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Numerical simulation of welds of thick steel sheets for some experimental models towards ITER TF coil case

B Carmignani, G Toselli, S Interlandi, F Lucca, A Marin2001年Fusion Engineering and DesignIF 1.7出版社

AbstractIn order to set up the welding techniques to be utilized for ITER TF coil case, it was considered that the numerical simulations might be an important tool in order to give some information on deformations and residual stresses due to the different phases of welding. TIG and SAW with filler material are the welding techniques considered. By the numerical point of view, until 1998, the numerical simulation of these welding types was practically an uninvestigated problem. Studies, researches and developments have been carried out with the aim to single out the calculation tools and methodologies to be used. Reference has been made to some experimental models with simple geometry and reduced dimensions, which, however, consider a more complex experimental model. The welds of these models were followed by several measures for different physical quantities of interest to be compared with the corresponding numerical results. Subsequently, studies and researches, still in course, concerned simplifications of the numerical procedures, which, however, can produce equivalent results and are able to simulate the welds of more complex pieces, having big dimensions.

日本語訳

ITER TFコイルケースに適用する溶接技術を確立するために、数値シミュレーションが溶接の各段階における変形と残留応力に関する情報を得るための重要なツールとなり得ることが考えられた。検討対象となる溶接技術は、溶加材を用いたTIG溶接とSAW溶接である。数値的な観点からは、1998年までは、これらの溶接タイプの数値シミュレーションは実質的に未研究の問題であった。使用すべき計算ツールと方法論を特定することを目的として、研究、調査、および開発が実施されてきた。単純な形状と縮小寸法を有するいくつかの実験モデルが参照され、しかしながら、より複雑な実験モデルも検討された。これらのモデルの溶接部については、比較対象となる対応する数値結果と照合するため、異なる物理量に関するいくつかの測定が行われた。その後も継続中の研究および調査は、数値手順の簡素化に関するものであり、これにより、同等の結果を得ることが可能となり、大型寸法を有するより複雑な部品の溶接をシミュレートすることが可能となった。

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