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首页> 外文期刊>The American mineralogist >Sound wave velocities of Fe5Si at high-pressure and high-temperature conditions: Implications to lunar and planetary cores
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Sound wave velocities of Fe5Si at high-pressure and high-temperature conditions: Implications to lunar and planetary cores

机译:高压和高温条件下FE5SI的声波速度:对农历和行星核心的影响

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Elastic properties of Fe alloys are critical in constraining the compositions of planetary bodies by comparing to the planetary observations. The sound wave velocities and density of an Fe5Si (9 wt% Si) alloy in body-centered cubic (bcc) structure were measured by combining an ultrasonic technique with synchrotron X-ray radiography at pressure (P) and temperature (T) conditions of 2.6-7.5 GPa and 300-1173 K, respectively. At room temperature, it is observed that adding Si to bcc-Fe increases the compressional wave velocity (v(P)) but decreases the shear wave velocity (v(S)). At high temperatures, we observed a pronounced effect of pressure on the v(S)-T relations in the Fe5Si alloy. The v(P)-density (rho) relationship of the Fe5Si alloy is found to follow the Birch's law in the P-T range of this study, whereas the v(S)-rho relation exhibits complex behavior. Implications of these results to the lunar core and the Mercurian core are discussed. Our results imply that adding Si to a pure Fe lunar core would be invisible in terms of v(P), but exhibit a decreased v(S). Including Si in a sulfur-rich lunar core would display an increased v(P) and a decreased rho. Our density and sound wave velocity model provide lower and upper limit for a Si-bearing lunar core if 1-3 wt% Si content of enstatite chondrite is taken as compositional analog. A Si-rich (9 wt%) Mercurian core model is derived to satisfy newly observed moment of inertia values by Messenger spacecraft.
机译:通过比较行星观察,Fe合金的弹性性能对于约束行星体的组成至关重要。通过在压力(P)和温度(T)条件下,通过将超声波技术组合通过组合超声波技术来测量身体中心立方(BCC)结构中Fe5Si(9wt%Si)合金的声波速度和密度。 2.6-7.5 GPA和300-1173 k分别。在室温下,观察到将Si添加到BCC-Fe增加,增加了压缩波速度(V(P)),但降低了剪切波速度(V(S))。在高温下,我们观察到Fe5Si合金中V(S)-T关系的发明效应。在本研究的P-T范围内发现FE5SI合金的V(P) - 强度(RHO)关系在P-T范围内遵循Birch的定律,而V(s)-RHO关系表现出复杂的行为。讨论了这些结果对月球核心和牧师核心的影响。我们的结果意味着在V(P)方面,将SI添加到纯FE Lunar核心将是不可见的,但表现出降低v(s)。包括富含硫的月球内核的Si将显示增加V(P)和降低的RHO。如果将Enstatite chondrite的1-3wt%Si含量作为成分类似物,我们的密度和声波速度模型为Si轴承的月球内核提供了下限和上限。富含Si的(& 9wt%)梅尔马里亚核心模型,以满足信使航天器的新观察到的惯性力矩。

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