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中国传统家具南北差异分析(上) 被引量:1
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作者 杨亚峰 徐兰兰 张圆圆 《家具与室内装饰》 2008年第12期15-16,共2页
中国传统南北家具的差异,内涵极为深广。本文分别从人文地理、材料、工艺和结构方面阐述南北家具的差异,并分析了形成这些差异的原因。
关键词 南北家具 差异 人文地理 材料 工艺和结构
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中国传统家具南北差异分析(下)
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作者 杨亚峰 徐兰兰 《家具与室内装饰》 2009年第1期84-85,共2页
中国传统南北家具的差异,内涵极为深广。本文分别从人文地理、材料、工艺和结构方面阐述南北家具的差异,并分析了形成这些差异的原因。
关键词 南北家具 差异 人文地理 材料 工艺和结构
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Role of Ag addition on microstructure,mechanical properties,corrosion behavior and biocompatibility of porous Ti-30 at%Ta shape memory alloys 被引量:4
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作者 Mustafa Khaleel IBRAHIM Safaa Najah SAUD +1 位作者 Esah HAMZAH Engku Mohamad NAZIM 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第11期3175-3187,共13页
In the present study,the thermal,mechanical,and biological properties of xAg/Ti-30Ta(x=0,0.41,0.82 and 2.48 at%)shape memory alloys(SMAs)were investigated.The study was conducted using optical and scanning electron mi... In the present study,the thermal,mechanical,and biological properties of xAg/Ti-30Ta(x=0,0.41,0.82 and 2.48 at%)shape memory alloys(SMAs)were investigated.The study was conducted using optical and scanning electron microscopy(SEM),X-ray diffractometry(XRD),compression test,and shape memory testing.The xAg/Ti-Ta was made using a powder metallurgy technique and microwave-sintering process.The results revealed that the addition of Ag has a significant effect on the pore size and shape,whereas the smallest pore size of 11μm was found with the addition of 0.41 at%along with a relative density of 72%.The fracture stress and strain increased with the addition of Ag,reaching the minimum values around 0.41 at%Ag.Therefore,this composition showed the maximum stress and strain at fracture region.Moreover,0.82 Ag/Ti-Ta shows more excellent corrosion resistance and biocompatibility than other percentages,obtaining almost the same behaviour of the pure Ti and Ti-6Al-4V alloys,which can be recommended for their promising and potential response for biomaterial applications. 展开更多
关键词 porous xAg/Ti-Ta shape memory alloys(SMAs) microwave sintering process microstructure characteristics mechanical properties and corrosion behavior bioactivity
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