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The effects of the partial substitution of element M(M=Cr,V,Mn,x=0.05;Zr,Ga,x=0.017;Si,x=0.15;Co,x=0.10)for Fe in samarium-iron-nitride Sm_2(Fe_(1-x)M_x)_(17)N_y compounds on their stabilitiesand Curie temperatures have been studied.It is found that Co,Ga can raise the Curie temperature of thecompounds.The initial decomposition temperatures cannot be raised significantly by all the studied elementsexcept Co.The result contradicts the formation enthalpy consideration.The final decomposition tempera-tures can be raised by all of the substitution elements.The effects of atmospheres on their decomposition be-havior were also studied.The results show that oxidation is the major reason for magnetic deterioration ofthe powder heated in air.Compared with nitrogen atmosphere,argon or vacuum helps to delay the decompo-sition of the compounds.
The effects of the partial substitution of element M (M = Cr, V, Mn, x = 0.05; Zr, Ga, x = 0.017; Si, x = 0.15; Co, x = 0.10) for Fe in samarium-iron-nitride Sm_2 (Fe_ (1-x) M_x) _ (17) N_y compounds on their stabilities and Curie temperatures have been studied. It is found that Co, Ga can raise the Curie temperature of the compounds.The initial suspension temperatures can not be significantly increased by all the studied elementsexcept Co.The result contradicts the formation enthalpy consideration. the final decomposition tempera-tures can be raised by all of the substitution elements. the effects of atmospheres on their decomposition be-havior were also studied. results show that oxidation is the major reason for magnetic deterioration of the powder heated in air. Compared with nitrogen atmosphere, argon or vacuum helps to delay the decompo- sition of the compounds.