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首页> 外文期刊>Journal of geophysical research. Planets >Pressure Dependence of the Liquidus and Solidus Temperatures in the Fe-P Binary System Determined by In Situ Ultrasonics: Implications to the Solidification of Fe-P Liquids in Planetary Cores
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Pressure Dependence of the Liquidus and Solidus Temperatures in the Fe-P Binary System Determined by In Situ Ultrasonics: Implications to the Solidification of Fe-P Liquids in Planetary Cores

机译:通过原位超声测定的Fe-P二元体系中液相和固体温度的压力依赖性:对行星芯的Fe-P液体凝固的影响

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摘要

We have developed a new technique for determining the liquidus and eutectic (or solidus) temperatures of Fe-light element alloys at high pressures in a multianvil apparatus, by studying ultrasonic wave propagation through the sample. While the onset of melting is manifested by the loss of both compressional (P-) and shear (S-) wave signals due to the scattering of sound waves by partial melts, the completion of melting is confirmed by the reappearance of the P wave signal when the scattering due to residual crystals disappears. By applying this technique to the Fe-P binary system with three different phosphorus contents, we were able to constrain the Fe-rich portion of the phase diagram up to 7 GPa and 1,733 K. Our results show that for phosphorus-poor compositions, ranging from Fe-5wt%P to the eutectic composition, the liquidus temperature exhibits a weak negative pressure dependence (dT/dP = -10.4 K GPa~(-1) for Fe-5wt%P). While for the phosphorus-richer compositions, including Fe-10wt%P and Fe3P, the liquidus temperature increases significantly with pressure (dT/dP = 71.3 and 62.5 K GPa~(-1),respectively). This indicates a shift of the eutectic composition to lower phosphorus contents with increasing pressure. Consequently, molten metallic cores of planetary bodies with phosphorus contents ranging from Fe-5wt%P to the eutectic composition would start crystallization from the top of the core and proceed downward. Whereas cores with phosphorus-richer compositions (Fe-10wt%P to Fe_3P) would undergo a bottom-up crystallization, resulting in a growing solid inner core.
机译:通过研究通过样品,通过研究超声波传播,开发了一种用于确定Fe-Light元件的液体和共晶(或固体)温度的新技术,通过样品进行超声波传播。虽然熔化的开始表现为损失压缩(P频)和剪切(S-)波信号由于通过部分熔体散射而散射,通过P波信号的重新分析确认熔化的完成当由于残留晶体引起的散射消失时。通过将该技术应用于具有三种不同的磷含量的Fe-P二元系统,我们能够约束相表图的Fe富含Fe的Fe富含2GPa和1,733 K.我们的结果表明,对于磷差的组合物,测距从Fe-5wt%p到共晶组合物,液相液的温度呈弱负压依赖性(DT / DP = -10.4kgPa〜(-1)用于Fe-5wt%p)。虽然对于磷富含磷的组合物,但包括Fe-10wt%p和Fe3p,液相高度随着压力(dt / dp = 71.3和62.5kgpa〜(-1))显着增加)。这表明共晶组合物的偏移与越来越大的压力降低磷含量。因此,具有从Fe-5wt%p到共晶组合物的磷含量的行星体的熔融金属芯将从芯的顶部开始结晶并下降。与磷 - 富含组合物(Fe-10wt%p到Fe_3p)的核心将经历自下而上的结晶,导致生长的固体内核。

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  • 作者单位

    Department of Earth Environmental and Planetary Sciences Case Western Reserve University Cleveland OH USA;

    Department of Earth Environmental and Planetary Sciences Case Western Reserve University Cleveland OH USA;

    Department of Earth Environmental and Planetary Sciences Case Western Reserve University Cleveland OH USA;

    Center for Advanced Radiation Sources The University of Chicago Chicago IL USA;

    Center for Advanced Radiation Sources The University of Chicago Chicago IL USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 行星、卫星、彗星、流星、陨星;
  • 关键词

    liquidus; sample; loss;

    机译:液体;样品;损失;

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