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氧化锆复合Bi_2O_3-BaO-SiO_2-R_xO_y玻璃封接材料性能研究 被引量:12
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作者 韩敏芳 杜俊平 于立安 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2010年第10期1058-1064,共7页
在玻璃中复合脊性骨料是固体氧化物燃料电池(SOFC)封接材料研究热点.实验选定在Bi2O3-BaO-SiO2-RxOy(简记为BiBaSi)玻璃体系中复合10wt%~30wt%的ZrO2颗粒来改善玻璃在高温下的封接性能.结果表明,ZrO2复合BiBaSi玻璃后,复合体系热膨胀... 在玻璃中复合脊性骨料是固体氧化物燃料电池(SOFC)封接材料研究热点.实验选定在Bi2O3-BaO-SiO2-RxOy(简记为BiBaSi)玻璃体系中复合10wt%~30wt%的ZrO2颗粒来改善玻璃在高温下的封接性能.结果表明,ZrO2复合BiBaSi玻璃后,复合体系热膨胀系数略有增大;随着ZrO2含量增多,复合封料适宜使用温度逐渐提高,从基体BiBaSi玻璃的720℃到BiBaSi-10Zr、BiBaSi-20Zr、BiBaSi-30Zr的780、860和900℃;氧化锆加入到基体玻璃中,一部分作为脊性骨料存在于玻璃相中,维持了高温封接要求的形状和尺寸;另一部分逐渐进入了玻璃网络中,促进玻璃结晶生成新的物相Bi4Si3O12;两种晶体相共存于玻璃相中,提高了复合体系封接的稳定性.通过改变氧化锆加入量,可以有效调控封接材料相关性能,满足SOFC封接要求. 展开更多
关键词 固体氧化物燃料电池 bi2o3-bao-sio2玻璃 氧化锆骨料 复合封接材料 封接性能
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Bi_2O_3-BaO-SiO_2-R_xO_y玻璃封接性能 被引量:8
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作者 韩敏芳 杜俊平 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2011年第S1期279-283,共5页
系统研究Bi2O3-BaO-SiO2-RxOy(简写为Bi-Ba-Si-O)玻璃体系的封接性能。结果表明,该玻璃具有良好的热膨胀性能,热膨胀系数(CTE)为11×10-6K-1(50~530℃),与氧化钇稳定氧化锆(YSZ)(CTE:10.2×10-6K-1)电解质和SUS430(CTE:11.3... 系统研究Bi2O3-BaO-SiO2-RxOy(简写为Bi-Ba-Si-O)玻璃体系的封接性能。结果表明,该玻璃具有良好的热膨胀性能,热膨胀系数(CTE)为11×10-6K-1(50~530℃),与氧化钇稳定氧化锆(YSZ)(CTE:10.2×10-6K-1)电解质和SUS430(CTE:11.3×10-6K-1)合金连接体相匹配;实验确定该玻璃体系适宜的使用温度为(720±50)℃,并在720℃表现出良好的稳定性。用Bi-Ba-Si-O玻璃将YSZ电解质和SUS430合金连接体粘结后,三相界面结合紧密;三相界面处的元素分布分析结果表明,玻璃组分Si、Ba、Bi元素分别向电解质侧和合金侧有迁移;而合金内的Fe、Cr元素相对稳定,迁移较少。界面元素迁移有助于实现不同材料之间的连接,但需要关注其对长期性能的影响。实验选定的Bi-Ba-Si-O玻璃材料基本满足SOFC对封接材料的要求。 展开更多
关键词 bi2o3-bao-sio2-rxoy玻璃 封接材料 固体氧化物燃料电池(SoFC)
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Structure of Bi_2O_3-ZnO-B_2O_3 system low-melting sealing glass 被引量:7
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作者 何峰 程金树 +1 位作者 邓大伟 王俊 《Journal of Central South University》 SCIE EI CAS 2010年第2期257-262,共6页
Bi2O3-ZnO-B2O3 system glass is a kind of lead-free low melting sealing glasses. The structure of Bi2O3-ZnO-B2O3 system low-melting sealing glass was investigated by DSC, FT-IR, XRD and SEM. The results show that with ... Bi2O3-ZnO-B2O3 system glass is a kind of lead-free low melting sealing glasses. The structure of Bi2O3-ZnO-B2O3 system low-melting sealing glass was investigated by DSC, FT-IR, XRD and SEM. The results show that with the increase of B2O3 content, the transition temperature Tg and softening temperature Tf of Bi2O3-ZnO-B2O3 system low-melting sealing glasses increase, which leads to the liquid phase precipitation temperature increasing and promotes the structure stability in the glass. With increasing the heat treatment temperature, a large number of liquid phases appear in samples and the sinter efficiency of the samples increases. The FT-IR spectra of the glasses show the presence of some bands that are assigned to vibrations of Bi--O bond from [BO3] pyramidal and [BiO6] octahedral units and B--O from [BO3] and [BO4] units. With the decrease of B203 content, the crystallization tendency of the glass increases. In glass samples Bl and B〉 crystallization starts at 460 ℃ and 540 ℃, respectively. Both of them precipitate Bi24B2O39 phases. 展开更多
关键词 bi2o3-Zno-B2o3 system glass low-melting sealing glass transition temperature softening temperature
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Effect of SrO Content on Structure,Thermal Properties and Chemical Stability of Bi2O3-B2O3-ZnO-SrO Low-melting Glass for Si-Al Alloy Package 被引量:3
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作者 WU Zhilun ZHANG Ming +2 位作者 ZHANG Chunyan MENG Fancheng LIN Huixing 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2020年第2期368-376,共9页
The 40Bi2O3-30B2O3-(30-x)ZnO-xSrO (x=0-15mol%,BBZSr) glass system was prepared by the conventional melt quenching method.The effect of SrO addition on structure,thermal properties,chemical stability and sealing perfor... The 40Bi2O3-30B2O3-(30-x)ZnO-xSrO (x=0-15mol%,BBZSr) glass system was prepared by the conventional melt quenching method.The effect of SrO addition on structure,thermal properties,chemical stability and sealing performance of BBZSr glass were investigated thoroughly.The experimental results show that the total proportions of [BO3] group and [BO4] group decrease and the vibrations of [BiO3] group and [BiO6] group become weaker with the increase of SrO addition content,suggesting the glass network structure is strengthened owing to the SrO addition.Hence,both the thermal and chemical stability were significantly improved as the SrO content was increased.When the SrO content increased from 0 to 15mol%,the glass transition temperature and softening temperature slightly increased from 380 to 388 ℃ and from 392.7 to 402.2 ℃,respectively,meanwhile the coefficient of thermal expansion also increased from 10.49×10^-6 to 11.16×10^-6/℃ (30-300 ℃).The BBZSr glass with 15mol% SrO exhibited excellent comprehensive properties with low glass transition temperature(384.9 ℃),low softening temperature(400.3 ℃),high coefficient of thermal expansion (11.14×10^-6 ℃,30-300 ℃),good thermal and chemical stability.Besides,the glass had the good wetting behavior and sealing performance for Al-50%Si alloy. 展开更多
关键词 low-melting sealing lead-free glass bi2o3-B2o3-Zno-Sro glass silicon-aluminium alloy thermal expansion
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Melting, sintering and wetting properties of ZnO–Bi_2O_3–B_2O_3 sealing glass 被引量:4
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作者 何峰 何子君 +2 位作者 谢峻林 梅书霞 金明芳 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第7期1541-1547,共7页
Glasses based on ZnO-Bi_2O_3-B_2O_3 system are expected to be a new kind of sealing glasses because of their low melting temperature and other properties.In order to reveal the effect of B_2O_3 on the rheological beha... Glasses based on ZnO-Bi_2O_3-B_2O_3 system are expected to be a new kind of sealing glasses because of their low melting temperature and other properties.In order to reveal the effect of B_2O_3 on the rheological behavior of ZnO-Bi_2O_3-B_2O_3 system glass melt,the properties of viscosity,thermal expansion,fluxion property and wetting process between cylinder samples and stainless steel were investigated with the rotating crucible viscometer,dilato meter and high-temperature microscope.The structure of sintered glass samples was investigated with scanning electron microscope.The results show that the B_2O_3 content increasing in B_1-B_3 at the given temperature between 400 ℃ and 500 ℃ leads to the increasing of the sample viscosity.When the amount of B_2O_3 increases from 5.24%to 9.24%(mass fraction),the coefficients of thermal expansion of glass samples decrease smoothly from 10.94×10^(-6) to10.71×10^(-6) and 10.38×10^(-6) ℃^(-1) respectively.In the case of sealing temperature,its value increases from 453 ℃ to 494 ℃.ZnO-Bi_2O_3-B_2O_3 system low-melting glass powder sintering was with viscous liquid to participate,which could make the densification of glass sample more effective and more efficient.With the content of B_2O_3 increasing,the wetting angle between the glasses samples and stainless steel could also increase,and the resulting appropriate sealing temperature range is 460-490 ℃. 展开更多
关键词 sintering bi2o3 Melting wetting sealing glasses melting stainless rheological viscosity
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IR and Raman Spectra Properties of Bi<sub>2</sub>O<sub>3</sub>-ZnO-B<sub>2</sub>O<sub>3</sub>-BaO Quaternary Glass System 被引量:1
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作者 Feng He Zijun He +1 位作者 Junlin Xie Yuhui Li 《American Journal of Analytical Chemistry》 2014年第16期1142-1150,共9页
Among new low-melting-point glasses, bismuth ate glass is deemed to have the most potential as an environmentally friendly replacement for polluting Pb-containing glasses. Current studies of boro-bismuthate glasses fo... Among new low-melting-point glasses, bismuth ate glass is deemed to have the most potential as an environmentally friendly replacement for polluting Pb-containing glasses. Current studies of boro-bismuthate glasses focus on the structural influence of the additional oxide in the context of low-melting-point electronic sealing applications. In this study, the structure of quaternary Bi2O3- ZnO-B2O3-BaO glasses was investigated spectroscopic ally, with Fourier-transform-infrared (FT-IR) and Raman spectra recorded for glasses with different main oxide contents. Signals in the FT-IR are mainly observed around 500 cm﹣1, 720 cm﹣1, 840 cm﹣1, 980 - 1080 cm﹣1, and 1200 - 1500 cm﹣1, while the Raman scattering peaks are located at 130 cm﹣1, 390 cm﹣1, 575 cm﹣1, 920 cm﹣1, and 1250 cm﹣1. The glasses are mainly structured around [BO3] units and the numbers of [BiO6] and [BiO3] units increase with the Bi2O3 content increasing. Concurrently, the FT-IR absorption peaks associated with [BO4] units shift to lower wave numbers, indicating a loosening of the glass structure. However, as the B2O3 content is increased, the numbers of [BO3] and [BO4] units increase, while those of [BiO3] and [BiO6] units decrease, highlighting a densification of the glass structure. ZnO acts as a network modifier in these glasses. 展开更多
关键词 IR and Raman Spectra bi2o3-Zno-B2o3-Bao QUATERNARY glass System Structure
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The Effect of Bi_2O_3 on the Structure and Properties of Float Glass
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作者 何峰 ZHANG Wentao +1 位作者 LIU Ciqi XIE Jun 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2013年第5期898-901,共4页
CaO-Al2O3-SiO2 system float glasses were melted at an elevated temperature, and about 60% of the total energy was occupied by melting and clarification stage. In order to reduce the melting temperature of the float gl... CaO-Al2O3-SiO2 system float glasses were melted at an elevated temperature, and about 60% of the total energy was occupied by melting and clarification stage. In order to reduce the melting temperature of the float glasses, Bi2O3 was added as fluxing agent. The structure and some melting properties such as the influence of the addition of the oxidation bismuth on the properties of float glass melt, melting temperature, and the structure of glass were studied. The results showed that the basic structure was not changed with the addition of Bi2O3 from 0.5% to 2%. The viscosity of the glass melt decreased with the addition of Bi2O3 obviously, as the viscosity of the glass melt was 1.35 Pa.s, the temperature was reduced by about 30 ℃ from sample A1 to sample A5. With the increasing of Bi2O3, the bending strength of glass was reduced and the transmisivity of glass samples had no change in visible light range, and the transmissivity of the glass samples was more than 88%. The ultraviolet cut-off length showed red shift with the addition of Bi2O3. With the increasing of Bi2O3, the water resistance of the glass samples was improved. 展开更多
关键词 float glass bi2o3 STRUCTURE PRoPERTIES
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玻璃和云母复合封接SOFC电池堆性能 被引量:4
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作者 于立安 童菁菁 韩敏芳 《材料科学与工程学报》 CAS CSCD 北大核心 2012年第2期171-175,共5页
封接技术是影响平板式固体氧化物燃料电池(SOFC)发展的关键技术之一。实验中用云母和Bi2O3-BaO-SiO2-RxOy(R=K,Zn,Al2O3,etc.)玻璃复合,将电解质(氧化钇稳定氧化锆,YSZ)支撑的电池和金属连接体(SUS430不锈钢)封接在一起,对封接后电池堆... 封接技术是影响平板式固体氧化物燃料电池(SOFC)发展的关键技术之一。实验中用云母和Bi2O3-BaO-SiO2-RxOy(R=K,Zn,Al2O3,etc.)玻璃复合,将电解质(氧化钇稳定氧化锆,YSZ)支撑的电池和金属连接体(SUS430不锈钢)封接在一起,对封接后电池堆的封接性能和开路电压以及各组元热膨胀性能进行测试。结果表明:云母在室温到720℃的平均热膨胀系数为8.5×10-6 K-1,Bi2O3-BaO-SiO2-RxOy玻璃20℃到520℃的平均热膨胀系数为11.0×10-6/K,与YSZ和金属连接体匹配。云母的层状结构可以缓解因热膨胀系数不同而产生的应力,在高温状态下云母还能起到固定软化玻璃的作用。通过气密性和电性能测试,在电池堆工作状态下气密性良好,在操作温度为800~900℃下运行28小时,电池堆的开路电压(OCV)维持在1.0V以上,复合封料及其两边材料中的元素没有明显扩散。因此,云母和玻璃Bi2O3-BaO-SiO2-RxOy复合封接技术可适用于高温SOFC的封接。 展开更多
关键词 云母 玻璃bi2o3-bao-sio2-rxoy 复合封接 固体氧化物燃料电池(SoFC)
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