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Understanding the Effectiveness of Polycarboxylates as Grinding Aids

机译:了解多羧酸盐作为研磨辅助脂肪的有效性

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Over recent years, polycarboxylate superplasticizers have found their way into grinding aids used in cement production to reduce the electrical energy consumption. The effectiveness of these large molecules challenges the pre-existing theories concerning the factors that govern the performance of grinding aids. This paper reports on molecular dynamics simulations to examine a physical property believed to control the effectiveness of grinding aids, namely their adsorption energy. The molecules selected are TIPA (Triisopropanol amine), TEA (Triethanol amine) and glycerine. The surfaces examined are dry and hydroxylated C3S surfaces, which are believed to be more representative of reality, since some humidity is always present during the grinding. Detailed results of this part of the work show that glycerine interacts relatively more with dry as well as hydroxylated surfaces of C3S both at 25°C, ambient temperature and 110°C, grinding temperature with respect to TIPA and TEA. These result help to better understand the specific interaction of these molecules with cement surfaces. In the second part of this work oligomers of some PCE superplasticizers are examined with similar numerical tools on dry and hydroxylated surfaces of C3S. Results for different types of these oligomers, together with the previous results, shed light onto the reasons why polycarboxylate superplasticizers have found to also be effective grinding aids in cement production.
机译:近年来,多羧酸酯超塑性剂已发现它们进入水泥生产中使用的磨削助剂,以降低电能消耗。这些大分子的有效性挑战了有关管理磨削艾滋病性能的因素的预先存在的理论。本文报道了分子动力学模拟,以检查据信控制磨削助剂的有效性的物理性质,即它们吸附能量。选择的分子是Tipa(三异丙醇胺),茶(三乙醇胺)和甘油。检查的表面是干燥和羟基化的C3S表面,被认为是现实的更恰当的,因为在研磨过程中总是存在一些湿度。该工作部分的详细结果表明,甘油在25℃,环境温度和110℃下的C3s的羟基化表面相对较多,磨削温度相对于Tipa和Tipa和茶。这些结果有助于更好地了解这些分子与水泥表面的特定相互作用。在该工作的第二部分中,在C3s的干燥和羟基表​​面上用类似的数值工具检查一些PCE超塑料的低聚物。结果不同类型的这些低聚物,以及先前的结果,揭示了多羧酸酯超塑性化剂发现的原因也是在水泥生产中有效的研磨助剂。

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