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    • 3. 发明申请
    • Retardation film and polyester resin for optical use
    • 用于光学用途的延迟膜和聚酯树脂
    • US20090207490A1
    • 2009-08-20
    • US11920777
    • 2006-05-23
    • Hideki MoriyamaShigetoshi MaekawaJun SakamotoAkimitsu TsukudaMasahiro KimuraRisa Taniguchi
    • Hideki MoriyamaShigetoshi MaekawaJun SakamotoAkimitsu TsukudaMasahiro KimuraRisa Taniguchi
    • G02B1/08G02B5/30C08K5/5317
    • C08J5/18C08G63/199C08G63/553C08G63/672C08J2367/00G02B5/3025
    • The present invention relates to a retardation film using polyester having a photoelastic coefficient of −40×10−12 Pa−1 to 40×10−12 Pa−1. The present invention also relates to a polyester resin for optical use which contains a phosphorus compound, and an alicyclic component and a fluorene derivative component as constituents, and satisfies the following equations (6) and (7): 100° C.≦glass transition temperature≦150° C.  (6) and 1.0≦(Ma/2+Mb+Mc)/P≦5.0  (7), wherein Ma is the number of moles of an alkali metal element contained in 1 ton of the polyester resin, Mb is the number of moles of an alkaline earth metal element contained in 1 ton of the polyester resin, Mc is the sum of the number of moles of a zinc element (Zn), a cobalt element (Co) and a manganese element (Mn) contained in 1 ton of the polyester resin, and P is the number of moles of a phosphorus element contained in 1 ton of the polyester resin.
    • 本发明涉及使用光弹性系数为-40×10-12Pa-1〜40×10-12Pa-1的聚酯的延迟膜。 本发明还涉及含有磷化合物,脂环族成分和芴衍生物成分作为成分的光学用聚酯树脂,并且满足下列等式(6)和(7):<?在线式 描述=“在线公式”end =“lead”?> 100°C <=玻璃化转变温度<= 150°C(6)<?in-line-formula description =“In-line Formulas”end = “tail”?> <?in-line-formula description =“In-line Formulas”end =“lead”?>和<?in-line-formula description =“In-line Formulas”end =“tail”?> <?in-line-formula description =“In-line Formulas”end =“lead”?> 1.0 <=(Ma / 2 + Mb + Mc)/ P <= 5.0(7) description =“In-line Formulas”end =“tail”?>其中Ma是1吨聚酯树脂中含有的碱金属元素的摩尔数,Mb是包含在碱性金属元素中的碱金属元素的摩尔数 1吨聚酯树脂,Mc是锌元素(Zn),钴元素(Co)和人的摩尔数之和 1吨聚酯树脂中含有的甘油元素(Mn),P是1吨聚酯树脂中含有的磷元素的摩尔数。
    • 7. 发明申请
    • PATTERN FORMING METHOD
    • 图案形成方法
    • US20140199852A1
    • 2014-07-17
    • US14240615
    • 2012-08-16
    • Masahiro KimuraTomonori UmezakiAkiou Kikuchi
    • Masahiro KimuraTomonori UmezakiAkiou Kikuchi
    • H01L21/3213H01L27/115
    • H01L21/32135H01L21/30604H01L21/31116H01L21/31138H01L21/31144H01L21/6719H01L27/11578H01L27/11582H01L29/66833H01L29/7926
    • A pattern forming method is provided for forming a pattern of a multilayer film including insulative films and electrically conductive films stacked together and having a hole formed therein on a substrate with the electrically conductive film being selectively accurately indented from an inner peripheral surface of the hole. The pattern forming method includes the steps of: alternately stacking at least two insulative films and at least two polysilicon films on a substrate to form a multilayer film including the at least two insulative films and the at least two polysilicon films; forming a hole extending through the at least two insulative films and the at least two polysilicon films in the multilayer film; and selectively etching the polysilicon films from a side wall of the hole through isotropic etching by feeding into the hole an etching gas prepared by diluting fluorine-containing halogen gas with an inert gas.
    • 提供了图案形成方法,用于形成包括绝缘膜和导电膜的多层膜的图案,所述多层膜层叠在一起并且在基板上形成有孔,其中导电膜从孔的内周表面选择性地精确地凹入。 图案形成方法包括以下步骤:在衬底上交替堆叠至少两个绝缘膜和至少两个多晶硅膜,以形成包括至少两个绝缘膜和至少两个多晶硅膜的多层膜; 在所述多层膜中形成延伸穿过所述至少两个绝缘膜和所述至少两个多晶硅膜的孔; 并通过各向同性蚀刻从孔的侧壁选择性地蚀刻多晶硅膜,通过向惰性气体中稀释含氟卤素气体而制备的蚀刻气体。
    • 9. 发明授权
    • Exhaust emission control device
    • 废气排放控制装置
    • US08425851B2
    • 2013-04-23
    • US12674106
    • 2008-08-27
    • Masahiro Kimura
    • Masahiro Kimura
    • B01D50/00
    • B01D53/9454B01D2251/2067B01D2257/404B01D2257/702F01N3/021F01N3/2066F01N3/28F01N13/009F01N13/0097F01N13/1822F01N2610/02Y02A50/2324Y02A50/2325Y02T10/22Y02T10/24
    • The invention has its object to provide an exhaust emission control device which can be favorably mounted on a vehicle without causing relative twisting between a particulate filter and a selective reduction catalyst. In the exhaust emission control device in which a particulate filter and a selective reduction catalyst are housed by casings, respectively, and arranged side by side such that inlet ends of the filter and the catalyst are oriented to one and the same direction, an S-shaped communication passage being provided for introduction of the exhaust gas from an outlet end of the filter to an inlet end of the adjacent catalyst through antithetical turnabout, urea water being addible intermediately of the communication passage, the casings for the filter and catalyst are integrally restrained by rigid plates (restraining members).
    • 本发明的目的是提供一种可以有利地安装在车辆上的废气排放控制装置,而不会引起颗粒过滤器和选择还原催化剂之间的相对扭转。 在分别由壳体容纳有微粒过滤器和选择还原催化剂的排气排放控制装置中,并排配置,使得过滤器和催化剂的入口端部朝向同一方向, 设置有用于将废气从过滤器的出口端引导到相邻催化剂的入口端的反向离合器,形成连通通道中间的尿素水,过滤器和催化剂的壳体整体受到限制 通过刚性板(限制构件)。
    • 10. 发明授权
    • Information concealing label
    • 信息隐藏标签
    • US08414031B2
    • 2013-04-09
    • US12232081
    • 2008-09-10
    • Kenji HiroseKayoko HayashiMasahiro Kimura
    • Kenji HiroseKayoko HayashiMasahiro Kimura
    • B42D15/00
    • G09F3/10Y10T428/14
    • An information concealing label includes a label base and an adhesive layer on the back side thereof. The information concealing label is affixed by means of the adhesive layer onto an information writing section in which information to be concealed is written. The adhesive layer includes a strong adhesive portion positioned at the periphery of the label base and a weak adhesive portion positioned in the area inside the strong adhesive portion. The label base has a group of corrugated slits formed along the boundary between the weak adhesive portion and the strong adhesive portion. The weak adhesive portion of the label base can be peeled off the information writing section into an unsealed state with the strong adhesive portion adhering to the information writing section by cutting through the corrugated slits.
    • 信息隐藏标签在其背面包括标签基底和粘合剂层。 信息隐藏标签通过粘合剂层粘贴到写入要被隐藏的信息的信息写入部分上。 粘合剂层包括位于标签基部周边的强粘合剂部分和位于强粘合剂部分内的区域中的弱粘合剂部分。 标签基部具有沿着弱粘合剂部分和强粘合剂部分之间的边界形成的一组波纹狭缝。 标签基部的弱粘合部分可以通过切割波纹狭缝而将强粘合部分粘附到信息写入部分而从信息写入部分剥离成非密封状态。