Microstructural control of porous Al2TiO5 by using potato starch as pore-forming agent

Microstructural control of porous Al2TiO5 by using potato starch as pore-forming agent
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DOI:
10.2109/jcersj2.121.730
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发表时间:
2013-08
影响因子:
1.1
通讯作者:
H. Nishijima;R. Maki;Yoshikazu Suzuki
H. Nishijima;R. Maki;Yoshikazu Suzuki
中科院分区:
材料科学4区
文献类型:
--
作者:
H. Nishijima;R. Maki;Yoshikazu Suzuki

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在这项研究中,我们尝试了制备多孔Al 2 TiO 5陶瓷与马铃薯淀粉作为造孔剂在相对较低的烧结温度下,反应烧结法使用细晶原料。在行星式球磨机中,将i-Al 2 O3粉末(0.1 μ m)和TiO 2金红石粉末(2 μ m)在乙醇中湿球磨2小时。将混合粉末与5 ~ 30wt%的马铃薯淀粉粉末在具有乙醇的玛瑙研钵中共混。将不含粘合剂的绿色样品在空气中在1300 - 1500°C下烧结2小时。该样品包含较细的闭孔(<1 m)以及较大的孔(5 μ m ~ 80 m)。这种微细结构的形成可以解释为:(1)马铃薯淀粉燃烧产生的局部加热效应;(2)水蒸气辅助效应。
In this study, we have tried to prepare porous Al2TiO5 ceramics with potato starch as a pore-forming agent at relatively low sintering temperatures by reactive sintering method using fine-grained starting materials. i-Al2O3 powder (0.1 m) and TiO2 rutile powder (2 m) were wet-ball milled in ethanol for 2 h in a planetary ball-mill. The mixed powder was blended with 5­ 30wt% of potato starch powder in an agate mortar with ethanol. Green samples with no binder were sintered at 1300­1500°C for 2 h in air. The sample contained finer closed pores (<1 m) as well as the larger pores (5­80 m). The finer microstructure formation can be explained by (1) the local heating effect via the combustion of potato starch, and (2) water vapor-assisted effect.