Recording device

JP2024055602A5Active Publication Date: 2025-09-17CANON KK
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Patent Information

Application Number
JP2022162666
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2022-10-07
Publication Date
2025-09-17
Estimated Expiration
2042-10-07

AI Technical Summary

Technical Problem

Existing recording devices face a challenge in achieving both rigidity around the shaft and ease of assembly, as structures that enhance rigidity often compromise ease of assembly, while flexible parts may bend and detach during transportation.

Method used

A recording device with a support member and rotating member that includes a shaft portion and shaft support, where displacement is restricted in a predetermined range, allowing for both rigidity and ease of assembly by using a displacement regulating structure to prevent unintended detachment during transportation.

Benefits of technology

The solution ensures robustness against impact during transportation while maintaining ease of assembly and attachment/detachment of components, enhancing the device's overall stability and usability.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a technique that can make both rigidity around a shaft and assemblability compatible.SOLUTION: A recording device is provided with a support member that supports a recording head that performs recording on a recording medium while discharging liquid to the recording medium, and a turning member, turnably supported by the support member, which can turn to an open position where the recording head can be desorbed from the support member and a close position where the recording head is hardly desorbed from the support member, which restricts the turning member from being displaced in an axial direction with respect to the support member, in a predetermined turning range of a shaft part that is a turning center of the turning member, of a shaft support part, into which the shaft part is inserted in the axial direction, which supports the shaft part and of the turning member, and permits the turning member to be displaced in the axial direction, in a turning position out of the predetermined turning range.SELECTED DRAWING: Figure 15
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Description

[Technical field]

[0001] The present invention relates to a recording device. [Background technology]

[0002] A recording device equipped with a rotating member that is opened and closed when a recording head is attached and detached has been proposed. For example, Patent Document 1 discloses a recording device equipped with a configuration in which a tube that supplies ink to the recording head is connected to the recording head using a joint member. In this recording device, a cover member that holds the joint member is attached to the carriage so as to be rotatable, so that the opening and closing of the cover is linked to the insertion and removal of the joint from the recording head. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Patent No. 6624759 Summary of the Invention [Problem to be solved by the invention]

[0004] In a structure for rotating a rotating member, in a configuration having a shaft and a hole into which the shaft is inserted, temporary deformation of the member is used during assembly. In such a configuration, since the bending of the member is used, increasing the rigidity around the shaft deteriorates the ease of assembly. If the member around the shaft is made flexible in consideration of ease of assembly, the part may bend and fall off if a strong impact is applied during transportation, etc.

[0005] The present invention provides a technique that can achieve both rigidity around the shaft and ease of assembly. [Means for solving the problem]

[0006] According to the present invention, a support member for supporting a recording head that performs recording by ejecting liquid onto a recording medium; a rotating member that is rotatably supported by the support member and that is rotatable between an open position where the recording head can be attached to and detached from the support member and a closed position where the recording head cannot be attached to and detached from the support member; A recording device comprising: a shaft portion provided on one of the rotating member and the support member, the shaft portion being a rotation center of the rotating member; a shaft support portion provided on the other of the rotating member and the support member, into which the shaft portion is axially inserted and which supports the shaft portion; a displacement restriction structure that restricts displacement of the rotating member in the axial direction relative to the support member within a predetermined rotation range of the rotating member and allows displacement of the rotating member in the axial direction at a rotation position outside the predetermined rotation range. A recording device is provided. Effect of the Invention

[0007] The present invention can provide a technology that can achieve both rigidity around the shaft and ease of assembly. [Brief description of the drawings]

[0008] [Figure 1] 1 is an external view of a recording apparatus according to an embodiment of the present invention. [Diagram 2] FIG. 4 is a perspective view showing the structure around the carriage. [Diagram 3] Front view showing the structure around the carriage. [Figure 4] FIG. [Diagram 5] FIG. [Figure 6] FIG. [Figure 7] Cross-sectional view taken along line AA in Figure 3. [Figure 8] FIG. 2 is a cross-sectional view showing the headset cover in a closed position. [Figure 9] 5A and 5B are diagrams illustrating the operation of the headset cover and the connecting member. [Figure 10] 5A and 5B are diagrams illustrating the operation of the headset cover and the connecting member. [Figure 11]5A and 5B are diagrams illustrating the operation of the headset cover and the connecting member. [Figure 12] 5A and 5B are diagrams illustrating the operation of the headset cover and the connecting member. [Figure 13] FIG. [Figure 14] 1A is a diagram showing a state in which the rotation of the headset cover is restricted, and FIG. 1B is a diagram showing a state in which the rotation restriction of the headset cover is released. [Figure 15] FIG. [Figure 16] 1A is a diagram showing the state in which the restriction on the displacement of the headset cover is released, and FIG. 1B is a diagram showing the state in which the headset cover has been displaced. [Figure 17] 1A to 1C are explanatory diagrams showing the steps for removing the headset cover. [Figure 18] 13A to 13C are diagrams showing other examples of the pivot structure of a headset cover. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

[0009] Hereinafter, the embodiments will be described in detail with reference to the attached drawings. Note that the following embodiments do not limit the invention according to the claims. Although the embodiments describe a number of features, not all of these features are essential to the invention, and the features may be combined in any manner. Furthermore, in the attached drawings, the same reference numbers are used for the same or similar configurations, and duplicated descriptions are omitted.

[0010] First Embodiment "1. Overview of the recording device" FIG. 1 is a perspective view of a recording apparatus 1 according to an embodiment of the present invention. The recording apparatus 1 of this embodiment is an inkjet recording apparatus that ejects liquid ink to record on a recording medium, but the present invention is also applicable to various recording apparatuses other than inkjet recording apparatuses. In the figure, arrows X and Y indicate directions that intersect with each other, and in this embodiment, these are perpendicular to each other. Arrow Z indicates the up-down direction (direction of gravity). The X direction is the width direction of the recording apparatus 1 (left-right direction, width direction of the recording medium). The Y direction is the depth direction of the recording apparatus 1 (front-back direction).

[0011] In addition, "recording" includes not only the formation of meaningful information such as characters and figures, but also the formation of images, patterns, and the like on a recording medium, whether meaningful or insignificant, or the processing of the medium, regardless of whether it is manifested in a way that can be visually perceived by humans. In addition, although a sheet of paper is assumed as the "recording medium" in this embodiment, it may also be cloth, plastic film, etc.

[0012] The recording device 1 includes a feeding unit 2 for transporting recording media, a transport unit 3, and a discharge unit 4. The feeding unit 2 includes a tray 2a on which sheet-shaped recording media are stacked, and a recording medium feeding mechanism (not shown). The feeding mechanism includes, for example, a feeding roller for feeding the recording media on the tray 2a, and a feeding motor that is a drive source for rotating the feeding roller.

[0013] The transport unit 3 is a mechanism that transports the recording medium fed from the feeding unit 2 in the Y direction (sub-scanning direction). The transport unit 3 includes a transport roller 3a and a transport motor (not shown) that is a drive source for rotating the transport roller 3a. A pinch roller 3b is pressed against the transport roller 3a, and the recording medium is sandwiched in the nip portion between them. The recording medium is transported over the platen PT by the rotation of the transport roller 3a.

[0014] The discharge unit 4 is a mechanism that further conveys the recording medium conveyed from the conveying unit 3 in the Y direction (sub-scanning direction). The discharge unit 4 includes a discharge roller, a conveying motor that is a drive source for rotating the discharge roller, and a spur that contacts the discharge roller (none of which are shown), and discharges the recording medium to the front side of the recording device 1.

[0015] The containers 7Bk, 7C, 7M, and 7Y (hereinafter, collectively referred to as the containers 7 when there is no need to distinguish between them) are ink tanks that contain liquid ink. In the present embodiment, the containers 7 are stationary containers that are fixed to the recording device 1. When the remaining ink level is low, the user refills the containers 7 with ink without removing the containers 7 from the recording device 1. The four containers 7 contain different types of ink. In the present embodiment, the container 7Bk contains black ink, the container 7C contains cyan ink, the container 7M contains magenta ink, and the container 7Y contains yellow ink. Note that the types of ink are not limited to four types as in the present embodiment, and may be one type or multiple types other than four types, and the number of containers 7 may be equal to or greater than the number corresponding to the types of ink.

[0016] The recording device 1 includes a carriage 5. The carriage 5 is a support member that supports a recording head 10Cr (not shown in FIG. 1) and a recording head 10Bk (hereinafter, when they are collectively referred to or not distinguished, they will be referred to as a recording head 10). The carriage 5 is covered from above by a headset cover 8. The recording head 10 of this embodiment is a recording head that performs recording by discharging ink supplied from a container 7 onto a recording medium. The recording head 10 has an ejection surface 101 (see FIG. 3, FIG. 4, etc.) on which a plurality of nozzles that eject ink are formed. The ejection surface 101 is disposed to face the platen PT. For example, an electrothermal conversion element (heater) is provided in each nozzle, and the electrothermal conversion element heats the ink by passing electricity to bubble the ink, and the ink is ejected by the bubble-generating energy. A structure in which ink is ejected by a piezoelectric element instead of the electrothermal conversion element may be used.

[0017] The carriage 5 reciprocates in the X direction (main scanning direction) by a drive unit 6. The drive unit 6 includes a drive pulley and a driven pulley (only the driven pulley 6b is shown in FIG. 1) that are spaced apart in the X direction, an endless belt 6c wound around these pulleys, and a carriage motor 6a that is a drive source that rotates the drive pulley. The carriage 5 is connected to the endless belt 6c, and the carriage 5 moves in the X direction by running the endless belt 6c.

[0018] During the movement of the carriage 5, an image is recorded by ejecting ink from the recording head 10 onto the recording medium on the platen PT. This operation is sometimes called a recording scan. The recording operation is performed by alternately repeating the recording medium transport operation by the transport unit 6 and the recording scan. In other words, the transport unit 6 transports the recording medium intermittently, and an image is recorded on the recording medium by performing a recording scan when transport of the recording medium is stopped.

[0019] Thus, the recording device 1 of this embodiment is a serial type inkjet recording device in which the recording head 10 is mounted on a carriage 5 that moves back and forth in the X direction. However, the present invention is also applicable to other recording devices, such as an inkjet recording device equipped with a so-called full line head recording head (recording head) in which multiple nozzles that eject liquid are provided in an area corresponding to the width of the recording medium.

[0020] "2. Carriage and Surrounding Structure" The structure around the carriage 5 will be described with reference to Figures 2 to 8 in addition to Figure 1. Figures 2 and 3 will be mainly referred to. Figure 2 is a perspective view showing the structure around the carriage 5, and Figure 3 is a front view showing the structure around the carriage 5. Figures 2 and 3 show a state in which the head set cover 8 is in an open position where the recording head 10 can be detached.

[0021] <Recording head> In this embodiment, a plurality of recording heads 10 are supported on the carriage 5. Specifically, two types of recording heads 10 are supported: a recording head 10Cr and a recording head 10Bk. The recording head 10Cr is a recording head that ejects cyan ink, magenta ink, and yellow ink. The recording head 10Bk is a recording head that ejects black ink. In this embodiment, the recording heads 10 are supported on the carriage 5 so as to be replaceable. Because the recording heads 10 are replaceable, the recording heads 10 and the rest of the device main body may be formally referred to as the recording device 1, or the device main body may be formally referred to as the recording device 1.

[0022] Please also refer to Figure 4. Figure 4 is a perspective view of the recording heads 10Cr and 10Bk. The recording head 10 has a rectangular parallelepiped shape as a whole, and a discharge surface 101 is provided at its bottom. The following components are provided on an upper surface 102 of the recording head 10.

[0023] The upper surface 102 of the recording head 10Bk is provided with an engagement portion 106 protruding upward from the upper surface 102, a liquid introduction portion 103Bk, and attitude control portions 104 and 105. The engagement portion 106 is an engagement portion for positioning the recording head 10Bk when it is attached to the carriage 5. The liquid introduction portion 103Bk is an inlet portion for introducing black ink contained in the container 7Bk into the recording head 10Bk, and is a tube member extending in the vertical direction. A circular recess is formed around the liquid introduction portion 103Bk. The attitude control portions 104 and 105 are members for changing the attitude of the connection member 9Bk. The attitude control portion 104 includes a columnar (circular in cross section) shaft portion 104a and a cylindrical recess portion 104b. The tip of the shaft portion 104a is gradually tapered. The attitude control unit 105 includes an oval columnar shaft portion 105a (with an oval cross section) and an oval cylindrical recess portion 105b. The tip of the shaft portion 105a is gradually tapered in diameter.

[0024] The upper surface 102 of the recording head 10Cr is provided with an engagement portion 106 protruding upward from the upper surface 102, liquid introduction portions 103Y, 103M, and 103C, and attitude control portions 104 and 105. The engagement portion 106 is an engagement portion for positioning the recording head 10Cr when it is attached to the carriage 5. The liquid introduction portions 103Y, 103M, and 103C are inlets for introducing the yellow ink, magenta ink, and cyan ink contained in the containers 7Y, 7M, and 7C into the recording head 10Cr, and are tube members extending in the vertical direction. A circular recess is formed around each of the liquid introduction portions 103Y, 103M, and 103C. The attitude control portions 104 and 105 are members for changing the attitude of the connection member 9Cr. The attitude control portion 104 includes a columnar shaft portion 104a and a cylindrical recess 104b. The tip of shaft portion 104a is gradually tapered in diameter. Posture control portion 105 includes shaft portion 105a having an elongated columnar shape and recessed portion 105b having an elongated cylindrical shape. The tip of shaft portion 105a is gradually tapered in diameter.

[0025] <Carriage and headset cover> Mainly, FIG. 1 to FIG. 3 are referred to. The carriage 5 includes a head support part 50 that supports the recording head 10 and a cover support part 51 that rotatably supports the head set cover 8, and the head support part 50 is detachable from the cover support part 51. A known detachable structure (for example, a fastening structure using bolts) can be adopted as the detachable structure between the head support part 50 and the cover support part 51. The head support part 50 has a head housing part 50cr that houses the recording head 10Cr and a head housing part 50Bk that houses the recording head 10Bk. The head housing part 50cr and the head housing part 50Bk are arranged side by side in the X direction, and therefore the recording head 10Cr and the recording head 10Bk are also arranged side by side in the X direction. The head support part 50 has an opening at its bottom, and each ejection surface 101 of the recording head 10Cr and the recording head 10Bk is exposed to the outside (downward) of the carriage 5. A plurality of locking portions 52 for maintaining the headset cover 8 in the closed position are provided at the front of the carriage 5 and spaced apart in the X direction.

[0026] The headset cover 8 is a rotating member that is rotatably supported by the cover support portion 51 of the carriage 5 and enables replacement of the recording head 10. When the headset cover 8 is in the open position shown in Fig. 2 and Fig. 3, the recording head 10 can be attached to and detached from the head support portion 50 of the carriage 5. When the headset cover 8 is in the closed position shown in Fig. 1, the recording head 10 cannot be attached to and detached from the head support portion 50 of the carriage 5. The headset cover 8 has an upper wall portion 8a, left and right side walls 8b, and a front wall portion 8c, and has an overall box shape that is open below and behind.

[0027] The headset cover 8 is provided with cylindrical shafts 80 spaced apart from each other on the left and right. One of the shafts 80 protrudes in one direction in the X direction from one side wall 8b of the headset cover 8, and the other of the shafts 80 protrudes in the opposite direction in the X direction from the other side wall 8b. The cover support portion 51 of the carriage 5 is provided with shaft supports 51a supporting the shafts 80 on the left and right side walls thereof. In this embodiment, the shaft supports 51a are through holes, into which the shafts 80 are inserted in the axial direction. The shaft supports 51a may be bottomed holes. Thus, in this embodiment, two sets of the shafts 80 and the shaft supports 51a are provided spaced apart from each other in the axial direction (X direction), and the headset cover 8 is rotatable relative to the carriage 5 around a rotation center line 80a that is the center of the shafts 80. In this embodiment, the direction of the rotation center line 80a is the X direction.

[0028] An elastic member 12 is provided near each shaft portion 80 to bias the headset cover 8 to the open position. In this embodiment, the elastic member 12 is a torsion coil spring through which the shaft portion 80 is inserted. A plurality of locking portions 82 corresponding to the locking portions 52 of the carriage 5 are provided on the front wall portion 8c of the headset cover 8. FIG. 7 is a cross-sectional view taken along line AA in FIG. 3, showing the headset cover 8 in the open position. FIG. 8 is a cross-sectional view taken along line AA in FIG. 3, showing the headset cover 8 in the closed position. The locking portions 52 and 82 each have a wedge shape, and the locking portions 82 are locked to the locking portions 52 to maintain the headset cover 8 in the closed position. When the locking portions 52 and 82 are released from their locking, the headset cover 8 is automatically rotated to the open position by the bias of the elastic member 12.

[0029] <Connection parts> Mainly, reference will be made to Figs. 1 to 3, 7 and 8. The headset cover 8 holds connection members 9Cr and 9Bk (hereinafter, when they are collectively referred to or when they are not distinguished, they will be referred to as connection members 9). The connection members 9 are disposed inside the upper wall portion 8a. When the headset cover 8 is located at the closed position (Fig. 8), the upper wall portion 8a is configured to cover the recording head 10 from above, and in this respect, the upper wall portion 8a can be said to be a cover portion. When the headset cover 8 is located at the closed position (Fig. 8), the connection members 9 are positioned between the upper wall portion 8a and the recording head 10.

[0030] The connecting members 9 are held in a positionally variable manner by a plurality of holding portions 81 of the headset cover 8. Each holding portion 81 is formed so as to protrude inward from the upper wall portion 8a, and each connecting member 9 is held by a pair of holding portions 81 spaced apart on the left and right. In the present embodiment, a total of four holding portions 81 are provided on the headset cover 8 to hold two connecting members 9.

[0031] The connection member 9 is a member that relays between the recording head 10 and the tubes 11. A total of four tubes 11 are provided for each type of ink, and each tube 11 is connected to a corresponding container 7Bk, 7C, 7M, or 7Y. Each tube 11 is a flexible, long member that forms an ink supply passage. The four tubes are held and fixed at their midpoints in a groove-shaped holding portion 84 provided in the headset cover 8.

[0032] Please refer to Figures 5 and 6. Figure 5 is a perspective view of the connection members 9Cr and 9Bk. Figure 6 is a bottom view of the connection members 9Cr and 9Bk.

[0033] The connection member 9Bk includes a main body 90 and a sealing member 91. The main body 90 is integrally provided with an inlet 93Bk provided at its front end, a pair of claws 92 provided at its left and right sides, and a connection portion 95Bk and engagement portions 96 and 97 provided at its bottom surface. A tube 11 forming a liquid supply passage for black ink is connected to the inlet 93Bk. The connection portion 95Bk is a member connected to the liquid introduction portion 103Bk of the recording head 10Bk. The connection portion 95Bk of this embodiment is a cylindrical member, and is formed with a connection port 95a through which the liquid introduction portion 103Bk is inserted and removed. An elastic member 95b is provided on the inner peripheral surface of the connection portion 95Bk (FIGS. 7 and 8). The elastic member 95b is a sealing elastomer that seals the connection port 95a and the liquid introduction portion 103Bk, and is, for example, integrally molded with the connection portion 95Bk.

[0034] A groove-like relay passage 94Bk that connects the inlet portion 93Bk and the connection portion 95Bk is formed on the upper surface of the main body 90. The sealing member 91 is, for example, a sheet-like film that is welded to the upper surface of the main body 90, and the relay passage 94Bk is sealed by the sealing member 91. When the connection portion 95Bk and the liquid introducing portion 103Bk of the liquid introducing portion are connected, the liquid supply passage of the tube 11 and the liquid introducing portion 103Bk of the liquid introducing portion are connected, and black ink is supplied from the container 7Bk to the recording head 10Bk via the tube 11 and the relay passage 94BK.

[0035] The pair of claws 92 are plate-shaped members and protrude from the main body 90 in the left-right direction (the direction of the rotation center line 80a) in a plan view of the connection member 9Bk. The holding portion 81 has an opening OP (FIG. 2). The area of ​​the opening OP is larger than the cross-sectional area of ​​the claws 92. By inserting the claws 92 into the opening OP, the connection member 9Bk is held on the headset cover 8 so that its posture can be changed. The engagement portions 96 and 97 correspond to the posture control units 104 and 105 of the recording head 10Bk, and the engagement portion 96 is arranged to engage with the posture control unit 104, and the engagement portion 97 is arranged to engage with the posture control unit 105. The engagement portions 96 and 97 are tubular members having holes 96a and 97a, and the engagement portion 96 has a cylindrical shape corresponding to the shape of the posture control unit 104, and the engagement portion 97 has an elongated cylindrical shape corresponding to the shape of the posture control unit 105.

[0036] The connection member 9Cr will be described. The basic structure of the connection member 9Cr is the same as that of the connection member 9Bk. The connection member 9Cr includes a main body 90 and a sealing member 91. The main body 90 of the connection member 9Cr integrally includes inflow portions 93C, 93M, and 93Y provided at its front end, a pair of claw portions 92 provided at its left and right sides, and connection portions 95C, 95M, and 95Y and engagement portions 96 and 97 provided at its bottom surface. The inflow portions 93C, 93M, and 93Y are connected to a tube 11 forming a liquid supply passage for cyan ink, a tube 11 forming a liquid supply passage for magenta ink, and a tube 11 forming a liquid supply passage for yellow ink, respectively.

[0037] The connection parts 95C, 95M, and 95Y are members that are connected to the liquid introduction parts 103C, 103M, and 103Y of the recording head 10Cr. The connection parts 95C, 95M, and 95Y of this embodiment are cylindrical members, and each has a connection port 95a through which the liquid introduction parts 103C, 103M, and 103Y are inserted and removed. Note that the connection parts 95Bk, 95Y, 95M, and 95C are collectively referred to or are not distinguished from each other, and are referred to as the connection part 95.

[0038] An elastic member 95b is provided on the inner circumferential surface of each of the connection portions 95C, 95M, and 95Y. The elastic member 95b is a sealing elastomer that seals between the connection port 95a and each of the liquid introduction portions 103C, 103M, and 103Y, and is, for example, integrally molded with the connection portions 95C, 95M, and 95Y.

[0039] The upper surface of the main body 90 of the connection member 9Cr is formed with groove-like relay passages 94C, 94M, and 94Y that communicate the inflow portions 93C, 93M, and 93Y with the connection portions 95C, 95M, and 95Y. The sealing member 91 is, for example, a sheet-like film that is welded to the upper surface of the main body 90, and the relay passages 94C, 94M, and 94Y are sealed by the sealing member 91. When the connection portion 95C and the liquid introduction portion 103C of the liquid introduction portion are connected, the liquid supply passage of the tube 11 communicates with the liquid introduction portion 103C of the liquid introduction portion, and cyan ink is supplied to the recording head 10Cr via the container 7C, the tube 11, and the relay passage 94C. When the connection part 95M and the liquid introduction part 103M are connected, the liquid supply passage of the tube 11 and the liquid introduction part 103M communicate with each other, and magenta ink is supplied from the container 7M to the recording head 10Cr via the tube 11 and the relay passage 94M. When the connection part 95Y and the liquid introduction part 103Y are connected, the liquid supply passage of the tube 11 and the liquid introduction part 103Y communicate with each other, and yellow ink is supplied from the container 7Y to the recording head 10Cr via the tube 11 and the relay passage 94Y.

[0040] The pair of claws 92 of the connection member 9Cr are plate-shaped members and protrude from the main body 90 in the left-right direction (the direction of the rotation center line 80a) in a plan view of the connection member 9Cr. As with the connection member 9Bk, the claws 92 are inserted into the openings OP, so that the connection member 9Cr is held on the headset cover 8 so that its posture can be changed. The engagement parts 96 and 97 correspond to the posture control parts 104 and 105 of the recording head 10Cr, and are arranged so that the engagement part 96 engages with the posture control part 104 and the engagement part 97 engages with the posture control part 105. Both of the engagement parts 96 and 97 are tubular members, and the engagement part 96 has a cylindrical shape corresponding to the shape of the posture control part 104, and the engagement part 97 has an elongated cylindrical shape corresponding to the shape of the posture control part 105.

[0041] <Positioning section> Mainly refer to Figures 7 and 8. The headset cover 8 is provided with a positioning portion 14. The positioning portion 14 is an engagement member that is biased by an elastic member 15 in a direction that presses the recording head 10. In this embodiment, the elastic member 15 is a coil spring. Two sets of the positioning portion 14 and the elastic member 15 are provided, and each set corresponds to the recording heads 10Bk and 10Cr. When the headset cover 8 rotates from the open position to the closed position, the positioning portion 14 engages with the engagement portion 106 of the recording head 10, and the recording head 10 is positioned at a predetermined position on the carriage 5.

[0042] <Electricity applying section> The recording device 1 includes a biasing portion 13 that biases the connection member 9 to a predetermined position. In this embodiment, the biasing portion 13 is an elastic member, particularly a coil spring, provided for each of the connection members 9Bk, 9Cr. The biasing portion 13 is mounted between the upper wall portion 8a of the headset cover 8 and the connection member 9. The headset cover 8 is provided with a shaft-shaped guide portion 83 that supports the biasing portion 13 (FIGS. 7 and 8). The biasing portion 13 abuts against a sealing member 91 of the connection member 9.

[0043] Fig. 7 shows the initial position of the connecting member 9Bk, and Fig. 8 shows the connected position of the connecting member 9Bk. The biasing portion 13 biases the connecting member 9Bk to the initial position. The initial position is the position of the connecting member 9Bk in a state where the connecting portion 95Bk is not connected to the liquid introducing portion 103Bk of the liquid introducing portion, and the position control portions 104 and 105 are separated from the engagement portions 96 and 97. The connected position is the position in a state where the connecting portion 95Bk is connected to the liquid introducing portion 103Bk of the liquid introducing portion. Although the above description has been given of the connecting member 9Bk, the same applies to the connecting member 9Cr.

[0044] "3. Opening and closing the cover" The behavior of the connecting member 9 when the headset cover 8 is rotated from the open position to the closed position will be described with reference to Figures 9 to 12. Figure 9 is an operation explanatory diagram illustrating the rotational state of the headset cover 8 as a cross-sectional view taken along line CC in Figure 3, and Figure 10 is an enlarged view of part P1 in Figure 9. Figure 10 is an operation explanatory diagram illustrating the rotational state of the headset cover 8 as a cross-sectional view taken along line DD in Figure 3, and Figure 11 is an enlarged view of part P2 in Figure 10. States ST1 to ST4 in each figure each show the same operation timing.

[0045] State ST1 indicates a state in which the headset cover 8 is in the open position, and state ST4 indicates a state in which the headset cover 8 is in the closed position. In the open position, the connection member 9 is in its initial position, and in the closed position, the connection member 9 is in its connected position. In terms of the relationship between the liquid introducing portion 103 and the connection portion 95, the closed position can be called the connected position, and the open position can be called the disconnected position. States ST2 and ST3 are intermediate states between state ST1 and state ST4, in which the headset cover 8 is in the middle of rotating. Figures 9 to 12 show the transition of the posture change, etc. of the connecting member 9Cr. The same applies to the transition of the posture change, etc. of the connecting member 9Bk.

[0046] In state ST1, the connection member 9Cr is in an initial position. As shown in state ST1 in Fig. 10, the opening OP of the holding part 81 is a pentagonal opening having straight edges 81a to 81e. The edges 81a and 81b are parallel to each other, and the edges 81c and 81d are parallel to each other. The edge 81e is an inclined edge between the edges 81a and 81d.

[0047] In the initial position, the claws 92 of the connection member 9Cr abut against the edges 81a to 81e of the opening OP at multiple points. Specifically, the claws 92 abut against the edges of the opening OP at three points, the edges 81a, 81b, and 81e. By making the shape of the opening OP a pentagon rather than a rectangle, the positioning accuracy of the connection member 9Cr can be improved while the position of the connection member 9Cr can be smoothly changed.

[0048] The operation of rotating the headset cover 8 from the open position to the closed position is performed, for example, by the user. When the headset cover 8 starts to rotate counterclockwise in Figs. 9 to 12, it enters state ST2. At this stage, as shown in state ST2 in Figs. 10 and 12, the attitude control unit 105 starts to engage with the corresponding engagement unit 97. Specifically, the shaft 105a starts to enter the hole 97a. The same is true for the shaft 104a of the attitude control unit 104 and the corresponding engagement unit 96. Meanwhile, at this stage, the liquid introduction unit 103 and the connection unit 95 are separated from each other. That is, in the process of rotating the headset cover 8 from the open position to the closed position, the attitude control units 104 and 105 and the engagement units 96 and 97 start to contact (or engage) with each other before the liquid introduction unit 103 and the connection unit 95 start to contact (or engage) with each other. Furthermore, in the state ST2, although not shown, the positioning portion 14 engages with the engaging portion 106 of the recording head 10, and the recording head 10 starts to be positioned at a predetermined position on the carriage 5.

[0049] As the headset cover 8 continues to rotate, it reaches a state ST3. At this stage, as shown in state ST3 in FIG. 10 and FIG. 12, the engagement between the attitude control unit 105 and the corresponding engagement unit 97 progresses. The same is true for the attitude control unit 104 and the corresponding engagement unit 96. When the shaft portion 105a enters the hole 97a, an axis adjustment action is performed to position both on the same axis. That is, an axis adjustment action is performed to align the D2 direction and the D4 direction. As a result, the connection member 9Cr changes its posture against the bias of the biasing unit 13, and the claw portion 92 begins to separate from the edges 81a and 81e. The posture of the connection member 9Cr becomes close to the connection posture, and the D1 direction and the D3 direction also begin to align, and in this state, the liquid introduction portion 103 and the connection portion 95 begin to connect. In addition, the engagement between the positioning portion 14 and the engagement portion 106 of the recording head 10 positions the recording head 10 at a predetermined position on the carriage 5.

[0050] As the headset cover 8 continues to rotate, it reaches state ST4. At this stage, the attitude of the connecting member 9Cr has reached the connected attitude. In this way, the attitude of the connecting member 9Cr can be automatically changed during the rotation of the headset cover 8. As shown in state ST4 in Figures 10 and 12, the engagement between the attitude control unit 105 and the corresponding engaging portion 97 is completed, and the connection between the liquid introduction portion 103 and the connecting portion 95 is also completed. The claw portion 92 is in surface contact with the edge 81b. The engaging portion 82 is engaged with the engaging portion 52, and the headset cover 8 is maintained in the closed position. The recording head 10 is fixed to the carriage 5.

[0051] As described above, in this embodiment, the recording head 10 can be fixed and the liquid introduction part 103 of the liquid introduction part and the connection part 95 can be connected simultaneously by rotating the headset cover 8 from the open position to the closed position, and ink can be immediately supplied to the recording head 10 from the container 7. When the locking part 82 is released from the locking part 52, the headset cover 8 is automatically rotated to the open position by the biasing force of the elastic member 12. At that time, the connection member 9 returns to the initial position by the reverse operation of the states ST1 to ST4, and the connection between the liquid introduction part 103 of the liquid introduction part and the connection part 95 is released. The user can remove the recording head 10 from the carriage 5 and perform replacement work simply by releasing the locking part 82 from the locking part 52.

[0052] In this embodiment, the provision of the biasing portion 13 and the holding portion 81 as a mechanism for changing the posture of the connecting member 9 has the following advantages. That is, as the headset cover 8 rotates, the connecting member 9 can be changed to a posture suitable for connecting the liquid introduction portion 103 and the connecting portion 95 immediately before they are connected, improving the connection accuracy. In particular, it is possible to reduce the possibility of the liquid introduction portion 103 and the connecting portion 95 starting to connect to each other at an angle, resulting in a poor connection.

[0053] The connecting member 9 is constantly biased by the biasing portion 13 and pressed against the edge of the opening OP, so the posture of the connecting member 9 is stable. It is possible to prevent the posture of the connecting member 9 from changing to an unintended posture while the headset cover 8 is rotating, which also reduces the possibility of poor connection between the liquid introducing portion 103 and the connecting portion 95 and improves connection accuracy.

[0054] A change in the posture of the connecting member 9 does not restrict the rotation of the headset cover 8, and the headset cover 8 and the connecting member 9 can be smoothly displaced relative to each other.

[0055] "4. Structure for attaching and detaching the headset cover" In this embodiment, the pivot structure of the headset cover 8 is such that the shafts 80 protrude from the left and right sides of the headset cover 8 and are inserted into the shaft support parts 51a, which are holes provided in the cover support part 51 of the carriage 5. Here, when attaching or detaching the headset cover 8 to or from the carriage 5, in a configuration in which the periphery of the shaft support part 51a is bent to insert or remove the shafts 80 from the shaft support part 51a, it is necessary to lower the support rigidity of the shaft support part 51a. If the support rigidity is lowered, the periphery of the shaft support part 51a may be bent due to vibration during transportation, and the headset cover 8 may fall off during transportation. Conversely, if the support rigidity of the shaft support part 51a is high, it is possible to prevent the headset cover 8 from falling off during transportation, but it becomes difficult to attach or detach the headset cover 8 to or from the carriage 5, and the ease of assembly during manufacturing or maintenance is deteriorated. In this embodiment, the following configuration makes it possible to achieve both rigidity around the shaft and ease of assembly.

[0056] First, a detachment position is designed as a rotation position for the headset cover 8. A rotation restriction structure is provided to prevent the headset cover 8 from rotating to the detachment position during normal use. FIG. 13 is an explanatory diagram of this, with the headset cover 8 in the closed position. A rotation restriction part 501 is provided on the head support part 50 of the carriage 5. The rotation restriction part 501 is a stopper that abuts against an abutment part 801 provided on the headset cover 8, and restricts the headset cover 8 from rotating any further counterclockwise in FIG. 13 than the closed position (the opposite direction from the closed position to the open position).

[0057] This restriction can be released by removing the head support part 50. Figures 14(A) and 14(B) are explanatory diagrams. Figure 14(A) shows the state where the head support part 50 has been removed from the cover support part 51. The headset cover 8 is in the closed position. By removing the head support part 50, the rotation restriction part 501 no longer exists, and the headset cover 8 can be rotated to the detached position as shown in Figure 14(B).

[0058] In the case of this embodiment, the displacement restriction structure 200, which will be described below, restricts the headset cover 8 from being displaced in the X direction relative to the cover support part 51. However, when the headset cover 8 is rotated to the detachment position, the headset cover 8 is permitted to be displaced in the X direction relative to the cover support part 51, and the headset cover can be removed.

[0059] In this embodiment, the rotation restriction portion 501 is configured as part of the carriage 5, but it may be a separate member from the carriage 5. However, by configuring the rotation restriction portion 501 as part of the carriage 5 as in this embodiment, the number of parts can be reduced. Also, by using the head support portion 50 as the rotation restriction portion 501, a part dedicated to the rotation restriction portion 501 is not required, and the number of parts can be further reduced.

[0060] 15 is an explanatory diagram of the displacement regulation structure 200. The displacement regulation structure 200 includes a regulation portion 53 provided on the cover support portion 51 of the carriage 5, and a regulation portion 85 provided on the headset cover 8. Two pairs of the regulation portion 53 and the regulation portion 85 are provided spaced apart in the X direction, one pair regulating displacement in one direction in the X direction, and the other pair regulating displacement in the other direction in the X direction.

[0061] The restricting portion 53 and the restricting portion 85 are abutting pieces formed to face each other in the X direction. The abutting between them restricts the headset cover 8 from being displaced in the X direction relative to the cover supporting portion 51. The restricting portion 53 and the restricting portion 85 are also protruding pieces that protrude in the X direction beyond their surroundings.

[0062] Of the rotation range of the headset cover 8, in a rotation range during use that includes the open and closed positions of the headset cover 8, the restricting portion 53 and the restricting portion 85 face each other in the X direction. In other words, in each rotation position between the open and closed positions, relative displacement of the headset cover 8 in the X direction with respect to the cover support portion 51 is restricted. Therefore, the shaft portion 80 will not fall off the shaft support portion 51a. The detachment position is a rotation position outside the rotation range during use.

[0063] Next, a state in which the restriction by the displacement restriction structure 200 is released will be described. When the head support portion 50 is removed as described with reference to Figs. 14(A) and 14(B), the headset cover 8 can be rotated to the detachment position. When the headset cover 8 is rotated to the detachment position, the restriction of displacement of the headset cover 8 is released as shown in Fig. 16(A) in the displacement restriction structure 200, with the restriction portion 53 and the restriction portion 85 shifting in the Y direction and no longer facing each other in the X direction. Thus, the headset cover 8 can be displaced in the X direction relative to the cover support portion 51 as shown in Fig. 16(B). As a result, the shaft portion 80 can be inserted into and removed from the shaft support portion 51a, and the headset cover 8 can be removed from and attached to the cover support portion 51.

[0064] 17(A) to 17(C) are schematic diagrams showing a series of operations for removing the headset cover 8 from the cover support part 51. FIG. 17(A) shows a state where the restriction by the displacement restriction structure 200 is in effect. The left and right shaft parts 80 are inserted and supported by the corresponding pivot parts 51a. From this state, the head support part 51 is removed, the rotation restriction by the rotation restriction part 501 is released, and the headset cover 8 is rotated to the detachment position. The restriction by the displacement restriction structure 200 is released, and the headset cover 8 can be displaced in the X direction relative to the cover support part 51 as shown in FIG. 17(B). Of the two pairs of shaft parts 80 and pivot parts 51a, the shaft part 80 can be removed from the pivot part 51a in one pair. As shown in FIG. 17(C), the headset cover 8 can be tilted diagonally and the shaft part 80 can be removed from the pivot part 51a in the other pair as well. There is almost no need to bend the periphery of the pivot part 51a. When assembling the headset cover 8 to the cover support portion 51, the procedure is reversed.

[0065] As described above, according to this embodiment, in actual use, the relative displacement between the shaft portion 80 and the shaft support portion 51a in the insertion / removal direction is restricted by the displacement restriction structure 200. The displacement of the headset cover 8 in the axial direction (X direction) of the shaft portion 80 is restricted, resulting in a highly robust configuration against the shaft portion 80 falling off due to shock during transportation. When assembling and disassembling, the headset cover 8 can be easily attached and detached from the cover support portion 51 by rotating the headset cover 8 to the detachment position. Therefore, almost no deformation is required around the shaft support portion 51a. The shaft portion 80 and the shaft support portion 51a can be constructed from highly rigid parts. This also contributes to improved robustness against the shaft portion 80 falling off due to shock during transportation.

[0066] Second Embodiment The pivot structure of the headset cover 8 is not limited to the structure of the first embodiment. For example, as in the example of FIG. 18(A), the shaft 51b may be provided on the cover support portion 51 side, and the pivot support portion 80b may be provided on the headset cover 8 side. Also, as in the example of FIG. 18(B), the headset cover 8 may be provided with the shaft 80 on one side in the X direction and the pivot support portion 80b on the other side, and the cover support portion 51 may be provided with the pivot support portion 51 on one side in the X direction and the shaft 51b on the other side. Also, as in the example of FIG. 18(C), a structure in which the shaft and the pivot support portion are a set may be used. In the example of FIG. 18(C), the shaft 80 is provided on the headset cover 8 on one side in the X direction, and the pivot support portion 51a is provided on the cover support portion 51. Then, on the other side in the X direction, the abutment portion 51c of the cover support portion 51 is abutted against the side wall of the headset cover 8, and the pivot structure is not used.

[0067] <Disclosure of the embodiment> The above embodiment discloses the following inventions.

[0068] Item 1. a support member for supporting a recording head that performs recording by ejecting liquid onto a recording medium; a rotating member that is rotatably supported by the support member and that is rotatable between an open position where the recording head can be attached to and detached from the support member and a closed position where the recording head cannot be attached to and detached from the support member; A recording device comprising: a shaft portion provided on one of the rotating member and the support member, the shaft portion being a rotation center of the rotating member; a shaft support portion provided on the other of the rotating member and the support member, into which the shaft portion is axially inserted and which supports the shaft portion; a displacement restriction structure that restricts displacement of the rotating member in the axial direction relative to the support member within a predetermined rotation range of the rotating member and allows displacement of the rotating member in the axial direction at a rotation position outside the predetermined rotation range. A recording apparatus comprising:

[0069] Item 2. Item 1. The recording device according to item 1, When the rotating member is located at the rotating position, the shaft portion can be inserted into and removed from the shaft support portion. A recording apparatus comprising:

[0070] Item 3. Item 1. The recording device according to item 1, 13. A recording apparatus comprising: a rotation restricting means for restricting the rotation of the rotating member to the rotation position and for releasing the restriction on the rotation.

[0071] Item 4. Item 1. The recording device according to item 1, The support member is A first portion that rotatably supports the rotating member; a second part detachable from the first part; The second portion restricts the rotation member from rotating to the rotation position. A recording apparatus comprising:

[0072] Item 5. Item 5. The recording device according to item 4, the second portion is a portion that supports the recording head; A recording apparatus comprising:

[0073] Item 6. 6. The recording device according to any one of claims 1 to 5, The open position and the closed position are positions included in the predetermined rotation range. A recording apparatus comprising:

[0074] Item 7. 7. The recording device according to any one of claims 1 to 6, The displacement restriction structure includes: A first restricting portion provided on the support member; A second restricting portion provided on the rotating member, The first restricting portion and the second restricting portion are In the predetermined rotation range, the rotation members are opposed to each other in the axial direction to restrict the displacement of the rotation members in the axial direction, Outside the predetermined rotation range, the two plates do not face each other in the axial direction. A recording apparatus comprising:

[0075] Item 8. Item 7. The recording device according to item 7, the first restriction portion is a portion of the support member that protrudes in the axial direction, The second restricting portion is a portion of the rotating member protruding in the axial direction. A recording apparatus comprising:

[0076] Item 9. A recording device according to any one of items 1 to 8, The shaft portion and the shaft support portion are provided in two pairs spaced apart from each other in the axial direction. A recording apparatus comprising:

[0077] Item 10. The recording device according to any one of items 1 to 9, The shaft portion is provided on the rotating member, The pivot portion is a hole formed in a wall portion of the support member. A recording apparatus comprising:

[0078] Item 11. A recording device according to any one of items 1 to 10, a connection member having a connection portion connected to a liquid introduction portion of the recording head and connecting the liquid introduction portion to a liquid supply passage via the connection portion; The rotating member holds the connecting member, the closed position is a connection position in which the liquid introduction portion and the connection portion are connected to each other, The open position is a disconnected position in which the liquid introduction portion and the connection portion are not connected. A recording apparatus comprising:

[0079] Item 12. A recording device according to any one of claims 1 to 11, the support member is a carriage that moves in the width direction of the recording medium; A recording apparatus comprising:

[0080] Item 13. The recording device according to any one of items 1 to 12, the rotating member has a positioning portion that positions the recording head with respect to the support member when in the closed position; A recording apparatus comprising:

[0081] Item 14. A recording device according to any one of claims 1 to 13, The support member has a locking portion that maintains the rotating member in the closed position. A recording apparatus comprising:

[0082] Item 15. A recording head that performs recording by ejecting liquid onto a recording medium; a support member for supporting the recording head; a rotating member that is rotatably supported by the support member and that is rotatable between an open position where the recording head can be attached to and detached from the support member and a closed position where the recording head cannot be attached to and detached from the support member; A recording device comprising: a shaft portion provided on one of the rotating member and the support member, the shaft portion being a rotation center of the rotating member; a shaft support portion provided on the other of the rotating member and the support member, into which the shaft portion is axially inserted and which supports the shaft portion; a displacement restriction structure that restricts displacement of the rotating member in the axial direction relative to the support member within a predetermined rotation range of the rotating member and allows displacement of the rotating member in the axial direction at a rotation position outside the predetermined rotation range. A recording apparatus comprising:

[0083] The invention is not limited to the above-described embodiments, and various modifications and variations are possible without departing from the spirit and scope of the invention. Therefore, the following items are attached to publicize the scope of the invention. [Explanation of symbols]

[0084] 1 Recording device, 8 Headset cover, 10 Recording head, 200 Displacement control structure

Claims

1. a support member for supporting a recording head that performs recording by ejecting liquid onto a recording medium; a rotating member that is rotatably supported by the support member and that is rotatable between an open position where the recording head can be attached to and detached from the support member and a closed position where the recording head cannot be attached to and detached from the support member; A recording device comprising: a shaft portion provided on one of the rotating member and the support member, the shaft portion being a rotation center of the rotating member; a shaft support portion provided on the other of the rotating member and the support member, into which the shaft portion is axially inserted and which supports the shaft portion; a displacement restriction structure that restricts displacement of the rotating member in the axial direction relative to the support member within a predetermined rotation range of the rotating member and allows displacement of the rotating member in the axial direction at a rotation position outside the predetermined rotation range. A recording apparatus comprising:

2. 2. The recording device according to claim 1, When the rotating member is located at the rotating position, the shaft portion can be inserted into and removed from the shaft support portion. A recording apparatus comprising:

3. 2. The recording device according to claim 1, a rotation restricting means for restricting the rotation of the rotating member to the rotation position and releasing the restriction of the rotation; A recording apparatus comprising:

4. 2. The recording device according to claim 1, The support member is A first portion that rotatably supports the rotating member; a second part detachable from the first part; The second portion restricts the rotation member from rotating to the rotation position. A recording apparatus comprising:

5. 5. The recording device according to claim 4, the second portion is a portion that supports the recording head; A recording apparatus comprising:

6. 2. The recording device according to claim 1, The open position and the closed position are positions included in the predetermined rotation range. A recording apparatus comprising:

7. 2. The recording device according to claim 1, The displacement restriction structure includes: A first restricting portion provided on the support member; A second restricting portion provided on the rotating member, The first restricting portion and the second restricting portion are In the predetermined rotation range, the rotation members are opposed to each other in the axial direction to restrict the displacement of the rotation members in the axial direction, Outside the predetermined rotation range, the two plates do not face each other in the axial direction. A recording apparatus comprising:

8. 8. The recording device according to claim 7, the first restriction portion is a portion of the support member that protrudes in the axial direction, The second restricting portion is a portion of the rotating member protruding in the axial direction. A recording apparatus comprising:

9. 2. The recording device according to claim 1, The shaft portion and the shaft support portion are provided in two pairs spaced apart from each other in the axial direction. A recording apparatus comprising:

10. 2. The recording device according to claim 1, The shaft portion is provided on the rotating member, The pivot portion is a hole formed in a wall portion of the support member. A recording apparatus comprising:

11. 2. The recording device according to claim 1, a connection member having a connection portion connected to a liquid introduction portion of the recording head and connecting the liquid introduction portion to a liquid supply passage via the connection portion; The rotating member holds the connecting member, the closed position is a connection position in which the liquid introduction portion and the connection portion are connected to each other, The open position is a disconnected position in which the liquid introduction portion and the connection portion are not connected. A recording apparatus comprising:

12. 2. The recording device according to claim 1, the support member is a carriage that moves in the width direction of the recording medium; A recording apparatus comprising:

13. 2. The recording device according to claim 1, the rotating member has a positioning portion that positions the recording head with respect to the support member when in the closed position; A recording apparatus comprising:

14. 2. The recording device according to claim 1, The support member has a locking portion that maintains the rotating member in the closed position. A recording apparatus comprising:

15. A recording head that performs recording by ejecting liquid onto a recording medium; a support member for supporting the recording head; a rotating member that is rotatably supported by the support member and that is rotatable between an open position where the recording head can be attached to and detached from the support member and a closed position where the recording head cannot be attached to and detached from the support member; A recording device comprising: a shaft portion provided on one of the rotating member and the support member, the shaft portion being a rotation center of the rotating member; a shaft support portion provided on the other of the rotating member and the support member, into which the shaft portion is axially inserted and which supports the shaft portion; a displacement restriction structure that restricts displacement of the rotating member in the axial direction relative to the support member within a predetermined rotation range of the rotating member and allows displacement of the rotating member in the axial direction at a rotation position outside the predetermined rotation range. A recording apparatus comprising: