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Testing segregation and other rheological properties of self-consolidating concrete (SCC).

机译:测试自固结混凝土(SCC)的偏析和其他流变特性。

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摘要

Self-consolidating concrete (SCC) is a new type of high performance concrete that flows under its own weight, passes through intricate geometrical configurations, and fills the formwork without vibration and consolidation. Compared with normal concrete mixes, the composition and the rheological properties of SCC should be closely controlled in order to satisfy the fresh property requirements simultaneously. Moreover, the segregation resistance of self-consolidating concrete (SCC) is more sensitive to small variations of its properties. Segregation refers to movement of coarse aggregate relative to the mortar. Static segregation occurs when the concrete is at rest and the coarse aggregate sinks in the mortar. Dynamic segregation occurs when the concrete is flowing and the coarse aggregate lags behind the mortar. To study segregation and design an SCC mix, which is robust against small variations in raw materials, it is critical to be able to quickly quantify static and dynamic segregation and stability robustness. In this study, a modified Segregation Probe is introduced as a simple and fast method for testing static segregation and stability robustness of fresh concrete. On the other hand, Flow Trough was developed to measure dynamic segregation. It was found that mixture properties, such as higher paste volume, lower superplasticizer percentage by weight of cement, lower slump flow, smaller aggregate size, better gradation, and higher aggregate packing density may improve robustness and dynamic stability.;The effects of various aggregate properties on SCC rheology were investigated. It was found that lower superplasticizer dosage, higher aggregate volume, higher fine aggregate to coarse aggregate ratio, smaller aggregate size and lower aggregate packing density may increase yield stress of SCC mixture. Aggregate size had insignificant effect on plastic viscosity. Mixtures with Low slump flow (slump flow value less than 580 mm (23 in) in this study) exhibited anti-thixotropy manner, while mixtures with higher slump flow showed thixotropy manner.
机译:自固结混凝土(SCC)是一种新型的高性能混凝土,它在自重作用下流动,经过复杂的几何构型,并填充模板而没有振动和固结。与普通混凝土混合料相比,SCC的组成和流变性能应受到严格控制,以同时满足新鲜性能要求。此外,自凝结混凝土(SCC)的抗偏析性对其性能的微小变化更为敏感。偏析是指粗骨料相对于砂浆的运动。当混凝土静止且粗骨料沉入砂浆中时,发生静态偏析。当混凝土流动且粗骨料滞后于砂浆时,就会发生动态偏析。为了研究偏析并设计一种SCC混合物,这种混合物对原材料的微小变化具有鲁棒性,因此能够快速量化静态和动态偏析和稳定性的稳定性至关重要。在这项研究中,引入了改良的偏析探针,作为一种简单,快速的方法来测试新鲜混凝土的静态偏析和稳定性。另一方面,开发了流动槽来测量动态偏析。研究发现,混合料的特性,例如更高的浆料体积,更低的高效减水剂(按水泥重量计),更低的坍落度,更小的集料尺寸,更好的级配以及更高的集料填充密度,都可以提高坚固性和动态稳定性。研究了SCC流变性能。发现较低的减水剂用量,较高的骨料体积,较高的细骨料与粗骨料之比,较小的骨料尺寸和较低的骨料堆积密度可能会增加SCC混合物的屈服应力。骨料粒度对塑性粘度影响不大。低坍落度流量的混合物(本研究中坍落度流量值小于580毫米(23英寸))表现出抗触变性,而坍落度较高的混合物表现出触变性。

著录项

  • 作者

    Jovein, Hamed Bahrami.;

  • 作者单位

    University of Hawai'i at Manoa.;

  • 授予单位 University of Hawai'i at Manoa.;
  • 学科 Civil engineering.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 122 p.
  • 总页数 122
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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