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Investigation of the mechanism of slow hydration in low w/c ratio RPC matrix under long-term autoclaved curing

机译:长期高压固化条件下低w / c比RPC基质中缓慢水合机理的研究

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Reactive Powder Concrete (RPC) is a cementitious composite which is famous for its excellent mechanical properties and durability. Long-term evolution of hydrated products in RPC is important for the studies about durability of RPC. In this paper, under high temperature hydrothermal condition, long-term hydration process and evolution of hydrated products of the RPC matrix have been studied. During the 0-72 h of autoclaved curing, hydration of the RPC matrix was relatively fast. However, after 72 h of curing, hydration of the silica fume (SF) and fused quartz powders (FP) in RPC matrix was very slow. After 480 h of autoclaved curing, few crystalline hydration phases in the RPC matrix were observed. Major phases in the RPC matrix cured for 480 h were calcium silicate hydrate (C-S-H gel), unhydrated cement clinker and SF/FP. According to the different hydration behaviors in the RPC matrix and entrained pores, the lack of liquid environment and micro-pore waters were put forward to explain the slow hydration in the matrix. In addition, C-S-H in the RPC matrix tended to form tobermorite and jennite under autoclaved condition. However, the crystallization of C-S-H was accompanied with expansion and crystalline stress. Hence the formation of crystalline products was restricted in the RPC matrix. The limited hydration process and slow crystallization of the hydrates of RPC matrix under long-term hydrothermal condition provide the possibility for the RPC materials to be applied in some special environments. (C) 2019 Elsevier Ltd. All rights reserved.
机译:活性粉末混凝土(RPC)是一种水泥复合材料,以其出色的机械性能和耐用性而闻名。 RPC中水合产物的长期演变对于研究RPC的耐久性非常重要。本文在高温水热条件下,研究了RPC基质的长期水合过程和水合产物的演化。在高压灭菌的0-72小时内,RPC基质的水合作用相对较快。但是,固化72小时后,硅粉(SF)和熔融石英粉末(FP)在RPC基质中的水合非常缓慢。经过480 h高压灭菌处理后,在RPC基质中几乎观察不到结晶水合相。固化480小时的RPC基质中的主要相为水合硅酸钙(C-S-H凝胶),未水合水泥熟料和SF / FP。根据RPC基质和夹带孔的不同水化行为,提出缺乏液体环境和微孔水来解释基质中缓慢的水合作用。另外,RPC基质中的C-S-H在高压灭菌条件下易于形成雪铁矿和水润沸石。然而,C-S-H的结晶伴随着膨胀和结晶应力。因此,结晶产物的形成被限制在RPC基质中。在长期的水热条件下,RPC基体的水合过程有限,结晶缓慢,这为将RPC材料应用于某些特殊环境提供了可能性。 (C)2019 Elsevier Ltd.保留所有权利。

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