...
首页> 外文期刊>Construction and Building Materials >Mechanical properties, radiation mitigation and fire resistance of OPC-recycled glass powder composites containing nanoparticles
【24h】

Mechanical properties, radiation mitigation and fire resistance of OPC-recycled glass powder composites containing nanoparticles

机译:含纳米颗粒的OPC再循环玻璃粉末复合材料的机械性能,辐射缓解和耐火性

获取原文
获取原文并翻译 | 示例
           

摘要

The main target of this research is the utilization of low- cost nanoparticles as substantive additions for bolstering the physicomechanical, mitigation of gamma radiation, thermal stability and morphological characteristics of OPC-recycled glass powder hardened composites. Nano MgO and MgFe2O4 spinel NPs were synthesized via the sol-gel route. Characterization of MgO (NM) and MgFe2O4 (NMF) spinel NPs was done using XRD, SEM, TEM, and EDX techniques. Compressive strength, water absorption, bulk density, and total porosity results revealed that partial replacement of OPC by different ratios of waste glass powder waste (WGP) affect negatively on the physicomechanical properties of hardened composites. Inclusion of NPs (NM or NMF) 0.5 and 1 mass % boosts the physicomechanical features of different OPC-WGP hardened composites at most curing ages. The activity of synthesized MgO and MgFe2O4 NPs was affirmed via TGA/DTG and XRD techniques which indicated the formation of diverse hydration yields like CSHs, AFt, AFm, CASHs, MH, CAHs, MSH, CFSH, and CFH that enhances the physicomechanical characteristics as well as the gamma- rays shielding % of different OPC-WGP hardened nanocomposites. The thermal stability test was performed at elevated temperatures (300, 500 and 700 degrees C) for 180 min for all hardened prepared composites after curing for 28 days under normal conditions. The results indicated that the composite containing OPC-10WGP-0.5NMF showed the highest thermal stability. These results were confirmed via SEM/EDX images which displayed a compact and closely packed microstructure of rods-like crystals of CSHs, stacked plates of CASHs, ettringite fibers and symmetrical hexagonal sheets of CH. (C) 2020 Elsevier Ltd. All rights reserved.
机译:该研究的主要目标是利用低成本纳米粒子作为实质性添加,用于抵抗物理机械,减轻γ辐射的减轻,耐磨性玻璃粉末硬化复合材料的热稳定性和形态学特性。通过溶胶 - 凝胶途径合成纳米MgO和MgFe2O4尖晶石NP。使用XRD,SEM,TEM和EDX技术进行MgO(NM)和MgFe2O4(NMF)尖晶石NPS的表征。抗压强度,吸水,堆积密度和总孔隙率结果显示,通过不同的废玻璃粉末废物(WGP)的不同比例的部分替代对硬化复合材料的物理机械性能产生负面影响。包含NPS(NM或NMF)0.5和1质量%,在大多数固化年份提高不同OPC-WGP硬复合材料的物理机械特征。通过TGA / DTG和XRD技术肯定了合成MgO和MgFE2O4 NPS的活性,所述TGA / DTG和XRD技术肯定了不同的水合产量,如CSH,AFT,AFM,现金,MH,CAHS,MSH,CFSH和CFH,增强了物理机械特征以及粘液屏蔽占不同OPC-WGP硬化纳米复合材料的含量。在正常条件下固化后,在升高的温度(300,500和700℃)下在升高的温度(300,500和700℃)下进行热稳定性试验180分钟。结果表明,含有OPC-10WGP-0.5NMF的复合材料显示出最高的热稳定性。通过SEM / EDX图像证实了这些结果,该图像显示了CSH的杆状晶体的紧凑且紧密堆积的微结构,现金的堆叠板,Ettringite纤维和Ch的对称六角形片材。 (c)2020 elestvier有限公司保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号