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首页> 外文期刊>Journal of the European Ceramic Society >The effect of the production method on the mechanical strength of an alumina porous hollow fiber
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The effect of the production method on the mechanical strength of an alumina porous hollow fiber

机译:生产方法对氧化铝多孔中空纤维机械强度的影响

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The mechanical strength of inorganic porous hollow fibers is an important property and is strongly affected by the production method. Three production methods for fibers are compared: non-solvent induced phase separation (NIPS), bio-ionic gelation with an internal multivalent ion source (BIG-I), and with an external ion source (BIG-E). The BIG-E fibers show insufficient mechanical integrity for strength analysis. Fibers prepared via BIG-I have a larger bending strength compared to fibers prepared using NIPS or BIG-E, combined with a larger scatter in their strength data. The large scatter likely originates from surface deformations present in the fiber wall, which can be reduced by further optimization of the production method. Statistical models are fitted to the measured strength data. The NIPS and BIG-I production methods yield fibers of which the strength distribution follows the Weibull model, presuming failure occurs at the weakest link. (C) 2017 Elsevier Ltd. All rights reserved.
机译:无机多孔中空纤维的机械强度是重要的性质,受到生产方法的强烈影响。比较三种纤维的生产方法:非溶剂诱导相分离(NIPS),具有内部多价离子源(BIG-I)的生物离子凝胶,以及外离子源(BIG-E)。 BIG-E纤维显示出强度分析的机械完整性不足。通过大的纤维制备的纤维具有更大的弯曲强度与使用咬合或大E制备的纤维相比,与它们的强度数据中的较大散射相结合。大散射可能来自纤维壁中存在的表面变形,这可以通过进一步优化生产方法来减少。统计模型适用于测量的强度数据。 NIPS和BID-I生产方法产生强度分布遵循Weibull模型的纤维,推测失败发生在最薄弱的联系。 (c)2017 Elsevier Ltd.保留所有权利。

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