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Preparation of Amorphous Fe-Si-B and Co-Si-B Alloy Wires by a Melt Extraction Method and Their Mechanical and Magnetic Properties

机译:熔体萃取法制备非晶态Fe-Si-B和Co-Si-B合金丝及其力学和磁性能

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Amorphous (Fe, Co)-Si-B ternary and quaternary wires were found to be produced over a wire diameter range of 20 to 80 mu m by a melt extraction method using a copper wheel with an edge angle of 60 degrees. The wires without any concaves in the transverse cross section were prepared in the extraction condition where the circumferential velocity of the wheel and the rising velocity of the molten alloy are in the range of 20 to 40 m/s and 0.1 to 4.0 rnm/s, respectively. The resulting amorphous wires have good bending ductility in the wire diameter range below 80 /urn for the Fe_(75) Si_(10)B_(15) alloy and below 60 mu m for the Co_(72.5)Si_(12.5)B_(15) alloy. The thermal stability and mechanical properties except tensile fracture strength (sigma_f) for the amorphous wires are nearly the same as those for the melt-spun amorphous ribbons. The sigma_f is 3800 MPa for the Fe_(75)Si_(10)B_(15) wire and 3600 MPa for the Co_(72.5)Si_(12.5)B_(15) wire, being about 10 percent higher than those for the corresponding ribbon samples because of the low degree of stress concentration resulting from the good smoothness on the outer surface. The magnetic properties of saturation magnetization, coercivity and effective permeability at 1 kHz for the wires are nearly the same as those for the ribbons. The squareness of the hysteresis B-H loop for the Fe-Si-B amorphous wire is better than that for the same Fe-based ribbon and the sharp output voltage due to the reversion of magnetic flux is also observed for the present Fe_(78)Si_(10)B_(12) amorphous wire. The combined properties of good mechanical properties and unique magnetic properties leading to the generation of the sharp output voltage seem to be promising for the subsequent development of the present fine amorphous wires.
机译:发现通过使用具有60度边角的铜轮的熔融提取方法,在20至80μm的线直径范围内生产了非晶(Fe,Co)-Si-B三元和四元线。在提取条件下制备横截面没有任何凹陷的线,其中轮的圆周速度和熔融合金的上升速度在20至40 m / s和0.1至4.0 rnm / s的范围内,分别。在Fe_(75)Si_(10)B_(15)合金的线径范围小于80 / urn和对于Co_(72.5)Si_(12.5)B_(15)的线径范围内,所得的非晶线具有良好的弯曲延展性。 ) 合金。除拉伸断裂强度(sigma_f)外,非晶线材的热稳定性和机械性能与熔融纺丝的非晶带材几乎相同。 Fe_(75)Si_(10)B_(15)焊丝的sigma_f为3800 MPa,Co_(72.5)Si_(12.5)B_(15)焊丝的sigma_f为3600 MPa,比相应的焊带高约10%样品是因为外表面的良好光滑度导致应力集中程度较低。导线在1 kHz时的饱和磁化强度,矫顽力和有效磁导率的磁性能几乎与带状磁性能相同。 Fe-Si-B非晶线的磁滞BH环路的矩形度优于相同的Fe基带状磁条,并且对于当前的Fe_(78)Si_也观察到由​​于磁通量反转而产生的尖锐输出电压(10)B_(12)非晶线。良好的机械性能和独特的磁性能的组合特性导致产生尖锐的输出电压,似乎对于本发明的细非晶线的后续开发是有前途的。

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