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Structure Characterization and Optimization of Process Parameters on Compressive Properties of Glass-Based Foam Composites

机译:玻璃基泡沫复合材料压缩特性的结构表征和工艺参数优化

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摘要

The influence of process parameters, including temperature, reaction time, and amount of foaming agent (SiC), on compressive property and porosity of glass-based foam composites was studied by Box-Behnken experimental design. The interaction between the process parameters and their statistical significance on porosity and compressive strength was assessed through ANOVA. The glass-based foams, prepared from silicate wastes, were characterized by XRD, SEM, DSC, and compressive tests. Processing temperature was considered as the most significant factor. The two crystalline phases resulting from the heat treatment at 900-1000℃ have been identified as Ca_2M-g_(0.75)Al_(0.25)Si_(0.75)O_7 and CaSiO_3. Two quadratic equations, correlating the compressive strength and porosity with the three process parameters, were developed whose R~2 values are 0.9977 and 0.935, respectively. The optimal process parameter settings to achieve an adequate porosity (56.6%) and high compressive strength (11.7 MPa) were determined. The glass-based products exhibited typical behavior of brittle foams. The stress-displacement curve implies that the failure mode is mainly due to damage accumulation process. Box-Behnken experimental design offers a cost effective option in the mass production of a wide range of glass-based foam products with promising engineering applications.
机译:通过Box-Behnken实验设计研究了温度,反应时间和发泡剂(SiC)量等工艺参数对玻璃基泡沫复合材料压缩性能和孔隙率的影响。通过方差分析评估工艺参数之间的相互作用及其对孔隙率和抗压强度的统计意义。由硅酸盐废料制备的玻璃基泡沫材料通过XRD,SEM,DSC和压缩测试进行了表征。加工温度被认为是最重要的因素。 900-1000℃热处理产生的两个晶相被鉴定为Ca_2M-g_(0.75)Al_(0.25)Si_(0.75)O_7和CaSiO_3。建立了两个将抗压强度和孔隙率与三个工艺参数关联的二次方程,其R〜2值分别为0.9977和0.935。确定了实现适当孔隙率(56.6%)和高抗压强度(11.7 MPa)的最佳工艺参数设置。基于玻璃的产品表现出典型的脆性泡沫行为。应力-位移曲线表明,失效模式主要是由于损伤累积过程引起的。 Box-Behnken实验设计为批量生产具有前途工程应用的各种玻璃基泡沫产品提供了一种经济高效的选择。

著录项

  • 来源
    《Environmental progress》 |2014年第3期|800-807|共8页
  • 作者单位

    Central Metallurgical Research and Development Institute-CMRDI, department of advanced materials, Cairo-Egypt;

    Central Metallurgical Research and Development Institute-CMRDI, department of advanced materials, Cairo-Egypt;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    glass-based foam composites; Box-Behnken design (BBD); recycling; industrial wastes; optimization;

    机译:玻璃基泡沫复合材料;Box-Behnken设计(BBD);回收;工业废物;优化;
  • 入库时间 2022-08-17 13:28:12

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