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1.
采用传统熔体冷却法制备了Na2O-MgO-Al2 O3-SiO2玻璃并采用整体析晶工艺制备了微晶玻璃.利用DSC、XRD、SEM等测试手段研究了微晶玻璃的析晶行为和显微结构,探讨了热处理制度对该体系微晶玻璃热膨胀系数、密度、抗弯强度、显微硬度等性能的影响.研究结果表明,当晶化温度为800℃时该体系微晶玻璃主晶相为颗粒状霞石晶体(NaAlSiO4);当晶化温度达到900℃时玻璃中开始析出镁橄榄石(Mg2SiO4)晶体;延长保温时间可显著促进析晶但对晶体种类没有影响.析晶后微晶玻璃的密度、热膨胀系数、抗弯强度和显微硬度值显著增加,其最高热膨胀系数可达14.1×10-6℃-1.所制备的微晶玻璃具有很好的机械性能,当热处理温度为1000℃时,其抗弯强度和显微硬度分别达160 MPa和7.8 GPa.  相似文献   

2.
以SiO2、CaO和MgO为主要原料,采用传统高温熔融工艺制备了基础玻璃,并通过一步析晶热处理工艺制备了透辉石微晶玻璃.利用X射线衍射仪、电子扫描显微镜和激光导热仪分别研究了热处理温度和时间对透辉石微晶玻璃析晶和导热性能的影响.结果表明:随着热处理温度的升高,微晶玻璃的结晶度增加,晶粒尺寸增大,导热系数先增大后减小;随着热处理时间的延长,微晶玻璃的晶粒尺寸增大,导热系数先增大后减小.当热处理温度890℃,热处理时间120 min,升温速率为10℃/min,微晶玻璃晶粒尺寸为0.3~0.4μm,结晶度为79;,导热系数达到最大值2.59 W/(m·K).  相似文献   

3.
采用高温固相反应烧结法制备La0.7Ca0.3CrO3(LCC)/Al2O3导电陶瓷微滤膜支撑体.研究了烧成温度对制备的LCC/Al2O3支撑体样品的物相组成、微观结构、烧成收缩、孔隙率和孔径分布、电导率、抗弯强度、渗透通量及耐腐蚀性能等的影响.结果表明,高温烧成过程中LCC与Al2O3发生复杂的固相反应,样品主晶相为菱形结构La07Ca0.3Cr1-xAlxO3,并生成了少量LaAl11O18和CaCr2O4等.烧成温度从1350℃提高到1600℃时,样品的烧结程度、电导率、抗弯强度和耐酸腐蚀性能明显提高,而孔隙率明显减小.样品的平均孔径和纯水渗透通量随烧成温度提高,表现出先增大后减小的变化趋势.在1550℃时保温2h烧成制备的LCC/Al2O3支撑体,具有高的孔隙率(43.4;)和抗弯强度(36.9 MPa),其平均孔径(d50)为1.02 μm、纯水通量为2.24 m3/m2·h·bar、电导率为0.11 S/m,且具有良好的耐腐蚀性能.  相似文献   

4.
李巍  陈文哲  郑婵 《人工晶体学报》2014,43(8):1938-1943
采用溶胶-凝胶法制备了Tb3+/Eu3+共掺ZnGa2O4微晶玻璃,研究了热处理温度对材料显微结构的影响以及不同稀土离子掺杂材料的发光性能.结果表明干凝胶样品在800~900℃温度热处理后可得到透明的含尖晶石结构ZnGaO4微晶玻璃,在1000℃热处理时由于SiO2非晶基体晶化析出三方Zn2SiO4与六方SiO2晶相导致样品失透.在微晶玻璃中具有ZnGa2O4纳米晶到Tb3+与Eu3+的能量传递.在900℃热处理Tb3+/Eu3+∶ZnGa2O4微晶玻璃样品中,Tb3+与Eu3+分别发射绿光和红光,并与ZnGa2O4纳米晶发射的蓝光组合成近白光发射.  相似文献   

5.
采用熔融法,利用纯化学试剂制备了CaO-A12O3-MgO-SiO2 (CAMS)系微晶玻璃,利用DTA、XRD、拉曼光谱仪等研究了Fe2O3对微晶玻璃析晶特性的影响规律,微晶玻璃的物化性能由抗折强度、杨氏模量、剪切模量、泊松比、维氏硬度等进行评价.结果表明,微晶玻璃的析晶特性随着Fe2 O3含量的增加而增强,对应母体玻璃中首先出现富铁相,进而促进辉石主晶相的析出.微晶玻璃的断裂特性及裂纹扩展方式均随析晶度的提高得到明显改善.但过量的Fe2O3添加则对微晶玻璃的析晶特性无明显影响,反而降低了玻璃相的致密性.微晶玻璃的耐酸性、抗折强度、杨氏模量及剪切模量均呈现先增加后降低的趋势,微晶玻璃的Fe2 O3含量为6.6wt;时综合性能最优.  相似文献   

6.
超低膨胀微晶玻璃是在Li2O-Al2O3-SiO2系玻璃的基础上经过严格的受控晶化,在母体玻璃中析出以β-石英固溶体为主晶相的微晶玻璃材料。由于具有极低的热膨胀系数,以及优异的热稳定性、化学稳定性和力学性能,超低膨胀微晶玻璃在诸多领域得到了广泛应用。本文综述了超低膨胀微晶玻璃的组成、制备方法、国内外研究历程及发展现状、应用,指出了目前生产超低膨胀微晶玻璃存在的问题和国产超低膨胀微晶玻璃与国际顶尖产品存在的差距,以及国产超低膨胀微晶玻璃今后的发展方向。  相似文献   

7.
采用整体析晶法制备了铁酸铋微晶玻璃,通过XRD、DSC、FT-IR、Raman、SEM与电性能测试,研究了不同熔融温度对微晶玻璃的物相组成、微观结构及介电性能的影响.研究结果表明,不同熔融温度的微晶玻璃由非晶态的Bi2O3、Fe2O3和晶态的BiFeO3、Bi2Fe4O9组成.在较低的熔融温度时,微晶玻璃中还存在晶态的Bi2O3.在较高的熔融温度时,存在Bi25FeO40相.1070℃熔融的微晶玻璃于600℃晶化12h后,晶粒尺寸均匀,相比于BiFeO3陶瓷具有更高的介电常数(~ 100),更低的介电损耗(~0.14).铁酸铋微晶玻璃特殊的结构降低了漏导电流,测得饱和的电滞回线,饱和极化强度为1.0 μC/cm2.  相似文献   

8.
以白云鄂博二次选后尾矿和粉煤灰为主要原料,采用熔融法制备得到了CaO-MgO-Al2O3-SiO2系尾矿微晶玻璃.制备流程包括熔融、退火、核化及晶化过程.其中玻璃熔融温度为1450℃,核化温度为720℃,晶化温度为850℃.利用XRD研究了基础玻璃成分配比对微晶玻璃结构的影响.结果表明基础玻璃成分配比直接决定微晶玻璃的主晶相形成.随着基础玻璃成分配比的变化,微晶玻璃可能形成辉石相、钙长石相、镁铁尖晶石相或磁铁矿相.当其他元素固定,CaO/MgO和CaO/Al2O3比值的减小会导致微晶玻璃由辉石相转变为镁铁尖晶石相和钙长石相.而当SiO2/CaO比值大于2时,主晶相则由辉石相转变为磁铁矿相.DTA测试结果表明CaO有利于析晶温度的降低,而MgO、Al2O3和SiO2相对提高了析晶温度.力学性能测试表明抗折强度、密度、耐酸碱度与微晶玻璃主晶相有直接关系.主晶相为辉石相的微晶玻璃具有更高的抗折强度、密度和耐酸性.  相似文献   

9.
实验原料选用高纯电熔镁砂(粒径3~1 mm);α-Al2O3(活性)微粉(粒径≤5μm);电熔镁铝尖晶石(粒径≤1mm);Al粉(粒径≤0.088 mm);化学纯MgO(粒径≤0.04 μ m)和少量的活性材料,氮化气氛下原位反应制备MgAlON复合材料,考察了氮化烧结后试样的常规性能、物相组成、显微结构.结果表明:1500℃下,氮化气氛中耐火基质料为Al-Al2O3-MgO系的混合粉可以通过原位反应制备MgAlON复合材料;骨料种类的不同,不影响MgAlON矿相的生成.且MgAl2O4-MgAlON材料的烧结性能及氮化效果较好,常温强度也较高.试样骨架结构是骨料大颗粒在烧结中形成的,骨架中填充着反应合成的MgAlON晶粒和骨料小颗粒,使得烧成后的试样内部结构致密;微晶结构以及晶须的存在有利于提高材料的常温力学性能.  相似文献   

10.
以废弃建筑玻璃为主体原料,将废玻璃粉、高岭土和氧化镁进行球磨混和,压制成型后直接烧结,在低温下成功制备出具有单一透辉石晶相结构的微晶玻璃.采用X射线衍射、场发射扫描电子显微镜等测试手段,研究了MgO加入量和烧结温度对微晶玻璃样品的晶相组成、显微结构及性能等的影响.结果表明:随着MgO加入量的增多以及烧结温度的升高,微晶玻璃的体积密度和抗弯强度均呈现先增大后减小的趋势.MgO加入量和烧结温度的提高可以有效促进透辉石晶相的析出.当MgO加入量为4;、975℃烧结2 h时所制备得到的透辉石微晶玻璃性能最好,其体积密度为2.395 g·cm-3,抗折强度102.1 MPa.  相似文献   

11.
12.
本文采用坩埚下降法,在真空密封的石英坩埚中成功生长出CsI-LiCl与CsI-LiCl:Na共晶闪烁体。通过扫描电子显微镜(SEM)观察晶体微结构表明该共晶中LiCl相与CsI相存在周期性的层状排列,CsI相的厚度在5 μm左右。共晶样品的X射线激发发射谱显示在CsI-LiCl和CsI-LiCl:Na共晶样品存在缺陷发光,在CsI-LiCl样品中还观察到了纯CsI的自陷激子(STE)发光。CsI-LiCl样品在α粒子激发下的多道能谱中观察到明显的全能峰,这一结果证明CsI-LiCl共晶可用于热中子探测的潜力。  相似文献   

13.
P. Ganesh  M. Widom 《Journal of Non》2011,357(2):442-445
We perform first-principles coexistence simulations of the low-density and the high-density phases of supercooled liquid silicon and find a negative slope for the coexisting line in the temperature-pressure plane. Electron density maps and electron-localization function plots of the two phases of silicon show marked differences. The calculated differences suggest more localized electrons in the low-density liquid compared to the high-density liquid, coming from an increased population of covalent bonds, which further explain the calculated negative slope in the two phase coexistence regime. This is consistent with the presence of a pseudo-gap in low-density liquid silicon, absent in the high-density liquid which shows a metallic behavior.  相似文献   

14.
以聚丙烯腈(PAN)为载体,六水合硝酸铈[Ce(NO3)3·6H2O]为原料,采用静电纺丝法制备了Ce(NO3)3/PAN纤维,在空气中热处理得到CeO2微纳米纤维,通过XRD、BET和SEM对CeO2微纳米纤维进行表征。采用静态吸附实验探讨了CeO2微纳米纤维去除水溶液中氟离子的性能,考察了溶液pH值、初始氟离子浓度及共存阴离子等对吸附性能的影响。结果表明,pH=3时,CeO2微纳米纤维对F-的吸附性能最佳,CeO2吸附量随着F-浓度的增大呈上升趋势。CeO2微纳米纤维对F-的吸附等温线遵循Langmuir模型,二级动力学模型能很好地描述CeO2微纳米纤维对F-的吸附过程。CeO2微纳米纤维的除氟性能优良,可为其实际应用提供理论参考。  相似文献   

15.
Structures of both thecis andtrans isomers of dithiahexahydro[3.3]metacyclophane, ?C6H4?CH2SCH2?C6H10?CH2SCH2?, have been determined, wherecis andtrans refer to the attachments to the cyclohexane ring. Thecis form crystallizes in the monoclinic space groupP21/c witha=8.4299(11)Å,b=21.772(2)Å,c=8.9724(13)Å, β=116.574(11)o, andZ=4. Thetrans isomer packs into the monoclinic space groupP21 witha=8.159(16)Å,b=10.185(5)Å,c=9.558(2)Å, β=112.435(18)o, andZ=2. The cyclohexane ring of thecis isomer is in the chair conformation, while the cyclohexane of thetrans isomer is found in a twisted boat conformation.  相似文献   

16.
以表面活性剂CTAB和SDBS为化学添加剂,采用化学共沉淀法对碳酸锶晶体的生长形态进行调控,成功地制备出了实心的树枝状和花瓣为空心的花状碳酸锶粉体,并用X射线衍射(XRD)、扫描电子显微镜(SEM)和傅里叶变换红外光谱(FT-IR)等分析手段对样品进行了表征;最后重点对化学添加剂可能产生的影响机理进行了初步的探讨.结果表明,CTAB和SDBS在晶体生长的过程中能起到显著的影响作用,两者对粒子分散性能的作用效果相反,而且后者对晶体(013)和(213)晶面表面能降低的贡献明显大于前者.  相似文献   

17.
Triethyl ammonium Salt of O,O′-bis(p-tolyl)dithiophosphate and O,O′-bis(m-tolyl)dithiophosphate have been obtained by reaction of p- and m-cresol, respectively with P2S5 in toluene and have been characterized by elemental analysis, IR, 1H and 31P NMR spectroscopy. The molecular structure of O,O′-bis(p-tolyl)dithiophosphate has been determined. Crystal data: [Et3NH]+[(4-MeC6H4O)2PS2]: Monoclinic, P21/c, a=15.2441(9) ?, b=10.415(2) ?, c=3.9726(9) ?, β=91.709(7)°, V=2217.5(1) ?−3, Z=4.Supplementary materials Additional material available from the Cambridge Crystallographic Data Centre (CCDC no. 600927 for [Et3NH]+[(4-MeC6H4O)2PS2] comprises the final atomic coordinates for all atoms, thermal parameters, and a complete listing of bond distances and angles. Copies of this information may be obtained free of charge on application to The Director, 12 Union Road, Cambridge CB2 2EZ, UK (fax: +44-1223-336033; email: deposit@ccdc.cam.ac.uk or www:http://www.ccdc.cam.ac.uk).  相似文献   

18.
The structure of Zn4Na(OH)6SO4Cl·6H2O, a secondary mineral from Hettstedt, Germany, was determined by single-crystal X-ray diffraction. The crystals are hexagonal,a=8.413(8),c=13.095(24) Å, space group $P\bar 3$ , Z=2. The structure was refined to R=0.0554 and Rw=0.0903 for 970 reflections with I≥3σ(I). The structure can be described as zinc hydroxide layers perpendicular toc, from which sulfates and chlorides extend. The layers are held together by a system of hydrogen bonds involving hexaaquo Na+ ions which occupy the interlayer space.  相似文献   

19.
Abstract  The title compound, C18H18BrN3O3S, a derivative of 1,3,4-oxadiazole, crystallizes in the triclinic space group P-1 with unit cell parameters a = 6.8731(3), b = 8.9994(4), c = 15.7099(6) ?, α = 92.779(3)°, β = 130.575(3)°, γ = 107.868(4)°, Z = 2. The dihedral angle between the mean planes of the planar naphthyl and morpholine (chair) rings with the planar oxadiazol ring is 50.1(8) and 76.8(6)°, respectively. The planar naphthyl ring is twisted 52.2(5)° with the mean plane of the morpholine ring. A group of four intermolecular close contacts are observed between a bromine atom and hydrogen atoms from the closely packed naphthyl, morpholine and oxy–methyl groups in the unit cell. These molecular interactions in concert with an additional series of π–π stacking interactions that occur between the center of gravity of the two 6-membered rings of the naphthalene group influence the twist angles of each of these three groups. A MOPAC AM1 calculation of the conformation energy of the crystal structure [226.0128(9) kcal] compared to that of the minimum energy structure after geometry optimization [29.9744(1) kcal] reveals a significantly reduced value. The twist angles of the three groups above also change after the AM1 calculation giving support to the influence of both intermolecular C–H···Br short-range interactions and Cg π–π stacking interactions on these angles which therefore play a role in stabilizing crystal packing. Graphical Abstract  Crystal structure of 5-{[(6-bromonaphthalen-2-yl)oxy]methyl}-3-(morpholin-4-ylmethyl)-1,3,4-oxadiazole-2(3H)-thione, C18H18BrN3O3S, is reported and its geometric and packing parameters described and compared to a MOPAC computational calculation. Electronic supplementary material  The online version of this article (doi:) contains supplementary material, which is available to authorized users.  相似文献   

20.
Irisolidone (5,7-dihydroxy-6,4′-dimethoxyisoflavone) was isolated from the flowers of Pueraia lobata and its crystal structure was examined by X-ray single crystal diffraction. The crystal structure of irisolidone is monoclinic, space group P21/c with a = 15.491(9) ?, b = 7.895(4) ?, c = 13.321(7) ?, β = 110.546(9)° and Z = 4. Hydrogen bonding and aromatic ππ stacking assemble the title compound into a three-dimensional networking structure.  相似文献   

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