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高分子ファイバー含有キャスタブル耐火物の乾燥挙動

机译:含聚合物纤维的可浇铸耐火材料的干燥性能

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Polypropylen (PP) fibers have been widely used in concretes and in refractory castables since their development in the early 70s. In addition to benefiting the mechanical strength of green castables, the use of fibers has been reported as an alternative method to minimize the risks of spelling and structural damage during drying and first heat-up. The purpose of this technique is to generate greater permeability and allow for the easy release of pressurized water vapor. The mechanism that increases permeability is temperature-activated and involves physicochemical changes in the polymeric material (such as melting and burnout), which heave permeable channels in the castables structure. However, it is not entirely clear how fibers affect the drying behavior of refractory castables, rendering it difficult to make a reliable choice of the most suitable fiber for each castable formulation and drying process. This lack of further research also hinders the development of new types of more efficient fibers. The objective of this work was to elucidate the mechanism whereby polymeric fibers affect the permeability and the drying behavior of refractory castables, using permeability evaluation techniques and thermal characterization of PP fibers.
机译:自从70年代初期发展以来,聚丙烯(PP)纤维已广泛用于混凝土和耐火浇注料中。除了有利于绿色浇铸料的机械强度外,据报道,使用纤维作为一种替代方法,可以最大程度地减少干燥和首次加热过程中发生拼写和结构损坏的风险。该技术的目的是产生更大的渗透性并允许轻松释放加压的水蒸气。增加渗透性的机制是温度激活的,并且涉及聚合材料中的物理化学变化(例如熔化和烧尽),从而在可浇铸结构中形成可渗透的通道。然而,尚不清楚纤维如何影响耐火浇注料的干燥性能,这使得难以针对每种浇注料配方和干燥工艺可靠地选择最合适的纤维。缺乏进一步的研究也阻碍了新型新型高效纤维的发展。这项工作的目的是通过使用渗透性评估技术和PP纤维的热特性,阐明聚合物纤维影响耐火浇注料的渗透性和干燥行为的机理。

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