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Laboratory and field performance of biodegradable release agents for hydraulic concrete

机译:水硬性混凝土可生物降解脱模剂的实验室和现场性能

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Raw vegetable oils and their emulsions have been used as biodegradable release agents for concrete. However, there is no scientific explanation linking the chemical composition to their release performance. The present study was divided into two phases. In the first phase, different vegetable oils with varying degrees of refinement were chemically characterized by middle range Fourier transform infrared spectroscopy (Mid-FTIR), and their viscosities were measured. For comparison purposes, two commercial release agents based on mineral oil were used. In the second phase, emulsions containing bleached soybean oil, water and some emulsifiers were prepared. The performance of the oils and emulsions as demolding agents in steel/concrete interfaces was measured by visual rating, image analysis and bond strength. The results indicate that almost all of the vegetable oils showed better performance than that of the two mineral oil-based agents, which is explained by the higher affinity of glycerol esters for metal surfaces and higher intermolecular interactions. The Mid-FTIR espectrum analysis indicates that oils having larger absorption areas under the curve at the methylene group exhibit better performance as release agents. In addition, the Mid-FTIR analysis allowed identification of the main molecular groups and differentiation between oil samples. In the second phase, the water/oil emulsion stabilized with organophilic clay performed the best. In addition to the lubricating effect of the emulsion, the better performance was also due to the saponification reaction between the acylglycerides and the Ca(OH)(2). The tangential adhesion was reduced to approximately 64 % compared to that of a mold without a release agent.
机译:未加工的植物油及其乳剂已用作混凝土的可生物降解的脱模剂。但是,没有科学的解释将化学成分与其释放性能联系起来。本研究分为两个阶段。在第一阶段,通过中程傅里叶变换红外光谱(Mid-FTIR)对不同精制程度的不同植物油进行化学表征,并测量其粘度。为了比较,使用了两种基于矿物油的商业脱模剂。在第二阶段中,制备了包含漂白大豆油,水和一些乳化剂的乳液。通过目视评估,图像分析和粘结强度来测量油和乳液在钢/混凝土界面中作为脱模剂的性能。结果表明,几乎所有的植物油都比两种基于矿物油的试剂表现出更好的性能,这可以通过甘油酯对金属表面的更高亲和力和更高的分子间相互作用来解释。 Mid-FTIR光谱分析表明,在曲线下的亚甲基处具有较大吸收面积的油表现出更好的脱模剂性能。此外,中红外光谱分析可以鉴定主要分子基团并区分油样品。在第二阶段中,用亲有机性粘土稳定的水/油乳液表现最佳。除了乳化液的润滑作用外,更好的性能还归因于酰基甘油酯与Ca(OH)(2)之间的皂化反应。与没有脱模剂的模具相​​比,切向粘合力降低到大约64%。

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