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高铝型褐铁矿直接还原工艺相变研究 被引量:3
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作者 史志新 《冶金分析》 CAS CSCD 北大核心 2016年第11期34-40,共7页
为了研究某高铝型褐铁矿直接还原过程中的物相变化规律,采用偏光显微镜、扫描电镜(SEM)、X射线衍射仪(XRD)和矿物自动解理系统(MLA)对某高铝型褐铁矿进行矿物组分分析,然后对其矿物水分进行定性测定。结果表明,该高铝型褐铁矿主要由针... 为了研究某高铝型褐铁矿直接还原过程中的物相变化规律,采用偏光显微镜、扫描电镜(SEM)、X射线衍射仪(XRD)和矿物自动解理系统(MLA)对某高铝型褐铁矿进行矿物组分分析,然后对其矿物水分进行定性测定。结果表明,该高铝型褐铁矿主要由针铁矿、赤铁矿、铬铁矿、石英和绿泥石等矿物组成,原矿微观形貌是以疏松状针铁矿为主,其内部嵌布有粒径不同的铬铁矿、赤铁矿和硅酸盐等矿物,导致其部分客晶矿物难以通过物理分选去除,Cr、Ni和Co等有益元素主要是以针铁矿、铬铁矿等为赋存载体;结晶水的研究结果表明,在升温过程中针铁矿和绿泥石分别在290℃和830℃先后失去结晶水或者羟基,导致物相转变为赤铁矿和橄榄石相。 展开更多
关键词 高铝型褐铁矿 物相相变 元素赋存 嵌布关系
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Phase composition, transition and structure stability of functionally graded cemented carbide with dual phase structure 被引量:2
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作者 张立 陈述 +3 位作者 熊湘君 贺跃辉 黄伯云 张传福 《Journal of Central South University of Technology》 EI 2007年第2期149-152,共4页
The phase composition, phase transition and phase structure transformation of the wire-cut section of functionally graded WC-Co cemented carbide with dual phase structure were investigated by XRD phase analysis. It is... The phase composition, phase transition and phase structure transformation of the wire-cut section of functionally graded WC-Co cemented carbide with dual phase structure were investigated by XRD phase analysis. It is shown that the composition of η phase in the core zone is Co_3W_3C (M_6 C type). The structure of cobalt based solid solution binder phase is fcc type. At the cooling stage of the sintering process, the phase transition of η phase, i.e. M_6C→M_12C and the martensitic phase transition of the cobalt based solid solution binder phase, i.e. fcc→hcp are suppressed, which facilitates the strengthening of the alloy. Because the instantaneous temperature of the discharge channel is as high as 10 000 ℃ during the wire cutting process, the processed surface is oxidized. Nevertheless, the oxide layer thickness is in micro grade. In the oxide film, η phase is decomposed into W_2C and CoO, and cobalt based solid solution binder is selectively oxidized, while WC remains stable due to the existence of carbon containing liquid organic cutting medium. 展开更多
关键词 cemented carbide dual phase structure functionally graded material phase identification fracture toughness testing
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First-and second-order phase transitions in RE_(6)Co_(2)Ga(RE=Ho,Dy or Gd)cryogenic magnetocaloric materials 被引量:3
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作者 Dan Guo Luis M.Moreno-Ramírez +5 位作者 Carlos Romero-Muñiz Yikun Zhang Jia-Yan Law Victorino Franco Jiang Wang Zhongming Ren 《Science China Materials》 SCIE EI CAS CSCD 2021年第11期2846-2857,共12页
Rare-earth(RE)rich intermetallics crystallizing in orthorhombic Ho_(6)Co_(2)Ga-type crystal structure exhibit peculiar magnetic properties that are not widely reported for their magnetic ordering,order of magnetic pha... Rare-earth(RE)rich intermetallics crystallizing in orthorhombic Ho_(6)Co_(2)Ga-type crystal structure exhibit peculiar magnetic properties that are not widely reported for their magnetic ordering,order of magnetic phase transition,and related magnetocaloric behavior.By tuning the type of RE element in RE_(6)Co_(2)Ga(RE=Ho,Dy or Gd)compounds,metamagnetic anti-to-paramagnetic(AF to PM)phase transitions could be tuned to ferro-to-paramagnetic(FM to PM)phase transitions.Furthermore,the FM ground state for Gd_(6)Co_(2)Ga is confirmed by density functional theory calculations in addition to experimental observations.The field dependence magnetocaloric and Banerjee’s criteria demonstrate that Ho_(6)Co_(2)Ga and Dy_(6)Co_(2)Ga undergo a first-order phase transition in addition to a second-order phase transition,whereas only the latter is observed for Gd_(6)Co_(2)Ga.The two extreme alloys of the series,Ho_(6)Co_(2)Ga and Gd_(6)Co_(2)Ga,show maximum isothermal entropy change(|ΔS_(iso)^(max)(5T)|)of 10.1 and 9.1 J kg^(-1)K^(-1)at 26 and 75 K,close to H_(2)and N_(2)liquefaction,respectively.This outstanding magnetocaloric effect performance makes the RE6 Co_(2)Ga series of potential for cryogenic magnetic refrigeration applications. 展开更多
关键词 RE6Co2Ga compounds magnetic phase transitions magnetocaloric effect RARE-EARTH
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