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Investigation of the Incompatibilities of Cement and Superplasticizers and Their Influence on the Rheological Behavior

机译:水泥与高效减水剂的不相容性及其对流变行为的影响的研究

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摘要

The rheological behavior of cement paste and the improvement of its flowability takes center stage in many research projects. An improved flowability can be achieved by the addition of superplasticizers (SP), such as polycarboxylate ethers (PCE). In order to be able to use these PCEs effectively and in a variety of ways and to make them resistant to changes in the environment, it is crucial to understand the influence of SPs on cement hydration. For that reason, the topic of this paper was the incompatibility of a specific SP and an ordinary Portland cement (OPC). The incompatible behavior was analyzed using rheological tests, such as the spread flow test and penetration test, and the behavior was compared by means of an ultrasound technique and explained by the phase content measured by in-situ X-ray diffraction (XRD) the heat evolution measured by calorimetry, and scanning electron microscope (SEM) images. We showed that the addition of the SP in a high dosage led to a prevention of the passivation of the most reactive and aluminum-containing clinker phases, aluminate and brownmillerite. This induced the aluminate reaction to take place in the initial period and led to an immediate stiffening of the cement paste and, therefore, to the complete loss of workability. The results showed that in addition to the ettringite, which began to form directly after water addition, hemicarbonate precipitated. The fast stiffening of the paste could be prevented by delayed addition of the SP or by additional gypsum. This fast stiffening was not desirable for SPs, but in other fields, for example, 3D printing, this undesirable interaction could be used to improve the properties of printable mortar.
机译:在许多研究项目中,水泥浆的流变行为及其流动性的改善都处于中心地位。通过添加超塑化剂(SP),例如聚羧酸酯醚(PCE),可以实现改善的流动性。为了能够有效地以多种方式使用这些PCE,并使其具有抵抗环境变化的能力,了解SP对水泥水化的影响至关重要。因此,本文的主题是特定的SP与普通的硅酸盐水泥(OPC)不兼容。使用流变测试(例如扩展流动测试和渗透测试)分析了不相容行为,并通过超声技术比较了行为,并通过原位X射线衍射(XRD)测量的相含量来解释热量。通过量热法和扫描电子显微镜(SEM)图像测量的演化。我们表明,以高剂量添加SP可以防止大多数反应性最强的含铝熟料相(铝酸盐和褐煤)的钝化。这导致铝酸盐反应在初期发生,并导致水泥浆立即硬化,因此完全丧失了可加工性。结果表明,除了钙矾石(其在加水后直接开始形成)之外,还沉淀了半碳酸盐。可以通过延迟添加SP或添加额外的石膏来防止浆料的快速硬化。这种快速的硬化对于SP来说是不希望的,但是在其他领域,例如3D打印中,这种不希望的相互作用可以用来改善可印刷砂浆的性能。

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