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首页> 外文期刊>Journal of Applied Physics >Pressure calibration to 20 GPa by simultaneous use of ultrasonic and x-ray techniques
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Pressure calibration to 20 GPa by simultaneous use of ultrasonic and x-ray techniques

机译:同时使用超声和X射线技术将压力校准至20 GPa

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摘要

Simultaneous measurements of elastic P- and S-wave travel times, density (specific volume), and sample length using a multianvil apparatus interfaced with ultrasonic interferometry and x-ray diffraction and radiography have enabled simultaneous determination of elastic properties and absolute pressure at high pressures and high temperatures. Experimental procedures and data analyses are demonstrated using data collected on polycrystalline samples of ferropericalse (MgFe) and wadsleyite Mg_2SiO_4 under quasihydrostatic conditions up to 20 GPa. Compared with those derived from the internal pressure standard in the same experiments based on equations of state of NaCl, the directly determined pressure at 20 GPa is ~8% and ~12% higher than those inferred from the Brown and Decker pressure scales, respectively. The discrepancy cannot be reconciled by uncertainties in the NaCl pressure scale and current experimental data. Until further results are available, the pressure determined in this study is believed to be a more accurate measurement of the effective pressure imposed on the sample than that inferred from NaCl based on previous pressure scales.
机译:使用与超声波干涉仪,X射线衍射和射线照相相结合的多砧装置,可以同时测量弹性P波和S波的传播时间,密度(比容)和样品长度,从而可以同时确定高压下的弹性和绝对压力和高温。使用在高达20 GPa的准静压条件下,从铁镁(MgFe)和硅镁石Mg_2SiO_4的多晶样品上收集的数据证明了实验程序和数据分析。与在相同实验中根据NaCl状态方程从内部压力标准得出的压力相比,在20 GPa处直接确定的压力分别比从Brown和Decker压力标尺推断的压力高8%〜12%。 NaCl压力标尺和当前实验数据的不确定性无法弥补这一差异。在没有进一步的结果可用之前,该研究中确定的压力被认为是对样品施加的有效压力的一种精确测量,而不是根据以前的压力等级从NaCl推断出的压力。

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