首页> 外文期刊>Journal of Applied Crystallography >Study of the effect of nano-sized precipitates on the mechanical properties of boron-added low-carbon steels by neutron scattering techniques
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Study of the effect of nano-sized precipitates on the mechanical properties of boron-added low-carbon steels by neutron scattering techniques

机译:用中子散射技术研究纳米级析出物对含硼低碳钢力学性能的影响

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Small-angle neutron scattering (SANS) and neutron powder diffraction (ND) techniques were used to study quantitatively the effect of nano-sized precipitates and boron addition on the mechanical properties of low-carbon steels. SANS was used to evaluate nano-sized precipitates, smaller than about 600 A in diameter, and ND was used to determine the weight fraction of the cementite precipitates. Fine core-shell structured spherical precipitates with an average radius of similar to 50 angstrom, such as MnS and/or CuS, surrounded by BN layers were observed in the boron-added (BA) low-carbon steels; fine spherical precipitates with an average radius of similar to 48 angstrom were mainly observed in the boron-free (BF) low-carbon steels. In the BA steels, the number of boron precipitates, such as BN, Fe-3(C, B) and MnS, surrounded by BN layers increased drastically at higher hot-rolling temperatures. The volume fraction of the fine precipitates of the BA steels was higher than that of the BF steels; this difference is related to the rapid growth of the BN layers on the MnS and CuS precipitates. Boron addition to low-carbon steels resulted in a reduction in strength and an improvement in elongation; this behaviour is related to the reduction of the solute carbon and the nitrogen contents in the ferrite matrix caused by the precipitation of BN, as well by the increase in the volume fraction of the cementites.
机译:小角度中子散射(SANS)和中子粉末衍射(ND)技术用于定量研究纳米级沉淀物和硼添加对低碳钢力学性能的影响。 SANS用于评估直径小于约600 A的纳米级沉淀物,ND用于确定渗碳体沉淀物的重量分数。在含硼(BA)低碳钢中,观察到了细小的核壳结构的球形沉淀物,例如MnS和/或CuS等平均半径约为50埃的MnS和/或CuS,被BN层包围。在无硼(BF)低碳钢中主要观察到平均半径近似于48埃的细小球形沉淀物。在BA钢中,被BN层包围的BN,Fe-3(C,B)和MnS等硼析出物的数量在较高的热轧温度下急剧增加。 BA钢的细小析出物的体积分数高于BF钢。这种差异与MnS和CuS沉淀物上BN层的快速生长有关。向低碳钢中添加硼会导致强度降低和延伸率提高;这种行为与BN沉淀引起的固溶碳和铁素体基体中氮含量的降低以及渗碳体体积分数的增加有关。

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