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首页> 外文期刊>Physics and chemistry of minerals >Melting of iron-silicon alloy up to the core-mantle boundary pressure: Implications to the thermal structure of the Earth's core
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Melting of iron-silicon alloy up to the core-mantle boundary pressure: Implications to the thermal structure of the Earth's core

机译:铁硅合金的熔化直至核心-地幔边界压力:对地球核心的热结构的影响

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The melting temperature of Fe-18 wt% Si alloy was determined up to 119 GPa based on a change of laser heating efficiency and the texture of the recovered samples in the laser-heated diamond anvil cell experiments. We have also investigated the subsolidus phase relations of Fe-18 wt% Si alloy by the in-situ X-ray diffraction method and confirmed that the bcc phase is stable at least up to 57 GPa and high temperature. The melting curve of the alloy was fitted by the Simon's equation, P(GPa)/a = (T_m(K)/T_0)~c, with parameters, T_0 = 1,473 K, a = 3.5 ± 1.1 GPa, and c = 4.5 ± 0.4. The melting temperature of bcc Fe-18 wt% Si alloy is comparable with that of pure iron in the pressure range of this work. The melting temperature of Fe-18 wt% Si alloy is estimated to be 3,300-3,500 K at 135 GPa, and 4,000-4,200 K at around 330 GPa, which may provide the lower bound of the temperatures at the core-mantle boundary and the inner core-outer core boundary if the light element in the core is silicon.
机译:Fe-18 wt%Si合金的熔化温度根据激光加热效率的变化和在激光加热的金刚石砧室实验中回收的样品的织构确定为119 GPa。我们还通过原位X射线衍射方法研究了Fe-18 wt%Si合金的亚固相关系,并确定bcc相至少在最高57 GPa和高温下都稳定。合金的熔融曲线通过Simon方程P(GPa)/ a =(T_m(K)/ T_0)〜c拟合,参数T_0 = 1,473 K,a = 3.5±1.1 GPa,c = 4.5 ±0.4。在这项工作的压力范围内,bcc Fe-18 wt%Si合金的熔化温度与纯铁相当。 Fe-18 wt%Si合金的熔化温度在135 GPa时估计为3,300-3,500 K,在330 GPa左右时为4,000-4,200 K,这可能提供了芯-幔边界和温度的下限。如果内核中的发光元素是硅,则内核内部-内核外部边界。

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