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首页> 外文期刊>CERAMICS INTERNATIONAL >Preparation and corrosion resistance of cordierite-spodumene composite ceramics using zircon as a modifying agent
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Preparation and corrosion resistance of cordierite-spodumene composite ceramics using zircon as a modifying agent

机译:用锆酮汀 - 鸟丁烯复合陶瓷用锆石作为改性剂的制备及耐腐蚀性

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摘要

To prolong the service life of cordierite-spodumene composite ceramics applied to the solar heat transmission pipeline, the zircon modifier was introduced to improve the corrosion resistance of the ceramics. The effects of zircon on the density, bending strength, crystalline phase, microstructure and chemical stability were studied. The results showed that the sintering temperature range of the composite ceramics was broadened to 40-60 degrees C with the introduction of 5-15 wt% zircon. Moreover, the mechanical strength and corrosion resistance of the ceramic materials were improved with the zircon introduction. In particular, sample C3 containing 15 wt% of zircon and sintered at 1360 degrees C exhibited the best performance, which had the 0.03% Wa, 0.07% Pa, 2.34 g cm(-3) Db and 100.17 MPa bending strength. After acid and alkali corrosion, the water absorption was still less than 0.5% and the strength loss rate decreased to less than 5.3%. The XRD and SEM analyses demonstrated that the ZrSiO4 grains dispersed at the grain boundaries could enhance the mechanical properties. Furthermore, the existence of the Zr4+ ions not only reduced the cationic solubility of the glassy phases but also led to a reaction with OH- to form Zr(OH)(4) on the surfaces. This improved the corrosion resistance of the composite ceramics and endowed it with a high residual strength after the acid and alkali corrosion.
机译:为了延长应用于太阳能热传输管道的堇青石 - 跨灭绝的陶瓷复合陶瓷的使用寿命,引入了锆石改性剂以提高陶瓷的耐腐蚀性。研究了锆锆对密度,弯曲强度,结晶相,微观结构和化学稳定性的影响。结果表明,随着5-15wt%锆石,复合陶瓷的烧结温度范围拓宽至40-60℃。此外,通过锆石引入改善了陶瓷材料的机械强度和耐腐蚀性。特别地,含有15wt%的锆锆和在1360℃下烧结的样品C3表现出最佳性能,其具有0.03%Wa,0.07%Pa,2.34g cm(-3)dB和100.17MPa弯曲强度。在酸和碱腐蚀后,吸水率仍小于0.5%,强度损失率降低至小于5.3%。 XRD和SEM分析证明分散在晶界处的ZrSiO 4颗粒可以增强机械性能。此外,Zr4 +离子的存在不仅降低了玻璃相的阳离子溶解度,而且还导致了表面上与OH-形成Zr(OH)(4)的反应。这种改善了复合陶瓷的耐腐蚀性,并在酸和碱腐蚀后具有高残余强度的耐腐蚀性。

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