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Wetting and Interface Microstructure in the System of Al2O3-SiO2 BasedCeramics/Nb-Containing Melts Al2O3-SiO2基陶瓷/含铌熔体体系的润湿和界面微观结构
Pub Date : 2012-05-03 DOI: 10.2174/1876395201202010008
V. S. Zhuravlev, N. Yu Taranets, A. Koval’, M. Karpets, Y. Naidich
Wettability and interface microstructure were studied for Nb-containing melts in the contact with ceramic oxide materials of Al2O3-SiO2 system. Ni-40.5 at.%Nb and Au-(0-20) at.%Nb alloys were investigated as prospective alloys for high temperature brazes. Ceramic samples ranged in composition from pure Al2O3 to pure SiO2. The wettability was measured by the sessile drop method. Microstructure of the oxide/metal interface was investigated by scanning electron microscopy and X-ray diffraction methods. The results showed that contact angles decreased with the increase of SiO2 content in the solid substrate for all the melts. Al2O3 was dissolved insignificantly in the melts under study. SiO2 formed intermediate chemical compounds at the interface with the melts: NbO, Nb6Ni6O and Nb5Si3 with the Ni-based melt and NbO2, Nb2O5 with the Au-based melt. Obtained results allow consideration of Nb alloys under study as high-temperature brazes for the Al2O3-SiO2 materials.
研究了含铌熔体与Al2O3-SiO2陶瓷氧化物材料接触时的润湿性和界面微观结构。ni - 40.5。%Nb和Au-(0-20)。研究了%Nb合金作为高温钎焊材料的应用前景。陶瓷样品的成分从纯Al2O3到纯SiO2不等。采用固滴法测定润湿性。采用扫描电镜和x射线衍射方法研究了氧化物/金属界面的微观结构。结果表明:随着固体基体中SiO2含量的增加,各熔体的接触角减小;Al2O3在熔体中溶解不明显。SiO2在熔体界面形成中间化合物:NbO、nb6ni60和Nb5Si3与ni基熔体形成中间化合物,NbO2、Nb2O5与au基熔体形成中间化合物。所得结果允许考虑将Nb合金作为Al2O3-SiO2材料的高温钎焊。
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引用次数: 1
Structural and Electrical Properties of Reaction Bonded Silicon Nitride Ceramics 反应键合氮化硅陶瓷的结构与电学性能
Pub Date : 2012-01-18 DOI: 10.2174/1876395201202010001
Hosneara, A. Hasnat, A. H. Bhuyan
The effects of structural properties on the d.c. and a.c. electrical properties of different weight gain reaction bonded silicon nitride (RBSN) have been studied in this work. The degree of nitridation is assessed by the ‘weight gain’ of the ceramic, the percentage by which the weight is increased in the nitriding reaction. From X-ray diffraction (XRD) patterns, it is observed that a higher degree of nitriadation sample has strong -silicon nitride peaks. Intensity of -silicon nitride peaks decreases with decreasing weight gain. The higher degrees of nitridation, the samples have less significant Si peak. XRD patterns were recorded to calculate the lattice parameters of RBSN. The lattice parameters for three weight gain RBSN samples are found to be a =b = 7.7727 Å, c= 5.6565 Å (26% weight gain), a=b= 7.6272 Å, c= 5.6374 Å (42% weight gain) and a=b=7.6158 Å, c= 5.7732 Å (58.27% weight gain) and are in good agreement with the reported values from XRD patterns. Porosity (%) and surface morphology was observed by SEM.
本文研究了不同增重反应键合氮化硅(RBSN)的结构特性对其直流和交流电学性能的影响。氮化程度是通过陶瓷的“增重”来评估的,即在氮化反应中重量增加的百分比。x射线衍射(XRD)结果表明,高氮化程度的样品具有较强的-氮化硅峰。氮化硅峰强度随增重的减小而减小。氮化程度越高,样品的Si峰越不明显。记录XRD谱图,计算RBSN的晶格参数。三种增重RBSN样品的晶格参数分别为a=b= 7.7727 Å, c= 5.6565 Å(增重26%),a=b= 7.6272 Å, c= 5.6374 Å(增重42%)和a=b=7.6158 Å, c= 5.7732 Å(增重58.27%),与XRD谱图吻合较好。用SEM观察了孔隙率(%)和表面形貌。
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引用次数: 3
Study the Properties of Cu-Zn Ferrite Substituted with Rare Earth Ions by Using Positron Annihilation Analysis 用正电子湮没分析研究稀土离子取代铜锌铁氧体的性质
Pub Date : 2010-01-07 DOI: 10.2174/1876395201001010001
A. Samy, E. Gomaa, N. Mostafa
Positron annihilation lifetime spectroscopy (PALS) is a direct probe of size and concentration of nano-scale defects in materials, because it is very sensitive to electron density. The lifetime of positron ( ) and its intensity (I) can be used to characterize the defects concentration. In the present work, PALS has been applied to measure the variation of positron lifetime parameters for polycrystalline samples with chemical formula Zn0.5Cu0.5Fe1.98R0.02O4 (R = Gd, Sm, Nd and La). The variation of positron annihilation lifetime parameters (I1, I2, � av and k) with the ionic radius of rare earth ions, homogeneity, grain size and electrical resistivity have been studied. The inter-granular pores and grain boundaries defects are increased with the increasing of the ionic radius of the rare earth ions and decreased for Gd-sample. The defects inside and outside the grains are distributed homogeneously for Sm-sample only. A positive correlation has been found between positron lifetime parameters and ionic radius of rare earth ions as well as the electrical resistivity. Ferrites have very important applications according to their electrical and magnetical properties. The substitution effect and the change of the preparation condition are allowed to improve some ferrites with different composition to be used in wide frequency range, from microwaves to radio wave frequencies. A considerable amount of work has been carried out on Cu -Zn ferrite substituted with rare earth ions of different kind and concentration (1-3). It was found that, the initial permeability and the homogeneity of the composition Zn0.5Cu0.5Fe1.98R0.02O4 were increased for the samples with R = Nd, Sm and Gd while the resistivity was increased for the samples with R = La and Nd relative to the unsubstituted one, R = none. The improvement of the resistivity was attributed to the decrease of grain size and the increase of the porosity of the samples. From this point of view, we aimed in this paper to investigate the microstructure and the defects on the atomic scale of the composition Zn0.5Cu0.5Fe1.98R0.02O4 (R = Gd, Sm, Nd and La) by using the positron annihilation lifetime spectroscopy (PALS) analysis. (PALS) is a valuable nuclear method to investigate the materials without damage them (4, 5). PALS has a high sensitivity for probing vacancy defects through measurements of positron lifetime. It is based on the high sensitivity of positron to localize at low electrons density regions of a material and the emission of annihilation gamma rays that escape from the system without any interaction. These gamma rays hold information about the defects around the annihilation site. A correlation is established between the positron lifetime parameters and the ionic radius of the rare earth ions, grain size as well as the electric resistivity. The PALS is a good
正电子湮灭寿命谱(PALS)由于对电子密度非常敏感,可以直接探测材料中纳米级缺陷的大小和浓度。正电子的寿命()和强度(I)可以用来表征缺陷浓度。本文应用PALS测量了化学式为Zn0.5Cu0.5Fe1.98R0.02O4 (R = Gd, Sm, Nd和La)的多晶样品正电子寿命参数的变化。研究了稀土离子的离子半径、均匀性、晶粒尺寸和电阻率对正电子湮灭寿命参数I1、I2、iav和k的影响。随着稀土离子半径的增大,晶间孔隙和晶界缺陷增加,而gd样品的缺陷减少。仅在sm样品中,晶粒内外的缺陷分布均匀。正电子寿命参数与稀土离子的离子半径及电阻率呈正相关。铁氧体的电、磁特性使其具有非常重要的应用。通过替代效应和制备条件的改变,可以使不同成分的铁氧体在微波到无线电波的宽频率范围内使用。用不同种类和浓度的稀土离子取代Cu -Zn铁氧体已经做了大量的工作(1-3)。结果表明,R = Nd、Sm、Gd时,Zn0.5Cu0.5Fe1.98R0.02O4的初始渗透率和均匀性均有所提高,而R = La、Nd时,相对于未取代的R = none,电阻率有所提高。电阻率的提高主要是由于试样的晶粒尺寸减小,孔隙率增大。从这个角度出发,本文采用正电子湮没寿命谱(PALS)分析方法研究了Zn0.5Cu0.5Fe1.98R0.02O4 (R = Gd, Sm, Nd和La)的微观结构和原子尺度上的缺陷。(PALS)是一种有价值的不损伤材料的核研究方法(4,5)。PALS通过测量正电子寿命来探测空位缺陷具有很高的灵敏度。它是基于正电子在材料低电子密度区域的高灵敏度,以及在没有任何相互作用的情况下从系统中逸出的湮灭伽马射线的发射。这些伽马射线保存着湮灭点周围缺陷的信息。建立了正电子寿命参数与稀土离子的离子半径、晶粒尺寸以及电阻率之间的相关关系。PALS很不错
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引用次数: 13
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The Open Ceramic Science Journal
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