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Reactive Synthesis Of Microporous Titanium-aluminide Membranes

机译:反应性合成微孔铝化钛膜

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Titanium-aluminide intermetallic alloys and compounds are traditionally investigated and used as structural materials in high temperature applications. Here we show a novel field where microporous titanium-aluminide membrane with about 20 μm thickness was prepared by a reactive synthesis of a commercial aluminum foil coated with a titanium layer. The porous membrane with the average pore size of about 1.2 urn formed after sintering initially at 550℃ for 4 h and finally at 1300℃ for 30 min, showing a single phase of γ-TiAl. The pore evolution during the synthesis procedure was investigated and analyzed through scanning electron microscopy. The pore formation mechanism is believed to be the Kirkendall effect according to a Ti/Ai diffusion couple experiment.
机译:传统上研究了钛铝金属间合金和化合物,并将其用作高温应用中的结构材料。在这里,我们展示了一个新的领域,其中通过反应性合成涂覆有钛层的商业铝箔来制备厚度约为20μm的微孔钛铝膜。最初在550℃烧结4 h,最后在1300℃烧结30 min后,形成平均孔径约为1.2 um的多孔膜,显示出单相的γ-TiAl。通过扫描电子显微镜研究和分析了合成过程中的孔演化。根据Ti / Al扩散对实验,认为孔形成机理是柯肯德尔效应。

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