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171.
10k V配电室属于整个供电系统中很重要的组成部分之一,电网使用10k V配电室把电力运送到电力消费群体当中,10k V配电室起到了中转站的作用。如果10k V配电室出现问题,那么就会对供电系统产生严重的影响,尤其是在工厂当中,一旦出现电力供应问题,轻则造成经济损失,重则出现生产安全事故。所以当前人们对10k V配电室的安装问题十分关注,文章就工厂当中的10k V配电室的电气安装技术问题进行了深入的分析,旨在为工厂10k V配电室电气安装工作提供参考,确保10k V配电室能正常运转工作。  相似文献   
172.
为有效控制磁性四氧化三铁纳米粒子在水介质中的分散,防止其聚集.通过控制Na Cl溶液的物质的量浓度,对比研究磁性四氧化三铁纳米粒子在超声前和超声后在盐中的分散情况.实验结果表明,磁性四氧化三铁纳米粒子在0.4 mol/L的氯化钠中分散性最好,聚集度较小;进一步为了制备粒径均匀的复合磁性纳米载药粒子,通过调节10-羟基喜树碱溶液的p H,将10-羟基喜树碱和磁性纳米粒子制备成复合纳米粒子,并将其用二氧化硅包覆制备了复合载药纳米粒子,其复合纳米粒子的粒径大约为120 nm,结果显示通过该方法成功制备了理想的磁性纳米载药粒子.  相似文献   
173.
采用原位还原碳化反应制备超细WC-10%Co,在1250、1300、1350、1380℃进行预烧结处理,得到的预烧结块体在1450℃、5 MPa氩气条件下进行低压二次烧结;分析对比了预烧结块体和二次烧结块体的显微组织,并对二次烧结合金进行了性能测试.结果表明:不同温度预烧结块体经低压二次烧结后,可有效抑制晶粒异常长大现象,二次烧结后合金具有高的断裂韧性,最高值达16.1MPa·m-1/2.在1 350、1 380℃下预烧结块体经低压二次烧结后均具有均匀的合金组织,其中经过1380℃预烧结块体横向断裂强度为3260 MPa.  相似文献   
174.
将苝四甲酸二酐(3,4,9,10-perlenetetracrboxylic dianhydride,PTCDA)真空蒸发到无机半导体p-Si衬底上,研制的p-Si/PTCDA异质结光电探测器,对光照非常敏感,是一种响应度很高的宽带光电子元器件。讨论分析了不同的衬底制备条件制备p-Si/PTCDA异质结薄膜的情况,实验结果表明,制备过程中细微的环境变化,显著影响了器件质量,通过分析成膜质量与器件内部微观机制、能带结构、载流子输运之间的关系,确定制备异质结有机薄膜的硅晶面选择,以及衬底的温度最佳的选择范围。  相似文献   
175.
分析10kV配电线路杆塔接地装置的冲击接地电阻特性对于提高配网的供电可靠性起着十分重要的作用。本文采用了考虑土壤火花放电的时域传输线优化模型计算接地装置计算分段导体的电气参数,并建立PSCAD仿真土壤火花效应的等效计算模型:通过对10kV配电线路的水平一垂直型和方格放射型两种常见的接地装置在经过雷电流时.冲击电阻随土壤电阻率,雷电流幅值以及接地装置埋深大小变化的关系,提出在10kV配电线路中根据地质条件、雷电参数和技术经济要求选择合适的接地装置。  相似文献   
176.
利用薄片鉴定、扫描电镜、阴极发光及碳氧同位素分析等手段,对莺歌海盆地LD10区新近系梅山组-黄流组高温-超压-高CO2背景下的储层成岩作用特征及其对孔隙的影响进行了系统研究。研究结果表明: ①莺歌海盆地LD10区新近系梅山组-黄流组储层发育重力流沉积,岩性以中-细粒长石岩屑石英砂岩为主,储层物性以特低-低孔、特低渗特征为主。②压实、胶结和溶蚀作用是研究区主要的成岩作用类型。超压对黏土矿物的转化及石英次生加大具有明显抑制作用,并在一定程度上保护了原生孔隙。富含CO2的高温流体不仅造成了黏土矿物的异常转化,同时促进了溶蚀作用发生,增加了次生孔隙。③研究区黄二段储层的成岩演化序列为: 菱铁矿胶结→石英次生加大→绿泥石胶结→长石淋滤溶蚀→高岭石形成→早期方解石胶结→早期白云石胶结→长石溶蚀→方解石溶蚀→伊利石大量生成→晚期铁方解石、铁白云石形成。④总体上,压实作用使孔隙度减少了45.30%~62.93%,胶结作用使孔隙度减少了1.65%~35.01%,溶蚀作用使孔隙度增加了0.72%~8.00%。其中,黄流组中下部砂岩储层受到了超压保护和CO2溶蚀作用的双重影响,物性较好,钻井过程中应考虑高CO2风险。  相似文献   
177.
A gillespite-structured MCuSi4O10 (M = Ba1-xSrx, Sr1-xCax) ceramics with tetrahedral structure (P4/ncc) were prepared by solid-state reaction method. X-ray diffraction and thermogravimetry with differential scanning calorimetry (TG-DSC) were employed to study the phase synthesis process of BaCuSi4O10. Pure BaCuSi4O10 phase was obtained at 1075°C and decomposed into BaSiO3, BaCuSi2O6, and SiO2 when calcined at 1200°C. The relationships between the crystal structure and microwave dielectric properties of MCuSi4O10 ceramics were revealed based on the Rietveld refinement and P-V-L complex chemical bond theory. The dielectric constant (εr) decreased linearly with decreasing total bond susceptibility and ionic polarizability. Quality factor (Q × f) was closely dependent on bond strength and lattice energy. The temperature coefficient of resonant frequency (τf) was controlled by the stability of [CuO4]6− plane in MCuSi4O10. Optimum microwave dielectric properties were obtained for SrCuSi4O10 when sintered at 1100°C for 3 hours with a εr of 5.59, a Q × f value of 82 252 GHz, and a τf of −41.34 ppm/°C. Thus, SrCuSi4O10 is a good candidate for millimeter-wave devices.  相似文献   
178.
Spinel-structured NiMn2O4 ceramics, with different valence Ni sources, were originally prepared using Ni2O3 and NiO as raw materials, and the effects of different valence Ni sources on their electrical properties were first investigated. XRD patterns show that both Ni2O3-based and NiO-based NiMn2O4 ceramics are single cubic spinel structures. SEM/EDS images indicate that the NiMn2O4 ceramics exhibited high density at the experiment-determined sintering temperatures. XPS results and Raman drifts prove that the Ni valence-induced changes in Mn ions at B sites played a significant role in the electrical properties and thermal stability of NiMn2O4 ceramics. Compared with NiO-based NiMn2O4, the resistivity at 25°C (ρ25°C) of Ni2O3-based NiMn2O4 increased dramatically from 3109 to 106958 Ω cm, the thermal constant (B25/50) increased from 3264 to 4473 K, and the resistance shifts after annealing for 1000 h at 150°C decreased from 0.80% to 0.74%. The investigation of the relationship between the material properties and valence of Ni sources has provided a new and effective way for designing the spinel-structured negative temperature coefficient (NTC) materials by modulating the valence of ions at A sites in the raw materials.  相似文献   
179.
Trans (t) fatty acids (TFA) from partially hydrogenated vegetable oils (i.e., industrial trans) have been phased out of foods in many countries due to their promotion of cardiovascular disease. This leaves ruminant-derived foods as the main source of TFA. Unlike industrial TFA where catalytic hydrogenation yields a broad distribution of isomers, ruminant TFA are enzymatically derived and can result in enrichment of specific isomers. Comparisons between industrial and ruminant TFA have often exonerated ruminant TFA due to their lack or at times positive effects on health. At extremes, however, ruminant-sourced foods can have either high levels of t10- or t11-18:1, and when considering enriched sources, t10-18:1 has properties similar to industrial TFA, whereas t11-18:1 can be converted to an isomer of conjugated linoleic acid (cis(c)9,t11-conjugated linoleic acid), both of which have potential positive health effects. Increased t10-18:1 in meat-producing ruminants has not been associated with negative effects on live animal production or meat quality. As such, reducing t10-18:1 has not been of immediate concern to ruminant meat producers, as there have been no economic consequences for its enrichment; nevertheless at high levels, it can compromise the nutritional quality of beef and lamb. In anticipation that regulations regarding TFA may focus more on t10-18:1 in beef and lamb, the present review will cover its production, analysis, biological effects, strategies for manipulation, and regulatory policy.  相似文献   
180.
The oxidation of Ni to NiO in solid oxide fuel cell (SOFC) anode will result in large bulk volume change, which may change the interfaces of the two phases in the anode cermet and thus may cause significant performance degradation. The reduction and oxidation (redox) of the Ni/YSZ cermet were studied at 800 ℃. Anodic polarization measurements were performed before and after redox cycles. The anode current density at an overpotential of 100 mV kept decreasing during the whole redox treatment. It decreased from 19.11 to 7.95 mA·cm-2 after two redox cycles. Anode supported unit cell was assembled for cell's discharge measurements. Cell performance declined after each redox cycle. The maximum power density decreased from 126.28 to 40.32 mW·cm-2 . The microstructural changes after redox cycling were recorded using scanning electron microscopy (SEM). The results reveal that after re-oxidation, the Ni gets coarse and has a higher porosity; the nickel network structure turns to be desultory.  相似文献   
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