size, faces interference issues when the conveying path is opened, making it difficult to open and potentially damaging media.
A conveying device with overlapping descending and ascending paths in the device height direction, featuring a cover unit that opens and closes the path, and a moving unit that adjusts the first path forming unit's position based on the cover's operation, ensuring the paths do not interfere and allowing easy media removal.
The solution allows for increased path length without increasing device size, facilitates easy opening of the conveying path, and prevents media damage by maintaining a safe distance between path sections during operation.
Smart Images

Figure 2025159167000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to a conveying device and a printing device. [Background technology]
[0002] The inkjet recording device of Patent Document 1 shows a transport path in which the recording medium ascends from an upstream transport roller to a downstream transport roller in the transport direction. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Japanese Patent Publication No. 2019-14253 Summary of the Invention [Problem to be solved by the invention]
[0004] In the inkjet recording device of Patent Document 1, a possible configuration for increasing the length of the transport path without increasing the size of the device is to provide a descending section and an ascending section in part of the transport path so that part of the transport path overlaps in the height direction of the device. The transport path is made up of members that remain in the device body and members that can be opened and closed relative to the device body. However, with this configuration, when the conveying path is opened, there is a risk that the descending and ascending portions in part of the conveying path will cause interference between the members, making it impossible to open the conveying path. [Means for solving the problem]
[0005] In order to solve the above problems, a conveying device according to the present invention includes a device main body in which a conveying path is formed in which a descending path along which a medium is conveyed downward in a device height direction and an ascending path along which the medium is conveyed upward in the device height direction overlap in the device height direction; a cover section provided in the device main body and capable of opening and closing the conveying path; a first path forming section provided in the device main body so as to be movable to a first position and a second position, which forms a part of the descending path at the first position and retracts from the descending path at the second position; and a cover section provided in the cover section so as to close the conveying path. and a moving unit that moves the first path forming unit to one of the first position and the second position in accordance with the opening and closing operation of the cover unit, wherein at least a portion of the first path forming unit is located in a movement area of the second path forming unit in the closed state, and the moving unit moves the first path forming unit to the second position when the cover unit is opened, and moves the first path forming unit to the first position when the cover unit is closed. [Brief explanation of the drawings]
[0006] [Figure 1] FIG. 2 is a diagram showing a paper transport path of the printer according to the embodiment. [Figure 2] FIG. 2 is a schematic diagram of a paper transport path in the printer according to the embodiment. [Figure 3] FIG. 1 is a perspective view showing a state in which the transport path of the printer according to the embodiment is open. [Figure 4] FIG. 4 is a perspective view of a lower guide member and a moving unit of the transport unit according to the embodiment, as viewed from below. [Figure 5] FIG. 4 is a perspective view showing a part of a lower guide member of the transport unit according to the embodiment. [Figure 6] FIG. 4 is a vertical cross-sectional view showing a state in which a lower guide member of the transport unit according to the embodiment is supported by a main body frame. [Figure 7] FIG. 10 is a vertical cross-sectional view showing a state in which the lower guide member of the conveying unit is supported by a support unit according to the embodiment. [Figure 8]FIG. 10 is a perspective view showing a state in which the lever member of the transport unit contacts the contact surface of the cover unit according to the embodiment. [Figure 9] FIG. 3 is an enlarged schematic view of a part of a conveying path of a conveying unit according to the embodiment. [Figure 10] FIG. 10 is a side view showing a state in which the lower guide member moves from the first position to the second position in accordance with the rotation of the lever member of the transport unit according to the embodiment. [Figure 11] FIG. 10 is a schematic diagram illustrating a state in which the cover of the printer according to the embodiment is opened to open the transport path. DETAILED DESCRIPTION OF THE INVENTION
[0007] The present invention will be briefly described below. A conveying device according to a first aspect includes a device main body in which a conveying path is formed, in which a descending path along which a medium is conveyed downward in a device height direction and an ascending path along which the medium is conveyed upward in the device height direction overlap in the device height direction; a cover unit provided in the device main body and capable of opening and closing the conveying path; a first path forming unit provided in the device main body so as to be movable between a first position and a second position, which forms a part of the descending path at the first position and retracts from the descending path at the second position; and a closed state cover provided in the cover unit, in which the cover unit closes the conveying path. and a moving unit that moves the first path forming unit to one of the first position and the second position in accordance with the opening and closing operation of the cover unit, wherein at least a portion of the first path forming unit is located in a movement area of the second path forming unit in the closed state, and the moving unit moves the first path forming unit to the second position when the cover unit is opened, and moves the first path forming unit to the first position when the cover unit is closed. According to this aspect, compared to a configuration having a conveying path that extends linearly along the device height direction, the length of the conveying path can be increased by having the ascending path and the descending path that overlap in the device height direction. Furthermore, at least a portion of the first path forming portion is located in the movement area of the second path forming portion when the cover portion is in the closed state. In other words, at least a portion of the first path forming portion and at least a portion of the second path forming portion are arranged to overlap in the device height direction, which allows the transport device to be made smaller. Furthermore, when the cover is opened, the moving unit moves the first path forming unit to the second position, so that the first path forming unit is separated from the movement area of the second path forming unit, making it difficult to restrict the opening of the cover unit and easier to open the transport path. This makes it easy to remove the media that is stuck in the transport path due to a jam or the like.
[0008] The conveying device of the second aspect is characterized in that, in the first aspect, the first path forming portion and the second path forming portion are arranged opposite each other at a predetermined distance to form the descending path, and when the moving portion moves the first path forming portion to the second position, the moving portion sets the distance between the first path forming portion and the second path forming portion to a distance equal to or greater than the predetermined distance. According to this aspect, when the first path forming portion is moved to the second position, a distance equal to or greater than the predetermined distance is maintained. In other words, the first path forming portion and the second path forming portion are less likely to come into contact with each other, which can prevent damage to the media remaining in the transport path.
[0009] The conveying device of the third aspect is characterized in that, in the first or second aspect, the first path forming section comprises a medium support member capable of supporting the medium, and a first rotation shaft that rotatably supports the medium support member to one of the first position and the second position, and the first rotation shaft is located below the movement area of the second path forming section in the device height direction. According to this aspect, the first path forming portion is moved to one of the first position and the second position by rotating about the first rotation shaft, so that the first path forming portion can be moved with a simple configuration. Furthermore, the first rotation shaft is located below the movement region of the second path forming portion, so that the first rotation shaft can be prevented from coming into contact with the second path forming portion.
[0010] The conveying device of the fourth aspect is characterized in that, in the third aspect, a holding portion is provided that holds the first path forming portion at the first position, and the holding portion releases the holding state of the first path forming portion when the cover portion is opened. According to this aspect, when the cover portion is opened, the holding portion releases the holding state of the first path forming portion. Here, when the holding state of the first path forming portion is released, the first path forming portion becomes cantilevered by the first rotation shaft and rotates by its own weight, so that the movement range of the second path forming portion can be opened with a simple configuration.
[0011] A fifth aspect of the conveying device is the fourth aspect, wherein the holding section comprises a second rotating shaft, a lever section fixed to the second rotating shaft and rotating the second rotating shaft in conjunction with the opening and closing operation of the cover section, and a support section fixed to the second rotating shaft and supporting the medium support member at the first position, and the lever section contacts the cover section when the cover section is in the closed state and moves away from the cover section when the cover section is in the open state, and when the lever section is in contact with the cover section, the support section supports the medium support member. According to this aspect, when the cover is in the closed state, the lever contacts the cover, causing a pressing force to act on the lever. This causes the lever to rotate the second rotation shaft and the support. As the support rotates, it pushes up the medium support member and supports the medium support member at the first position. When the cover portion is in the open state, the medium support member moves down due to its own weight, causing the support portion to rotate and opening the movement area of the second path forming portion. In this way, the medium support member, that is, the first path forming portion, can be displaced by opening and closing the cover portion.
[0012] A sixth aspect of the transport device is the fourth or fifth aspect, wherein the moving unit also serves as the holding unit. According to this aspect, there is no need to provide the holding portion as a separate structure from the moving portion, and therefore the structure for moving and holding the first path forming portion can be simplified.
[0013] The conveying device of the seventh aspect is any one of the third to sixth aspects, characterized in that the first rotating shaft is provided with a first conveying roller capable of conveying the medium, the second path forming portion is provided with a second conveying roller that conveys the medium together with the first conveying roller, and when the cover portion is in the closed state, the first conveying roller and the second conveying roller form a nip portion that sandwiches the medium, and when the cover portion is in the open state, the formation of the nip portion is released. According to this aspect, the nip portion formed by the first transport roller and the second transport roller, among the nip portions of the roller pair that transport the medium along the transport path, is released in conjunction with the cover portion being in the open state, making it easier to remove the medium remaining in the transport path.
[0014] The conveying device of the eighth aspect is characterized in that, in any one of the first to seventh aspects, the first path forming section is provided with a support roller that supports the medium, the second path forming section is provided with an opposing roller that faces the support roller and rotates together with the support roller to convey the medium, and when the first path forming section is positioned at the first position, the support roller and the opposing roller are nipped together, and when the first path forming section is positioned at the second position, the nipped state between the support roller and the opposing roller is released. According to this aspect, the nip state formed by the support roller and the opposing roller, among the nip portions of the roller pair that transport the medium along the transport path, is released in conjunction with the cover portion being in the open state, making it easier to remove the medium remaining in the transport path.
[0015] The conveying device of the 9th aspect is characterized in that, in the 8th aspect, the moving section moves the first path forming section upward in the height direction of the device, thereby pushing the support roller up to a position where it is nipped with the opposing roller. According to this aspect, the moving section moves the first path forming section, causing the support roller to be nipped with the opposing roller. Therefore, the support roller and the opposing roller can be nipped with a simpler configuration than a configuration in which the movement of the first path forming section and the operation of nipping the support roller and the opposing roller are performed separately.
[0016] A printing device according to a tenth aspect is characterized by comprising a conveying device according to any one of the first to ninth aspects, and a recording unit that records on a medium conveyed by the conveying device. According to this aspect, the functions and effects of any one of the first to ninth aspects can be obtained.
[0017] The following describes in detail a transport unit 30 as an example of a transport device and a printer 10 as an example of a printing device according to the present invention. 1, the printer 10 is configured as an inkjet device that performs recording by ejecting ink Q, which is an example of a liquid, onto paper P, which is an example of a medium. Note that the XYZ coordinate system shown in each figure is a Cartesian coordinate system. The X direction is the horizontal direction and is the width direction of the device when viewed from the operator of the printer 10. Within the X direction, the direction to the left is the +X direction, and the direction to the right is the -X direction. The Y direction is a horizontal direction that is a width direction and a depth direction of the device that intersects with the conveyance direction of the paper P. The direction toward the front of the Y direction is the +Y direction, and the direction toward the back is the −Y direction. The Z direction is an example of the device height direction, and is the vertical direction. The upward direction in the Z direction is the +Z direction, and the downward direction is the -Z direction. In this embodiment, "upward" refers to a direction that includes an upward component in the Z direction. "Downward" refers to a direction that includes a downward component in the Z direction.
[0018] In the printer 10, the paper P is transported through a transport path T indicated by a dashed line. The transport direction in which the paper P is transported is along the transport path T, and therefore differs at each section of the transport path T. The printer 10 includes a device main body 12, a transport unit 30 (described later), and a line head 28. The device body 12 includes a housing that forms the outer shell. A discharge section 13 is formed in the +Z direction from the center of the device body 12 in the Z direction, and includes a space into which the recorded paper P is discharged. The device body 12 is also provided with a plurality of paper cassettes 14. An opening 12A that opens in the X direction is formed at the end of the device body 12 in the -X direction. When the opening 12A is open, a transport path T, which will be described later, is exposed.
[0019] Paper sheets P are stored in multiple paper cassettes 14. Paper sheets P stored in paper cassettes 14 are transported along transport path T by pick roller 16 and transport roller pairs 17 and 18. Transport path T is a junction of transport path T1, along which paper sheets P are transported from an external device (not shown), and transport path T2, along which paper sheets P are transported from a manual feed tray 19 provided in the device main body 12 via a feed roller pair 31. The area in the -X direction from the center in the X direction of the printer 10 is configured as transport unit 30, an example of a transport device that transports paper sheets P. Details of transport unit 30 will be described later. As an example, the main body of transport unit 30 is also used as the device main body 12.
[0020] The transport path T is provided with two pulleys 21, a transport belt 22 wound around the two pulleys 21, a pair of registration rollers 23 that performs skew correction and the like on the paper P, multiple transport roller pairs 24 that transport the paper P, multiple flaps 25 that switch the path along which the paper P is transported, and a medium width sensor 26 that detects the width of the paper P in the Y direction. Downstream of the transport belt 22 on the transport path T, there are provided a transport path T3 that leads to the discharge unit 13 and a reversing path T4 for reversing the paper P upside down.
[0021] In the transport path T, a curved path R is formed upstream of the medium width sensor 26 . The curved path R is formed as a path having a set of peaks and valleys. Specifically, the curved path R has an introduction path R1 that curves from the conveyance roller pair 18 toward a position in the +X direction and the +Z direction, a descending path R2 that curves while descending from the +X direction end of the introduction path R1 toward a position in the +X direction and the -Z direction, and an ascending path R3 that curves while ascending from the +X direction end of the descending path R2 toward the +X direction and the +Z direction.
[0022] The device main body 12 is also provided with an ink tank 27 that contains ink Q, a line head 28, and a control unit 29 that controls the operation of each unit of the printer 10. The line head 28 is located downstream of the medium width sensor 26 in the transport direction of the paper P. The line head 28 is also an example of a recording unit, and performs recording by ejecting ink Q supplied from an ink tank 27 onto the paper P transported by the transport unit 30. The control unit 29 is configured to include a CPU (Central Processing Unit), ROM (Read Only Memory), RAM (Random Access Memory), and storage (not shown), and controls the transport of paper P in the printer 10 and the operation of each part, including the line head 28 and the transport unit 30.
[0023] As shown in FIG. 6, the device body 12 has a body frame 15 that constitutes a part of the device body 12 . The main body frame 15 is located in the -Z direction with respect to a first path forming portion 42, which will be described later. The main body frame 15 is formed, for example, by bending a metal plate at multiple locations, and is formed into a U-shape that opens in the +Z direction when viewed from the Y direction. Specifically, the main body frame 15 has a bottom wall 15A along the XY plane, a support wall 15B that stands upright in the +Z direction at the -X direction end of the bottom wall 15A, and a vertical wall 15C that is formed by cutting and raising a portion of the bottom wall 15A in the +Z direction. A through-hole 15D that penetrates the vertical wall 15C in the Y direction is formed.
[0024] As shown in FIG. 2, the conveying section 30 includes, for example, the device main body 12, a cover section 32, a first path forming section 42, a second path forming section 74, and a moving section 60. As described above, the apparatus main body 12 has the transport path T formed therein, which includes the introduction path R1, the descending path R2, and the ascending path R3. The downward path R2 is a path along which the paper P is transported downward in the +Z direction. The upward path R3 is disposed downstream of the downward path R2 in the transport direction of the paper P. The upward path R3 is a path along which the paper P is transported upward in the Z direction. The descending path R2 and the ascending path R3 are formed by a first path forming portion 42 and a second path forming portion 74, which will be described later. The descending path R2 and the ascending path R3 included in the conveying path T overlap in a range ZA in the Z direction.
[0025] 3, the cover part 32 is formed in a plate shape having a predetermined thickness. The cover part 32 is provided at the end of the device body 12 in the -X direction and at the end of the opening 12A in the -Y direction via a hinge part (not shown). This allows the cover part 32 to rotate around an axis along the Z direction. The cover unit 32 opens or closes the opening 12A as it rotates, thereby opening or closing the conveying path T. In other words, the cover unit 32 is rotatable between an open position that exposes the conveying path T and a closed position that hides the conveying path T. Furthermore, as an example, a reversing path forming member 34 and a second path forming portion 74, which will be described later, are attached to the cover unit 32. The reversing path forming member 34 has an upper part 36 that forms the part above the center of the reversing path T4 (FIG. 1) in the Z direction, and a lower part 38 that includes the part below the center of the reversing path T4 in the Z direction. A second path forming portion 74 is attached to the lower part 38.
[0026] 1 and 4 show the first path forming section 42 and the moving section 60 in a state in which the transport path T is formed. The first path forming part 42 is provided in the device body 12 so as to be movable between a first position and a second position. When the first path forming part 42 is located at the first position, it forms a part of the descending path R2. When the first path forming part 42 is located at the second position, it is retracted in the -Z direction from the descending path R2. The first path forming section 42 includes, for example, a lower guide member 46 that can support the paper sheet P, and a first rotation shaft 43 that supports the lower guide member 46 so that the lower guide member 46 can rotate to one of a first position and a second position.
[0027] 2, the first rotation shaft 43 is located in the -Z direction with respect to the conveying path T at the connection and inflection point between the descending path R2 and the ascending path R3. In addition, the first rotation shaft 43 is located below a movement area S of a second path forming portion 74 (described later) in the Z direction. A portion of the first path forming portion 42 in the −X direction from the center thereof is located within the movement area S of the second path forming portion 74 when the cover portion 32 is in the closed state. The second transport roller 81 is located in the +Z direction relative to the first rotation shaft 43. The second transport roller 81 has a shaft portion 81A along the Y direction, and sandwiches the paper P together with the first transport roller 45 (described later), transporting the paper P downstream while being rotated.
[0028] 4, the first rotating shaft 43 is formed in a cylindrical shape extending along the Y direction. Both ends of the first rotating shaft 43 in the Y direction are rotatably supported by bearings 44 provided on a frame (not shown) of the device body 12 (FIG. 1). A first transport roller 45 is provided in the center of the first rotating shaft 43 in the Y direction. The first transport roller 45 is rotated in accordance with the rotation of the first rotary shaft 43. The first transport roller 45 is also capable of transporting the paper P. In this embodiment, as an example, two first transport rollers 45 are provided spaced apart in the Y direction.
[0029] The lower guide member 46 is an example of a medium support member, and is configured to include an upper wall 47, a front wall 48, a rear wall 51, two side walls 52, two arm portions 54, a reinforcing portion 56, and a supported portion 58. Note that the arrangement of each component will be described here assuming that the lower guide member 46 is disposed in the second position, i.e., along the X direction. The upper wall 47 is formed in the shape of a rectangular plate having a predetermined thickness in the Z direction. The width of the upper wall 47 in the Y direction is greater than the width of the paper P in the Y direction. The front wall 48 extends in the −Z direction from the −X direction end of the top wall 47. The connecting portion between the top wall 47 and the front wall 48 is a rounded surface. The rear wall 51 extends in the −Z direction from the end of the upper wall 47 in the +X direction. The two side walls 52 extend in the −Z direction from both ends of the top wall 47 in the Y direction, and connect the front wall 48 and the rear wall 51 in the X direction.
[0030] 5, a storage section 49 is formed in a portion of upper wall 47 in the -X direction from the center in the X direction, recessed from an upper surface 47A of upper wall 47 in the -Z direction. In storage section 49, support rollers 53 are provided so that they can rotate with the Y direction as their axial direction. Storage section 49 also has grooves 49A that guide shafts 53A, which will be described later, in the Z direction. Support roller 53 is formed in a cylindrical shape and has a shaft portion 53A and an outer peripheral surface 53B. A portion of outer peripheral surface 53B protrudes in the +Z direction from upper surface 47A. Support roller 53 supports paper P being transported and transports it downstream. A plurality of ribs 47B are formed on the upper surface 47A.
[0031] 7, a spring storage portion 59 is provided on the outer side in the Y direction of the storage portion 49 in the lower guide member 46. A coil spring 61 is stored in the spring storage portion 59. The coil spring 61 is expandable and contractible in the Z direction, and presses the shaft portion 53A in the +Z direction. When an external force is applied to the support roller 53, it moves in the −Z direction, but because the shaft portion 53A is pressed in the +Z direction by the coil spring 61, it stops at a position where the external force and the reaction force are balanced.
[0032] 4, the arm portion 54 extends in the +X direction from both ends of the side wall 52 in the +X direction and from the rear wall 51. The length of the arm portion 54 in the X direction is longer than the length corresponding to the radius of the first transport roller 45. In addition, a notch 55 is formed at the end of the arm portion 54 in the +X direction. The notch 55 is formed in a U-shape that opens in the +X direction when viewed from the Y direction. The notch 55 is in contact with and slidable on the outer peripheral surface of the first rotating shaft 43. In other words, with the notch 55 in contact with the first rotating shaft 43, the lower guide member 46 is able to rotate, i.e., swing, around the first rotating shaft 43.
[0033] The reinforcing portion 56 is made up of a plurality of vertical walls 57 extending from the upper wall 47 in the −Z direction. Supported portion 58 is formed in part of reinforcing portion 56, and is a wall portion extending in the -Z direction from a portion that is in the -X direction from the center in the X direction of upper wall 47. End surface 58A in the -Z direction of supported portion 58 is a flat surface along the XY plane.
[0034] The moving unit 60 moves the first path forming unit 42 to one of the first position and the second position described above in accordance with the opening and closing operation of the cover unit 32 (FIG. 3). Specifically, when the cover unit 32 is opened, the moving unit 60 moves the first path forming unit 42 to the second position, and when the cover unit 32 is closed, the moving unit 60 moves the first path forming unit 42 to the first position. Movement here is not limited to a configuration in which the lower guide member 46 is moved by applying force to it, but also includes a configuration in which the lower guide member 46 is moved by releasing support for the lower guide member 46, and a configuration in which the lower guide member 46 is moved while being supported. In this embodiment, the moving unit 60 is also an example of a holding unit that holds the first path forming unit 42 at the first position. That is, the moving unit 60 also functions as a holding unit. When the cover unit 32 is opened, the moving unit 60 releases the holding state of the first path forming unit 42.
[0035] The moving portion 60 includes, for example, a second rotation shaft 62, a lever portion 64, and a support portion 68. The second rotating shaft 62 is located in the -Z direction relative to the lower guide member 46. The second rotating shaft 62 is formed in a cylindrical shape extending along the Y direction. Both ends of the second rotating shaft 62 in the Y direction are rotatably supported by vertical walls 15C (FIG. 6) of the main body frame 15. A support portion 68, which will be described later, is provided at the center of the second rotating shaft 62 in the Y direction.
[0036] As an example, the lever portion 64 is fixed to the end portion of the second rotating shaft 62 in the +Y direction. Furthermore, the lever portion 64 is disposed in the +Y direction with respect to the side wall 52 in the +Y direction. The lever portion 64 comes into contact with a contact surface 86 (FIG. 8) of the cover portion 32, which will be described later, to rotate the second rotating shaft 62 in conjunction with the opening and closing operation of the cover portion 32. The lever portion 64 has an attachment portion 65 extending radially from the second rotating shaft 62, an extension portion 66 extending from the end portion of the attachment portion 65 in a direction intersecting the radial direction, and a contact portion 67 formed at the tip of the extension portion 66. The extending portion 66 extends in the +Z direction from the upper wall 47 when viewed from the +Y direction. Contact portion 67 protrudes in the -X direction from extension portion 66. Contact portion 67 is formed in a trapezoidal shape with its upper base in the -X direction when viewed from the +Y direction. Contact surface 67A is formed at a position corresponding to the upper base of the trapezoid of contact portion 67.
[0037] As an example, the support portion 68 is fixed to the second rotating shaft 62 and supports the lower guide member 46 at the first position. The support portion 68 also has a first plate portion 69 that extends in the -X direction and the +Z direction from the second rotating shaft 62 toward the lower guide member 46, and a second plate portion 71 that extends in the -X direction from a portion of the first plate portion 69 opposite the second rotating shaft 62 side. An upper surface 71A of the second plate portion 71 in the +Z direction comes into contact with the end surface 58A, causing the support portion 68 to support the lower guide member 46. In other words, the moving portion 60 holds the lower guide member 46.
[0038] When moving the first path forming unit 42 to the second position, the moving unit 60 sets the distance between the first path forming unit 42 and a second path forming unit 74 (FIG. 2) described later to a distance equal to or greater than a predetermined distance d (FIG. 2). Here, the predetermined distance d is the shortest distance in the Z direction between the first path forming unit 42 and the second path forming unit 74 when the first path forming unit 42 is disposed at the first position and faces the second path forming unit 74, making it possible to convey the paper P. Furthermore, the moving unit 60 moves the first path forming unit 42 upward in the Z direction, thereby pushing up the support roller 53 to a position where it is nipped with an opposing roller 82 (FIG. 2) described below.
[0039] The lever portion 64 comes into contact with the cover portion 32 when the cover portion 32 is in the closed state, and moves away from the cover portion 32 when the cover portion 32 is in the open state. Specifically, when the cover portion 32 is in the closed state, the contact surface 67A of the lever portion 64 comes into contact with a contacted surface 86 (FIG. 8) of a contacted portion 84, which will be described later. When the lever portion 64 is in contact with the cover portion 32 , the support portion 68 supports the lower guide member 46 .
[0040] 6, when the first path forming portion 42 is located at the second position, the lower guide member 46 is located along the X direction. Here, the upper surface 69A of the first plate portion 69 in the +Z direction comes into contact with the end surface 58A, causing the support portion 68 to support the lower guide member 46. In this way, the support portion 68 supports the lower guide member 46, for example, regardless of whether the first path forming portion 42 is located at the first position or the second position.
[0041] 2, the second path forming portion 74 is provided at the end of the cover portion 32 in the -Z direction. Furthermore, when the cover portion 32 closes the opening 12A, that is, when the cover portion 32 is in a closed state in which the cover portion 32 closes the conveying path T, the second path forming portion 74 forms the ascending path R3 and also forms the descending path R2 together with the first path forming portion 42. Note that in this embodiment, the second path forming portion 74 refers to the portion of the member provided on the cover portion 32 that forms the descending path R2 and the ascending path R3.
[0042] When viewed from the Y direction, the area sandwiched between an imaginary line K1 that passes through the +Z direction end of the second path forming portion 74 and runs along the X direction, and an imaginary line K2 that passes through the -Z direction end of the second path forming portion 74 and runs along the X direction, is referred to as the movement area S of the second path forming portion 74. The movement area S is an area through which the second path forming portion 74 moves when the cover portion 32 is opened or closed. In Fig. 2, the movement area S is shown as a shaded area.
[0043] As shown in FIG. 9, the second path forming section 74 includes, for example, an upper guide member 76, a second transport roller 81, an opposing roller 82, and a contacted section 84 (FIG. 8). The upper guide member 76 has a bottom wall 77 located at the lower end in the -Z direction. The bottom wall 77 has a recessed portion 78 facing the lower guide member 46 in the Z direction, and a protruding portion 79 located downstream of the recessed portion 78 in the transport direction of the paper P. Recess 78 is a portion recessed in the +Z direction. Recess 78 also has an inclined surface 78A that extends toward a position in both the +X and +Z directions, and an inclined surface 78B that extends toward a position in the +X and -Z directions downstream of inclined surface 78A. Inclined surface 78B faces upper surface 47A in the Z direction. The protrusion 79 is a portion that protrudes in the −Z direction. The top of the protrusion 79 faces the first transport roller 45 in the Z direction. Here, the first path forming portion 42 and the second path forming portion 74 are disposed opposite each other with the above-mentioned predetermined distance d therebetween, thereby forming the downward path R2.
[0044] As an example, the second transport roller 81 is provided on the top of the convex portion 79. The second transport roller 81 has a shaft portion 81A extending along the Y direction. The shaft portion 81A is rotatably supported by a bearing (not shown) provided in the upper guide member 76. The second transport roller 81 sandwiches the paper sheet P together with the first transport roller 45 and transports the paper sheet P while rotating. When the cover 32 is in the closed state, the first transport roller 45 and the second transport roller 81 form a nip N1 that sandwiches the paper P. When the cover 32 is in the open state, the nip N1 is released.
[0045] As an example, the opposing roller 82 is provided at a position in the +X direction relative to the deepest part of the recess 78. The opposing roller 82 has a shaft portion 82A extending along the Y direction. The shaft portion 82A is rotatably supported by a bearing (not shown) provided in the upper guide member 76. The opposing roller 82 faces the support roller 53 in the Z direction, sandwiches the paper P together with the support roller 53, and conveys the paper P by being rotated. When the first path forming unit 42 is disposed at the first position, the support roller 53 and the opposing roller 82 are nipped together to form a nip N2. When the cover 32 is opened and the first path forming unit 42 is disposed at the second position, the nipped state between the support roller 53 and the opposing roller 82 is released.
[0046] 8, a contacted portion 84 is provided at the end portion in the +Y direction of the upper guide member 76. The contacted portion 84 is included in the cover portion 32 (FIG. 2). As an example, the contacted portion 84 has a vertical wall 85 that stands upright along the YZ plane and a rib 87 that supports the vertical wall 85 from the -X direction. The end face of the vertical wall 85 in the +X direction is the contacted surface 86 that is along the YZ plane. The contacted surface 86 comes into contact with the contact portion 67 in the X direction during the closing operation when the cover portion 32 is closed and in the closed state. When the contacted surface 86 comes into contact with the contact portion 67, a pressing force in the +X direction is applied from the cover portion 32 to the lever portion 64 via the contacted surface 86 and the contact portion 67. This rotates the lever portion 64, and the first path forming portion 42 (FIG. 2) is disposed in the first position.
[0047] Next, the operation of the printer 10 will be described. 2, in the closed state by the cover portion 32, the cover portion 32 closes the opening 12A. The lower guide member 46 is disposed so as to be inclined toward a position in the -X direction and the +Z direction. In this closed state, it is assumed that the cover portion 32 is opened.
[0048] 10 and 11, as the cover part 32 moves in the -X direction, the contacted part 84 (FIG. 8) moves away from the lever part 64. This allows the lever part 64 to rotate freely, and the supporting force of the support part 68 supporting the lower guide member 46 weakens. Here, the -X direction portion of the lower guide member 46 moves down due to its own weight, causing the support portion 68 to rotate and the lever portion 64 to rotate as well. Then, the first plate portion 69 comes into contact with the main body frame 15 (FIG. 6), stopping the rotation of the lower guide member 46. At this time, the lower guide member 46 is located at the second position along the X direction. In other words, the first path forming portion 42 retreats in the -Z direction relative to the movement region S (FIG. 9) of the second path forming portion 74. By retracting the first path forming part 42 in the -Z direction, there is no longer any member restricting the movement of the second path forming part 74 within the movement area S of the second path forming part 74. This allows the cover part 32 to perform an opening operation up to a position where the opening 12A and the conveying path T are open.
[0049] On the other hand, when the cover 32 is closed while the transport path T is open, the contact portion 67 comes into contact with the contacted surface 86 (FIG. 8), causing the lever 64 to rotate in the reverse direction. The reverse rotation of the lever 64 also causes the support portion 68 to rotate in the reverse direction, causing the second plate 71 to push up the −X-direction end of the lower guide member 46 in the +Z direction. This causes the lower guide member 46 to rotate in the reverse direction and to be positioned at the first position. At this time, nip portions N1 and N2 (FIG. 9) are formed. In this way, the cover portion 32 closes the transport path T and the opening 12A.
[0050] As explained above, according to the conveying section 30, compared to a configuration having a conveying path that extends linearly along the Z direction, the length of the conveying path T can be increased by having an ascending path R3 and a descending path R2 that overlap in the Z direction. Furthermore, when the cover part 32 is in the closed state, a part of the first path forming part 42 is located in the movement area S of the second path forming part 74. In other words, since a part of the first path forming part 42 and a part of the second path forming part 74 are arranged to overlap in the Z direction, the conveying part 30 can be made smaller. Furthermore, when the cover unit 32 is opened, the moving unit 60 moves the first path forming unit 42 to the second position, which moves the first path forming unit 42 away from the movement area S of the second path forming unit 74, making it less likely that the opening operation of the cover unit 32 will be restricted and making it easier to open the transport path T. This makes it easy to remove paper P that is stuck in the transport path T due to a jam or the like.
[0051] According to the conveying unit 30, when the first path forming portion 42 is moved to the second position, a distance equal to or greater than the predetermined distance d is maintained. In other words, the first path forming portion 42 and the second path forming portion 74 are less likely to come into contact with each other, which can prevent damage to the paper P remaining on the conveying path T. According to the conveying unit 30, the first path forming unit 42 is moved to one of the first position and the second position by rotating about the first rotation shaft 43, so that the first path forming unit 42 can be moved with a simple configuration. Furthermore, since the first rotation shaft 43 is located below the movement area S of the second path forming unit 74, it is possible to prevent the first rotation shaft 43 from coming into contact with the second path forming unit 74.
[0052] According to the conveying unit 30, when the cover unit 32 is opened, the moving unit 60 releases the holding state of the first path forming unit 42. Here, when the holding state of the first path forming unit 42 is released, the first path forming unit 42 becomes cantilevered by the first rotating shaft 43 and rotates by its own weight, so that the movement area S of the second path forming unit 74 can be opened with a simple configuration. According to the conveying unit 30, when the cover unit 32 is in the closed state, the lever unit 64 comes into contact with the contact surface 86 of the cover unit 32, and a pressing force acts on the lever unit 64. This causes the lever unit 64 to rotate the second rotating shaft 62 and the support unit 68. As the support unit 68 rotates, it pushes up the lower guide member 46 and supports the lower guide member 46 at the first position. When the cover portion 32 is in the open state, the lower guide member 46 moves down due to its own weight, causing the support portion 68 to rotate, and the movement area S of the second path forming portion 74 to be opened. In this way, by opening and closing the cover portion 32, the lower guide member 46, that is, the first path forming portion 42, can be displaced.
[0053] According to the transport section 30, there is no need to provide a holding section as a separate structure from the moving section 60, and therefore the structure for moving and holding the first path forming section 42 can be simplified. According to the conveying section 30, the nip section N formed by the first conveying roller 45 and the second conveying roller 81, among the nip sections of the roller pair that convey the paper P on the conveying path T, is released in conjunction with the cover section 32 being in the open state, making it easier to remove the paper P remaining on the conveying path T.
[0054] According to the conveying section 30, the nip state formed by the support roller 53 and the opposing roller 82, among the nip portions of the roller pair that convey the paper P on the conveying path T, is released in conjunction with the cover section 32 being in the open state, making it easier to remove the paper P remaining on the conveying path T. According to the conveying section 30, the moving section 60 moves the first path forming section 42, causing the support roller 53 to be nipped with the opposing roller 82. Therefore, compared to a configuration in which the movement of the first path forming section 42 and the operation of nipping the support roller 53 and the opposing roller 82 are performed separately, the support roller 53 and the opposing roller 82 can be nipped with a simpler configuration. According to the printer 10, the functions and effects of the transport unit 30 can be obtained.
[0055] The transport unit 30 and printer 10 according to the embodiment of the present invention are based on the configuration described above, but it is of course possible to modify or omit parts of the configuration within the scope of the gist of the present invention.
[0056] In the printer 10, the entire first path forming portion 42 may be located in the transfer area S. The descending path R2 and the ascending path R3 may be arranged inversely in the X direction, that is, a part of the transport path T may be mountain-shaped in the +Z direction. The medium is not limited to paper P, but may also be a film. When moving the first path forming portion 42 to the second position, the moving portion 60 may move the first path forming portion 42 so that the distance between the first path forming portion 42 and the second path forming portion 74 is maintained at a predetermined distance d.
[0057] In the printer 10, the first path forming section 42 is not limited to a configuration that rotates the lower guide member 46, and may be a configuration that slides the lower guide member 46 in the −Z direction or diagonally downward. The moving unit 60 and a holding unit that holds the first path forming unit 42 at the first position may be provided separately. For example, the holding unit may have a spring, and when the first path forming unit 42 is located at the first position, the spring may apply a pressing force to the first path forming unit 42 to hold the position of the first path forming unit 42. Alternatively, the holding unit may be composed of a member that moves up and down in the Z direction and a motor, and the first path forming unit 42 may be held by driving the motor in conjunction with the opening and closing of the cover unit 32.
[0058] The printer 10 does not necessarily have to be provided with the first transport roller 45 and the second transport roller 81. Furthermore, the support roller 53 and the opposing roller 82 do not necessarily have to be provided. The moving section 60 does not need to push up the support roller 53 to the nip position. The recording unit is not limited to the line head 28, and may have a serial head that moves back and forth in the width direction of the paper P. The device height direction may be a direction intersecting with the vertical direction. [Explanation of symbols]
[0059] 10... printer, 12... device body, 12A... opening, 13... discharge section, 14...paper cassette, 15...main body frame, 15A...bottom wall, 15B...support wall, 15C...vertical wall, 15D...through hole, 16...pick roller, 17...pair of conveying rollers, 18... conveying roller pair, 19... manual feed tray, 21... pulley, 22... conveying belt, 23... registration roller pair, 24... conveying roller pair, 25... flap, 26...medium width sensor, 27...ink tank, 28...line head, 29...control unit, 30... conveying section, 31... feed roller pair, 32... cover section, 34... reversing path forming member, 36... upper portion, 38... lower portion, 42... first path forming portion, 43... first rotation shaft, 44... bearing, 45...first conveying roller, 46...lower guide member, 47...upper wall, 47A...upper surface, 47B... rib, 48... front wall, 49... storage portion, 49A... groove portion, 51... rear wall, 52... side wall, 53...support roller, 53A...shaft portion, 53B...outer peripheral surface, 54...arm portion, 55...notch portion, 56...Reinforcement part, 57...Vertical wall, 58...Supported part, 58A...End face, 59...Storage part, 60...moving portion, 62...second rotating shaft, 64...lever portion, 65...mounting portion, 66...extending portion, 67...Contact part, 67A...Contact surface, 68...Support part, 69...First plate part, 69A...Top surface, 71... second plate portion, 71A... upper surface, 74... second path forming portion, 76... upper guide member, 77... bottom wall, 78... recess, 78A... inclined surface, 78B... inclined surface, 79... convex portion, 81... second conveying roller, 81A... shaft portion, 82... opposing roller, 82A... shaft portion, 84...contacted portion, 85...vertical wall, 86...contacted surface, 87...rib, K1...virtual line, K2...imaginary line, N1...nip area, N2...nip area, P...paper, Q...ink, R1...introduction path, R2...descent path, R3...ascent path, S...movement area, T...transport path, T1...Transport path, T2...Transport path, T3...Transport path, T4...Reverse path, ZA...Area
Claims
1. an apparatus body in which a transport path along which the medium is transported is formed; a cover portion provided on the device body and capable of opening and closing the conveying path; a first path forming section that is provided in the device body so as to be movable between a first position and a second position, that forms a part of the transport path at the first position and that retreats from the transport path at the second position; a second path forming portion provided on the cover portion, the second path forming portion forming a part of the conveying path when the cover portion is in a closed state in which the cover portion is closed relative to the device body; a moving unit that moves the first path forming unit to one of the first position and the second position in association with an opening or closing operation of the cover unit; Equipped with At least a portion of the first path forming portion overlaps with the second path forming portion when the cover portion is viewed from the front in the closed state, the moving unit moves the first path forming unit to the second position when the cover unit is opened, and moves the first path forming unit to the first position when the cover unit is closed. A conveying device characterized by:
2. 2. The conveying device according to claim 1, The direction in which the cover portion in the closed state is viewed from the front is along a horizontal plane. A conveying device characterized by:
3. 3. The conveying device according to claim 1 or 2, At least a portion of the first path forming portion at the first position and at least a portion of the second path forming portion face each other in the closed state to form a part of the conveying path. A conveying device characterized by:
4. 4. The conveying device according to claim 3, the transport path includes a curved path that transports the medium from above downward along a descending path and then from below upward in the device height direction along an ascending path, the ascending path and the descending path overlap in the device height direction; A conveying device characterized by:
5. 5. The conveying device according to claim 3 or claim 4, the first path forming portion and the second path forming portion are disposed opposite to each other with a predetermined gap therebetween to form a part of the conveying path; When the moving unit moves the first path forming portion to the second position, the moving unit sets a distance between the first path forming portion and the second path forming portion to be equal to or greater than the predetermined distance. A conveying device characterized by:
6. The conveying device according to any one of claims 1 to 5, the first path forming section includes a medium support member capable of supporting the medium, and a first rotation shaft that supports the medium support member rotatably to one of the first position and the second position, the first rotation shaft does not overlap the second path forming portion when the cover portion in the closed state is viewed from the front; A conveying device characterized by:
7. The conveying device according to any one of claims 1 to 6, a holding portion that holds the first path forming portion at the first position; the holding portion releases the holding state of the first path forming portion when the cover portion is opened. A conveying device characterized by:
8. 8. The conveying device according to claim 7, the first path forming section includes a medium support member capable of supporting the medium, and a first rotation shaft that supports the medium support member rotatably to one of the first position and the second position, the holding unit includes a second rotation shaft, a lever unit fixed to the second rotation shaft and rotating the second rotation shaft in conjunction with the opening and closing operation of the cover unit, and a support unit fixed to the second rotation shaft and supporting the medium support member at the first position; the lever portion comes into contact with the cover portion when the cover portion is in the closed state, and moves away from the cover portion when the cover portion is in the open state; When the lever portion is in contact with the cover portion, the support portion supports the medium support member. A conveying device characterized by:
9. 9. The conveying device according to claim 7 or 8, The moving unit also serves as the holding unit. A conveying device characterized by:
10. 9. The conveying device according to claim 6 or claim 8, the first rotation shaft is provided with a first transport roller capable of transporting the medium; the second path forming portion is provided with a second transport roller that transports the medium together with the first transport roller, When the cover unit is in the closed state, the first transport roller and the second transport roller form a nip portion that sandwiches the medium, and when the cover unit is in the open state, the formation of the nip portion is released. A conveying device characterized by:
11. The conveying device according to any one of claims 1 to 10, the first path forming section is provided with a support roller that supports the medium, the second path forming portion is provided with an opposing roller that faces the support roller and rotates together with the support roller to transport the medium; When the first path forming portion is disposed at the first position, the support roller and the opposing roller are in a nipped state, and when the first path forming portion is disposed at the second position, the nipped state between the support roller and the opposing roller is released. A conveying device characterized by:
12. 12. The conveying device according to claim 11, the moving unit moves the first path forming unit to the first position, thereby moving the support roller to a position where the support roller is nipped with the opposing roller. A conveying device characterized by:
13. A conveying device according to any one of claims 1 to 12; a recording unit that records on the medium transported by the transport device; A printing device comprising:
Citation Information
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