AbstractThe ensemble of interstitial atoms as C attracted to a dislocation is well established as “Cottrell clo'/> Elastic stress-strain analysis of an infinite cylindrical inclusion with eigenstrain
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Elastic stress-strain analysis of an infinite cylindrical inclusion with eigenstrain

机译:本征形无限圆柱夹杂物的弹性应力-应变分析

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AbstractThe ensemble of interstitial atoms as C attracted to a dislocation is well established as “Cottrell cloud” phenomenon. The deposition of the interstitial atoms in octahedral or tetrahedral positions in a bcc lattice may yield a remarkable internal stress state according to their anisotropic misfit eigenstrains. The stress fields of the atoms may then lead to a significant change in the stress field, e.g., around a dislocation. In such a case, the interstitial atoms are situated near the dislocation core in cylindrical volume elements along the dislocation line. As the occupancy of the sites in each cylinder by interstitial atoms can be considered as constant, also the eigenstrain state tensor is constant in the cylinder. A complete set of analytical expressions for the eigenstress state inside and outside of the cylinder is presented. The resultant stress field is then given by superposition, which allows also the determination of the interaction energy between the Cottrell cloud and the dislocation.
机译: Abstract 由于C被位错吸引的间隙原子的集合被很好地确定为“ Cottrell云”现象。间隙原子在bcc晶格中的八面体或四面体位置的沉积可能会根据其各向异性失配本征应变而产生显着的内部应力状态。原子的应力场然后可能导致应力场的显着变化,例如在位错附近。在这种情况下,间隙原子沿着位错线位于圆柱体元素中的位错核附近。由于间隙原子在每个圆柱体中占据的位点可以认为是恒定的,因此本征态张量在圆柱体中也是恒定的。给出了圆柱体内部和外部固有应力状态的完整解析表达式。然后通过叠加给出合成应力场,这也可以确定Cottrell云与位错之间的相互作用能。

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