材料导报
材料導報
재료도보
MATERIALS REVIEW
2008年
z1期
183-187
,共5页
溶胶-凝胶法%纳米复合永磁材料%pH值%磁性能
溶膠-凝膠法%納米複閤永磁材料%pH值%磁性能
용효-응효법%납미복합영자재료%pH치%자성능
sol-gel method%nanocomposite permanent magnetic material%pH value%magnetic properties
用溶胶-凝胶法制备了纳米复合永磁材料FesmO3/Fe2O3,通过XRD、TG/DTG、SEM及VSM的表征,研究了溶液pH值对凝胶形态、焙烧温度和磁性能的影响.实验结果表明,溶液pH值对焙烧温度和样品相态有显著的影响,在低pH值分段焙烧时,可得纳米复合永磁材料FeSmO3/Fe2O3,当pH值升到7时,只能得到单相粉体FeSmO3.分段焙烧400℃、2h及650℃、1h后,得到平均粒径在30nm、软磁相与硬磁相发生强烈的交换耦合作用的纳米复合永磁材料,由于交换耦合作用使纳米复相具有优异于单相的磁性能.
用溶膠-凝膠法製備瞭納米複閤永磁材料FesmO3/Fe2O3,通過XRD、TG/DTG、SEM及VSM的錶徵,研究瞭溶液pH值對凝膠形態、焙燒溫度和磁性能的影響.實驗結果錶明,溶液pH值對焙燒溫度和樣品相態有顯著的影響,在低pH值分段焙燒時,可得納米複閤永磁材料FeSmO3/Fe2O3,噹pH值升到7時,隻能得到單相粉體FeSmO3.分段焙燒400℃、2h及650℃、1h後,得到平均粒徑在30nm、軟磁相與硬磁相髮生彊烈的交換耦閤作用的納米複閤永磁材料,由于交換耦閤作用使納米複相具有優異于單相的磁性能.
용용효-응효법제비료납미복합영자재료FesmO3/Fe2O3,통과XRD、TG/DTG、SEM급VSM적표정,연구료용액pH치대응효형태、배소온도화자성능적영향.실험결과표명,용액pH치대배소온도화양품상태유현저적영향,재저pH치분단배소시,가득납미복합영자재료FeSmO3/Fe2O3,당pH치승도7시,지능득도단상분체FeSmO3.분단배소400℃、2h급650℃、1h후,득도평균립경재30nm、연자상여경자상발생강렬적교환우합작용적납미복합영자재료,유우교환우합작용사납미복상구유우이우단상적자성능.
The nanocomposite permanent magnetic material FeSmO3/Fe2 O3 is prepared by sol-gel method and the influences of pH value of the precursor solution on the gel morphology,annealing temperature and magnetic properties are study by X-ray diffraction(XRD),thermogravimetric differential and thermogravimetric(TG/DTG),scan electron microscopy(SEM),and vibrating sample magnetometer(VSM).Experimental results show that the pH value of the precursor solution has a significant influence on the annealing temperature and phases,and the nanocomposite FeSmO3/Fe2 O3 can be obtained at low pH value via subsection annealing temperature.When the pH value increases to 7,powders are single-phase FeSmO3.The microstructure of the nanocomposite permanent magnetic material consists of hard magnetic phase and soft magnetic phase with an average size of 30nm when annealed by subsection at 400℃for 2 hours and then at 650℃for 1 hour.These small particles allow effective exchange coupling between two phases and display enhancement of permanent magnetic properties compared with pure FeSmO3.The sol-gel technique is more preferable for the preparation of nanocomposite because its process is easy,the experiment is simple and the product is stable.