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Effect of Ta2O5 addition on the structure, crystallization mechanism, and properties of CaO–B2O3–SiO2 glasses for LTCC applications

机译:Ta2O5添加量对CaO–B2O3–SiO2玻璃结构、结晶机理及LTCC玻璃性能的影响

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? 2022CaO–B2O3–SiO2–Ta2O5 (CBST) glass-ceramics, with different Ta2O5 content, (up to 6 mol), have been prepared by using glass melt quenching followed by heat treatment between 800 and 880 °C. The Fourier Transform Infrared (FTIR) results showed that the stronger the attraction of Ta5+ to the oxygens in the BO33? and SiO32? structures, the more easily the B–O and Si–O bonds will be destroyed. The underlying reason is most probably the high field strength of Ta5+, which results in a weakening of the vibration intensities of the BO3 and SiO4 units. Moreover, the Differential Scanning Calorimetry (DSC) results showed that the softening point (Tg), crystallization starting temperature (Tc1), and exothermic crystallization peak temperature (Tp1), of the CaSiO3 phase, shifted to higher values with the addition of Ta2O5. Also, the crystallization activation energy (Ea) and the glass stability factor (ΔT) of the CaSiO3 phase increased, which indicated that the CaSiO3 phase of the glass became inhibited by the addition of Ta2O5. It was, thus, obvious that there was a need of glass characterization. The results of the crystallization kinetics showed that the critical cooling rate decreased with the addition of Ta2O5, which indicated that the viscosity of the system had increased. The CBST glass-ceramics, containing 1 mol Ta2O5, that were sintered at 875 °C for 15 min showed excellent dielectric properties: εr = 6.22 and tanδ = 1.19 × 10?3 (1 MHz). To sum up, CaO–B2O3–SiO2–Ta2O5 glass-ceramics are potential low temperature co-fired ceramic substrate materials.
机译:?采用玻璃熔融淬火法,在800-880 °C下进行热处理,制备了不同Ta2O5含量(高达6 mol%)的CaO-B2O3-SiO2-Ta2O5(CBST)微晶玻璃。 傅里叶变换红外(FTIR)结果表明,Ta5+对BO33中氧的吸引力越强?和SiO32?结构,B-O和Si-O键越容易被破坏。根本原因很可能是Ta5+的高场强,这导致[BO3]和[SiO4]单元的振动强度减弱。此外,差示扫描量热法(DSC)结果表明,随着Ta2O5的加入,CaSiO3相的软化点(Tg)、结晶起始温度(Tc1)和放热结晶峰值温度(Tp1)都向较高的值转变。此外,CaSiO3相的结晶活化能(Ea)和玻璃稳定因子(ΔT)均有所增加,表明Ta2O5的加入对玻璃的CaSiO3相受到抑制。因此,很明显需要对玻璃进行表征。结晶动力学结果表明,随着Ta2O5的加入,临界冷却速率降低,表明体系黏度增加。在875 °C下烧结15 min的含1 mol% Ta2O5的CBST微晶玻璃表现出优异的介电性能:εr = 6.22,tanδ = 1.19 × 10?3 (1 MHz)。综上所述,CaO–B2O3–SiO2–Ta2O5微晶玻璃是潜在的低温共烧陶瓷衬底材料。

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