Ink jet recording method and ink jet recording apparatus
Provided is an ink jet recording method, while the strength of the recording unit is maintained, an image having a high quality with reduced bleeding can be recorded. The ink jet recording method includes recording an image through use of an ink jet recording apparatus including an aqueous ink, an ink storage portion, and a recording head. The ink storage portion includes three or more storage parts divided independently of each other by a partition portion arranged orthogonal to a longitudinal direction of the ink storage portion, and the storage parts are arrayed in one predetermined direction. The aqueous ink includes a cyan ink, a magenta ink and a yellow ink and the ink corresponding to the ejection orifice array arranged at a middle out of the three rows of ejection orifice arrays has a smallest dynamic surface tension γ10 at a lifetime of 10 milliseconds.
1 . An ink jet recording method using an ink jet recording apparatus comprising:
an aqueous ink comprising a dye;
an ink storage portion that is configured to store the aqueous ink, and is formed from a thermoplastic resin composition comprising a filler material; and
a recording head to be bonded to the ink storage portion, the recording head having formed therein an ejection orifice array configured to eject the aqueous ink supplied from the ink storage portion,
the ink jet recording method comprising recording an image by applying the aqueous ink ejected from the ejection orifice array to a recording medium,
wherein the ink storage portion comprises three or more storage parts divided independently of each other by a partition portion arranged orthogonal to a longitudinal direction of the ink storage portion, the three or more storage parts being arrayed in one predetermined direction,
wherein the aqueous ink comprises a cyan ink, a magenta ink, and a yellow ink,
wherein the ejection orifice array comprises three rows of ejection orifice arrays corresponding to the cyan ink, the magenta ink, and the yellow ink, respectively, the three rows of ejection orifice arrays being formed in the recording head along the longitudinal direction of the ink storage portion, and
wherein among the three rows of ejection orifice arrays corresponding to the cyan ink, the magenta ink, and the yellow ink, respectively, an ink corresponding to the ejection orifice array arranged at a middle out of the three rows of ejection orifice arrays has a smallest dynamic surface tension γ10 at a lifetime of 10 milliseconds.
2 . The ink jet recording method according to claim 1 , wherein the ink jet recording apparatus further comprises an ink flow path comprising a horizontal part through which the aqueous ink flows between the ink storage portion and an ejection orifice of the ejection orifice array, and the horizontal part corresponding to an ink having a smallest static surface tension (mN/m) out of the cyan ink, the magenta ink and the yellow ink has a largest length.
3 . The ink jet recording method according to claim 1 , wherein an ink having the largest content of the dye out of the cyan ink, the magenta ink and the yellow ink is stored in a corresponding one of the three or more storage parts arranged on an inner side.
4 . The ink jet recording method according to claim 1 , wherein a difference (η1−η2) between a largest viscosity η1 (mPa·s) and a smallest viscosity η2 (mPa·s) out of viscosities of the cyan ink, the magenta ink and the yellow ink is 0.2 mPa·s or less.
5 . The ink jet recording method according to claim 1 , wherein a difference (γs1−γs2) between a static surface tension γs1 (mN/m) of an ink having a smallest lightness and a static surface tension γs2 (mN/m) of an ink having a largest lightness out of static surface tensions of the cyan ink, the magenta ink and the yellow ink is 0.0 mN/m or more to 2.0 mN/m or less.
6 . The ink jet recording method according to claim 1 , wherein the three rows of ejection orifice arrays are arranged in order of a lightness of a corresponding ink.
7 . The ink jet recording method according to claim 1 , wherein the ink storage portion has a ratio (A/B) of a length A in the longitudinal direction to a length B in a transverse direction orthogonal to the longitudinal direction, the ratio (A/B) being 2.0 times or more to 4.4 times or less.
8 . The ink jet recording method according to claim 1 , wherein the ink storage portion is replaced with another ink storage portion after the aqueous ink stored therein has been consumed.
9 . The ink jet recording method according to claim 1 , wherein the ink jet recording apparatus further comprises:
a second ink storage portion having a capacity larger than a capacity of the ink storage portion; and
a tube through which the aqueous ink flows between the second ink storage portion and the ink storage portion.
10 . The ink jet recording method according to claim 1 , wherein each of the partition portions is in contact with an outer peripheral wall of the ink storage portion at two distinct portions.
11 . The ink jet recording method according to claim 1 , wherein the aqueous ink corresponding to the ejection orifice array arranged at the middle out of the three rows of ejection orifice arrays is stored in a storage part positioned on an inner side among the three or more storage parts.
12 . The ink jet recording method according to claim 1 , wherein the filler material comprises a glass fiber.
13 . An ink jet recording apparatus comprising:
an aqueous ink comprising a dye;
an ink storage portion that is configured to store the aqueous ink, and is formed from a thermoplastic resin composition comprising a filler material; and
a recording head to be bonded to the ink storage portion, the recording head having formed therein an ejection orifice array configured to eject the aqueous ink supplied from the ink storage portion,
wherein the ink storage portion comprises three or more storage parts divided independently of each other by a partition portion arranged orthogonal to a longitudinal direction of the ink storage portion, the three or more storage parts being arrayed in one predetermined direction,
wherein the aqueous ink comprises a cyan ink, a magenta ink, and a yellow ink,
wherein the ejection orifice array comprises three rows of ejection orifice arrays corresponding to the cyan ink, the magenta ink, and the yellow ink, respectively, the three rows of ejection orifice arrays being formed in the recording head along the longitudinal direction of the ink storage portion, and
wherein among the three rows of ejection orifice arrays corresponding to the cyan ink, the magenta ink, and the yellow ink, respectively, an ink corresponding to the ejection orifice array arranged at a middle out of the three rows of ejection orifice arrays has a smallest dynamic surface tension γ10 at a lifetime of 10 milliseconds.