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Physical modeling of long-term dynamic characteristics of the subgrade for medium-low-speed maglevs
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作者 Minqi Dong Wubin Wang +4 位作者 Chengjin Wang zhichao huang Zhaofeng Ding Zhixing Deng Qian Su 《Railway Engineering Science》 2023年第3期293-308,共16页
To investigate the dynamic characteristics and long-term dynamic stability of the new subgrade structure of medium-low-speed(MLS)maglevs,cyclic vibration tests were performed under natural and rainfall conditions,and ... To investigate the dynamic characteristics and long-term dynamic stability of the new subgrade structure of medium-low-speed(MLS)maglevs,cyclic vibration tests were performed under natural and rainfall conditions,and the dynamic response of the subgrade structure was monitored.The dynamic response attenuation characteristics along the depth direction of the subgrade were compared,and the distribution characteristics of the dynamic stress on the surface of the subgrade along the longitudinal direction of the line were analyzed.The critical dynamic stress and cumulative deformation were used as indicators to evaluate the long-term dynamic stability of the subgrade.Results show that water has a certain effect on the dynamic characteristics of the subgrade,and the dynamic stress and acceleration increase with the water content.With the dowel steel structure set between the rail-bearing beams,stress concentration at the end of the loaded beam can be prevented,and the diffusion distance of the dynamic stress along the longitudinal direction increases.The dynamic stress measured in the subgrade bed range is less than 1/5 of the critical dynamic stress.The postconstruction settlement of the subgrade after similarity ratio conversion is 3.94 mm and 7.72 mm under natural and rainfall conditions,respectively,and both values are less than the 30 mm limit,indicating that the MLS maglev subgrade structure has good long-term dynamic stability. 展开更多
关键词 Medium-low-speed maglev SUBGRADE Dynamic characteristics Long-term dynamic stability Model test
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缝合碳纤维/泡沫夹芯复合材料损伤阻抗及损伤容限性能 被引量:2
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作者 赖家美 莫明智 +2 位作者 黄志超 万义标 何沛夕 《高分子材料科学与工程》 EI CAS CSCD 北大核心 2022年第1期123-130,共8页
通过真空辅助树脂传递模塑成型工艺(VARTM)技术制备了缝合和未缝合碳纤维/泡沫夹芯复合材料,并进行了低速冲击和冲击后压缩实验,利用深度测量仪检测冲击后的表面凹坑深度。使用Origin软件拟合出了表征损伤阻抗性能的冲击能量-凹坑深度... 通过真空辅助树脂传递模塑成型工艺(VARTM)技术制备了缝合和未缝合碳纤维/泡沫夹芯复合材料,并进行了低速冲击和冲击后压缩实验,利用深度测量仪检测冲击后的表面凹坑深度。使用Origin软件拟合出了表征损伤阻抗性能的冲击能量-凹坑深度曲线及表征损伤容限性能的凹坑深度-剩余压缩强度曲线。以未缝合复合材料为对比,发现缝合能有效提高碳纤维/泡沫夹芯复合材料的损伤阻抗性能及损伤容限性能。缝合及未缝合碳纤维/泡沫夹芯复合材料的损伤阻抗及损伤容限曲线上均存在拐点,并且损伤阻抗的拐点位置和损伤容限的拐点位置具有一致性。拐点之前,泡沫夹芯板以基体裂纹和层间分层损伤为主;拐点之后,出现了纤维断裂损伤。 展开更多
关键词 缝合碳纤维/泡沫夹芯复合材料 损伤阻抗 损伤容限 低速冲击
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Au(111)表面Verdazyl自由基的构象转换
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作者 黄智超 戴亚中 +5 位作者 温晓杰 刘丹 林宇轩 徐珍 裴坚 吴凯 《物理化学学报》 SCIE CAS CSCD 北大核心 2020年第1期243-248,共6页
本文使用扫描隧道显微镜(STM)与密度泛函理论(DFT)技术,研究了1,5-二异丙基-3-(苯并[b]苯并[4,5]噻吩并[2,3-d]噻吩-2-基)-6-oxoverdazyl分子(简称B2P分子)与1,5-二异丙基-3-(苯并[b]苯并[4,5]噻吩并[2,3-d]噻吩-4-基)-6-oxoverdazyl分... 本文使用扫描隧道显微镜(STM)与密度泛函理论(DFT)技术,研究了1,5-二异丙基-3-(苯并[b]苯并[4,5]噻吩并[2,3-d]噻吩-2-基)-6-oxoverdazyl分子(简称B2P分子)与1,5-二异丙基-3-(苯并[b]苯并[4,5]噻吩并[2,3-d]噻吩-4-基)-6-oxoverdazyl分子(简称B4P分子)在Au(111)表面的吸附与构象转换行为。B2P分子在Au(111)表面可形成单体、二聚体、三聚体与四聚体结构,无法形成有序组装结构,且在STM图像上可观测到"P"构象与"T"构象两种构象。而对于B4P分子,当覆盖度较低时在Au(111)表面形成二聚体结构,覆盖度较高时则形成有序的组装结构,同样的,B4P分子在STM图像上也可以观测到"P"构象与"T"构象。在+2.0 V的偏压下,B2P与B4P都可以通过针尖诱导发生构象转换。结合STM图像与DFT模拟结果,确认了两种构象的差异源于分子的verdazyl自由基与Au(111)表面的夹角不同。 展开更多
关键词 verdazyl自由基 扫描隧道显微镜 密度泛函理论 电子自旋
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Polyurethane grouting materials with different compositions for the treatment of mud pumping in ballastless track subgrade beds:properties and application effect 被引量:1
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作者 zhichao huang Qian Su +3 位作者 Junjie huang Minqi Dong Dong Li Ting Liu 《Railway Engineering Science》 2022年第2期204-220,共17页
Mud pumping in subgrade beds under ballastless tracks will deteriorate the dynamic performance of infrastructure under railway lines,reduce the smoothness of the railway lines,and seriously affect the comfort and safe... Mud pumping in subgrade beds under ballastless tracks will deteriorate the dynamic performance of infrastructure under railway lines,reduce the smoothness of the railway lines,and seriously affect the comfort and safety of the trains.Due to their good mechanical properties,twocomponent polyurethane materials can be used for grouting to treat the fouling problems caused by ballastless track mud pumping.To develop a polyurethane formula suitable for the treatment of ballastless track mud pumping,we first performed indoor experiments to investigate the mechanical properties and gelation time of polyurethane elastomers synthesized with different raw material composition ratios,to determine an optimal composition ratio of the raw materials.Then,we conducted a dynamic field test to verify the remediation effect of the polyurethane material fabricated according to the design ratio.The results showed that polyurethane grouting material with the selected design ratios improved the contact characteristics between the surface layer of the subgrade bed and the base plate in the area,coordinating the dynamic response between the track structure and the subgrade bed.Thus,the obtained polyurethane grouting material could be used to renovate mud pumping areas of ballastless tracks with a good treatment effect. 展开更多
关键词 Ballastless track Mud pumping Twocomponent polyurethane Proportioning design Field dynamic test
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