首页> 外文期刊>IEEE Transactions on Magnetics >Neutron irradiation effects on the structural, magnetic and mechanical properties of amorphous and nanocrystalline Fe/sub 73.5/Cu/sub 1/Nb/sub 3/Si/sub 13.5/B/sub 9/
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Neutron irradiation effects on the structural, magnetic and mechanical properties of amorphous and nanocrystalline Fe/sub 73.5/Cu/sub 1/Nb/sub 3/Si/sub 13.5/B/sub 9/

机译:中子辐照对非晶和纳米晶Fe / sub 73.5 / Cu / sub 1 / Nb / sub 3 / Si / sub 13.5 / B / sub 9 /的结构,磁性和机械性能的影响

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摘要

The response of the structural, magnetic and mechanical properties of amorphous and nanocrystalline Fe/sub 73.5/Cu/sub 1/Nb/sub 3/Si/sub 13.5/B/sub 9/ to radiation damage is investigated by means of Mossbauer spectroscopy, hysteresis loop measurements and by bending tests. The irradiation of the nanocrystalline as well as differently thermally treated amorphous samples is performed in the in-core reactor position. Mossbauer experiments reveal that neutron irradiation leads to partial re-amorphization in the investigated nanocrystalline alloys. For all samples it is found that the deterioration of the soft magnetic properties occurs predominantly in the higher fluence range (10/sup 18/-10/sup 19/ n/sub th/.cm/sup -2/). However, this deterioration is less significant in the nanocrystalline samples. The results of the bending tests show that all samples thermally embrittled below the crystallization temperature (still amorphous) can regain the complete ductility after neutron irradiation. On the other hand, the level of embrittlement of the nanocrystalline samples remained the same even after irradiation to the fluence of 1/spl times/10/sup 19/ n/sub th/.cm/sup -2/.
机译:通过Mossbauer光谱研究了非晶和纳米晶Fe / sub 73.5 / Cu / sub 1 / Nb / sub 3 / Si / sub 13.5 / B / sub 9 /的结构,磁性和机械性能对辐射损伤的响应,磁滞回线测量和弯曲测试。纳米晶体以及经过不同热处理的非晶态样品的辐照在堆芯内反应器位置进行。莫斯鲍尔(Mossbauer)实验表明,中子辐照会导致所研究的纳米晶合金发生部分再非晶化。对于所有样品,发现软磁性能的劣化主要发生在较高的通量范围内(10 / sup 18 / -10 / sup 19 / n / sub th..cm / sup -2 /)。然而,这种劣化在纳米晶体样品中不太明显。弯曲试验的结果表明,所有在晶化温度以下热脆化的样品(仍为非晶态)在中子辐照后均可恢复完全延展性。另一方面,即使在辐照至1 / spl×10 / sup 19 / n / sub th / .cm / sup -2 /的通量后,纳米晶体样品的脆化水平也保持相同。

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