期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
快凝Ni_(74)Si_(10)B_(16)非晶合金电阻热稳定性的考查 被引量:1
1
作者 彭平 刘让苏 +3 位作者 徐仲榆 郑采星 李宏健 苏玉长 《功能材料》 EI CAS CSCD 北大核心 1999年第5期479-480,共2页
通过实验考查了升温速度、保温时间和循环加热对快凝Ni74Si10B16j非晶合金淬态样与热处理样电阻温度特性的影响,并采用Nagel推广的液态金属Ziman理论对此进行了分析,得到了中低温长时间热处理将改善非晶合金电阻热稳定性的初步结论。
关键词 非晶合金 电阻热稳定性 快凝 处理
下载PDF
Achieving remarkable piezoelectric activity in Sb-Mn co-modified CaBi_(4)Ti_(4)O_(15) piezoelectric ceramics 被引量:3
2
作者 Yang LIU Yang YU +6 位作者 Chen-yi YIN Liang ZHENG Peng ZHENG Wang-feng BAI Li-li LI Fei WEN Yang ZHANG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第8期2442-2453,共12页
CaBi_(4)Ti_(4)O_(15)(CBT)-based Aurivillius high-temperature piezoceramics with different Sb-Mn co-doping amounts were synthesized via the conventional sintering technique.The influences of doping amount on the produc... CaBi_(4)Ti_(4)O_(15)(CBT)-based Aurivillius high-temperature piezoceramics with different Sb-Mn co-doping amounts were synthesized via the conventional sintering technique.The influences of doping amount on the product were studied via their crystal structure,microstructure,and piezoelectric performance.It is found that an appropriate Sb-Mn co-doping amount can effectively optimize the crystal structure and decrease the oxygen vacancy concentration in CBT ceramics,leading to enhanced electrical properties.Optimized electrical performance with a high Curie temperature(TC)of 792℃and a remarkable piezoelectric coefficient(d33)of 25 p C/N were achieved at a doping amount(x)of 0.05.Furthermore,this ceramic is found to exhibit an excellent thermal stability,with d33 retaining 88%of its original value after annealing at 600℃for 2 h.Moreover,this ceramic shows a high electrical resistivity(ρ)of 1.35×10^(8)Ω·cm with a small dielectric loss(tanδ)of 1.7%at 400℃.Because of such outstanding piezoelectric performance,it is believed that these Sb-Mn co-doped CBT ceramics could be potential candidates for high-temperature piezoelectric applications. 展开更多
关键词 CaBi4Ti4O15 piezoelectric ceramics piezoelectric activity RESISTIVITY thermal stability
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部