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注塑模具近随形高光面壳计算 被引量:2
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作者 伍晓宇 王金金 +2 位作者 张会迎 彭太江 梁雄 《深圳大学学报(理工版)》 EI CAS 北大核心 2012年第2期171-177,共7页
建立注塑模具近随形高光面壳厚度的计算方法.模拟分析注塑模具型腔表面曲率对传热的影响,利用Matlab拟合出型面曲率-温度关系公式;以平壁传热公式为基础,研究具有1维曲率、2维同向曲率及2维反向曲率等形状的型面,引入曲率影响系数,建立... 建立注塑模具近随形高光面壳厚度的计算方法.模拟分析注塑模具型腔表面曲率对传热的影响,利用Matlab拟合出型面曲率-温度关系公式;以平壁传热公式为基础,研究具有1维曲率、2维同向曲率及2维反向曲率等形状的型面,引入曲率影响系数,建立高光面壳厚度的计算公式与迭代算法.发现同时刻分别在高光面壳内外侧加热时,所达到温度的乘积均为一定值.将所得公式和算法应用于模具型腔表面,得出的近随形仿真结果表明,依据近随形高光面壳厚度计算方法得到的型腔表面温度分布误差小于3℃,低于工程中所要求的5℃以内的误差.实验证明,该算法合理,可以满足工程要求,为高光无痕注塑模具设计提供了简便实用的手段. 展开更多
关键词 塑料成型 注塑模具 注射成型 热传递 模具型腔 光面壳
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球面组合网壳结构的几何非线性稳定分析 被引量:16
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作者 朱忠义 董石麟 《空间结构》 CSCD 1996年第1期1-11,共11页
本文利用组合结构有限元法进行了球面组合网壳结构的几何非线性稳定分析,给出了T.L.坐标系下空间梁单元和满足离散Kirchhoff假定的三角形板壳元的非线性刚度矩阵,并利用柱面弧长法有效跟踪了结构的荷载-位移曲线。本文... 本文利用组合结构有限元法进行了球面组合网壳结构的几何非线性稳定分析,给出了T.L.坐标系下空间梁单元和满足离散Kirchhoff假定的三角形板壳元的非线性刚度矩阵,并利用柱面弧长法有效跟踪了结构的荷载-位移曲线。本文详细分析了40m跨度的球面组合网壳及其特例──带肋壳、光面壳及钢网壳的变形路径、位移形态和临界荷载,得到了一些有价值的结论。 展开更多
关键词 球面组合网结构 几何非线性稳定分析 荷载-位移曲线 变形路径 位移形态 临界荷载 单元分析 带肋 光面壳 钢网
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Surface treatment effect on the photocatalytic hydrogen generation of CdS/ZnS core-shell microstructures 被引量:7
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作者 苏进展 张涛 +2 位作者 王璐 师进文 陈玉彬 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2017年第3期489-497,共9页
CdS/ZnS core-shell microparticles were prepared by a simple two-step method combining ultrasonic spray pyrolysis and chemical bath deposition.The core-shell structures showed enhanced photocatalytic properties compare... CdS/ZnS core-shell microparticles were prepared by a simple two-step method combining ultrasonic spray pyrolysis and chemical bath deposition.The core-shell structures showed enhanced photocatalytic properties compared with those of CdS or ZnS spherical particles.CdS/ZnS photocatalysts with different amount of ZnS loaded as shells were prepared by adjusting the concentrations of Zn and S precursors during synthesis.The optical properties and photocatalytic activity for hydrogen production were investigated and the amount of ZnS loaded as shell was optimized.Thermal annealing and hydrothermal sulfurization treatments were applied to the core-shell structure and both treatments enhanced the material's photocatalytic activity and stability by eliminating crystalline defects and surface states.The result showed that thermal annealing treatment improved the bulk crystallinity and hydrothermal sulfurization improved the surface properties.The sample subjected to both treatments showed the highest photocatalytic activity.These results indicate that CdS/ZnS core-shell microspheres are a simple structure that can be used as efficient photocatalysts.The hydrothermal sulfurization treatment may also be a useful surface treatment for metal sulfide photocatalysts.The simple two-step method provides a promising approach to the large-scale synthesis of core-shell microsphere catalysts. 展开更多
关键词 Core-shell microstructure PHOTOCATALYSIS Surface treatment Hydrogen production Low-cost synthesis
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Direct identification of the carbonate intermediate during water-gas shift reaction at Pt-NiO interfaces using surface-enhanced Raman spectroscopy
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作者 Si-Na Qin Di-Ye Wei +6 位作者 Jie Wei Jia-Sheng Lin Qing-Qi Chen Yuan-Fei Wu Huai-Zhou Jin Hua Zhang Jian-Feng Li 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第8期2010-2016,共7页
Noble metal-reducible oxide interfaces have been regarded as one of the most active sites for water-gas shift reaction.However,the molecular reaction mechanism of water-gas shift reaction at these interfaces still rem... Noble metal-reducible oxide interfaces have been regarded as one of the most active sites for water-gas shift reaction.However,the molecular reaction mechanism of water-gas shift reaction at these interfaces still remains unclear.Herein,water-gas shift reaction at Pt-NiO interfaces has been in-situ explored using surface-enhanced Raman spectroscopy by construction of Au@Pt@NiO nanostructures.Direct Raman spectroscopic evidence demonstrates that water-gas shift reaction at Pt-NiO interfaces proceeds via an associative mechanism with the carbonate species as a key intermediate.The carbonate species is generated through the reaction of adsorbed CO with gaseous water,and its decomposition is a slow step in water-gas shift reaction.Moreover,the Pt-NiO interfaces would promote the formation of this carbonate intermediate,thus leading to a higher activity compared with pure Pt.This spectral information deepens the fundamental understanding of the reaction mechanism of water-gas shift reaction,which would promote the design of more efficient catalysts. 展开更多
关键词 Water-gas shift reaction Surface-enhanced Raman spectroscopy Core-shell nanostructure In-situ characterization Carbonate intermediate
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