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Effect of Milling Time on the Physical and Mechanical Properties of Celsian-Mullitc Composites Synthesized from Coal Fly Ash

机译:研磨时间对煤粉煤灰合成的煤层 - 截绒复合材料的物理和力学性能

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Four Celsian (Ba_(0.75)Sr_(0.25)Al_2Si_2O_8)/Mullite (Al_6Si_2O_(13)) composites, with potential structural applications at high temperatures, are synthesized from coal fly ash (byproduct of a Mexican coal-burning power plant, constituted mainly by SiO_2 and Al_2O_3). Nominal Celsian/Mullite weight ratios studied are 80/20,60/40,40/60 and 20/80. Mullite is synthesized separately at 1600°C/2h and then mixed with a Celsian precursor mixture previously calcined at 900°C/5h. During this process the Celsian phase is formed by a solid state reaction at 1100-1400°C/5h. Prior to this, the reacting mixture is milled in a planetary mill during 1 or 2h and then compacted by uniaxial and cold isostatic pressing. The microstructure and phase composition of the synthesized composites are characterized by X-Ray Diffraction (XRD) and Scanning Electron Microscopy (SEM/EDS). Their dynamic Young's modulus is measured by an ultrasonic technique, and their mechanical strength is evaluated from flexural tests carried out at room temperature. The expected phases are obtained in all cases, although with some differences with respect to their expected relative proportions, according to the studied nominal compositions. In general, the longest milling time employed produced samples with the largest degree of crystallinity and density, as well as with the best microstructural characteristics and mechanical properties.
机译:四个开斯(BA_(0.75)SR_(0.25)AL_2SI_2O_8)/莫来石(AL_6SI_2O_(13))复合材料,具有高温下的潜在结构应用,由煤粉煤灰(墨西哥燃煤发电厂的副产品主要构成)合成通过sio_2和al_2o_3)。学习的标称式Celsian / Mullite重量比为80 / 20,60 / 40,40 / 60和20/80。莫来石在1600℃/ 2H下单独合成,然后与先前在900℃/ 5h煅烧的摄氏前体混合物混合。在此过程中,通过在1100-1400℃/ 5h的固态反应形成的温度相。在此之前,在1或2H期间,在行星轧机中研磨反应混合物,然后通过单轴和冷等静压压制压实。合成复合材料的微观结构和相组合物的特征在于X射线衍射(XRD)和扫描电子显微镜(SEM / EDS)。它们的动态杨氏模量通过超声波技术测量,并且它们的机械强度由室温下进行的弯曲试验评估。根据所研究的标称组合物,尽管在所有情况下,但在所有情况下都获得了预期相。通常,最长的研磨时间使用具有最大度的结晶度和密度的样品,以及最佳的微观结构特性和机械性能。

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