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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Densification, crystallization, and electrical properties of lead zirconate titanate glass-ceramics
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Densification, crystallization, and electrical properties of lead zirconate titanate glass-ceramics

机译:钛酸锆钛酸铅玻璃陶瓷的致密化,结晶和电性能

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Piezoelectric glass-ceramics in the lead zirconate titanato-lead silicate system were developed. SiO/sub 2/ was required for glass formability, and excess PbO allowed low temperature processing. The amounts of those constituents were limited by the optimization of the piezoelectric properties. Only a small region of compositions in this system yielded the desired combination of glass formability, crystallization and densification behavior, and resulting piezoelectric properties. Selected compositions were melted and roller quenched to form glass ribbon, then milled into glass powder. Pressed glass powder densified to closed porosity at 850/spl deg/C with piezoelectric d/sub 33/ and g/sub 33/ coefficients of 26 pC/N and 33/spl times/10/sup -3/ Vm/N. The low temperature sintering behavior of these ferroelectric glass-ceramics provides the possibility of incorporating a piezoelectric material as a sensor or actuator in thick film circuits or low-fire multilayer packages.
机译:研制了锆钛酸铅-硅酸铅体系的压电玻璃陶瓷。 SiO / sub 2 /是玻璃成形性所必需的,过量的PbO可以进行低温加工。这些成分的数量受到压电性能优化的限制。在该系统中,只有一小部分组合物产生了玻璃成形性,结晶和致密化行为以及所产生的压电性能的所需组合。将选定的组合物熔融并辊淬以形成玻璃带,然后研磨成玻璃粉。压制的玻璃粉末在d / sub 33 /和g / sub 33 /压电系数为26 pC / N和33 / spl乘以10 / sup -3 / Vm / N的条件下在850 / spl deg / C致密化为闭孔。这些铁电玻璃陶瓷的低温烧结行为提供了将压电材料作为传感器或致动器并入厚膜电路或低火多层封装中的可能性。

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