The influence of foundry wastes on the quality of autoclaved sand-lime materials

IF 0.5 Q4 MATERIALS SCIENCE, COMPOSITES
Z. Pytel
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Abstract

The paper presents the results of research on the possibility of reusing selected types of foundry waste, i.e. used molding and core sands and dust obtained in the process of their regeneration, as alternative or supplementary materials in relation to the quartz sand originally used in manufacturing of sand-lime bricks. In the production technology of sand-lime products, quartz sand is used as aggregate. A rational factor in favor of such a technological solution is the high content of crystalline silica in the waste molding and core sands, in which the mineral matrix is composed of good quality quartz sands. The research concept covers production of a series of samples of autoclaved silicate materials formed by pressing, from raw material mixtures involving the discussed waste materials. In the laboratory tests conducted for the preparation of autoclaved materials of the sand-lime brick type, apart from traditional raw materials in the form of natural quartz sand and burnt lime, different molding waste and/or core sand materials and post-regenerative dusts were used for composing raw material mixtures. Foundry industry wastes were introduced into the basic raw material based on the gradually increasing substitution of quartz sand, in the amount within the range of 0 100% (wt. %). The assessment of the possibility of using the discussed waste materials in the indicated direction was based on the result of a comparative analysis, covering the main functional characteristics of two types of materials, i.e. reference material, obtained from raw material mixture, containing no waste and series of experimental materials, produced with various quantitative and qualitative contributions of waste materials. The characteristics of the obtained autoclaved materials are also supplemented by the results of the leaching tests, for heavy metal elements and the analysis of selected aspects of the microstructure carried out by the SEM and EDAX method. The results of the research show that it is possible to use casting waste compounds after their processing, in the production of autoclaved sand-lime products. This processing of wastes is twostage operation. The purpose of the first stage is to restore the primary graining of quartz sand used to obtain foundry moulds and cores, while the second stage is to remove the organic binder residues that appear on the quartz sand grains in the form of thin layers hindering the reaction with burnt lime.
铸造废弃物对蒸压砂-石灰材料质量的影响
本文介绍了对选定类型的铸造废料进行再利用的可能性的研究结果,即在再生过程中获得的用过的模砂和芯砂和粉尘,作为与最初用于制造砂-石灰砖的石英砂相关的替代或补充材料。在砂石产品的生产工艺中,采用石英砂作为骨料。有利于这种工艺解决方案的合理因素是,废旧模砂和芯砂中结晶二氧化硅含量高,其中矿物基质由优质石英砂组成。该研究概念涵盖了一系列通过压制形成的高压蒸压硅酸盐材料样品的生产,这些样品来自涉及所讨论的废物的原料混合物。在为制备砂-石灰砖型蒸压材料而进行的实验室试验中,除了以天然石英砂和烧石灰形式的传统原料外,还使用不同的成型废料和/或芯砂材料以及再生后粉尘组成原料混合物。在逐步增加石英砂替代量的基础上,将铸造工业废弃物引入基础原料,用量在0 ~ 100% (wt. %)范围内。对所讨论的废物在指定方向上使用的可能性的评估是基于比较分析的结果,包括两类材料的主要功能特征,即从原料混合物中获得的不含废物的参考材料和一系列实验材料,这些材料由各种定量和定性贡献的废物生产。所获得的高压灭菌材料的特性还得到了浸出试验结果的补充,重金属元素和通过SEM和EDAX方法对微观结构的选定方面进行了分析。研究结果表明,铸造废料经处理后,可用于生产蒸压砂-石灰产品。这种废物处理是两阶段操作。第一阶段的目的是恢复用于获得铸造模具和芯的石英砂的原始颗粒,而第二阶段是去除石英砂颗粒上以薄层形式出现的有机粘合剂残留物,这些残留物阻碍了与烧石灰的反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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12 weeks
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