稀有金属材料与工程
稀有金屬材料與工程
희유금속재료여공정
RARE METAL MATERIALS AND ENGINEERNG
2008年
11期
1978-1981
,共4页
张小磊%朱明原%李瑛%金红明%田野%王谆%杨秋平
張小磊%硃明原%李瑛%金紅明%田野%王諄%楊鞦平
장소뢰%주명원%리영%금홍명%전야%왕순%양추평
永磁体%Nd.Fe.B%粘结%各向异性%注射成型
永磁體%Nd.Fe.B%粘結%各嚮異性%註射成型
영자체%Nd.Fe.B%점결%각향이성%주사성형
permanent magnets%Nd-Fe-B%bonded%anisotropy%injection molding
研究了在取向磁场下由HDDR磁粉注射成型的各向异性粘结NdFeB磁体,分析了粘结剂和添加剂对各向异性粘结NdFeB磁体的密度、磁性能以及抗压强度的影响.通过磁粉表面改性,磁粉的抗氧化性能以及磁体的磁性能都得到提高.比较了6种粘结剂对磁体性能的影响,从中得到比较理想的粘结剂,并且考察了抗氧剂以及润滑剂加入量对于磁体性能的影响.试验中,混炼温度为205~215 ℃,注射温度为265℃,注射压力为5~6 MPa,保压时间为5 s,模具加热温度为80℃.制得的磁体的性能为:Br=0.72 T,iHc=983 kA/m,(BH)max=75 kJ/m3.
研究瞭在取嚮磁場下由HDDR磁粉註射成型的各嚮異性粘結NdFeB磁體,分析瞭粘結劑和添加劑對各嚮異性粘結NdFeB磁體的密度、磁性能以及抗壓彊度的影響.通過磁粉錶麵改性,磁粉的抗氧化性能以及磁體的磁性能都得到提高.比較瞭6種粘結劑對磁體性能的影響,從中得到比較理想的粘結劑,併且攷察瞭抗氧劑以及潤滑劑加入量對于磁體性能的影響.試驗中,混煉溫度為205~215 ℃,註射溫度為265℃,註射壓力為5~6 MPa,保壓時間為5 s,模具加熱溫度為80℃.製得的磁體的性能為:Br=0.72 T,iHc=983 kA/m,(BH)max=75 kJ/m3.
연구료재취향자장하유HDDR자분주사성형적각향이성점결NdFeB자체,분석료점결제화첨가제대각향이성점결NdFeB자체적밀도、자성능이급항압강도적영향.통과자분표면개성,자분적항양화성능이급자체적자성능도득도제고.비교료6충점결제대자체성능적영향,종중득도비교이상적점결제,병차고찰료항양제이급윤활제가입량대우자체성능적영향.시험중,혼련온도위205~215 ℃,주사온도위265℃,주사압력위5~6 MPa,보압시간위5 s,모구가열온도위80℃.제득적자체적성능위:Br=0.72 T,iHc=983 kA/m,(BH)max=75 kJ/m3.
This study is on the anisotropic Nd-Fe-B bonded magnets fabricated from HDDR powders by injection molding process under orientation magnetic field. The effects of polymer binder, chemicals such as coupling agent for surface modification of the powders, antioxidant and lubricant on the density, magnetic and the mechanical properties of anisotropic Nd-Fe-B magnets were investigated. The corrosion resistance of the powder and magnetic properties of the magnets would improve through the surface modification of the powders. Six kinds of binder and the amount of antioxidant and lubricant were studied. The magnetic properties of the anisotropic bonded Nd-Fe-B magnets fabricated in the following conditions: mixing temperature of 205~215 ℃, injection temperature of 265 ℃, injection pressure of 5~6 MPa, press holding time of 5 s, and molding temperature of 80 ℃, were Br of 0.72 T, iHc of 983 kA/m, (BH)max, of 75 kJ/m3.