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欧洲同步辐射装置ID06光束线的大体积压机设施作为一种高压高温变形装置。

The large volume press facility at ID06 beamline of the European synchrotron radiation facility as a High Pressure-High Temperature deformation apparatus.

作者信息

Guignard Jeremy, Crichton Wilson A

机构信息

European Synchrotron Radiation Facility, 6 Rue Jules Horowitz, 38000 Grenoble, France.

出版信息

Rev Sci Instrum. 2015 Aug;86(8):085112. doi: 10.1063/1.4928151.

Abstract

We report here the newly developed deformation setup offered by the 20MN (2000T) multi-anvil press newly installed at sector 7 of the European synchrotron radiation facility, on the ID06 beamline. The press is a Deformation-DIA (D-DIA) type apparatus, and different sets of primary anvils can be used for deformation experiments, from 6 mm to 3 mm truncations, according to the target pressure needed. Pressure and temperature calibrations and gradients show that the central zone of the assemblies is stable. Positions of differential RAMs are controlled with a sub-micron precision allowing strain rate from 10(-4) to 10(-6) s(-1). Moreover, changing differential RAM velocity is immediately visible on sample, making faster reaching of steady state. Lattice stresses are determined by the shifting of diffraction peak with azimuth angle using a linear detector covering typically a 10° solid-angle in 2θ mounted on rotation perpendicular to the beam. Acquisition of diffraction pattern, at a typical energy of 55 keV, is less than a minute to cover the whole azimuth-2θ space. Azimuth and d-spacing resolution are respectively better than 1° and 10(-3) Å making it possible to quantify lattice stresses with a precision of ±20 MPa (for silicates, which have typically high values of elastic properties), in pure or simple shear deformation measurements. These mechanical data are used to build fully constrained flow laws by varying P-T-σ-ε̇ conditions with the aim to better understanding the rheology of Earth's mantle. Finally, through texture analysis, it is also possible to determine lattice preferred orientation during deformation by quantifying diffraction peak intensity variation with azimuth angle. This press is therefore included as one of the few apparatus that can perform such experiments combining with synchrotron radiation.

摘要

我们在此报告欧洲同步辐射装置7号扇区新安装的20MN(2000T)多砧压机提供的新开发的变形装置,该装置位于ID06光束线上。该压机是一种变形-DIA(D-DIA)型设备,根据所需的目标压力,可以使用不同组的初级砧座进行变形实验,截断尺寸从6毫米到3毫米不等。压力和温度校准以及梯度表明组件的中心区域是稳定的。差动随机存取存储器(RAM)的位置控制精度为亚微米,应变率范围为10^(-4)至10^(-6) s^(-1)。此外,差动RAM速度的变化在样品上立即可见,能更快达到稳态。晶格应力通过使用线性探测器,在垂直于光束的旋转方向上安装,覆盖典型的2θ方向10°立体角,根据衍射峰随方位角的移动来确定。在典型能量55 keV下采集衍射图案,覆盖整个方位角-2θ空间不到一分钟。方位角和d间距分辨率分别优于1°和10^(-3) Å,这使得在纯剪切或简单剪切变形测量中,能够以±20 MPa的精度(对于具有典型高弹性性能值的硅酸盐)量化晶格应力。这些力学数据用于通过改变P-T-σ-ε̇条件来建立完全约束的流动定律,旨在更好地理解地球地幔的流变学。最后,通过织构分析,还可以通过量化衍射峰强度随方位角的变化来确定变形过程中的晶格择优取向。因此,该压机是少数能够结合同步辐射进行此类实验的设备之一。

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