The present invention relates to a solution emitting head (particularly preferable for forming a functional layer (such as an oriented layer, an insulating layer or the like) of a liquid crystal display), a functional layer forming apparatus and a liquid crystal display.
JP-A-6-238876 discloses a flexographic printing in which a solution as a material of a functional layer, for example, an oriented layer, an insulating layer or the like is formed on a substrate, comprising, an anilox roll having an outer peripheral metallic surface forming fine recesses surface pattern, a doctor roll having a synthetic resin outer peripheral surface, a relief printing plate of synthetic resin, a printing drum for holding the relief printing plate on an outer periphery thereof, a supply nozzle for supplying the solution to the outer peripheral metallic surface of the anilox roll, and a movable table for holding the substrate thereon, wherein the solution on the outer peripheral metallic surface of the rotating anilox roll is pressed by the synthetic resin outer peripheral surface of the rotating doctor roll to be spread over the outer peripheral metallic surface of the anilox roll so that a thin layer of the solution is formed, subsequently the thin layer of the solution is transferred from the outer peripheral metallic surface of the anilox roll onto the relief printing plate on the outer periphery of the rotating printing drum, and finally the thin layer of the solution is transferred from the rotating relief printing plate onto the moving substrate.
JP-A-54-21862 and JP-A-63-106727 discloses that the solution is directly supplied onto the substrate to form the thin layer thereof on the substrate.
JP-A-9-166783 discloses an emitting head for emitting the solution onto the substrate to form the thin layer thereof on the substrate.
An object of the present invention is to provide a solution emitting head (usable as an inkjet head), a functional layer forming apparatus with the solution emitting head and a liquid crystal display manufactured by the functional layer forming apparatus, in which solution emitting head an inner surface of the solution emitting head is prevented from being deteriorated by a solution.
According to the present invention, in a solution emitting head for emitting a solution through an outlet, having, a main body including a cavity, a cover attached to the main body in such a manner that the cover covers the cavity to form a chamber so that the solution is stored in the chamber temporarily before being emitted from the outlet, and a solution pressurizing device for pressurizing the solution in the chamber to be discharged through the outlet from the chamber,
the cover is fixedly attached to the main body by one of metal-to-metal (not including non-metallic member between the main body and the cover) bonding and an adhesive dissolution-resistant against the solution between the cover and the main body.
Since the cover is fixedly attached to the main body by one of metal-to-metal (not including non-metallic member between the main body and the cover) bonding and an adhesive dissolution-resistant against the solution between the cover and the main body, an inner surface of the solution emitting head is prevented from being deteriorated by the solution.
It is preferable for securely preventing the inner surface of the solution emitting head from being deteriorated by the solution that both the cover and the main body are metallic, and the metal-to-metal bonding is one of welding and diffusion-bonding between the cover and the main body, or that a main component or the whole of the adhesive after being cured is polyimide, preferably, thermoplastic polyimide obtainable after polyimide as the adhesive or soluble polyimide as an antecedent of the polyimide is treated thermally or baked-and-cooled to be completely cured or polymerized without solvent therein. In this case, it is preferable for simplifying a structure of the emitting head that a main component of one of the cover and the main body is thermoplastic polyimide, and a part of the one of the cover and the main body facing to another one of the cover and the main body as the adhesive adheres to the another one of the cover and the main body as the adhesive. The diffusion-bonding between the cover and the main body with heating them for mutual diffusion therebetween and pressing them against each other to increase a contact area therebetween may be a diffusion-bonding in which the diffusion proceeds until a boundary between the cover and the main body becomes invisible or unmeasurable so that the bonding strength therebetween is significantly high, or a diffusion-bonding with a sufficient bonding strength therebetween in which diffusion-bonding the boundary between the cover and the main body is visible or measurable, that is, the diffusion is prevented from proceeding until the boundary between the cover and the main body becomes invisible or unmeasurable.
A part of the cover facing to the chamber may be deformable as a part of the solution pressurizing device in such a manner that a volume of the chamber is decreased to pressurize the solution in the chamber. The solution pressurizing device may include a piezoelectric element for urging the part of the cover to pressurize the solution in the chamber. The solution pressurizing device may be a heater for heating the solution to be pressurized in the chamber with vaporization of the solution.
When the solution includes a polar solvent, it is necessary for the adhesive to be dissolution-resistant against the polar solvent. When the solution includes at least one of soluble polyimide and poly-amic-acid as a material of a layer to be formed on a substrate of a liquid crystal display, and a polar solvent for solving the at least one of soluble polyimide and poly-amic-acid, and the polar solvent includes at least one of N-methyl-pyrrolidone, γ-butyrolactone and N-dimethylformamide, it is preferable for securely preventing the inner surface of the solution emitting head from being deteriorated by the solution that both the cover and the main body are metallic, and the metal-to-metal bonding is one of welding and diffusion-bonding between the cover and the main body, or that a main component or the whole of the adhesive after being cured is polyimide, preferably, thermoplastic polyimide obtainable after polyimide as the adhesive or soluble polyimide as an antecedent of the polyimide is treated thermally or baked-and-cooled to be completely cured or polymerized without solvent therein.
An apparatus for forming a functional layer by emitting a solution as a material of the functional layer onto a substrate, comprises, a solution emitting head for emitting the solution through an outlet of the solution emitting head, including, a main body including a cavity, a cover attached to the main body in such a manner that the cover covers the cavity to form a chamber so that the solution is stored in the chamber temporarily before being emitted from the outlet, and a solution pressurizing device for pressurizing the solution in the chamber, wherein the cover is fixedly attached to the main body by one of metal-to-metal bonding and an adhesive dissolution-resistant against the solution between the cover and the main body, and a table adapted to hold the substrate thereon and movable with respect to the solution emitting head while the solution emitting head emits the solution onto the substrate so that the solution is distributed on the substrate to form the functional layer.
In a liquid crystal display comprising, a pair of base plates, each of which base plates includes a substrate, a transparent electrode and an oriented layer, a spacer through which the base plates are spaced apart from each other while the oriented layers of the base plates face to each other, a sealing member extending between the base plates to form a closed space between the base plates, and a liquid crystal contained in the closed space,
the oriented layer is formed by an apparatus with emitting a solution as a material of the oriented layer onto the substrate, comprising, a solution emitting head for emitting the solution through an outlet of the solution emitting head, including, a main body including a cavity, a cover attached to the main body in such a manner that the cover covers the cavity to form a chamber so that the solution is stored in the chamber temporarily before being emitted from the outlet, and a solution pressurizing device for pressurizing the solution in the chamber, wherein the cover is fixedly attached to the main body by one of metal-to-metal bonding and an adhesive dissolution-resistant against the solution between the cover and the main body, and a table adapted to hold the substrate thereon and movable with respect to the solution emitting head while the solution emitting head emits the solution onto the substrate so that the solution is distributed on the substrate to form the oriented layer.
A method for forming a liquid crystal display by an apparatus for forming a layer by emitting a solution as a material of the layer onto a substrate, comprising, a solution emitting head for emitting the solution through an outlet of the solution emitting head, including, a main body including a cavity, a cover attached to the main body in such a manner that the cover covers the cavity to form a chamber so that the solution is stored in the chamber temporarily before being emitted from the outlet, and a solution pressurizing device for pressurizing the solution in the chamber, wherein the cover is fixedly attached to the main body by one of metal-to-metal bonding and an adhesive dissolution-resistant against the solution between the cover and the main body, and a table adapted to hold the substrate thereon and movable with respect to the solution emitting head while the solution emitting head emits the solution onto the substrate so that the solution is distributed on the substrate to form the functional layer, comprising the steps of:
emitting a first solution as a material of an insulating layer onto the substrate from the apparatus to form a film of the first solution on the substrate,
drying the film of the first solution to remove a polar solvent of the first solution from the first solution so that the insulating layer is formed,
emitting a second solution as a material of an oriented layer onto the substrate from the apparatus to form a film of the second solution on the substrate,
drying the film of the second solution to remove a polar solvent of the second solution from the second solution so that the oriented layer is formed, and
baking the insulating layer and oriented layer on the substrate.
Other objects, features and advantages of the invention will become apparent from the following description of the embodiments of the invention taken in conjunction with the accompanying drawings.
As shown in
The pressurizing member 4 is a polyimide film (of, for example, Yuhpilex VT supplied from Ube-Kousan Inc.,) adhered to the support plate 12 and the inlet plate 9 by heating for about 20 minutes parts of the pressurizing member 4 facing to the support plate 12 and the inlet plate 9 to about 330° C. while compressing the pressurizing member 4 between the support plate 12 and the inlet plate 9 by 1.96 MPa, and subsequently cooling the parts of the pressurizing member 4 to be cured.
The piezoelectric element 2 mounted on the base plate 3 contacts the pressurizing member 4 at an end thereof through the opening 12a. The pressurizing member 4 contacts the support plate 12 to be supported thereon when the piezoelectric element 2 is not electrically energized, and is deformed by the piezoelectric element 2 to move away at least partially from the support plate 12 in a direction denoted by an arrow A so that a solution with which a solution chamber formed by the cavity 10, the cavity cover 8 and the pressurizing member 4 is filled is pressurized by a decrease in volume of the solution chamber to emit the solution through the through hole 8a from the solution outlet 6 when the piezoelectric element 2 is electrically energized to expand longitudinally.
The solution inlet 5 may include a valve (not shown) opened when the piezoelectric element 2 is not energized and closed when the piezoelectric element 2 is energized, and the solution outlet 6 may include a valve (not shown) opened when the piezoelectric element 2 is energized and closed when the piezoelectric element 2 is not energized. A plurality of the solution outlets 6 may fluidly communicate with the solution chamber.
The solution emitting head is made as shown in
In step 101, the cavity cover 8 is bonded to the inlet plate 9 through a polyimide adhesive (at least one of the cavity cover 8 and the inlet plate 9 may be non-metallic or metallic), or through metal-to-metal (not including non-metallic element between the cavity cover 8 and the inlet plate 9) bonding, for example, welding or diffusion bonding only when both the cavity cover 8 and the inlet plate 9 are metallic, and the outlet plate 7 is bonded to the cavity cover 8 through a polyimide adhesive (at least one of the cavity cover 8 and the inlet plate 9 may be non-metallic or metallic), or through metal-to-metal (not including non-metallic element between the cavity cover 8 and the outlet plate 7) bonding, for example, welding or diffusion bonding only when both the cavity cover 8 and the outlet plate 7 are metallic. It is preferable for the outlet plate 7, the cavity cover 8 and the inlet plate 9 to be made of the same material or to be not significantly different in thermal expansion coefficient among them.
In step 102, the end of the piezoelectric element 2 is fixed to the pressurizing member 4 by an adhesive, for example, an epoxy resin adhesive or the polyimide adhesive. In step 103, the pressurizing member 4 and the main body 1 are adhered to the base plate 3 by an adhesive, for example, the epoxy resin adhesive or the polyimide adhesive.
In another embodiment as shown in
As shown in
As shown in
In a functional layer forming process as shown in
A liquid crystal display including the functional layer formed by the solution emitting head of the invention as described above, as shown in
The functional layer 31a for operating under the transparent electrode of TFT element of TFT crystal liquid display, color filter of color crystal liquid display or black matrix is formed on the lower substrate 30a. The transparent electrode 32a is formed on the functional layer 31a, and the oriented layer 34a is formed on the transparent electrode 32a by the apparatus as shown in
The upper and lower substrates 30a and 30b with the layers as described above are connected by a spacer 36 and a sealant 35, and pressed against each other for a predetermined time period for curing the sealant 35 while keeping a positional relationship between the desirably. Subsequently, a liquid crystal is inserted between the upper and lower substrates 30a and 30b, and the optical films 38a and 38b are adhered to outer sides of the upper and lower substrates 30a and 30b.
As shown in
The liquid crystal display as shown in
It should be further understood by those skilled in the art that although the foregoing description has been made on embodiments of the invention, the invention is not limited thereto and various changes and modifications may be made without departing from the spirit of the invention and the scope of the appended claims.
Number | Date | Country | Kind |
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2002-076014 | Mar 2002 | JP | national |
Number | Name | Date | Kind |
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6432348 | Yamanaka | Aug 2002 | B1 |
Number | Date | Country |
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A-54-21862 | Feb 1979 | JP |
A-63-106727 | May 1988 | JP |
63265647 | Nov 1988 | JP |
06-297699 | Oct 1991 | JP |
A-6-332976 | Aug 1994 | JP |
A-9-166783 | Jun 1997 | JP |
Number | Date | Country | |
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20030210303 A1 | Nov 2003 | US |