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Negative Thermal Expansion over a Wide Temperature Range in Fe-Doped MnNiGe Composites

机译:掺铁的MnNiGe复合材料在较宽温度范围内的负热膨胀

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Fe-doped MnNiGe alloys were successfully synthesized by solid-state reaction. Giant negative thermal expansion (NTE) behaviors with the coefficients of thermal expansion (CTE) of -285.23×10-6 K-1 (192-305 K) and -1167.09×10-6 K-1 (246-305 K) have been obtained in Mn0.90Fe0.10NiGe and MnNi0.90Fe0.10Ge, respectively. Furthermore, these materials were combined with Cu in order to control the NTE properties. The results indicate that the absolute value of CTE gradually decreases with increasing Cu contents. In Mn0.92Fe0.08NiGe/x%Cu, the CTE gradually changes from -64.92×10-6 K-1 (125-274 K) to -4.73×10-6 K-1 (173-229 K) with increasing value of x from 15 to 70. The magnetic measurements reveal that the NTE behaviors in this work are strongly correlated with the process of the magnetic phase transition and the introduction of Fe atoms could also change the spiral anti-ferromagnetic (s-AFM) state into ferromagnetic (FM) state at low temperature. Our study launches a new candidate for controlling thermal expansion properties of metal matrix materials which could have potential application in variable temperature environment.
机译:通过固相反应成功地合成了Fe掺杂的MnNiGe合金。热膨胀系数(CTE)为-285.23×10-6 K-1(192-305 K)和-1167.09×10-6 K-1(246-305 K)的巨型负热膨胀(NTE)行为具有分别在Mn0.90Fe0.10NiGe和MnNi0.90Fe0.10Ge中获得。此外,这些材料与铜结合以控制NTE性能。结果表明,随着铜含量的增加,CTE的绝对值逐渐减小。在Mn0.92Fe0.08NiGe / x%Cu中,CTE随着值的增加从-64.92×10-6 K-1(125-274 K)逐渐变为-4.73×10-6 K-1(173-229 K)从15到70的x。磁测量表明,这项工作中的NTE行为与磁相变过程密切相关,Fe原子的引入也可能将螺旋反铁磁(s-AFM)状态改变为低温下处于铁磁(FM)状态。我们的研究为控制金属基体材料的热膨胀特性开辟了一个新的候选对象,该材料可能在可变温度环境中具有潜在的应用。

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