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Anisotropy of the Wear Behavior for Carbon Nanotube-Reinforced 6061Al Composites 被引量:3
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作者 X.N.li J.F.Zhang +8 位作者 W.H.Xue K.Ma p.y.li Z.y.liu B.L.Xiao D.R.Ni Q.Z.Wang D.Wang Z.y.Ma 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2023年第5期814-826,共13页
Carbon nanotube(CNT)-reinforced 6061Al(CNT/6061Al)composites with directionally aligned CNT were fabricated,and their wear behavior was investigated.The results indicate that the wear properties of CNT/6061Al composit... Carbon nanotube(CNT)-reinforced 6061Al(CNT/6061Al)composites with directionally aligned CNT were fabricated,and their wear behavior was investigated.The results indicate that the wear properties of CNT/6061Al composites exhibited a significant anisotropy.A certain CNT concentrations(1 wt%and 2 wt%)could effectively improve the wear resistance of CNT/6061Al composites along the CNT circumferential and CNT radial directions for the load transfer,grain refinement and self-lubrication effect of CNT.The Brass{011}<211>and{112}<110>textures inhibited the load transfer effect of CNT along the CNT radial direction,resulting in a better wear resistance along CNT circumferential direction than CNT radial direction.Along the CNT axial direction,the weak deformability of composites caused by the intensifying<111>fiber texture was the main reasons for the poor wear resistance of CNT/6061Al composites with increasing CNT concentration. 展开更多
关键词 Carbon nanotube Metal matrix composite WEAR ANISOTROPY
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Experimental investigation of axial tensile and fatigue behaviors of HTS round strands
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作者 X.Q.Lai J.X.Zuo +3 位作者 X.B.Hu T.Zhang J.D.liu p.y.li 《Superconductivity》 2023年第4期69-78,共10页
For the development of high‐temperature superconducting(HTS)magnet systems of future fusion devices,a novel HTS round strand based on a stacking structure was designed and manufactured using second generation(2G)HTS ... For the development of high‐temperature superconducting(HTS)magnet systems of future fusion devices,a novel HTS round strand based on a stacking structure was designed and manufactured using second generation(2G)HTS tapes.Different mechanical loads during operation can result in irreversible degradation of the strand.The axial tension and fatigue loads need particular attention.Therefore,it is important to investigate the electromechanical behavior of the round strand under various axial tension and cyclic loads.In this paper,the axial tensile and fatigue tests were conducted at 77 K,self‐field.Taking 95%critical current(I_(c))retention as the criterion,the results of the tensile tests revealed that the average tensile stress and strain were as high as 344 MPa and 0.47%,respectively.Fatigue characteristics were also investigated as a function of axial tensile stress.No significant performance degradation was observed up to 100,000 loading cycles with stress amplitudes ranging from 20 MPa to 200 MPa.Ic degradation occurs after 16,000 loading cycles with 380 MPa as the maximum stress.Furthermore,the microscopic defects of the round strand samples due to fabrication imperfections and mechanical loading were investigated using metallographic microscope and scanning electron microscope.These results presented in this paper are useful for comprehending and improving the mechanical behaviors of the strand in high‐field and large‐scale fusion magnet systems. 展开更多
关键词 High‐temperature superconducting High‐field magnet Round strands Axial tensile and fatigue Microscopic defects
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鼻咽癌肺转移相关基因的检测及筛选 被引量:1
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作者 徐唱 肖惠雯 +5 位作者 张凌浩 武鹏 方一 李大伟 李文峰 廖志苏 《中华耳鼻咽喉头颈外科杂志》 CAS CSCD 北大核心 2016年第12期891-895,共5页
目的 通过建立鼻咽癌(nasopharyngeal carcinoma,NPC)的肺转移动物模型,运用基因芯片技术检测及筛选肺转移最相关的10种差异基因.方法 采用鼻咽癌细胞株CNE,构建稳定表达荧光酶基因的CNE/Luc稳转细胞株,尾静脉注射CNE/Luc悬液到裸鼠中... 目的 通过建立鼻咽癌(nasopharyngeal carcinoma,NPC)的肺转移动物模型,运用基因芯片技术检测及筛选肺转移最相关的10种差异基因.方法 采用鼻咽癌细胞株CNE,构建稳定表达荧光酶基因的CNE/Luc稳转细胞株,尾静脉注射CNE/Luc悬液到裸鼠中,利用动物活体成像系统筛选得到肺转移裸鼠,分离肿瘤细胞,进行2次尾静脉注射筛选得到肺部转移的肿瘤细胞,运用荧光成像验证其组织特异性转移后,通过基因表达谱芯片技术,获得鼻咽癌肺转移相关的差异基因.通过文献检索筛选出相关性最高的10种基因进行分析.结果 本实验利用基因芯片技术,构建鼻咽癌原代细胞株CNE/Luc与鼻咽癌肺细胞转移相关亚群CNE/Luc-2的基因表达谱,通过软件分析,筛选出10个可能与鼻咽癌肺转移关系密切的基因,分别是TP53、PIK3CA、MET、KRAS、VEGFA、EDNRB、GSK3B、FOXO3、SOD2、BIRC3.结论 通过构建动物模型及基因芯片技术得出的10个基因对于鼻咽癌的肺转移有重要的调节作用,对下一步验证鼻咽癌肺转移相关通路有重要意义. 展开更多
关键词 鼻咽肿瘤 肿瘤转移 模型 动物 基因测定
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