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Y_2O_3液相掺杂ZrO_2粉体的制备及其特性 被引量:6
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作者 袁正希 vleugels j Van Der Biest O 《硅酸盐学报》 EI CAS CSCD 北大核心 2001年第5期488-491,共4页
用一种新的液相掺杂技术制备Y2 O3 掺杂的ZrO2 纳米粉体 .在水 -乙醇溶剂中 ,干燥由硝酸铝、硝酸钇和单斜相氧化锆粉体组成的悬浮液 ,然后在 6 0 0℃热分解 ,可以制备出粒度小于 10 0nm的Y2 O3 掺杂单斜相ZrO2 粉体 .这种粉体可以在 0 .... 用一种新的液相掺杂技术制备Y2 O3 掺杂的ZrO2 纳米粉体 .在水 -乙醇溶剂中 ,干燥由硝酸铝、硝酸钇和单斜相氧化锆粉体组成的悬浮液 ,然后在 6 0 0℃热分解 ,可以制备出粒度小于 10 0nm的Y2 O3 掺杂单斜相ZrO2 粉体 .这种粉体可以在 0 .1Pa的真空中 ,经 14 5 0℃热压烧结成致密化Y -TZP材料 .此材料的断裂韧性 (KⅠc)为 9.9MPa·m1 /2 ,Vickers硬度 (HV1 0 0N)为 11.72 展开更多
关键词 制备 氧化钇 液相掺杂粉体 钇稳定四方相多晶陶瓷 力学性能 二氧化锆 Y-TZP陶瓷 原料
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Design of TRIP Steel With High Welding and Galvanizing Performance in Light of Thermodynamics and Kinetics 被引量:13
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作者 LI Lin DE COOMAN B C +3 位作者 LIU Ren-dong vleugels j ZHANG Mei SHI Wen 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2007年第6期37-41,共5页
A new type of transformation induced plasticity (TRIP) steel with not only high strength and high ductility but also superior welding and galvanizing properties was designed and developed recently. Low carbon and lo... A new type of transformation induced plasticity (TRIP) steel with not only high strength and high ductility but also superior welding and galvanizing properties was designed and developed recently. Low carbon and low silicon content were preliminarily selected with the aim of meeting the requirements of superior quality in both welding and galvanizing. Phosphorus was chosen as one of the alloying elements, because it could reduce carbon activity in cementite and increase the stability of austenite. In addition, the possibility of phosphorus segregating at grain boundary was also discussed by thermodynamics as well as kinetics. Phase diagram was estimated at high temperature and the composition of the steel was then selected in the hyperperitectic range to avoid problems, which might occur in sheet steel continuous casting. Phase diagram in the inter.critical temperature was estimated for the steel to obtain the starting temperature of fast cooling. For understanding the minimum rate of fast cooling, pearlite growth kinetics was calculated with self-developed diffusion coefficients of elements in grain boundary. Overaging temperature was determined through the calculation of To temperature by both equilibrium and para-equilibrium assumptions, which was different from the current determination, which is only based on an equilibrium estimation. 展开更多
关键词 TRIP steel DESIGN THERMODYNAMICS KINETICS WELDABILITY galvanization property
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