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CORDIERITE-INDIALITE-PSEUDOBROOKITE STRUCTURED CERAMIC BODIES, BATCH COMPOSITION MIXTURES, AND METHODS OF MANUFACTURING CERAMIC BODIES THEREFROM
A ceramic body exhibiting %P >= 50%, df <= 0.36, and a combined weight percentage of crystalline phases containing cordierite and indialite of at least 85 wt%, and up to 10 wt% of a crystalline pseudobrookite structured phase, such as armalcolite. The ceramic body contains, as expressed on an oxide basis, either: 1% wt% to 11% wt% titania and 89% wt% to 99% wt% MgO, Al2O3, and SiO2 that have relative weight ratios of MgO:Al2O3:SiO2 within the field defined by 15.6:34.0:50.4, 12.6:34.0:53.4, 13.9:30.7:55.4, and 16.9:30.7:52.4, or 2.5% to 11% titania and 89% wt% to 97.5% wt% MgO, Al2O3, and SiO2 that have relative weight ratios of MgO:Al2O3:SiO2 within the field defined by 15.6:34.0:50.4, 12.6:34.0:53.4, 12.0:35.7:52.3, and 15.0:35.7:49.3. Batch composition mixtures and methods of manufacturing ceramic bodies using the batch compositions are provided, as are other aspects.
陶瓷体,其展现出:%P≥50%,df≤0.36,含堇青石和印度石的晶相的总重量%是至少85重量%,以及最高至10重量%的铁板钛矿结构的晶相,例如阿姆阿尔柯尔矿。以氧化物计,陶瓷体含有如下任一种情况:1重量%至11重量%二氧化钛,以及89重量%至99重量%MgO、Al2O3和SiO2,其具有处于限定在15.6:34.0:50.4、12.6:34.0:53.4、13.9:30.7:55.4和16.9:30.7:52.4的域内的MgO:Al2O3:SiO2的相对重量比;或者,2.5%至11%二氧化钛,以及89重量%至97.5重量%MgO、Al2O3和SiO2,其具有处于限定在15.6:34.0:50.4、12.6:34.0:53.4、12.0:35.7:52.3和15.0:35.7:49.3的域内的MgO:Al2O3:SiO2的相对重量比。作为其他方面,提供了批料组合物混合物和采用批料组合物制造陶瓷体的方法。
CORDIERITE-INDIALITE-PSEUDOBROOKITE STRUCTURED CERAMIC BODIES, BATCH COMPOSITION MIXTURES, AND METHODS OF MANUFACTURING CERAMIC BODIES THEREFROM
A ceramic body exhibiting %P >= 50%, df <= 0.36, and a combined weight percentage of crystalline phases containing cordierite and indialite of at least 85 wt%, and up to 10 wt% of a crystalline pseudobrookite structured phase, such as armalcolite. The ceramic body contains, as expressed on an oxide basis, either: 1% wt% to 11% wt% titania and 89% wt% to 99% wt% MgO, Al2O3, and SiO2 that have relative weight ratios of MgO:Al2O3:SiO2 within the field defined by 15.6:34.0:50.4, 12.6:34.0:53.4, 13.9:30.7:55.4, and 16.9:30.7:52.4, or 2.5% to 11% titania and 89% wt% to 97.5% wt% MgO, Al2O3, and SiO2 that have relative weight ratios of MgO:Al2O3:SiO2 within the field defined by 15.6:34.0:50.4, 12.6:34.0:53.4, 12.0:35.7:52.3, and 15.0:35.7:49.3. Batch composition mixtures and methods of manufacturing ceramic bodies using the batch compositions are provided, as are other aspects.
陶瓷体,其展现出:%P≥50%,df≤0.36,含堇青石和印度石的晶相的总重量%是至少85重量%,以及最高至10重量%的铁板钛矿结构的晶相,例如阿姆阿尔柯尔矿。以氧化物计,陶瓷体含有如下任一种情况:1重量%至11重量%二氧化钛,以及89重量%至99重量%MgO、Al2O3和SiO2,其具有处于限定在15.6:34.0:50.4、12.6:34.0:53.4、13.9:30.7:55.4和16.9:30.7:52.4的域内的MgO:Al2O3:SiO2的相对重量比;或者,2.5%至11%二氧化钛,以及89重量%至97.5重量%MgO、Al2O3和SiO2,其具有处于限定在15.6:34.0:50.4、12.6:34.0:53.4、12.0:35.7:52.3和15.0:35.7:49.3的域内的MgO:Al2O3:SiO2的相对重量比。作为其他方面,提供了批料组合物混合物和采用批料组合物制造陶瓷体的方法。
CORDIERITE-INDIALITE-PSEUDOBROOKITE STRUCTURED CERAMIC BODIES, BATCH COMPOSITION MIXTURES, AND METHODS OF MANUFACTURING CERAMIC BODIES THEREFROM
堇青石-印度石-铁板钛矿结构陶瓷体、批料组合物混合物及其制造陶瓷体的方法
SARMA HUTHAVAHANA KUCHIBHOTLA (Autor:in) / TANNER CAMERON WAYNE (Autor:in)
15.06.2021
Patent
Elektronische Ressource
Chinesisch
IPC:
C04B
Kalk
,
LIME
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