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1.
研究了FeCrZr非晶合金带的铁磁共振(FMR)谱及谱线随Cr含量的变化,以及谱线随温度的变化,并与FeCrB系的铁磁共振谱比较,发现用Zr替代B的结果,使非晶带的FMR谱中各共振峰的位置和强度发生了明显的变化,结合M?ssbauer谱结果,分析了Zr对Fe基非晶磁织构的影响。  相似文献   

2.
根据用原子力显微镜对在不同温度下晶化的Fe基非晶合金薄带三维介观结构的观察,结合X射线衍射、Mssbauer谱等前人已有的实验结果并在目前已有的理论研究基础上,对Fe基非晶合金薄带在不同温度下的晶化过程进行了系统的分析、研究,提出了两种Nb-B框架介观结构、团聚相和单位体积纳米晶粒平均数等新概念,建立了Fe基纳米晶合金的晶化机理假说,提出了描述Fe基非晶合金晶化过程的介观织构模型.这个模型能够演化成二相结构模型和三相互套结构模型,还可以合理地解释现有的实验结果以及500—600℃退火中Fe基纳米晶巨磁阻 关键词: Fe基纳米晶合金 晶化机理 两种Nb-B框架介观结构 团聚相  相似文献   

3.
对纳米晶Fe_(73.5)Cu_1Mo_3Si_(13.5)B_9合金的原始制备态和各退火态样品进行了室温Mossbauer谱研究,结果表明晶化态的合金存在α-Fe(Si)微晶相和晶界的非晶相。晶相和非晶相内场和面积随退火温度的变化是退火时Cu,Mo,B等成分的扩散和在各相中的再分配引起的。最佳磁性能对应非晶相中的铁量占合金铁总量的30%左右,超微晶合金的双相无规各向异性模型表明,一定量的非晶相对保持纳米晶优异的软磁性能是必要的。Fe_2B相的出现使合金的性能变坏。  相似文献   

4.
对纳米晶Fe73.5Cu1Mo3Si13.5B9合金的原始制备态和各退火态样品进行了室温Mossbauer谱研究,结果表明晶化态的合金存在α-Fe(Si)微晶相和晶界的非晶相。晶相和非晶相内场和面积随退火温度的变化是退火时Cu,Mo,B等成分的扩散和在各相中的再分配引起的。最佳磁性能对应非晶相中的铁量占合金铁总量的30%左右,超微晶合金的双相无规各向异性模型表明,一定量的非晶相对保持纳米晶优异的软 关键词:  相似文献   

5.
利用射频辉光放电法沉积a-C:H薄膜,研究不同测量温度、不同退火温度光致发光光谱的变化,以及光致发光光谱随光子能量的变化,实验表明:随着测量温度的升高发光效率降低,用非晶碳网络的二相系统模型对这些结果作了解释。另外,光致发光光谱也随着激发光能量的不同而变化,当激发光能量接近光学带隙Eopt时,发光强度最高。 关键词:  相似文献   

6.
用新方法制备出了铌硅合金共晶区的和共晶区以外的非晶铌硅合金。实验测得含18-25at%S_1铌硅合金非晶带超导转变温度Tc与硅含量增加呈现线性下降关系。  相似文献   

7.
本文研究了Fe80-xCuxSi5B15,(Fe1-xCox)82Cu0.4Si4.4B13.2两系列非晶合金的磁致伸缩系数λ4随温度T的变化关系,温度范围分别为室温至非晶态居里点和室温至晶在居里点。分析了Fe基非晶合金随温度变化所产生的结构变化,并讨论了其磁致伸缩的单离子微观机制。 关键词:  相似文献   

8.
非晶合金具有独特物理和力学性能,如何建立非晶合金微观结构非均匀性与物理/力学性能之间的关联是非晶固体的重要研究课题之一.微合金化是调控非晶合金微观结构有效手段之一.本研究以玻璃形成能力优异的Zr_(50–x)Cu_(34)Ag_8Al_8Pd_x(x=0, 2)非晶合金为模型合金,借助差示扫描量热仪和电磁声转换设备,研究非晶合金铸态、弛豫态和结晶态热流和剪切模量随温度的演化规律,以及物理时效(低于玻璃转变温度)过程剪切模量的变化随时间演化规律.基于自间隙原子理论,利用热流曲线表征非晶合金在相同热历史剪切模量热效应.通过分析铸态和弛豫态自间隙缺陷浓度和激活能谱,发现结构弛豫导致自间隙缺陷浓度减小,诱导剪切模量随温度演化偏离软化过程,并伴随体系放热.与此同时,研究发现添加微量Pd元素可抑制模型合金体系原子迁移,增加特征弛豫时间.本研究从非晶合金模量热效应角度进一步理解非晶合金微观结构非均匀性.  相似文献   

9.
我们用最近研制成功的LMA型低频力学谱测试系统对NiTi合金马氏体相进行了在很大频率范围内(0.003~1Hz)的低频等温力学谱和温度谱的测量.我们研究的形状记忆合金NiTi(Ni 50.2 at%)试样长34 mm,直径1 mm细丝.经一定热处理,分别在333 K. 343 K和353 K做了内耗随频率的变化的测量.实验表明:频率越小,内耗越大,也就是内耗随频率减少而增大.同时我们采用阶梯升温的方法在八个温度下每个温度测量三种频率(1 Hz, 0.1 Hz, 0.01 Hz)的内耗,结果清楚地表明:不同频率下,内耗峰都出现在372 K(99℃).而且频率越低,峰高越高.这是具有相变峰的特点:相变峰的峰温不随测量频率不同而变化,相变峰高度随频率减少而增大.我们还测量了在1 Hz与0.5 Hz频率下内耗随温度的变化.本文用马氏体相的位错理论初步讨论了上述实验结果.  相似文献   

10.
对非晶Fe73NiSi14合金分别进行了高密度脉冲电流及真空退火处理.用穆斯堡尔谱学与透射电子显微镜技术研究了处理后非晶的微观结构与晶化行为.实验结果表明,与退火处理相比,高密度脉冲电流产生的“电子风”促进了非晶合金的结构弛豫与晶化.随电流密度显著增加,这一促进效应进一步增强  相似文献   

11.
This paper reports Raman spectroscopy investigation of phase transitions in Rb2NaYF6 crystal. The experimental spectra were compared with the calculated one. The spectra were obtained in temperature range from 8 to 300 K. The Raman spectra shows anomalous temperature‐dependent behavior at T1 = 154 and T2 = 122 K. Soft mode restoration has been found, which allows us to attribute first transition at 154 K to displacive type. Detailed analysis temperature dependencies of the line positions and widths have been performed. We found no effects of possible lattice disorder anywhere, except narrow (about 20 K) range above the T1 temperature. The Raman spectra of Rb2NaYF6 crystal have been obtained and analyzed under hydrostatic pressure up to 4.33 GPa (at T = 295 K). The high pressure experiment up to 4.33 GPa did not disclose any effects associated with phase transitions. The lattice vibration spectra were calculated up to 10 GPa. The calculation has been demonstrated that the Rb2NaYF6 does not undergo high pressure phase transition. Copyright © 2013 John Wiley & Sons, Ltd.  相似文献   

12.
The ternary semiconducting compound Cu2GeSe3 has been investigated for optical properties with photoacoustic spectroscopy. Optical absorption spectra of Cu2GeSe3 is obtained in the range of 0.76-0.81 eV photon-energy at temperatures between 80 and 300 K. The thermal variation of band gap energy has been examined from the optical absorption spectra at different temperatures. The temperature induced band gap shrinkage has been explained on the basis of electron-phonon interaction. Varshni's empirical relation in conjunction with Vina and Passler model is taken into consideration for data fitting. The Debye temperature was calculated approximately as 240 K. The acoustic phonons with a characteristic temperature as 160 K corresponding to effective mean frequency have been attributed to the thermal variation of the energy gap.  相似文献   

13.
Absorption and fluorescence spectra of free base phthalocyanine were studied in matrices of n-alcanes (C8H18, C12H26, C16H34) and polyethylene at 77 K and 4·2 K. The spectra show quasi-line structure whose multiplicity increases with increasing number of carbon atoms of the solvent and decreasing temperature. In the low-temperature spectra of phthalocyanine in polyethylene films only band spectra have been observed.I wish to thank Prof. DrSc K.Vacek, Head of The Department of Chemical Physics, Charles University for stimulating discussions.  相似文献   

14.
CARS spectra of the N2 Q-branch up to 2500 bar and 700 K have been measured. Calculated spectra based on theoretical models show significant disagreement with measured spectra above 300 bar so that CARS temperature measurements are in error by 130 K at 700 K and –150 K at 295 K. The spectral shift of the Q-branch reaches an asymptotic value corresponding to that measured in liquid nitrogen.  相似文献   

15.
Raman spectra of the SrTiO3 crystal have been measured in wide temperature (22?C316 K) and frequency (2?C1020 cm?1) ranges. It has been shown that a central peak appears in low-frequency Raman spectra at temperatures above 70 K. In the spectral geometry with polarization rotation near the temperature T c = 106 K of the cubic-to-tetragonal phase transition, the central peak exhibits properties of the order-disorder phase transition. Such a behavior of the central peak has been explained by the interaction of the low-frequency soft mode E g with the relaxation mode near T c .  相似文献   

16.
The electron paramagnetic resonance (EPR) spectra of gamma-irradiated single crystals of phenidone (fenidon C9H10N2O) have been studied for different orientations of crystals in a magnetic field. Phenidone single crystals have been irradiated with 60Co-γ rays at room temperature. The EPR spectra have been investigated at temperatures between 125 and 450 K. The spectra have been found to be temperature independent. The spin-Hamiltonian parameters have been obtained from the single-crystal EPR analysis. The principal values of the hyperfine coupling tensor of the unpaired electron and the principal values of the g-tensor have been determined.  相似文献   

17.
The polarized reflectance spectra of single crystals of the low-dimensional organic conductor (EDT-TTF)4[Hg3I8] undergoing a metal-insulator phase transition at a temperature T < 35 K have been presented. The spectral region of the study is 700–6000 cm?1 (0.087–0.74 eV), and the temperature range is 300–9 K. It has been shown that the reflectance spectra are determined by a system of quasi-free electrons of the upper half-occupied molecular π-orbitals, which form a half-filled metallic band in the crystals. A high anisotropy of the spectra and their temperature dependences have been found. For two polarizations, the quantitative analysis of the spectra at 100 and 25 K has been performed in the framework of the phenomenological Drude model, the effective mass and the width of the initial metallic π-electron band have been deter-mined, and it has been found that the conducting system in the crystals has a quasi-one-dimensional character. As temperature decreases, the spectra demonstrate substantial changes indicating the formation of the energy gap (or pseudogap) in the spectrum of electronic states in the range of ~1500–2500 cm?1. In the low-frequency region (700–1600 cm?1), a vibrational structure has been observed, and the most intense feature of the structure (ω = 1340 cm?1) is caused by the interaction of electrons with intramolecular vibrations of the C=C bonds of the EDT-TTF molecule. For temperatures of 15 and 9 K, the analysis of the spectra has been performed in the framework of the theoretical “phase phonon” model taking into account the interaction of electrons with the intramolecular vibrations. It has been concluded that the metal-insulator transition observed in the reflectance spectra of the crystals is similar to the Peierls dielectric transition that occurs in a system of electrons coupled with the intramolecular vibrations of the molecules forming the crystal.  相似文献   

18.
Raman experiments have been performed on KLiSO4 below room temperature. In the intermediate temperature range (190 K < T < 265 K), the spectra are better understood on the basis of the C3 rather than C6 point group, but a lower symmetry cannot be rejected. In the low temperature region (T < 190 K) the occurrence of three ferroelastic domains should be taken into account to explain the corresponding Raman spectra.  相似文献   

19.
The anisotropy of reflection spectra is studied for the single crystals of layered EuBaCo1.9O5.36 cobaltite within the temperature range of 80–295 K. The results involving the comparison with the magnetic and transport characteristics are analyzed. In the reflection spectra from the (001) and (120) planes measured at T = 295 K (below the temperature corresponding to the transition to the semiconducting state, TMI = 345 K), a contribution from itinerant charge carriers has been revealed. This contribution is associated with the existence of an inhomogeneous charge state. In the reflection spectrum from the (120) plane, the contribution from itinerant charge carriers holds down to T = 80 K. The difference between the reflection spectra from different planes and different characters of their changes with the temperature are attributed to the anisotropy of the clusters with itinerant charge carriers.  相似文献   

20.
The physical properties of DyNi2Mn doped with 57Fe have been investigated by X-ray diffraction, magnetisation (10–300?K) and 57Fe M?ssbauer spectroscopy measurements (5–300?K). DyNi2Mn(57Fe) crystallizes in the MgCu2-type cubic structure (Fd??3m space group). The ordering temperature is found to be TC?=?99(2) K, much higher than those of DyNi2 (~22?K) and DyMn2 (~35?K). Analyses of isothermal M–H curves and the related Arrott plots confirm that the magnetic phase transition at TC is second order. The magnetic entropy change around TC is 4.0?J/kg?K for a magnetic field change of 0?T to 5?T. The spectra above TC exhibit features consistent with quadrupolar effects while below TC the spectra exhibit magnetic hyperfine splitting. The Debye temperature for DyNi2Mn has been determined as θD?=?200(20) K from a fit to the variable temperature isomer shift IS(T).  相似文献   

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