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SEM Investigation of Microstructures in Hydration Products of Portland Cement

机译:波特兰水泥水合产物微观结构的SEM研究

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Portland cement is the one of the main ingredients in the manufacture of many building materials include concrete composites. The phase composition of hydration products is controlled by means of XRD and DTA/TG analysis. Observations of phase changes and microstructure of maturing cement pastes can also be observed using scanning electron microscopy (SEM) techniques combined with chemical analyzes in microareas (EDS analysis). Hydrating in time cement paste is composed mainly of hydrated silicates of calcium so called C-S-H-phase accompanied with a calcium hydroxide (portlandite) and hydration products of calcium aluminate i.e. ettringite. SEM analysis of changes in the morphology and microstructure of cement pastes allow to track the hydration progress observed mainly by changes in the C-S-H phase. The initial stages of hydration of this phase is characterized by radial concentration of fibers or needles, often narrowed at the ends. This fibers grow from the surface of the cement grains. The increase in the degree of C-S-H structure orientation is shown by formation of fibers lattice, sometimes three-dimensional plates so called "honeycomb", which is transformed into the form of a closely-packed, isometric grains. In addition, besides C-S-H cement phase investigation, scanning electron microscopy can also be applied to observation of the crystals formation of tobermorite, ettringite and relicts of portlandite, that often can't be detected by XRD and DTA/TG due to their small amount in mineral composition of concrete.
机译:波特兰水泥是许多建筑材料制造中的主要成分之一,包括混凝土复合材料。通过XRD和DTA / TG分析来控制水合产物的相组成。使用扫描电子显微镜(SEM)技术也可以观察到熟化水泥浆料的相变和微观结构,所述扫描电子显微镜(SEM)技术与MicroAreas(EDS分析)联合化学分析。在时间水泥糊中水合作用主要由水合硅酸钙组成,所谓的C-S-H相伴随着氢氧化钙(Portlandite)和铝酸钙的水合产物I.Ettringite。 SEM分析水泥浆料形态和微观结构的变化允许跟踪主要通过C-S-H相的变化观察的水合进展。该阶段的初始阶段的特征在于纤维或针的径向浓度,通常在末端变窄。该纤维从水泥颗粒的表面生长。 C-S-H结构取向程度的增加通过形成纤维晶格而示出,有时是三维板,如称为“蜂窝状”,其转化为紧密填充的等距晶粒的形式。另外,除了CSH水泥相研究之外,还可以应用扫描电子显微镜观察幼虫,Ettringite和诱捕的植物形成的晶体形成,由于它们的少量,XRD和DTA / TG通常无法检测到该晶体。混凝土的矿物成分。

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