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JT-60SA真空容器の連続プラグ継手の疲労強度

Fatigue behavior on welded joint for JT-60SA vacuum vessel

柳 寛*; 澁井 正直*; 金原 利雄*; 持田 務*; 江尻 満*; 浅野 史朗*; 芝間 祐介; 正木 圭; 逆井 章

Yanagi, Yutaka*; Shibui, Masanao*; Kanahara, Toshio*; Mochida, Tsutomu*; Ejiri, Mitsuru*; Asano, Shiro*; Shibama, Yusuke; Masaki, Kei; Sakasai, Akira

JT-60SA真空容器構造は、D型断面を有する二重壁構造である。この構造は、内壁及び外壁と補強にポロイダルリブにより構成され、SUS316L(Co$$<$$0.05wt%)で製作される。補強リブへの外壁の溶接(これを連続プラグ溶接と呼ぶ)は、二重壁構造の外からなされる。したがって、二重壁の内部から溶接裏波ビードを確認することは困難であり、溶接接続部では不完全溶込みを仮定する。本検討では、この連続プラグ溶接に積極的に不完全溶込みを導入した継手に対して、これら不完全溶込みの疲労強度及びその挙動への影響を調査するために疲労試験を行った。

JT-60SA Vacuum Vessel (VV) has D-shaped cross section and double-walled structure. It consists of the inner and outer wall reinforced by poloidal ribs and is made of SUS316L (Co$$<$$0.05wt%). The welding outer wall on rib (so called continuous plug) is performed from the outside of double-wall. Since it is difficult to confirm the penetration bead from the inside of double-wall, an incomplete penetration is assumed to be included in this welded joint. In this study, the fatigue test of continuous plug welded joint with an artificial incomplete penetration was performed to investigate the effect of the incomplete penetration on fatigue behavior and fatigue strength.

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