期刊文献+
共找到4篇文章
< 1 >
每页显示 20 50 100
潮州开元广场规划设计
1
作者 黄德民 《南方建筑》 2006年第5期41-42,共2页
潮州是国家历史文化名城,潮州开元寺旧城区改造工程存在着如何保护传统文化和旧城区建筑物与周围环境协调的问题,本文就该问题进行讨论,并提出解决问题的方案。
关键词 历史文化名城 分界 溶合点 过渡 文脉延续 风貌保护
下载PDF
Hot deformation behavior of spray forming LSHR alloy using constitutive equation and processing map
2
作者 徐轶 汪杰 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2016年第4期1032-1043,共12页
Flow behaviors of spray forming low solvus high refractory (LSHR) alloy were investigated using hot compression tests performed on a Gleeble?3500 thermal mechanical simulator at temperatures of 1020?1150 °C and s... Flow behaviors of spray forming low solvus high refractory (LSHR) alloy were investigated using hot compression tests performed on a Gleeble?3500 thermal mechanical simulator at temperatures of 1020?1150 °C and strain rates of 0.0003?1.0 s?1. The constitutive equation was established, power dissipation (η) maps and hot processing maps were plotted. The microstructure evolution and dislocation distribution of domains with different values of η in power dissipation maps were also observed. The results show that the flow stress increases with decreasing temperature and increasing strain rate. The activation energy of the spray forming LSHR alloy is 1243.86 kJ/mol. When the value of η is 0.36 at the strain of 0.5, the domain in the processing map shows characteristics of typical dynamic recrystallization (DRX) and low dislocation density. According to the microstructure evolution and processing maps, the optimum processing condition for good hot workability of spray forming LSHR alloy can be summed up as:temperature range 1110?1150 °C; strain rate range 0.01?0.3 s?1. 展开更多
关键词 low solvus high refractory alloy flow behavior WORKABILITY power dissipation map processing map dynamic recrystallization
下载PDF
Refinement and strengthening mechanism of Mg−Zn−Cu−Zr−Ca alloy solidified under extremely high pressure 被引量:3
3
作者 Xiao-ping LIN Yang KUO +4 位作者 Lin WANG Jie YE Chong ZHANG Li WANG Kun-yu GUO 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第6期1587-1598,共12页
Mg−Zn−Cu−Zr−Ca samples were solidified under high pressures of 2-6 GPa.Scanning electron microscopy and electron backscatter diffraction were used to study the distribution of Ca in the microstructure and its effect o... Mg−Zn−Cu−Zr−Ca samples were solidified under high pressures of 2-6 GPa.Scanning electron microscopy and electron backscatter diffraction were used to study the distribution of Ca in the microstructure and its effect on the solidification structure.The mechanical properties of the samples were investigated through compression tests.The results show that Ca is mostly dissolved in the matrix and the Mg_(2)Ca phase is formed under high pressure,but it is mainly segregated among dendrites under atmospheric pressure.The Mg_(2)Ca particles are effective heterogeneous nuclei ofα-Mg crystals,which significantly increases the number of crystal nuclei and refines the solidification structure of the alloy,with the grain size reduced to 22μm at 6 GPa.As no Ca segregating among the dendrites exists,more Zn is dissolved in the matrix.Consequently,the intergranular second phase changes from MgZn with a higher Zn/Mg ratio to Mg7Zn3 with a lower Zn/Mg ratio.The volume fraction of the intergranular second phase also increases to 22%.Owing to the combined strengthening of grain refinement,solid solution,and dispersion,the compression strength of the Mg-Zn-Cu-Zr-Ca alloy solidified under 6 GPa is up to 520 MPa. 展开更多
关键词 high pressure solidification Mg−Zn−Cu−Zr−Ca alloy Mg_(2)Ca particle solution strengthening grain refinement strengthening
下载PDF
Three Karst Sites,One Dream
4
作者 YAN WEIJUAN 《China Today》 2007年第6期30-32,共3页
CHINA will propose the inscription of karst landscapes in Wulong County (Chongqing Municipality), Libo County (Guizhou Province) and Shilin City (Yunnan Province) on the prestigious World Heritage List during th... CHINA will propose the inscription of karst landscapes in Wulong County (Chongqing Municipality), Libo County (Guizhou Province) and Shilin City (Yunnan Province) on the prestigious World Heritage List during the 31st UNESCO World Heritage Comittee session in Christchurch, New Zealand, from June 23 to July 2. 展开更多
关键词 Karst Sites dream World Heritage UNESCO Wu long Shi Lin
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部