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    • 7. 发明授权
    • Bonding of silicon carbide components
    • 碳化硅部件的粘接
    • US5683028A
    • 1997-11-04
    • US646737
    • 1996-05-03
    • Jitendra S. GoelaLee E. Burns
    • Jitendra S. GoelaLee E. Burns
    • B23K1/19C04B37/00H01L21/683B23K103/16B23K31/00
    • C04B37/005B23K1/19C04B2235/6586C04B2237/083C04B2237/16C04B2237/365C04B2237/708C04B2237/72C04B2237/84C04B2237/88
    • A method of bonding a first silicon carbide part to a second silicon carbide part is provided. The first silicon carbide part provides a receiving female joint member and the second silicon carbide part provides an insertion male joint member. The male and female members each have facing sidewalls substantially parallel to a direction in which the male member is inserted into the female member. The male and female joint members are configured to provide an average gap(s) between the facing sidewalls of the joint members which is up to about 0.003 inch (0.76 mm). The female joint member further has reservoir means for containing silicon when the male joint member is fully inserted into the female joint member, the reservoir means being in fluid communication with the gap(s). The reservoir means is filled with solid-state silicon, e.g., in powder form. The male joint member is inserted into the female joint member, and the first and second silicon carbide parts are heated to above the melting point of silicon for a time sufficient for the silicon to melt, whereupon molten silicon is drawn into the gap(s) between the facing sidewalls of the male and female joint members by capillary action. Subsequent cooling of the assembled parts solidifies the silicon, thereby securing the joint between the male and female members with solidified silicon forming a bond between the facing sidewalls of the male and female joint members.
    • 提供了将第一碳化硅部分接合到第二碳化硅部分的方法。 第一碳化硅部分提供接收阴接头构件,第二碳化硅部分提供插入阳接头构件。 阳构件和阴构件各自具有基本平行于阳构件插入阴构件的方向的面向侧壁。 公接头构件和阴接头构件构造成在接合构件的相对侧壁之间提供高达约0.003英寸(0.76mm)的平均间隙。 阴接头构件还具有用于在阳接头构件完全插入阴接头构件时容纳硅的储存装置,储存装置与间隙流体连通。 储存装置填充有例如粉末形式的固态硅。 将阳接头构件插入阴接头构件中,并将第一和第二碳化硅部件加热至高于硅的熔点足以使硅熔化的时间,然后将熔融硅吸入间隙中, 通过毛细管作用在雄性和雌性关节成员的面对侧壁之间。 随后的组装部件的冷却使硅固化,从而通过凝固硅固定阳构件和阴构件之间的接头,从而在阳接头和阴接头构件的相对的侧壁之间形成结合。