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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。
    • 8. 发明授权
    • Connector seal
    • 连接器密封
    • US08770591B2
    • 2014-07-08
    • US12382102
    • 2009-03-09
    • Yasuhiro SasakiShigeru TanakaOsamu SugiyamaTohru KurosawaHiroaki YamagishiGenki Murakoshi
    • Yasuhiro SasakiShigeru TanakaOsamu SugiyamaTohru KurosawaHiroaki YamagishiGenki Murakoshi
    • F16L17/06H02G15/04F16L5/02
    • H01R13/521
    • The present invention is to provide a connector seal allowing an accurate inspection of presence of an incorrectly formed bore in a terminal insertion bore of the connector seal. A connector seal includes a seal main body and a plurality of terminal insertion bores. Each terminal insertion bore has an upper membrane potion and a lower membrane portion, which are spaced one another and interconnected together with a lamella. Preferably, the terminal insertion bore has a membrane, which includes a substantially curved groove and a substantially curved lamella. Preferably, the terminal insertion bore has a membrane which includes a lamella, the lamella being oriented in a direction coincident with a diagonal line of a rectangular cross-section of a terminal so that corners of the terminal hit opposite ends of the lamella.
    • 本发明提供一种连接器密封件,其允许精确检查在连接器密封件的端子插入孔中存在不正确形成的孔。 连接器密封件包括密封主体和多个端子插入孔。 每个端子插入孔具有上隔膜部分和下膜部分,其彼此间隔开并与片层互连在一起。 优选地,端子插入孔具有膜,其包括基本上弯曲的凹槽和基本上弯曲的薄片。 优选地,端子插入孔具有包括薄片的薄膜,薄片沿着与端子的矩形横截面的对角线重合的方向定向,使得端子的拐角撞击薄片的相对端。