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    • 1. 发明授权
    • Process for forming diamond film
    • 金刚石膜成型工艺
    • US5094878A
    • 1992-03-10
    • US540595
    • 1990-06-19
    • Minoru YamamotoSatoshi NakamuraNobuei ItoTadashi Hattori
    • Minoru YamamotoSatoshi NakamuraNobuei ItoTadashi Hattori
    • C23C16/27C23C16/513
    • C23C16/276C23C16/513
    • A device for synthesizing a diamond at a high synthesis speed and obtaining an improved purity of diamond is provided, and is characterized by having a vacuum vessel maintained under a predetermined vacuum; a positive electrode and a negative electrode arranged within the vacuum vessel so as to be opposed to each other; an arc discharge power source electrically connected to the positive electrode and the negative electrode and applying a predetermined power to cause an arc discharge in a space between the positive electrode and the negative electrode; a gas supply source which generates a gas plasma by flowing a plasma source gas over the arc discharge, and blowing a resulting gas plasma containing a carbon source gas over a substrate arranged downstream thereof; an electrical field application power source for applying an electrical field between an area at which the gas plasma is generated and the substrate, to give the substrate a higher potential and thereby provide a flow of a predetermined amount of current therebetween.
    • 提供了一种用于以高合成速度合成金刚石并获得改善的金刚石纯度的装置,其特征在于使真空容器保持在预定真空下; 布置在所述真空容器内的正极和负极,以便彼此相对; 与正极和负极电连接并施加预定功率以在正极和负极之间的空间中产生电弧放电的电弧放电电源; 气体供给源,其通过使等离子体源气体流过电弧放电而产生气体等离子体,并且在其下游配置的基板上吹送含有碳源气体的所得气体等离子体; 用于在产生气体等离子体的区域和衬底之间施加电场的电场施加电源,以使衬底具有更高的电位,从而在其间提供预定量的电流。
    • 2. 发明授权
    • Method and apparatus for forming a diamond film
    • 用于形成金刚石膜的方法和装置
    • US5099788A
    • 1992-03-31
    • US547162
    • 1990-07-03
    • Nobuei ItoMinoru YamamotoSatoshi NakamuraTadashi Hattori
    • Nobuei ItoMinoru YamamotoSatoshi NakamuraTadashi Hattori
    • C23C16/27C23C16/513C23C16/52
    • C23C16/276C23C16/513C23C16/52
    • A method and apparatus for forming a diamond film, has a casing in which vacuum is maintained at a predetermined value. A substrate is disposed within the casing so that the diamond film is formed thereon. A gas plasma generator for generating a gas plasma near the substrate from a plasma source gas and a carbon source gas by an arc discharge is provided within the casing. A detector detects a factor which is related to a change in a surface temperature of the diamond film, and an electronic controller controls in response to the detected factor the surface temperature of the diamond film so as to maintain such temperature near a predetermined optimal value for forming the diamond film. As the surface temperature is maintained near the optimal value by a feedback control, high purity diamond film is obtained irrespective of the thickness or the forming time thereof.
    • 用于形成金刚石膜的方法和装置具有其中真空保持在预定值的壳体。 衬底设置在壳体内,使得金刚石膜形成在其上。 一种用于通过电弧放电从等离子体源气体和碳源气体在基板附近产生气体等离子体的气体等离子体发生器。 检测器检测与金刚石膜的表面温度变化有关的因素,并且电子控制器根据检测到的因素控制金刚石膜的表面温度,以便将这种温度保持在预定的最佳值附近,以便 形成金刚石膜。 当通过反馈控制将表面温度保持在最佳值附近时,无论厚度或其形成时间如何,都可以获得高纯度的金刚石膜。
    • 3. 发明授权
    • Apparatus for forming diamond film
    • 用于形成金刚石膜的装置
    • US5314540A
    • 1994-05-24
    • US855742
    • 1992-03-23
    • Satoshi NakamuraMinoru YamamotoNobuei ItoTadasi Hattori
    • Satoshi NakamuraMinoru YamamotoNobuei ItoTadasi Hattori
    • C23C16/27C23C16/513H01J37/32H05H1/48C23C16/00C23C16/50
    • C23C16/276C23C16/513H01J37/32055H01J37/32587H05H1/48
    • Apparatus and process for synthesizing a diamond film of high purity at a high rate. Mixture gas of hydrocarbon gas and hydrogen gas is introduced into an arc discharge to produce a gas plasma. This gas plasma is blown against a substrate to deposit diamond. A plasma current power supply is connected with a third electrode disposed above the substrate to place the third electrode at a positive potential. An electrical current is supplied into the gas plasma from the third electrode. Flow of the electrical current through the plasma promotes the decomposition of the hydrogen and hydrocarbon. A diamond film of high purity can be deposited at a high rate. The invention is characterized in that the substrate is placed at a lower potential than the third electrode or the direction of the electrical current intersects the flow of the gas plasma although the electrical current is passed through the plasma. Therefore, it is unlikely that the accelerated electrons reach the substrate, elevating its temperature. Hence, diamond of high quality can be synthesized.
    • 用于以高速率合成高纯度金刚石膜的装置和方法。 将碳氢化合物气体和氢气的混合气体引入电弧放电以产生气体等离子体。 将该气体等离子体吹向基板以沉积金刚石。 等离子体电流电源与设置在衬底上方的第三电极连接以将第三电极置于正电位。 从第三电极向气体等离子体供给电流。 通过等离子体的电流的流动促进了氢和烃的分解。 高纯度的金刚石膜可以高速沉积。 本发明的特征在于,尽管电流通过等离子体,但是基板被放置在比第三电极低的电位或电流的方向与气体等离子体的流动相交。 因此,加速电子不可能到达基板,升高其温度。 因此,可以合成高质量的金刚石。
    • 6. 发明授权
    • Image processing device and pixel interpolation method
    • 图像处理装置和像素插值方法
    • US09042658B2
    • 2015-05-26
    • US13976517
    • 2012-01-11
    • Satoshi Nakamura
    • Satoshi Nakamura
    • G06K9/32G06T3/40G06T5/00H04N1/401H04N1/409
    • G06T3/4007G06T5/002H04N1/401H04N1/4097
    • An image processing device that generates a pixel value of a pixel and interpolates the pixel with the pixel value, the image processing device including: a periodicity determining unit that determines whether an area including the pixel is a periodic area; a boundary determining unit that determines whether the pixel belongs to the periodic area or a non-periodic area; a first pixel value generating unit that generates a first pixel value; a second pixel value generating unit that generates a second pixel value; a control unit that determines whether the first pixel value generating unit is to be used or the second pixel value generating unit is to be used, based on determination results of the periodicity determining unit and the boundary determining unit; a pixel value inputting unit that inputs one of the first pixel value and the second pixel value to the pixel.
    • 一种图像处理装置,其生成像素的像素值并且以像素值内插所述像素,所述图像处理装置包括:周期性确定单元,其确定包括所述像素的区域是否是周期性区域; 边界确定单元,确定像素是属于周期区域还是非周期区域; 第一像素值生成单元,生成第一像素值; 第二像素值生成单元,生成第二像素值; 基于周期性确定单元和边界确定单元的确定结果,确定要使用第一像素值生成单元还是要使用第二像素值生成单元的控制单元; 像素值输入单元,其将第一像素值和第二像素值中的一个输入到像素。
    • 7. 发明授权
    • Washing machine, boot purifying aid, boot tray and boot attachment
    • 洗衣机,靴子净化助剂,靴子托盘和靴子附件
    • US08893530B2
    • 2014-11-25
    • US12808631
    • 2008-11-10
    • Satoshi NakamuraMasahiro NaitoYasuhiro Matsusaki
    • Satoshi NakamuraMasahiro NaitoYasuhiro Matsusaki
    • A47L23/20D06F35/00D06F58/02D06F57/00D06F37/08D06F25/00
    • A47L23/20D06F25/00D06F35/001D06F37/08D06F57/00D06F58/02
    • It is an object of the present invention to provide a washing machine capable of advantageously sanitizing a boot with cleaning air. A tubular member (25) of a boot attachment (30) is inserted in the boot (70) with a sufficient clearance, and an upper end portion (43) of the tubular member (25) is exposed from a top (70B) of the boot (70). A second lower vent (34) provided in a lower portion of the tubular member (25) is directed to a toe portion (70C) in the boot (70), and a first intermediate vent (35) and a second intermediate vent (36) are provided in a vertically intermediate portion of the tubular member (25). Cleaning air supplied into a drum (8) of the washing machine is smoothly introduced into the tubular member (25) of the boot attachment (30) by the upper end portion (43) to flow down through the tubular member (25). The cleaning air flows out of the tubular member (25) through the first intermediate vent (35), the second intermediate vent (36) and the second lower vent (34) to spread inside the boot (70). Thus, the inside of the boot (70) is sanitized with the cleaning air.
    • 本发明的目的是提供一种能够有效地清洁带有清洁空气的靴子的洗衣机。 靴子附件(30)的管状构件(25)以足够的间隙插入靴子(70)中,并且管状构件(25)的上端部分(43)从顶部(70B)暴露于 靴子(70)。 设置在管状构件(25)的下部的第二下部通气口(34)被引导到护罩(70)中的脚趾部分(70C),并且第一中间通气口(35)和第二中间通气口 )设置在管状构件(25)的竖直中间部分中。 供应到洗衣机的滚筒(8)中的清洁空气通过上端部分(43)被顺利地引导到靴子附件(30)的管状构件(25)中,以通过管状构件(25)向下流动。 清洁空气通过第一中间通风口(35),第二中间通风口(36)和第二下部通风口(34)从管状构件(25)流出,以在靴子(70)内部扩展。 因此,靴子70的内部用清洁空气消毒。
    • 10. 发明申请
    • METHOD FOR PRODUCING POLYMER PARTICLES, AND POLYMER PARTICLES
    • 生产聚合物颗粒的方法和聚合物颗粒
    • US20130316892A1
    • 2013-11-28
    • US13994495
    • 2011-12-14
    • Satoshi NakamuraTetsuo FukutaKazuhiro IkkyuYu OtaniHiroshi Kawai
    • Satoshi NakamuraTetsuo FukutaKazuhiro IkkyuYu OtaniHiroshi Kawai
    • B01J20/281
    • B01J20/281B01J20/267B01J20/285C08B1/003C08B15/10C08B37/0018C08B37/0021C08B37/003C08B37/0039C08J3/16C08J3/24C08J2301/02C08K5/0025C08L1/02C08L1/28C08L5/00C08L5/02C08L5/08C08L5/12Y02P20/542
    • Provided are polymer particles which can be used at a high flow rate when used as a filler for chromatography, that is, has excellent resistance flow rate appropriate for processing in large quantities, and also has a high binding capacity for target molecules such as proteins when an appropriate ligand is contained in the particles, and a method for producing the polymer particles; specifically, crosslinked polymer particles and a method for producing the crosslinked polymer particles, polysaccharide composite particles and a method for producing the polysaccharide composite particles, a filler for chromatography using the polymer particles, and an adsorbent for antibody purification. Disclosed are: A. a method for producing polysaccharide composite particles, the method including the following steps (1) to (3): (1) a step of preparing a polysaccharide solution, in which two or more kinds of polysaccharides are dissolved in an ionic liquid; (2) a step of preparing a droplet dispersion liquid of the polysaccharide solution, in which liquid droplets of the polysaccharide solution are dispersed in an organic solvent having low compatibility with the ionic liquid; and (3) a coagulation step in which a composite of the polysaccharides are coagulated to obtain the polysaccharide composite particles; and B. a method for producing a crosslinked polymer particle, the method including a step of allowing a polymer dissolved in an ionic liquid, to react with a crosslinking agent while the polymer is subjected to droplet dispersion in an organic solvent having low compatibility with the ionic liquid.
    • 提供当用作色谱填料时可以以高流速使用的聚合物颗粒,即具有适合于大量加工的优异的电阻流速,并且还具有对蛋白质等靶分子的高结合力 粒子中含有适当的配体,以及聚合物粒子的制造方法。 特别是交联聚合物颗粒和交联聚合物颗粒的制备方法,多糖复合颗粒和多糖复合颗粒的制备方法,使用该聚合物颗粒的色谱用填料和用于抗体纯化的吸附剂。 本发明涉及A.一种多糖复合粒子的制造方法,其特征在于,包括以下工序(1)〜(3):(1)制备多糖溶液的工序,其中将2种以上的多糖溶解于 离子液体 (2)将多糖溶液的液滴分散在与离子液体的相容性低的有机溶剂中的多糖溶液的液滴分散液的制备工序; 和(3)将多糖的复合体凝结而得到多糖复合粒子的凝固工序; 和B.一种制备交联聚合物颗粒的方法,该方法包括使溶解在离子液体中的聚合物与交联剂反应的步骤,同时聚合物在与 离子液体。