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    • 1. 发明申请
    • TRANSPORTABLE IMAGE FORMING APPARATUS
    • 运输图像形成装置
    • US20130045024A1
    • 2013-02-21
    • US13695571
    • 2011-04-05
    • Masanobu DeguchiShinji KawamuraTakahiro KitanoWataru YoshidaHideki Sekino
    • Masanobu DeguchiShinji KawamuraTakahiro KitanoWataru YoshidaHideki Sekino
    • G03G15/00
    • G03G21/1604G03G2215/00004G03G2221/1681
    • In the state where a handle (2) and a lid (12) are attached to a main body (11), left and right bases (22) of the handle (2) are fitted into recesses (1112, 1113) at coupling portions (111, 112). Left and right shaft supports (91) of the lid (12) are fitted into recesses (1111, 1114). Shaft portions (81) of the left and right bases (22) are fitted from above into a through hole (72) and a through hole (73), respectively, and are supported rotatably about a center axis (200) in the through holes (72, 73). Shafts (93 to 95) of the shaft supports (91, 92) are laterally fitted into through holes (71, 74, 75), respectively, and are supported rotatably about the center axis (200) in the through holes (71, 74, 75). The shaft (94) of the shaft support (92) is laterally fitted into a blind hole (82) of the right base (22).
    • 在手柄(2)和盖(12)附接到主体(11)的状态下,手柄(2)的左右基座(22)在联接部分处嵌入凹部(1112,1113) (111,112)。 盖(12)的左右轴支撑(91)装配到凹部(1111,1114)中。 左右基座(22)的轴部(81)分别从上方嵌入贯通孔(72)和贯通孔(73)中,并且能够围绕通孔(200)的中心轴线 (72,73)。 轴支撑件(91,92)的轴(93至95)分别横向嵌入通孔(71,74,75)中,并且在通孔(71,74)中围绕中心轴线(200)可旋转地支撑 ,75)。 轴支撑件(92)的轴(94)横向配合到右基座(22)的盲孔(82)中。
    • 2. 发明授权
    • Transportable image forming apparatus
    • 可搬运图像形成装置
    • US08862021B2
    • 2014-10-14
    • US13695571
    • 2011-04-05
    • Masanobu DeguchiShinji KawamuraTakahiro KitanoWataru YoshidaHideki Sekino
    • Masanobu DeguchiShinji KawamuraTakahiro KitanoWataru YoshidaHideki Sekino
    • G03G15/00G03G21/16
    • G03G21/1604G03G2215/00004G03G2221/1681
    • In the state where a handle (2) and a lid (12) are attached to a main body (11), left and right bases (22) of the handle (2) are fitted into recesses (1112, 1113) at coupling portions (111, 112). Left and right shaft supports (91) of the lid (12) are fitted into recesses (1111, 1114). Shaft portions (81) of the left and right bases (22) are fitted from above into a through hole (72) and a through hole (73), respectively, and are supported rotatably about a center axis (200) in the through holes (72, 73). Shafts (93 to 95) of the shaft supports (91, 92) are laterally fitted into through holes (71, 74, 75), respectively, and are supported rotatably about the center axis (200) in the through holes (71, 74, 75). The shaft (94) of the shaft support (92) is laterally fitted into a blind hole (82) of the right base (22).
    • 在手柄(2)和盖(12)附接到主体(11)的状态下,手柄(2)的左右基座(22)在联接部分处嵌入凹部(1112,1113) (111,112)。 盖(12)的左右轴支撑(91)装配到凹槽(1111,1114)中。 左右基座(22)的轴部(81)分别从上方嵌入贯通孔(72)和贯通孔(73)中,并且能够围绕通孔(200)的中心轴线 (72,73)。 轴支撑件(91,92)的轴(93至95)分别横向嵌入通孔(71,74,75)中,并且在通孔(71,74)中围绕中心轴线(200)可旋转地支撑 ,75)。 轴支撑件(92)的轴(94)横向配合到右基座(22)的盲孔(82)中。
    • 6. 发明授权
    • Hydrophobicizing apparatus, hydrophobicizing method and storage medium
    • 疏水装置,疏水化方法和储存介质
    • US08430967B2
    • 2013-04-30
    • US12859927
    • 2010-08-20
    • Satoshi ShimmuraTetsuo FukuokaTakahiro Kitano
    • Satoshi ShimmuraTetsuo FukuokaTakahiro Kitano
    • C23C16/00
    • C23C16/24C23C16/4485
    • The hydrophobicizing apparatus includes a vaporizing surface forming member of which surface is located in a vaporizing room; a vaporizing surface heating unit that heats the vaporizing surface forming member; a liquid chemical supply port that supplies a liquid chemical for a hydrophobicizing process on the surface of the vaporizing surface forming member; a gas inlet port that introduces a carrier gas into the vaporizing room; an outlet port that supplies a hydrophobicizing gas vaporized in the vaporizing room; and a processing chamber that performs the hydrophobicizing process on a substrate accommodated therein by the hydrophobicizing gas supplied through the outlet port. With this configuration, the hydrophobicizing gas of a high concentration can be supplied onto the substrate. Further, since the stored liquid chemical is not in contact with the carrier gas when a process is not being performed, degradation of the liquid chemical is suppressed.
    • 疏水化装置包括表面位于蒸发室内的蒸发表面形成构件; 蒸发表面加热单元,其加热蒸发表面形成构件; 在蒸发表面形成构件的表面上提供用于疏水化处理的液体化学品的液体化学物质供给口; 将载气引入蒸发室的气体入口; 提供在蒸发室中蒸发的疏水化气体的出口; 以及处理室,其通过由出口供给的疏水化气体在容纳在其中的基板上进行疏水化处理。 利用这种结构,能够将高浓度的疏水化气体供给到基板上。 此外,由于当不进行处理时,储存的液体化学品不与载气接触,所以抑制了液体化学物质的劣化。
    • 7. 发明申请
    • POLYACRYLIC ACID (SALT)-TYPE WATER ABSORBENT RESIN AND METHOD FOR PRODUCING OF SAME
    • 聚丙烯酸(盐)型吸水树脂及其制造方法
    • US20120157625A1
    • 2012-06-21
    • US13392639
    • 2010-08-27
    • Takahiro KitanoKozo NogiKunihiko Ishizaki
    • Takahiro KitanoKozo NogiKunihiko Ishizaki
    • C08F2/01C08F20/06
    • A61L15/24A61L15/60C08F120/06C08F220/06C08J3/24C08J3/245C08J2300/14C08J2333/02C08L33/08C08F2222/1013
    • Disclosed is a method for producing a water absorbent resin, by which a surface-crosslinked water absorbent resin having excellent physical properties can be efficiently obtained at low cost, while assuring high productivity. When the production scale is increased to a continuous production at 1 t/hr or more, the physical properties are improved and stabilized (for example, standard deviation of the physical properties is reduced) by a surface-crosslinking treatment, and the absorption against pressure (AAP) and liquid permeability (SFC) are further improved. Specifically disclosed is a method for producing a water absorbent resin, which is characterized in that the stirring shaft of the continuous mixing apparatus for the surface-crosslinking agent is heated during the mixing step of the surface-crosslinking agent or that the continuous mixing apparatus for the surface-crosslinking agent is operated at a pressure that is reduced relative to the ambient pressure and a gas flow is passed through the mixing apparatus during the mixing of the surface-crosslinking agent so that the gas flow in the mixing apparatus is 40° C. or more (when defined with respect to the gas temperature at the exit).
    • 公开了一种生产吸水性树脂的方法,通过该方法可以以低成本有效地获得具有优异物理性能的表面交联吸水性树脂,同时确保高生产率。 当生产规模增加到1t / hr以上的连续生产时,通过表面交联处理改善和稳定物理性能(例如物理性能的标准偏差),并且抗压力 (AAP)和液体渗透性(SFC)进一步提高。 具体公开了一种吸水性树脂的制造方法,其特征在于,表面交联剂的连续混合装置的搅拌轴在表面交联剂的混合工序中被加热, 表面交联剂在相对于环境压力降低的压力下操作,并且在混合表面交联剂期间使气流通过混合装置,使得混合装置中的气流为40℃ 或更多(当相对于出口处的气体温度定义时)。
    • 10. 发明申请
    • Solar Cell Array
    • 太阳能电池阵列
    • US20100288336A1
    • 2010-11-18
    • US12681764
    • 2008-10-03
    • Takahiro KitanoToshiaki OhnoAkihito Ito
    • Takahiro KitanoToshiaki OhnoAkihito Ito
    • H01L31/048
    • H01L31/0521F24S25/20F24S25/35F24S25/65H02S20/23Y02B10/12Y02E10/47Y02E10/50
    • Provided is a solar cell array having excellent power generation efficiency by being capable of efficiently cooling solar cell panels with a simple structure. The solar cell array according to the present invention includes a first solar cell panel and a second solar cell panel, and an installation member configured to install the first and second solar cell panels, the installation member being disposed with a space on back surface side of the installation member when installed, and holds the first and second solar cell panels with a gap between a first edge along one side of the first solar cell panel and a second edge along one side of the second solar cell panel, the solar cell array further including a wind-blocking wall configured to extend from a portion holding the first edge of the first solar cell panel toward the back surface, and a configured to allow communication between a space on a front surface side of the first solar cell panel and a space on a back surface side of the second solar cell panel through the gap.
    • 提供一种通过能够以简单的结构有效地冷却太阳能电池面板而具有优异的发电效率的太阳能电池阵列。 根据本发明的太阳能电池阵列包括第一太阳能电池面板和第二太阳能电池面板,以及安装构件,用于安装第一和第二太阳能电池面板,安装构件设置在 安装构件,并且在沿着第一太阳能电池面板的一侧的第一边缘和沿着第二太阳能电池面板的一侧的第二边缘之间具有间隙地保持第一和第二太阳能电池面板,将太阳能电池阵列进一步 包括防风壁,其被配置为从保持第一太阳能电池面板的第一边缘朝向背面的部分延伸,并且被配置为允许第一太阳能电池面板的正面侧的空间与空间 在第二太阳能电池板的背面侧通过间隙。