Abstract:
An Fe-based amorphous alloy of the present invention has a composition represented by formula (Fe100-a-b-c-d-eCraPbCcBdSie (a, b, c, d, and e are in terms of at %), where 0 at %≦a≦1.9 at %, 1.7 at %≦b≦8.0 at %, 0 at %≦c≦1.0 at %, an Fe content (100-a-b-c-d-e) is 77 at % or more, 19 at %≦b+c+d+e≦21.1 at %, 0.08≦b/(b+c+d)≦0.43, 0.06≦c/(c+d)≦0.87, and the Fe-based amorphous alloy has a glass transition temperature (Tg).
Abstract translation:本发明的Fe基非晶合金具有式(Fe100-abcd-eCraPbCcBdSie(a,b,c,d和e以%计)),其中0at%≦̸ a≦̸ 1.9 at%,1.7at%≦̸ b≦̸ 8.0at%,0 at%≦̸ c≦̸ 1.0at%,Fe含量(100-abcde)为77at%或更高,19at%和nlE; b + c + d + e≦̸ 21.1 at%,0.08≦̸ b /(b + c + d)≦̸ 0.43,0.06≦̸ c /(c + d)≦̸ 0.87,Fe基非晶合金具有玻璃化转变温度 Tg)。
Abstract:
An Fe-based amorphous alloy of the present invention has a composition formula represented by Fe100-a-b-c-x-y-z-tNiaSnbCrcPxCyBzSit, and in the formula, 1 at %≦a≦10 at %, 0 at %≦b≦3 at %, 0 at %≦c≦6 at %, 6.8 at %≦x≦10.8 at %, 2.2 at %≦y≦9.8 at %, 0 at %≦z≦4.2 at %, and 0 at %≦t≦3.9 at % hold. Accordingly, an Fe-based amorphous alloy used for a powder core and/or a coil encapsulated powder core having a low glass transition temperature (Tg), a high conversion vitrification temperature (Tg/Tm), and excellent magnetization and corrosion resistance can be manufactured.
Abstract:
An Fe-based amorphous alloy powder of the present invention has a composition represented by (Fe100-a-b-c-x-y-z-tNiaSnbCrcPxCyBzSit)100-αMα. In this composition, 0 at %≦a≦10 at %, 0 at %≦b≦3 at %, 0 at %≦c≦6 at %, 6.8 at %≦x≦10.8 at %, 2.2 at %≦y≦9.8 at %, 0 at %≦z≦4.2 at %, and 0 at %≦t≦3.9 at % hold, a metal element M is at least one selected from the group consisting of Ti, Al, Mn, Zr, Hf, V, Nb, Ta, Mo, and W, and the addition amount α of the metal element M satisfies 0.04 wt %≦α≦0.6 wt %. Accordingly, besides a decrease of a glass transition temperature (Tg), an excellent corrosion resistance and high magnetic characteristics can be obtained.
Abstract translation:本发明的Fe系非晶态合金粉末具有由(Fe100-a-b-c-x-y-z-tNiaSnbCrcPxCyBzSit)100-αMalpha表示的组成。 在该组合物中,0at%@ a @ 10 at%,0 at%@ b @ 3 at%,0 at%@ c @ 6 at%,6.8 at%@ x @ 10.8 at%,2.2 at%@ y @ 金属元素M为选自Ti,Al,Mn,Zr,Hf中的至少一种,金属元素M为选自Ti,Al,Mn,Zr,Hf, V,Nb,Ta,Mo和W,并且金属元素M的添加量α满足0.04wt%@α@ 0.6wt%。 因此,除了玻璃化转变温度(Tg)的降低之外,还可以获得优异的耐腐蚀性和高的磁特性。