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Shear deformation experiments of forsterite at 11GPa-1400 degrees C in the multianvil apparatus

机译:多砧仪中镁橄榄石在11GPa-1400℃下的剪切变形实验

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Synthetic forsterite samples were shear-deformed at 11 GPa, 1400degreesC in the multianvil apparatus. The deformation microstructures have been characterised by SEM, EBSD, X-ray diffraction peak broadening and strain anisotropy analysis, and TEM. Different time durations have been characterised with a view to follow the evolution of strain and stress in high-pressure deformation experiments. A high density of [001] dislocations is introduced during pressurization at room temperature although no significant macroscopic shear or crystal preferred orientations are induced at this stage. The deviatoric stress is probably on the order of 1.5 GPa. Heating at 1400degreesC leads to a rapid decrease of the density of these dislocations. The shear deformation at high-temperature leads to measurable strain and development of crystal preferred orientations after one hour. Stress and strain-rate continue to decrease with time, such that eight hour experiments exhibit microstructures where recovery is apparent. At this stage, the stress level is estimated at ca. 100 MPa from dislocation density measurements. Crystal preferred orientations and TEM characterisation show that glide of [001] dislocations on (100) or (010) is the dominant deformation mechanism. Further investigation is needed to determine whether inhibition of [100] glide in these experiments is due to the role of water or whether a physical effect of pressure is also contributing.
机译:合成的镁橄榄石样品在多砧设备中于11 GPa,1400摄氏度下剪切变形。通过SEM,EBSD,X射线衍射峰展宽和应变各向异性分析以及TEM表征了变形微观结构。为了跟踪高压变形实验中应变和应力的变化,已对不同的持续时间进行了表征。尽管在该阶段没有引起明显的宏观剪切或晶体优选的取向,但是在室温下的加压期间引入了高密度的[001]位错。偏应力可能约为1.5 GPa。在1400℃加热导致这些位错的密度迅速降低。一小时后,高温下的剪切变形导致可测量的应变和晶体优选取向的发展。应力和应变率会随着时间的推移而持续降低,因此八小时的实验显示出明显恢复的微观结构。在此阶段,应力水平估计为。根据位错密度测量得出100 MPa。晶体的优选取向和TEM表征表明,[001]位错在(100)或(010)上的滑动是主要的变形机制。需要进一步研究以确定在这些实验中对[100]滑行的抑制是由于水的作用还是压力的物理作用是否也在起作用。

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