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Cellular arrays of alumina fibres

机译:氧化铝纤维的蜂窝状阵列

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In conventional short fibre reinforced metal matrix composites, the quest is for a method of processing that will provide a homogeneous and preferably random arrangement of fibres. In contrast, recently developed contiguity models for multiphase composites on the one hand, and finite element modelling of structures on the other, independently predict that the modulus enhancement provided by short-fibre reinforcement can be improved if the fibres are arranged in a cellular structure. Furthermore, provided the metallic phase is continuous, the toughness of the composite may also thereby be enhanced. This paper, which is part of an attempt to explore the question of reinforcement arrangements, presents a method for making ceramic preforms for MMCs in which a polymeric foam is used to position the fibres in cellular array. The polymer is then removed by pyrolysis and the preform of fibres is strengthened by sintering. During high temperature sintering, phase changes and grain growth degraded the fibre. Methods of increasing the compressive strength of the preform by incorporation of alumina particles and by subsequent infiltration are described and compared. (C) 2001 Kluwer Academic Publishers. [References: 25]
机译:在常规的短纤维增强金属基复合材料中,寻求的是一种能够提供均匀且优选无规排列的纤维的加工方法。相反,一方面,最近开发的用于多相复合材料的连续性模型,另一方面,结构的有限元建模,独立地预测,如果将纤维排列在蜂窝结构中,则短纤维增强所提供的模量增强可以得到改善。此外,如果金属相是连续的,则复合物的韧性也因此可以提高。本文是探索增强布置问题的尝试的一部分,提出了一种制造MMC陶瓷预成型件的方法,其中使用聚合物泡沫将纤维定位在细胞阵列中。然后通过热解除去聚合物,并通过烧结增强纤维的预成型坯。在高温烧结过程中,相变和晶粒生长使纤维降解。描述并比较了通过掺入氧化铝颗粒和随后进行渗透来提高预成型件抗压强度的方法。 (C)2001 Kluwer学术出版社。 [参考:25]

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