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LONG-TERM INVESTIGATION OF AUTOCLAVED AERATED CONCRETE PRODUCED FROM FLUIDIZED FLY ASH

机译:由流化粉煤灰制备的高压灭菌混凝土的长期调查

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The study contributes to the knowledge of properties of autoclaved aerated concrete (AAC) formed with the utilization of modified raw materials-new generation of fly ash from coal power plants (fluidized fly ash). The fluidized fly ash is a mixture of bed and fluid fly ashes, in the ratio 2 : 1. The data of chemical and phase composition confirmed the high contents of CaSO4,, CaO and clay minerals (illit, diaspor). The fluidized fly ash was used in doses of 0 – 30 – 100 %-ages. The AAC from commercial production (with fly ash from classical combustion) was used for purposes of comparison. Presented will be the results of long-range experiments aimed at the durability of that material, the results of three years tests are discussed. The strength of samples decreases with the addition of fluidized fly ash, the lowest values exhibiting by samples with 100 %-ages of fluidized fly ash in the raw mixture. Both phase analysis and strength values show the higher tendency of samples with fluid fly ash towards thaumasite formation as the result of partial conversion of hydraulic C-S-H and tobermorite-like phases to nonbinding thaumasite. However, the expansion of test probes connected with the formation of thaumasite, and also gypsum and ettringite, in AAC does not exert the scope of deterioration seen in the concretes. The difference is due to the sufficient and accessible pore space in AAC, these data contribute also to the discussion of topics of thaumasite formation vs. thaumasite sulfate attack. The results represent a basis of the proposals of modified production of AAC.
机译:该研究有助于了解用于利用改性原料 - 新一代煤发电厂(流化粉煤灰)的粉煤灰形成的高压灭菌混凝土(AAC)的特性。流化粉煤灰是床和流体飞行灰的混合物,其比例为2:1。化学和相组成的数据证实了CasO4 ,, CaO和粘土矿物质的高含量(粘土,缺口)。流化的粉煤灰以0-30-100%的剂量使用。从商业生产(来自古典燃烧的粉煤灰)的AAC用于比较的目的。提出将是远程实验的结果,旨在该材料的耐用性,讨论了三年的试验结果。随着加入流化粉煤灰的添加,样品的强度降低,在原料混合物中具有100%流化粉煤灰的样品表现出的最低值。相分析和强度值均显示出液体粉煤灰的样品较高趋势,因为液压C-S-H和吐摩钛矿相对于非粘结甲酸盐的液体相反的结果。然而,在AAC中形成与甲磺酸盐形成的测试探针和葡萄显和eTtringite的膨胀不会施加混凝土中看到的劣化范围。差异是由于AAC中足够和可接近的孔隙空间,这些数据也有助于讨论甲壳酸盐形成与硫酸盐硫酸盐发作的议题。结果代表了AAC的修改生产建议的基础。

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