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首页> 外文期刊>Journal of Materials Science >Selective laser sintering of barium titanate–polymer composite films
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Selective laser sintering of barium titanate–polymer composite films

机译:钛酸钡-聚合物复合薄膜的选择性激光烧结

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摘要

A selective laser sintering process has been used to consolidate electro-ceramic thin films on silicon substrates. Methods of forming pre-positioned layers of barium titanate were investigated by spin-coating the feedstock powder mixed with a commercial polymer photo-resist. The ceramic–polymer composite was deposited directly onto a nickel film which was evaporated onto a silicon substrate, pre-oxidised to form an electrically insulating layer. A range of laser processing parameters was identified in which consolidated barium titanate layers could be formed. The laser power was found to be more influential in forming sintered microstructures than laser exposure time. The microstructure of barium titanate films is sensitive to the SLS laser-processing conditions, with the optimum laser powers for the processing of the BaTiO3–polymer found to be in the range 17–20 W. This article highlights the possibility of using ‘direct write’ techniques to produce piezoelectric materials upon silicon substrates.
机译:选择性激光烧结工艺已被用于固结硅衬底上的电陶瓷薄膜。通过旋涂混合有商用聚合物光致抗蚀剂的原料粉末,研究了形成钛酸钡预先沉积层的方法。陶瓷-聚合物复合材料直接沉积在镍膜上,然后将其蒸发到硅基板上,进行预氧化以形成电绝缘层。确定了可以形成固结钛酸钡层的一系列激光加工参数。发现激光功率比激光曝光时间对形成烧结的微结构影响更大。钛酸钡薄膜的微观结构对SLS激光加工条件敏感,加工BaTiO 3 -聚合物的最佳激光功率范围为17-20W。本文强调了使用“直接写入”技术在硅衬底上生产压电材料的可能性。

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