JP2011107487A - Method of manufacturing liquid crystal display device - Google Patents

Method of manufacturing liquid crystal display device Download PDF

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JP2011107487A
JP2011107487A JP2009263551A JP2009263551A JP2011107487A JP 2011107487 A JP2011107487 A JP 2011107487A JP 2009263551 A JP2009263551 A JP 2009263551A JP 2009263551 A JP2009263551 A JP 2009263551A JP 2011107487 A JP2011107487 A JP 2011107487A
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roller
alignment film
rubbing
liquid crystal
display device
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Kenji Terada
憲司 寺田
Kazuya Nakamura
和也 中村
Satoshi Dan
聡 團
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Panasonic Liquid Crystal Display Co Ltd
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Panasonic Liquid Crystal Display Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a rubbing process to make the pre-tilt angle small. <P>SOLUTION: The surface of an alignment film 12 is rubbed by rubbing cloth 14 wound on a roller 10 while the alignment film 12 is moved relatively with respect to a rotating roller 10. The rubbing process is performed so that the rubbing direction of the alignment film 12 by the rubbing cloth 14 is opposite to the moving direction of the alignment film 12, then is performed so that the rubbing direction of the alignment film 12 by the rubbing cloth 14 is the same as the moving direction of the alignment film 12. <P>COPYRIGHT: (C)2011,JPO&amp;INPIT

Description

本発明は、液晶表示装置の製造方法に関する。   The present invention relates to a method for manufacturing a liquid crystal display device.

液晶表示装置の製造工程で、配向膜を形成した後に液晶分子を一定方向に配列させるためにラビング工程が行われる(特許文献1参照)。ラビング工程は、液晶分子の長軸方向と基板のなす角(プレチルト角)を調整するように行うことが重要である。   In the manufacturing process of a liquid crystal display device, a rubbing process is performed in order to align liquid crystal molecules in a certain direction after forming an alignment film (see Patent Document 1). It is important that the rubbing process is performed so as to adjust the angle (pretilt angle) between the major axis direction of the liquid crystal molecules and the substrate.

特開2000−275643号公報JP 2000-275743 A

プレチルト角は、液晶駆動方式によって異なり、プレチルト角を小さくすることが要求される場合がある。しかし、従来のラビング工程では、プレチルト角が高くなり、表示品位の低下を招いていた。   The pretilt angle differs depending on the liquid crystal driving method, and it may be required to reduce the pretilt angle. However, in the conventional rubbing process, the pretilt angle is increased and the display quality is lowered.

本発明は、プレチルト角が小さくなるようにラビング工程を行うことを目的とする。   An object of this invention is to perform a rubbing process so that a pretilt angle may become small.

(1)本発明に係る液晶表示装置の製造方法は、回転するローラに対して相対的に配向膜を移動させながら、前記配向膜の表面を、前記ローラに巻き付けられたラビング布で擦るラビング工程を含み、前記ラビング工程は、前記ラビング布が前記配向膜を擦る方向が前記配向膜の移動方向とは反対になるように行った後に、前記ラビング布が前記配向膜を擦る方向が前記配向膜の移動方向と同じになるように行うことを特徴とする。本発明によれば、プレチルト角が小さくなることが発明者の実験により明らかになった。   (1) In the method for manufacturing a liquid crystal display device according to the present invention, a rubbing step of rubbing the surface of the alignment film with a rubbing cloth wound around the roller while moving the alignment film relative to a rotating roller. The rubbing step is performed such that the rubbing cloth rubs the alignment film in a direction opposite to the moving direction of the alignment film, and then the rubbing cloth rubs the alignment film in the direction of the alignment film. The moving direction is the same as the moving direction. According to the present invention, it has been clarified through experiments by the inventors that the pretilt angle is reduced.

(2)(1)に記載された液晶表示装置の製造方法において、前記ローラは、第1ローラと、前記第1ローラよりも前記配向膜の移動方向の前方に位置する第2ローラと、を含み、前記第1ローラ及び前記第2ローラのそれぞれに前記ラビング布が巻きつけられ、前記第1ローラ及び前記第2ローラが前記配向膜に対向する側において、前記第1ローラの回転方向と前記配向膜の移動方向とが反対であり、前記第2ローラの回転方向と前記配向膜の移動方向とが同じであることを特徴としてもよい。   (2) In the method of manufacturing a liquid crystal display device according to (1), the roller includes a first roller, and a second roller positioned ahead of the first roller in the moving direction of the alignment film. The rubbing cloth is wound around each of the first roller and the second roller, and the rotation direction of the first roller and the side on the side where the first roller and the second roller face the alignment film The moving direction of the alignment film is opposite, and the rotation direction of the second roller and the moving direction of the alignment film may be the same.

(3)(2)に記載された液晶表示装置の製造方法において、前記第2ローラに巻き付けられた前記ラビング布の前記配向膜に対する押し込み量は、前記第1ローラに巻き付けられた前記ラビング布の前記配向膜に対する押し込み量よりも大きいことを特徴としてもよい。   (3) In the method for manufacturing a liquid crystal display device according to (2), the pressing amount of the rubbing cloth wound around the second roller with respect to the alignment film is the amount of the rubbing cloth wound around the first roller. It may be characterized by being larger than the amount of pressing into the alignment film.

(4)(2)又は(3)に記載された液晶表示装置の製造方法において、前記第2ローラの回転数は、前記第1ローラの回転数よりも大きいことを特徴としてもよい。   (4) In the method of manufacturing a liquid crystal display device described in (2) or (3), the rotation speed of the second roller may be larger than the rotation speed of the first roller.

(5)(1)に記載された液晶表示装置の製造方法において、前記ローラによって、前記ラビング布が前記配向膜を擦る方向が前記配向膜の移動方向とは反対になるように、第1回のラビングを行った後に、前記ローラによって、前記ラビング布が前記配向膜を擦る方向が前記配向膜の移動方向と同じになるように、第2回のラビングを行うことを特徴としてもよい。   (5) In the method of manufacturing a liquid crystal display device according to (1), the first time so that a direction in which the rubbing cloth rubs the alignment film is opposite to a moving direction of the alignment film by the roller. After performing the rubbing, the second rubbing may be performed by the roller so that the rubbing cloth rubs the alignment film in the same direction as the movement direction of the alignment film.

(6)(5)に記載された液晶表示装置の製造方法において、前記第2回のラビングでの前記ラビング布の前記配向膜に対する押し込み量は、前記第1のラビングでの前記ラビング布の前記配向膜に対する押し込み量よりも大きいことを特徴としてもよい。   (6) In the method for manufacturing a liquid crystal display device according to (5), the amount of pressing of the rubbing cloth with respect to the alignment film in the second rubbing is the amount of the rubbing cloth in the first rubbing. It may be characterized by being larger than the amount of pressing into the alignment film.

(7)(5)又は(6)に記載された液晶表示装置の製造方法において、前記第2回のラビングでの前記ローラの回転数は、前記第1回のラビングでの前記ローラの回転数よりも大きいことを特徴としてもよい。   (7) In the method for manufacturing a liquid crystal display device according to (5) or (6), the number of rotations of the roller in the second rubbing is the number of rotations of the roller in the first rubbing. It may be characterized by being larger.

本発明の実施形態に係る液晶表示装置の製造方法を説明する図である。It is a figure explaining the manufacturing method of the liquid crystal display device which concerns on embodiment of this invention. 本発明の実施形態に係る液晶表示装置の製造方法の変形例を説明する図である。It is a figure explaining the modification of the manufacturing method of the liquid crystal display device which concerns on embodiment of this invention. 本発明の実施形態に係る液晶表示装置の製造方法の変形例を説明する図である。It is a figure explaining the modification of the manufacturing method of the liquid crystal display device which concerns on embodiment of this invention. 従来のラビング方法を適用した実験工程を説明する図である。It is a figure explaining the experimental process to which the conventional rubbing method is applied. 本実施形態を適用した実験工程を説明する図である。It is a figure explaining the experimental process to which this embodiment is applied.

以下、本発明の実施形態について図面を参照して説明する。   Embodiments of the present invention will be described below with reference to the drawings.

図1は、本発明の実施形態に係る液晶表示装置の製造方法を説明する図である。本実施形態では、回転するローラ10に対して相対的に配向膜12を移動させながら、配向膜12の表面を、ローラ10に巻き付けられたラビング布14で擦る。配向膜12は、例えばガラス等からなる基板16上に形成されている。基板16は、薄膜トランジスタが形成されたTFT基板であってもよいし、カラーフィルタが形成されたCF基板であってもよい。図1の例では、ローラ10の位置を固定して基板16を載せたステージ18を移動させるが、ステージ18を移動させずにローラ10を移動させてもよい。   FIG. 1 is a diagram illustrating a method for manufacturing a liquid crystal display device according to an embodiment of the present invention. In the present embodiment, the surface of the alignment film 12 is rubbed with a rubbing cloth 14 wound around the roller 10 while the alignment film 12 is moved relative to the rotating roller 10. The alignment film 12 is formed on a substrate 16 made of, for example, glass. The substrate 16 may be a TFT substrate on which a thin film transistor is formed, or a CF substrate on which a color filter is formed. In the example of FIG. 1, the position of the roller 10 is fixed and the stage 18 on which the substrate 16 is placed is moved. However, the roller 10 may be moved without moving the stage 18.

ローラ10は、第1ローラ20と、第1ローラ20よりも配向膜12の移動方向の前方に位置する第2ローラ22と、を含む。第1ローラ20及び第2ローラ22のそれぞれにラビング布14が巻きつけられている。第1ローラ20及び第2ローラ22が配向膜12に対向する側において、第1ローラ20の回転方向と配向膜12の移動方向とが反対であり、第2ローラ22の回転方向と配向膜12の移動方向とが同じである。   The roller 10 includes a first roller 20 and a second roller 22 positioned in front of the first roller 20 in the moving direction of the alignment film 12. A rubbing cloth 14 is wound around each of the first roller 20 and the second roller 22. On the side where the first roller 20 and the second roller 22 face the alignment film 12, the rotation direction of the first roller 20 and the movement direction of the alignment film 12 are opposite, and the rotation direction of the second roller 22 and the alignment film 12 are opposite. The direction of movement is the same.

第2ローラ22に巻き付けられたラビング布14の配向膜12に対する押し込み量Fは、第1ローラ20に巻き付けられたラビング布14の配向膜12に対する押し込み量Fよりも大きい。第2ローラ22の回転数は、第1ローラ20の回転数よりも大きい。 Push-in amount F 2 of the alignment film 12 of the rubbing cloth 14 wound around the second roller 22 is larger than the push-in amount F 1 for the alignment layer 12 of the rubbing cloth 14 wound around the first roller 20. The rotational speed of the second roller 22 is larger than the rotational speed of the first roller 20.

ラビング工程は、ラビング布14が配向膜12を擦る方向が配向膜12の移動方向とは反対になるように行った後に、ラビング布14が配向膜12を擦る方向が配向膜12の移動方向と同じになるように行う。その結果、プレチルト角が小さくなるようにラビングを行うことができることを発明者等は見出した。本発明の実施形態に係る液晶表示装置の製造方法は、さらに公知のプロセスを含む。   The rubbing process is performed so that the rubbing cloth 14 rubs the alignment film 12 in a direction opposite to the moving direction of the alignment film 12, and then the rubbing cloth 14 rubs the alignment film 12 in the moving direction of the alignment film 12. Do the same. As a result, the inventors have found that rubbing can be performed so as to reduce the pretilt angle. The manufacturing method of the liquid crystal display device according to the embodiment of the present invention further includes a known process.

図2及び図3は、本発明の実施形態に係る液晶表示装置の製造方法の変形例を説明する図である。   2 and 3 are diagrams illustrating a modification of the method for manufacturing the liquid crystal display device according to the embodiment of the present invention.

この変形例では、図2に示すように、ローラ110によって、ラビング布114が配向膜12を擦る方向が配向膜12の移動方向とは反対になるように、第1回のラビングを行う。その後に、図3に示すように、図2に示すローラ110を再度使用し、これによって、ラビング布114が配向膜12を擦る方向が配向膜12の移動方向と同じになるように、第2回のラビングを行う。つまり、この例では、1つのローラ110で2回のラビングを行う。   In this modified example, as shown in FIG. 2, the first rubbing is performed by the roller 110 so that the rubbing cloth 114 rubs the alignment film 12 in the opposite direction to the moving direction of the alignment film 12. After that, as shown in FIG. 3, the roller 110 shown in FIG. 2 is used again, so that the rubbing cloth 114 rubs the alignment film 12 in the same direction as the movement direction of the alignment film 12. Rubbing is performed once. That is, in this example, one roller 110 performs rubbing twice.

図3に示す第2回のラビングでのラビング布114の配向膜12に対する押し込み量Fは、図2に示す第1のラビングでのラビング布114の配向膜12に対する押し込み量Fよりも大きい。図3に示す第2回のラビングでのローラ110の回転数は、図2に示す第1回のラビングでのローラ110の回転数よりも大きい。本変形例でも、プレチルト角が小さくなることは、上述した実施形態と同様である。 Push-in amount F 2 of the alignment film 12 of the rubbing cloth 114 in the second round of rubbing as shown in FIG. 3 is greater than the push-in amount F 1 for the alignment layer 12 of the rubbing cloth 114 in the first rubbing shown in FIG. 2 . The rotation speed of the roller 110 in the second rubbing shown in FIG. 3 is larger than the rotation speed of the roller 110 in the first rubbing shown in FIG. Also in this modification, the pretilt angle is reduced as in the above-described embodiment.

次に、本実施形態に係る液晶表示装置の製造方法を適用した実験結果を説明する。   Next, an experimental result in which the method for manufacturing the liquid crystal display device according to this embodiment is applied will be described.

図4は、従来のラビング方法を適用した実験工程を説明する図である。この実験では、第1ローラ1及び第2ローラ2を同じ方向に回転させて、ラビング布4と対向する側においてラビング布4の移動と同じ方向に配向膜が塗布された基板3(カラーフィルタ基板及びTFT基板)を移動させた。移動速度は40mm/sとした。なお、第1ローラ1及び第2ローラ2のラビング布4が基板3を押し付ける力の大きさを表す押し込み量は、カラーフィルタ基板とTFT基板で異なるようにした。   FIG. 4 is a diagram for explaining an experimental process to which a conventional rubbing method is applied. In this experiment, the first roller 1 and the second roller 2 are rotated in the same direction, and the substrate 3 (color filter substrate) on which the alignment film is applied in the same direction as the movement of the rubbing cloth 4 on the side facing the rubbing cloth 4. And the TFT substrate) were moved. The moving speed was 40 mm / s. It should be noted that the pressing amount representing the magnitude of the force with which the rubbing cloth 4 of the first roller 1 and the second roller 2 presses the substrate 3 was made different between the color filter substrate and the TFT substrate.

図5は、本実施形態を適用した実験工程を説明する図である。この実験では、第1ローラ1及び第2ローラ2を反対方向に回転させて、上記実施形態で説明した内容が該当するように基板3を移動させた。なお、押し込み量を変えて、仕様1,2,3の3パターンの実験を行った。それ以外の条件は、図4に示す実験と同じである。   FIG. 5 is a diagram for explaining an experimental process to which the present embodiment is applied. In this experiment, the 1st roller 1 and the 2nd roller 2 were rotated in the opposite direction, and the board | substrate 3 was moved so that the content demonstrated by the said embodiment may correspond. In addition, experiment of 3 patterns of specifications 1, 2, and 3 was performed by changing the amount of pushing. The other conditions are the same as in the experiment shown in FIG.

それぞれの実験結果は下記の通りである。   The results of each experiment are as follows.

Figure 2011107487
Figure 2011107487

表の「押し込み量」の欄で、「CF」は、カラーフィルタ基板に形成された配向膜に対する押し込み量を表し、「TFT」は、TFT基板に形成された配向膜に対する押し込み量を表している。また、押し込み量の数値は、「第1ローラ1の押し込み量/第2ローラ2の押し込み量」の順で記してある。   In the column of “push amount” in the table, “CF” represents the push amount with respect to the alignment film formed on the color filter substrate, and “TFT” represents the push amount with respect to the alignment film formed on the TFT substrate. . Further, the numerical value of the pushing amount is described in the order of “the pushing amount of the first roller 1 / the pushing amount of the second roller 2”.

表から明らかなように、従来方法では2.66°であったプレチルト角が、本実施形態を適用すると仕様1,2,3でそれぞれ2.17°、2.16°、2.35°となっており、いずれの仕様でもプレチルト角が小さくなることが分かった。   As can be seen from the table, the pretilt angle that was 2.66 ° in the conventional method is 2.17 °, 2.16 °, and 2.35 ° in the specifications 1, 2, and 3, respectively, when this embodiment is applied. Thus, it was found that the pretilt angle is small in any specification.

本発明は、上述した実施形態に限定されるものではなく種々の変形が可能である。例えば、実施形態で説明した構成は、実質的に同一の構成、同一の作用効果を奏する構成又は同一の目的を達成することができる構成で置き換えることができる。   The present invention is not limited to the above-described embodiments, and various modifications can be made. For example, the configuration described in the embodiment can be replaced with substantially the same configuration, a configuration that exhibits the same operational effects, or a configuration that can achieve the same purpose.

10 ローラ、12 配向膜、14 ラビング布、16 基板、18 ステージ、20 第1ローラ、22 第2ローラ、110 ローラ、114 ラビング布、 F 押し込み量、F 押し込み量。 10 roller, 12 alignment film, 14 rubbing cloth, 16 substrate, 18 stage, 20 first roller, 22 second roller, 110 roller, 114 rubbing cloth, F 1 pushing amount, F 2 pushing amount.

Claims (7)

回転するローラに対して相対的に配向膜を移動させながら、前記配向膜の表面を、前記ローラに巻き付けられたラビング布で擦るラビング工程を含み、
前記ラビング工程は、前記ラビング布が前記配向膜を擦る方向が前記配向膜の移動方向とは反対になるように行った後に、前記ラビング布が前記配向膜を擦る方向が前記配向膜の移動方向と同じになるように行うことを特徴とする液晶表示装置の製造方法。
A rubbing step of rubbing the surface of the alignment film with a rubbing cloth wound around the roller while moving the alignment film relative to the rotating roller;
The rubbing step is performed so that the rubbing cloth rubs the alignment film in a direction opposite to the moving direction of the alignment film, and then the rubbing cloth rubs the alignment film in the moving direction of the alignment film. A method for manufacturing a liquid crystal display device, wherein
請求項1に記載された液晶表示装置の製造方法において、
前記ローラは、第1ローラと、前記第1ローラよりも前記配向膜の移動方向の前方に位置する第2ローラと、を含み、
前記第1ローラ及び前記第2ローラのそれぞれに前記ラビング布が巻きつけられ、
前記第1ローラ及び前記第2ローラが前記配向膜に対向する側において、前記第1ローラの回転方向と前記配向膜の移動方向とが反対であり、前記第2ローラの回転方向と前記配向膜の移動方向とが同じであることを特徴とする液晶表示装置の製造方法。
In the manufacturing method of the liquid crystal display device described in Claim 1,
The roller includes a first roller, and a second roller positioned in front of the first roller in the direction of movement of the alignment film,
The rubbing cloth is wound around each of the first roller and the second roller,
On the side where the first roller and the second roller face the alignment film, the rotation direction of the first roller and the movement direction of the alignment film are opposite, and the rotation direction of the second roller and the alignment film The liquid crystal display device manufacturing method is characterized in that the moving direction of the liquid crystal display device is the same.
請求項2に記載された液晶表示装置の製造方法において、
前記第2ローラに巻き付けられた前記ラビング布の前記配向膜に対する押し込み量は、前記第1ローラに巻き付けられた前記ラビング布の前記配向膜に対する押し込み量よりも大きいことを特徴とする液晶表示装置の製造方法。
In the manufacturing method of the liquid crystal display device described in Claim 2,
An amount of pressing of the rubbing cloth wound around the second roller into the alignment film is larger than an amount of pressing of the rubbing cloth wound around the first roller into the alignment film. Production method.
請求項2又は3に記載された液晶表示装置の製造方法において、
前記第2ローラの回転数は、前記第1ローラの回転数よりも大きいことを特徴とする液晶表示装置の製造方法。
In the manufacturing method of the liquid crystal display device described in Claim 2 or 3,
The method of manufacturing a liquid crystal display device, wherein the rotation speed of the second roller is larger than the rotation speed of the first roller.
請求項1に記載された液晶表示装置の製造方法において、
前記ローラによって、前記ラビング布が前記配向膜を擦る方向が前記配向膜の移動方向とは反対になるように、第1回のラビングを行った後に、
前記ローラによって、前記ラビング布が前記配向膜を擦る方向が前記配向膜の移動方向と同じになるように、第2回のラビングを行うことを特徴とする液晶表示装置の製造方法。
In the manufacturing method of the liquid crystal display device described in Claim 1,
After performing the first rubbing by the roller so that the rubbing cloth rubs the alignment film opposite to the moving direction of the alignment film,
A method of manufacturing a liquid crystal display device, characterized in that the rubbing is performed a second time by the roller so that the rubbing cloth rubs the alignment film in the same direction as the movement direction of the alignment film.
請求項5に記載された液晶表示装置の製造方法において、
前記第2回のラビングでの前記ラビング布の前記配向膜に対する押し込み量は、前記第1のラビングでの前記ラビング布の前記配向膜に対する押し込み量よりも大きいことを特徴とする液晶表示装置の製造方法。
In the manufacturing method of the liquid crystal display device described in Claim 5,
A manufacturing method of a liquid crystal display device, wherein a pressing amount of the rubbing cloth with respect to the alignment film in the second rubbing is larger than a pressing amount of the rubbing cloth with respect to the alignment film in the first rubbing. Method.
請求項5又は6に記載された液晶表示装置の製造方法において、
前記第2回のラビングでの前記ローラの回転数は、前記第1回のラビングでの前記ローラの回転数よりも大きいことを特徴とする液晶表示装置の製造方法。
In the manufacturing method of the liquid crystal display device according to claim 5 or 6,
The method of manufacturing a liquid crystal display device, wherein a rotation speed of the roller in the second rubbing is larger than a rotation speed of the roller in the first rubbing.
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KR101268240B1 (en) * 2011-10-14 2013-05-31 하이디스 테크놀로지 주식회사 Rubbing apparatus for liquid crystal display
KR101345969B1 (en) * 2011-12-27 2014-01-03 하이디스 테크놀로지 주식회사 Rubbing apparatus for liquid crystal display
CN110716339A (en) * 2018-07-12 2020-01-21 夏普株式会社 Method for manufacturing color filter substrate with alignment film and method for manufacturing liquid crystal panel
CN110716353A (en) * 2018-07-12 2020-01-21 夏普株式会社 Method for manufacturing array substrate with alignment film and method for manufacturing liquid crystal panel

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KR101268240B1 (en) * 2011-10-14 2013-05-31 하이디스 테크놀로지 주식회사 Rubbing apparatus for liquid crystal display
KR101345969B1 (en) * 2011-12-27 2014-01-03 하이디스 테크놀로지 주식회사 Rubbing apparatus for liquid crystal display
CN110716339A (en) * 2018-07-12 2020-01-21 夏普株式会社 Method for manufacturing color filter substrate with alignment film and method for manufacturing liquid crystal panel
CN110716353A (en) * 2018-07-12 2020-01-21 夏普株式会社 Method for manufacturing array substrate with alignment film and method for manufacturing liquid crystal panel

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