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调节环结构轻量化拓扑优化设计研究 被引量:3
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作者 宋经远 邵万仁 +2 位作者 贾东兵 金文栋 杜桂贤 《机械工程师》 2022年第9期93-95,98,共4页
针对航空发动机矢量尾喷管调节环结构轻量化问题,开展拓扑优化设计研究。对调节环进行静力分析,获得其不同工况下受力情况。以轻量化为目标,对结构进行拓扑优化。综合考虑8种工况,对调节环进行拓扑优化,在保证结构工作强度的情况下,使... 针对航空发动机矢量尾喷管调节环结构轻量化问题,开展拓扑优化设计研究。对调节环进行静力分析,获得其不同工况下受力情况。以轻量化为目标,对结构进行拓扑优化。综合考虑8种工况,对调节环进行拓扑优化,在保证结构工作强度的情况下,使调节环减重25%,达到设计指标,可为今后航空领域结构轻量化设计提供参考依据。 展开更多
关键词 调节环结构 轻量化 拓扑优化
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Microenvironment and electronic state modulation of Pd nanoparticles within MOFs for enhancing low-temperature activity towards DCPD hydrogenation
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作者 Zhiyuan Liu Changan Wang +8 位作者 Ping Yang Wei Wang Hongyi Gao Guoqing An Siqi Liu Juan Chen Tingting Guo Xinmeng Xu Ge Wang 《Chinese Journal of Catalysis》 SCIE CAS CSCD 2024年第9期112-122,共11页
Precise control of the local environment and electronic state of the guest is an important method of controlling catalytic activity and reaction pathways.In this paper,guest Pd NPs were introduced into a series of hos... Precise control of the local environment and electronic state of the guest is an important method of controlling catalytic activity and reaction pathways.In this paper,guest Pd NPs were introduced into a series of host UiO-67 MOFs with different functional ligands and metal nodes,the microenvironment and local electronic structure of Pd is modulated by introducing bipyridine groups and changing metal nodes(Ce_(6)O_(6) or Zr_(6)O_(6)).The bipyridine groups not only promoted the dispersion Pd NPs,but also facilitated electron transfer between Pd and UiO-67 MOFs through the formation of Pd-N bridges.Compared with Zr6 clusters,the tunability and orbital hybridisation of the 4f electronic structure in the Ce_(6) clusters modulate the electronic structure of Pd through the construction of the Ce-O-Pd interfaces.The optimal catalyst Pd/UiO-67(Ce)-bpy presented excellent low-temperature activity towards dicyclopentadiene hydrogenation with a conversion of>99% and a selectivity of>99%(50℃,10 bar).The results show that the synergy of Ce-O-Pd and Pd-N promotes the formation of active Pd^(δ+),which not only enhances the adsorption of H_(2) and electron-rich C=C bonds,but also contributes to the reduction of proton migration distance and improves proton utilization efficiency.These results provide valuable insights for investigating the regulatory role of the host MOFs,the nature of host-guest interactions,and their correlation with catalytic performance. 展开更多
关键词 Interface regulation Pd^(δ+) MICROENVIRONMENT Electronic state HYDROGENATION
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