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2篇 您的检索式:作者名="J.W.Wang"
    题名 作者 年代 出处 被引量
1CT诊断恶性胸膜下纯磨玻璃结节胸膜及间质侵犯的初步研究显示文摘目的通过薄层CT对胸膜下恶性纯磨玻璃结节(pGGN)影像特征的综合分析,评估脏胸膜侵犯(VPI)风险,提高对与胸膜接触的pGGN中浸润性腺癌(IA)的诊断。方法回顾性分析2012年1月—2015年12月我院满足以下标准的115例可疑病人的CT结果及临床资料:(a)术前1个月经薄层CT证实与胸膜接触的pGGN;(b)手术证实pGGN恶性。Q.Zhao J.W.Wang L.Yang L.Y.Xue W.W.Lu 喻诗琴(译) 赵世华(校) 2019国际医学放射学杂志2019,0,2:15
2Role of grain boundary character on Bi segregation-induced embrittlement in ultrahigh-purity copper显示文摘Bismuth(Bi),as an impurity element in copper and copper-based alloys,usually has a strong tendency of grain boundary(GB)segregation,which depends on the GB characters.However,the influence of such a segregation on the properties of ultrahigh-purity copper has been rarely reported and the exact structural arrangements of Bi atoms at different GBs remain largely unclear.In this study,we investigated the influ-ence of trace amounts of Bi(50-300 wt ppm)on the ductility of an ultrahigh-purity copper(99.99999%)in the range of room temperature to 900°C.The tensile results show that the addition of Bi seriously damages the ductility of the ultrahigh-purity copper at temperatures of 450-900°C,which is due to the GB segregation of Bi.On this basis,such a segregation behavior at different types of GBs,including high and low angle GBs(HAGBs/LAGBs),and twin boundaries(TBs),via the scanning electron microscope-electron backscattered diffraction(SEM-EBSD)and aberration-corrected scanning transmission electron microscope(AC-STEM)investigations,combined with the first-principles calculations were systematically studied.The atomistic characterizations demonstrate an anisotropic Bi segregation,where severe enrich-ment of Bi atoms typically occurs at the HAGBs,while the absence of Bi adsorption prevails at LAGBs or TBs.In particular,the segregated Bi at random HAGBs exhibited the directional bilayer adsorption,while the special symmetrical7 HAGB presented a unique Bi-rich cluster superstructure.Our findings pro-vide a comprehensive experimental and computational understanding on the atomic-scale segregation of impurities in metallic materials.Y.X.Hua K.X.Song H.T.Liu J.W.Wang C.M.Zhang Y.J.Zhou B.Pang J.T.Song J.L.He H.L.Zhao 2023Journal of Materials Science & Technology2023,,28:0
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