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    • 3. 发明专利
    • Air purging implement for combustible gas piping
    • 可燃煤气管道的空气净化实施
    • JP2006266440A
    • 2006-10-05
    • JP2005088212
    • 2005-03-25
    • Koichi Araki紘一 荒木
    • ARAKI KOICHI
    • F16L55/07F17D3/10
    • PROBLEM TO BE SOLVED: To provide an air purging implement whereby air can be safely and surely replaced with a combustible gas without relying on perception and a knack, since when performing various construction works for a gas pipe to pass combustible gas, air remaining in the gas pipe is required to be replaced with the combustible gas after the construction works are finished.
      SOLUTION: In order to structure this air purging implement for combustible gas piping, a tubular plug member 9 the outer diameter of which is reduced so as to form a reversely tapered shape is made to get engaged with the lower periphery of a cylindrical body 1 comprising a vertical part 2 and a bent part 3 and having an almost L-shape, in which a transparent portion is provided at least at the center of the vertical part 2, a level difference part 4 stretching inward is formed on the inner peripheral wall of a lower part slightly lower than the transparent portion, a determining sphere 5 having an outer diameter larger than the inner diameter of the level difference part 4 is disposed in the upper part of the level difference part 4 so that it can freely roll, and a shutter valve which can be freely opened and closed is mounted to the opening part 11 of the bent part 3.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种空气净化装置,其中空气可以安全可靠地替换为可燃气体,而不依赖于感知和诀窍,因为当进行用于气体管道通过可燃气体的各种施工工作时,空气 在施工作业结束后,留在气体管道中的气体需要更换为可燃气体。 解决方案:为了构造用于可燃气体管道的空气净化装置,使其外径减小以形成倒锥形的管状塞构件9与圆筒形的下周边接合 主体1包括垂直部分2和弯曲部分3,并且具有几乎为L形,其中透明部分至少设置在垂直部分2的中心处,向内延伸的水平差部分4形成在内部 下部的周壁比透明部稍低,具有比水平差部4的内径大的外径的判定球5配置在水平差部4的上部,使其能够自由地滚动 ,并且可以自由地打开和关闭的快门阀被安装到弯曲部分3的开口部分11上。(C)2007,JPO&INPIT
    • 5. 发明申请
    • USE OF SULFONANILIDES AS HERBICIDE
    • 使用磺酰亚胺作为除草剂
    • US20100323896A1
    • 2010-12-23
    • US12868032
    • 2010-08-25
    • Koichi ArakiYoshitaka SatoTakuya GomibuchiKeiji EndoShinichi ShirakuraShin NakamuraChristopher RosingerDieter Feucht
    • Koichi ArakiYoshitaka SatoTakuya GomibuchiKeiji EndoShinichi ShirakuraShin NakamuraChristopher RosingerDieter Feucht
    • A01N43/66C07D239/52C07D251/16A01N43/54A01P13/00
    • C07D251/20A01N43/54A01N43/66C07D239/52
    • Herbicidal compositions comprising containing sulfonanilides of the formula (I) wherein R1 represents hydrogen, fluorine, chlorine, C1-4 alkyl, C1-4 alkoxy, C3-6 cycloalkyl-C1-4 alkyloxy or C1-4 haloalkoxy, R2 represents hydrogen, fluorine or chlorine, R3 represents hydrogen or fluorine, R4 represents hydrogen or C1-4 alkyl which may be optionally C1-4 alkoxy-substituted, C3-6 alkenyl or C3-6 alkynyl, R5 represents hydrogen, R6 represents hydroxy, fluorine or chlorine, or R5 and R6 may form, together with the carbon to which they are bonded, C═O, and X represents CH or N, provided that the following cases are excluded: (i) R1 represents hydrogen, fluorine or chlorine, R2 represents hydrogen, R3 represents hydrogen, R4 represents hydrogen, R5 represents hydrogen, and R6 represents hydroxy, (ii) R1 represents hydrogen, fluorine or chlorine, R2 represents hydrogen, R3 represents hydrogen, R4 represents hydrogen, and R5 and R6 form C═O together with the carbon to which they are bonded, (iii) R1 represents C1-4 alkyl, R2 represents hydrogen, R3 represents hydrogen, R4 represents hydrogen, R5 represents hydrogen, R6 represents hydroxy, and X represents CH, or (iv) R1 represents C1-4 alkyl, R2 represents hydrogen, R3 represents hydrogen, R4 represents hydrogen, R5 and R6 form C═O together with the carbon to which they are bonded, and X represents CH, and new compounds being embraced by the formula (I).
    • 包含含有式(I)的磺酰苯胺的除草组合物,其中R 1表示氢,氟,氯,C 1-4烷基,C 1-4烷氧基,C 3-6环烷基-C 1-4烷氧基或C 1-4卤代烷氧基,R 2表示氢,氟 或氯,R 3表示氢或氟,R 4表示氢或可以任选被C 1-4烷氧基取代的C 1-4烷基,C 3-6烯基或C 3-6炔基,R 5表示氢,R 6表示羟基,氟或氯, 或者R 5和R 6可以与它们所键合的碳一起形成C = O,X表示CH或N,条件是排除以下情况:(i)R 1表示氢,氟或氯,R 2表示氢 ,R3表示氢,R4表示氢,R5表示氢,R6表示羟基,(ii)R1表示氢,氟或氯,R2表示氢,R3表示氢,R4表示氢,R5和R6表示C = O 与它们结合的碳, (iii)R 1表示C 1-4烷基,R 2表示氢,R 3表示氢,R 4表示氢,R 5表示氢,R 6表示羟基,X表示CH,或(ⅳ)R 1表示C 1-4烷基, R3表示氢,R4表示氢,R5和R6与它们所键合的碳一起形成C = O,X表示CH,并且新化合物被式(I)所包围。
    • 8. 发明授权
    • Method of sealing electronic parts with molded resin and mold employed
therefor
    • 用模塑树脂密封电子部件的方法和用于其的模具
    • US5753538A
    • 1998-05-19
    • US399947
    • 1995-03-06
    • Takaki KunoYoshihisa KawamotoMakoto MatsuoKoichi ArakiSatoshi Nihei
    • Takaki KunoYoshihisa KawamotoMakoto MatsuoKoichi ArakiSatoshi Nihei
    • B29C45/26B29C45/02B29C45/14B29C45/34B29L31/34H01L21/56
    • B29C45/14655B29C45/34H01L2224/48091H01L2924/19041
    • In a method of sealing electronic parts with molded resin, a hollow sealing member is arranged on a mold surface of an upper mold section of a mold comprising the upper mold section and a lower mold section, so that the hollow sealing member is pressurized and expanded to convexly project from the mold surface of the upper mold section. In this state, the lower mold section is upwardly moved to be brought into contact with the expanded hollow sealing member. Further, an internal space portion, including pots, cull portions, resin passages and cavities, which is enclosed with the expanded hollow sealing member is set in a state isolated from the exterior when the upper mold section and the lower mold section are closed, so that the internal space portion is forcibly evacuated in this state. Thus, air, moisture and gases are efficiently and reliably suction-discharged from the internal space portion, whereby the internal space portion is set at a prescribed degree of vacuum. Consequently, it is possible to avoid contamination of air, moisture and the like in melted resin materials, as well as to prevent formation of voids in resin-sealed compacts.
    • 在用模制树脂密封电子部件的方法中,中空密封件被布置在包括上模具部分和下模具部分的模具的上模具部分的模具表面上,使得中空密封件被加压膨胀 从上模具部分的模具表面突出地突出。 在这种状态下,下模部向上移动以与膨胀的中空密封构件接触。 此外,当上部模具部分和下部模具部分闭合时,与膨胀的中空密封部件一起包围的包括罐,剔除部分,树脂通道和空腔的内部空间部分被设置成与外部隔离的状态,因此 在该状态下内部空间部分被强制抽空。 因此,空气,湿气和气体从内部空间部分被有效且可靠地抽吸排出,由此将内部空间部分设定在规定的真空度。 因此,可以避免熔融树脂材料中的空气,水分等的污染,以及防止在树脂密封成形体中形成空隙。