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Compositional softening in Mg-Al spinel

机译:镁铝尖晶石的成分软化

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Deviations from stoichiometry in Mg-Al spinel (MgO . nAl(2)O(3), n > 1) cause a marked decrease in both the high-temperature critical resolved shear stress (CRSS) and the steady-state flow stress for both {111} [(1) over bar)01] and {101}[(1) over bar 01] slip. However, Arrhenius plots give activation energies and stress exponents which are essentially the same for both stoichiometric and nonstoichiometric crystals. Dislocations observed after deformation in non-stoichiometric specimens undergoing {101} slip are predominately edge in character, while 60 degrees climb-dissociated dislocations are found in specimens which have undergone (111) slip. In contrast, edge and 30 degrees dislocations are found in stoichiometric (n = 1) spinel which has undergone {111} slip (Donlon et al., 1982, Phil. Mag. A, 45, 1013). Most of the dislocations in the non-stoichiometric crystals are dissociated by climb, although some partial dislocations are seen bounding widely separated glide faults, and some dislocations have segments alternately dissociated by a combination of glide and climb. Further analysis of the CRSS data shows a linear relationship between log(CRSS) and temperature which is at least as good as the usual Arrhenius plot. In addition, the CRSS decreases as [V-c](-2) where the concentration [V-c] of cation vacancies is given by (n - 1)/[3(3n + 1)1. These relationships imply that the CRSS is controlled by a Peierls stress which is reduced by kink nucleation at cation vacancies. The activation energy is slightly lower for {101} [(1) over bar 01] slip, so that this system is favoured in non-stoichiometric compositions at lower temperatures. [References: 43]
机译:Mg-Al尖晶石(MgO。nAl(2)O(3),n> 1)与化学计量的偏差会导致高温临界分辨剪切应力(CRSS)和稳态流动应力均显着降低{111} [(1)超出小节)01]和{101} [(1)超过小节01]。但是,Arrhenius曲线给出的活化能和应力指数对于化学计量和非化学计量的晶体都基本相同。在发生{101}滑移的非化学计量样品中,变形后观察到的位错主要是边缘特征,而在经历(111)滑移的样品中发现了60度的爬升解离位错。相反,在经历{111}滑移的化学计量(n = 1)的尖晶石中发现边缘和30度位错(Donlon等,1982,Phil.Mag.A,45,1013)。非化学计量晶体中的大多数位错通过爬升而解离,尽管看到一些局部位错以广泛分离的滑移断层为界,并且一些位错具有通过滑移和爬升的组合而交替解离的片段。对CRSS数据的进一步分析显示log(CRSS)与温度之间的线性关系至少与通常的Arrhenius图一样好。此外,CRSS降低为[V-c](-2),其中阳离子空位的浓度[V-c]由(n-1)/ [3(3n +1)1]给出。这些关系表明,CRSS受Peierls应力控制,而该应力通过阳离子空位的扭结成核而降低。 {101} [(1)超过条01]滑移的活化能略低,因此该系统在较低温度下的非化学计量组成中受青睐。 [参考:43]

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