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    • 3. 发明申请
    • RTM METHOD AND METHOD FOR MANUFACTURING FIBER-REINFORCED RESIN MODLED BODY
    • 用于制造纤维增强树脂模制体的RTM方法和方法
    • US20110272853A1
    • 2011-11-10
    • US13145870
    • 2010-01-27
    • Seiji TsujiHidehiro TakemotoMasaaki Yamasaki
    • Seiji TsujiHidehiro TakemotoMasaaki Yamasaki
    • B29C45/14
    • B29C70/48
    • Provided is a RTM method wherein a molding die composed of a temperature control mechanism, which is arranged on at least one of a plurality of dies that form a molding die and adjusts the temperature of the die, and a valve mechanism, which starts and stops supply of a resin in a state of having fluidity to the cavity of the molding die, is used. In the method, a plurality of the valve mechanisms are arranged on the molding die, each of the valve mechanisms is provided with one or a plurality of temperature control systems which adjust the temperature of the valve mechanism, the resin in the state of having fluidity is supplied to the cavity from the valve mechanisms, and a reinforcing fiber base material contained in the cavity is impregnated with the resin.
    • 提供一种RTM方法,其中,由温度控制机构构成的成型模具,该温度控制机构设置在形成模具的多个模具中的至少一个上,并且调节模具的温度,以及启动和停止的阀机构 使用向成型模具的空腔流动的状态的树脂的供给。 在该方法中,多个阀机构设置在成型模具上,每个阀机构设置有一个或多个温度控制系统,其调节阀机构的温度,树脂处于流动性 从阀机构供给到空腔,并且包含在空腔中的增强纤维基材被树脂浸渍。
    • 4. 发明授权
    • RTM method and method for manufacturing fiber-reinforced resin molded body
    • 纤维增强树脂成型体的RTM方法和方法
    • US08574484B2
    • 2013-11-05
    • US13145870
    • 2010-01-27
    • Seiji TsujiHidehiro TakemotoMasaaki Yamasaki
    • Seiji TsujiHidehiro TakemotoMasaaki Yamasaki
    • B29C45/14
    • B29C70/48
    • Provided is a RTM method wherein a molding die composed of a temperature control mechanism, which is arranged on at least one of a plurality of dies that form a molding die and adjusts the temperature of the die, and a valve mechanism, which starts and stops supply of a resin in a state of having fluidity to the cavity of the molding die, is used. In the method, a plurality of the valve mechanisms are arranged on the molding die, each of the valve mechanisms is provided with one or a plurality of temperature control systems which adjust the temperature of the valve mechanism, the resin in the state of having fluidity is supplied to the cavity from the valve mechanisms, and a reinforcing fiber base material contained in the cavity is impregnated with the resin.
    • 提供一种RTM方法,其中,由温度控制机构构成的成型模具,该温度控制机构设置在形成模具的多个模具中的至少一个上,并且调节模具的温度,以及启动和停止的阀机构 使用向成型模具的空腔流动的状态的树脂的供给。 在该方法中,多个阀机构设置在成型模具上,每个阀机构设置有一个或多个温度控制系统,其调节阀机构的温度,树脂处于流动性 从阀机构供给到空腔,并且包含在空腔中的增强纤维基材被树脂浸渍。
    • 10. 发明申请
    • Control apparatus of extracted air booster system of integrated gasification combined cycle power plant
    • 综合气化联合循环发电厂抽风增压系统控制装置
    • US20070125064A1
    • 2007-06-07
    • US11605392
    • 2006-11-29
    • Takashi SonodaMasaaki YamasakiSatoko FujiiKiyoshi Tarumizu
    • Takashi SonodaMasaaki YamasakiSatoko FujiiKiyoshi Tarumizu
    • F02C6/18
    • F02C6/18F02C3/22F02C6/08F02C6/10Y02E20/16
    • Provided is a control apparatus of an extracted air booster system of an integrated gasification combined cycle power plant, which control apparatus can additionally serve a sufficient pressure control function and a sufficient antisurge control function. For example, when an inlet guide vane is fully closed or has a small opening degree equal to or smaller than a predetermined opening degree, a second control section of the control apparatus of an extracted air booster system performs pressure control based on a pressure deviation, instead of or as well as antisurge control. In the pressure control, the degree of opening of an antisurge valve is controlled so that a booster outlet pressure detection value can become equal to a set pressure value. In a case where a pressure ratio is larger than a set pressure ratio value, it is also effective that the second control section performs the antisurge control even when the inlet guide vane is fully closed.
    • 本发明提供一种综合气化联合循环发电厂的提取空气增压系统的控制装置,该控制装置还能够提供足够的压力控制功能和足够的防喘振控制功能。 例如,当入口引导叶片完全关闭或具有等于或小于预定开度的小开度时,抽取的增压系统的控制装置的第二控制部分基于压力偏差进行压力控制, 而不是或与防洪控制一样。 在压力控制中,控制防喘振阀的开度,使升压器出口压力检测值能够变得等于设定压力值。 在压力比大于设定压力比值的情况下,即使入口导叶完全关闭,第二控制部也进行防喘振控制也是有效的。