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1.
根据硬盘基板用材料的要求,制备了MgO-Al2O3-SiO2-TiO2-Y2O3高弹性模量玻璃(120GPa),玻璃的弹性模量随组成的变化服从Makishima-Mackenzie理论,MgO,Al2O3,TiO2,Y2O3等具有较高单位体积离解能的氧化物有利于提高玻璃的弹性模量,但玻璃弹性模量的理论计算值低于测试值,这是因为Makishima-Mackenzie理论没有考虑玻璃内阳离子的具体配位,对MgO,Y2O3堆积密度因子的堆导存在误差,因此利用Makishima-Mackenzie理论发展高弹性模量玻璃时应对MgO,Y2O3等氧化物的计算进行修正。  相似文献   

2.
以超重力场辅助燃烧合成技术制备了呈梯度分布的Y2O3-Al2O3-SiO2透明玻璃/Y3Al5O12陶瓷梯度复合材料.结果表明,梯度布置两种组分的原料既可防止下层熔体的喷溅,又能提高上层玻璃的透过率.该梯度材料沿超重力方向依次为YAS透明玻璃层、YAS-YAG玻璃陶瓷层和YAG陶瓷层.  相似文献   

3.
张海军  姚熹  张良莹 《功能材料》2002,33(1):105-106
采用柠檬酸sol-gel工艺合成了BaFe12O19/A12O3-SiO2-K2O微晶玻璃陶瓷,并对其介电常数及其磁导率在1MH2~6GHz下的变化规律进行了研究.结果表明,BaFe12O19/Al2O3-SiO2-K2O微晶玻璃陶瓷的合成与体系中Fe/Ba、烧结温度密切相关;其介电常数、磁导率基本都随测试频率的增加而下降;介电损耗值最大可达到0.30磁损耗值较小.  相似文献   

4.
制备了TeO2-AlF3 (Al2O3 )-LaF3-ZnF2体系氟氧化物玻璃.通过DSC和红外吸收光谱分析研究了Al2O3替代AlF3对氟氧化物碲酸盐玻璃热稳定性和网络结构的影响.结果表明:Al2O3替代AlF3使氟碲酸盐玻璃的玻璃转变温度和热稳定性明显提高,玻璃中形成的[AlO6]八面体使玻璃网络结构更加紧密.  相似文献   

5.
以(Na0.5Bi0.5)0.94Ba0.06TiO3为基体,研究了单、双组分掺杂La2O3、Y2O3对BNBT6陶瓷的压电和介电性能及微观结构的影响。XRD分析表明:掺杂La2O3、Y2O3均得到钙钛矿结构。SEM分析表明,分别掺杂0.2%La2O3和0.2%Y2O3使得陶瓷晶粒增大,压电常数提高,双组分掺杂La2O3、Y2O3在掺杂量0.12%La2O3+0.08%Y2O3时,压电常数d33增大到最大值144.6×10-12C/N,介质损耗降低到最小值0.039。  相似文献   

6.
纳米(ZnO,Al2O3)复合掺杂对3Y2O3-ZrO2材料电性能的影响   总被引:1,自引:0,他引:1  
以3Y2O3—ZrO2纳米粉和ZnO,A12O3纳米粉为原料,采用交流阻抗谱技术对掺少量ZnO和A12O3的3Y2O3—ZrO2烧结陶瓷进行电性能研究。研究表明:少量纳米ZnO掺杂降低了3Y2O3—ZrO2的电导率,但随着掺人量的增加,电导率开始回升。在ZnO掺杂样品中加入少量纳米A12O3进行复合第二相掺杂,结果提高了3Y2O3—ZrO2材料的电导率。同时少量A12O3的掺人降低了晶粒电导活化能,使得晶粒电导率增加。  相似文献   

7.
本文采用高分子网络凝胶法制备了粒径约为20nm的纳米Y2O3:Eu3+粉体,并采用KAl(SO4)2及Na2SiO3溶液进行表面包膜处理,在纳米Y2O3:Eu3+粉体表面获得了约2nm厚的复合氧化物膜,发现包膜处理对纳米Y2O3:Eu3+粉体分散性能及表面结构有明显的影响.  相似文献   

8.
采用液相包裹法用Y2O3对Al2O3微粉表面进行改性,用挤压铸造法制备表面改性的Al2O3p/6061A1复合材料,研究改性对复合材料的显微组织和力学性能的影响.结果表明,用Y2O3表面改性后,Al2O3微粉在6061Al基体中的分布均匀性明显改善,复合材料的力学性能明显提高.与改性前比较,Al2O3体积分数为25%的复合材料,抗拉强度提高30%,屈服强度提高40%,弹性模量提高20%.其原因是,改性Al2O3微粉表面的Y2O3与Al基体间发生界面反应,使界面润湿性得以改善:界面相Y2Al与Al2O3和Al基体间均形成良好结合的界面。  相似文献   

9.
氧化物固溶体晶格常数的变化是影响材料制备和应用的一个重要因素,从理论上预测氧化物固溶体晶格常数的变化规律是材料学家常用的从理论上研究物性参数的方法之一。我们推导出立方相氧化铝系纳米固溶体晶格常数与组成固溶体的氧化物的成分的关系,并用于Al2O3—MgO、Al2O3—Y2O3和Al2O3-MgO-Y2O3系纳米固溶体晶格常数的计算,发现和用湿化学方法制备的立方相氧化铝系纳米固溶体晶格常数实测的结果基本一致,误差分别不大于3.35%、1.25%和1.22%。  相似文献   

10.
CaO-Al2O3-SiO2系黑色装饰微晶玻璃的研究   总被引:9,自引:1,他引:8  
为了研究制备黑色装饰微晶玻璃,使用Fe2O3、Ni2O3、Co2O3等着色剂,研究了其对微晶玻璃装饰板材的颜色、烧结和晶化性能的影响规律,确定合理的着色剂种类、含量以及热处理制度,并利用XRD与SEM等技术研究了黑色装饰微晶玻璃的结构.研究表明:以Fe2O3、Co2O3组合和Fe2O3、Co2O3、Ni2O3的组合都可制得黑色系列玻璃与花纹清晰的黑色微晶玻璃;100g玻璃配合料中,较合理的着色剂用量为:Fe2O33~5g,Co2O30.15~0.25 g,Ni2O30.2~0.4 g.  相似文献   

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A microstructural study has been carried out of plasma-sprayed Al2O3 and mixed and sintered Al2O3Y2O3. In order to ascertain the degree of metastability achieved by plasma spraying, these results are compared with a similar experiment utilizing a CO2 laser for melting and the hammer-and-anvil technique for quenching of the same materials. X-ray diffraction methods were used to determine the obtained phases and crystal structures. In addition, transmission electron microscopy was used to confirm the phases present and to study their morpology. The porosity was studied with both mercury intrusion porosimetry and small angle neutron scattering. The addition of Y2O3 is shown to decrease the porosity from 15% to 7.5%. Adhesion is likewise related to the addition of Y2O3 and it is seen that adhesion of the mixture is measurably improved over that of pure Al2O3. The implication of these results is discussed.  相似文献   

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ZnO-Al2O3-B2O3-SiO2 (ZABS) glass powder was used as interlayer to join alumina ceramics. The effect of joining temperature on the microstructure and strength of joints was investigated. The results showed that the ZABS glass can react with alumina substrate to form a layer of ZnAl2O4 at Al2O3/glass interface. Bending test exhibited that low joining temperature (1150℃) led to low joint strength due to the formation of pores in the interlayer, originated by high viscosity of the glass. High joining temperature (1250 ℃) also resulted in low joint strength, because of large CTE (coefficient of thermal expansion) mismatch between amorphous interlayer and alumina substrate. Therefore, only when the joining temperature was appropriate (1200℃), defect-free interface and high joint strength can be obtained. The optimum joint strength reached 285 MPa, which was the same as the base material strength.  相似文献   

16.
The surface tensions of xPbO-(100?x) B2O3 (x = 30–80 mol%) and xBi2O3-(100?x) B2O3 (x = 0–100 mol%) melts were measured using the ring method over the temperature range 973 to 1373 K. The compositional and temperature dependences of surface tension were investigated. Addition of PbO and Bi2O3 to B2O3 increased the surface tensions of their respective PbO-B2O3 and Bi2O3-B2O3 melts. The surface tension showed a maximum at 60 mol% PbO in the PbO-B2O3 melts and at 70–80 mol% Bi2O3 in the Bi2O3-B2O3 melts. The temperature coefficient of surface tension was examined on the basis of its relationship to the structure, and it was suggested that the temperature coefficient of surface tension decreases with an increasing content of four-coordinated boron.  相似文献   

17.
Sintering additives were prepared from aluminium hydroxide and yttrium hydroxide. These additives were soluble in water and resulted in a binder. A -SiC powder was mixed with the additive solution and sintered at 2150° C without pressure. The oxides formed from the additive promoted sintering. The sintered body contained no pores. Aluminium, silicon, and yttrium oxide were precipitated in the sintered body.  相似文献   

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Various methods have been used to study the physical properties of the V2O5-Fe2O3 and V2O5-Fe2O3-Li2O systems, including X-ray, electron microscope, Mössbauer effect, NMR and thermogravimetric measurements. The iron ions are approximately equally distributed in substitutional and interstitial sites in the V2O5 lattice. The maximum number of iron ions dissolved in the V2O5 matrix corresponds to 4 mol % Fe2O3. In all the samples a quantity of Fe2O3 which has not been included in lattice is observed. The V2O5-Fe2O3 and V2O5-Fe2O3-Li2O systems are formed from solid solutions mixed with very small Fe2O3 particles. The analysis of the charge compensation of iron ions suggests that V2O5 is a quasi-amorphous semiconductor. Irradiation of V2O5-based samples with an electron beam induces the V2O5 platelets to convert to the VO x phase.  相似文献   

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