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High-temperature mechanical behavior of cordierite-based porous ceramics prepared by modified cassava starch thermogelation

机译:改性木薯淀粉热凝胶法制备堇青石基多孔陶瓷的高温力学行为

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摘要

In this study, the high-temperature mechanical response of a cordierite-based porous material prepared by direct starch consolidation was evaluated. Disks were prepared by the thermogelation (85 °C, 4 h) of an aqueous suspension (29.6 vol. %) of a cordierite precursor mixture (talc, kaolin, and alumina) with the addition of a commercial modified cassava starch (11.7 vol.%), drying (50 °C, 24 h), firing (650 °C, 2 h), and reaction sintering (1330 °C, 4 h). The porous microstructures were characterized by Archimedes method (bulk density and apparent porosity measurements), SEM with image analysis (pore cavity sizes), and mercury porosimetry (pore throat sizes). Mechanical behavior was evaluated in diametral compression using a servohydraulic testing machine at room temperature, 800, 1000, and 1100 °C. Apparent stress–strain relationships were obtained from load–displacement curves, and mechanical parameters, such as fracture strength (σF), fracture strain (εF), and apparent Young modulus (E a) were determined. Moreover, crack patterns and fracture surface were also evaluated. The obtained results were analyzed as a function of the developed microstructures, considering the presence of a silicate glassy phase and a complex porosity, and the testing temperature. From these results, the operative fracture mechanism was proposed. Finally, the obtained results were compared with those reported by the authors for cordierite porous materials prepared using other types of native starches, determining that the best mechanical response, in particular at high temperature, was obtained using modified cassava starch.
机译:在这项研究中,评估了通过直接淀粉固结制备的堇青石基多孔材料的高温机械响应。通过将堇青石前体混合物(滑石,高岭土和氧化铝)的水悬浮液(29.6体积%)进行热凝胶化(85°C,4小时),并添加市售的改性木薯淀粉(11.7体积%)制备圆盘。 %),干燥(50°C,24 h),烧制(650°C,2 h)和反应烧结(1330°C,4 h)。通过阿基米德法(疏松密度和表观孔隙率测量),具有图像分析的SEM(孔腔尺寸)和水银孔隙率法(孔喉尺寸)表征多孔微结构。使用伺服液压测试机在室温,800、1000和1100°C的径向压缩下评估机械性能。从载荷-位移曲线和机械参数获得表观应力-应变关系,例如断裂强度(σF),断裂应变(εF)和表观杨氏模量(E a )。 )确定。此外,还评估了裂纹图案和断裂表面。考虑到硅酸盐玻璃相和复杂的孔隙率的存在以及测试温度,根据开发的微结构对获得的结果进行了分析。从这些结果,提出了手术骨折的机制。最后,将所得结果与作者报告的使用其他类型的天然淀粉制备的堇青石多孔材料的结果进行比较,确定使用改性木薯淀粉可获得最佳的机械响应,特别是在高温下。

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  • 来源
    《Journal of Materials Science》 |2012年第23期|p.8013-8021|共9页
  • 作者单位

    Laboratorio de Materiales Estructurales, División Cerámicos, INTEMA, Av. Juan B. Justo 4302, 7600, Mar del Plata, Argentina;

    Laboratorio de Materiales Estructurales, División Cerámicos, INTEMA, Av. Juan B. Justo 4302, 7600, Mar del Plata, Argentina;

    Laboratorio de Materiales Estructurales, División Cerámicos, INTEMA, Av. Juan B. Justo 4302, 7600, Mar del Plata, Argentina;

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