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Investigations about the effect of aggregates on strength and microstructure of geopolymeric mine waste mud binders

机译:骨料对矿聚废泥浆黏结剂强度和微观结构影响的研究

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Geopolymeric binders appear to be an alternative to traditional Portland cement, due to high mechanical performances and environmental advantages. Some aspects related to the effect of aggregates in the microstructure and mechanical behaviour of geopolymeric mine waste mud (GMWM) binders are reported in the present study. Compressive and tensile strength of mine waste mud binders were analyzed. The factors investigated were the aggregate/binder ratio, the aggregate dimension and aggregate type, schist, granite and limestone. Test results showed that GMWM binders have a very high strength at early ages and also possess a very high tensile strength. It's suggested that behaviour may be due to the dissolution of quartz and alumina in the presence of alkalis enhancing bonding between paste and aggregates. The aggregate dimension showed only significant effect on tensile strength. Limestone aggregates showed a chemical bond to the alkali-activated paste but presented higher shrinkage. It was also found that no traditional porous ITZ was detected in GMWM binders.
机译:由于高的机械性能和环境优势,地聚合物粘合剂似乎是传统波特兰水泥的替代品。在本研究中报道了与集料对地质聚合物矿山废泥(GMWM)粘结剂的微观结构和力学行为的影响有关的某些方面。分析了矿山废泥粘结剂的抗压强度和抗拉强度。研究的因素是骨料/粘结剂的比例,骨料的尺寸和骨料类型,片岩,花岗岩和石灰石。测试结果表明,GMWM粘合剂在早期具有很高的强度,并且还具有很高的拉伸强度。这表明其行为可能是由于在碱的存在下石英和氧化铝的溶解增强了碱在糊料和骨料之间的结合。骨料尺寸仅显示出对拉伸强度的显着影响。石灰石聚集体对碱活化的糊状物显示出化学键,但收缩率更高。还发现在GMWM粘合剂中未检测到传统的多孔ITZ。

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