$T_{C}$ in Curie Temperature and Hopkinson Effect in Twin Roller Melt Spun ${hbox{Ni}}_{2}{hbox{MnGa}}$ Shape Memory Alloys
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Curie Temperature and Hopkinson Effect in Twin Roller Melt Spun ${hbox{Ni}}_{2}{hbox{MnGa}}$ Shape Memory Alloys

机译:双辊熔融纺制$ {hbox {Ni}} _ {2} {hbox {MnGa}} $形状记忆合金的居里温度和霍普金森效应

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摘要

The temperature dependence of the magnetic polarization near the Curie temperature $T_{C}$ in ${hbox{Ni}}_{2}{hbox{MnGa}}$ stoichiometric alloys, directly processed from the melt in a twin-roller melt-spinning device, is investigated. The effect of the solidification rate on the Hopkinson peak detected is evaluated in samples quenched at three different tangential wheel speeds of 10, 15, and 20 m/s. The resulting microstructures were previously characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), energy dispersive X-ray spectroscopy (EDS) and by transmission electron microscopy (TEM). EDS results indicated that all the alloys have the composition ${hbox{Ni}}_{2}{hbox{MnGa}}$ ; at room temperature and above this temperature, a cubic ${hbox{L}}2_{1}$ ferromagnetic ordered austenitic phase is observed. The Curie temperatures and the magnitude of the Hopkinson effect are estimated from the magnetic polarization versus temperature curves measured in a Faraday balance, in the range 300 K–400 K. As expected for samples with identical composition, the Curie temperatures remain insensitive to the processing route. At low fields (10 mT), the magnitude of the Hopkinson effect is larger in samples quenched at lower rates and it practically vanishes in all the alloys for applied fields near 100 mT.
机译:居里温度附近的磁极化的温度依赖性中的 $ T_ {C} $ $ {hbox {Ni}} _ {2} {hbox {MnGa}} $ 化学计量合金,直接在双辊熔体纺丝中从熔体中加工得到设备,进行了调查。在以10m / s,15m / s和20m / s的三个不同切向轮速度淬火的样品中评估了凝固速率对霍普金森峰的影响。所得的微结构先前通过X射线衍射(XRD),扫描电子显微镜(SEM),能量色散X射线光谱(EDS)和透射电子显微镜(TEM)表征。 EDS结果表明,所有合金的成分均 $ {hbox {Ni}} _ {2} {hbox {MnGa}} $ ;在室温和高于此温度的条件下,立方 $ {hbox {L}} 2_ {1} $ 铁磁有序奥氏体相被观察到。居里温度和霍普金森效应的大小是根据法拉第天平中在300 K–400 K范围内测得的磁极化与温度曲线估算的。与具有相同成分的样品一样,居里温度对处理不敏感路线。在低磁场(10 mT)下,霍普金森效应的强度在以较低速率淬火的样品中会更大,并且在所有合金中,对于100 mT附近的应用磁场,它实际上都消失了。

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