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Anomalous Behavior of Sound Velocity and Attenuation in Liquid Fe-Ni-S

机译:液态Fe-Ni-S中声速和衰减的异常行为

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摘要

The compressional wave velocity in molten iron containing 5 percent nickel and 10 percent sulfur increased with increasing temperature. This anomalous behavior was determined to be attributable to the presence of sulfur, which conditions the formation of large molecular units in the liquid. Temperature-induced breakup of macromolecular units resulted in greater packing efficiency and an increased velocity. Ten percent sulfur increased attenuation by one to two orders of magnitude compared with liquid iron. Such behavior at outer core pressures and temperatures would constrain the velocity gradient in the outer core and would enable the discrimination of potential light alloying elements.
机译:含5%镍和10%硫的铁水中的压缩波速度随温度升高而增加。确定这种异常行为归因于硫的存在,这限制了液体中大分子单元的形成。温度引起的大分子单元的分解导致更高的堆积效率和更高的速度。与液态铁相比,百分之十的硫使衰减增加了一到两个数量级。在外芯压力和温度下的这种行为将约束外芯中的速度梯度,并且将能够区分潜在的轻合金元素。

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