The homopolymerization and copolymerization of glycolide (GA) and lactide (LA) are des-cribed. The resulting polymers are characterized by differential scanning calorimetry (DSC),thermogravimetric analysis (TGA), 300 ...The homopolymerization and copolymerization of glycolide (GA) and lactide (LA) are des-cribed. The resulting polymers are characterized by differential scanning calorimetry (DSC),thermogravimetric analysis (TGA), 300 MHz proton nuclear magnetic resonance spectroscopy(NMR), infrared spectroscopy, and X-ray diffraction. The rheological properties of PGA andPGLA 910 are evaluated by shear experiments. The biodegradation has been studied in vivo. Theresults show that the polyesters can be absorbed by the muscles of rabbits after 60 days.展开更多
为研究特高压直流线路复合绝缘子积污特性以指导线路外绝缘配置,于2013—2014年采集了±800 k V楚穗特高压直流线路复合绝缘子表面污秽,分析其污秽等值盐密等级分布,研究线路整体积污程度,以及直流极性、沿串部位分布等造成的积污...为研究特高压直流线路复合绝缘子积污特性以指导线路外绝缘配置,于2013—2014年采集了±800 k V楚穗特高压直流线路复合绝缘子表面污秽,分析其污秽等值盐密等级分布,研究线路整体积污程度,以及直流极性、沿串部位分布等造成的积污差异。数据表明:832个污秽样本中,等值盐密最大值为0.192 9 mg/cm2,最小值为0.000 7 mg/cm^2,76%样本等值盐密〈0.025 mg/cm^2;相同积污条件下,直流极性不影响复合绝缘子整体积污程度;大部分复合绝缘子表面污秽呈两端重、中间轻的分布规律;大小伞裙交叉布置时,小伞裙等值盐密明显大于大伞裙;54.8%的伞裙上表面污秽盐密值大于或等于下表面,与玻璃或陶瓷绝缘子规律不同。±800 k V楚穗特高压直流线路整体污秽较轻,现有的复合绝缘子配置合理。展开更多
文摘The homopolymerization and copolymerization of glycolide (GA) and lactide (LA) are des-cribed. The resulting polymers are characterized by differential scanning calorimetry (DSC),thermogravimetric analysis (TGA), 300 MHz proton nuclear magnetic resonance spectroscopy(NMR), infrared spectroscopy, and X-ray diffraction. The rheological properties of PGA andPGLA 910 are evaluated by shear experiments. The biodegradation has been studied in vivo. Theresults show that the polyesters can be absorbed by the muscles of rabbits after 60 days.
文摘为研究特高压直流线路复合绝缘子积污特性以指导线路外绝缘配置,于2013—2014年采集了±800 k V楚穗特高压直流线路复合绝缘子表面污秽,分析其污秽等值盐密等级分布,研究线路整体积污程度,以及直流极性、沿串部位分布等造成的积污差异。数据表明:832个污秽样本中,等值盐密最大值为0.192 9 mg/cm2,最小值为0.000 7 mg/cm^2,76%样本等值盐密〈0.025 mg/cm^2;相同积污条件下,直流极性不影响复合绝缘子整体积污程度;大部分复合绝缘子表面污秽呈两端重、中间轻的分布规律;大小伞裙交叉布置时,小伞裙等值盐密明显大于大伞裙;54.8%的伞裙上表面污秽盐密值大于或等于下表面,与玻璃或陶瓷绝缘子规律不同。±800 k V楚穗特高压直流线路整体污秽较轻,现有的复合绝缘子配置合理。