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中国物理学会期刊

钢中小角度晶界区的电子结构及掺杂效应

CSTR: 32037.14.aps.49.1344

ENERGIES OF IMPURITIES AND DOPING EFFECT AT 5.3° LOW ANGLE GRAIN BOUNDARIES IN STEEL

CSTR: 32037.14.aps.49.1344
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  • 根据位错的弹性理论,建立了9Ni钢中53°掺杂小角度晶界的原子模型,利用Recursion方法,计算了杂质在53°小角度晶界典型环境中的能量和电子结构,由此得出,钢中小角度晶界的强度敏感地依赖于隔离杂质的类型,S,P杂质使晶粒间结合减弱,从而导致晶界疏松 ;相反,B,C,N则会使晶界间的结合加强.在所有的杂质中,B显示出独特的性质,在钢中B 不仅能增强晶界的结合,而且由于占位竞争效应会使其他杂质远离晶界,具有净化晶界的作用.

     

    A model of 5.3° low angle grain boundaries in steel is set up by using elastict heory of dislocations.The first-principle calculations of energies and the elect ronic structures of impurities for a 5.3° low angle grain boundary (GB) in stee l have revealed important features of the impurity effect.In Fe,impurities such as S,P weaken the intergranular cohesion,resulting in ‘loosening’ of the GB.Th e presence of B,C,N on the contrary enhances the GB.Boron plays a dual role in s teel,not only does it presence at GBs enhance the intergranular cohesion,but als o accomplishes ‘site competition cleaning’ by displacing the other impurity at oms off the GB.

     

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