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Rate theory study of the proton-irradiation induced dislocation loops in modified 310S steels

机译:改性310S钢中质子辐照引起位错环的速率理论研究

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The evolution of dislocation loops in two types of modified 310S steel under proton irradiation are investigated with rate theory simulations. The growth of dislocation loops is promoted with the increase of irradiation dose and growth rate decreases at high dose, while the number density of the dislocation loops increases first with dose and then tends to be saturated gradually. At the initial stage of irradiation, large number of dislocation loops nucleate and the density increases rapidly. With the development of irradiation, the growth of dislocation loops gradually takes over. Simulation results are in good agreement with the experimental observations of transmission electron microscope. Present study shows that The irradiation resistance of Zr-added steel is slightly better than that of (Nb, Ta, W)-added steel, which may due to the smaller migration energy of interstitials and vacancies in Zr-added steel than that in the (Nb, Ta, W)-added one.
机译:利用速率理论模拟研究了两种改性310S钢在质子辐照下位错环的演变。随着辐照剂量的增加,位错环的生长得到促进,高剂量时生长速率降低,而位错环的数密度首先随剂量增加而逐渐趋于饱和。在辐照的初始阶段,大量的位错环成核,密度迅速增加。随着辐照的发展,位错环的生长逐渐取代。仿真结果与透射电子显微镜的实验结果吻合良好。目前的研究表明,添加Zr的钢的耐辐照性比添加(Nb,Ta,W)的钢稍好,这可能是由于填隙和空位的迁移能比添加Zr的钢小。 (Nb,Ta,W)加一。

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