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    • 1. 发明授权
    • Gasket for water-cooled engine for outboard motor
    • 舷外马达水冷发动机垫片
    • US07044098B2
    • 2006-05-16
    • US11071392
    • 2005-03-03
    • Akira AmanoKazuyoshi SatoYutaka Kubota
    • Akira AmanoKazuyoshi SatoYutaka Kubota
    • F02F11/00
    • F16J15/0825F02B61/045F16J15/0818F16J2015/0856F16J2015/0868
    • Gaskets are placed in joints between adjacent nonferrous metal engine members of a water-cooled engine for an outboard motor, such as a cylinder block, a cylinder head, a crankcase, a mount case and an oil pan, to seal the joints. Each of the gaskets has a base member formed of a stainless steel. The surfaces of the base member are coated with electrochemical corrosion preventing films formed by applying a liquid containing flakes of an aluminum alloy or a zinc alloy and a silicate resin in films and baking the films of the liquid. The electrochemical corrosion preventing films are coated with sealing films formed by applying a liquid containing aluminum flakes and a silicate resin to the electrochemical corrosion preventing films and baking the films of the liquid. The gaskets are prevented from electrochemically corroding despite potential difference between each gasket and the adjacent engine members.
    • 垫圈被放置在用于舷外马达(例如气缸体,气缸盖,曲轴箱,安装壳体和油盘)的水冷发动机的相邻有色金属发动机构件之间的接头中以密封接头。 每个垫片具有由不锈钢形成的基部构件。 基材的表面涂覆有通过将包含铝合金或锌合金薄片和硅酸盐树脂的液体涂覆在膜中并烘烤液体膜而形成的电化学防腐蚀膜。 电化学腐蚀防止膜涂覆有通过将包含铝片和硅酸盐树脂的液体施加到电化学腐蚀防止膜并烘烤液体膜而形成的密封膜。 即使每个垫圈和相邻的发动机构件之间存在潜在差异,垫圈也不会被电化学腐蚀。
    • 2. 发明申请
    • Gasket for water-cooled engine for outboard motor
    • 舷外马达水冷发动机垫片
    • US20050215134A1
    • 2005-09-29
    • US11071392
    • 2005-03-03
    • Akira AmanoKazuyoshi SatoYutaka Kubota
    • Akira AmanoKazuyoshi SatoYutaka Kubota
    • B63H20/00F02B61/04F02F11/00F16J15/08
    • F16J15/0825F02B61/045F16J15/0818F16J2015/0856F16J2015/0868
    • Gaskets are placed in joints between adjacent nonferrous metal engine members of a water-cooled engine for an outboard motor, such as a cylinder block, a cylinder head, a crankcase, a mount case and an oil pan, to seal the joints. Each of the gaskets has a base member formed of a stainless steel. The surfaces of the base member are coated with electrochemical corrosion preventing films formed by applying a liquid containing flakes of an aluminum alloy or a zinc alloy and a silicate resin in films and baking the films of the liquid. The electrochemical corrosion preventing films are coated with sealing films formed by applying a liquid containing aluminum flakes and a silicate resin to the electrochemical corrosion preventing films and baking the films of the liquid. The gaskets are prevented from electrochemically corroding despite potential difference between each gasket and the adjacent engine members.
    • 垫圈被放置在用于舷外马达(例如气缸体,气缸盖,曲轴箱,安装壳体和油盘)的水冷发动机的相邻有色金属发动机构件之间的接头中以密封接头。 每个垫片具有由不锈钢形成的基部构件。 基材的表面涂覆有通过将包含铝合金或锌合金薄片和硅酸盐树脂的液体涂覆在膜中并烘烤液体膜而形成的电化学防腐蚀膜。 电化学腐蚀防止膜涂覆有通过将包含铝片和硅酸盐树脂的液体施加到电化学腐蚀防止膜并烘烤液体膜而形成的密封膜。 即使每个垫圈和相邻的发动机构件之间存在潜在差异,垫圈也不会被电化学腐蚀。
    • 3. 发明申请
    • SACRIFICIAL ELECTRODE MOUNTING STRUCTURE
    • 极性电极安装结构
    • US20100251978A1
    • 2010-10-07
    • US12700203
    • 2010-02-04
    • Akira AmanoWataru ShimazakiHiroshi WatanabeYutaka KUBOTA
    • Akira AmanoWataru ShimazakiHiroshi WatanabeYutaka KUBOTA
    • F01P11/06
    • F01P11/06
    • Mounting port, provided adjacent to a cooling water passageway, has a hole opening from the passageway for mounting an anode metal in the passageway. Lid member, which closes the outer end of the hole, has a head portion formed at its outer end and an externally threaded portion engageable with an internally threaded portion of the hole with a sealing member sandwiched therebetween. The lid member having the anode metal fixed thereto is inserted in and attached to the port with the threaded portions engaging with each other with a sealing tape sandwiched therebetween. Space is defined between an outer end portion of the port and an outer end portion of the lid member between the head portion and the externally threaded portion so that part of the sealing member protruding from between the threaded portions can be received in the space.
    • 设置在冷却水通道附近的安装口具有从通道开口的孔,用于将阳极金属安装在通道中。 关闭孔的外端的盖构件具有形成在其外端的头部部分和外螺纹部分,该部分可与孔的内螺纹部分接合,密封构件夹在其间。 将固定有阳极金属的盖构件插入并附接到端口,螺纹部分彼此接合,并且夹在其间的密封带。 在端头的外端部和盖部件的外端部之间限定空间,头部和外螺纹部分之间,使得从螺纹部分之间突出的部分密封件能够被容纳在空间中。
    • 4. 发明授权
    • Sacrificial electrode mounting structure
    • 牺牲电极安装结构
    • US08196554B2
    • 2012-06-12
    • US12700203
    • 2010-02-04
    • Akira AmanoWataru ShimazakiHiroshi WatanabeYutaka Kubota
    • Akira AmanoWataru ShimazakiHiroshi WatanabeYutaka Kubota
    • F01P5/14
    • F01P11/06
    • Mounting port, provided adjacent to a cooling water passageway, has a hole opening from the passageway for mounting an anode metal in the passageway. Lid member, which closes the outer end of the hole, has a head portion formed at its outer end and an externally threaded portion engageable with an internally threaded portion of the hole with a sealing member sandwiched therebetween. The lid member having the anode metal fixed thereto is inserted in and attached to the port with the threaded portions engaging with each other with a sealing tape sandwiched therebetween. Space is defined between an outer end portion of the port and an outer end portion of the lid member between the head portion and the externally threaded portion so that part of the sealing member protruding from between the threaded portions can be received in the space.
    • 设置在冷却水通道附近的安装口具有从通道开口的孔,用于将阳极金属安装在通道中。 关闭孔的外端的盖构件具有形成在其外端的头部部分和外螺纹部分,该部分可与孔的内螺纹部分接合,并且密封构件夹在其间。 将固定有阳极金属的盖构件插入并附接到端口,螺纹部分彼此接合,并且夹在其间的密封带。 在端头的外端部和盖部件的外端部之间限定空间,头部和外螺纹部分之间,使得从螺纹部分之间突出的部分密封件能够被容纳在空间中。
    • 7. 发明授权
    • Process for producing 3-1-menthoxypropane-1,2-diol
    • 制备3-1-薄荷氧基丙-1,2-二醇的方法
    • US06407293B1
    • 2002-06-18
    • US09962122
    • 2001-09-26
    • Akira AmanoTeruyoshi AkiyamaTakashi MiuraToshimitsu Hagiwara
    • Akira AmanoTeruyoshi AkiyamaTakashi MiuraToshimitsu Hagiwara
    • C07C3512
    • C07C43/196C07C41/03
    • A process for producing highly pure 3-1-menthoxypropane-1,2-diol safely and efficiently, and an intermediate to be used in the process. 3-1-menthoxypropane-1,2-diol represented by the chemical formula (IV) is produced by adding 1-menthol to a 1,2-epoxy-3-halogenopropane represented by the following general formula (I) (wherein X represents a halogen atom) in an organic solvent in the presence of a Lewis acid to produce a novel 1-halogeno-3-1-menthoxypropan-2-ol represented by the following general formula (II), then, epoxidating it with a base in the presence of a phase transfer catalyst to produce a 1,2-epoxy-3-1-menthoxypropane represented by the chemical formula (III), and further hydrolyzing it.
    • 安全有效地生产高纯度3-1-薄荷氧基丙二醇-1,2-二醇的方法,以及该方法中使用的中间体。 由化学式(IV)表示的3-1-薄荷氧基丙烷-1,2-二醇通过将1-薄荷醇加入到由下列通式(I)表示的1,2-环氧-3-氯代丙烷中(其中X表示 卤素原子)在有机溶剂中在路易斯酸存在下反应,得到由以下通式(II)表示的新型1-卤代-3-三氟甲氧基丙-2-醇,然后用碱进行环氧化 存在相转移催化剂以制备由化学式(III)表示的1,2-环氧-3-丁氧基丙烷,并进一步水解。