The present invention relates to a liquid ejecting head configured to eject liquid and a liquid ejecting apparatus.
As described in Japanese Patent Laid-Open No. 2016-5893, the main body part of a liquid ejecting head on which a sub-tank is mounted tends to have a box shape in which the top and the front are open and the back, the bottom, and both lateral sides are wall portions. The configuration with an open top makes it easy to place the sub-tank into the main body part, and the configuration with an open front makes it easy to arrange the connection portion between the sub-tank and supply tubes in a horizontal direction.
Japanese Patent Laid-Open No. 2016-5893 describes fixing of the sub-tank placed in the main body of the liquid eject head by using screws.
However, in the case where the material of the sub-tank has a higher stiffness than the material of the main body part in a configuration like that of Japanese Patent Laid-Open No. 2016-5893, there is a possibility that an effect of reaction force of a sealing member arranged between the sub-tank and the main body part concentrates in the main body part and the bottom of the main body part deforms. Moreover, the bottom of the main body part does not have uniform stiffness but includes portions with high stiffness and portions with low stiffness, and deformation tends to occur in portions with low stiffness. Deformation of the bottom of the main body part hinders ink from being ejected to a desired position, decreasing the ejection accuracy.
A conceivable method to avoid the above situation is to increase the number of screws used to fix the sub-tank and ensure that the main body part conforms to the sub-tank. In Japanese Patent Laid-Open No. 2016-5893, it can be found that the sub-tank is fixed by using many screws. However, this method requires many screws and increases not only the cost but also the labor in terms of man-hours, leading to a decrease in productivity.
The present invention thus provides a liquid ejecting head and a liquid ejecting apparatus that can suppress decrease in ejection accuracy while suppressing decrease in productivity.
To this end, a liquid ejecting head of the present invention includes: a tank capable of storing liquid; a main body to which the tank is attached; and an elastic member provided between the tank and the main body and forming a seal between the tank and the main body, in which the tank is attached to the bottom of the main body by using screws, the bottom includes a first region adjacent to a region provided with a wall standing from an end portion of the bottom and a second region adjacent to a region not provided with the wall, and the tank is attached in the second region with a greater number of the screws than that in the first region.
The present invention can provide a liquid ejecting head and a liquid ejecting apparatus that can suppress decrease in ejection accuracy while suppressing increase in cost and decrease in productivity.
Further features of the present invention will become apparent from the following description of exemplary embodiments with reference to the attached drawings.
A first embodiment of the present invention is described below with reference to the drawings.
The supply source 6 includes ink storage chambers 7 provided independently for the respective ink colors. In the embodiment, the supply source 6 includes the ink storage chambers 7 for four colors of black (Bk), cyan (C), magenta (M), and yellow (Y). Each ink storage chamber 7 includes a connection port connected to the outside and is configured such that ink can be directly added to the ink storage chamber 7 from the outside. The supply source 6 may be replaceable ink tanks.
The inside of the bottom portion refers to the face on the side of the bottom of the main body part 10 to which the sub-tank 20 is attached. The filter 12 corresponding to the black (Bk) ink has a hexagonal shape, and the ones corresponding to the inks of the other colors, which are cyan (C), magenta (M), and yellow (Y), have pentagonal shapes. Later-described inner flow passages capable of supplying the inks from the filter portions to the ejection unit 11 are formed in an interior of the bottom portion of the main body part 10. An electric wiring board 14 for electrical connection with a main body of the liquid ejecting apparatus 1 is provided on the outside of the back of the main body part 10.
In this case, as described also in
In contrast, since the back and the lateral sides of the main body part 10 have walls standing from the end portions of the bottom, the stiffness of the bottom is high in sections (first region) on the back side and the lateral sides that are adjacent to the walls. In the case where the bottom of the main body part 10 is assumed to have a rectangular shape, the second region refers to a region extending along an edge where no wall is formed. In this case, the region extending along the edge where no wall is formed refers to a region extending from the edge where no wall is formed and having one-fifth the entire length of the rectangular shape in the direction orthogonal to the edge. The first region refers to the region other than the aforementioned second region in the bottom of the main body part 10.
Accordingly, in the embodiment, in the attachment of the sub-tank 20 to the bottom of the main body part 10, a greater number of screws 25 are used in a front side region of the bottom where the stiffness is low, and a smaller number of screws 25 are used in a back side region of the bottom where the stiffness is high. Specifically, the sub-tank 20 is fixed with four screws 25 on the front side and with two screws 25 on the back side.
Using a greater number of the screws 25 on the front side as described above for fixing the sub-tank 20 makes a portion of the bottom with low stiffness conform to the sub-tank 20 with high stiffness. On the back side, the sub-tank 20 can be fixed to a portion of the bottom with high stiffness with a smaller number of the screws 25.
Determining the arrangement (number) of the screws 25 for the attachment of the sub-tank 20 based on the distribution of the stiffness of the bottom as in the present invention enables attachment of the sub-tank 20 with a small number of screws 25 while suppressing the deformation of the bottom of the main body part 10. This configuration suppresses increase in cost and decrease in productivity.
As illustrated in
In contrast, as in the embodiment illustrated in
The four screws 25 on the front side are arranged at positions 4 mm and 44 mm from the center to the left in
As described above, the sub-tank 20 is attached to the bottom of the main body part 10 by using a greater number of screws 25 on the front side where the stiffness is low than that on the back side where the stiffness is high. Accordingly, it is possible to provide a liquid ejecting head and a liquid ejecting apparatus that can suppress decrease in ejection accuracy while suppressing increase in cost and decrease in productivity.
A second embodiment of the present embodiment is described below with reference to the drawings. Note that, since the basic configuration of the second embodiment is the same as that of the first embodiment, only characteristic features are described below.
Other embodiments of the present invention are described below with reference to the drawings. Note that, since the basic configuration of the other embodiments is the same as that of the first embodiment, only characteristic features are described below.
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. 2020-118709 filed Jul. 9, 2020, which is hereby incorporated by reference herein in its entirety.
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2020-118709 | Jul 2020 | JP | national |
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