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Showing 2,141 - 2,160 results of 5,263 for search 'material evolution', query time: 0.14s Refine Results
  1. 2141

    Mechanically robust surface-degradable implant from fiber silk composites demonstrates regenerative potential by Wenhan Tian, Yuzeng Liu, Bo Han, Fengqi Cheng, Kang Yang, Weiyuan Hu, Dongdong Ye, Sujun Wu, Jiping Yang, Qi Chen, Yong Hai, Robert O. Ritchie, Guanping He, Juan Guan

    Published 2025-03-01
    “…Through millions of years of evolution, bones have developed a complex and elegant hierarchical structure, utilizing tropocollagen and hydroxyapatite to attain an intricate balance between modulus, strength, and toughness. …”
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    Microstructure simulation of maraging steel 1.2709 processed by powder bed fusion of metals using a laser beam: A cellular automata approach with varying process parameters by Kai-Uwe Beuerlein, Mohammad Shojaati, Mazyar Ansari, Hannes Panzer, Shahriar Imani Shahabad, Mohsen K. Keshavarz, Michael F. Zaeh, Saeed Maleksaeedi

    Published 2025-03-01
    “…Meanwhile, the grain alignment angle has shown no explicit dependency on process parameters, underscoring the complex dynamics governing microstructural evolution. This methodology paves the way for advancing material design in various industries by enabling a precise control over mechanical properties through microstructure tailoring.…”
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  6. 2146

    Multi laser beams directed energy deposition of a high-strength and high-toughness TC11 titanium alloy with coaxial wire feeding by J.Q. Yao, Y.S. Wang, X.W. Liu, X.F. Chen, S.M. Chen, L. Hu, H.T. Liu, Y.H. Qian, Y. Cheng, B. Song, C.Z. Yan, Y.S. Shi

    Published 2025-07-01
    “…The combined effects of a lower thermal gradient and heterogeneous nucleation, resulting from coaxial wire feeding, are essential in refining the microstructure of materials used in coaxial WLDED. As a result, the fundamental mechanisms underlying microstructural evolution and the improvement of tensile properties through multi-laser beam WLDED with a coaxial processing head have been elucidated.…”
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    Modified sink strength model for dislocation in tungsten: Dependence on temperature and probability density distribution by Hui-Zhi Ma, Yu-Hao Li, Yu-Ze Niu, Hong-Bo Zhou, Guang-Hong Lu

    Published 2025-03-01
    “…., dislocation lines) to capture migrating defects and is crucial for simulating the microstructure evolution of irradiation damage in nuclear materials. …”
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  14. 2154

    Teaching oxidation states to neural networks by Cristiano Malica, Nicola Marzari

    Published 2025-07-01
    “…Here, we first show that DFT+U+V molecular dynamics is capable of following the adiabatic evolution of oxidation states over time, using representative Li-ion cathode materials. …”
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    Revealing nanostructures in high-entropy alloys via machine-learning accelerated scalable Monte Carlo simulation by Xianglin Liu, Kai Yang, Yongxiang Liu, Fanli Zhou, Dengdong Fan, Zongrui Pei, Pengxiang Xu, Yonghong Tian

    Published 2025-08-01
    “…Our results highlight the potential of large-scale, data-driven MC simulations in exploring nanostructure evolution in complex materials, opening new avenues for computationally guided alloy design.…”
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    Metal–Organic Framework-Derived CoOX/Co9S8@NC Nanocomposites Regulated by Oxygen and Sulfur Dual Vacancies as Efficient Trifunctional Electrocatalysts by Yue Peng, Pengfei Bi, Xu Zhu, Peitao Liu, Meijing Ren, Yanqing Zu, Xiaodong Li, Ailing Feng

    Published 2025-01-01
    “…The slow kinetics of oxygen reduction reaction (ORR), oxygen evolution reaction (OER), and hydrogen evolution reaction (HER) pose important challenges to energy storage. …”
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