Recording device
The dual-lid structure in the ink recording apparatus addresses bonding and component defects by allowing for a leak inspection, ensuring that air enters through the intended passage and preventing ink leakage, thus maintaining the ink storage system's integrity.
Patent Information
- Application Number
- JP2024061129
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2024-04-04
- Publication Date
- 2025-05-26
- Estimated Expiration
- 2035-10-30
AI Technical Summary
Existing ink tanks face issues with bonding defects and component defects, leading to gaps in the bonding surface, which can allow air to enter the ink storage chamber instead of through the air release passage, compromising the function of the air chamber in preventing ink leakage.
The ink recording apparatus features a dual-lid structure with separate first and second lid portions covering the openings of the ink storage chamber and the air storage chamber, respectively, allowing for a leak inspection to ensure proper adhesion and prevent air from entering through gaps.
This configuration effectively suppresses ink leakage by ensuring that air enters through the designated air release passage, maintaining the integrity of the ink storage system and preventing ink from leaking to the outside.
Smart Images

Figure 0007683075000001 
Figure 0007683075000002 
Figure 0007683075000003
Abstract
Description
Technical Field
[0001] The present invention relates to an ink recording apparatus that discharges ink to record an image. Record
Background Art
[0002] Patent Document 1 discloses an ink tank including an ink storage chamber that stores ink, an ink supply port provided in the ink storage chamber, an air release passage that introduces external air into the ink storage chamber as the ink is consumed, and an air chamber provided in the middle of the air release passage.
[0003] According to the ink tank, even if the air in the ink storage chamber thermally expands due to a change in the environmental temperature or the like and the ink in the ink storage chamber flows back through the air release passage, the ink is stored in the air chamber, thereby preventing the ink from leaking to the outside.
Prior Art Documents
Patent Documents
[0004]
Patent Document 1
Summary of the Invention
Problems to be Solved by the Invention
[0005] The ink tank described in Patent Document 1 needs to be provided with a lid that covers and adheres to the opening of the ink storage chamber and the opening of the air chamber in the manufacturing process. At this time, if there are bonding defects such as poor bonding in thermal welding or ultrasonic welding, or component defects such as steps or recesses between the ink storage chamber and the air chamber, the lid may not be bonded properly and a gap may occur in the bonding surface. If such a gap occurs, air may enter the ink storage chamber from the gap portion instead of from the air release passage. As a result, the function of the air chamber to prevent the ink from leaking to the outside may not be fully exerted.
[0006] In view of the above problems, the present invention provides ink Recording apparatus with leakage suppressed for this purpose.
Means for Solving the Problems
[0007] The recording apparatus according to the present invention includes a first storage chamber that stores ink supplied to a recording head that discharges ink, a second storage chamber that communicates with the first storage chamber, has an air inlet through which external air can be introduced, and stores air, a first opening covered by a first lid portion, a second opening covered by a second lid portion provided on the side opposite to the first lid portion, and an injection port for injecting ink into the first storage chamber. The tank has a conveying roller that conveys a recording medium in a conveying direction, the tank is located downstream of the conveying roller in the conveying direction, and the injection port is closed by a removable tank cap.
Effects of the Invention
[0008] According to the present invention, ink Recording apparatus with leakage suppressed can be provided.
Brief Description of the Drawings
[0009]
Figure 1
Figure 2
Figure 3
Figure 4
Figure 5
Figure 6
Figure 7
Figure 8
Figure 9
Figure 10
Figure 11
Figure 12
Mode for Carrying Out the Invention
[0010] (First Embodiment) Hereinafter, a first embodiment of the present invention will be described in detail with reference to the drawings.
[0011] FIG. 1 is a schematic cross-sectional view of an inkjet recording apparatus in which an ink tank (ink cartridge) according to a first embodiment of the present invention is used. The inkjet recording apparatus 1 includes a cassette 2 on which a recording medium (sheet) P is loaded, a feed roller 3 that feeds the recording medium P, a conveyance roller 4 that conveys the recording medium P, a recording head 10 having ejection ports for ejecting ink, and a discharge roller 6 that discharges the recording medium P.
[0012] The recording medium P loaded in the cassette 2 is separated one by one by the feeding roller 3 and fed to the conveying roller 4 while being guided by the paper guide. The recording medium P that has reached the conveying roller 4 is sandwiched between the conveying roller 4 and the pinch roller 5 and conveyed to a position facing the recording head 10 while being supported from below by the platen 8. The recording head 10 is detachably mounted on the carriage. The carriage is supported so as to be movable in a direction intersecting the conveying direction of the recording medium. As the carriage moves, ink is ejected from the recording head 10 onto the conveyed recording medium P, and an image for one band is formed. The recording medium on which an image for one band has been formed is intermittently conveyed by a predetermined conveyance amount in order to form an image for the next one band. By alternately repeating this intermittent conveyance operation and the image forming operation, an image is formed on the entire recording medium. The recording medium P on which an image has been formed is sandwiched and conveyed by the discharge roller 6 and the accelerator 7 and discharged to a discharge tray (not shown).
[0013] Next, the configuration of the ink tank according to the first embodiment of the present invention will be described.
[0014] FIG. 2 is a perspective view of the ink tank according to the first embodiment of the present invention. FIG. 2(b) is a perspective view when FIG. 2(a) is viewed from the opposite side. FIG. 3 is a side view of the ink tank according to the present embodiment. FIG. 3(a) is a side view when the ink tank 21 in FIG. 2 is viewed from the A1 direction. FIG. 3(b) is a side view when the ink tank 21 in FIG. 2 is viewed from the A2 direction.
[0015] The ink tank 21 is detachably mounted on a mounting portion provided on the carriage. The ink tanks 21 are mounted respectively for each corresponding ink color (for example, black Bk, cyan C, magenta M, yellow Y). The ink tank 21 stores ink to be supplied to the recording head 10. The ink tank 21 is composed of a tank container 22, a first lid portion 23, and a second lid portion 24. The ink tank 21 has an ink storage chamber (first storage chamber) 201 which is a space for storing ink, and an air storage chamber (second storage chamber) 202 which is a space for storing air. The air storage chamber 202 is provided above the ink storage chamber 201. The ink storage chamber 201 and the air storage chamber 202 are partitioned by a partition wall 26. The opening of the ink storage chamber 201 is covered by the first lid portion 23. The opening of the air storage chamber 202 is covered by the second lid portion 24. An ink supply port 25 for connecting and communicating the ink storage chamber 201 with the ink receiving portion of the recording head 10 is provided on the bottom surface of the ink storage chamber 201. Further, an air inlet 27 which communicates with the atmosphere and can introduce external air into the ink storage chamber 201 as the ink in the ink storage chamber 201 is consumed is provided on the upper surface of the air storage chamber 202. A minute communication portion (communication path) 28 is provided on the partition wall 26 between the ink storage chamber 201 and the air storage chamber 202. The ink storage chamber 201 and the air storage chamber 202 communicate with each other through this communication path 28. The ink storage chamber 201 communicates with the atmosphere at the air inlet 27 through the communication path 28 and the air storage chamber 202. The air storage chamber 202 normally stores air, but can store ink inside so that ink does not leak to the outside when the ink in the ink storage chamber 201 backflows through the communication path 28 due to, for example, the air in the ink storage chamber 201 thermally expanding.
[0016] The tank container 22 forming the ink storage chamber 201, the first lid portion 23, and the tank container 22 forming the air storage chamber 202 and the second lid portion 24 are adhered by means such as ultrasonic welding or thermal welding. After adhesion, a leak inspection (leak check) described later is performed to inspect whether each is adhered normally. The leak inspection inspects whether there are any gaps in the adhesion surface of the ink tank 21. If there are gaps, there is a risk of problems such as ink in the ink tank 21 leaking to the outside and the ink flowing back due to thermal expansion or the like not being able to be accommodated in the air storage chamber 202.
[0017] Next, the method of leak inspection in the present embodiment will be described. FIG. 4 is a schematic diagram during the leak inspection of the ink tank according to the present embodiment. In the present embodiment, during the leak inspection, a pressure pump 151 is attached to the air inlet 27 of the ink tank 21. Also, a pressure measuring device 152 is attached to the ink supply port 25 of the ink tank 21. Then, while sending air into the ink tank 21 by the pressure pump 151, the pressure measuring device 152 measures the pressure inside the ink tank 21. At this time, if the pressure inside the ink tank 21 increases, it can be seen that the adhesion surface is normally adhered without gaps. On the other hand, if the pressure inside the ink tank 21 does not increase even when air is sent into the ink tank 21, it can be seen that air is leaking (leaking) from the adhesion surface of the ink tank 21 to the outside.
[0018] As shown in FIG. 5, the conventional ink tank 31 has a configuration in which a single lid portion 33 covering the ink storage chamber 301 and the air storage chamber 302 is adhered to the tank container 32. In the ink tank 31 having such a configuration, when the above leak inspection is performed, it is possible to inspect whether the outer peripheral portion of the tank container 32 and the lid portion 33 is normally adhered. However, it is not possible to inspect whether the partition wall 36 partitioning the ink storage chamber 301 and the air storage chamber 302 and the lid portion 33 are normally adhered.
[0019] In this embodiment, the opening of the ink storage chamber 201 and the opening of the air storage chamber 202 are formed on different surfaces. A first lid portion 23 that covers the opening of the ink storage chamber 201 and a second lid portion 24 that covers the opening of the air storage chamber 202 are separately adhered to the tank container 22. Therefore, in the above leak inspection, not only the outer peripheral portion of the tank container 22 but also whether the portions between the first lid portion 23 and the partition wall 26 and between the second lid portion 24 and the partition wall 26 are normally adhered can be inspected. As a result, it becomes possible to discriminate an ink tank with guaranteed functions.
[0020] As described above, according to the ink tank according to this embodiment, it is possible to inspect whether the lid portion of the ink tank is normally adhered by the above-described leak inspection.
[0021] Note that in the present invention, the space provided in the ink tank is not limited to the ink storage chamber and the air storage chamber. It may be configured to accommodate a negative pressure generating member that holds ink in the first storage chamber and accommodate the ink supplied to the first storage chamber in the second storage chamber. Even in this case, since the first storage chamber and the second storage chamber can be formed by the two lid portions in the same manner as in the first embodiment, it is possible to discriminate an ink tank with guaranteed functions by the same leak inspection.
[0022] (Second Embodiment) Next, a second embodiment of the present invention will be described. Note that the description of the same configuration as that in the first embodiment will be omitted, and only the different parts will be described.
[0023] FIG. 6 is a perspective view of an ink tank 41 according to the second embodiment of the present invention. The ink tank 41 according to this embodiment is different from the first embodiment in that the directions of the openings of the ink storage chamber 401 and the air storage chamber 402 are different. In this embodiment, the ink storage chamber 401 has an opening on the side surface of the ink tank 41. On the other hand, the air storage chamber 402 has an opening on the bottom surface of the ink tank 41. Therefore, the first lid portion 43 that covers the opening of the ink storage chamber 401 is adhered from the side surface, and the second lid portion 44 that covers the opening of the air storage chamber 402 is adhered from the bottom surface.
[0024] Even when the ink tank 41 is configured in this way, it is possible to inspect whether the portions between the first lid portion 43 and the partition wall 46 and between the second lid portion 44 and the partition wall 46 are properly adhered by the leak inspection shown in FIG. 4.
[0025] As described above, also in this embodiment, the effects of the present invention can be obtained in the same manner as in the first embodiment.
[0026] (Third Embodiment) Next, a third embodiment of the present invention will be described. Note that the description of the same configuration as that of the first embodiment will be omitted, and only the different portions will be described.
[0027] FIG. 7 is a perspective view of an ink tank 51 according to the third embodiment of the present invention. In the ink tank 51 according to this embodiment, the openings of the ink storage chamber 501 and the air storage chamber 502 are provided on the same side surface of the ink tank 51 in the same direction. And a step is provided between the partition walls 56 that partition the ink storage chamber 501 and the air storage chamber 502. With such a configuration, instead of adhering the openings of the ink storage chamber 501 and the air storage chamber 502 with one lid portion, the first lid portion 53 and the second lid portion 54 are adhered for each of the respective openings. The first lid portion 53 covers the opening of the ink storage chamber 501 without covering the opening of the air storage chamber 502. The second lid portion 54 covers the opening of the air storage chamber 502 without covering the opening of the ink storage chamber 501. In this way, a space is formed for the ink storage chamber 501 by the tank container 52 and the first lid portion 53. Also, a space is formed for the air storage chamber 502 by the tank container 52 and the second lid portion 54. The ink storage chamber 501 and the air storage chamber 502 communicate with each other through a communication passage 58.
[0028] Even when the ink tank 51 is configured in this way, it is possible to inspect whether the portions between the first lid portion 53 and the partition wall 56 and between the second lid portion 54 and the partition wall 56 are properly adhered by the leak inspection shown in FIG. 4.
[0029] As described above, in this embodiment as well, the effects of the present invention can be obtained in the same manner as in the above-described embodiment.
[0030] (Fourth Embodiment) Next, a fourth embodiment of the present invention will be described. Note that the description of the same configuration as in the first embodiment will be omitted, and only the different parts will be described.
[0031] FIG. 8 is a perspective view of an ink tank 61 according to the fourth embodiment of the present invention. In the ink tank 61 according to this embodiment, the openings of the ink storage chamber 601 and the air storage chamber 602 are provided on the same-side surface of the ink tank 51 in the same direction. Further, no step is provided between the partition wall 56 that partitions the ink storage chamber 501 and the air storage chamber 502. However, the first lid portion 63 and the second lid portion 64 are respectively adhesively bonded to the partition wall 66 separately. The first lid portion 63 covers the opening of the ink storage chamber 601 without covering the opening of the air storage chamber 602. The second lid portion 64 covers the opening of the air storage chamber 602 without covering the opening of the ink storage chamber 601. In this way, a space is formed for the ink storage chamber 601 by the tank container 62 and the first lid portion 63. Also, a space is formed for the air storage chamber 602 by the tank container 62 and the second lid portion 64. The ink storage chamber 601 and the air storage chamber 602 communicate with each other through a communication passage 68.
[0032] Even when the ink tank 61 is configured in this way, it is possible to inspect whether the first lid portion 63 and the partition wall 66, and the second lid portion 64 and the partition wall 66 are properly adhered by the leak inspection shown in FIG. 4.
[0033] As described above, in this embodiment as well, the effects of the present invention can be obtained in the same manner as in the above-described embodiment.
[0034] (Fifth Embodiment) Next, a fifth embodiment of the present invention will be described. Note that the description of the same configuration as in the first embodiment will be omitted, and only the different parts will be described.
[0035] FIG. 9 is a schematic cross-sectional view of an inkjet recording apparatus using an ink tank according to the fifth embodiment of the present invention. In the inkjet recording apparatus 101 in the present embodiment, an ink tank 112 is provided on the front surface of the apparatus main body. The ink tanks 112 are provided for each corresponding ink color (for example, black Bk, cyan C, magenta M, yellow Y). The ink tank 112 and the recording head 110 mounted on the carriage are connected by a supply tube 111. The ink stored inside the ink tank 112 is supplied to the recording head 110 via the supply tube 111.
[0036] FIG. 10 is a perspective view of the ink tank according to the fifth embodiment of the present invention. FIG. 10(b) is a perspective view when FIG. 10(a) is viewed from the opposite side. Further, FIG. 11 is a side view of the ink tank according to the present embodiment. FIG. 11(a) is a side view when the ink tank 112 is viewed from the C1 direction in FIG. 10. FIG. 11(b) is a side view when the ink tank 112 is viewed from the C2 direction in FIG. 10.
[0037] On the upper surface of the ink tank 112, as shown in FIG. 10(a), an ink injection port 71 for the user to inject ink is provided. A tank cap 113 for closing the ink injection port 71 is attached to the ink injection port 71. When the ink amount in the ink tank 112 decreases or the like, the user can remove the tank cap 113 to expose the ink injection port 71 and inject ink from the ink injection port 71 to replenish the ink in the ink tank 112.
[0038] The ink tank 112 is composed of a tank container 72, a first lid portion 73, and a second lid portion 74. The ink tank 112 has an ink storage chamber (first storage chamber) 701 which is a space for storing ink, and an air storage chamber (second storage chamber) 702 which is a space for storing air. The air storage chamber 702 is provided above the ink storage chamber 701. The ink storage chamber 701 and the air storage chamber 702 are partitioned by a partition wall 76. The opening of the ink storage chamber 701 is covered by the first lid portion 73. The opening of the air storage chamber 702 is covered by the second lid portion 74. Near the bottom surface of the ink storage chamber 701, an ink supply port 75 for connecting a supply tube that communicates the ink storage chamber 701 with the recording head is provided. Further, on the upper surface of the air storage chamber 702, an air inlet 77 that communicates with the atmosphere and can introduce external air into the ink storage chamber 701 as the ink in the ink storage chamber 701 is consumed is provided. A minute communication portion (communication path) 78 is provided in the partition wall 76 between the ink storage chamber 701 and the air storage chamber 702. The ink storage chamber 701 and the air storage chamber 702 communicate with each other through this communication path 78. The ink storage chamber 701 communicates with the atmosphere at the air inlet 77 through the communication path 78 and the air storage chamber 702. The air storage chamber 702 normally stores air, but can store ink so that ink does not leak to the outside when the ink in the ink storage chamber 701 backflows through the communication path 28 due to, for example, the air in the ink storage chamber 701 thermally expanding.
[0039] Next, the method of leak inspection in this embodiment will be described. FIG. 12 is a schematic diagram during the leak inspection of the ink tank according to this embodiment. In this embodiment, during the leak inspection, a pressure pump 161 is attached to the air inlet 77 of the ink tank 112. Further, a pressure measuring device 152 is attached to the ink supply port 75 of the ink tank 112. Also, the ink injection port 71 of the ink tank 112 is closed by a valve 163. Then, while sending air into the ink tank 112 by the pressure pump 161, the pressure inside the ink tank 112 is measured by the pressure measuring device 162. At this time, if the pressure inside the ink tank 112 is increasing, it can be seen that the adhesive surface is normally adhered without gaps. On the other hand, if the pressure inside does not increase even when air is sent into the ink tank 112, it can be seen that air is leaking (leaking) from the adhesive surface of the ink tank 121 to the outside.
[0040] In this embodiment, the opening of the ink storage chamber 701 and the opening of the air storage chamber 702 are formed on different surfaces, and a first lid portion 73 that covers the opening of the ink storage chamber 701 and a second lid portion 74 that covers the opening of the air storage chamber 702 are separately adhered to the tank container 72. Therefore, in the above leak inspection, not only the outer peripheral portion of the tank container 72 but also whether the portions between the first lid portion 73 and the partition wall 76 and between the second lid portion 74 and the partition wall 76 are normally adhered can be inspected. As a result, it becomes possible to discriminate an ink tank with guaranteed functions.
[0041] As described above, according to the ink tank according to this embodiment, it is possible to inspect whether the lid portion of the ink tank is normally adhered by the above-described leak inspection.
Explanation of Reference Numerals
[0042] 21 Ink tank 22 Tank container 23 First lid portion 24 Second lid portion 25 Ink supply port 26 Partition wall 27 Air inlet 28 communication paths 201 ink storage chamber 202 air storage chamber
Claims
1. a tank having a first storage chamber for storing ink to be supplied to a recording head that ejects ink, a second storage chamber communicating with the first storage chamber and having an air inlet port capable of introducing external air and for storing air, a first opening covered by a first lid portion, a second opening covered by a second lid portion provided on the opposite side to the first lid portion, and an inlet for injecting ink into the first storage chamber; A conveying roller that conveys the recording medium in a conveying direction, the tank is located downstream of the transport roller in the transport direction; A recording apparatus characterized in that the filling port is closed by a removable tank cap.
2. A recording device as described in claim 1, characterized in that the first opening and the second opening do not overlap when viewed from the first opening.
3. A recording device as described in claim 1, characterized in that the first opening and the second opening open in opposite directions.
4. A recording device as described in any one of claims 1 to 3, characterized in that it is provided with a supply tube for supplying ink from the first storage chamber to the recording head.
Citation Information
Patent Citations
Recording head device, ink tank device, ink jet head cartridge integrally provided with the devices and ink jet recorder
JP1992247942A
Liquid container
JP2007253328A
Ink tank and ink jet recording device
JP2017081123A
Interior pressure self-adjustable ink supply cartridge structure
US20070103520A1