
High-Temperature Zero Thermal Expansion in HfFe 2+δ from …
2022年10月17日 · However, the domination of magnetic behavior over the thermal expansion of magnetic compounds makes it difficult to display ZTE at high temperatures. Herein, we report …
一种高温零膨胀合金材料及制备方法-CN115323233A - 专利顾如
本发明涉及合金材料技术领域,具体涉及一种高温零膨胀合金材料及制备方法,所述合金材料的原子表达式为HfFe,0.2<σ<0.7,在433~583K温区内,所述合金材料具有整体零热膨胀效应。
附加铁磁路径导致的 HfFe2+δ 高温零热膨胀,Chemistry of …
此外,实验表明,HfFe 2.5生成 ZTE是由于Fe的磁矩从有序状态转变为无序状态引起的晶格收缩和晶格振动引起的晶格膨胀相互抵消。 该研究不仅报道了一种高温 ZTE 材料,还提供了一种不 …
Magnetic properties and electronic structure of the new HfFe
2006年12月21日 · We have studied the new HfFe 6 Ge 6-type HfMn 6 Ge 6 compound by magnetisation measurements, neutron diffraction and band structure calculations. Its magnetic …
High-Temperature Zero Thermal Expansion in HfFe
However, the domination of magnetic behavior over the thermal expansion of magnetic compounds makes it difficult to display ZTE at high temperatures. Herein, we report a high …
High-Temperature Zero Thermal Expansion in HfFe2+δ from …
Deformation caused due to the thermal expansion of a material at high temperatures impairs the functioning of the device. Hence, high-temperature zero thermal expansion (ZTE) compounds …
Hyperfine spectroscopic study of Laves phase HfFe - ScienceDirect
2004年5月1日 · Hyperfine fields in HfFe 2 were measured at 181 Ta probe using the time-differential perturbed angular correlation method (TDPAC) in the temperature range 78–1200 …
Superconducting transition of amorphous TiFe, ZrFe and HfFe …
1981年7月1日 · Amorphous TiFe, ZrFe and HfFe alloys prepared by low temperature implantation of about 10 at% Fe were found to have superconducting transition temperatures, T c, …
Magnetic properties, Mössbauer effect and first principle
2006年5月5日 · The magnetic properties and hyperfine interaction parameters for Laves phase HfFe 2 with C14 type structure are studied using SQUID magnetometer and Mössbauer …
High-Temperature Zero Thermal Expansion in HfFe 2+δ from
High-Temperature Zero Thermal Expansion in HfFe 2+δ from Added Ferromagnetic Paths Deformation caused due to the thermal expansion of a material at high temperatures impairs …
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