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地幔中β相和γ相(Mg, Fe)2SiO4之间的相变:机制及流变学意义

Phase Transitions Between beta and ggr (Mg, Fe)2SiO4 in the Earth's Mantle: Mechanisms and Rheological Implications.

作者信息

Rubie D C, Brearley A J

出版信息

Science. 1994 Jun 3;264(5164):1445-8. doi: 10.1126/science.264.5164.1445.

Abstract

The mechanisms of the phase transformations between the spinel (gamma) and modified spinel (beta) polymorphs of Mg(2)SiO(4) have been studied experimentally between 15 and 20 gigapascals and 800 degrees to 950 degrees C. The gamma to beta transformation occurs by a shear mechanism, whereas the beta to gamma transformation involves grain-boundary nucleation and interface-controlled growth. These contrasting mechanisms are a consequence of the number of independent slip systems that are available in the respective crystal structures. This result leads to the prediction that in subduction zones and perhaps also rising plumes in the Earth's mantle, the gamma to beta transformation should be accompanied by a transient reduction in strength.

摘要

在15至20吉帕斯卡压力以及800摄氏度至950摄氏度的条件下,对Mg(2)SiO(4)的尖晶石(γ相)和改性尖晶石(β相)多晶型之间的相变机制进行了实验研究。γ相向β相的转变通过剪切机制发生,而β相向γ相的转变涉及晶界成核和界面控制生长。这些截然不同的机制是各自晶体结构中可用独立滑移系数量的结果。这一结果预测,在地幔的俯冲带以及可能还有上升的地幔柱中,γ相向β相的转变应该伴随着强度的短暂降低。

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