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首页> 外文期刊>Materials transactions >Effects of Helium Production and Heat Treatment on Neutron Irradiation Hardening of F82H Steels Irradiated with Neutrons
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Effects of Helium Production and Heat Treatment on Neutron Irradiation Hardening of F82H Steels Irradiated with Neutrons

机译:产氦和热处理对中子辐照的F82H钢中子辐照硬化的影响

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The influcence of addition of ~(10)B and ~(11)B on radiation hardening as. a function of irradiation temperature was examined in reduced-activation martensitic F82H+B steels (8Cr-2W-0.2V-0.04Ta-0.lC-0.006B). Specimens used were ~(10)B doped, ~(10)B+ ~(11)B doped and ~(11) doped F82H steels. Helium concentration produced in the specimens through ~(10)B(n, a)~7Li reaction was measured from about 15 to about 330 appm. Radiation hardening of the specimens irradiated at 300 deg C to 2.3 dpa and 150 deg C to 1.9dpa was observed. Increment of radiation hardening possibly due to helium in the specimen irradiated at 300 deg C tended to increase slightly with increasing helium production in tensile test at 20 deg C, but it was not observed for 150 deg C irradiation. Therefore, it can be mentioned that the enhancement of radiation hardening in the ~(10)B(~(11) B) doped steels depends on irradiation temperature. The dependence of radiation hardening on tempering time was also examined for F82H-std irradiated at 150 deg C to 1.9 dpa. Increment of yield strength of F82H-std tended to increase with increasing tempering time. The relation between the shift of DBTT and the increment of yield strength due to irradiation suggest that the extension of tempering time or the increase of tempering temperature would be beneficial for mechanical properties of F82H-std.
机译:〜(10)B和〜(11)B的添加对辐射硬化的影响。在还原活化马氏体F82H + B钢(8Cr-2W-0.2V-0.04Ta-0.lC-0.006B)中研究了辐照温度的函数。使用的样品是〜(10)B掺杂,〜(10)B +〜(11)B掺杂和〜(11)掺杂的F82H钢。通过〜(10)B(n,a)〜7Li反应在样品中产生的氦浓度被测量为约15至约330 appm。观察到在300℃至2.3 dpa和150℃至1.9dpa照射的样品的辐射硬化。在20℃的拉伸试验中,可能由于氦在300℃下辐照的样品中的氦气而产生的辐射硬化增加趋势会随着氦气产量的增加而略有增加,但在150℃的辐照下却没有观察到。因此,可以提到的是,〜(10)B(〜(11)B)掺杂钢中辐射硬化的增强取决于辐照温度。还检查了在150℃至1.9 dpa辐射的F82H-std的辐射硬化对回火时间的依赖性。 F82H-std的屈服强度的增加趋于随回火时间的增加而增加。 DBTT的位移与辐照引起的屈服强度增加之间的关系表明,回火时间的延长或回火温度的升高将有利于F82H-std的力学性能。

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