2020
DOI: 10.1111/jace.17545
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Microstructure evolution of hydration products and strength change of hydratable alumina‐bonded castables below 1250°C

Abstract: There have been reports that strength of hydratable alumina (HA)-bonded castables without silica fume drops significantly at 600°C and decreases substantially again at 1000°C. But the strength variation of the HA-bonded castables during the intermediate temperature range has not been investigated and elaborated from the perspective of phase evolution and microstructural change in the castables. In this work, the relationship between the change in the strength of castables and the microstructural characteristic… Show more

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Cited by 3 publications
(7 citation statements)
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“…The as‐prepared MAT‐bearing HA was used as a hydraulic binder. Notably, 2–6 wt% HA was introduced into castables in previous studies to examine the properties of HA‐bonded castables, such as corrosion resistance and thermomechanical properties 4,29,3,34,35 . This study mainly investigates the hydration behavior of HA by co‐grinding it with a Mg–Al hydrotalcite.…”
Section: Methodsmentioning
confidence: 99%
See 4 more Smart Citations
“…The as‐prepared MAT‐bearing HA was used as a hydraulic binder. Notably, 2–6 wt% HA was introduced into castables in previous studies to examine the properties of HA‐bonded castables, such as corrosion resistance and thermomechanical properties 4,29,3,34,35 . This study mainly investigates the hydration behavior of HA by co‐grinding it with a Mg–Al hydrotalcite.…”
Section: Methodsmentioning
confidence: 99%
“…27 These newly in situ formed MA spinel particles contribute to the ceramic bonding of castables, 28 thereby moderating the deterioration of castable strength at medium temperatures. 29 In addition, the formation of the in situ MA spinel accompanied by 8 vol.% of expansion can offset the shrinkage of HA-bond castables. 30 Hence, HA particles were ground using various amounts of MAT sheets.…”
Section: Raw Materialsmentioning
confidence: 99%
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