粉煤灰和稻壳灰一组份法制备碱活化材料的物理力学性能

Q3 Materials Science Cerâmica Pub Date : 2022-06-01 DOI:10.1590/0366-69132022683863213
L. F. T. Domingos, A. S. Azevedo, K. Strecker
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引用次数: 1

摘要

对用“一组分法”制备的碱活化材料(AAM)的物理力学性能进行了研究。为此,使用了粉煤灰和稻壳灰(RHA)等残留物。将碱性活化剂(NaOH)与RHA在750℃下煅烧2 h。干混合料是用煅烧材料重量的10%、20%和30%代替粉煤灰制备的。制备的样品在7天和28天后进行了表征。结果表明:所研究的变量(煅烧材料含量和室温固化时间)对试样的抗压强度(2.40 ~ 24.92 MPa)、弹性模量(0.90 ~ 12.32 GPa)、吸水率(2.92% ~ 13.64%)、表观孔隙率(4.82% ~ 20.02%)和密度(1.48 ~ 1.71 g/ cm3)有重要影响。结果表明,这些变化是由于干燥混合物中Na 2o和sio2浓度较高所致。
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Physical-mechanical behavior of alkali-activated materials produced by the one-part method based on fly ash and rice husk ash
The study on the physical-mechanical properties of alkali-activated materials (AAM) produced by the ‘one-part’ method was carried out. For this, residues such as fly ash and rice husk ash (RHA) were used. The alkaline activator (NaOH) was calcined together with RHA for 2 h at 750 °C. Dry mixes were prepared by replacing fly ash with 10%, 20%, and 30% by weight of the calcined material. The samples produced were characterized after 7 and 28 days of curing. The results showed that the investigated variables (calcined material content and curing time at room temperature) were responsible for important variations: compressive strength from 2.40 to 24.92 MPa, modulus of elasticity from 0.90 to 12.32 GPa, water absorption from 2.92% to 13.64%, apparent porosity from 4.82% to 20.02%, and density from 1.48 to 1.71 g/cm 3 . It was concluded that these variations were due to the high concentration of Na 2 O and SiO 2 in the dry mixtures.
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来源期刊
Cerâmica
Cerâmica Materials Science-Ceramics and Composites
CiteScore
1.90
自引率
0.00%
发文量
37
审稿时长
10 weeks
期刊介绍: A Revista Cerâmica, órgão oficial da Associação Brasileira de Cerâmica (ABCERAM) publica contribuições originais de interesse na área de cerâmica, compreendendo arte cerâmica, abrasivos, biocerâmicas, cerâmicas avançadas, cerâmica branca, cerâmica de mesa, cerâmica eletroeletrônica, cerâmica estrutural, cerâmica magnética, cerâmica nuclear, cerâmica óptica, cerâmica química, cerâmica termomecânica, cerâmica vermelha, cimento, compósitos de matriz cerâmica, materiais refratários, materiais de revestimento, matérias-primas, vidrados, vidros e vitrocerâmicas, análise microestrutural, ciência básica, instrumentação, processos de fabricação, síntese de pós, técnicas de caracterização etc.
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