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    • 2. 发明授权
    • Method of casting and casting machine
    • 铸造机的方法
    • US06745816B2
    • 2004-06-08
    • US09852267
    • 2001-05-10
    • Keisuke BanAkira SunoharaYasuhiro SasakiKoichi OgiwaraSakuzo Nakatani
    • Keisuke BanAkira SunoharaYasuhiro SasakiKoichi OgiwaraSakuzo Nakatani
    • B22D2700
    • B22D27/18B22C9/088B22D21/007
    • The method of casting of the present invention is capable of making volume of a feeder head can be small and making cooling rate of the feeder head can be easily made lower than that of a cavity. The method is executed in a casting machine, which includes a casting die, in which the feeder head is provided between a metal inlet and the cavity and in which heat insulating of the feeder head is greater than that of the cavity so as to make cooling rate of the feeder head lower than that of the cavity. The method comprises the steps of: pouring a molten metal into the cavity; reacting the molten metal on a deoxidizing compound in the cavity so as to deoxidize an oxide film formed on a surface of the molten metal; and supplementing the molten metal in the feeder head to the cavity when the molten metal in the cavity is solidified and shrinked.
    • 本发明的铸造方法能够使供给头的体积小,能够容易地使供给头的冷却速度低于空腔的冷却速度。 该方法在铸造机器中执行,该铸造机包括铸造模具,其中进料头设置在金属入口和空腔之间,其中进料头的绝热大于空腔的绝热,以使冷却 进料头的速率低于空腔的速度。 该方法包括以下步骤:将熔融金属浇注到空腔中; 使所述熔融金属在所述空腔中的脱氧化合物上反应,以使形成在所述熔融金属表面上的氧化膜脱氧; 并且当空腔中的熔融金属凝固和收缩时,将进料头中的熔融金属补充到空腔。
    • 3. 发明授权
    • Method of casting and casting machine
    • 铸造机的方法
    • US06964293B2
    • 2005-11-15
    • US10858478
    • 2004-06-02
    • Keisuke BanAkira SunoharaYasuhiro SasakiKoichi OgiwaraSakuzo Nakatani
    • Keisuke BanAkira SunoharaYasuhiro SasakiKoichi OgiwaraSakuzo Nakatani
    • B22C9/08B22D21/00B22D27/18B22D27/00
    • B22D27/18B22C9/088B22D21/007
    • The method of casting of the present invention is capable of making volume of a feeder head can be small and making cooling rate of the feeder head can be easily made lower than that of a cavity. The method is executed in a casting machine, which includes a casting die, in which the feeder head is provided between a metal inlet and the cavity and in which heat insulating of the feeder head is greater than that of the cavity so as to make cooling rate of the feeder head lower than that of the cavity. The method comprises the steps of: pouring a molten metal into the cavity; reacting the molten metal on a deoxidizing compound in the cavity so as to deoxidize an oxide film formed on a surface of the molten metal; and supplementing the molten metal in the feeder head to the cavity when the molten metal in the cavity is solidified and shrinked.
    • 本发明的铸造方法能够使供给头的体积小,能够容易地使供给头的冷却速度低于空腔的冷却速度。 该方法在铸造机器中执行,该铸造机包括铸造模具,其中进料头设置在金属入口和空腔之间,其中进料头的绝热大于空腔的绝热,以使冷却 进料头的速率低于空腔的速度。 该方法包括以下步骤:将熔融金属浇注到空腔中; 使所述熔融金属在所述空腔中的脱氧化合物上反应,以使形成在所述熔融金属表面上的氧化膜脱氧; 并且当空腔中的熔融金属凝固和收缩时,将进料头中的熔融金属补充到空腔。
    • 10. 发明授权
    • Method for masking in painting process and masking tool therefor
    • 在绘画过程中屏蔽的方法和掩蔽工具
    • US4548838A
    • 1985-10-22
    • US654463
    • 1984-09-26
    • Akira Sunohara
    • Akira Sunohara
    • B05B15/04B05D5/00B05D1/32B05C17/08
    • B05B15/0456
    • In a masking technique used in painting processes, a flexible masking sheet is held in place and in shape by the tension on wires fixed to the sheet. The tension is generated by a tensioning device which acts as a ratchet allowing only increases in tension at room temperature and which loses ratcheting effect at higher temperatures. The tensioning device may employ a wax-actuated clutch which is rigid at room temperature but which gradually loses rigidity, thus slowly releasing tension, as temperature increases. Alternatively, the tensioning device may remain perfectly rigid until a higher temperature prevails. A workpiece can be masked and painted at room temperature and then cured and/or dried at a higher temperature, at which time the mask can be easily removed.
    • 在涂装工艺中使用的掩模技术中,柔性掩模片通过固定在片材上的电线上的张力保持就位和形状。 张力由张紧装置产生,该张紧装置用作棘轮,仅允许室温下的张力增加,并在较高温度下失去棘轮效应。 张紧装置可以使用在室温下刚性但是逐渐失去刚性的蜡致动离合器,因此随着温度的升高缓慢释放张力。 或者,张紧装置可以保持完全刚性,直到存在较高的温度。 可以在室温下对工件进行掩模和涂漆,然后在较高温度下固化和/或干燥,此时可以容易地去除掩模。