磁性材料及器件
磁性材料及器件
자성재료급기건
JOURNAL OF MAGNETIC MATERIALS AND DEVICES
2014年
6期
29-32,49
,共5页
李水泉%何玉定%杨元政%谢致微%陈先朝
李水泉%何玉定%楊元政%謝緻微%陳先朝
리수천%하옥정%양원정%사치미%진선조
FeSiAl合金粉%氮化%磁粉芯%功率损耗%饱和磁化强度
FeSiAl閤金粉%氮化%磁粉芯%功率損耗%飽和磁化彊度
FeSiAl합금분%담화%자분심%공솔손모%포화자화강도
FeSiAl alloy powder%azotizing%magnetic powder core%power loss%saturation magnetization
将不同球磨时间的FeSiAl合金粉经高温氮化处理后,冷压成型、873K退火1h制得磁粉芯。分别用扫描电子显微镜、X 射线衍射仪、能谱仪、振动样品磁强计观测粉末的形貌、晶体结构、成分和饱和磁化强度,利用动态磁滞回线测试装置测试磁粉芯的功率损耗。结果表明,延长球磨时间磁粉芯的损耗降低,随着氮化时间延长,磁粉的饱和磁化强度降低,磁粉芯的损耗先降低,后维持不变。球磨60 h氮化90 min粉末的饱和磁化强度达77.53 A·m2/kg,所制备的磁粉芯在100kHz/300mT测试条件下功率损耗为58.18 W/kg。
將不同毬磨時間的FeSiAl閤金粉經高溫氮化處理後,冷壓成型、873K退火1h製得磁粉芯。分彆用掃描電子顯微鏡、X 射線衍射儀、能譜儀、振動樣品磁彊計觀測粉末的形貌、晶體結構、成分和飽和磁化彊度,利用動態磁滯迴線測試裝置測試磁粉芯的功率損耗。結果錶明,延長毬磨時間磁粉芯的損耗降低,隨著氮化時間延長,磁粉的飽和磁化彊度降低,磁粉芯的損耗先降低,後維持不變。毬磨60 h氮化90 min粉末的飽和磁化彊度達77.53 A·m2/kg,所製備的磁粉芯在100kHz/300mT測試條件下功率損耗為58.18 W/kg。
장불동구마시간적FeSiAl합금분경고온담화처리후,냉압성형、873K퇴화1h제득자분심。분별용소묘전자현미경、X 사선연사의、능보의、진동양품자강계관측분말적형모、정체결구、성분화포화자화강도,이용동태자체회선측시장치측시자분심적공솔손모。결과표명,연장구마시간자분심적손모강저,수착담화시간연장,자분적포화자화강도강저,자분심적손모선강저,후유지불변。구마60 h담화90 min분말적포화자화강도체77.53 A·m2/kg,소제비적자분심재100kHz/300mT측시조건하공솔손모위58.18 W/kg。
FeSiAl powders were ball-milled for different times and azotized at high-temperature, and then were molded and annealed at 873K for 1h to prepare magnetic powder cores. The profile of the powders was observed by scanning electron microscope and the crystal structures of the as-milled and as-azotized powders were analyzed by X-ray diffractometer and compositions of the powders were characterized by Energy Disperse spectroscopy. The power loss of the magnetic powder cores was measured by dynamic magnetic hysteresis loop apparatus, and the saturation magnetization was measured by vibrating samples magnetometer. The results show that the power loss of the magnetic cores decreases with extending ball milling time;saturation magnetization of powders reduces, and the power loss of the magnetic cores reduces initialy and then tends to not change with extending azotizing treatment time. The powder of as-milled 60h and as-azotized 90 min exhibites a saturation magnetization of 77.53 A·m2/kg, and the corresponding powder core has a power loss of 58.18 W/kg under condition of frequency of 100kHz and magnetic induction of 300mT.