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    • 4. 发明授权
    • Color filter substrate and liquid crystal display panel
    • 滤色片基板和液晶显示面板
    • US07643109B2
    • 2010-01-05
    • US11355510
    • 2006-02-16
    • Tomoya KawashimaNorihisa Moriya
    • Tomoya KawashimaNorihisa Moriya
    • G02F1/1335G02F1/1333G02F1/1339
    • G02F1/1339G02F1/13363
    • There are provided a substrate which has solved an unsatisfactory adhesion problem of a seal part in a liquid crystal cell comprising a retardation layer provided on the inner side of the cell, and a liquid crystal cell using the substrate. A color filter substrate includes a substrate 11, and at least a black matrix layer 12, a color filter layer 13, and a retardation layer 14 stacked on the substrate 11. The black matrix layer 12 and the color filter layer 13 are stacked on the substrate it while providing a margin around the periphery of the substrate 11. The retardation layer 14 is stacked on the black matrix layer 12 and the color filter layer 13 in a larger area than the area where the black matrix layer 12 and the color filter layer 13 are stacked. The substrate 11 in its margin, where neither the black matrix layer 12 nor the color filter layer 13 is stacked, is a predetermined seal area.
    • 提供了一种解决了在包括设置在电池内侧的相位差层的液晶单元中的密封部分的不令人满意的粘合问题的基板和使用该基板的液晶单元。 滤色器基板包括基板11,以及堆叠在基板11上的至少黑矩阵层12,滤色器层13和延迟层14.黑矩阵层12和滤色器层13堆叠在 衬底11,同时在衬底11的周围提供边缘。相位差层14以比黑矩阵层12和滤色器层的区域大的区域堆叠在黑矩阵层12和滤色器层13上 13堆叠。 在其边缘处的基板11,其中黑矩阵层12和滤色器层13都不堆叠,是预定的密封区域。
    • 5. 发明授权
    • Process for producing optical element
    • 光学元件制造工艺
    • US07575786B2
    • 2009-08-18
    • US11390990
    • 2006-03-28
    • Shinji HayashiTomoya KawashimaNorihisa Moriya
    • Shinji HayashiTomoya KawashimaNorihisa Moriya
    • C09K19/00C09K19/06C09K19/52
    • G02F1/133555C09K19/3852C09K2019/0448C09K2219/03G02F2001/133633G02F2001/133638G02F2413/09Y10T428/10Y10T428/1036
    • A process for producing an optical element having a patterned quarter-wave retardation for use in a semitransmission reflection liquid crystal display device is provided. The process includes the steps of coating a coating liquid including a polymerizable liquid crystal onto a base material to form a coating film, aligning the polymerizable liquid crystal to a liquid crystal phase state, applying an ionizing radiation to the coating film through a photomask to polymerize the polymerizable liquid crystal in the liquid crystal phase state, whereby the polymerizable liquid crystal only in its exposed part is cured to form the liquid crystal layer, and heating the resultant substrate with the coating film formed thereon to bring the polymerizable liquid crystal in the uncured state to an isotropic phase state and, in this state, to polymerize the uncured polymerizable liquid crystal to form an isotropic layer.
    • 提供了一种用于制造用于半透射反射液晶显示装置的具有图案化的四分之一波长延迟的光学元件的工艺。 该方法包括以下步骤:将包含可聚合液晶的涂布液涂覆在基材上以形成涂膜,将可聚合液晶取向为液晶相状态,通过光掩模将电离辐射施加到涂膜上以聚合 可聚合液晶处于液晶相状态,由此仅在其暴露部分中的可聚合液晶被固化以形成液晶层,并且在其上形成有涂膜来加热所得基板,以使可聚合液晶在未固化的 状态为各向同性相状态,并且在该状态下聚合未固化的可聚合液晶以形成各向同性层。
    • 10. 发明申请
    • Process for producing optical element
    • 光学元件制造工艺
    • US20060222783A1
    • 2006-10-05
    • US11390990
    • 2006-03-28
    • Shinji HayashiTomoya KawashimaNorihisa Moriya
    • Shinji HayashiTomoya KawashimaNorihisa Moriya
    • C09K19/52
    • G02F1/133555C09K19/3852C09K2019/0448C09K2219/03G02F2001/133633G02F2001/133638G02F2413/09Y10T428/10Y10T428/1036
    • There is provided a process for producing an optical element having a patterned quarter-wave retardation for use in a semitransmission reflection liquid crystal display device in a simple and cost-effective manner. The process comprises the steps of: coating a coating liquid comprising a polymerizable liquid crystal onto a base material to form a coating film; aligning the polymerizable liquid crystal to a liquid crystal phase state; applying an ionizing radiation to the coating film through a photomask to polymerize the polymerizable liquid crystal in the liquid crystal phase state, whereby the polymerizable liquid crystal only in its exposed part is cured to form the liquid crystal layer; and heating the resultant substrate with the coating film formed thereon to bring the polymerizable liquid crystal in the uncured state to an isotropic phase state and, in this state, to polymerize the uncured polymerizable liquid crystal to form an isotropic layer.
    • 提供了一种以简单且成本有效的方式制造用于半透射反射液晶显示装置的具有图案化的四分之一波长延迟的光学元件的方法。 该方法包括以下步骤:将包含可聚合液晶的涂布液涂覆在基材上以形成涂膜; 将可聚合液晶取向为液晶相状态; 通过光掩模将电离辐射施加到涂膜上,以使液晶相状态的聚合性液晶聚合,从而固化其在露出部分的聚合性液晶,形成液晶层; 并将所得到的基材加热形成在其上的涂膜,使聚合性液晶处于未固化状态,使其成为各向同性相状态,在该状态下使未固化的聚合性液晶聚合,形成各向同性层。