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    • 2. 发明公开
    • Double-layer pellet, method of manufacturing the same, and apparatus for manufacturing the same
    • Doppelschichtspellet,Verfahren und Vorrichtung zu seiner Herstellung。
    • EP0647087A1
    • 1995-04-05
    • EP94114566.6
    • 1994-09-15
    • The Director-General of the National Institute for Fusion Science
    • Sudo, Shigeru, 14-14, Chikusa-higashi Jutaku
    • H05H1/22
    • G21B1/19Y02E30/16Y10S376/916
    • A pellet carrier disc (15) is movably held between two cooling blocks (9 and 10). The disc (15) is vertically moved, setting its through hole (31) into axial alignment with a first hole (25) of the block (10). Deuterium gas is supplied into the through hole (31) through the hole (25), and cooled and solidified, forming a deuterium cylinder (33). Then, the disc (15) is moved, axially aligning the hole (31) with a second hole (26) of the block (10). A shaft (35) is thrust into a first end of the deuterium cylinder (33) through the hole (26), thereby forming a hole in the end of the cylinder (33). Next, the disc (15) is moved, axially aligning the hole (31) with a third hole (27) of the block (10). Tritium gas is introduced into the hole of the cylinder (33) through the hole (27), and cooled and solidified, forming a tritium core. Further, the disc (15) is moved, axially aligning the hole (31) with a fourth hole (28) of the block (10). A shaft (41) is moved through the hole (28), causing the second end portion of the deuterium cylinder (33) to project from the hole (31). The second end portion of the cylinder (33) is cut off. An additional amount of deuterium gas is applied on to the first end of the cylinder (33), and cooled and solidified, forming a layer covering the tritium core.
    • 颗粒载体盘(15)可移动地保持在两个冷却块(9和10)之间。 盘(15)垂直移动,将其通孔(31)设置成与块(10)的第一孔(25)轴向对准。 氘气通过孔(25)供给到通孔(31)中,冷却固化,形成氘气筒(33)。 然后,使盘(15)移动,使孔(31)与块(10)的第二孔(26)轴向对准。 轴(35)通过孔(26)推入氘缸(33)的第一端,从而在气缸(33)的端部形成一个孔。 接下来,使盘(15)移动,使孔(31)与块(10)的第三孔(27)轴向对准。 氚气通过孔(27)引入圆筒(33)的孔中,冷却固化,形成氚核。 此外,盘(15)移动,使孔(31)与块(10)的第四孔(28)轴向对准。 轴(41)移动通过孔(28),使得氘缸(33)的第二端部从孔(31)突出。 气缸(33)的第二端部被切断。 将额外量的氘气施加到气缸(33)的第一端,并冷却并固化,形成覆盖氚核的层。