Claims
- 1. A micro pump having at least one pump member for conveying a fluid by the action of pressure, characterized in that,
said pump member comprises a pump unit, and; said pump unit is formed from at least one actuator member for generating a pressure fluctuation and a fluid channel member in which a fluid flows; said actuator member is provided with a cell formed by disposing two side walls made of piezoelectric/electrostrictive elements or antiferrodielectric elements on a connecting plate, and covering surface facing said connecting plate between said side walls with a cover plate; and said actuator member selectively forms a fluid channel and generates pressure fluctuation in said fluid channel member due to the displacement of said cell caused by expansion/contraction of said side wall.
- 2. A micro pump according to claim 1, wherein in said pump unit, electrode layers are formed on both surfaces of the side walls in said actuator member and wherein said side walls are expanded/contracted in up/down direction in response to driving electric field resulting from an application of a voltage to said electrode layers.
- 3. A micro pump according to claim 1, wherein in said pump unit, an electric field for polarizing the piezoelectric/electrostrictive elements forming the side walls of said actuator member is aligned in the same direction as a driving electric field.
- 4. A micro pump according to claim 1, wherein in said pump unit, the state of crystalline grains on surfaces of the side walls in said actuator member is that the crystal grains suffering the transgranular fracture are 1% or less.
- 5. A micro pump according to claim 1, wherein in said pump unit, a degree of profile of the surfaces of the cell in said actuator member is approximately 8 μm or less.
- 6. A micro pump according to claim 1, wherein in said pump unit, a ratio of an inside width to an height of the cell in said actuator member is approximately 1:2 to 1:40.
- 7. A micro pump according to claim 1, wherein in said pump unit, an inside width of the cell in said actuator member is approximately 60 μm or less.
- 8. A micro pump according to claim 1, wherein in said pump unit, surface roughness Rt of the side walls in said actuator member is approximately 10 μm or less.
- 9. A micro pump according to claim 1, wherein in the actuator member of said pump unit, said connecting plate is made of piezoelectric/electrostrictive elements or antiferroelectric elements and is unitarily formed with said side walls.
- 10. A micro pump according to claim 1, wherein in the actuator member of said pump unit, said cover plate is made of piezoelectric/electrostrictive elements or antiferrodielectirc elements and is unitarily formed with said side walls.
- 11. A micro pump according to claim 1, wherein said pump unit is a pump unit (A) in which the cell in the actuator member is filled with a system fluid; a fluid channel in which a fluid insoluble in said system fluid flows is formed in advance in the fluid channel member; said cell is communicated to said fluid channel through a communicating hole; said fluid channel has substantially the same size in the width direction as diameter of said communicating hole at least at the position where said communicating hole is communicated to said fluid channel; the expansion/contraction of the side walls forming said cell in the up/down direction provides a change in the volume of the portion at which said system fluid stored in said cell is ejected from said communicating hole to said fluid channel, so that the fluid channel can be selectively formed; and
said pump unit (A) is used as a pump member, and the micro pump is provided with at least one of said pump member.
- 12. A micro pump according to claim 1, wherein said pump unit is a pump unit (B) in which the fluid channel comprises a displacement transmitting member, at least a part of which is bonded to the cover plate of the cell in the actuator member, and a casing facing a part of the surfaces of said displacement transmitting member on the side opposite to said actuator member through the fluid channel; the expansion/contraction of the side walls forming said cell provides an approaching/departing displacement of said displacement transmitting member relative to a part of the surfaces of said casing facing the displacement transmitting member, so that the fluid channel can be selectively formed; and
said pump unit (B) is used as a pump member, and the micro pump is provided with at least one of said pump member.
- 13. A micro pump according to claim 12, wherein in said pump unit (B), a through hole running from the inside to the outside of said cell is formed.
- 14. A micro pump according to claim 12, wherein in said pump unit (B), said fluid channel potentially exists; when said displacement transmitting member approaches a part of the surfaces of said casing facing the displacement transmitting member at the closest position, said displacement transmitting member comes into contact with said casing.
- 15. A micro pump according to claim 12, wherein in said pump unit (B), a plurality of the actuator members are disposed in accordance with the displacement transmitting member in said fluid channel member.
- 16. A micro pump according to claim 15, wherein in the actuator members of said pump unit (B), the ratio between the spacing between the cell and the adjacent cell, and the height of the cell is approximately 1:2 to 1:40.
- 17. A micro pump according to claim 15, wherein in the actuator members of said pump unit (B), the spacing between the cell and the adjacent cell is approximately 50 μm or less.
- 18. A micro pump according to claim 15, wherein in the actuator members of said pump unit (B), the inside width of said cell or the spacing between the cell and the adjacent cell has two different distances.
- 19. A micro pump according to claim 12, wherein in the actuator member of said pump unit (B), the outside of said cell is filled with the same material as the displacement transmitting member, and said actuator and said fluid channel are unitarily formed.
- 20. A micro pump according to claim 1, wherein said pump unit is a pump unit (C) in which a fluid supply opening and a fluid discharge opening are formed in the cell of the actuator member; a fluid channel comprising a supply channel and a discharge channel in which the fluid flows are formed in advance in the fluid channel member; said discharge channel is communicated to the fluid discharge opening in said cell; and the expansion/contraction in up and down direction of the side walls forming said cell generates a change in the volume of said cell and thus induces the pressure in said cell, so that the fluid channel can be selectively formed; and
said pump unit (C) is used as a pump member, and the micro pump is provided with at least one of said pump member.
- 21. A micro pump according to claim 1, wherein
a pressure loss generating element is disposed on each of the supply side and the discharge side of said fluid channel, a pressure loss ΔP1 when the fluid is run in the supply direction, and a pressure loss ΔP2 when the fluid is run in the direction opposite the supply direction in the pressure loss generating element on the supply side, and a pressure loss ΔP3 when the fluid is run in the discharge direction, and a pressure loss ΔP4 when the fluid is run in the direction opposite the discharge direction in the pressure loss generating element on the discharge side, satisfy the following two equations:ΔP1<ΔP4andΔP2>ΔP3.
- 22. A micro pump according to claim 20, wherein
a pressure loss generating element is disposed on each of the supply side and the discharge side of said fluid channel, a pressure loss ΔP1 when the fluid is run in the supply direction and a pressure loss ΔP2 when the fluid is run in the direction opposite the supply direction in the pressure loss generating element on the supply side, and a pressure loss ΔP3 when the fluid is run in the discharge direction and a pressure loss ΔP4 when the fluid is run in the direction opposite the discharge direction in the pressure loss generating element on the discharge side, satisfy the following two equations:ΔP1<ΔP4andΔP2>ΔP3.
- 23. A micro pump according to claim 21, wherein said pressure loss generating element on the supply side has a tapered structure whose cross section continuously decreases in the supply direction of the fluid, and said pressure loss generating element on the discharge side has a tapered structure which continuously decreases in the discharge direction of the fluid.
- 24. A micro pump according to claim 22, wherein said pressure loss generating element on the supply side has a tapered structure whose cross section continuously decreases in the supply direction of the fluid, and said pressure loss generating element on the discharge side has a tapered structure which continuously decreases in the discharge direction of the fluid.
- 25. A micro pump according to claim 21, wherein each pressure loss generating element on the supply side and on the discharge side is a check valve.
- 26. A micro pump according to claim 22, wherein each pressure loss generating element on the supply side and on the discharge side is a check valve.
- 27. A micro pump according to claim 11, wherein a plural number of said pump members are disposed, and at least one set of pump members is connected in series.
- 28. A micro pump according to claim 12, wherein a plural number of said pump members are disposed, and at least one set of pump members is connected in series.
- 29. A micro pump according to claim 20, wherein a plural number of said pump members are disposed, and at least one set of pump members is connected in series.
- 30. A micro pump according to claim 11, wherein a plural number of said pump members are disposed, and at least one set of pump members is connected in series.
- 31. A micro pump according to claim 12, wherein a plural number of said pump members are disposed, and pump members connected in series and those connected in parallel are disposed in combination at an arbitrarily rate.
- 32. A micro pump according to claim 20, wherein a plural number of said pump members are disposed, and pump members connected in series and those connected in parallel are disposed in combination at an arbitrarily rate.
- 33. A micro pump according to claim 27, wherein at least one set of two pump members connected in series among said pump members provides a phase difference in the pressure fluctuation arising in the fluid channel member, thereby enabling the flow of the fluid to be controlled in the fluid channel member.
- 34. A micro pump according to claim 28, wherein at least one set of two pump members connected in series among said pump members provides a phase difference in the pressure fluctuation arising in the fluid channel member, thereby enabling the flow of the fluid to be controlled in the fluid channel member.
- 35. A micro pump according to claim 29, wherein at least one set of two pump members connected in series among said pump members provides a phase difference in the pressure fluctuation arising in the fluid channel member, thereby enabling the flow of the fluid to be controlled in the fluid channel member.
- 36. A micro pump according to claim 30, wherein at least one set of two pump members connected in series among said pump members provides a phase difference in the pressure fluctuation arising in the fluid channel member, thereby enabling the flow of the fluid to be controlled in the fluid channel member.
- 37. A micro pump according to claim 31, wherein at least one set of two pump members connected in series among said pump members provides a phase difference in the pressure fluctuation arising in the fluid channel member, thereby enabling the flow of the fluid to be controlled in the fluid channel member.
- 38. A micro pump according to claim 32, wherein at least one set of two pump members connected in series among said pump members provides a phase difference in the pressure fluctuation arising in the fluid channel member, thereby enabling the flow of the fluid to be controlled in the fluid channel member.
- 39. A micro pump according to claim 27, wherein the pump units in said pump members are of the same type.
- 40. A micro pump according to claim 28, wherein the pump units in said pump members are of the same type.
- 41. A micro pump according to claim 29, wherein the pump units in said pump members are of the same type.
- 42. A micro pump according to claim 30, wherein the pump units in said pump members are of the same type.
- 43. A micro pump according to claim 31, wherein the pump units in said pump members are of the same type.
- 44. A micro pump according to claim 32, wherein the pump units in said pump members are of the same type.
- 45. A micro pump according to claim 27, wherein in said pump members, there is provided with a valve member between at least one adjacent pump member, and said valve member comprising either one of pump units among;
a pump unit (A) in which the cell in the actuator member is filled with a system fluid; a fluid channel in which a fluid insoluble in said system fluid flows is formed in advance in the fluid channel member; said cell is communicated to said fluid channel through a communicating hole; said fluid channel has substantially the same size in the width direction as diameter of said communicating hole at least at the position where said communicating hole is communicated to said fluid channel; the expansion/contraction of the side walls forming said cell in the up/down direction provides a change in the volume of the portion at which said system fluid stored in said cell is ejected from said communicating hole to said fluid channel, so that the fluid channel can be selectively formed; a pump unit (B) in which the fluid channel comprises a displacement transmitting member, at least a part of which is bonded to the cover plate of the cell in the actuator member, and a casing facing a part of the surfaces of said displacement transmitting member on the side opposite to said actuator member through the fluid channel; the expansion/contraction of the side walls forming said cell provides an approaching/departing displacement of said displacement transmitting member relative to a part of the surfaces of said casing facing the displacement transmitting member, so that the fluid channel can be selectively formed; and a pump unit (C) in which a fluid supply opening and a fluid discharge opening are formed in the cell of the actuator member; a fluid channel comprising a supply channel and a discharge channel in which the fluid flows are formed in advance in the fluid channel member; said discharge channel is communicated to the fluid discharge opening in said cell; and the expansion/contraction in up and down direction of the side walls forming said cell generates a change in the volume of said cell and thus induces the pressure in said cell, so that the fluid channel can be selectively formed.
- 46. A micro pump according to claim 28, wherein in said pump members, there is provided with a valve member between at least one adjacent pump member, and said valve member comprising either one of pump units among;
a pump unit (A) in which the cell in the actuator member is filled with a system fluid; a fluid channel in which a fluid insoluble in said system fluid flows is formed in advance in the fluid channel member; said cell is communicated to said fluid channel through a communicating hole; said fluid channel has substantially the same size in the width direction as diameter of said communicating hole at least at the position where said communicating hole is communicated to said fluid channel; the expansion/contraction of the side walls forming said cell in the up/down direction provides a change in the volume of the portion at which said system fluid stored in said cell is ejected from said communicating hole to said fluid channel, so that the fluid channel can be selectively formed; a pump unit (B) in which the fluid channel comprises a displacement transmitting member, at least a part of which is bonded to the cover plate of the cell in the actuator member, and a casing facing a part of the surfaces of said displacement transmitting member on the side opposite to said actuator member through the fluid channel; the expansion/contraction of the side walls forming said cell provides an approaching/departing displacement of said displacement transmitting member relative to a part of the surfaces of said casing facing the displacement transmitting member, so that the fluid channel can be selectively formed; and a pump unit (C) in which a fluid supply opening and a fluid discharge opening are formed in the cell of the actuator member; a fluid channel comprising a supply channel and a discharge channel in which the fluid flows are formed in advance in the fluid channel member; said discharge channel is communicated to the fluid discharge opening in said cell; and the expansion/contraction in up and down direction of the side walls forming said cell generates a change in the volume of said cell and thus induces the pressure in said cell, so that the fluid channel can be selectively formed.
- 47. A micro pump according to claim 29, wherein in said pump members, there is provided with a valve member between at least one adjacent pump member, and said valve member comprising either one of pump units among;
a pump unit (A) in which the cell in the actuator member is filled with a system fluid; a fluid channel in which a fluid insoluble in said system fluid flows is formed in advance in the fluid channel member; said cell is communicated to said fluid channel through a communicating hole; said fluid channel has substantially the same size in the width direction as diameter of said communicating hole at least at the position where said communicating hole is communicated to said fluid channel; the expansion/contraction of the side walls forming said cell in the up/down direction provides a change in the volume of the portion at which said system fluid stored in said cell is ejected from said communicating hole to said fluid channel, so that the fluid channel can be selectively formed; a pump unit (B) in which the fluid channel comprises a displacement transmitting member, at least a part of which is bonded to the cover plate of the cell in the actuator member, and a casing facing a part of the surfaces of said displacement transmitting member on the side opposite to said actuator member through the fluid channel; the expansion/contraction of the side walls forming said cell provides an approaching/departing displacement of said displacement transmitting member relative to a part of the surfaces of said casing facing the displacement transmitting member, so that the fluid channel can be selectively formed; and a pump unit (C) in which a fluid supply opening and a fluid discharge opening are formed in the cell of the actuator member; a fluid channel comprising a supply channel and a discharge channel in which the fluid flows are formed in advance in the fluid channel member; said discharge channel is communicated to the fluid discharge opening in said cell; and the expansion/contraction in up and down direction of the side walls forming said cell generates a change in the volume of said cell and thus induces the pressure in said cell, so that the fluid channel can be selectively formed.
- 48. A micro pump according to claim 30, wherein in said pump members, there is provided with a valve member between at least one adjacent pump member, and said valve member comprising either one of pump units among;
a pump unit (A) in which the cell in the actuator member is filled with a system fluid; a fluid channel in which a fluid insoluble in said system fluid flows is formed in advance in the fluid channel member; said cell is communicated to said fluid channel through a communicating hole; said fluid channel has substantially the same size in the width direction as diameter of said communicating hole at least at the position where said communicating hole is communicated to said fluid channel; the expansion/contraction of the side walls forming said cell in the up/down direction provides a change in the volume of the portion at which said system fluid stored in said cell is ejected from said communicating hole to said fluid channel, so that the fluid channel can be selectively formed; a pump unit (B) in which the fluid channel comprises a displacement transmitting member, at least a part of which is bonded to the cover plate of the cell in the actuator member, and a casing facing a part of the surfaces of said displacement transmitting member on the side opposite to said actuator member through the fluid channel; the expansion/contraction of the side walls forming said cell provides an approaching/departing displacement of said displacement transmitting member relative to a part of the surfaces of said casing facing the displacement transmitting member, so that the fluid channel can be selectively formed; and a pump unit (C) in which a fluid supply opening and a fluid discharge opening are formed in the cell of the actuator member; a fluid channel comprising a supply channel and a discharge channel in which the fluid flows are formed in advance in the fluid channel member; said discharge channel is communicated to the fluid discharge opening in said cell; and the expansion/contraction in up and down direction of the side walls forming said cell generates a change in the volume of said cell and thus induces the pressure in said cell, so that the fluid channel can be selectively formed.
- 49. A micro pump according to claim 31, wherein in said pump members, there is provided with a valve member between at least one adjacent pump member, and said valve member comprising either one of pump units among;
a pump unit (A) in which the cell in the actuator member is filled with a system fluid; a fluid channel in which a fluid insoluble in said system fluid flows is formed in advance in the fluid channel member; said cell is communicated to said fluid channel through a communicating hole; said fluid channel has substantially the same size in the width direction as diameter of said communicating hole at least at the position where said communicating hole is communicated to said fluid channel; the expansion/contraction of the side walls forming said cell in the up/down direction provides a change in the volume of the portion at which said system fluid stored in said cell is ejected from said communicating hole to said fluid channel, so that the fluid channel can be selectively formed; a pump unit (B) in which the fluid channel comprises a displacement transmitting member, at least a part of which is bonded to the cover plate of the cell in the actuator member, and a casing facing a part of the surfaces of said displacement transmitting member on the side opposite to said actuator member through the fluid channel; the expansion/contraction of the side walls forming said cell provides an approaching/departing displacement of said displacement transmitting member relative to a part of the surfaces of said casing facing the displacement transmitting member, so that the fluid channel can be selectively formed; and a pump unit (C) in which a fluid supply opening and a fluid discharge opening are formed in the cell of the actuator member; a fluid channel comprising a supply channel and a discharge channel in which the fluid flows are formed in advance in the fluid channel member; said discharge channel is communicated to the fluid discharge opening in said cell; and the expansion/contraction in up and down direction of the side walls forming said cell generates a change in the volume of said cell and thus induces the pressure in said cell, so that the fluid channel can be selectively formed.
- 50. A micro pump according to claim 32, wherein in said pump members, there is provided with a valve member between at least one adjacent pump member, and said valve member comprising either one of pump units among;
a pump unit (A) in which the cell in the actuator member is filled with a system fluid; a fluid channel in which a fluid insoluble in said system fluid flows is formed in advance in the fluid channel member; said cell is communicated to said fluid channel through a communicating hole; said fluid channel has substantially the same size in the width direction as diameter of said communicating hole at least at the position where said communicating hole is communicated to said fluid channel; the expansion/contraction of the side walls forming said cell in the up/down direction provides a change in the volume of the portion at which said system fluid stored in said cell is ejected from said communicating hole to said fluid channel, so that the fluid channel can be selectively formed; a pump unit (B) in which the fluid channel comprises a displacement transmitting member, at least a part of which is bonded to the cover plate of the cell in the actuator member, and a casing facing a part of the surfaces of said displacement transmitting member on the side opposite to said actuator member through the fluid channel; the expansion/contraction of the side walls forming said cell provides an approaching/departing displacement of said displacement transmitting member relative to a part of the surfaces of said casing facing the displacement transmitting member, so that the fluid channel can be selectively formed; and a pump unit (C) in which a fluid supply opening and a fluid discharge opening are formed in the cell of the actuator member; a fluid channel comprising a supply channel and a discharge channel in which the fluid flows are formed in advance in the fluid channel member; said discharge channel is communicated to the fluid discharge opening in said cell; and the expansion/contraction in up and down direction of the side walls forming said cell generates a change in the volume of said cell and thus induces the pressure in said cell, so that the fluid channel can be selectively formed.
- 51. A micro pump according to claim 45, wherein the pump unit in said pump member and the pump unit in said valve member are of the same type.
- 52. A micro pump according to claim 46, wherein the pump unit in said pump member and the pump unit in said valve member are of the same type.
- 53. A micro pump according to claim 47, wherein the pump unit in said pump member and the pump unit in said valve member are of the same type.
- 54. A micro pump according to claim 48, wherein the pump unit in said pump member and the pump unit in said valve member are of the same type.
- 55. A micro pump according to claim 49, wherein the pump unit in said pump member and the pump unit in said valve member are of the same type.
- 56. A micro pump according to claim 50, wherein the pump unit in said pump member and the pump unit in said valve member are of the same type.
- 57. A micro pump according to claim 1, wherein there is provided on the supply side of said pump member at least one supply valve member comprising either one of pump units among:
a pump unit (A) in which the cell in the actuator member is filled with a system fluid; a fluid channel in which a fluid insoluble in said system fluid flows is formed in advance in the fluid channel member; said cell is communicated to said fluid channel through a communicating hole; said fluid channel has substantially the same size in the width direction as diameter of said communicating hole at least at the position where said communicating hole is communicated to said fluid channel; the expansion/contraction of the side walls forming said cell in the up/down direction provides a change in the volume of the portion at which said system fluid stored in said cell is ejected from said communicating hole to said fluid channel, so that the fluid channel can be selectively formed; a pump unit (B) in which the fluid channel comprises a displacement transmitting member, at least a part of which is bonded to the cover plate of the cell in the actuator member, and a casing facing a part of the surfaces of said displacement transmitting member on the side opposite to said actuator member through the fluid channel; the expansion/contraction of the side walls forming said cell provides an approaching/departing displacement of said displacement transmitting member relative to a part of the surfaces of said casing facing the displacement transmitting member, so that the fluid channel can be selectively formed; and a pump unit (C) in which a fluid supply opening and a fluid discharge opening are formed in the cell of the actuator member; a fluid channel comprising a supply channel and a discharge channel in which the fluid flows are formed in advance in the fluid channel member; said discharge channel is communicated to the fluid discharge opening in said cell; and the expansion/contraction in up and down direction of the side walls forming said cell generates a change in the volume of said cell and thus induces the pressure in said cell, so that the fluid channel can be selectively formed.
- 58. A micro pump according to claim 57, wherein the pump unit in said pump member and the pump unit in said supply valve member are of the same type.
- 59. A micro pump according to claim 1, wherein there is provided on the discharge side of said pump member with at least one discharge valve member comprising either one of pump units among;
a pump unit (A) in which the cell in the actuator member is filled with a system fluid; a fluid channel in which a fluid insoluble in said system fluid flows is formed in advance in the fluid channel member; said cell is communicated to said fluid channel through a communicating hole; said fluid channel has substantially the same size in the width direction as diameter of said communicating hole at least at the position where said communicating hole is communicated to said fluid channel; the expansion/contraction of the side walls forming said cell in the up/down direction provides a change in the volume of the portion at which said system fluid stored in said cell is ejected from said communicating hole to said fluid channel, so that the fluid channel can be selectively formed; a pump unit (B) in which the fluid channel comprises a displacement transmitting member, at least a part of which is bonded to the cover plate of the cell in the actuator member, and a casing facing a part of the surfaces of said displacement transmitting member on the side opposite to said actuator member through the fluid channel; the expansion/contraction of the side walls forming said cell provides an approaching/departing displacement of said displacement transmitting member relative to a part of the surfaces of said casing facing the displacement transmitting member, so that the fluid channel can be selectively formed; and a pump unit (C) in which a fluid supply opening and a fluid discharge opening are formed in the cell of the actuator member; a fluid channel comprising a supply channel and a discharge channel in which the fluid flows are formed in advance in the fluid channel member; said discharge channel is communicated to the fluid discharge opening in said cell; and the expansion/contraction in up and down direction of the side walls forming said cell generates a change in the volume of said cell and thus induces the pressure in said cell, so that the fluid channel can be selectively formed.
- 60. A micro pump according to claim 59, wherein the pump unit in said pump member and the pump unit in the discharge valve member are of the same type.
- 61. A micro pump according to claim 1, wherein the actuator member in said pump unit comprises:
a spacer plate made of piezoelectric/electrostrictive elements or antiferrodielectric elements in which a plurality of slits (A) is formed; a cover plate placed on one surface of said spacer plate for covering said slits (A); and a connecting plate placed on the other surface of said spacer plate for covering said slits (A); wherein a slit (B) passing through said cover plate and said spacer plate is formed between said slit (A) and the adjacent slit (A).
- 62. A method for manufacturing a micro pump with a punch and a die, wherein cells are formed by two side walls made of piezoelectric/electrostrictive elements or antiferrodielectric elements disposed on a connecting plate and by a cover plate for covering the surface facing said connecting plate between said side walls, wherein said micro pump includes actuator members in which said cell is displaced by the expansion/contraction of said side walls, characterized by comprising the steps of:
preparing a plurality of green sheets made of piezoelectric/electrostrictive material or antiferrodielectric material; performing a first substep for diecutting first slit apertures in a first green sheet with said punch, a second substep for raising said first green sheet in tight contact with a stripper, while maintaining the state in which said punch is not withdrawn from said first slit apertures, and a third substep for raising said punch in such a manner that the front end of said punch is withdrawn slightly from the lowest part of said first green sheet raised; performing a fourth substep for diecutting second slit apertures in a second green sheet with said punch, a fifth substep for raising said second green sheet together with said first green sheet, while maintaining the state in which said punch is not withdrawn from said second slit apertures, and a sixth substep for raising said punch in such a manner that the front end of said punch is withdrawn slightly from the lowest part of said second green sheet raised; subsequently laminating green sheets by repeating the fourth substep to the sixth substep to form a piezoelectric/electrostrictive element or antiferrodielectric element having a plurality of slits.
Priority Claims (2)
Number |
Date |
Country |
Kind |
2001-108986 |
Apr 2001 |
JP |
|
2001-189718 |
Jun 2001 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation in part of U.S. patent application Ser. No. 09/900 742 filed on Jul. 6, 2001.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09900742 |
Jul 2001 |
US |
Child |
09935087 |
Aug 2001 |
US |