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1. Effect of irradiation with varying H/He ratio on defect clusters and hardening in CLAM steel NSTL国家科技图书文献中心

Yin, Zepeng |  Guo, Liping... -  《Journal of Alloys and Compounds》 - 2025,1016 - 178935~ - 共8页

摘要: on China Low Activation Martensitic (CLAM) steel, a | High energy neutron irradiation in fusion |  reactors compared to fission reactors necessitates more |  attention to the effects of hydrogen (H) and helium (He | ) generated by transmutation on structural materials. Due to
关键词: H -He synergistic effect |  H/He ratio |  Dislocation loops |  Irradiation hardening |  CLAM steel

2. Microstructure and mechanical properties of FeMnNiCrV high entropy alloy under ion irradiation NSTL国家科技图书文献中心

Wang, S. |  Liu, P. P.... -  《Journal of Alloys and Compounds》 - 2025,1032 - 181157~ - 共11页

摘要: FeMnNiCr alloy, CLAM steel and Fe9Cr model alloy. The | A compositionally-complex but structurally | -simple FeMnNiCrV high-entropy alloy were developed by |  incorporating the low-activation V element based on the Co | -free FeMnNiCr alloy. The mechanical properties and
关键词: High-entropy alloy |  Nano-hardness |  Dislocation loops |  Stacking fault |  V segregation

3. Advanced machine learning analysis of radiation hardening in reduced-activation ferritic/martensitic steels NSTL国家科技图书文献中心

Wang, Pengxin |  Tao, Qing... -  《Computational Materials Science》 - 2025,251 - 共11页

摘要: decades (1985 to 2024) and covering various steel series |  CLAM, was extensively analysed. Multiple models | , softening the steel. The hardening response to radiation | This study uses advanced machine learning |  models to investigate the radiation hardening behaviour
关键词: Reduced activation ferritic martensitic (RAFM) steels |  Radiation hardening |  Machine learning |  GBDT |  XGBoost |  Random forest |  Artificial neural network

4. (178746)High-temperature mechanical properties and radiation resistance properties of reduced-activation high-entropy alloys FeMnCrTi_(0.1) NSTL国家科技图书文献中心

Hao Yang |  Zhengkui Zeng... -  《Journal of Alloys and Compounds》 - 2025,1014 - 1~13 - 共13页

摘要: CLAM (China Low Activation Martensitic) steel under | Structural materials for fusion reactors need |  exhibit both high radiation resistance and high | -temperature mechanical properties, while also meeting low |  activation requirements due to nuclear waste management
关键词: Hydrogen ion irradiation |  High-temperature mechanical properties |  Reduced-activation high-entropy alloy |  Bubbles |  Irradiation hardening

5. Influence of thermomechanical treatment on mechanical properties of CLAM steel NSTL国家科技图书文献中心

Yin S. |  Ye S.... -  《Fusion engineering and design》 - 2024,202(May) - 1.1~1.13 - 共13页

摘要: tempered CLAM steel (N + T CLAM steel) revealed notable |  CLAM steel exhibited similarities to other RAFM |  Eurofer 97 steel and F82H steel. TMT CLAM steel |  N+T CLAM steel. Moreover, under the same |  steel was 54 times longer than that of N+T CLAM steel.
关键词: CLAM steel |  Creep property |  Impact performance |  Tensile properties |  Thermomechanical processing

6. Evolution of microstructure and changes in hydrogen embrittlement resistance of CLAM steel after long-term aging NSTL国家科技图书文献中心

Gu Y. |  Zhao H.... -  《Corrosion Science: The Journal on Environmental Degradation of Materials and its Control》 - 2024,232(May) - 1.1~1.12 - 共12页 - 被引量:1

摘要: Low Activation Martensitic (CLAM) steel during |  thermal aging, CLAM steels were aged at 550 °C and 600 | ? 2024 Elsevier LtdTo investigate the changes |  in hydrogen embrittlement (HE) resistance of China |  °C up to 5000 h. The evolution of microstructure
关键词: CLAM steel |  Hydrogen embrittlement |  Precipitates |  Semi-coherent interface |  Thermal aging

7. Effect of pre-precipitation thermomechanical treatment on precipitation behavior of CLAM steel NSTL国家科技图书文献中心

Yu J. |  Zhao F.... -  《Journal of Nuclear Materials: Materials Aspects of Fission and Fusion》 - 2024,598 - 共5页 - 被引量:2

摘要: improving the high temperature performance of CLAM steel | © 2024China Low Activation Martensitic steel |  (CLAM) is a cladding material used in thermonuclear |  fusion reactors. Its high temperature performance is |  closely related to precipitation strengthening. The MX
关键词: CLAM steel |  Dislocation density |  Lath size |  M23C6 |  MX |  Thermomechanical treatment

8. (113848)Evolution of interfacial microstructure and oxides of CLAM steel by hot compression bonding NSTL国家科技图书文献中心

Bai Y. |  Wang J.... -  《Materials Characterization》 - 2024,210 - 1~12 - 共12页 - 被引量:1

摘要: martensitic (CLAM) steel as the structural material for |  compression bonding (HCB) for CLAM steel was carried out | The development of the joining process is |  essential for the application of China low activation |  fusion reactors. In the present study, the hot
关键词: CLAM steel |  Holding time |  Hot compression bonding |  Interfacial grain boundary |  Interfacial oxide

9. Mechanism analysis of grain refinement caused by deformation and the improvement of strength and ductility of CLAM steel NSTL国家科技图书文献中心

Li P. |  Li Y.... -  《Journal of Nuclear Materials: Materials Aspects of Fission and Fusion》 - 2024,599 - 共5页

摘要: martensitic (CLAM) steel under extreme loading conditions |  the CLAM steel shows an apparent positive strain |  of CLAM steel first decreases (300–673 K) and then |  dynamic conditions, the elongation of the CLAM steel is |  the recrystallization process of the CLAM steel. In
关键词: CLAM steel |  Dynamic loading |  Grain refinement |  High temperatures |  Positive strain rate effect of elongation

10. Exceptional tensile ductility and strength of a BCC structure CLAM steel with lamellar grains at 77 kelvin NSTL国家科技图书文献中心

Zhou, Jinhua |  Wang, Jing... -  《International Journal of Plasticity》 - 2024,183 - 共19页

摘要: activation martensitic steel (CLAM) steel with lamellar |  grained CLAM steel exhibits an excellent synergy of |  ductility in the steel with decrease in temperature |  the lamellar grained steel can be attributed to an |  necking area of the steel, thereby compensating for the
关键词: CLAM steel |  lamellar grains |  Layered tearing cracks |  Necking area |  Low-temperature tensile ductility
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