基于氧化锆的嵌入式密封腔制备技术

Chen Li, Qiu-lin Tan, Ying-ping Hong, B. Ge, Wei Wang, J. Xiong
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引用次数: 0

摘要

针对目前高温陶瓷难以形成密封腔体且封装复杂的问题,本文介绍了一种利用氧化锆铸造带和多层叠层技术制造高温陶瓷嵌套腔体的方法。完成高温陶瓷密封腔体的制备,利用冲孔机在氧化锆绿带中打孔出腔体,在高温烧结过程中选择不同的温度工艺参数,在腔体中填充或不填充碳膜。利用SEM(扫描电子显微镜)对样品空腔进行分析,结果表明,在空腔内填充碳膜时选择合适的烧结曲线,可以有效防止空腔的下垂、突突、翘曲。这种制造方法可用于结构完整、强度高、气密性好的陶瓷密封腔体,它可用于气体传感器、流量传感器、压力传感器和电容式高温压力传感器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Embedded seal cavity preparation technology based on the zirconia
This article describes a manufacturing method of embedded cavity using zirconia casting-belt and multi-layer lamination technology for the high temperature ceramics, as the present high temperature ceramics are difficult to form a sealed cavity and encapsulation is complicated. Complete the preparation of high temperature ceramics sealed cavity, by using punching machines to punch out the cavity in zirconia green tapes, selecting different temperature process parameters in the high-temperature sintering process, with carbon film filled or not filled in the cavity. Using SEM (the scanning electron microscope) to analysis the sample cavity, it showed that when the carbon film is filled in the cavity to select the appropriate sintering curves, it can effectively prevent the sagging, apophysis, and warpage of the cavity. This manufacturing method is available for structural integrity, high strength and good air tightness ceramics sealed cavity, it can be used for gas sensors, flow sensors, pressure sensors and capacitance type high temperature pressure sensor.
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