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    • 1. 发明申请
    • Method for fine-machining crankshafts and machining center therefor
    • 精密加工曲轴及其加工中心的方法
    • US20100003098A1
    • 2010-01-07
    • US12008765
    • 2008-01-14
    • Bernd FaigleWolfgang Marker
    • Bernd FaigleWolfgang Marker
    • B23C3/06B23C3/08
    • B23Q1/4866B23C3/06B23C3/08B23Q1/44Y10T409/303808Y10T409/305544
    • A method and machine for machining shafts, such as crankshafts of an internal combustion engine wherein the shaft supported on a workpiece carrier rotatably about its axis and the carrier is movable relative to a milling tool adjustably supported on the machine, the bearing surfaces of the shaft are fine-machined by a milling tool taking into consideration the resiliency and the bending of the shaft by the engagement force of the milling tool during fine cutting of the bearing surfaces in the various angular rations of the shaft and the axial bearing location between the shaft ends so as to provide for a perfect final round cutting of the bearings without the need for wet grinding. The fine machining is preferably achieved by dry machining and orthogonal rotational milling, all main bearings and lifting bearings being machined in a single clamping from the rough machining dimensions to the final dimension. For a second machining sequence, some of the main bearings and lifting bearings are used as clamping surfaces.
    • 一种用于加工轴的方法和机器,例如内燃机的曲轴,其中支撑在工件载体上围绕其轴线可旋转的轴和载体可相对于可调节地支撑在机器上的铣刀移动,轴的轴承表面 考虑到在轴的各种角度位置中的轴承表面的精细切割期间铣削工具的接合力以及轴之间的轴向轴承位置,考虑到轴的弹性和弯曲的精确加工 端部,以便提供轴承的完美的最终圆切割,而不需要湿磨。 精加工优选通过干式加工和正交旋转铣削来实现,所有主轴承和提升轴承都从粗加工尺寸到最终尺寸以单次夹紧加工。 对于第二个加工顺序,一些主轴承和提升轴承用作夹紧表面。
    • 3. 发明授权
    • Cooling system for auxiliary systems of a nuclear installation
    • 核设备辅助系统的冷却系统
    • US4360496A
    • 1982-11-23
    • US162062
    • 1980-06-23
    • Wolfgang MarkerKlaus MullerWilhelm Roller
    • Wolfgang MarkerKlaus MullerWilhelm Roller
    • G21C15/18G21D1/02G21D3/04G21C9/00
    • G21C15/18G21D1/02G21D3/04Y02E30/40
    • Cooling system for auxiliary systems of a nuclear installation for heat removal from heat exchangers, the heat exchangers being connected on the primary side thereof to lines which may contain radioactive liquids or gases, being disposed in a secured area of the nuclear installation, and having connections on the secondary side thereof for cooling liquid lines, including an outgoing line for the cooling liquid connected to the connections on the secondary side of the heat exchangers, a dry cooling tower having cooling elements connected to the outgoing line, a return line for the cooling liquid connected to the cooling elements, a refrigeration loop having a supplemental heat exchanger with the primary side thereof connected in the return line, a bypass line connected from the outgoing to the return line parallel to the cooling elements and supplemental heat exchanger, and a control valve connected in the bypass line.
    • 用于从热交换器除热的核设备的辅助系统的冷却系统,所述热交换器在其一次侧被连接到可以包含放射性液体或气体的管线,被布置在核设备的安全区域中,并且具有连接 在其二次侧,用于冷却液体管线,包括连接到热交换器的次级侧上的连接的冷却液体的出口管线,具有连接到出口管线的冷却元件的干式冷却塔,用于冷却的返回管线 连接到冷却元件的液体,具有辅助热交换器的制冷回路,其一次侧连接在返回管线中,从出口到平行于冷却元件和辅助热交换器的返回管路连接的旁通管线,以及控制器 阀门连接在旁路管路中。
    • 4. 发明授权
    • Method for fine-machining crankshafts and machining center therefor
    • 精密加工曲轴及其加工中心的方法
    • US08419323B2
    • 2013-04-16
    • US12008765
    • 2008-01-14
    • Bernd FaigleWolfgang Marker
    • Bernd FaigleWolfgang Marker
    • B23C3/16
    • B23Q1/4866B23C3/06B23C3/08B23Q1/44Y10T409/303808Y10T409/305544
    • A method and machine for machining shafts, such as crankshafts of an internal combustion engine wherein the shaft supported on a workpiece carrier rotatably about its axis and the carrier is movable relative to a milling tool adjustably supported on the machine, the bearing surfaces of the shaft are fine-machined by a milling tool taking into consideration the resiliency and the bending of the shaft by the engagement force of the milling tool during fine cutting of the bearing surfaces in the various angular rations of the shaft and the axial bearing location between the shaft ends so as to provide for a perfect final round cutting of the bearings without the need for wet grinding. The fine machining is preferably achieved by dry machining and orthogonal rotational milling, all main bearings and lifting bearings being machined in a single clamping from the rough machining dimensions to the final dimension. For a second machining sequence, some of the main bearings and lifting bearings are used as clamping surfaces.
    • 一种用于加工轴的方法和机器,例如内燃机的曲轴,其中支撑在工件载体上围绕其轴线可旋转的轴和载体可相对于可调节地支撑在机器上的铣刀移动,轴的轴承表面 考虑到在轴的各种角度位置中的轴承表面的精细切割期间铣削工具的接合力以及轴之间的轴向轴承位置,考虑到轴的弹性和弯曲的精确加工 端部,以便提供轴承的完美的最终圆切割,而不需要湿磨。 精加工优选通过干式加工和正交旋转铣削来实现,所有主轴承和提升轴承都从粗加工尺寸到最终尺寸以单次夹紧加工。 对于第二个加工顺序,一些主轴承和提升轴承用作夹紧表面。