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内核地球自转动力学理论的研究进展(Ⅳ)——内核自转动力学方程 被引量:3
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作者 张捍卫 许厚泽 王爱生 《地球物理学进展》 CSCD 北大核心 2006年第4期1139-1144,共6页
本文是序列文章的第四篇,其内容包括:基于连续介质力学的基本理论,给出了固体外核(SIC)自转的动力学方程,考虑了地球的自引力、液核对内核边界的压力和二阶外部引潮力位对SIC自转的影响,并在O(mε)的量级上给出了其实用的表达式.本文的... 本文是序列文章的第四篇,其内容包括:基于连续介质力学的基本理论,给出了固体外核(SIC)自转的动力学方程,考虑了地球的自引力、液核对内核边界的压力和二阶外部引潮力位对SIC自转的影响,并在O(mε)的量级上给出了其实用的表达式.本文的理论推导更加严密和细致,改正了文献〔1〕在推导过程中的某些错误(例如:(B39)、(B44)和(B59c)式).本文的工作是对文献〔1〕有关理论的扩展和改进,对进一步研究内核地球自转的动力学理论是非常重要的. 展开更多
关键词 地球自转 固体外核 角动量方程 力矩
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Curing Mechanism of Condensed Polynuclear Aromatic Resin and Thermal Stability of Cured Resin 被引量:1
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作者 Li Shibin Sun Qiqian +2 位作者 Wang Yuwei Wu Mingbo Zhang Zailong 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2015年第2期9-16,共8页
In order to improve the thermal stability of condensed polynuclear aromatic(COPNA) resin synthesized from vacuum residue, 1,4-benzenedimethanol was added to cure COPNA resin. The curing mechanism was investigated by p... In order to improve the thermal stability of condensed polynuclear aromatic(COPNA) resin synthesized from vacuum residue, 1,4-benzenedimethanol was added to cure COPNA resin. The curing mechanism was investigated by proton nuclear magnetic resonance spectrometry, solid carbon-13 nuclear magnetic resonance spectrometry and Fourier transform infrared spectroscopy. Microstructures of the uncured and the cured COPNA resins were studied by scanning electron microscopy and X-ray diffractometry. The thermal stability of COPNA resins before and after curing was tested by thermogravimetric analysis. The element composition of the cured COPNA resin heated at different temperatures was analyzed by an element analyzer. The results showed that the uncured COPNA resin reacted with the cross-linking agent during the curing process, and the curing mechanism was confirmed to be the electrophilic substitution reaction. Compared with the uncured COPNA resin, the cured COPNA resin had a smooth surface, well-ordered and streamlined sheet structure with more crystalline solids, better molecular arrangement and orientation. The weight loss process of the uncured and cured COPNA resins was divided into three stages. Carbon residue of the cured COPNA resin was 41.65% at 600 ℃, which was much higher than 25.02% of the uncured COPNA resin, which indicated that the cured COPNA resin had higher thermal stability. 展开更多
关键词 condensed polynuclear aromatic resin SYNTHESIS vacuum residue CURING thermal stability
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