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首页> 外文期刊>Journal of the European Ceramic Society >Rheology and processability of multi-walled carbon nanotubes--ABSE polycarbosilazane composites
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Rheology and processability of multi-walled carbon nanotubes--ABSE polycarbosilazane composites

机译:多壁碳纳米管的流变学和可加工性--ABSE聚碳硅氮烷复合材料

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摘要

An inexpensive method has been found to produce ceramic SiCN-fibres via the precursor route consisting of five processing steps: synthesis of the polymer, preparation of the spinning mass, melt-spinning, curing via electron beam and subsequent pyrolysis at 1100 deg C in a nitrogen atmosphere. A special solid and meltable fibre polymer, the so-called polycarbosilazane ABSE, has been developed in the last decade for this purpose. Due to its low molecular weight, an adequate catalytic and thermal aftertreatment was necessary to guarantee a stable melt-spinning process. This article discusses an alternative way to tailor the rheology of the spinning mass, i.e. the addition of multi-walled carbon nanotubes (MWCNTs) to the ABSE melt. Measuring the viscoelastic properties of the prepared compounds as well as their behaviour during the melt-spinning process demonstrates the strong interaction between the MWCNTs and the precursor melt. Even 1 wt. percent of the MWCNTs shows a significant positive influence on the Theological behaviour and thus an improvement in the spinnability of the ABSE crude precursor. The influence of the addition of a dispersing agent is investigated as well. In using a dispersing agent, the level of homogeneous dispersion of the MWCNTs increases, whereas the interactions between the MWCNTs and the precursor melt decrease. Thus, the addition of MWCNTs represents a new way to modify the ABSE precursor for the melt-spinning process.
机译:已经发现一种廉价的方法可以通过前体路线生产陶瓷SiCN纤维,该方法包括五个处理步骤:聚合物的合成,纺丝物料的制备,熔融纺丝,通过电子束固化以及随后在1100℃下热解。氮气气氛。为此,近十年来开发了一种特殊的固体和可熔纤维聚合物,即所谓的聚碳硅氮烷ABSE。由于其低分子量,必须进行足够的催化和热后处理,以确保稳定的熔融纺丝工艺。本文讨论了一种调整纺丝流变性的替代方法,即在ABSE熔体中添加多壁碳纳米管(MWCNT)。测量所制备的化合物的粘弹性特性以及它们在熔融纺丝过程中的行为,证明了MWCNT与前体熔融物之间有很强的相互作用。甚至1 wt。 %的MWCNT显示出对神学行为的显着积极影响,因此改善了ABSE原油前体的可纺性。还研究了添加分散剂的影响。在使用分散剂中,MWCNT的均匀分散水平增加,而MWCNT与前体熔体之间的相互作用降低。因此,添加MWCNT代表了一种新的改性ABSE前体以用于熔体纺丝工艺的方法。

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