Recording device

JP2024133312A5Pending Publication Date: 2025-06-19CANON KK
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Patent Information

Application Number
JP2024115101
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-07-18
Publication Date
2025-06-19

AI Technical Summary

Technical Problem

Existing recording apparatuses face complexity and increased cost due to the need for separate guide mechanisms for each recording head with different positioning angles, especially when the recording material conveyance path is curved and multiple heads are used.

Method used

A versatile guide mechanism that allows the recording head to be positioned at any angle by using a support moving unit, positioning unit, and biasing members to regulate or vary the ejection port surface angle, enabling simple linear movement with contact and non-contact support modes.

Benefits of technology

Enables precise and efficient positioning of recording heads at any angle, reducing device complexity and cost while maintaining high-quality inkjet printing on inclined recording materials.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a guide mechanism having high versatility capable of positioning a recording head at an arbitrary angle.SOLUTION: A recording device includes: a recording head 22 having an ejection port surface on which a discharge port for discharging ink is opened; a support displacement part 26 which supports the recording head 22 and displaces the recording head 22 between a recording position and a non-recording position; and a positioning member 811 which positions the recording head 22 located on the recording position at a predetermined angle. Therein, the support displacement part 26 is characterized in taking a first manner of supporting the recording head 22 so that an angle change of the discharge port surface is regulated while the recording head 22 is not abutted onto the positioning member 811 and a second manner of supporting the recording head 22 so that an angle of the discharge port surface gets to variable when the recording head 22 is abutted onto the positioning part 811.SELECTED DRAWING: Figure 11
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Description

[Technical field]

[0001] The present invention relates to a recording apparatus that ejects ink onto a recording material to record. [Background technology]

[0002] Conventionally, there has been known a recording device that ejects droplets of a recording liquid such as ink onto a recording material such as a recording paper or a resin sheet to record characters, images, and the like. In some of such recording devices, the recording device is configured to perform recording on a recording material that is transported in a direction inclined relative to the horizontal direction. In order to record high-quality characters and images on a recording material transported in such an inclined direction with high precision, it is necessary to position the direction of the ejection port surface of the recording head with high precision so that the ejection direction of the ink is perpendicular to the recording surface of the recording material. Patent Document 1 discloses a technique for positioning the recording head at a predetermined angle relative to the horizontal direction at the printing position by using a mechanism that simultaneously advances linear and rotational movements of the recording head. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] JP 2020-011522 A Summary of the Invention [Problem to be solved by the invention]

[0004] The guide mechanism disclosed in Patent Document 1 is configured such that the trajectory of the linear movement of the recording head is determined by the trajectory of the guide hole, and the direction of the guide hole is determined according to the positioning angle of the recording head at the recording position. Here, for example, in a recording device in which the conveying path of the recording material extends in a curved manner and multiple recording heads are arranged along the conveying path, it is necessary to make the positioning angles of each recording head different. When the guide mechanism of Patent Document 1 is used for such a recording device, it becomes necessary to prepare a guide mechanism with a different shape of the guide hole corresponding to the positioning angle of each recording head for each recording head. Therefore, there are concerns such as the complexity of the guide mechanism and the increase in the size and cost of the device.

[0005] An object of the present invention is to provide a highly versatile guide mechanism capable of positioning a recording head at any angle. [Means for solving the problem]

[0006] In order to achieve the above object, the recording device of the present invention comprises: a recording head having an ejection port surface on which ejection ports for ejecting ink are formed; a support and movement unit that supports the recording head and moves the recording head between a recording position and a non-recording position; a positioning unit that positions the recording head at the recording position at a predetermined angle; In a recording device comprising: The support movement portion can take a first mode in which the recording head is supported so that a change in the angle of the ejection port surface is restricted while the recording head is not in contact with the positioning portion, and a second mode in which the recording head is supported so that the angle of the ejection port surface becomes variable when the recording head is in contact with the positioning portion. Effect of the Invention

[0007] According to the present invention, it is possible to provide a highly versatile guide mechanism capable of positioning a recording head at any angle. [Brief description of the drawings]

[0008] [Figure 1] FIG. 1 is a schematic diagram showing the internal configuration of a recording device. [Diagram 2] Control configuration diagram of the recording device [Diagram 3] FIG. 1 shows a housing of a sheet transport unit of a recording unit. [Figure 4] Top view of the sheet transport unit housing, and diagram of the relationship between the sheet, the recording head, and the guide rollers [Diagram 5] A perspective view of a recording head lifting mechanism [Figure 6] A perspective view of a recording head [Figure 7] FIG. 1 is an explanatory diagram of an example of a positioning operation of a recording head; [Figure 8] FIG. 2 shows the retracted position of the recording head. [Figure 9] FIG. 1 is a diagram showing a configuration of a recording head and a biasing member; [Figure 10] FIG. 2 is a diagram illustrating the movement of a recording head. [Figure 11] FIG. 2 is a diagram illustrating the movement of a recording head. [Figure 12] FIG. 2 is a diagram illustrating the movement of a recording head. [Figure 13] A diagram showing the printing positions of the recording head [Figure 14] FIG. 1 is a diagram showing a configuration of a recording head and a biasing member; [Figure 15] FIG. 13 shows the retraction operation of the recording head. [Figure 16] A diagram showing the inclination state of the recording head and the electrical connector connection part DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

[0009] Hereinafter, with reference to the drawings, the mode for carrying out the present invention will be described in detail by way of example. The dimensions, materials, shapes, and relative positions of the components described in the embodiments should be appropriately changed depending on the configuration of the device to which the invention is applied and various conditions. Furthermore, not all of the combinations of features described in the embodiments are necessarily essential to the solution of the present invention. The components described in the embodiments are merely examples, and are not intended to limit the scope of the present invention to only those.

[0010] 1 is defined as the top, the right to left of the figure as the longitudinal direction, the front to back of the paper perpendicular to the sheet transport direction as the sheet width direction, the front side of the paper as the front side of the device, and the back side of the paper as the rear side of the device. The recording device 1 of this embodiment is a high-speed line printer that uses a continuous sheet wound in a roll.

[0011] (Recording device) FIG. 1 is a schematic cross-sectional view showing the internal configuration of a recording device 1 according to this embodiment. The recording device 1 according to this embodiment includes various units therein. That is, the recording device 1 includes an unwinding roll section 2, a first dancer section 3, a first main conveyor section 4, a meandering correction section 5, a conveyor detection section 6, a mark sensor section 7, and a recording section 8. The recording device 1 further includes a first scanner section 9, a first drying section 10, a second drying section 11, a cooling section 12, a second scanner section 13, a second main conveyor section 14, a second dancer section 15, a take-up roll section 16, and a maintenance section 17. A sheet S as a recording material is conveyed along a sheet conveying path indicated by a solid line in the figure, and is processed in each unit.

[0012] The unwinding roll unit 2 is a unit for holding and supplying a continuous sheet wound in a roll shape. The unwinding roll unit 2 is configured to store an unwinding roll and pull out and supply the sheet S. The number of rolls that can be stored is not limited to one, and the unwinding roll unit 2 may store two or three or more rolls and selectively pull out and supply the sheet S.

[0013] The first dancer section 3 is a unit for applying a constant sheet tension between the unwinding roll section 2 and the first main transport section 4. The first dancer section 3 applies sheet tension by a tension applying means (not shown). The first main transport section 4 includes a meandering correction section 5, a transport detection section 6, a mark sensor section 7, a recording section 8, a first scanner, and a transport control section 9, which are arranged in the following order along a sheet transport path (sheet S). The first main conveyor section 4 is a unit for feeding the sheet S to the first drying section 9, the first drying section 10, the second drying section 11, the cooling section 12, and the second scanner section 13, and for applying tension to the sheet between the first main conveyor section 4 and the second main conveyor section 14. The first main conveyor section 4 rotates by driving a motor (not shown), and conveys the sheet S under tension.

[0014] The meandering correction unit 5 is a unit for correcting meandering in the sheet width direction when the sheet S is conveyed under tension. The meandering correction unit 5 is configured to include a meandering correction roller 5a and a meandering detection sensor (not shown) that detects meandering of the sheet S. The meandering correction roller 5a can change the inclination with respect to the sheet S by a motor (not shown), and corrects the meandering of the sheet S based on the measurement by the meandering detection sensor. At this time, the sheet S is wrapped around the meandering correction roller 5a, thereby improving the meandering correction function.

[0015] The transport detection unit 6 is a unit for detecting tension when the sheet S is transported under tension between the first main transport unit 4 and the second main transport unit 14. The transport detection unit 6 is also a unit for detecting the speed of the sheet S in order to control the image formation timing of the recording unit 8.

[0016] The mark sensor section 7 is a unit for detecting a mark printed on the sheet S in advance in order to control the image formation timing of the recording section 8.

[0017] The recording unit 8 is a sheet processing unit that performs recording processing on the sheet S by ejecting ink as a recording liquid from above using a recording head 22 onto the sheet S being transported to form an image or the like. The transport path in the recording unit 8 is formed by guide rollers 23 arranged in an arc shape that is convex upward, and a certain tension is applied to the sheet S to ensure a clearance with the recording head 22. The recording heads 22 are arranged in a line along the transport direction. In this example, in addition to the four colors of ink, Bk (black), Y (yellow), M (magenta), and C (cyan), there are a total of eight line-type recording heads corresponding to the reaction liquid and three special color inks. Note that the number of colors and the number of recording heads 22 are not limited to eight. The inkjet method can employ a method using a heating element, a method using a piezoelectric element, a method using an electrostatic element, a method using a MEMS element, or the like. The ink of each color is supplied to the recording head 22 from an ink tank (not shown) via an ink tube.

[0018] The first scanner unit 9 is a unit that reads the image formed on the sheet S by the recording unit 8 during printing, detects the misalignment and density of the image, and corrects the printing.

[0019] The first drying section 10 and the second drying section 11 are units that reduce the liquid content contained in the ink applied to the sheet S in the recording section 8, and improve the fixation of the ink to the sheet S. The second drying section 11 is disposed downstream of the first drying section 10 in the sheet conveying direction. The first drying section 10 and the second drying section 11 heat the recorded sheet S to dry the applied ink. Inside the first drying section 10 and the second drying section 11, hot air is applied to at least the ink application surface (recorded surface) side of the passing sheet S to dry the ink application surface of the sheet S. Note that, as a drying method, in addition to the method of applying hot air, a method of irradiating the surface of the sheet S with electromagnetic waves (ultraviolet rays, infrared rays, etc.) and a conductive heat transfer method by contact with a heating element may be combined.

[0020] The winding guide roller 31 is a roller that wraps the surface of the sheet S downstream of the recording unit 8 opposite to the ink application surface at a constant winding angle, since it is necessary to block the effect of the hot air from the first drying unit 10 on the recording unit 8. In this example, two winding guide rollers 31 are arranged between the first scanner unit 9 and the first drying unit 10, and the sheet S is folded back approximately parallel to the top and bottom of the device. The first drying unit 10 is arranged below the recording unit 8, and the second drying unit 11 is arranged below the front The transport detection unit 6 and the mark sensor unit 7 are disposed below the device.

[0021] The cooling section 12 cools the sheet S fixed in the first drying section 10 and the second drying section 11, solidifies the softened ink, and suppresses the amount of temperature change of the sheet S in downstream processes of the recording apparatus. Inside the cooling section 12, air having a lower temperature than the sheet S is applied to at least the ink application surface side of the passing sheet S, thereby cooling the ink application surface of the sheet S. Note that the cooling method is not limited to the method of applying air, and may be a conductive heat transfer method by contact with a heat dissipation member, or a combination of these.

[0022] The second scanner unit 13 is a unit that reads a test image formed on the sheet S by the recording unit 8 before printing, detects image misalignment and density, and performs corrections for the actual printing.

[0023] The second main conveyor 14 is a unit that conveys the sheet S together with the first main conveyor 4 while applying tension to the sheet S, and adjusts the tension of the sheet S. The second main conveyor 14 has a clutch (not shown) that rotates by being driven by a motor (not shown), and the tension of the sheet S is adjusted by controlling the torque drivingly connected to the clutch by a tension control unit (not shown) according to the tension value detected by a tension detection unit (not shown). Note that, as an additional configuration for adjusting the tension of the sheet S, a configuration for controlling the speed of the second main conveyor 14 by the tension detection unit may be added. In this case, there are two tension control methods: a torque control method for controlling the torque value transmitted from the clutch, and a speed control method for controlling the roller speed of the second main conveyor 14. The tension control methods can be switched or both can be used simultaneously according to the purpose.

[0024] The second dancer section 15 is a unit for applying a constant sheet tension between the second main conveyor section 14 and the winding roll section 16. The second dancer section 15 can apply sheet tension by a tension applying means (not shown).

[0025] The winding roll unit 16 is a unit for winding the sheet S after the recording process onto a core. The number of collectable rolls is not limited to one, and the roll may have two or three or more cores and may be configured to selectively switch between them to collect the sheet S. Depending on the content of the post-recording processing, the continuous sheet may be cut using a cutter and the cut sheets S may be stacked, instead of being wound onto a core.

[0026] The maintenance unit 17 is a unit equipped with a mechanism for recovering the ejection performance of the recording head 22. Examples of such mechanisms include a cap mechanism for protecting the ink ejection surface of the recording head 22, a wiper mechanism for wiping the ink ejection surface, and a suction mechanism for negatively applying pressure to suck ink from the ink ejection surface inside the recording head 22. The maintenance unit also includes a drive mechanism and rails (not shown) and is capable of reciprocating horizontally along the rails, moving to directly below the recording head when performing maintenance on the recording head, and moving to a position retracted from directly below the recording head to the upstream side in the transport direction when maintenance is not performed.

[0027] The control unit 21 is a unit that controls each part of the entire recording device. The control unit 21 has a CPU, a storage device, a controller equipped with various control units, an external interface, and an operation unit 24 where the user performs input and output. The operation of the recording device 1 is controlled based on commands from the controller or a host device 25 such as a host computer connected to the controller via an external interface.

[0028] 2 is a block diagram showing the control configuration of the recording apparatus 1. The control configuration of the control unit 21 is mainly composed of a print engine unit 400 that controls the recording apparatus 1, and a controller unit 300 that controls the entire recording apparatus 1. A print controller 402 controls the printer in accordance with instructions from a main controller 301 of the controller unit 300. The control configuration is described in detail below.

[0029] In the controller unit 300, a main controller 301 constituted by a CPU controls the entire recording device 1 using a RAM 305 as a work area in accordance with programs and various parameters stored in a ROM 306. For example, when a print job is input from the host device 25 via a host I / F 302, an image processing unit 307 performs predetermined image processing on the received image data in accordance with instructions from the main controller 301. The main controller 301 then transmits the image data that has been subjected to the image processing to a print engine unit 400 via a print engine I / F 304.

[0030] The recording device 1 may obtain image data from the host device 25 via wireless communication or wired communication, or may obtain image data from an external storage device (such as a USB memory) connected to the recording device 1. There are no limitations on the communication method used for wireless communication or wired communication. For example, Wi-Fi (Wireless Fidelity) (registered trademark) and Bluetooth (registered trademark) can be used as communication methods used for wireless communication. Furthermore, USB (Universal Serial Bus) or the like can be used as a communication method used for wired communication.

[0031] The operation unit 24 is a mechanism for a user to perform input and output to the recording device 1. The user can set a print mode and recognize information about the recording device 1 via the operation unit 24.

[0032] In the print engine unit 400, a print controller 402 constituted by a CPU controls various mechanisms of the recording device 1 according to programs and various parameters stored in a ROM 403, using a RAM 404 as a work area. When various commands and image data are received via a controller I / F 401, the print controller 402 temporarily stores them in the RAM 404. The print controller 402 causes an image processing controller 405 to convert the stored image data into recording data so that the recording head 22 can use the data for a recording operation. When the recording data is generated, the print controller 402 causes the recording head 22 to execute a recording operation based on the recording data via a head I / F 406. At this time, the print controller 402 drives various units shown in FIG. 1 via a conveyance control unit 407 to convey the sheet S. That is, the print controller 402 drives the unwinding roll unit 2, the first dancer unit 3, the first main transport unit 4, the meandering correction unit 5, the transport detection unit 6, the mark sensor unit 7, the recording unit 8, the first scanner unit 9, the first drying unit 10, the second drying unit 11, the cooling unit 12, the second scanner unit 13, the second main transport unit 14, the second dancer unit 15, and the take-up roll unit 16. According to instructions from the print controller 402, a recording operation is performed by the recording head 22 in conjunction with the transport operation of the sheet S, and printing processing is performed.

[0033] The printhead moving means control unit 408 changes the position of the printhead 22 depending on the operating state of the printing apparatus 1, such as the maintenance state or the printing state. The ink supply control unit 409 controls an ink supply unit (not shown) so that the pressure of the ink supplied to the printhead 22 falls within an appropriate range. The maintenance control unit 410 controls the operation of the maintenance unit 17 when performing a maintenance operation on the printhead 22.

[0034] (Sheet transport unit housing) 3 is a perspective view of the sheet conveying unit housing 81 of the recording unit 8. FIG. 4(a) is a diagram of the sheet conveying unit housing 81 as seen from above the apparatus, and FIG. 4(b) is a diagram showing the relationship between the sheet S, the recording head 22, and the guide roller 23. As shown in FIG. 3, the sheet conveying unit housing 81 includes a printing head 22, A first positioning member 811a, a second positioning member 811b, and a third positioning member 811c are provided in plurality for positioning the recording head 22 at a recording position. For one recording head 22, the first positioning member 811a is provided on the front side (the front side of the device) sandwiching the sheet S in the sheet width direction perpendicular to the sheet conveying direction, and the second positioning member 811b and the third positioning member 811c are provided on the rear side (the rear side of the device).

[0035] The first positioning member 811a, the second positioning member 811b, and the third positioning member 811c are spherical members having the same diameter. The first positioning member 811a, the second positioning member 811b, and the third positioning member 811c are fitted and attached to a recess 812 provided in a positioning support portion 810 of the sheet conveying unit housing 81. The first positioning member 811a, the second positioning member 811b, and the third positioning member 811c each have a substantially lower (lower hemisphere) portion embedded in the recess 812, and a substantially upper (upper hemisphere) portion exposed from the recess 812 to form a substantially hemispherical convex positioning portion protruding upward. The positioning support portion 810 includes a front side positioning support portion 810R arranged on the front side in the sheet width direction with respect to the sheet conveying path, and a rear side positioning support portion 810L arranged on the rear side. The first positioning member 811a is attached to a first recess 812a provided in the front positioning support portion 810R. The second positioning member 811b is attached to a second recess 812b provided in the rear positioning support portion 810L, and the third positioning member 811c is attached to a third recess 812c provided in the rear positioning support portion 810L. The second recess 812b is provided downstream of the third recess 812c in the sheet conveying direction.

[0036] As shown in FIG. 4(a), the first positioning member 811a and the second positioning member 811b are arranged so that a straight line AA passing through the center of the first positioning member 811a and the center of the second positioning member 811b is parallel to the rotation axis of the guide roller 23. Also, as shown in FIG. 4(a) and FIG. 4(b), the third positioning member 811c is arranged downstream of the first positioning member 811a and the second positioning member 811b in the sheet conveying direction. As shown in FIG. 4(a), the third positioning member 811c is arranged so that a straight line BB passing through its center and the center of the first positioning member 811a has a predetermined angle with respect to a straight line AA passing through the center of the first positioning member 811a and the center of the second positioning member 811b. Also, as shown in FIG. 4(b), the third positioning member 811c is arranged so that a straight line CC passing through its center and the center of the first positioning member 811a or the second positioning member 811b has a predetermined angle with respect to the horizontal direction.

[0037] That is, the third positioning member 811c is disposed at a lower position (a position farther from the recording head 22) than the first positioning member 811a and the second positioning member 811b in the vertical movement direction between the retracted position and the printing position of the recording head 22. The arrangement of the third positioning member 811c with respect to the first positioning member 811a and the second positioning member 811b is set so that the nozzle plate (not shown) of the recording head 22 at the printing position can be positioned parallel to the sheet S supported by the multiple guide rollers 23. That is, the installation position of the third positioning member 811c is set so that the recording head 22 at the printing position is positioned in a posture inclined at a predetermined angle at a predetermined recording position. Here, the predetermined angle is an angle at which the nozzles (discharge ports) of the nozzle plate face perpendicular to the recording surface of the sheet S (the nozzle surface (discharge port surface) where the nozzles open is parallel to the recording surface). As described above, the first positioning member 811a, the second positioning member 811b, and the third positioning member 811c are each a sphere having the same diameter, and each has its own center.

[0038] 5, the recording head 22 is held by a head holder 26 as a supporting and moving part, and is configured to move up and down by the movement of the head holder 26. The recording head 22 has a first pin 27a (see FIG. 6, etc.), a second pin 27b, a third pin 27c, and a fourth pin 27d as a supported part. The recording head 22 is provided with a pin 27c. The first pin 27a is a protrusion protruding in the width direction from one end (the front side of the device) of the recording head 22 in the longitudinal direction (width direction) of the recording head 22 intersecting with the lifting direction of the recording head 22 and the sheet conveying direction. The second pin 27b and the third pin 27c are protrusions protruding in the longitudinal direction from the other end (the rear side of the device) of the recording head 22 in the longitudinal direction. The recording head 22 is pivotally supported by the head holder 26 such that the first pin 27a, the second pin 27b, and the third pin 27c are supported from below by a first hole 261, a second hole 262, and a third hole 263 provided in the head holder 26.

[0039] Furthermore, the recording head 22 is supported by the head holder 26 in a state where it is urged downward by a first urging member 51a, a second urging member 51b, and a third urging member 51c provided in the head holder 26. The configurations of the first urging member 51a, the second urging member 51b, and the third urging member 51c will be described later. The head holder 26 moves up and down along an elevation rail 29 provided in the recording head elevation frame 28 by a drive mechanism (not shown) provided inside.

[0040] (Recording head configuration) FIG. 6 is a perspective view of the recording head 22. As shown in FIG. 6, the recording head 22 has a nozzle plate 223 having a plurality of nozzles (ejection ports) for ejecting ink aligned in the recording head longitudinal direction (sheet width direction). In addition, the recording head 22 has positioned portions 221L and 221R at both ends in the longitudinal direction (direction perpendicular to the sheet conveying direction). Specifically, the positioned portion 221L on the head longitudinal front side (apparatus front side) has a first contact portion 221a made of a concave portion having a conical inclined surface. In addition, the positioned portion 221R on the head longitudinal rear side (apparatus rear side) has a second contact portion 221b made of a groove-shaped portion extending in the head longitudinal direction having two substantially V-shaped flat surfaces, and a third contact portion 221c made of a flat surface, aligned in the sheet conveying direction.

[0041] In the longitudinal direction of the recording head 22, the first contact portion 221a and the second contact portion 221b are precisely arranged so that a straight line passing through the center of the first contact portion 221a and the center of the second contact portion 221b is parallel to the arrangement of the multiple nozzle plates 223 of the recording head 22. Here, the centers of the first contact portion 221a and the second contact portion 221b are the centers of imaginary spheres of the same diameter inscribed therein. The third contact portion 221c is arranged at a position away from the second contact portion 221b in the sheet conveying direction (direction perpendicular to the longitudinal direction of the recording head 22).

[0042] (Recording head operation) The positioning operation of the recording head 22 in the recording apparatus according to this embodiment will be described with reference to Fig. 7. Fig. 7 is a schematic explanatory diagram showing an example of the operation accompanied by the positioning of the recording head 22.

[0043] Figure 7(a) is a schematic diagram showing a state in which the recording head 22 is in a retracted position, retracted upward relative to the sheet transport unit housing 81 as a non-printing position, and the maintenance unit 17 is in a non-maintenance position, retracted approximately horizontally from the recording head 22 in the sheet transport direction.

[0044] 7B is a schematic diagram showing a state in which the recording head 22 is at a printing position where an image is recorded on the sheet S. When the recording head 22 moves from the retracted position to the printing position, the recording head 22 moves substantially vertically downward from the upper retracted position by the recording head lifting mechanism described above. The movement of the recording head 22 is completed when the positioned portion 221 comes into contact with a positioning member 811 provided on the sheet conveying unit housing 81, and the recording head 22 descends to the printing position where it is positioned with its orientation tilted at a predetermined angle.

[0045] Fig. 7(c) is a schematic diagram showing a state in which the recording head 22 is in the retracted position and the maintenance unit 17 has moved to the maintenance position. When capping the recording head 22 after a printing operation or when the nozzles of the recording head 22 are clogged and ink ejection is poor, the maintenance unit 17 performs a maintenance operation on the recording head 22. When performing a maintenance operation, first, the recording head 22 and the maintenance unit 17 move to their respective retracted positions as shown in Fig. 7(a). Then, the maintenance unit 17 moves approximately horizontally in the sheet transport direction to the maintenance position below the recording head 22.

[0046] Fig. 7(d) is a schematic diagram showing a state where the recording head 22 has been moved to a maintenance position where maintenance operations are performed by the maintenance unit 17. The recording head 22 moves substantially vertically downward from the state of Fig. 7(c) to a maintenance position where the positioned portion 221 abuts against and is positioned by the recording head positioning portion 171 provided in the maintenance unit 17. In this state, various maintenance operations are performed on the recording head 22 by the maintenance unit 17.

[0047] (Support structure and positioning of recording head) The supporting structure and operation of the recording head 22 in this embodiment will be described in detail with reference to FIGS. 8(a) to 16. FIG.

[0048] 8(a) to 8(c) are diagrams for explaining the state of the retracted position where the recording head 22 is retracted upward. FIG. 8(a) is a diagram of the recording head 22 and the positioning support part 810 as viewed from the rear side of the device. FIG. 8(b) is a diagram of the recording head 22 and the positioning support part 810 as viewed from the front side of the device. FIG. 8(c) is a perspective view of the recording head 22 and the positioning support part 810 as viewed from the downstream side in the sheet conveying direction. Also, FIG. 9(a) to 9(c) are diagrams for explaining the relationship between the urging members 51a, 51b, and 51c and the recording head 22 as viewed from the retracted position where the recording head 22 is retracted upward. FIG. 9(a) is a diagram of the recording head 22 and the positioning support part 810 as viewed from the rear side of the device. FIG. 9(b) is a diagram of the recording head 22 and the positioning support part 810 as viewed from the front side of the device. FIG. 9C is a schematic cross-sectional view illustrating the configurations of the first biasing member 51a, the second biasing member 51b, and the third biasing member 51c.

[0049] The head holder 26 is provided with a first hole 261, a second hole 262, and a third hole 263. The first hole 261 is a hole portion having a surface facing the first pin 27a, the second hole 262 is a hole portion facing the second pin 27b, and the third hole 263 is a hole portion facing the third pin 27c, each of which has a surface facing in a direction perpendicular to the longitudinal direction of the recording head 22. The first hole 261, the second hole 262, and the third hole 263 each have a width that is widely open to the pins on the upper side, and a portion on the lower side that is configured with a narrow width in the shape of a groove into which the pin fits.

[0050] The first hole 261 has a first groove portion 261a which is a first support portion for supporting the first pin 27a, a first inclined portion 261b for guiding the first pin 27a into the first groove portion 261a, and a first opening portion 261d which widens the movable range of the first pin 27a with respect to the first hole 261. The first groove portion 261a includes a support surface 261a1 which is a groove bottom surface, and restriction surfaces 261a2 which are a pair of groove side surfaces facing the first pin 27a so as to sandwich the first pin 27a placed on the support surface 261a1 from both sides.

[0051] The second hole 262 has a second groove portion 262a which is a second support portion for supporting the second pin 27b, a second inclined portion 262b for guiding the second pin 27b into the second groove portion 262a, and a second opening portion 262d which widens the movable range of the second pin 27b with respect to the second hole 262. The second groove portion 262a includes a support surface 262a1 which is a groove bottom surface, and restriction surfaces 262a2 which are a pair of groove side surfaces facing the second pin 27b so as to sandwich the second pin 27b placed on the support surface 262a1 from both sides.

[0052] The third hole 263 has a third groove portion 263a which is a third support portion for supporting the third pin 27c, a third inclined portion 263b for guiding the third pin 27c into the third groove portion 263a, and a third opening portion 263d which widens the movable range of the third pin 27c with respect to the third hole 263. The third groove portion 263a includes a support surface 263a1 which is a groove bottom surface, and restriction surfaces 263a2 which are a pair of groove side surfaces facing the third pin 27c so as to sandwich the third pin 27c placed on the support surface 263a1 from both sides.

[0053] In addition, as a configuration for assembling the recording head 22 to the head holder 26, the first hole 261 is a closed hole, whereas the second hole 262 and the third hole 263 are holes that open to the side at the openings 262d, 263d. That is, the second hole 262 is provided with a second cutout portion 262c that opens the second hole 262 in a direction perpendicular to the longitudinal direction of the recording head 22 so that the second pin 27b can be introduced into the second hole 262 from the same direction. Similarly, the third hole 263 is provided with a third cutout portion 263c that opens the third hole 263 in the same direction so that the third pin 27c can be introduced into the third hole 263 from a direction substantially perpendicular to the longitudinal direction of the recording head 22.

[0054] Furthermore, the third hole 263 is provided with a fourth groove portion 263e that is used to hold the recording head 22 in an inclined position in order to facilitate the electrical connection between the recording head 22 and the recording device 1 when replacing the recording head 22.

[0055] FIG. 16 is a perspective view of the recording head 22 when it is held at an angle. As shown in FIG. 16, the third pin 27c of the recording head 22 supported by the head holder 26 is set in the fourth groove 263e, so that the recording head 22 can be held at an angle. Electric connector connecting portions 22a, 22b, and 22c are provided on the upper surface of the recording head 22, and electric connectors 26a, 26b, and 26c are provided on the head holder 26 at positions facing the electric connector connecting portions 22a, 22b, and 22c. As shown in FIG. 16, by being able to hold the recording head 22 at an angle, the operator can easily check the electric connector connecting portions 22a, 22b, and 22c provided on the upper surface of the recording head 22. In addition, since the electrical connector connecting portions 22a, 22b, and 22c are held in a tilted and exposed state toward the operator, it is possible to easily connect the electrical connectors 26a, 26b, and 26c provided on the recording device 1 to the electrical connector connecting portions 22a, 22b, and 22c of the recording head 22. By providing the electrical connecting portion between the recording head 22 and the recording device 1 on the upper surface of the recording head 22, the longitudinal width of the recording head 22 can be reduced, and the longitudinal width of the entire recording device 1 can be reduced.

[0056] The head holder 26 is provided with a first biasing member 51a, a second biasing member 51b, and a third biasing member 51c for contacting the recording head 22 and applying a predetermined biasing force thereto.

[0057] The first biasing member 51a is disposed so as to apply a biasing force to the recording head 22 on a side closer to the first contact portion 221a or the second contact portion 221b than the third contact portion 221c in a direction intersecting with the lifting direction (advance / retraction direction) of the recording head 22 or in the sheet transport direction. Preferably, the first biasing member 51a is disposed above the first contact portion 221a, that is, in a position at least partially overlapping with the first contact portion 221a when viewed in the lifting direction of the recording head 22. The second biasing member 51b is disposed so as to apply a biasing force to the recording head 22 on a side closer to the first contact portion 221a or the second contact portion 221b than the third contact portion 221c in a direction intersecting with the lifting direction (advance / retraction direction) of the recording head 22 or in the sheet transport direction. Preferably, the second biasing member 51b is disposed above the second contact portion 221b, that is, at a position at which it at least partially overlaps with the second contact portion 221b when viewed in the ascending and descending direction of the recording head 22. The third biasing member 51c is disposed in a position intersecting the ascending and descending direction (advance and retreat direction) of the recording head 22. The third biasing member 51c is disposed so as to apply a biasing force to the recording head 22 on a side closer to the third contact portion 221c than the first contact portion 221a or the second contact portion 221b in the vertical movement direction or the sheet conveying direction. Preferably, the third biasing member 51c is disposed above the third contact portion 221c, that is, at a position at least partially overlapping with the third contact portion 221c when viewed in the vertical movement direction of the recording head 22.

[0058] 9(a) to 9(c), the biasing members 51a, 51b, and 51c are respectively composed of base portions 511a, 511b, and 511c, sliding portions 512a, 512b, and 512c, and compression springs 514a, 514b, and 514c. The sliding portions 512a, 512b, and 513c are configured to be movable forward and backward in the direction of biasing the recording head 22 relative to the base portions 511a, 511b, and 511c.

[0059] As shown in FIG. 9(c), the base portion 511 (511a, 511b, 511c) is a generally cylindrical member, and the sliding portion 512 (sliding portions 512a, 512b, 512c) is partially inserted therein. The sliding portion 512 is configured so that the tip portion on the side exposed from the base portion 511 abuts against the plate 52 provided on the recording head 22, and the rear end portion on the side inserted into the insertion hole of the base portion 511 receives the urging force of the compression spring 514 (514a, 514b, 514c). The compression spring 514 is assembled on the inner side of the insertion hole of the base portion 511 relative to the sliding portion 512, and presses the rear end of the sliding portion 512 so as to move the sliding portion 512 from the inner side of the insertion hole toward the outlet side along the ascending and descending direction of the recording head 22. An engaged portion that protrudes in a direction intersecting the insertion direction is provided at the portion of the sliding portion 512 that is inserted into the insertion hole of the base portion 511, and an inward flange portion for preventing the sliding portion 512 from coming off is provided at the opening of the insertion hole of the base portion 511. The engaged portion and the flange portion come into contact with and engage with each other, thereby defining a movable range of the sliding portion 512 relative to the base portion 511 in the direction in which the recording head 22 is biased.

[0060] The tip of the sliding part 512 is configured with a convex part having a convex partial spherical surface at the portion that abuts against the plate 52. The plate 52 with which the tip of the sliding part 512 abuts changes in angle with respect to the advancing / retreating direction of the sliding part 512 as the attitude of the recording head 22 changes. With the above-mentioned convex shape configuration, when the angle of the plate 52 changes, the sliding part 512 can maintain a state of biasing the recording head 22 by sliding against the plate 52 while moving forward / backward relative to the base part 511 and changing the contact position. Note that the shape of the tip of the sliding part 512 is not limited to the above-mentioned convex partial spherical shape, and other shapes and configurations may be appropriately adopted as long as they are configured to slide while maintaining a biasing state.

[0061] 8(a) to 8(c), in the retracted position, the first pin 27a, the second pin 27b, and the third pin 27c of the recording head 22 are supported by the first groove portion 261a, the second groove portion 262a, and the third groove portion 263a of the head holder 26, respectively. Furthermore, the recording head 22 is supported in a state in which it is biased against the head holder 26 by the biasing forces of the first biasing member 51a, the second biasing member 51b, and the third biasing member 51c received by the plate 52. The pins 27a to 27c are in a state in which they are pressed against the support surfaces 261a1 to 263a1, which are the groove bottom surfaces of the groove portions 261a to 263a, by the biasing forces of the biasing members 51a, 51b, and 51c. Moreover, a pair of regulating surfaces 261a2-263a2 are opposed to the pins 27a-27c pressed against the support surfaces 261a1-263a1 so as to be able to come into contact with the direction intersecting the advancing and retreating direction of the recording head 22, and regulate the movement of the pins 27a-27c in the intersecting direction. Furthermore, an engagement portion between the second pin 27b and the second groove portion 262a and an engagement portion between the third pin 27c and the third groove portion 263a are arranged shifted in the advancing and retreating direction of the recording head 22. As a result, the recording head 22 is supported by the head holder 26 in a state in which an angle change that changes the direction of the ejection surface, that is, a relative rotation with respect to the head holder 26, is regulated. This supporting mode of the recording head 22 by the head holder 26 corresponds to the first mode of the present invention.

[0062] In this embodiment, the biasing force of the third biasing member 51c is set to be larger than the biasing forces of the first biasing member 51a and the second biasing member 51b. This is because, in this embodiment, the recording head 22 shown in Figs. 8 to 15 has an inclined posture at the recording position such that the downstream side of the recording head 22 in the sheet conveying direction is positioned lower than the upstream side. This inclined posture positions the side of the recording head 22 where the first contact portion 221a and the second contact portion 221b are arranged lower than the side where the third contact portion 221c is arranged in the sheet conveying direction. Therefore, the biasing force of the third biasing member 51c that biases the upstream side of the recording head 22 in the sheet conveying direction where the third contact portion 221c is arranged is set to be larger than the biasing forces of the first and second biasing members 51a and 51b that bias the downstream side where the first and second contact portions 221a and 221b are arranged. By doing so, the above-mentioned inclined posture can be stably formed, together with the height difference between the first and second positioning members 811a, 811b with which the first and second abutment portions 221a, 221b abut, and the third positioning member 811c with which the third abutment portion 221c abuts.

[0063] Here, the third urging member 51c which urges the side of the recording head 22 which is positioned relatively lower corresponds to the second urging member of the present invention, and the urging force corresponds to the second urging force. The first urging member 51a and the second urging member 51b which urges the side of the recording head 22 which is positioned relatively upper corresponds to the first urging member of the present invention, and the urging force corresponds to the first urging force. Therefore, when the inclination posture of the recording head 22 is different from that shown in Figs. 8 to 15, the setting of the magnitude of the urging force is also different, and the corresponding relationship with the first urging member and the second urging member of the present invention may also be different. For example, when the posture is taken such that the upstream side in the sheet conveying direction is positioned lower than the downstream side, the first urging member 51a and the second urging member 51b correspond to the second urging member of the present invention, and the third urging member 51c corresponds to the first urging member of the present invention. Also, in the case where the recording head 22 is positioned at the recording position without tilting it with respect to the advance / retract direction (lifting / lowering direction) of the recording head 22, the biasing force may be set to be the same. Note that the biasing force setting varies depending on the combination with the setting of the height difference between the first and second positioning members 811a, 811b and the third positioning member 811c, and various settings are possible. In other words, the biasing force can be set arbitrarily as long as the desired tilt can be stably formed.

[0064] In addition, the present invention is not limited to the configuration that applies the urging force as described above, and if the weight of the recording head 22 is sufficiently heavy, the urging force of the first urging member 51a, the second urging member 51b, and the third urging member 51c may not be required. In addition, in this embodiment, the diameter of the first pin 27a is 5.90 to 6.00 mm, and the width of the first groove portion 261a is 6.00 to 6.10 mm, but this is not limited to this, and there is no problem as long as the dimensional difference between the diameter of the pin and the width of the groove is up to about 1 mm. The same is true for the second pin 27b and the second groove portion 262a, and the third pin 27c and the third groove portion 263a. The first pin 27a, the second pin 27b, and the third pin 27c provided on the recording head 22 are supported by the first groove portion 261a, the second groove portion 262a, and the third groove portion 263a provided on the head holder 26, so that two of the three pins become references and the remaining one becomes a rotation stopper. As a result, the recording head 22 in the retracted position is supported in a stable posture by the head holder 26. In this embodiment, the first pin 27a and the second pin 27b are provided at approximately the same height, but they may be provided at different heights.

[0065] 10(a) to 10(c) are diagrams showing a state when the head holder 26 supporting the recording head 22 descends from the retracted position toward the printing position, and a part of the contact portion of the recording head 22 comes into contact with a part of the positioning member. Specifically, the first contact portion 221a of the recording head 22 comes into contact with the first positioning member 811a, and the second contact portion 221b comes into contact with the second positioning member 811b. In the forward / backward direction of the recording head 22, the third contact portion 221c does not come into contact with the third positioning member 811c, because the third positioning member 811c is disposed at a lower position than the first positioning member 811a and the second positioning member 811b. 10(b) is a view from the front side of the apparatus, and FIG. 10(c) is a perspective view from the downstream side in the sheet conveying direction.

[0066] At this time, the first pin 27a, the second pin 27b, and the third pin 27c of the recording head 22 maintain a state in which they are supported by the first groove portion 261a, the second groove portion 262a, and the third groove portion 263a, respectively, of the head holder 26. That is, the recording head 22 is supported by the head holder 26 in a first supporting state in which an angle change that changes the direction of the ejection surface is restricted.

[0067] 11(a) to 11(c) are diagrams showing a state in which the head holder 26 has further lowered from the state shown in FIG. 10(a) to 10(c) toward the printing position. FIG. 11(a) is a diagram seen from the rear side of the device, FIG. 11(b) is a diagram seen from the front side of the device, and FIG. 11(c) is a perspective view seen from the downstream side in the sheet conveying direction. FIG. 11(a) to 11(c) show a state in which the recording head 22 has moved relatively to the head holder 26 in the direction opposite to the downward direction as a result of a force generated in some contact portions that were in contact with the positioning member, which resists the biasing forces of the biasing members 51a to 51c. The biasing forces of the biasing members 51a to 51c act on the recording head 22 in a first direction toward the printing position from the retracted position with respect to the head holder 26. The recording head 22 receives a force from the first positioning member 811a at the first contact portion 221a in a direction resisting the biasing force, and similarly receives a force from the third positioning member 811c at the third contact portion 221c in a direction resisting the biasing force. Due to the action of this reaction force, the pins 27a to 27c are guided by the groove side surfaces (regulating surfaces) of the groove portions 261a to 263a, respectively, and the recording head 22 moves relatively in a second direction opposite to the first direction with respect to the head holder 26. As a result, as shown in Figures 11(a) to 11(c), the first pin 27a, the second pin 27b, and the third pin 27c of the recording head 22 move away from the first groove portion 261a, the second groove portion 262a, and the third groove portion 263a of the head holder 26, respectively.

[0068] When moving from the state shown in Figures 10(a) to 10(c) toward the printing position and further downward to the state shown in Figures 11(a) to 11(c), the recording head 22 maintains a substantially horizontal state. This is because the first pin 27a, the second pin 27b, and the third pin 27c of the recording head 22 are positioned or prevented from rotating in the sheet conveying direction with respect to the first groove portion 261a, the second groove portion 262a, and the third groove portion 263a of the head holder 26. When moving from the state shown in Figures 10(a) to 10(c) to the state shown in Figures 11(a) to 11(c), the pins 27a to 27c come out of the groove portions 261a to 263a and move to the opening portions 261d to 263d in the holes 261 to 263 where the movable range is expanded. In this state, the pins 27a to 27c are movable over a wide range relative to the holes 261 to 263, and the recording head 22 is supported by the head holder 26 in a state in which the recording head 22 is movable relative to the head holder 26 so that the angle of the ejection port surface can be changed. This supporting mode corresponds to the second mode of the present invention.

[0069] Figures 12(a) to 12(c) are views of the head holder 26 when it is further lowered toward the printing position from the state shown in Figures 11(a) to 11(c). Figure 12(a) is a view from the rear side of the device, Figure 12(b) is a view from the front side of the device, and Figure 12(c) is a perspective view from the downstream side in the sheet transport direction.

[0070] 11(a) to 11(c), the pins 27a, 27b, and 27c of the recording head 22 are spaced from the grooves 261a, 262a, and 263a of the head holder 26, respectively, and the movable range relative to the holes 261, 262, and 263 is expanded. Therefore, when the recording head 22 further lowers the head holder 26 toward the printing position, the force acting on the contact portion from the positioning member and the biasing force acting on the plate 52 from the biasing member are balanced, and the recording head 22 can change its posture to change the angle of the ejection port surface. Specifically, the recording head 22 is rotatable relative to the head holder 26 about a rotation axis that is a straight line passing through the center of the first positioning member 811a and the center of the second positioning member 811b. Here, the biasing force of the third biasing member 51c is set to be larger than the biasing forces of the first biasing member 51a and the second biasing member 51b. Therefore, a force acts to rotate the recording head 22 in the direction in which the third contact portion 221c contacts the third positioning member 811c while the pins 27a, 27b, and 27c are moving further away from the grooves 261a, 262a, and 263a, respectively.

[0071] 13(a) to 13(c) are diagrams showing a state (printing position) in which positioning of the recording head 22 and the positioning support portion 810 of the sheet conveying portion housing 81 is completed. Fig. 13(a) is a diagram seen from the rear side of the device, Fig. 13(b) is a diagram seen from the front side of the device, and Fig. 13(c) is a perspective view seen from the downstream side in the sheet conveying direction.

[0072] 12(a) to 12(c), the head holder 26 continues to rotate about the rotation axis, and the third contact portion 221c comes into contact with the third positioning member 811c. The sliding portions 512a, 512b, and 512c are configured to be slidable so as to change the contact position with respect to the plate 52 while changing the amount of protrusion from the base portions 511a, 511b, and 511c. Therefore, the biasing members 51a, 51b, and 51c can bias the recording head 22 against the positioning member 811 while following the movement of the plate 52 accompanying the change in angle of the recording head 22.

[0073] 14(a) and 14(b) are diagrams showing the state of the recording head 22 and the urging members 51a, 51b, and 51c in the state shown in FIG. 13(a) to FIG. 13(c), where FIG. 14(a) is a diagram seen from the rear side of the device, and FIG. 14(b) is a diagram seen from the front side of the device. At this time, the recording head 22 is balanced in a tilted attitude with respect to the head holder 26 in a state in which the positioned portion 221 is pressed against the positioning member 811 by the urging force of the urging member 51 provided on the head holder 26. That is, the recording head 22 is positioned with respect to the head holder 26 in this attitude. Also, the first pin 27a, the second pin 27b, and the third pin 27c are released from the first groove portion 261a, the second groove portion 262a, and the third groove portion 263a. In this way, the recording head 22 ultimately comes to be in a state where it completely follows the positioning members 811a, 811b, and 811c, which have a predetermined height difference, so that it can be positioned with high precision at a posture inclined at a predetermined angle in the printing position.

[0074] Depending on the positioning angle of the recording head 22 at the printing position, the biasing forces of the biasing members 51a, 51b, and 51c are not necessarily required, and the recording head 22 may be biased and positioned only by its own weight.

[0075] 15(a) to 15(c) are explanatory diagrams when the head holder 26 rises from the printing position and starts to retract the recording head 22 upward. FIG. 15(a) is a view from the rear side of the device, FIG. 15(b) is a view from the front side of the device, and FIG. 15(c) is a perspective view from the downstream side in the sheet transport direction. As shown in FIG. 13(a) to FIG. 13(c), the recording head 22 is positioned at a posture inclined at a predetermined angle at the printing position. Therefore, the first pin 27a and the first groove 261a, the second pin 27b and the second groove 262a, and the third pin 27c and the third groove 263a are each misaligned in the sheet transport direction. Therefore, when the recording head 22 is lifted by the rise of the head holder 26, the first pin 27a and the first inclined portion 261b, the second pin 27b and the second inclined portion 262b, and the third pin 27c and the third inclined portion 263b come into contact with each other, or all of them, resulting in a state as shown in Fig. 15(a) to Fig. 15(c). When the head holder 26 further rises from this state, the first pin 27a is guided to the first inclined portion 261b by the biasing forces of the biasing members 51a, 51b, and 51c, or the weight of the recording head 22, or both, and enters the first groove portion 261a. The same is true for the second pin 27b and the third pin 27c. That is, the support state of the recording head 22 by the head holder 26 changes from the second state in which the rotation of the recording head 22 that changes the angle of the ejection port surface is permitted to the first state in which the rotation of the recording head 22 is restricted. For this reason, the recording head 2 2 can move from the printing position to the retracted position in a stable posture in which rotation with respect to the head holder 26 is restricted.

[0076] According to this embodiment, a highly versatile guide mechanism capable of positioning the recording head 22 at any angle can be realized. That is, the movement of the head holder 26 supporting the recording head 22 is a simple movement configuration in which the movement direction is only a linear direction. Then, when the recording head 22 abuts against the positioning member 811, the support state of the recording head 22 by the head holder 26 changes from a first state that restricts the rotation of the recording head 22 to a second state that allows the rotation. This configuration is realized by devising an engagement configuration between the pin 27 of the recording head 22 and the holes 261 to 263 of the head holder 26. That is, the holes 261 to 263 have grooves 261a to 263a that restrict the movement of the pin 27 in the lateral direction intersecting the movement direction of the head holder 26, and openings 261d to 263d that allow the lateral movement of the pin 27 within a predetermined range. The recording head 22 moves relative to the head holder 26 when it comes into contact with the positioning member 811, and the engagement positions of the pins 27 with the holes 261 to 263 change, thereby making it possible to change the above-mentioned support mode.

[0077] According to this embodiment, the degree of inclination of the recording head when positioned at the recording position can be appropriately set by providing a difference in the timing at which the multiple contact parts contact the corresponding multiple positioning parts. Specifically, it is the difference between the first contact timing of the first contact parts (contact parts 221a, 221b) and the first positioning parts (positioning members 811a, 811b) and the second contact timing of the second contact part (contact part 221c) and the second positioning part (positioning member 811c). By appropriately setting this timing difference in correspondence with the desired positioning angle of the recording head, it is possible to incline the recording head at a desired angle.

[0078] In this embodiment, the above-mentioned contact timing difference is generated by providing a difference between the first contact position where the first contact portion and the first positioning portion contact each other and the second contact position where the second contact portion and the second positioning portion contact each other in the elevation direction of the recording head. More specifically, in this embodiment, a difference in height is provided between the first positioning portion and the second positioning portion in the elevation direction of the recording head, thereby generating a difference in the contact positions.

[0079] Here, the configuration for providing a difference in contact timing is not limited to the configuration shown in this embodiment. For example, a difference in contact timing may be provided by providing a difference in height between the first contact portion and the second contact portion in the lifting direction without providing a difference in height between the first positioning portion and the second positioning portion. Alternatively, a difference in height may be provided between the first contact portion and the second contact portion while providing a difference in height between the first positioning portion and the second positioning portion.

[0080] In this embodiment, spheres of the same diameter are used as the positioning members 811, and these are fitted into the recesses 812 of the positioning support part 810 to form the positioning part. With this configuration, the heights of the recesses 812 are differentiated, so that the above-mentioned configuration of differentiating the contact timing can be easily realized. That is, it is only necessary to vary the shape of the recesses 812 of the positioning support part 810 according to the specifications of each recording head 22, and other member configurations can be standardized, so that a highly versatile guide mechanism can be realized.

[0081] However, the configuration of the positioning portion is not limited to that of this embodiment. For example, the heights of the recesses 812 may not be different, and the contact timing may be different by making the shape and size of the positioning member different. The shape of the positioning member is not limited to a sphere, and may be a form having a partial spherical surface at least in the area that contacts the contact portion. The positioning member 811 and the positioning support portion 81 0 may be integrally molded.

[0082] In addition, in this embodiment, the positioning and abutment configuration is configured such that the abutment portion is concave and the positioning portion is convex, and positioning is performed by fitting the concave and convex portions together, but the present invention is not limited to this configuration. For example, the abutment portion may be convex and the positioning portion may be concave, or some of the abutment portions may be concave and others may be convex, and correspondingly, some of the positioning portions may be convex and others may be concave.

[0083] In addition, the specific shape of the concave shape of the contact portion, that is, the combination of the arrangement of the cone and the groove, may be arranged differently from that in this embodiment. In this embodiment, the contact portion 221b as the first contact portion provided on the same side as the contact portion 221c as the second contact portion in the sheet width direction (recording head longitudinal direction) is a groove-shaped portion, and the contact portion 221a as the first contact portion provided on the opposite side is a concave cone-shaped portion. In contrast, for example, the contact portion 221a may be changed from the concave cone-shaped portion to a groove-shaped portion, and the contact portion 221b may be changed from the groove-shaped portion to a concave cone-shaped portion.

[0084] In this embodiment, the side where the cone-shaped contact portion 221a is provided is the reference point side during the recording operation of the recording head 22, and the side where the cone-shaped portion is provided is configured to be the same as the sheet transport reference side in the sheet width direction. That is, the positioning configuration that is the operation reference point side of the recording head 22 is configured to be an engagement configuration between the contact portion 221a, which is a cone-shaped recess, and the positioning member 811a, which is a partially spherical convex portion, and is configured to regulate the positions of the contact portions 221a and 811a in the sheet transport direction and the sheet width direction. On the other hand, the positioning configuration on the opposite side to the operation reference side of the recording head 22 is configured to absorb the influence of dimensional errors and the like (to allow dimensional errors to escape) by making the contact portions 221b and 221c in the groove shape that are open in the sheet width direction. In this way, it is desirable to align the reference point of the recording head 22 and the sheet transport reference on the same side from the viewpoint of the image quality of the recorded image, and it is possible to reduce the variation in the image position formed on the sheet. In addition, by placing the cone-shaped portion, which serves as the reference point for the recording head 22, as far away as possible from the heat source of the device, the influence of thermal deformation is reduced. In this embodiment, the cone-shaped portion is provided on the front side of the device, not on the rear side where there are many heat sources such as electric boards.

[0085] In addition, in this embodiment, the second contact portion 221c is arranged on the same side (back side of the device) as the contact portion 221b in the longitudinal direction (width direction) of the recording head 22, but it may be arranged on the same side (front side of the device) as the opposite contact portion 221a.

[0086] In this embodiment, the first contact portion is provided in pairs on both sides of the longitudinal direction (sheet width direction) of the recording head (contact portion 221a, 221b), and the second contact portion is provided only on one side of the longitudinal direction (contact portion 221c). That is, in this embodiment, the positioning contact is performed at three points, but it may be a four-point contact configuration with two points on each longitudinal side, for example. However, with a three-point contact configuration, it is possible to support the positioning while avoiding positional deviations due to component dimensional errors, etc., and to reduce the effects of individual product differences, etc., and to achieve highly accurate positioning.

[0087] That is, the specific configuration of the positioning and contacting structure may be arbitrarily adopted as long as the reference axis of rotation of the recording head 22 can be made parallel to the nozzle plate 223 (the ejection port surface).

[0088] The disclosure of the embodiments of the present invention includes the following configurations. (Configuration 1) a recording head having an ejection port surface on which ejection ports for ejecting ink are formed; a support and movement unit that supports the recording head and moves the recording head between a recording position and a non-recording position; a positioning unit that positions the recording head at the recording position at a predetermined angle; In a recording device comprising: The recording device is characterized in that the support movement portion can take a first mode in which it supports the recording head so that change in angle of the ejection port surface is restricted while the recording head is not in contact with the positioning portion, and a second mode in which it supports the recording head so that the angle of the ejection port surface becomes variable when the recording head abuts against the positioning portion. (Configuration 2) the recording head has a supported portion, the support movement portion has a support surface for contacting the supported portion and supporting the recording head, 2. The recording device according to configuration 1, wherein in the first mode, the supporting surface is in contact with the supported portion, and in the second mode, the supporting surface is spaced apart from the supported portion. (Configuration 3) the support movement portion has a regulating surface that can come into contact with the supported portion that is in contact with the supporting surface so that the movement of the recording head that changes the angle of the ejection port surface is regulated; The recording device according to configuration 2, characterized in that in the first embodiment, the regulating surface is capable of contacting the supported portion, and in the second embodiment, the regulating surface does not contact the supported portion. (Configuration 4) the supported portions are protrusions protruding from both ends of the recording head in a direction intersecting a moving direction of the recording head, the support movement portion has a hole portion having a surface facing the protrusion portion in a direction perpendicular to the intersecting direction, 4. The recording device according to configuration 3, wherein the surface of the hole portion includes the support surface and the regulating surface. (Configuration 5) the support and movement section further includes a biasing member that biases the recording head so that the supported section contacts the support surface, 5. The recording apparatus according to claim 3, wherein the positioning portion abuts against the recording head so as to generate a force that resists the urging force of the urging member. (Configuration 6) the support surface faces the supported portion in a second direction opposite to a first direction in which the recording head moves from the non-recording position to the recording position, among the moving directions of the recording head; the biasing member biases the recording head in the first direction, 6. The recording apparatus according to configuration 5, wherein the positioning portion abuts against the recording head in the second direction. (Configuration 7) 7. The recording apparatus according to any one of configurations 1 to 6, wherein the movement direction of the support movement part is a linear direction. (Configuration 8) The recording head includes: A first contact portion; a second contact portion provided at a position different from the first contact portion in a direction intersecting with a moving direction of the recording head; having The positioning portion is a first positioning portion that comes into contact with the first contact portion when the recording head is at the recording position; a second positioning portion that abuts against the second abutment portion when the recording head is at the recording position; 8. The recording device according to any one of configurations 1 to 7, comprising: (Configuration 9) The recording device described in configuration 8, characterized in that the angle of the ejection port surface of the recording head in the recording position is determined by the difference in the movement direction of the recording head between a first abutment position where the first abutment portion and the first positioning portion abut, and a second abutment position where the second abutment portion and the second positioning portion abut. (Configuration 10) The recording device described in configuration 8, characterized in that the angle of the ejection port surface of the recording head at the recording position is determined by the difference between a first timing at which the first contact portion and the first positioning portion contact each other and a second timing at which the second contact portion and the second positioning portion contact each other when the recording head moves to the recording position. (Configuration 11) 11. The recording apparatus according to any one of configurations 8 to 10, wherein the first positioning section and the second positioning section are at different positions in the movement direction. (Configuration 12) 12. The recording apparatus according to configuration 11, wherein the second positioning portion is farther away from the recording head in the movement direction than the first positioning portion. (Configuration 13) the recording head has a supported portion, the support movement portion has a support surface for contacting the supported portion and supporting the recording head, the support and movement section further includes a biasing member that biases the recording head so that the supported section contacts the support surface, The biasing member is a first biasing member that applies a first biasing force to the recording head by contacting the recording head on a side closer to the first contact portion than the second contact portion in the intersecting direction; a second biasing member that applies a second biasing force to the recording head by contacting the recording head on a side closer to the second contact portion than the first contact portion in the intersecting direction; Including, 13. The recording apparatus according to configuration 12, wherein the second biasing force is greater than the first biasing force. (Configuration 14) one of the first contact portion and the first positioning portion has a convex shape and the other has a concave shape; 14. The recording apparatus according to any one of configurations 8 to 13, wherein one of the second contact portion and the second positioning portion has a convex shape and the other has a concave shape. (Configuration 15) a conveying unit that conveys a recording material, the conveying unit being located at a position opposite to the ejection port surface of the recording head at the recording position; 15. The recording apparatus according to configuration 14, wherein the first contact portion and the second contact portion are provided at different positions in a conveying direction of the recording material. (Configuration 16) 16. The recording apparatus according to configuration 15, wherein the angle of the ejection port surface is changed by rotating the recording head about a rotation axis that is parallel to a width direction of the recording material and perpendicular to the transport direction. (Configuration 17) The convex shape is a hemispherical shape, 17. The recording apparatus according to configuration 16, wherein the concave shape is a groove shape extending in a width direction of the recording material perpendicular to the conveying direction, or a cone shape. (Configuration 18) the first contact portions are provided in pairs on both sides of the recording head in the width direction, 18. The recording apparatus according to configuration 17, wherein the second contact portion is provided on one side of the recording head in the width direction. (Configuration 19) the first positioning portion and the second positioning portion each have the hemispherical shape, The second contact portion has the groove shape, The first contact portion of the pair of first contact portions that is provided on the same side as the second contact portion in the width direction has the groove shape, The pair of first contact portions is opposite to the second contact portion in the width direction. 19. The recording apparatus according to configuration 18, wherein the first contact portion provided on the side of the recording medium is cone-shaped. [Explanation of symbols]

[0089] 22...recording head, 221...positioned portion, 221a...first contact portion, 221b...second contact portion, 221c...third contact portion, 26...head holder, 261...first hole, 261a...first groove portion, 261b...first inclined portion, 262...second hole, 262a...second groove portion, 262b...second inclined portion, 263...third hole, 263a...third groove portion, 263b...third inclined portion, 27a...first pin, 27b...second pin, 27c...third pin, 51a...first urging member, 51b...second urging member, 51c...third urging member, 81...sheet conveying portion housing, 811...positioning member, S...sheet

Claims

1. A line-type recording head having an ejection port surface having ejection ports for ejecting ink onto a recording material and extending in the width direction of the recording material; a support section for moving the recording head between a recording position where the recording head performs recording and a non-recording position where the recording head does not perform recording; a positioning unit that comes into contact with the recording head at the recording position and positions the recording head at a predetermined angle, A recording device characterized in that when the recording head and the positioning portion do not abut, the support portion regulates the change in angle of the ejection port surface, and when the recording head and the positioning portion abut, the support portion does not regulate the change in angle of the ejection port surface.

2. The recording head has a supported portion, the supporting portion has a supporting surface for supporting the recording head by contacting the supported portion, 2. The recording device according to claim 1, wherein when the recording head and the positioning portion are not in contact, the support surface contacts the supported portion, and when the recording head and the positioning portion are in contact, the support surface is separated from the supported portion.

3. The recording device described in Claim 2, characterized in that the support portion has a regulating surface that can abut against the supported portion in contact with the support surface so that the movement of the recording head that changes the angle of the ejection port surface is regulated, and when the recording head and the positioning portion do not abut, the regulating surface can abut against the supported portion, and when the recording head and the positioning portion abut, the regulating surface does not abut against the supported portion.

4. The supported portion is a protrusion protruding from both ends of the recording head in a direction intersecting a moving direction of the recording head, the support portion has a hole portion having a surface facing the protrusion portion in a direction perpendicular to the intersecting direction, 4. The recording apparatus according to claim 3, wherein the surface of the hole portion includes the support surface and the regulating surface.

5. The recording device according to claim 2, characterized in that the supporting portion has a biasing member that biases the recording head so that the supported portion contacts the supporting surface.

6. The recording device of claim 1, wherein the recording material is supplied from a continuous sheet wound into a roll.

7. A recording device as described in claim 1, characterized in that the movement direction of the support part is a linear direction.

8. The recording head has a first contact portion and a second contact portion provided at a position different from the first contact portion in a direction intersecting a moving direction of the recording head, the positioning portion includes a first positioning portion that comes into contact with the first contact portion when the recording head is at the recording position; a second positioning portion that abuts against the second abutment portion when the recording head is at the recording position; 7. The recording apparatus according to claim 1, further comprising:

9. A recording device as described in Claim 8, characterized in that the angle of the ejection outlet surface of the recording head at the recording position is determined by the difference between a first abutment position where the first abutment portion and the first positioning portion abut, and a second abutment position where the second abutment portion and the second positioning portion abut, in the movement direction of the recording head.

10. A recording device as described in Claim 8, characterized in that the angle of the ejection outlet surface of the recording head at the recording position is determined by the difference between a first timing at which the first abutment portion and the first positioning portion abut and a second timing at which the second abutment portion and the second positioning portion abut when the recording head moves to the recording position.

11. The recording device according to claim 8, wherein the first positioning portion and the second positioning portion have different positions in the movement direction.

12. The recording device according to claim 11, wherein the second positioning portion is farther away from the recording head in the movement direction than the first positioning portion.

13. The recording head has a supported portion, the supporting portion has a supporting surface for supporting the recording head by contacting the supported portion, the supporting portion further includes a biasing member that biases the recording head so that the supported portion contacts the supporting surface, The biasing member is a first biasing member that applies a first biasing force to the recording head by contacting the recording head on a side closer to the first contact portion than the second contact portion in the intersecting direction; a second biasing member that applies a second biasing force to the recording head by contacting the recording head on a side closer to the second contact portion than the first contact portion in the intersecting direction, 13. The recording apparatus according to claim 12, wherein the second biasing force is greater than the first biasing force.

14. One of the first contact portion and the first positioning portion has a convex shape and the other has a concave shape, One of the second contact portion and the second positioning portion has a convex shape and the other has a concave shape.

9. The recording apparatus according to claim 8, having a shape.

15. A conveying section for conveying a recording material is provided at a position opposite to the ejection port face of the recording head at the recording position, 15. The recording apparatus according to claim 14, wherein the first contact portion and the second contact portion are provided at different positions in a conveying direction of the recording material.

16. A recording device as described in Claim 15, characterized in that the angle of the ejection outlet surface changes as the recording head rotates around a rotation axis parallel to the width direction of the recording material perpendicular to the transport direction.

17. The convex shape is a hemispherical shape, 17. The recording apparatus according to claim 16, wherein the concave shape is a groove shape extending in a width direction of the recording material perpendicular to the conveying direction, or a cone shape.

18. The first contact portions are provided in pairs on both sides of the recording head in the width direction, 18. The recording apparatus according to claim 17, wherein the second contact portion is provided on one side of the recording head in the width direction.

19. The first positioning portion and the second positioning portion each have the hemispherical shape, and the second abutment portion has the groove shape, The first contact portion of the pair of first contact portions that is provided on the same side as the second contact portion in the width direction has the groove shape, 20. The recording apparatus according to claim 18, wherein the first contact portion of the pair of first contact portions that is provided on the opposite side to the second contact portion in the width direction has the cone shape.