首页> 外文会议>Ninth ACI international conference on superplasticizers and other chemical admixtures in concrete >Compatibility of Viscosity-Enhancing Agents and Superplasticizers in Cementitious and Model Systems: Rheology, Bleeding, and Segregation
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Compatibility of Viscosity-Enhancing Agents and Superplasticizers in Cementitious and Model Systems: Rheology, Bleeding, and Segregation

机译:水泥和模型系统中增粘剂和高效减水剂的相容性:流变学,出血和离析

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摘要

Viscosity-enhancing agents (VEA) are often used to improve the cohesiveness and stability of self-consolidating and underwater concrete. However, because of various types of interactions occurring between the VEA polymers and other components of fresh cementitious systems, the beneficial effects of the VEA is found to depend on the nature of both the VEA and the other the other components, particularly the superplasticizer (SP). Hence, different VEA-SP combinations are found to yield different dose-response effects in application. To investigate the origin and consequences of VEA-SP interactions, the influence of two common VEAs on the properties of cementitious and reference (limestone) systems was investigated through rheological and stability (bleeding and segregation) measurements in the presence of two typical SPs, a naphthalene-based (PNS) and a carboxylate-based (PC) polymer. The rheology of cement and powdered limestone pastes was evaluated through the Kantro mini-slump test and from measurements of yield stress and plastic viscosity in simple shear, and dynamic moduli obtained through oscillatory measurements. The bleeding and sedimentation behaviors were monitored using a multipoint conductivity method. Corresponding rheology and stability data were also obtained on mortars incorporating the same VEA-SP admixture combinations. In these systems, the different VEA-SP couples demonstrate varying compatibility which impact on their performance.
机译:增粘剂(VEA)通常用于提高自固结和水下混凝土的粘结性和稳定性。但是,由于VEA聚合物与新鲜胶结体系的其他组分之间发生各种相互作用,因此发现VEA的有益效果取决于VEA和其他组分的性质,特别是超塑化剂(SP) )。因此,发现不同的VEA-SP组合在应用中产生不同的剂量反应效果。为了研究VEA-SP相互作用的起源和后果,通过在两种典型SP存在下的流变和稳定性(渗出和偏析)测量,研究了两种常见VEA对胶结和参比(石灰石)系统性能的影响。萘基(PNS)和羧酸盐基(PC)聚合物。水泥和石灰石粉浆的流变性能通过Kantro小坍落度测试,简单剪切中屈服应力和塑性粘度的测量以及通过振荡测量获得的动态模量进行了评估。使用多点电导率方法监测渗出和沉积行为。在掺入相同VEA-SP外加剂组合的砂浆中也获得了相应的流变学和稳定性数据。在这些系统中,不同的VEA-SP对表现出不同的兼容性,从而影响其性能。

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