EP2829404B1

Liquid jet head, liquid jet apparatus and method of manufacturing liquid jet head

Abstract

This record has no abstract on file.

EP2829404B1, drawing sheet 1
Sheet 1 of 18

Term

7.8 yearsleft in the term

Expires 24 July 2034.

  1. Priority and filed
  2. Granted
  3. Today
  4. Expires

22 claims: 2 independent, 20 dependent

  1. 1
    A liquid jet head (1) comprising:a piezoelectric substrate (2) having a plurality of groove rows (5) in each of which elongated ejection grooves (3) and elongated non-ejection grooves (4) are alternately arranged in a reference direction (K), wherein the ejection grooves (3) penetrate the substrate (2) from an upper surface (US) through a lower surface (LS) of the substrate (2) and the non-ejection grooves (4) are opened in the lower surface (LS) of the substrate (2), wherein a thickness direction (T) of the piezoelectric substrate (2) is defined as a vertical direction in which the upper and lower surfaces (US, LS) of the substrate (2) are separated, wherein a groove direction in which the ejection grooves (3) and the non-ejection grooves (4) are elongated is perpendicular to the reference direction (K), and wherein the groove direction and the reference direction (K) are both perpendicular to the thickness direction (T), wherein, in adjacent ones of the groove rows, ends on a second side of ejection grooves (3a) included in a groove row (5a) located on a first side and ends on the first side of non-ejection grooves (4b) included in a groove row (5b) located on the second side are separated from each other and overlap each other in the thickness direction (T) of the piezoelectric substrate.
  2. 4
    The liquid jet head according to any one of claims 1 to 3, wherein, in adjacent ones of the groove rows, ends on the second side of ejection grooves (3a) included in a groove row (5a) located on the first side include inclined surfaces (6) inclined outward toward the upper surface (US) of the piezoelectric substrate, and ends on the second side of non-ejection grooves (4a) included in the groove row (5a) located on the first side include inclined surfaces (7) inclined outward toward the lower surface (LS) opposite to the upper surface of the piezoelectric substrate.
  3. 5
    The liquid jet head according to any one of claims 1 to 4, wherein, in adjacent ones of the groove rows, ends on the first side of non-ejection grooves (4a) included in a groove row located on the first side (5a) are open on a side surface (SS) of the piezoelectric substrate.
  4. 6
    The liquid jet head according to any one of claims 1 to 5, wherein the closest distance (Δt) between ends on the second side of ejection grooves (3a) included in a groove row located on the first side and ends on the first side of non-ejection grooves (4b) included in a groove row located on the second side is not less than 10 µm.
  5. 7
    The liquid jet head according to any one of claims 1 to 6, further comprising a cover plate (8) having a liquid chamber (9) communicating with the ejection grooves, the cover plate being bonded to the upper surface of the piezoelectric substrate.
  6. 10
    The liquid jet head according to any one of claims 1 to 9, further comprising a nozzle plate (10) having a plurality of nozzle arrays (12) in each of which nozzles (11) communicating with the ejection grooves are arrayed corresponding to the groove rows, the nozzle plate being bonded to the lower surface of the piezoelectric substrate.
  7. 11
    The liquid jet head according to any one of claims 1 to 10, wherein drive electrodes (13) are formed on side surfaces of the ejection grooves and the non-ejection grooves not in a part between a position corresponding to approximately 1/2 of the thickness of the piezoelectric substrate and the upper surface, but in a part between the position corresponding to approximately 1/2 of the thickness of the piezoelectric substrate and the lower surface.
  8. 13
    The liquid jet head according to any one of claims 1 to 10, wherein drive electrodes are formed on side surfaces of the ejection grooves and the non-ejection grooves, not in a part between a position corresponding to approximately 1/2 of the thickness of the piezoelectric substrate and the lower surface, but in a part between the position corresponding to approximately 1/2 of the thickness of the piezoelectric substrate and the upper surface.
  9. 16
    A method of manufacturing a liquid jet head comprising:an ejection groove forming step (S1) for cutting a piezoelectric substrate (2) from an upper surface (US) of the piezoelectric substrate using a dicing blade (20) to form a plurality of elongated ejection grooves (3);and a non-ejection groove forming step (S2) for cutting the piezoelectric substrate from a lower surface (LS) opposite to the upper surface (US) of the piezoelectric substrate using a dicing blade to form a plurality of elongated non-ejection grooves (4) in parallel to a groove direction of the ejection grooves, wherein the ejection grooves (3) penetrate the substrate (2) from the upper surface (US) through the lower surface (LS), wherein a thickness direction (T) of the piezoelectric substrate (2) is defined as a vertical direction in which the upper and lower surfaces (US, LS) of the substrate (2) are separated, wherein the groove direction in which the ejection grooves (3) and the non-ejection grooves (4) are elongated is perpendicular to the reference direction (K), wherein the groove direction and the reference direction (K) are both perpendicular to the thickness direction (T), and wherein a plurality of groove rows in each of which ejection grooves and non-ejection grooves are alternately arranged in a reference direction (K) are formed, and, in adjacent ones of the groove rows, ends on a second side of ejection grooves included in a groove row located on a first side and ends on the first side of non-ejection grooves included in a groove row located on the second side are separated from each other, and overlap each other in the thickness direction (T) of the piezoelectric substrate.
  10. 19
    The method of manufacturing the liquid jet head according to any one of claims 16 to 18, further comprising a piezoelectric substrate grinding step (S5) for grinding the piezoelectric substrate so as to have a predetermined thickness after the ejection groove forming step.
  11. 20
    The method of manufacturing the liquid jet head according to any one of claims 16 to 19, further comprising a photosensitive resin film placing step (S6) for placing a photosensitive resin film on the piezoelectric substrate and a resin film pattern forming step (S7) for forming a pattern of the photosensitive resin film.
  12. 21
    The method of manufacturing the liquid jet head according to any one of claims 16 to 20, further comprising a conductive material depositing step (S9) for depositing a conductive material on side surfaces of the ejection grooves and the non-ejection grooves from the lower surface of the piezoelectric substrate.
  13. 22
    The method of manufacturing the liquid jet head according to any one of claims 16 to 20, further comprising a conductive material depositing step (S9) for depositing a conductive material on side surfaces of the ejection grooves and the non-ejection grooves from the upper surface of the piezoelectric substrate.