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    • 82. 发明授权
    • Polyester resin composition, process for producing the same and molding thereof
    • 聚酯树脂组合物,其制造方法和成型方法
    • US08143356B2
    • 2012-03-27
    • US11577596
    • 2005-12-12
    • Takeshi OgawaMotohiro MunakataToshio Kambe
    • Takeshi OgawaMotohiro MunakataToshio Kambe
    • C08G63/85
    • C08L67/02C08G63/85C08K3/10C08L2666/18
    • A method for producing a polyester resin composition C), which comprises melt-kneading a polyester resin (A) which satisfies the following formulae (1), (2) and (3) and a polyester resin (B) which satisfies the following formula (4): P1≧10  (1) 0.1≦Ge1≦1.5  (2) 0.001≦Ge1/P1≦0.15  (3) 0≦P2/Ti1≦80  (4) provided that in the formulae (1), (2) and (3), P1 is the content (mol) of phosphorus atoms and Ge1 is the content (mol) of germanium atoms, per ton of the polyester resin (A), and in the formula (4), P2 is the content (mol) of phosphorus atoms and Ti1 is the content (mol) of titanium atoms, per ton of the polyester resin (B). A polyester resin composition (C) obtained by the method, and a molded product such as a film made from such a composition are also provided.
    • 一种聚酯树脂组合物C)的制造方法,其包括熔融捏合满足下式(1),(2)和(3)的聚酯树脂(A)和满足下式的聚酯树脂(B) (4)式中:P1≥10(1)0.1≦̸ Ge1≦̸ 1.5(2)0.001≦̸ Ge1 / P1≦̸ 0.15(3)0≦̸ P2 / Ti1& 2)和(3)中,P1是磷原子的含量(mol),Ge1是每吨聚酯树脂(A)中锗原子的含量(mol),在式(4)中,P2是 磷原子的含量(mol),Ti1是每吨聚酯树脂(B)的钛原子的含量(mol)。 还提供了通过该方法获得的聚酯树脂组合物(C)和由这种组合物制成的膜的成型产品。
    • 83. 发明授权
    • Label peeling method for label paper sheet and label printer
    • 标签纸和标签打印机的标签剥离方法
    • US07905976B2
    • 2011-03-15
    • US11577879
    • 2005-10-20
    • Takeshi Ogawa
    • Takeshi Ogawa
    • B29C65/48B29C63/04B32B37/26B32B38/14
    • B65C11/0289B65C2210/0078Y10T156/1174Y10T156/1195Y10T156/1956Y10T156/1994
    • A label peeling method for label sheet includes: conveying a label sheet including a base sheet and a label affixed to the base sheet along a conveying path that is bent at a bent portion; and performing a printing operation on the label from a beginning portion of printing while conveying the label sheet, wherein the conveying of the label sheet and the printing operation are stopped once in a state where the label sheet is conveyed until a conveying-direction leading end portion of the label reaches a downstream side of the bent portion of the conveying path, after a stopping state is held for a predetermined time, the conveying of the label sheet and the printing operation are resumed so that the label is peeled from the base sheet at the bent portion of the conveying path.
    • 用于标签片的标签剥离方法包括:沿着弯曲部分弯曲的输送路径输送包括基片和贴在基片上的标签的标签片; 并且在输送标签片的同时从打印的开始部分在标签上执行打印操作,其中标签纸的传送和打印操作在标签片材被输送的状态下停止一次,直到输送方向前端 标签的一部分到达传送路径的弯曲部分的下游侧,在停止状态保持预定时间之后,恢复标签纸的输送和打印操作,使得标签从基片剥离 在输送路径的弯曲部分。
    • 86. 发明申请
    • IMAGE-PICKUP APPARATUS
    • 图像拾取装置
    • US20090153693A1
    • 2009-06-18
    • US12328559
    • 2008-12-04
    • Kenji OnukiYoshinobu SatoTakeshi Ogawa
    • Kenji OnukiYoshinobu SatoTakeshi Ogawa
    • H04N5/228
    • H04N5/23212H04N5/23245H04N9/045
    • The image-pickup apparatus includes an image acquiring part respectively photoelectrically converting first and second object images respectively formed by first and second light fluxes into first image data and second image data, the first and second light fluxes being formed by dividing a light flux from an image-pickup optical system by a pupil divider, and photoelectrically converting a third object image formed by a third light flux of the light flux from the image-pickup optical system into third image data, the third light flux being not divided by the pupil divider, and a split image generating part which generates split image data to be displayed in the third image data. The split image generating part generates the split image data based on the first image data and the second image data, and adds color information extracted from the third image data to the split image data.
    • 图像拾取装置包括:图像获取部分分别将由第一和第二光束分别形成的第一和第二对象图像光电转换为第一图像数据和第二图像数据,第一和第二光束通过将来自 通过光瞳分割器对摄像光学系统进行摄像光学系统,并且将由来自摄像光学系统的光束的第三光束形成的第三物体图像光电转换为第三图像数据,第三光束不被光瞳分割器 以及生成分割图像数据以在第三图像数据中显示的分割图像生成部。 分割图像生成部基于第一图像数据和第二图像数据生成分割图像数据,并将从第三图像数据提取的颜色信息添加到分割图像数据。
    • 87. 发明申请
    • LABEL PEELING METHOD FOR LABEL PAPER SHEET AND LABEL PRINTER
    • 标签纸和标签打印机的标签剥离方法
    • US20090120578A1
    • 2009-05-14
    • US11577879
    • 2005-10-20
    • Takeshi Ogawa
    • Takeshi Ogawa
    • B32B38/10
    • B65C11/0289B65C2210/0078Y10T156/1174Y10T156/1195Y10T156/1956Y10T156/1994
    • A label peeling method for label sheet includes: conveying a label sheet including a base sheet and a label affixed to the base sheet along a conveying path that is bent at a bent portion; and performing a printing operation on the label from a beginning portion of printing while conveying the label sheet, wherein the conveying of the label sheet and the printing operation are stopped once in a state where the label sheet is conveyed until a conveying-direction leading end portion of the label reaches a downstream side of the bent portion of the conveying path, after a stopping state is held for a predetermined time, the conveying of the label sheet and the printing operation are resumed so that the label is peeled from the base sheet at the bent portion of the conveying path.
    • 用于标签片的标签剥离方法包括:沿着弯曲部分弯曲的输送路径输送包括基片和贴在基片上的标签的标签片; 并且在输送标签片的同时从打印的开始部分在标签上执行打印操作,其中标签纸的传送和打印操作在标签片材被输送的状态下停止一次,直到输送方向前端 标签的一部分到达传送路径的弯曲部分的下游侧,在停止状态保持预定时间之后,恢复标签纸的输送和打印操作,使得标签从基片剥离 在输送路径的弯曲部分。
    • 89. 发明授权
    • Board for ion generation and ion generating apparatus
    • 用于离子发生和离子发生装置的板
    • US07359176B2
    • 2008-04-15
    • US11066503
    • 2005-02-24
    • Manabu MiyaishiTakeshi OgawaYoshihiro UshioMasakazu YasuiNobuyuki Tanaka
    • Manabu MiyaishiTakeshi OgawaYoshihiro UshioMasakazu YasuiNobuyuki Tanaka
    • H02T23/00
    • B03C3/383A61L9/22B03C3/32H01T23/00
    • Provided is a board for ion generation that is capable of generating negative ions with much better efficiency and in an amount larger than that of positive ions. In the board for ion generation, a discharge electrode is formed on one principal surface of a substrate formed of ceramics, an induction electrode is formed on another principal surface of the substrate, the discharge electrode and the induction electrode being disposed opposite to each other, a first protective layer and a second protective layer are formed so as to cover the discharge electrode and the induction electrode, respectively. Surface discharge is generated on a surface of the first protective layer by applying an AC voltage between the discharge electrode and induction electrode, and positive ions and negative ions are alternately generated in the air. In the board for ion generation, the porosity of the substrate is 5 to 10 vol. %.
    • 提供了一种用于离子产生的板,其能够以比正离子更大的效率产生负离子。 在用于离子生成的基板中,在由陶瓷形成的基板的一个主面上形成放电电极,在基板的另一主面上形成感应电极,放电电极和感应电极相对配置, 形成第一保护层和第二保护层,以分别覆盖放电电极和感应电极。 通过在放电电极和感应电极之间施加交流电压而在第一保护层的表面上产生表面放电,在空气中交替产生正离子和负离子。 在用于离子生成的板中,基材的孔隙率为5〜10体积%。 %。