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Content of Aluminium Hydroxide in Lime-Silica Composite and its Influence on Tobermorite Formation

机译:石灰 - 二氧化硅复合材料中氢氧化铝含量及其对紫茎摩托岩形成的影响

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Aerated concrete is lightweight building material with excellent thermos-technical properties compared to its strengths, easy workability and economic efficiency. It is material with long tradition of manufacturing since 1924 but its potential is yet possible to be extended. Since the beginning pure ingredients such as lime and silica sand has been used. Nowadays we are looking for ways to replace these expensive raw materials with cheaper alternatives. One of the most important mechanical properties of each material is its strength. In case of aerated concrete the bearer of strength is mineral tobermorite. It is created by reaction of silicon oxides and lime at hydrothermal conditions. It belongs to the group of calcium hydrosilicates with chemical formula Ca_5Si_6O_(16)(OH)_2?4H_2O. Main goal of this paper is proposal for modification of the raw materials composition and autoclave regime of aerated concrete using aluminium hydroxide in order to improve final mechanical properties and mineralogical composition.
机译:充气混凝土是轻量级的建筑材料,具有优异的热水技术性能,而其优点与其优势相比,方便的可加工性和经济效率。自1924年以来,它是制造业长传统的材料,但其潜力也是可能的。由于开始纯成分,例如石灰和硅砂。如今,我们正在寻找用更便宜的替代品取代这些昂贵的原材料的方法。每种材料的最重要的机械性能之一是其强度。如果发生充气混凝土,则强度的承载是矿物质小矿物。它是通过在水热条件下的氧化硅和石灰的反应产生的。它属于化学式CA_5SI_6O_(16)(OH)_2?4H_2O的化学式氢化钙组。本文的主要目的是使用氢氧铝改变加气混凝土的原料组合物和高压釜制度的提议,以改善最终机械性能和矿物质组合物。

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