Relaxation of ceramic tile stresses generated by fast drying: a kinetic model

J. Amorós, V. Cantavella, E. Blasco
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Abstract

Abstract Unfired tile mechanical properties are very important in the ceramic tile manufacturing process. Inadequate mechanical properties lead to rejects (both in unfired and fired tiles). Unfired tile mechanical strength changes significantly after the tiles exit the industrial dryer. This behaviour can be explained by assuming that the fast-drying process generates stresses in the tile, which subsequently relax. A kinetic model has been derived, based on Maxwell’s viscoelastic elements, which explains the development of dried tile mechanical strength. This increases asymptotically when the dried tiles are stored in dry conditions. However, if tiles adsorb humidity (upon exiting the dryer), tile mechanical strength rises and then decreases. This is the result of two opposing phenomena: stress relaxation raises mechanical strength while the concurrent rise in moisture content lowers mechanical strength. The developed model successfully describes this joint mechanical behaviour. Keywords: ceramic tiles, fast drying, stress relaxation, kinetic model
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快速干燥对瓷砖应力松弛的动力学模型
摘要:未烧结砖的力学性能在瓷砖生产过程中是非常重要的。不充分的机械性能导致废品率(无论是未烧制的还是烧制的)。未经烧制的瓷砖经过工业干燥机后,其机械强度变化明显。这种行为可以通过假设快速干燥过程在瓷砖中产生应力来解释,这些应力随后会放松。以麦克斯韦粘弹性单元为基础,推导了干瓦力学强度的动力学模型。当干燥的瓦片储存在干燥的条件下,这种情况会逐渐增加。然而,如果瓷砖吸附湿度(在离开干燥器时),瓷砖的机械强度先上升后下降。这是两种相反现象的结果:应力松弛提高了机械强度,而同时含水率的增加降低了机械强度。所建立的模型成功地描述了这种接头的力学行为。关键词:瓷砖,快速干燥,应力松弛,动力学模型
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