金属氧化物避雷器是电力系统中的重要过电压保护设备,避雷器雷电冲击寿命直接受其内部氧化锌电阻片劣化特性的影响,本文通过大量试验,研究了电阻片在8/20μs、10 k A雷电流作用下残压、交流U1m A、直流U1m A、泄漏电流及功率损耗随雷电...金属氧化物避雷器是电力系统中的重要过电压保护设备,避雷器雷电冲击寿命直接受其内部氧化锌电阻片劣化特性的影响,本文通过大量试验,研究了电阻片在8/20μs、10 k A雷电流作用下残压、交流U1m A、直流U1m A、泄漏电流及功率损耗随雷电流冲击次数的变化规律,结果表明:每组试验内冲击次数越多,电阻片的劣化越缓慢;随着冲击次数的增加,特征参量均有变化,且存在明显的劣化转折点;在所有特征参量中,泄漏电流的变化最为明显,为工程运行中避雷器劣化特性的研究提供了参考依据。展开更多
利用著名的期刊评价工具JCR(Journal of Citation Research),于2006年9月采集了SCIE收录我国生物类期刊的各项指标数据,初步分析了2002-2005年这些期刊的各项指标变化。总体上,四年间SCIE收录我国生物类期刊学术影响力有所增大,但一些...利用著名的期刊评价工具JCR(Journal of Citation Research),于2006年9月采集了SCIE收录我国生物类期刊的各项指标数据,初步分析了2002-2005年这些期刊的各项指标变化。总体上,四年间SCIE收录我国生物类期刊学术影响力有所增大,但一些指标的学科内排名仍然很低。分析了影响我国期刊学术影响力的主要因素,提出了扩大影响力的若干措施。展开更多
Surface microstructure and microhardness of (ferrite+ cementite) microduplex structure of the ultrafine- grained high carbon steel after laser shock processing (LSP) with different impact times were investigated ...Surface microstructure and microhardness of (ferrite+ cementite) microduplex structure of the ultrafine- grained high carbon steel after laser shock processing (LSP) with different impact times were investigated by means of scanning electron microscopy (SEM), transmission electron microscopy (TEM), X-ray diffraction (XRD) and microhardness measurements. Equiaxed ferrite grains were refined from 400 to 150 nm, and the cementite lamellae were fully spheroidized, with a decrease of the particle diameter from 150 to 100 nm as the impact times increased. The cementite dissolution was enhanced significantly. Correspondingly, the lattice parameter of α-Fe and microhard- hess increased with the impact times.展开更多
基金河南省高校重点科研项目(No.18A440014)河南理工大学博士基金项目(No.672707)+3 种基金国家自然科学基金项目(No.51604093)supported by the Key Scientific Research Project of Colleges and Universities in Henan Province(18A440014)the Doctoral Foundation of Henan Polytechnic University(672707)the National Natural Science Foundation of China(51604093)
文摘金属氧化物避雷器是电力系统中的重要过电压保护设备,避雷器雷电冲击寿命直接受其内部氧化锌电阻片劣化特性的影响,本文通过大量试验,研究了电阻片在8/20μs、10 k A雷电流作用下残压、交流U1m A、直流U1m A、泄漏电流及功率损耗随雷电流冲击次数的变化规律,结果表明:每组试验内冲击次数越多,电阻片的劣化越缓慢;随着冲击次数的增加,特征参量均有变化,且存在明显的劣化转折点;在所有特征参量中,泄漏电流的变化最为明显,为工程运行中避雷器劣化特性的研究提供了参考依据。
文摘利用著名的期刊评价工具JCR(Journal of Citation Research),于2006年9月采集了SCIE收录我国生物类期刊的各项指标数据,初步分析了2002-2005年这些期刊的各项指标变化。总体上,四年间SCIE收录我国生物类期刊学术影响力有所增大,但一些指标的学科内排名仍然很低。分析了影响我国期刊学术影响力的主要因素,提出了扩大影响力的若干措施。
基金Sponsored by National Natural Science Foundation of China(50801021,51201061)Program for Young Key Teachers in Henan Province of China(2011GGJS-070)Program for Henan Province for Science and Technology Innovation Excellent Talents of China(144200510001)
文摘Surface microstructure and microhardness of (ferrite+ cementite) microduplex structure of the ultrafine- grained high carbon steel after laser shock processing (LSP) with different impact times were investigated by means of scanning electron microscopy (SEM), transmission electron microscopy (TEM), X-ray diffraction (XRD) and microhardness measurements. Equiaxed ferrite grains were refined from 400 to 150 nm, and the cementite lamellae were fully spheroidized, with a decrease of the particle diameter from 150 to 100 nm as the impact times increased. The cementite dissolution was enhanced significantly. Correspondingly, the lattice parameter of α-Fe and microhard- hess increased with the impact times.