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首页> 外文期刊>Nuclear Energy and Technology >Swelling of improved 16Cr–15Ni–2Mo–Mn–Ti–V–B steel under dose rates from 1×10? 8 to 1.7×10? 6 dpa/s
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Swelling of improved 16Cr–15Ni–2Mo–Mn–Ti–V–B steel under dose rates from 1×10? 8 to 1.7×10? 6 dpa/s

机译:改进的16Cr – 15Ni – 2Mo – Mn – Ti – V – B钢在1 × 10 8 到1.7 × 10 6 dpa / s

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摘要

Abstract Radiation-induced swelling negatively affects the operability of structural units of fast breeder reactor (FBR) cores. Therefore, search for new and improvement of existing steels for reducing swelling is an important task. Since 2003, type 16Cr–15Ni–2Mo–Mn–Ti–V–B steel has shown a significant increase in radiation resistance due to its improved composition and heat treatment. Specialists of the JSC INM studied swelling of 16Cr–15Ni–2Mo–Mn–Ti–V–B steel with improved composition, data on the maximum swelling temperature, average swelling rate within typical coolant temperature ranges, as well as fast reactor dose rate were obtained. The obtained results are based on swelling measurements using hydrostatic weighing and transmission microscopy. Errors in hydrostatic measurements were examined with involvement of metallography data and selection of immersion liquid. It was revealed that the average swelling rate of improved 16Cr–15Ni–2Mo–Mn–Ti–V–B steel at the maximum swelling temperature is within the range of 0.04–0.14%/dpa. Shifting of this temperature from 460 to 520°C with increase of the maximum damaging dose from 60 to 80dpa (1.3× 10? 6 and 1.7×10? 6 dpa/s, respectively), is observed. At doses below 10dpa and temperatures below 400°C the average swelling rate may reach 0.04%/dpa. At temperatures of about 600°C and irradiation doses below 50dpa the swelling rate does not exceed 0.01%/dpa during the whole period of observation.
机译: 摘要 辐射引起的膨胀消极地影响了快速增殖堆(FBR)堆芯结构单元的可操作性。因此,寻找新的和改进的现有钢以减少溶胀是一项重要任务。 自2003年以来,键入16Cr-15Ni –2Mo–Mn–Ti–V–B钢由于改善了成分和热处理而显示出显着的抗辐射性。 JSC INM的专家研究了具有改进成分的16Cr-15Ni-2Mo-Mn-Ti-V-B钢的溶胀,最大溶胀温度,典型冷却剂温度范围内的平均溶胀率以及快速反应器剂量率的数据。 获得的结果基于使用静压称重和透射显微镜进行的溶胀测量。静水压测量中的误差通过金相学数据和浸没液的选择进行了检验。 它显示出平均溶胀率在最高溶胀温度下,改进的16Cr-15Ni-2Mo-Mn-Ti-V-B钢的含量在0.04-0.14%/ dpa的范围内。随着最大破坏剂量从60升高到80 dpa(1.3 °C sp =“ 0.12” />× 10 6 和1.7 × 10 6 dpa / s)。在低于10 dpa的剂量和低于400 °C的温度下,平均溶胀率可能达到0.04%/ dpa。在约600 °C的温度和低于50 dpa的辐照剂量下,在整个使用期间,溶胀率不超过0.01%/ dpa。观察。

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