10 Size effects of lamellar twins on the strength and deformation mechanisms of nanocrystalline hcp cobalt
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Size effects of lamellar twins on the strength and deformation mechanisms of nanocrystalline hcp cobalt

机译:层状孪晶的尺寸效应对hcp纳米晶钴强度和变形机理的影响

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摘要

Twins play an important role in the deformation of nanocrystalline (NC) metals. The size effects of {101¯2} tensile/{101¯1} compressive lamellar twins on the tensile strength and deformation mechanisms of NC hcp cobalt have been investigated by a series of large-scale molecular dynamics simulations. Unlike the size effects of twins on the strength for polycrystalline fcc metals, the strength of NC hcp cobalt with lamellar tensile/compressive twins monotonically increases with decreasing twin boundary spacing (TBS) and no softening stage is observed, which is due to the consistent deformation mechanisms no matter TBS is large or small. These consistent deformation mechanisms can be categorized into four types of strengthening mechanisms: (i) Partial basal dislocations nucleated from grain boundaries (GBs) or twin boundaries (TBs) intersecting with TBs/GBs; (ii) Phase transformation from hcp to fcc; (iii) <c + a> partial edge dislocations nucleated from TBs intersecting with basal partial dislocations; (iv) Growth of the newly formed secondary tensile twins inside the primary compressive/tensile twins. The observed multiple twinning in MD simulations has also been confirmed by TEM after tensile testing in NC cobalt processed by severe plastic deformation.
机译:双晶在纳米晶体(NC)金属的变形中起重要作用。 {<数学xmlns:mml =“ http://www.w3.org/1998/Math/MathML” id =“ M2” overflow =“ scroll”> 10 <移动口音=“ true”> 1 2 }张紧/ {<数学xmlns:mml =“ http: //www.w3.org/1998/Math/MathML“ id =” M4“ overflow =” scroll“> 10 1 <通过一系列大规模的分子动力学研究了mo> 1 }压缩层状孪晶对NC hcp钴的拉伸强度和变形机理的影响模拟。与孪晶尺寸对多晶fcc金属强度的影响不同,具有层状拉伸/压缩孪晶的NC hcp钴的强度随着孪晶边界间距(TBS)的减小而单调增加,并且未观察到软化阶段,这是由于一致的变形不论TBS大小的机制。这些一致的变形机制可分为四种类型的强化机制:(i)从与TB / GB相交的晶界(GB)或孪晶界(TB)成核的部分基底位错; (ii)从hcp到fcc的相变; (iii)从结核与基础部分位错相交的成核的部分边缘位错; (iv)在初级压缩/拉伸双胞胎内新形成的次级拉伸双胞胎的生长。在通过严重塑性变形加工的NC钴进行拉伸测试后,TEM也证实了在MD模拟中观察到的多次孪晶。

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