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151.
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Hyun-Soo Kim Sung-Il Kim Chang-Woo Lee Seong-In Moon 《Journal of Electroceramics》2006,17(2-4):673-677
In this work, LiNi1/3Mn1/3Co1/3O2 powders were synthesized from co-precipitated spherical metal hydroxide. In the voltage range of 2.8–4.2, 2.8–4.4, and 2.8–4.6
V, the discharge capacities of LiNi1/3Mn1/3Co1/3O2 electrode were 163, 177, and 193 mAh⋅g−1, respectively. A gel polymer electrolyte (GPE) was also prepared using polyoxyalkylene glycol acrylate (POAGA) as a macromonomer.
LiNi1/3Mn1/3Co1/3O2/GPE/graphite cells were prepared and their electrochemical properties were evaluated at various current densities and temperatures.
The ionic conductivity of the GPE was more than 6.2 × 10−3 S⋅cm−1 at room temperature. POAGA-based cells were showed good electrochemical performances such as rate capability, low-temperature
performance, and cycleability. 相似文献
154.
以聚偏氟乙烯为基质,加入适量的P2O5,制备了P2O5填充的PVDF复合聚合物质子导电膜,采用交流阻抗谱的方法研究了P2O5的质量分数不同的复合膜的导电性能及相对湿度对电导率的影响.结果表明,该电解质的室温电导率达到10-2 S·cm-1,相对湿度在20%~90%范围内,对电解质的导电性影响不大. 相似文献
155.
La0.7 Ca0.3 CrO3 powder consisting of superfine and uniform particles ( 100-200 nm ) were synthesized using a glycine-nitrate process ( GNP ). The sintering and electronic conducting properties of La0.7 Ca0.3 CrO3 were invetigated in the sintering temperature range of 1 200-1 450 ℃. The desired morphology of the powder significantly improved its sinterability. La0.7 Ca0.3 CrO3 ceramics sintered at 1 250-1 450 ℃ show high relative densities above 95 % . The ceramics sintered at 1 250-1 400 ℃ have very similar electronic conduct- ing properties, providing electronic conductivities around 55 Ω^-1 cm^-1 at a measuring temperature of 800 ℃ . Further increasing the sintering temperature to 1450 ℃ led to an apparent degradation of electronic conducting properties. This research demonstrates the advantage of the GNP in producing La0.7 Ca0.3 CrO3 with respect to the enhanced sintering properties and superior electronic conducting properties. 相似文献
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Chongmin Song 《International journal for numerical methods in engineering》2006,65(5):620-652
The scaled boundary finite‐element method is extended to the modelling of thermal stresses. The particular solution for the non‐homogeneous term caused by thermal loading is expressed as integrals in the radial direction, which are evaluated analytically for temperature changes varying as power functions of the radial coordinate. When applied to model a multi‐material corner, only the boundary of the problem domain is discretized. The boundary conditions on the straight material interfaces and the side‐faces forming the corner are satisfied analytically without discretization. The stress field is expressed semi‐analytically as a series solution. The stress distribution along the radial direction, including both the real and complex power singularity and the power‐logarithmic singularity, is represented analytically. The stress intensity factors are determined directly from their definitions in stresses. No knowledge on asymptotic expansions is required. Numerical examples are calculated to evaluate the accuracy of the scaled boundary finite‐element method. Copyright © 2005 John Wiley & Sons, Ltd. 相似文献
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Jianfeng Gao Xiangjun Xu Junpin Lin Xiping Song Yanli Wang Guoliang Chen 《北京科技大学学报(英文版)》2005,12(6):535-539
The effect of strain rate on the yield strength of high Nb containing TiAl alloy was studied. The results show that the strain rate sensitivity varies with the test temperature, and the yield strength is not sensitive to the strain rate at room temperature but significantly sensitive to the strain rate at high temperature. An increase of the strain rate or a decrease of the temperature results in an obvious change of fracture mode. It is found that the strain rate sensitivity of this alloy varying with temperature is due to the dislocation climb generated at high temperature. 相似文献