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    • 71. 发明授权
    • Method for producing stretchable sheet
    • 拉伸片制造方法
    • US08012388B2
    • 2011-09-06
    • US12444657
    • 2007-12-07
    • Kenichi AkakiYoshihiko MatsumotoShinichi Ishikawa
    • Kenichi AkakiYoshihiko MatsumotoShinichi Ishikawa
    • B29C55/04B29C55/06B29C71/00
    • B29C55/18D04H13/00D06C3/06
    • A stretchable sheet having a large stretch amount is produced by increasing a drawing amount given to the nonwoven fabric. A method for producing the stretchable sheet from a nonwoven fabric containing a plurality of types of fibers, that is the nonwoven fabric having a longitudinal direction, a width direction and a thickness direction. The method includes a first drawing step of drawing the nonwoven fabric in the longitudinal direction by applying a tension in the longitudinal direction of the nonwoven fabric, and a second drawing step of drawing, in the longitudinal direction, the nonwoven fabric that has been drawn in the first drawing step with a plurality of teeth formed on outer circumferential faces of each of a pair of gear rolls, the drawing being performed by passing the nonwoven fabric through a gap between the gear rolls that rotate while the teeth are being engaged with one another.
    • 通过增加给予无纺布的拉伸量来制造拉伸量大的伸缩性片材。 从含有多种纤维的无纺布制造伸缩性片材的方法,即具有纵向,宽度方向和厚度方向的无纺布。 该方法包括:通过在无纺布的长度方向施加拉力而在纵向上拉伸非织造布的第一拉伸工序,以及在纵向拉伸已拉制的无纺布的第二拉伸工序 第一拉伸步骤具有形成在一对齿轮辊的每一个的外周面上的多个齿,该图是通过使无纺布通过齿轮之间的间隙而进行的,所述齿轮辊之间的间隙在齿彼此啮合的同时旋转 。
    • 73. 发明授权
    • Optical film
    • 光学胶片
    • US07842744B2
    • 2010-11-30
    • US12400925
    • 2009-03-10
    • Yoshinori NegishiShinichi IshikawaEtsuo TobitaTakashi Ayabe
    • Yoshinori NegishiShinichi IshikawaEtsuo TobitaTakashi Ayabe
    • C08K5/3495
    • G02B5/223C08K5/3492
    • The present invention provides an optical film, which is excellent in ultraviolet absorption capability at 380 nm with little bleed-out, comprising a resin containing a triazine compound represented by the following general formula (I). (In the formula, R1-R6 may be a hydrogen atom; hydroxyl group; or an organic group selected from among an alkyl group, alkoxy group, dialkyl amino group, alkyl carbonyloxy group, aryl group, arylated alkyl group, aryloxy group, arylated alkyloxy group and an aryl carbonyloxy group having 18 or less carbon atoms, independently. However, the alkyl part of these organic groups may be substituted by a hydroxyl group, halogen atom, cyano group or nitro group, interrupted by an oxygen atom, sulfur atom, carbonyl group, ester group, amide group or imino group, or have a double bond, and these substitutions, interruptions and double bonds may be combined).
    • 本发明提供了一种光学膜,其在380nm,少量渗出时的紫外线吸收能力优异,包括含有由以下通式(I)表示的三嗪化合物的树脂。 (式中,R 1 -R 6可以为氢原子,羟基,或选自烷基,烷氧基,二烷基氨基,烷基羰氧基,芳基,芳基烷基,芳氧基,芳基化的有机基团 烷氧基和碳原子数为18以下的芳基羰氧基,但这些有机基团的烷基部分可以被氧原子,硫原子间隔的羟基,卤素原子,氰基或硝基取代 ,羰基,酯基,酰胺基或亚氨基,或具有双键,并且这些取代,中断和双键可以组合)。
    • 76. 发明申请
    • Optical Film
    • 光学胶片
    • US20070215845A1
    • 2007-09-20
    • US11596113
    • 2005-04-26
    • Yoshinori NegishiShinichi IshikawaEtsuo TobitaTakashi Ayabe
    • Yoshinori NegishiShinichi IshikawaEtsuo TobitaTakashi Ayabe
    • G02B5/30C08K5/3492G02B1/04
    • G02B5/223C08K5/3492
    • The present invention provides an optical film, which is excellent in ultraviolet absorption capability at 380 nm with little bleed-out, comprising a resin containing a triazine compound represented by the following general formula (I). (In the formula, R1-R6 may be a hydrogen atom; hydroxyl group; or an organic group selected from among an alkyl group, alkoxy group, dialkyl amino group, alkyl carbonyloxy group, aryl group, arylated alkyl group, aryloxy group, arylated alkyloxy group and an aryl carbonyloxy group having 18 or less carbon atoms, independently. However, the alkyl part of these organic groups may be substituted by a hydroxyl group, halogen atom, cyano group or nitro group, interrupted by an oxygen atom, sulfur atom, carbonyl group, ester group, amide group or imino group, or have a double bond, and these substitutions, interruptions and double bonds may be combined).
    • 本发明提供了一种光学膜,其在380nm,少量渗出时的紫外线吸收能力优异,包括含有由以下通式(I)表示的三嗪化合物的树脂。 (式中,R 1〜R 6可以是氢原子;羟基;或选自烷基,烷氧基,二烷基氨基的有机基团 烷基羰基氧基,芳基,芳基化烷基,芳氧基,芳基化烷氧基和碳原子数为18以下的芳基羰氧基,但这些有机基团的烷基部分可以被羟基,卤素 原子,氰基或硝基,被氧原子,硫原子,羰基,酯基,酰胺基或亚氨基间隔,或具有双键,并且这些取代,中断和双键可以组合)。
    • 79. 发明申请
    • Carriage robot system and its controlling method
    • 车架机器人系统及其控制方法
    • US20060106497A1
    • 2006-05-18
    • US10521572
    • 2003-05-15
    • Shinichi IshikawaHitoshi WakizakoKazunari Shiraishi
    • Shinichi IshikawaHitoshi WakizakoKazunari Shiraishi
    • G05B15/00
    • H01L21/67259B25J9/1697H01L21/681
    • A carrier robot system and a control method for a carrier robot enabling teaching even when an operator cannot approach a teaching position for wafer conveyance are provided. In a carrier robot system comprising a robot (1) which has a placement portion for placing an object presenting a low-profile form thereon and carries the object and a robot controller (9) for controlling the robot (1), a jig (3) mounted on the placement portion of the robot and having an image pickup member (4), an image processing portion (8) for processing an image picked up by the image pickup member (4), and a superior control portion (10) for controlling the robot controller (9) and image processing portion (8) from a superior position are provided.
    • 提供一种载体机器人系统和用于能够进行教导的载体机器人的控制方法,即使当操作者不能接近用于晶片传送的教学位置时。 在包括机器人(1)的载体机器人系统中,具有用于放置在其上呈现低轮廓形状的物体并承载物体的放置部分和用于控制机器人(1)的机器人控制器(9),夹具(3) ),其具有图像拾取构件(4),用于处理由图像拾取构件(4)拾取的图像的图像处理部分(8),以及用于 提供从上位控制机器人控制器(9)和图像处理部分(8)。