206 resultados para Co-Fe-W alloys


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考察了Sr-Co -Fe -O系列和Bi-Sr-Fe -O系列混合导电型无机透氧膜材料在氧分压小于 1.0 13Pa的气氛中 ,在 850℃和 950℃高温下加热 2 4~ 10 0h前后结构的变化。发现Bi -Sr -Fe-O系列透氧膜材料具有良好的化学稳定型 ,可以用于还原气氛下的催化反应。

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在工业生产中NH_3氧化制HNO_3目前仍采用铂网催化剂。我们曾对稀土、过渡金属复合氧化物A_(1-x)A′_xBO_3型催化剂进行了一系列研究,其A,A′是碱土和稀土金属,B是Co,Fe,Mn,Ni等过渡金属元素。这类催化剂不仅活性高,HNO_3的单收率可达98%以上,而且具有良好的稳定性,但其寿命不如铂金.

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本文详细研究了黄河口(五、八月)、长江口、龙口湾、日照近海以及冀东唐海近岸海域表层沉积物中元素Zn、Pb、Ni、Cu、Co、Fe、K、Corg、Cr、Mn、P的总量和元素Zn、Cu、Pb、Co、Cr、Li、Ni、Mn、Fe、K 、Al、P的可提取量。在此基础上,着重研究了沉积物中元素总量间的相关性、元素可提取量间的相关性、元素的含量与粒度组成之间的关系、元素的总量与可提取量的关系以及可提取部分背景值等几个方面的内容。通过对不同地区不同类型的大量沉积物的研究结果表明:沉积物中元素Cu、Zn、Ni、Fe、Corg、Cr的总量在不同河口、不同类型的沉积物中与其它元素存在着显著的正相关关系。考虑到参比元素的限制条件,可以利用Ni、Fe、Corg、Cr作为参比元素,这些参比元素在不同地区、不同类型的沉积物中具有普遍性。元素Cu、Zn、Pb、Ni、Fe、K、Cr、Corg、Mn的总量与粘土含量呈显著的正相关关系。用1N HCl或0.5N HCl+H_2O_2提取沉积物,元素Cu、Zn、Pb、Co、Li、Ni、Fe、K、Al的提取量之间以及与其它元素的可提取量存在显著的正相关关系。Li、Ni、Fe、Al、Co同样可以作为参比元素,这比用总量来评价环境质量具有更方便的特点。元素Zn、Cu、Pb、Co、Li、Ni、Fe、K的可提取量与粘土含量成显著的正相关关系。与1N HC1、0.5N HCl+H_2O_2两种提取方法相比较,25%(V/V) CH_3COOH只提取了部分结合松散的金属,元素的可提取量之间以及与粘土含量之间的相关关系较差。采用不同的提取方法,元素的提取率的大小顺序与提取方法是一致的,与沉积物的区域及类型关系不明显。元素的提取率与粘土之间相关性差,说明虽然随着颗粒变细,各元素含量的绝对值增加,但相对比例变化不明显。在以上内容研究的基础上,提出了沉积物中元素可提取部分背景值的概念,这个概念具有一定的普遍性,对今后环境质量的正确评价,特别是评价对生物体影响方面,更具有重要的意义。Li、Al、K三种元素在采用提取量进行环境质量评价时,可以作为参比元素。这在以前的文献中尚没有报道,是在前人工作的基础上的又一发展。初步发现了沉积物中部分元素可提取相的元素粒度控制规律。

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A titanium-based perovskite-type oxide was synthesized by an improved method of combining EDTA acid and citric acid complexes. High structural stability, good sintering ability, and relatively high oxygen permeation flux were obtained simultaneously for disks synthesized from this ceramic oxide. (C) 2002 Elsevier Science B.V All rights reserved.

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The thermal stability of Nd60Fe20Co10Al10 bulk metallic glass (BMG) has been studied by differential scanning calorimetry (DSC), dynamic mechanical thermal analysis (DMTA), isochronal dilatation and compression tests. The results show that the glass transition of the BMG takes place quite gradually between about 460 and 650 K at a heating rate of 0.17 K/s. Several transformation processes are observed during continuous heating with the first crystallization process beginning at about 460 K, while massive crystallization takes place near the solidus temperature of the alloy. The positive heat of mixing between the two major constituents, Nd and Fe, and, consequently, a highly inhomogeneous composition of the attained amorphous phase are responsible for the anomalous thermal stability in this system. (C) 2002 Acta Materialia Inc. Published by Elsevier Science Ltd. All rights reserved.

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Novel cemented carbides (W0.4Al0.6)C-0.5-Co With different cobalt contents were prepared by mechanical alloying and hot-pressing technique. Hot-pressing technique as a common technique was performed to fabricate the bulk bodies of the hard alloys. The novel cemented carbides have good mechanical properties compared with WC-Co. The density and operation cost of the novel material were much lower than the WC-Co system. It was easy to process submicroscale sintering with the novel materials and obtain the rounded particles in the bulk materials. There is almost no eta-phase in the (W0.4Al0.6)C-0.5-CO cemented carbides system although the carbon deficient obtains the astonishing value of 50%.

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Three Polypropylene/Poly(ethylene-co-propylene) (PP/EPR) in-reactor alloys produced by a two-stage slurry/gas polymerization had different ethylene contents and mechanical properties, which were achieved by controlling the copolymerization time. The three alloys were fractionated into five fractions via temperature rising dissolution fractionation (TRDF), respectively. The chain structures of the whole samples and their fractions were analyzed using high-temperature gel permeation chromatography (GPC), Fourier transform infrared (FT-IR), C-13 nuclear magnetic resonance (C-13 NMR), and differential scanning calorimetry (DSC) techniques. These three in-reactor alloys mainly contained four portions: ethylenepropylene random copolymer (EPR), ethylene-propylene (EP) segmented and block copolymers, and propylene homopolymer. The increased copolymerization time caused the increased ethylene content of the sample. The weight percent of EPR, EP segmented and block copolymer also became higher.

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The hexafluorophosphate salts [Fe((C5H4Bu)-Bu-t)(2)]PF6 (1) and [Co((C5H4Bu)-Bu-t)(2)]PF6 (2) crystallize in isotypic structures with centrosymmetric cations which have a staggered (transoid) conformation of the exactly parallel ring Ligands (conformational angle tau = 180 degrees). The tetrachlorocobaltate salt, [CO((C5H4Bu)-Bu-t)(2)](2)CoCl4 (3), contains one almost eclipsed (tau = 140.4 degrees) and one almost staggered (tau = 101.4 degrees) cobaltocenium cation; in both cases, the cyclopentadienyl ring planes are slightly inclined (by alpha = 5.4 degrees and 4.1 degrees, respectively) to give more room to the tert-butyl substituents which are bent away from the metal in all three complexes 1 - 3.

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The electrochemical behavior of a series of undecatungstozincates monosubstituted by first-row transition metals, ZnW11M(H2O)O-39(n-) (M=Cr, Mn, Fe, Co, Ni, Cu or Zn), was investigated systematically and comparably in aqueous solutions by electrochemical and in situ UV-visible-near-IR spectroelectrochemical methods. These compounds exhibit not only successive reduction processes of the addenda atoms (W) in a negative potential range, but some of them also involve redox reactions originating from the substituted transition metals (M) such as the reduction of Fe-III and Cu-II at less negative potentials and the oxidation of Mn-II at a more positive potential. Some interesting results and phenomena, especially of the transition metals, were found for the first time. Moreover, possible reaction mechanisms are proposed based on the experimental results.

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The laser-solidified microstructural and compositional characterization and phase evolution during tempering at 963 K were investigated using an analytical transmission electron microscope with energy dispersive X-ray analysis. The cladded alloy, a powder mixture of Fe, Cr, W, Ni, and C with a weight ratio of 10:5:1:1:1, was processed with a 3 kW continuous wave CO2 laser. The processing parameters were 16 mm/s beam scanning speed, 3 mm beam diameter. 2 kW laser power, and 0.3 g/s feed rate. The coating was metallurgically bonded to the substrate, with a maximum thickness of 730 mu m, a microhardness of about 860 Hv and a volumetric dilution ratio of about 6%. Microanalyses revealed that the cladded coating possessed the hypoeutectic microstructure comprising the primary dendritic gamma-austenite and interdendritic eutectic consisted of gamma-austenite and M7C3 carbide. The gamma-austenite was a non-equilibrium phase with extended solid solution of alloying elements and a great deal of defect structures, i.e. a high density of dislocations, twins, and stacking faults existed in gamma phase. During high temperature aging, in situ carbide transformation occurred of M7C3 to M23C6 and M6C. The precipitation of M23C6, MC and M2C carbides from austenite was also observed.

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本文以对热工模具进行失效分析的基础上,利用激光熔覆技术,在5CrMnMo基础上设计并制备强韧兼备的抗高温磨损涂层。

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利用OM、SEM、TEM研究了Fe-Cr-C-W-Ni激光熔覆涂层熔覆态及其高温时效态的微观组织结构。结果表明激光熔覆层组织细小,具有强韧两相组成(奥氏体和M_7C_3碳化物)的微观结构特征,高温时效处理组织中有M_(23)C_6、M_6C、M_2C等新碳化物形成。显微硬度和冲击磨损实验证实了激光熔覆态和峰值时效态熔覆层均具有良好的力学性能。