The present invention relates to a technique of a liquid storage body that supplies a liquid to a liquid ejection apparatus.
Conventionally, a liquid storage body that supplies a liquid to a liquid ejection apparatus has been widely used. Japanese Patent Laid-Open No. 2018-65373 discloses a liquid storage body that supplies a liquid containing precipitation components while keeping a stable density. Specifically, Japanese Patent Laid-Open No. 2018-65373 discloses a liquid storage body that includes two pipes for discharging a liquid in a liquid storage bag to a liquid discharge member and that can introduce the liquid from two portions at different heights in the liquid storage bag.
However, the liquid storage body of Japanese Patent Laid-Open No. 2018-65373 has a risk that the liquid that is not completely introduced to the pipes remains in the shrunk liquid storage bag, and thus the liquid cannot be sufficiently supplied to the liquid ejection apparatus.
In view of this, an object of the present invention is to improve the efficiency of use of a liquid in a liquid storage bag.
A liquid storage body according to one aspect of the present invention includes: a liquid storage bag configured to store a liquid containing precipitation components; a liquid introduction pipe arranged in the liquid storage bag; and a liquid discharge unit fixed at one end portion of the liquid storage bag and configured to discharge the liquid introduced from the liquid introduction pipe to a liquid ejection apparatus, in which the liquid introduction pipe includes a spacer portion including at least two liquid introduction ports at different positions in a height direction at a predetermined orientation, a convergence portion at which the liquids introduced from the at least two liquid introduction ports are converged with each other; and a flow channel configured to introduce the converged liquids to the liquid discharge unit.
Further features of the present invention will become apparent from the following description of exemplary embodiments with reference to the attached drawings.
A liquid storage body is mounted in a liquid ejection apparatus, for example. The liquid storage body includes a liquid storage bag containing an ink and discharges the ink to a liquid ejection apparatus in accordance with an operation of the liquid ejection apparatus. In the liquid storage bag, an internal structure is arranged, and the ink in the liquid storage bag is ejected to the outside by the operation of the internal structure. However, in the liquid storage body with an internal structure including two pipes for discharging a liquid and a coupling member, in a case where the liquid storage bag is shrunk with the consumption of the ink, the close-touch performance between the liquid storage bag, the pipes, and the coupling member is bad, and a void occurs. There is a risk that the liquid remains in the void and thus the ink in the liquid storage bag cannot be sufficiently discharged. In the following embodiments, a method of improving the efficiency of use of the ink in the liquid storage bag by improving the close-touch performance of the internal structure with the liquid storage bag is described with reference to the drawings. As the “liquid” in the descriptions below, an ink containing precipitation components is used as an example for the descriptions; however, as long as it is a liquid containing precipitation components, it is not limited to an ink.
The liquid ejection apparatus 1 includes a liquid ejection unit including a liquid ejection head, a storage unit of a record medium, a conveyance mechanism of the record medium, and the like (that are not illustrated). The liquid storage body 3 stored in a cassette 2 is mounted in the liquid ejection apparatus 1. The liquid storage body 3 stores an ink to be ejected from the liquid ejection head of the liquid ejection apparatus 1. In the present embodiment, four liquid storage bodies 3 storing inks of cyan (C), magenta (M), yellow (Y), and black (K), respectively, are mounted in the liquid ejection apparatus 1. The sizes of the four liquid storage bodies 3 are the same; however, for example, the liquid storage body 3 of the black ink may be greater than the liquid storage bodies 3 of the inks of the other colors. The cassette 2 in which each liquid storage body 3 is stored is attachable and detachable to and from the liquid ejection apparatus 1 and advances and retracts in the X direction.
As illustrated in
In the first introduction pipe portion 31, a first introduction port 33 is provided, and in the second introduction pipe portion 32, a second introduction port 34 is provided. In a case where the internal structure 5 is arranged in the liquid storage bag 10, the first introduction pipe portion 31 and the second introduction pipe portion 32 are positioned in a center portion that is near the center of the liquid storage bag 10 in the X direction.
Additionally, the structure in which there is the flow channel 36 inside the liquid introduction pipe 30 simplifies the structure of the internal structure more than a configuration using a coupling member for coupling a spacer portion and multiple liquid introduction pipes for introducing the liquid. That is, a further compact configuration is obtained with the single liquid introduction pipe 30 having a role as a spacer and also a role to introduce the liquid to the liquid discharge unit 21. With this, in a case where the liquid storage bag 10 is shrunk with the liquid consumption, a contact surface between the inner side of the liquid storage bag 10 and the internal structure 5 can be reduced. With the contact surface being reduced, a void between the liquid storage bag 10 and the internal structure 5 is reduced, and the volume of the liquid that is not used until last can be reduced; thus, the efficiency of use of the liquid is improved.
As described above, according to the present embodiment, it is possible to improve the efficiency of use of the liquid in the liquid storage bag. Specifically, with the liquid introduction pipe having the function as a spacer, it is possible to prevent a situation where the introduction port is closed due to the shrinkage of the liquid storage bag and the liquid is not introduced easily. Additionally, with the liquids of different densities being allowed to pass through the flow channel after being converged at the convergence portion, it is possible to discharge the liquid of further uniformed density to the liquid ejection apparatus.
In Embodiment 1, the liquid introduction pipe 30 has the function of a spacer and the function of the liquid introduction; however, in Embodiment 2, an internal structure in which a liquid introduction pipe and a spacer member are separated from each other is described. A description of a member that has the same role as that in Embodiment 1 is omitted.
As with the first introduction pipe portion 31 and the second introduction pipe portion 32 in
In the spacer member 40, a first introduction port 43 and a second introduction port 44 are provided in upward and downward directions. The liquids introduced from the first introduction port 43 and the second introduction port 44 are converged at a convergence portion 45 inside the spacer member 40 and communicate with a convergence flow channel port 46. The convergence flow channel port 46 is connected so as to communicate with one end portion of a flow channel 51 included in the coupling liquid introduction pipe 50.
Because of the precipitation components, the density of the liquid in the liquid storage bag 10 is low in an upper portion and high in a lower portion. For this reason, the first introduction port 43 provided in the upper portion introduces the liquid of a low density, and the second introduction port 44 provided in the lower portion introduces the liquid of a high density. The introduced liquids of different densities are converged at the convergence portion 45 provided inside the spacer member 40, pass through the flow channel 51 inside the coupling liquid introduction pipe 50 and the inside of the liquid discharge member 20, and are supplied to the liquid ejection apparatus 1. With this, as with the internal structure 5 in
In the present embodiment, the spacer member 40 has a shape of a substantially square pyramid in both the upward and downward directions, and a bottom surface of the square pyramid is parallel to an X-Y plane. In the present embodiment, the substantially square pyramid includes a shape in which vertices 48 and 49 of the square pyramid in the Z direction are R-processed or a shape of a frustum of square pyramid in which an X-Y plane is formed. Otherwise, the shape is not limited to a substantially square pyramid, and a shape of a polygonal pyramid such as a substantially triangle pyramid or a substantially pentagonal pyramid may be applied.
With the spacer member 40 having a shape of a substantially square pyramid, the inside of the liquid storage bag 10 that is shrunk because of the liquid consumption is put in close contact with the internal structure 6 more easily than the shapes of the first introduction pipe portion 31 and the second introduction pipe portion 32 having a role of a spacer in Embodiment 1. Since the spacer member 40 has a shape of a substantially square pyramid, the vertex 48 or 49 of the square pyramid is put in contact with the liquid storage bag 10 first, and from the portion in contact, the liquid storage bag 10 is started to be put in contact with the internal structure 6. With an inclined surface being provided in all the directions of the spacer member 40, shrinkage is easily made along the incline of the spacer member 40 during the shrinkage of the liquid storage bag 10, and thus it is possible to more effectively suppress the closing of the flowing path of the liquid inside the liquid storage body 3. Additionally, with the close-touch performance of the shrunk liquid storage bag 10 and the spacer member 40 being improved, a void between the liquid storage bag 10 and the internal structure 6 is reduced, and the liquid remaining in the liquid storage bag 10 that is not used can be reduced; thus, the efficiency of use of the liquid is improved. In a part of the spacer member, a groove is formed and has a role of a guide unit introducing the liquid to the first introduction port 43 and the second introduction port 44 even if the spacer member 40 is covered with the liquid storage bag 10.
In the present embodiment, the coupling liquid introduction pipe 50 is coupled with the liquid discharge member 20 and the spacer member 40. In a case of being coupled, the coupling of the members and the connection of the flow channels inside the members are performed together.
Additionally, as illustrated in
As described above, according to the present embodiment, with the liquid discharge member, the coupling liquid introduction pipe, and the spacer member being separated from each other, each member can be created so as to improve the close-touch performance between each member and the liquid storage bag. With those members being coupled, the liquid remaining in the liquid storage bag that is not used can be further reduced; thus, the efficiency of use of the liquid is improved.
In Embodiment 3, a configuration in which a spacer member provided with a guide unit is coupled to the coupling liquid introduction pipe provided with the first introduction port and the second introduction port is described. Since the coupling of the liquid discharge member and the coupling liquid introduction pipe is similar to that in Embodiment 2, the description is omitted.
Since the shape in a case of coupling the coupling liquid introduction pipe 300 and the spacer member 400 is a shape similar to the internal structure 6 in Embodiment 2 illustrated in
As described above, according to the present embodiment, in the coupling of the coupling liquid introduction pipe 300 and the spacer member 400, since the flow channel is formed in the coupling liquid introduction pipe 300, only the coupling of the members is required, and the connection of inner flow channels is not required. Therefore, comparing with Embodiment 2, the sealing properties of the flow channels to be connected does not have to be taken into consideration, and it is possible to select various fixing methods.
In Embodiment 1, a case where the two first introduction pipe portion and second introduction pipe portion that introduce the liquid in the liquid storage bag to the liquid discharge member are provided in the upper and lower portions is described; however, it is not limited thereto.
For example, three introduction pipe portions as a total may be provided in upward, middle, and downward directions. Although an example where one liquid introduction port is provided in each of the first introduction pipe portion and the second introduction pipe portion is described, it is not limited thereto as well. A mode in which multiple liquid introduction ports are provided in one introduction pipe portion in order to change the suction efficiency or the suction ratio may be applied.
According to the present invention, it is possible to improve the efficiency of use of a liquid in a liquid storage bag.
While the present invention has been described with reference to exemplary embodiments, it is to be understood that the invention is not limited to the disclosed exemplary embodiments. The scope of the following claims is to be accorded the broadest interpretation so as to encompass all such modifications and equivalent structures and functions.
This application claims the benefit of Japanese Patent Application No. 2021-078547 filed May 6, 2021, which is hereby incorporated by reference wherein in its entirety.
Number | Date | Country | Kind |
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2021-078547 | May 2021 | JP | national |