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Influence of volcanic ash as flux on ceramic properties of low plasticity clay and high plasticity clay of Trinidad

机译:火山灰作为熔剂对特立尼达低塑性和高塑性粘土陶瓷性能的影响

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摘要

Currently there is interest in exploring the commercial viability of using ash from the erupting Soufriere Hills volcano on the island of Montserrat in the eastern Caribbean as a flux component in ceramics. Consequently, the fired characteristics (at 1100°C) of model test pieces fabricated from blends of the ash, covering the range 0–30%, with a low plasticity clay and a high plasticity clay (both kaolinitic) of Trinidad have been investigated. The results show that while 5–10% of the ash has little effect on the fired physical and mechanical properties of the low plasticity clay, 15% and above more than doubles the strength and significantly lowers the porosity. At the same time the linear shrinkage is increased by only a few per cent. On the other hand, addition of the ash to the high plasticity clay appears detrimental. In particular, compared with the properties of the clay without ash, increasing amounts of ash progressively and significantly decrease both the green and fired strength and slightly increase the fired porosity. Further, fracture toughness KIC measurements suggest that addition of ash above 15% has an embrittling effect. Based on calculation and microscopy, increased critical flaw size with increased ash content seems to account for the deleterious effects of the ash on the fired properties of the high plasticity clay. In turn, the increased critical flaw size is believed to be a consequence of stress induced microcracking on cooling caused by a difference in thermal expansion coefficient between the vitrified clay phase and the fused ash phase.
机译:当前,有兴趣探索使用东加勒比海蒙特塞拉特岛爆发的Soufriere Hills火山喷发的灰烬作为陶瓷助熔剂的商业可行性。因此,研究了用特立尼达的低塑性粘土和高塑性粘土(均为高岭土)掺合灰分(覆盖范围为0%至30%)制成的模型试件的煅烧特性(在1100°C)。结果表明,尽管5-10%的灰分对低塑性粘土的烧制物理和机械性能影响很小,但15%及以上的灰分会使强度增加一倍,并显着降低孔隙率。同时,线性收缩率仅增加了百分之几。另一方面,将灰分添加到高塑性粘土中似乎是有害的。特别是,与不含灰分的粘土的性能相比,逐渐增加灰分的量并显着降低了生坯和烧成强度,并稍微增加了烧成孔隙率。此外,断裂韧性K IC 测量结果表明,添加超过15%的灰分具有脆化作用。根据计算和显微镜检查,随着灰分含量的增加,临界缺陷尺寸的增加似乎可以解释灰分对高塑性粘土的烧成性能的有害影响。进而,临界缺陷尺寸的增加被认为是由于玻璃化粘土相和熔融灰分相之间的热膨胀系数不同而导致的应力诱导的冷却微裂纹的结果。

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  • 来源
    《British Ceramic Transactions》 |1999年第1期|24-28|共5页
  • 作者

    Knight J.C.;

  • 作者单位

    The Department of Physics, University of the West Indies, St Augustine, Trinidad and Tobago;

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  • 正文语种 eng
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