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    • 1. 发明申请
    • Ink jet recording sheet for plate-making mask film, and process for producing flexographic printing plate
    • 用于制版掩模膜的喷墨记录纸,以及用于制造柔版印刷版的方法
    • US20060068132A1
    • 2006-03-30
    • US11221699
    • 2005-09-09
    • Takuya NakaoYasuo Yamada
    • Takuya NakaoYasuo Yamada
    • B41M5/00
    • B41M5/5218G03F7/2018
    • To provide an ink jet recording sheet for plate-making mask film, which has good exposure characteristics and which presents good air release when contacted with a photosensitive resin plate under reduced pressure. An ink jet recording sheet for plate-making mask film, which comprises a substrate sheet and a porous layer formed thereon and has a total luminous transmittance of at least 70% as stipulated by JIS-K7361-1, wherein the porous layer comprises 100 parts by mass of inorganic particles selected from the group consisting of alumina, alumina hydrate, silica and a silica-alumina composite and having an average particle size of at most 250 nm, from 1 to 30 parts by mass of a binder and from 0.1 to 3 parts by mass of porous particles having an average particle size of from 4 to 15 μm and has a thickness of from 5 to 50 μm and an Oken type smoothness of from 200 to 10,000 seconds as stipulated by J. TAPPI No. 5-2.
    • 提供一种制版掩模薄膜用喷墨记录纸,其具有良好的曝光特性,并且在与感光树脂板在减压下接触时具有良好的空气释放性。 一种用于制版掩模膜的喷墨记录纸,其包括基板和形成在其上的多孔层,并且其总透光率至少为JIS-K7361-1规定的70%,其中多孔层包括100份 的由氧化铝,水合氧化铝,二氧化硅和二氧化硅 - 氧化铝复合体构成的组的无机粒子,平均粒径为250nm以下,1〜30质量份的粘合剂和0.1〜3质量% 按照J.TAPPI No.5-2的规定,平均粒径为4〜15μm,厚度为5〜50μm,Oken型平滑度为200〜10,000秒的多孔质量份。
    • 2. 发明申请
    • INFORMATION PROCESSING APPARATUS AND CONTROLLING METHOD OF THE SAME
    • 信息处理装置及其控制方法
    • US20080182516A1
    • 2008-07-31
    • US12019233
    • 2008-01-24
    • Yasuo Yamada
    • Yasuo Yamada
    • H04B7/00
    • H04M1/2535H04M1/2745H04M1/6066H04M1/7258
    • According to one embodiment, an information processing apparatus, includes a changing unit which, if a command transmitted from a short-distance wireless communications terminal by pushing down a volume control button is received in a standby status in which the short-distance wireless communications terminal makes no connection with the Internet Protocol telephone communications network, changes selection of the telephone number stored in a memory unit, and a calling unit which, if a command transmitted from the short-distance wireless communications terminal by pushing down a call button is received after the changing process of the changing unit, calls the selected telephone number.
    • 根据一个实施例,一种信息处理设备包括:改变单元,如果在短距离无线通信终端的待机状态中接收到从短距离无线通信终端通过按下音量控制按钮发送的命令, 与互联网协议电话通信网络不连接,改变存储在存储器单元中的电话号码的选择,以及呼叫单元,如果通过按下呼叫按钮从短距离无线通信终端发送的命令被接收到 更改单元的更改过程调用所选电话号码。
    • 8. 发明授权
    • Apparatus for continuously treating a tape-like article
    • 用于连续处理带状物品的装置
    • US5474246A
    • 1995-12-12
    • US106608
    • 1993-08-16
    • Yasuo Yamada
    • Yasuo Yamada
    • D06B5/08D06B21/00D06B23/00D06B23/04B65H51/20
    • D06B23/04
    • In an apparatus for continuously treating a tape-like article with various treatments while the tape-like article is introduced to one turning portion side of two or more endless belts, which are arranged along the circumference of revolution of a rotary framework at predetermined distances in parallel to a rotating shaft and revolve in one direction on the cylindrical surface of revolution, is wound polygon-spirally around the endless belts, and is discharged from the other turning portion side of the endless belts, the fluctuations in amount of feed of the tape-like article, which result from the polygonal shape, are absorbed at each of the introduction and discharge portions by a dancer roller operatively connected with a rotary cam having cam surfaces in conformity with the polygonal shape.
    • 在将带状物品引入两个或更多个环形带的一个转动部分侧,在旋转框架的旋转圆周上以预定距离布置的装置中,用于连续处理带状物品的设备中, 平行于旋转轴并且在圆柱形旋转表面上沿一个方向旋转,绕环形带卷绕多边形螺旋形,并从环形带的另一个转动部分侧排出,带的进给量的波动 通过与具有与多边形形状一致的凸轮表面的旋转凸轮可操作地连接的浮动轮,在每个引入和排出部分处吸收由多边形形成的类似物品。
    • 9. 发明授权
    • Cooling apparatus
    • 冷却装置
    • US5359864A
    • 1994-11-01
    • US85323
    • 1993-06-29
    • Yasuo Yamada
    • Yasuo Yamada
    • B60H1/32F25B17/08F25B49/04F25D16/00F28D20/02
    • F25D16/00B60H1/3201F25B17/083F28D20/023F25B49/046Y02E60/145
    • A cooling apparatus has a cooling vessel, containing a liquid as a thermal medium which absorbs latent heat by evaporation, and an absorber which absorbs the vapor of the liquid. The cooling vessel further contains one or more units of encapsulated gel refrigerant submerged in the liquid, which impede temperature increase of the liquid when an operation of the cooling apparatus is temporarily suspended. An alternative cooling vessel has one or more upwardly extending members partially submerged in the liquid and covered with liquid soaking material, so that the liquid soaks up in the material by capillary action and accelerates its evaporation. Another alternative cooling vessel has plural liquid tanks, one arranged on another, so that the total area for the evaporation of the liquid is multiplied. An additional alternative cooling vessel has a plurality of rotatable fins, partially submerged in the liquid, for accelerating the evaporation of the liquid.
    • 冷却装置具有冷却容器,该冷却容器含有通过蒸发吸收潜热的作为热介质的液体,以及吸收液体蒸气的吸收体。 冷却容器还包含浸没在液体中的一个或多个包封的凝胶制冷剂单元,当冷却装置的操作暂时停止时,其阻止液体的温度升高。 一个替代的冷却容器具有部分浸没在液体中并被液体浸泡材料覆盖的一个或多个向上延伸的构件,使得液体通过毛细作用渗透到材料中并加速其蒸发。 另一替代的冷却容器具有多个液体罐,一个排列在另一个上,使得液体蒸发的总面积相乘。 另外一种替代的冷却容器具有多个可部分浸没在液体中的可转动翅片,用于加速液体的蒸发。
    • 10. 发明授权
    • Adsorption cooling apparatus
    • 吸附冷却装置
    • US5347830A
    • 1994-09-20
    • US111103
    • 1993-08-24
    • Yasuo Yamada
    • Yasuo Yamada
    • B60H1/32C09K5/04F25B17/08F25B9/14
    • F25B17/08B60H1/3201C09K5/047
    • An adsorption cooling apparatus includes a hermetically sealed cylindrical capsule that contains a first thermal medium, a moisture absorber on its first side and an adsorbent on its second side. The capsule reciprocatively moves and slidably contacts with a cooling vessel containing a low temperature thermal medium on the first side and with a heating vessel containing a high temperature thermal medium on the second side. The capsule is cooled by an external airflow when it is moved to the cooling vessel, so that the first thermal medium absorbed in the moisture absorber evaporates and the low temperature thermal medium in the cooling vessel is cooled because of the latent heat of evaporation of the first thermal medium. The so cooled low temperature thermal medium is utilized for cooling the object to be cooled. The first thermal medium having evaporated from the moisture absorber is adsorbed by the adsorbent. When the capsule has moved to the heating vessel, the adsorbent is heated by the heating vessel, and the first thermal medium having been adsorbed in the adsorbent is desorbed and released from the adsorbent. The first thermal medium so released is again absorbed by the moisture absorber when the capsule has moved back to the cooling vessel, and the capsule is cooled again by the airflow to repeat the cycle.
    • 吸附冷却装置包括密封的圆柱形胶囊,其包含第一热介质,其第一侧上的吸湿剂和其第二侧上的吸附剂。 胶囊与第一侧的含有低温热介质的冷却容器和第二侧的含有高温热介质的加热容器往复运动并滑动接触。 当胶囊被移动到冷却容器时,其外部气流被冷却,使得吸收在吸收剂吸收剂中的第一热介质蒸发,并且冷却容器中的低温热介质由于蒸发的潜热而被冷却 第一热介质。 如此冷却的低温热介质用于冷却要冷却的物体。 由吸湿剂蒸发的第一热介质被吸附剂吸附。 当胶囊移动到加热容器时,吸附剂被加热容器加热,吸附在吸附剂中的第一热介质从吸附剂中解吸并释放。 当胶囊已经移回到冷却容器时,这样释放的第一热介质再次被吸湿剂吸收,并且胶囊再次被气流冷却以重复循环。