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首页> 外文期刊>CERAMICS INTERNATIONAL >Polyphosphate-modified calcium aluminate cement under normal and elevated temperatures: Phase evolution, microstructure, and mechanical properties
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Polyphosphate-modified calcium aluminate cement under normal and elevated temperatures: Phase evolution, microstructure, and mechanical properties

机译:正常和升高温度下的多磷酸盐改性氧化钙水泥:相进化,微观结构和机械性能

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摘要

This investigation sought to develop a chemically bonded refractory tastable based on the acid-base reaction between calcium aluminate cement (CAC) and polyphosphate-based reactant. The mechanical properties, phase evolution, and microstructure of the. polyphosphate-modified CAC under normal and elevated temperatures were investigated. The results show that CAC paste had poor fluidity and presented compressive strength decay when submitted to air curing of 20 degrees C for 28 days compared with that at 7 days. In contrast, the addition of sodium hexametaphosphate (SHMP) significantly improved the fluidity of the resulting binder due to its favorable deflocculating effect for thorough hydration of CAC particles. SHMP-modified CAC paste also exhibited greater compressive strength than CAC paste, and no strength regression occurred after 28 days. Moreover, this superior mechanical performance was maintained even after exposure to elevated temperatures up to 1000 degrees C. The observed excellent performance in strength was attributed to the enhancement from the phases of calcium aluminate hydrate-based gel and calcium-phosphate, known as chemically bonded ceramics formed by the acid-base reaction between CAC and SHMP. The formed chemically bonded ceramics impeded to some extent the conversion of the hydrates CAH(10) or C(2)AH(8) to C(3)AH(6) at ambient temperature and retained a notable bonding effect at high temperatures.
机译:本研究试图基于铝酸钙水泥(CAC)和基于多磷酸基反应物之间的酸碱反应来开发化学粘合的难治性令人难以燃烧。机械性能,相位逸出和微观结构。研究了正常和升高的温度下的多磷酸盐改性CAC。结果表明,与7天相比,CAC糊剂的流动性差,流动性差,呈现抗压强度衰减28天。相反,添加六偏磷酸钠(SHMP)的加入由于其有利的偏离CAC颗粒的良好水化而导致所得粘合剂的流动性。 SHMP改性的CAC糊还表现出比CAC糊的更大的抗压强度,28天后没有发生强度回归。此外,即使在暴露于1000摄氏度的升高的温度后,也保持了这种卓越的机械性能。观察到的强度的优异性能归因于来自磷酸钙水合物的凝胶和钙磷酸钙的阶段的增强,称为化学键合由CAC和SHMP之间的酸碱反应形成的陶瓷。在环境温度下在某种程度上妨碍了在某种程度上妨碍了水合物CaH(10)或C(2)Ah(8)至C(3)至C(3)的转化,并在高温下保留了显着的粘合效果。

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