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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Influence of compositions on sealing temperature and properties of lead borate non-crystallizing sealing glasses
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Influence of compositions on sealing temperature and properties of lead borate non-crystallizing sealing glasses

机译:组成对硼酸铅非结晶密封玻璃密封温度和性能的影响

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Lead borate sealing glasses, composed of 30-75PbO, 20-65B_2O_3, 0-10ZnO, 1-5Bi_2O_3 and 0-4GeO_2 in mole percent, were prepared by conventional melting-quenching method. Influence of PbO/B_2O_3 ratios and the content of oxide additives on sealing temperature, thermal expansion properties, thermal stabilities and mechanical properties of lead borate glass were investigated by IR, DSC, thermal expansion and mechanical measurement. Results indicate that the ratio of PbO/B_2O_3, both as the main glass formers, had crucial influence on network structure of lead borate glass. An appropriate proportion of PbO/B_2O_3, ZnO and GeO_2 are beneficial to lower sealing temperature and stabilize the glass against devitrification. When 1 mol% GeO_2 is introduced, the glass possesses the highest stability and lowest sealing temperature (400℃), which is desirable for low-temperature sealing. Bi_2O_3 has little effects on the melting temperature and sealing temperature, while it helps to improve mechanical properties of lead borate glasses. Only the introduction of GeO_2 causes a little tendency for crystallization. The modified Johnson—Mehl-Avrami (JMA) equation was used to describe the crystallization kinetics of GeO_2 doped lead borate glasses. The precipitation of crystals before melting is a block for the decrease of sealing temperature. Furthermore the adjustability of the coefficient of thermal expansion caused by the additives would expand applications of lead borate glass.
机译:采用常规的熔融淬火法制备了由30-75PbO,20-65B_2O_3、0-10ZnO,1-5Bi_2O_3和0-4GeO_2组成的硼酸铅密封玻璃。通过IR,DSC,热膨胀和力学测量研究了PbO / B_2O_3比和氧化物添加剂含量对硼酸铅玻璃密封温度,热膨胀性能,热稳定性和力学性能的影响。结果表明,PbO / B_2O_3的比例均作为主要的玻璃形成剂,对硼酸铅玻璃的网络结构有至关重要的影响。适当比例的PbO / B_2O_3,ZnO和GeO_2有助于降低密封温度并稳定玻璃的抗失透性。当引入1mol%的GeO_2时,玻璃具有最高的稳定性和最低的密封温度(400℃),这对于低温密封是理想的。 Bi_2O_3对熔融温度和密封温度几乎没有影响,同时有助于改善硼酸铅玻璃的机械性能。仅GeO 2的引入引起结晶的趋势很小。修改后的Johnson-Mehl-Avrami(JMA)方程用于描述掺GeO_2的硼酸铅玻璃的结晶动力学。熔化之前晶体的沉淀是降低密封温度的障碍。此外,由添加剂引起的热膨胀系数的可调节性将扩大硼酸铅玻璃的应用。

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