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1.
 通过B2O3与Mg和Li3N分别在不同温度压力条件下的反应,用X射线方法研究了生成物的物相。当采用Mg与B2O3为原料时,其产物是Mg3B2O6;用Li3N与B2O3反应时,产物中除了Li3BO3,还有立方氮化硼(cBN)生成。这表明,当原料中含有相同数量B2O3时,用Mg和Li3N分别作触媒合成立方氮化硼,将得到不同的结果。  相似文献   

2.
Sol-gel法制备Er3+-Yb3+共掺杂Al2O3粉末光致发光特性   总被引:8,自引:7,他引:1  
采用异丙醇铝[Al(OC3H7)3]为前驱体,溶胶-凝胶(Sol-gel)法制备Er3+-Yb3+共掺杂Al2O3粉末.实验结果表明:900 ℃烧结的粉末为固溶Er3+、Yb3+的γ-(Al,Er,Yb)2O3相和少量θ-(Al,Er,Yb)2O3相的混合物.Er3+-Yb3+共掺杂Al2O3粉末具有中心波长为1.533 μm的光致发光(PL)特性.1 mol % Er3+和1 mol% Yb3+共掺杂的Al2O3粉末的PL强度较1 mol % Er3+掺杂提高2倍,半峰宽从53 nm增加到63 nm.随泵浦功率的提高,PL强度呈线性增加后渐呈饱和趋势.  相似文献   

3.
 高压下与Al发生扩散反应的非晶(Fe0.99Mo0.01)78Si9B13(FMSB)的晶化产物与纯FMSB的不同。与Al反应的FMSB非晶在3.0~5.0 GPa、780~900 K热处理时,晶化为α-Fe(Al)和次亚稳非晶合金;在这一压力范围以外,720~900 K热处理时,晶化为α-Fe(Si)、Fe3B或Fe2B。与Al发生反应的FMSB非晶可能通过与Al的扩散反应在Al/FMSB界面开始晶化。压力和温度对晶化过程的影响主要是由于α-Fe固溶体的Gibbs自由能随压力、温度和Al含量的变化。  相似文献   

4.
冲击载荷下Al2O3陶瓷的动态响应   总被引:4,自引:0,他引:4       下载免费PDF全文
 通过平面飞片碰撞实验,研究了质量分数为90%的Al2O3陶瓷在0~11.0 GPa的动态响应行为,给出了该材料的Hugoniot弹性极限(σHEL)、动态屈服强度、高压声速和Hugoniot曲线。结果表明:当冲击应力在σHEL≈11.0 GPa的范围内,Al2O3陶瓷的塑性区压缩特性表现出较明显的弥散行为;在远低于σHEL的应力区,Al2O3陶瓷已表现出明显的压缩损伤效应,即出现所谓的破坏波效应。  相似文献   

5.
 利用水热法合成了立方相KNb0.77Al0.23O2.77。在水热晶化过程中得到了包括正交相钙钛矿和一新相在内的中间相产物。结构相变行为采用XRD、DSC、高压Raman和XPS进行了表征。结果表明,低于1 000 ℃的热处理不能导致KNb0.77Al0.23O2.77发生结构相交。而在4.49 PGa高压下可能发生了到一新相的结构转变。高温高压处理可以导致另一新相的出现。最后对该立方相的相变机理进行了研究。  相似文献   

6.
 用脉冲回波法测量了TC4、16Mn、Al2O3陶瓷从室温到1 000 ℃的纵波与横波声速,由声速得到绝热弹性模量。给出了E、G随温度变化的回归方程。对材料熔点做了估算。  相似文献   

7.
冲击载荷下Al2O3抗弹陶瓷的力学性能实验研究   总被引:1,自引:0,他引:1       下载免费PDF全文
 通过静力学实验得到了Al2O3抗弹陶瓷的弹性模量和泊松比。通过一维平面撞击实验,在Al2O3抗弹陶瓷材料中进行了冲击波速度、飞片速度的测量和纵向应力、横向应力测量,得到了Al2O3抗弹陶瓷的冲击波D-up关系,以及抗弹陶瓷在3~11 GPa压力范围内相应的横向应力和纵向应力关系曲线,并根据这一曲线得到了抗弹陶瓷的纵向应力与剪切强度的关系。  相似文献   

8.
 本文利用X射线粉末衍射和位敏探测技术,研究了R2Fe4/3W2/3O7(R=Er、Yb、Dy)化合物经高温高压处理后的变化情况。在3.7 GPa,1 200 ℃条件下,六方相R2Fe4/3W2/3O7化合物按两种方式分解,而直接由R2O3,Fe2O3和WO3原料出发,经上述同样的高温高压条件合成所得的产物与六方相高温高压分解产物相同,均为R2WO6、RFeO3、WO3和Fe2O3的多相聚合物。同时给出了R2Fe4/3W2/3O7六方相高温高压下的稳定区范围。  相似文献   

9.
 在零电阻温度Tc0达到120 K的TlBaCa3Cu3Oy超导体中,掺入不同含量的Pb后,超导电性受到抑制,点阵常数减小。加压时,Tc先随压力p的增加而上升,样品1(xPb=0.05)的dTc0/dp=1.7 K/GPa,样品2(xPb=0.5)的dTc0/dp=2.2 K/GPa。Tc的峰值随Pb的增加而减小。加压时,对由于Pb的加入引起的Cu—O层的精细结构变化起到调制作用。  相似文献   

10.
 采用硝酸铁、硝酸锰作为主要氧化剂,油相作为可燃剂研制成两种不同氧平衡的乳化炸药,均成功地爆轰合成了纳米MnFe2O4粉体。用XRD表征粉末的物相结构,并比较了此两种不同氧平衡炸药所得产物成分的区别。根据DSC和XRD结果,分别在200 ℃(1 h)、260 ℃(1 h)、280 ℃(1 h)、360 ℃(40 min)和500 ℃(1 h)下对产物进行热处理,在280 ℃时得到了纯净的纳米MnFe2O4颗粒,并用TEM对其形貌进行了观察。实验结果表明,负氧平衡炸药的爆轰产物成分比零氧平衡炸药的爆轰产物相对纯净,280 ℃是一个合适的热处理温度。爆轰法具有合成方便快捷、后期热处理简单的优点。  相似文献   

11.
张金平  张洋洋  李慧  高景霞  程新路 《物理学报》2014,63(8):86401-086401
利用分子动力学模拟方法和反应力场势函数研究了Al/SiO_2层状纳米体系的铝热反应,模拟了在不同初始温度下(600,700,800,900,1000和1100 K)绝热反应的结构变化和能量性质,发现Al/SiO_2体系的铝热反应是自加热的氧化还原反应,当初始温度为900和1000 K时,Al经历了熔化前的一个临界状态,与SiO_2的铝热反应比较活跃,系统温度随着反应时间的增加不断升高,当初始温度为600,700,800和1100 K时,初始温度越高,在Al和SiO_2界面形成的Al-O层越薄,系统发生铝热反应达到的最终绝热温度越高,所用的时间(有效反应时间τ)越短,即界面扩散阻挡层的厚度对铝热反应的自加热速率产生了影响,初始温度为600,700,800,1100K时的自加热速率分别为3.4,3.5,4.7和5.4K/p8.A1/SiO_2体系的铝热反应析出了Si单质,与实验结果相符合。  相似文献   

12.
应用分子动力学模拟方法研究了黑索金(RDX)在纯高温下的分解机理, 研究结果表明RDX初始分解机理主要为N-N键的断裂形成NO2分子, 然后发生H原子转移反应形成H2O, HONO, HO和NO分子; 通过对RDX热分解反应物和生成物的研究结果表明N2和H2O分子是RDX分解过程中最稳定的生成物, NO2, HNO3, NO, NO3和HONO分子为RDX热分解过程中的中间产物; 在高温4500K, CO, CO2和OH分子出现的频率逐渐提高, 表明这几种分子在高温下更容易形成.  相似文献   

13.
应用分子动力学模拟方法研究了黑索金(RDX)在纯高温下的分解机理, 研究结果表明RDX初始分解机理主要为N-N键的断裂形成NO2分子, 然后发生H原子转移反应形成H2O, HONO, HO和NO分子; 通过对RDX热分解反应物和生成物的研究结果表明N2和H2O分子是RDX分解过程中最稳定的生成物, NO2, HNO3, NO, NO3和HONO分子为RDX热分解过程中的中间产物; 在高温4500K, CO, CO2和OH分子出现的频率逐渐提高, 表明这几种分子在高温下更容易形成.  相似文献   

14.
Frank-Kamenetskii's analysis of thermal explosions is revisited, using also a single-reaction model with an Arrhenius rate having a large activation energy, to describe the transient combustion of initially cold gaseous mixtures enclosed in a spherical vessel with a constant wall temperature. The analysis shows two modes of combustion. There is a flameless slowly reacting mode for low wall temperatures or small vessel sizes, when the temperature rise resulting from the heat released by the reaction is kept small by the heat-conduction losses to the wall, so as not to change significantly the order of magnitude of the reaction rate. In the other mode, the slow reaction rates occur only in an initial ignition stage, which ends abruptly when very large reaction rates cause a temperature runaway, or thermal explosion, at a well-defined ignition time and location, thereby triggering a flame that propagates across the vessel to consume the reactant rapidly. Explosion limits are defined, in agreement with Frank-Kamenetskii's analysis, by the limiting conditions for existence of the slowly reacting mode of combustion. In this mode, a quasi-steady temperature distribution is established after a transient reaction stage with small reactant consumption. Most of the reactant is burnt, with nearly uniform mass fraction, in a subsequent long stage during which the temperature follows a quasi-steady balance between the rates of heat conduction to the wall and of chemical heat release. The changes in the explosion limits caused by the enhanced heat-transfer rates associated with buoyant motion are described in an accompanying paper.  相似文献   

15.
Materials with the formula Yb 2-xAlxMo3O12(x =0.1, 0.2, 0.3, 0.4, 0.5, 0.7, 0.9, 1.0, 1.1, 1.3, 1.5, and 1.8) were synthesized and their structures, phase transitions, and hygroscopicity investigated using X-ray powder diffrac- tion, Raman spectroscopy, and thermal analysis. It is shown that Yb2-xAlxMo3O12 solid solutions crystallize in a single monoclinic phase for 1.7 ≤ x ≤ 2.0 and in a single orthorhombic phase for 0.0 ≤ x ≤ 0.4, and exhibit the characteristics of both monoclinic and orthorhombic structures outside these compositional ranges. The monoclinic to orthorhombic phase transition temperature of Al2Mo3O12 can be reduced by partial substitution of Al 3+ by Yb3+, and the Yb2-x AlxMo3O12 (0.0 < x ≤ 2.0) materials are hydrated at room temperature and contain two kinds of water species. One of these interacts strongly with and hinders the motions of the polyhedra, while the other does not. The partial substitution of Al3+ for Yb3+ in Yb2Mo3O12 decreases its hygroscopicity, and the linear thermal expansion co- efficients after complete removal of water species are measured to be 9.1×10 6 /K, 5.5×10 6 /K, 5.74×10 6 /K, and 9.5 × 10 6 /K for Yb1.8 Al0.2 (MoO4)3 , Yb1.6Al0.4 (MoO4 )3, Yb0.4 Al1.6 (MoO4)3 , and Yb 0.2Al1.8 (MoO4)3 , respectively.  相似文献   

16.
The adsorption of H2O on Al(111) has been studied by ESDIAD (electron stimulated desorption ion angular distributions), LEED (low energy electron diffraction), AES (Auger electron spectroscopy) and thermal desorption in the temperature range 80–700 K. At 80 K, H2O is adsorbed predominantly in molecular form, and the ESDIAD patterns indicate that bonding occurs through the O atom, with the molecular axis tilted away from the surface normal. Some of the H2O adsorbed at 80 K on clean Al(111) can be desorbed in molecular form, but a considerable fraction dissociates upon heating into OHads and hydrogen, which leaves the surface as H2. Following adsorption of H2O onto oxygen-precovered Al(111), additional OHads is formed upon heating (perhaps via a hydrogen abstraction reaction), and H2 desorbs at temperatures considerably higher than that seen for H2O on clean Al(111). The general behavior of H2O adsorption on clean and oxygen-precovered Al(111) (θO ? monolayer) is rather similar at low temperature, but much higher reactivity for dissociative adsorption of H2O to form OH adsis noted on the oxygen-dosed surface around room temperature.  相似文献   

17.
用高分辨X射线衍射仪(HRXRD)研究了表面钝化前后Al0.22Ga0.78N/ GaN异质结势垒层应变的高温特性,温度变化范围从室温到813K.结果表明,对未钝化的异质 结,当测试温度高于523K时,Al0.22Ga0.78N势垒层开始出现应变 弛豫;钝化后,在Al0.22Ga0.78N势垒层中会产生一个附加的平面 拉伸应变,并随着温度的增加,势垒层中的平面拉伸应变会呈现出一个初始的增加,接着应 变将减小,对100nm厚的Al0.22Ga0.78N势垒层,应变只是轻微地减 小,但对于50nm厚的Al0.22Ga0.78N势垒层,则出现了严重的应变 弛豫现象. 关键词: 0.22Ga0.78N/GaN异质结')" href="#">Al0.22Ga0.78N/GaN异质结 应变 3 N4钝化')" href="#">Si3 N4钝化 高温XRD  相似文献   

18.
Nernst and electrical resistivity measurements in superconducting YBa2Cu3O7-delta and Bi2Sr2CaCu2O8+delta with and without columnar defects show a distinctive thermodynamics of the respective liquid vortex matter. At a field-dependent high temperature region in the H-T phase diagram, the Nernst signal is independent of structural defects in both materials. At lower temperatures, in YBa2Cu3O7-delta, defects contribute only to the vortex mobility, and the transport entropy is that of a system of vortex lines. The transition to lower temperatures in Bi2Sr2CaCu2O8+delta has a different origin; the maximum in the Nernst signal when decreasing temperature is not associated with transport properties but with the entropy behavior of pancake vortices in the presence of structural defects.  相似文献   

19.
STUDY OF THE Al/GRAPHITE INTERFACE   总被引:1,自引:0,他引:1       下载免费PDF全文
Thin Al films with a thickness of 20-30nm were prepared by ultra-high vacuum deposition of Al onto a graphite surface parallel to a (0001) basal plane. The samples were annealed up to 1070K. X-ray photoelectron spectroscopy analysis has shown that for temperatures just higher than 770K, a little carbide occurs in the Al film and only an Al-C phase is present at the Al/graphite interface. After annealing at 970K, the Al4C3 phase can be observed, and the binding energy of the Al2p electrons increases continuously from 72.7 to 74.2eV with increasing temperature up to 1070K. Auger electron spectroscopy depth profiles are measured to investigate the phases existing in the Al film as well as at the Al/graphite interface. It is found that the Al4C3 phase at the interface is the final product of a series of Al carbides from the interfacial reaction between Al and graphite.  相似文献   

20.
《Ultrasonics sonochemistry》2014,21(4):1430-1434
Nano-structures of the Cu(II) metal–organic framework, {Cu(BDT)(DMF)·CH3OH·0.25DMF}n (1), which BDT2− is 1,4-benzeneditetrazolate, have been synthesized by the reaction of H2BDT with Cu(NO3)2·6H2O via ultrasonic irradiation in three different temperatures, which causes different morphologies. The products were characterized by IR spectroscopy, elemental analysis, scanning electron microscopy and X-ray powder diffraction. This study demonstrates that sonochemistry is a suitable method for preparation of metal–organic framework nano-structures and temperature is an effective parameter on morphologies of Cu(II) metal–organic framework nano-structures.  相似文献   

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