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    • 24. 发明授权
    • Method for producing hollow piston for compressor by forging
    • 用于通过锻造生产压缩机空心活塞的方法
    • US06530149B2
    • 2003-03-11
    • US09804874
    • 2001-03-13
    • Manabu SugiuraHidekazu IwamoriTakayuki Kato
    • Manabu SugiuraHidekazu IwamoriTakayuki Kato
    • B23P1500
    • F04B27/0878B21J13/025B21K1/18B21K1/26Y10T29/49249Y10T29/49252
    • A method of producing a hollow piston for a compressor, the piston including a head portion which is slidably fitted in a cylinder bore of the compressor, and an engaging portion which engages a reciprocating drive device of the compressor for reciprocating the piston, at least the head portion of the piston being hollow, the method comprising a step of preparing at least one piston blank by forging, which piston blank includes an engaging-portion-forming section which provides the engaging portion of the piston, and a head-portion-forming section which provides at least a part of the head portion of the piston, the at least one piston blank being prepared by a two-axes forging process which uses a forging die assembly including a set of two first dies which are movable relative to each other along a first axis which is one of two mutually perpendicular axes, and at least one second die which is. movable along a second axis which is the other of the two mutually perpendicular axes. An apparatus for practicing the method is also disclosed.
    • 一种制造用于压缩机的中空活塞的方法,所述活塞包括可滑动地装配在所述压缩机的气缸孔中的头部,以及接合部,所述接合部与所述压缩机的往复运动驱动装置接合,以使所述活塞往复运动,至少 所述活塞的头部是中空的,所述方法包括通过锻造制备至少一个活塞坯料的步骤,所述活塞坯料包括提供活塞的接合部分的接合部分形成部分和头部形成 其提供活塞的头部的至少一部分,所述至少一个活塞坯料通过两轴锻造方法制备,所述两轴锻造工艺使用包括可相对于彼此移动的一组两个第一模具的锻模组件 沿着作为两个相互垂直轴线之一的第一轴线以及至少一个第二管芯。 可沿着作为两个相互垂直轴线中的另一个的第二轴线移动。 还公开了一种用于实施该方法的装置。
    • 28. 发明授权
    • Pressure vessel, compressor and process for casting cylinder block
    • 压力容器,压缩机和铸造缸体的工艺
    • US07395750B2
    • 2008-07-08
    • US10586893
    • 2005-10-19
    • Motoharu TanizawaKyoichi KinoshitaYuki OkamotoTsukasa SugieManabu SugiuraTakayuki KatoFuminobu Enokijima
    • Motoharu TanizawaKyoichi KinoshitaYuki OkamotoTsukasa SugieManabu SugiuraTakayuki KatoFuminobu Enokijima
    • F16J10/00
    • F04B39/12B22D19/0009F16J12/00
    • A pressure vessel of the present invention is such that at least part thereof comprises a metallic composite material 40 comprising alight metal 41, which is turned into a matrix, and a plateshaped iron-basedmember 42, which is buried in the light metal 41, whose major component is iron, and which is provided with a large number of through holes penetrating the front and rear surfaces. By means of this construction, it is possible to provide a pressure vessel having a novel construction whose pressure resistance is enhanced without being accompanied by thickening, and a compressor being provided with a housing comprising the pressure vessel.Moreover, a casting process of the present invention is a casting process, which is suitable for producing cylinder blocks, and is characterized in that, in a casting mold 80 being provided with hollow portions (86, 87) forming a molding cavity surface 84, and a pouring passage 85 which is communicated with the hollow portions, a substantially cylindrical iron-based member 42 having cut-offs 45 at the opened end portions is allocated so that the opened end portions are brought into contact with the molding cavity surface 84 and spaces 86, 87 are provided on the front- and rear-surface sides of the iron-based member 42, and a light-metal molten metal 41′ is filled into the entire hollow portions through the pouring passage 85 via the cut-offs 45, thereby casting the light metal 41 around the iron-based-member 42.
    • 本发明的压力容器的至少一部分包括金属复合材料40,金属复合材料40包括变成矩阵的轻金属41和埋在轻金属41中的板状铁基部件42 ,其主要成分为铁,并且具有穿过前表面和后表面的大量通孔。 通过这种结构,可以提供一种具有新颖结构的压力容器,其压力增强而不伴随增厚,压缩机设置有包括压力容器的壳体。 此外,本发明的铸造方法是适用于制造气缸体的铸造工艺,其特征在于,在铸造模具80中设置有形成模腔表面84的中空部分(86,87) 以及与中空部连通的倾倒通路85,分配有在开口端部具有切断部45的大致圆筒状的铁基部件42,使得开口端部与模腔表面84接触, 在铁基构件42的前表面侧和后表面侧设置有空间86,87,并且通过切断部45将倾斜通路85将轻金属熔融金属41'填充到整个中空部中 从而将轻金属41铸造在铁基构件42周围。
    • 29. 发明申请
    • Structural Body and Electric-Corrosion Prevention Method for the Same
    • 结构体和电腐蚀防治方法
    • US20070237974A1
    • 2007-10-11
    • US11629376
    • 2005-05-13
    • Manabu MiyoshiManabu SugiuraKyoichi KinoshitaMotoharu Tanizawa
    • Manabu MiyoshiManabu SugiuraKyoichi KinoshitaMotoharu Tanizawa
    • C23F15/00F04B39/00
    • F04B53/00B05D5/083B05D7/16F04B39/00F04B39/12F04B53/16Y10T428/12007
    • A structural body of the present invention comprises a first member (1) having a first outside end portion (10) in which a first metal element is adapted to a major component; a second member (2) having a second outside end portion (20) in which a second metal element, being different from the first metal element, is adapted to a major component, and which is disposed to contact with the first outside end portion (10); and a coating member (3) comprising a coated film, at least whose outside superficial portion is composed of a fluoropolymer substance, and coating at least a part of both first outside end portion (10) and second outside end portion (20) so as to cover the contact portion (50) between them. Moreover, an electric-corrosion prevention method of the present invention, in the aforementioned structural body, inhibits the development of electric corrosion, which might possibly occur so as to stride over the contact portion (50) between the first outside end portion (10) and the second outside end portion (20), by hindering the electric conduction between the first outside end portion (10) and the second outside end portion (20) by means of the coating member (3). In accordance with the structural body and electric-corrosion prevention method of the present invention, the electric corrosion between members of different metals can be prevented effectively.
    • 本发明的结构体包括具有第一外端部分(10)的第一部件(1),第一金属元件适于主要部件; 具有第二外端部(20)的第二构件(2),其中与第一金属元件不同的第二金属元件适于主要部件,并且设置成与第一外端部( 10); 以及涂布部件(3),其包括至少其外表面部分由含氟聚合物物质构成的涂膜,并且涂覆第一外端部(10)和第二外端部(20)的至少一部分,以便 以覆盖它们之间的接触部分(50)。 此外,在上述结构体中,本发明的电腐蚀防止方法抑制了可能发生的电腐蚀的发展,从而跨越第一外端部(10)与第二外端部(10)之间的接触部(50) 和第二外端部(20),通过涂覆部件(3)阻碍第一外端部(10)和第二外端部(20)之间的导电。 根据本发明的结构体和电腐蚀防止方法,可以有效地防止不同金属的构件之间的电腐蚀。
    • 30. 发明申请
    • Pressure vessel, compressor and process for casting cylinder block
    • 压力容器,压缩机和铸造缸体的工艺
    • US20070158000A1
    • 2007-07-12
    • US10586893
    • 2005-10-19
    • Motoharu TanizawaKyoichi KinoshitaYuki OkamotoTsukasa SugieManabu SugiuraTakayuki KatoFuminobu Enokijima
    • Motoharu TanizawaKyoichi KinoshitaYuki OkamotoTsukasa SugieManabu SugiuraTakayuki KatoFuminobu Enokijima
    • C22C23/00
    • F04B39/12B22D19/0009F16J12/00
    • A pressure vessel of the present invention is such that at least part thereof comprises a metallic composite material 40 comprising a light metal 41, which is turned into a matrix, and a plate-shaped iron-based member 42, which is buried in the light metal 41, whose major component is iron, and which is provided with a large number of through holes penetrating the front and rear surfaces. By means of this construction, it is possible to provide a pressure vessel having a novel construction whose pressure resistance is enhanced without being accompanied by thickening, and a compressor being provided with a housing comprising the pressure vessel. Moreover, a casting process of the present invention is a casting process, which is suitable for producing cylinder blocks, and is characterized in that, in a casting mold 80 being provided with hollow portions (86, 87) forming a molding cavity surface 84, and a pouring passage 85 which is communicated with the hollow portions, a substantially cylindrical iron-based member 42 having cut-offs 45 at the opened end portions is allocated so that the opened end portions are brought into contact with the molding cavity surface 84 and spaces 86, 87 are provided on the front- and rear-surface sides of the iron-based member 42, and a light-metal molten metal 41′ is filled into the entire hollow portions through the pouring passage 85 via the cut-offs 45, thereby casting the light metal 41 around the iron-based-member 42.
    • 本发明的压力容器的至少一部分包括金属复合材料40,金属复合材料40包括变成矩阵的轻金属41和埋在光中的板状铁基元件42 金属41,其主要成分为铁,并且设有大量贯穿前表面和后表面的通孔。 通过这种结构,可以提供一种具有新颖结构的压力容器,其压力增强而不伴随增厚,压缩机设置有包括压力容器的壳体。 此外,本发明的铸造方法是适用于制造气缸体的铸造工艺,其特征在于,在铸造模具80中设置有形成模腔表面84的中空部分(86,87) 以及与中空部连通的倾倒通路85,分配有在开口端部具有切断部45的大致圆筒状的铁基部件42,使得开口端部与模腔表面84接触, 在铁基构件42的前表面侧和后表面侧设置有空间86,87,并且通过切断部45将倾斜通路85将轻金属熔融金属41'填充到整个中空部中 从而将轻金属41铸造在铁基构件42周围。