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Nb3Sn超導(dǎo)股線熱應(yīng)變分析模型研究
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國家磁約束核聚變能發(fā)展研究專項“973”計劃項目(2014GB105001);河南省高等學(xué)校青年骨干教師資助計劃 (2010GGJS-088);河南省教育廳科學(xué)技術(shù)研究重點項目 (14A510005)


Thermal Strain Analysis Model of Nb3Sn Superconducting Strands
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    摘要:

    ITER聚變反應(yīng)堆上Nb3Sn超導(dǎo)股線是由脆性金屬間化合物構(gòu)成的,由于其間各組分不同的熱脹冷縮系數(shù)和不同的彈性模量,使得股線從熱反應(yīng)溫度或熱處理溫度到室溫、以至到低溫運行時,會在Nb3Sn復(fù)合物中產(chǎn)生熱應(yīng)變。為了研究Nb3Sn的熱應(yīng)變和構(gòu)建相應(yīng)的數(shù)學(xué)模型,進行了加熱期間局部應(yīng)變測量以及室溫下的拉力測試。根據(jù)Nb3Sn股線不同組分應(yīng)力/應(yīng)變曲線所顯示的彈塑特性,對它們進行量化分析。測試分析發(fā)現(xiàn),在室溫下沿軸向加載到Nb3Sn超導(dǎo)絲的局部應(yīng)變是壓縮應(yīng)變,高溫下是拉應(yīng)變;另外用數(shù)值分析計算方法可以再現(xiàn)依靠溫度的軸向熱應(yīng)變。

    Abstract:

    The Nb3Sn superconducting strands used for ITER (international thermal-nuclear experimental reactor) consist of brittle intermetallic compounds. Due to the different coefficients of thermal expansion and different moduli of elasticity among the components, thermal strain is generated in the composite from heat treatment temperature down to room temperature, even to operating temperature (4.2 or 4.5 K). In order to research thermal strain and build the mathematic model of the Nb3Sn strands, local strain measurements during heating by means of quantum beams and tensile tests at room temperature were carried out. According to the elasto-plastic behavior of Nb3Sn revealed in the stress curves, the thermal strain was evaluated. The results show that the local strain exerted on superconducting (SC) filaments along the axial direction is compressive at room temperature and tensile at high temperatures. Moreover, the temperature dependence of thermal strain can be reproduced well by the numerical calculation method proposed in the paper.

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蔣華偉,武松濤. Nb3Sn超導(dǎo)股線熱應(yīng)變分析模型研究[J].稀有金屬材料與工程,2014,43(6):1372~1376.[Jiang Huawei, Wu Songtao. Thermal Strain Analysis Model of Nb3Sn Superconducting Strands[J]. Rare Metal Materials and Engineering,2014,43(6):1372~1376.]
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  • 收稿日期:2014-01-05
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  • 在線發(fā)布日期: 2014-11-13
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