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1)  nonferrous materials
非铁基材料
2)  Amorphous iron-based materials
铁基非晶材料
3)  Fe-based material
铁基材料
1.
Experimental studies on shock-induced phase transition in HR2 and other Fe-based materials;
HR2钢及几种铁基材料的冲击相变行为
4)  iron-based material
铁基材料
1.
The directive studies and its extend progress in both the spectra and mechanism of the internal friction in iron-based materials,which were completed and obtained by the authors and cooperators,are introduced.
介绍了作者等近年来,对铁基材料内耗谱和内耗机制,进行的针对性研究和取得的进展;讨论和评述了变形增强Snoek效应、Snoek-K-êK ster(SKK)阻尼、B变形峰和Kê峰等内耗现象机制。
5)  iron-base material
铁基材料
1.
Powder metallurgy is introduced to make iron-base material to which different alloy elements are added and then sintered to study the impacts on its wear-ability, density and hardness.
用粉末冶金方法制备铁基材料,研究了铁基材料中加入不同合金元素进行烧结后,对耐磨性、密度和硬度的影响,得出了在铁基材料中加入RE、S、Mo、Cu、Sn、P、Mn等元素对耐磨性的提高均有利的结果,而综合分析 Fe-C-RE和Fe-C-Cu-P-Mo粉末冶金材料具有较好的应用价值。
2.
Sacrificial anode performance of iron-base materials was measured in seawater by constant current experiment and their feasibility of usage in cathodic protection of 12Cr steel tubes was analyzed by polarization curves and circulation Volt-Ampere curve.
采用恒电流试验测试了铁基材料在海水中的牺牲阳极性能,并结合12Cr钢管的极化和循环伏安曲线测试以及阴极保护的实海试验,分析了铁基阳极用于12Cr钢管牺牲阳极保护的可行性。
6)  ferrous materials
铁基材料
1.
The recent development of laser allo ying on the surface of ferrous materials is reviewed.
综述了铁基材料表面激光合金化的研究进展,着重介绍了激光表面合金化的主要工艺方法、合金化层的组成、成分分布、组织结构和性能,并指出了激光合金化存在的问题和发展方向。
补充资料:稀土-铁族金属非晶薄膜磁光材料
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CAS号:

性质:用稀土和铁族金属制成的薄膜磁光材料其组成、电和磁性能及单轴各向异性受沉积条件及靶材成分影响。非晶态霍耳电压(VH)与磁场关系和极向克尔磁带回线相似,在补偿温度(Tcomp)附近,霍尔系数R1改变符号,当T<Tcomp时,R1为负,相反为正。其制备方法为高频溅射、真空蒸发、磁控溅射等。

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