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    • 1. 发明申请
    • PRODUCT PARTS CATALOG CREATING METHOD AND SYSTEM
    • 产品部件目录创建方法和系统
    • WO2004109561A9
    • 2005-03-10
    • PCT/JP2004007718
    • 2004-06-03
    • LATTICE TECHNOLOGY INCYAMADA TOMOHIROTANAKA KOJIHARADA TSUYOSHI
    • YAMADA TOMOHIROTANAKA KOJIHARADA TSUYOSHI
    • G06F17/50
    • G06F17/50G06F2217/02G06Q10/00G06Q10/0875Y10S715/964
    • [Problem] A method and system for automatically creating a parts list of an industrial product composed of parts and drawing a three-dimensional illustration on the basis of the three-dimensional CAD data and XVL data on the product. [Means for Solving the Problem] From the main point of view of the invention, a method for creating a parts catalog including a parts list and an exploded illustration corresponding to the parts list is provided. The method is characterized by comprising (a) a step of assigning, according to the parts list, reference numbers to parts groups belonging to the initial step of disassembly and parts groups belonging to the intermediate step of disassembly, (b) a step of making a disassembly algorithm according to the parts list, and (c) a step of drawing an exploded illustration according to the disassembly algorithm and according to the disassembly limits, i.e., the parts and parts groups to which the reference numbers are assigned and putting the reference numbers to the parts and parts groups in the exploded illustration.
    • [问题]用于根据产品上的三维CAD数据和XVL数据自动创建由零件组成的工业产品的零件列表和绘制三维图示的方法和系统。 解决问题的手段从本发明的主要观点出发,提供了一种用于创建包括对应于部件列表的部件列表和分解图的部件目录的方法。 该方法的特征在于包括以下步骤:(a)根据零件列表将参考号分配给属于拆卸初始步骤的零件组和属于拆卸中间步骤的零件组的步骤,(b)制造步骤 根据部件列表的拆卸算法,以及(c)根据拆卸算法并根据拆卸限制,即分配有附图标记的部件组,并将参考文献给出的分解图示出的步骤 在分解图中的零件和零件组的数字。
    • 2. 发明申请
    • PROCESS FOR RECOVERY OF CARBON DIOXIDE FROM A FLUID STREAM, IN PARTICULAR FROM SYNGAS
    • 从流体流中回收二氧化碳的方法,特别是从SYNGAS
    • WO2010136425A1
    • 2010-12-02
    • PCT/EP2010/057107
    • 2010-05-25
    • BASF SEJGC CorporationKATZ, TorstenSIEDER, GeorgTANAKA, Koji
    • KATZ, TorstenSIEDER, GeorgTANAKA, Koji
    • C10K1/08
    • C10K1/08Y02C10/06Y02E20/16Y02E20/18Y02E20/185
    • A process for removing carbon dioxide from a fluid comprises the steps of: (a) treating the fluid by bringing it into countercurrent contact with a liquid absorbent in a first absorption zone and thereafter in a second absorption zone to absorb at least part of the carbon dioxide contained in the fluid into the absorbent; (b) depressurizing the loaded absorbent to release a first stream of carbon dioxide and yield a partially regenerated absorbent; (c) recycling a first stream of the partially regenerated absorbent into the first absorption zone; (d) heating a second stream of the partially regenerated absorbent to release a second stream of carbon dioxide and yield a regenerated absorbent; (e) recycling the regenerated absorbent into the second absorption zone; (f) condensing water vapour entrained in the second stream of carbon dioxide by cooling the second stream of carbon dioxide and transferring at least part of the heat recovered to the partially regenerated absorbent by indirect heat exchange. The invention provides a two-stage carbon dioxide recovery process wherein the overall energy required for carbon dioxide recovery is reduced and/or wherein at least part of the carbon dioxide is recovered at a pressure higher than atmospheric pressure so as to reduce the energy required for compression of the carbon dioxide, e. g., for sequestration. Also disclosed is a plant for removing carbon dioxide from a fluid.
    • 从流体中除去二氧化碳的方法包括以下步骤:(a)通过使流体与第一吸收区中的液体吸收剂逆流接触,然后在第二吸收区中以吸收至少部分碳 包含在流体中的二氧化碳变成吸收剂; (b)减压负载的吸收剂以释放第一流二氧化碳并产生部分再生的吸收剂; (c)将部分再生的吸收剂的第一流再循环到第一吸收区中; (d)加热部分再生的吸收剂的第二料流以释放第二二氧化碳流并产生再生的吸收剂; (e)将再生的吸收剂再循环到第二吸收区; (f)通过冷却第二二氧化碳流将夹带在第二二氧化碳流中的水蒸汽冷凝,并通过间接热交换将至少部分被回收的热量转移到部分再生的吸收剂中。 本发明提供二阶段二氧化碳回收方法,其中减少二氧化碳回收所需的总能量和/或其中至少部分二氧化碳在高于大气压的压力下回收,以便减少二氧化碳回收所需的能量 压缩二氧化碳, 例如,用于隔离。 还公开了一种用于从流体中除去二氧化碳的设备。
    • 4. 发明申请
    • GAS PRODUCER, METHOD OF MANUFACTURING SAME AND METHOD OF MANUFACTURING CONTAINER OF GAS PRODUCING AGENT FOR GAS PRODUCER
    • 气体生产者,其制造方法和制造气体生产剂气体容器的方法
    • WO1995031356A1
    • 1995-11-23
    • PCT/JP1995000900
    • 1995-05-11
    • SENSOR TECHNOLOGY CO., LTD.NIPPON KAYAKU KABUSHIKI-KAISHATANAKA, KojiNISHIDA, KenjiroKOBAYASHI, HisafumiOCHI, Hiroyuki
    • SENSOR TECHNOLOGY CO., LTD.NIPPON KAYAKU KABUSHIKI-KAISHA
    • B60R21/26
    • B60R21/2644F42B3/04
    • The invention relates to a gas producer and a method of manufacturing the same, the gas producer comprising a cushioning member (4) provided on the charging surfaces of gas producing agent pellets (3) charged in a combustion chamber and using its elasticity to suppress the movement of the gas producing agent pellets (3) caused by vibration, and a partition foil piece (5) provided between the cushioning member (4) and the gas producing agent pellets (3) and being inactive to the gas producing agent pellets (3), the partition foil piece (5) being shaped to conform to the shape of the charging surfaces of the gas producing agent pellets (3). The method of manufacturing a container of a gas producing agent for a gas producer comprises the steps of charging a body (2a) of a gastight container in a combustion chamber with the gas producing agent pellets (3), placing the deformable partition foil piece (5) on the charging surfaces of the gas producing agent pellets (3), pressing the gas producing agent pellets (3) through the partition foil piece (5) to vibrate the same for densely charging the gas producing agent pellets (3) and to deform the partition foil piece (5) so as to substantially allow the same to conform to the shape of the charging surfaces of the gas producing agent pellets (3), and mounting a cap (2b), of which the cushioning member (4) is placed on a top surface of the partition foil piece (5), on the body (2a) of the gastight container to close the container.
    • 气体发生器及其制造方法技术领域本发明涉及一种气体发生器及其制造方法,该气体发生器包括设置在充气在燃烧室中的气体发生剂颗粒(3)的充电表面上的缓冲构件(4),并使用其弹性来抑制 由振动引起的气体发生剂颗粒(3)的运动和设置在缓冲构件(4)和气体发生剂颗粒(3)之间并且对气体发生剂颗粒(3)不起作用的分隔箔片(5) ),分隔箔片(5)成形为符合气体发生剂颗粒(3)的充电表面的形状。 制造用于气体发生器的气体发生剂的容器的方法包括以下步骤:在气体发生剂颗粒(3)中将燃烧室中的气密容器的主体(2a)装入,将可变形分隔箔片( 5)在气体发生剂颗粒(3)的充电表面上,通过分隔箔片(5)压制气体发生剂颗粒(3)以使气体发生剂颗粒(3)振动,以使气体发生剂颗粒(3)密集充电,并 使分隔箔片(5)变形,使其基本上允许其与气体发生剂颗粒(3)的充电表面的形状一致,并且安装其中缓冲构件(4)的盖(2b) 被放置在分隔箔片(5)的顶表面上,在气密容器的主体(2a)上以封闭容器。
    • 6. 发明申请
    • GAS GENERATOR FOR AIR BAG
    • 气囊发电机
    • WO1998002336A1
    • 1998-01-22
    • PCT/JP1997002338
    • 1997-07-04
    • SENSOR TECHNOLOGY CO., LTD.NIPPON KAYAKU KABUSHIKI-KAISHATANAKA, KojiSASO, TakashiNAGAHASHI, Ken-ichiTAGUCHI, Seigo
    • SENSOR TECHNOLOGY CO., LTD.NIPPON KAYAKU KABUSHIKI-KAISHA
    • B60R21/20
    • B60R21/2644B01D39/12
    • A gas generator is provided which is less expensive and is eventually prevented from being lowered in performance, by exhibiting a function equivalent to a function achieved by a retainer ring, that is, a function of preventing outflowing of slag from a cooling filter member while ensuring a gap between an upper cover and a lower cover for control and adjustment of height at the time of pressing contact through contriving an arrangement of the cooling filter member in a housing even without the provision of a gas generating agent and a member (retainer ring) supporting the cooling filter member in the housing. A gas generator for air bags, according to the invention, comprises a housing (3) defined by a side cylinder (1b) having a plurality of gas outflowing holes (10) and an upper cover (1a) and a lower cover (2a) for closing ends of the side cylinder (1b); an igniter (4), a gas generating agent (6) and a cooling filter member (8) disposed in this order in the housing (3) from a center thereof toward a radially outward side thereof; and a metallic foil (11) bonded to an inner wall surface of the side cylinder (1b) to cover the gas outflowing holes (10) from inside; the cooling filter member (8) extending from the upper cover (1a) to the lower cover (2a). The cooling filter member (8) is cylindrical in shape and has a thick walled portion (8a) formed on an outside diameter side on a side axially opposite to the gas outflowing holes (10), and the thick walled portion (8a) is press fitted into an inner surface of the housing (3).
    • 通过表现出与保持环实现的功能相当的功能,即具有防止炉渣从冷却过滤器部件流出的功能,同时确保了冷却过滤器部件的功能,提供了更便宜并最终被防止性能降低的气体发生器 上盖和下盖之间的间隙,用于通过将冷却过滤构件的布置设置在壳体中来控制和调节压接时的高度,即使不设置气体发生剂和构件(保持环) 将冷却过滤构件支撑在壳体中。 根据本发明的用于气囊的气体发生器包括由具有多个气体流出孔(10)和上盖(1a)和下盖(2a)的侧气缸(1b)限定的壳体(3) 用于闭合侧气缸(1b)的端部; 点火器(4),气体发生剂(6)和冷却过滤器构件(8),其从中心向其径向外侧依次设置在壳体(3)中; 以及金属箔(11),其结合到所述侧筒(1b)的内壁表面,以从内部覆盖所述气体流出孔(10); 冷却过滤构件(8)从上盖(1a)延伸到下盖(2a)。 冷却过滤构件(8)为圆筒状,具有在与气体流出孔(10)轴向相反侧的外径侧形成的厚壁部(8a),将厚壁部(8a)按压 装配到壳体(3)的内表面中。
    • 7. 发明申请
    • CHIPPING RESISTANT PAINT
    • 防滑涂料
    • WO1997048772A1
    • 1997-12-24
    • PCT/JP1997002083
    • 1997-06-17
    • MATSUMOTO YUSHI-SEIYAKU CO., LTD.TANAKA, KojiKITANO, KenichiMASUDA, Toshiaki
    • MATSUMOTO YUSHI-SEIYAKU CO., LTD.
    • C09D05/00
    • C09D5/024C08L2205/20C09D133/06Y10T428/249976Y10T428/254C08L2666/02
    • A water based chipping resistant paint which contains a solid component (30 to 65 weight percents) and a slowly-evaporating solvent (0.1 to 10 weight percents) as a water based dispersion substance and wherein the solid component contains a resin having a film forming function, thermally expansive fine grains and a chipping resistant material (respectively, 15 to 75 weight percents, 0.2 to 25 weight percents and 20 to 80 weight percents). The chipping resistant paint facilitates vaporization of water at the time of film formation owing to mixing of the slowly-evaporating solvent, can prevent cracking and blistering of a film due to water remaining in the film and vaporization of water remaining after the film formation, and readily form a thick film owing to an expansion effect of the thermally expansive fine grains at the stage of baking after coating, and therefore is suitable for a chipping resistant undercoat for automobiles.
    • 一种防水涂料,其含有固体成分(30〜65重量%)和缓慢蒸发的溶剂(0.1〜10重量%)作为水性分散物质,其中固体成分含有具有成膜功能的树脂 ,热膨胀细颗粒和耐崩裂材料(分别为15至75重量%,0.2至25重量%和20至80重量百分比)。 由于缓慢蒸发的溶剂的混合,耐崩裂涂料有助于在成膜时水的蒸发,可以防止由于膜中的水残留而导致的膜的起裂和起泡以及成膜后剩余的水的蒸发,以及 由于在涂布后的烘烤阶段由于热膨胀性细粒的膨胀效应而容易形成厚膜,因此适用于汽车的耐崩裂底漆。
    • 9. 发明申请
    • INSULATION COATING COMPOSITION FOR ELECTRIC SHEET AND METHOD OF INSULATION COATING OF ELECTRIC SHEET
    • 电工用绝缘涂料组合物及电绝缘涂料方法
    • WO1991002828A1
    • 1991-03-07
    • PCT/JP1990001029
    • 1990-08-13
    • NISSHIN STEEL CO., LTD.TOYOBO CO., LTD.MAEDA, YasuharuSAKAKURA, AkiraMASUHARA, KenichiTANAKA, Koji
    • NISSHIN STEEL CO., LTD.TOYOBO CO., LTD.
    • C23C22/00
    • C23C22/74B23K35/226H01F1/18
    • Conventional coating compositions prepared by compounding an aqueous solution of an inorganic component (mainly comprising chromic acid) with an aqueous emulsion of an organic component (comprising a polymer) are disadvantageous in that their pot life is short, they are so highly foaming that foams are apt to occur in the coating, the coating has inferior corrosion resistance and insulation performance, a gas is generated from the coating during welding to result in poor weldability, and a composition further containing an acrylic resin to eliminate these disadvantages is highly carburizable. The coating composition of the invention comprises an aqueous dispersion of a (meth)acrylate polymer, which has been used heretofore as the organic component, modified with an ethylenically unsaturated carboxylic acid as the essential comonomer component and other vinyl compound(s) as the optional comonomer component, or further an aqueous dispersion prepared by adding a powdered methacrylate polymer to the above modified polymer. These compositions are lowly foaming and excellent in applicability, and give a coating excellent in various properties. Especially the composition containing the powdered methacrylate polymer is so excellent in weldability, that it can meet the recent demands on the diversified and high-quality products of electric sheets.
    • 通过将无机组分(主要包含铬酸)的水溶液与有机组分(包含聚合物)的水性乳液混合制备的常规涂料组合物的缺点在于它们的适用期短,它们的泡沫如此高度起泡, 易于发生在涂层中,涂层具有差的耐腐蚀性和绝缘性能,在焊接期间从涂层产生气体,导致不良的焊接性,并且进一步含有丙烯酸树脂以消除这些缺点的组合物是高度可渗碳的。 本发明的涂料组合物包含(甲基)丙烯酸酯聚合物的水分散体,其已被用作有机组分,用烯键式不饱和羧酸作为必要的共聚单体组分和其它乙烯基化合物作为任选的 共聚单体组分,或另外通过向上述改性聚合物中加入粉状甲基丙烯酸酯聚合物制备的水性分散体。 这些组合物发泡性低,适用性优异,得到各种性能优异的涂膜。 特别是含有粉末状甲基丙烯酸酯聚合物的组合物的焊接性优异,能够满足电工板材多样化,高质量产品的近期需求。