LIQUID EJECTION HEAD
According to one embodiment, a liquid ejection head includes an actuator with a plurality of pressure chambers spaced from each other in a first direction. Each pressure chamber extends lengthwise in a second direction intersecting the first direction. An anti-reflection film is on an inner surface of the pressure chambers. A diaphragm portion is at an end of each pressure chamber. The diaphragm portion provides a flow cross-section that is less than the pressure chamber and is between the pressure chamber and a common chamber to which the pressure chambers are fluidly connected.
1 . A liquid ejection head, comprising:
an actuator with a plurality of pressure chambers spaced from each other in a first direction, each pressure chamber extending lengthwise in a second direction intersecting the first direction;
an anti-reflection film on an inner surface of the pressure chambers; and
a diaphragm portion at an end of each pressure chamber, the diaphragm portion providing a flow cross-section that is less than the pressure chamber and being between the pressure chamber and a common chamber to which the plurality of pressure chambers are fluidly connected.
2 . The liquid ejection head according to claim 1 , wherein
an electrode is on the inner surface of each pressure chamber, the anti-reflection film is on the electrode, and
the diaphragm portion covers a portion of the anti-reflection film.
3 . The liquid ejection head according to claim 2 , wherein the diaphragm portion comprises a cured photosensitive resin.
4 . The liquid ejection head according to claim 1 , further comprising:
a nozzle plate covering the plurality of pressure chambers.
5 . The liquid ejection head according to claim 1 , wherein
the actuator portion has a plurality of air chambers spaced from each other in the first direction, each air chamber extending lengthwise in the second direction and between an adjacent pair of pressure chambers in the second direction, and
the diaphragm portions extend between the adjacent pair of pressure chambers and block an end of the air chamber.
6 . The liquid ejection head according to claim 1 , wherein the liquid ejection head is a side shooter type liquid ejection head.
7 . The liquid ejection head according to claim 1 , wherein the diaphragm portion extends in the second direction beyond the end of the pressure chamber.
8 . The liquid ejection head according to claim 1 , wherein the anti-reflection film is an organic film.
9 . The liquid ejection head according to claim 1 , wherein the anti-reflection film is an inorganic film.
10 . The liquid ejection head according to claim 1 , wherein the diaphragm portion comprises a cured photosensitive resin.
11 . A inkjet head, comprising:
a piezoelectric body having a plurality of grooves formed therein, the grooves being spaced from each other in a first direction, extending lengthwise in a second direction, and extending into the piezoelectric body in a third direction;
a metallic electrode film on an inner surface of at least some of the plurality of grooves;
an anti-reflection film covering at least a portion of the metallic electrode film on the inner surface of at least some of the plurality of grooves; and
a cured photosensitive resin covering at least a portion of the anti-reflection film, wherein
the cured photosensitive resin partially blocks ends of at least some of the plurality of grooves.
12 . The inkjet head according to claim 11 , wherein the cured photosensitive resin completely blocks ends of every other one of the grooves in the plurality grooves and only partially blocks ends of each groove between the grooves in the plurality of grooves with completely blocked ends.
13 . The inkjet head according to claim 11 , wherein the anti-reflection film has a higher absorbance of light which cures the cured photosensitive resin than the metallic electrode film.
14 . The inkjet head according to claim 11 , wherein the anti-reflection film is an organic film.
15 . The inkjet head according to claim 11 , wherein the anti-reflection film is an inorganic film.
16 . An image forming apparatus, comprising:
a sheet conveyor; and
a liquid ejection head positioned to eject liquid towards a medium on the sheet conveyor the liquid ejection head including:
an actuator with a plurality of pressure chambers spaced from each other in a first direction, each pressure chamber extending lengthwise in a second direction intersecting the first direction;
an anti-reflection film on an inner surface of the pressure chambers; and
a diaphragm portion at an end of each pressure chamber, the diaphragm portion providing a flow cross-section that is less than the pressure chamber and being between the pressure chamber and a common chamber to which the plurality of pressure chambers are fluidly connected.
17 . The image forming apparatus according to claim 16 , wherein
an electrode is on the inner surface of each pressure chamber, the anti-reflection film is on the electrode, and
the diaphragm portion covers a portion of the anti-reflection film.
18 . The image forming apparatus according to claim 17 , wherein the diaphragm portion comprises a cured photosensitive resin.
19 . The image forming apparatus according to claim 16 , wherein the liquid ejection head is a side shooter type liquid ejection head.
20 . The image forming apparatus according to claim 16 , wherein the diaphragm portion extends in the second direction beyond the end of the pressure chamber.