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Crystallisation of Silicate Glasses and Melts with Chemical Compositions in Primary Phase Region of Gehlenite

机译:硅钙石一次相区硅酸盐玻璃和熔体的化学成分结晶

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Crystallisation behaviour has been investigated on samples with two compositions: (A) 42CaO-37SiO_2-21Al_2O_3 and (B) 43CaO-27SiO_2-19Al_2O_3-11CaF_2 (all mass%). Composition (A) is within the primary phase region of gehlenite and composition (B) is just between gehlenite and cuspidine on a mass basis. Two types of sample were prepared from glassy and molten states for each composition. These samples were characterised by differential thermal analysis, X-ray diffraction analysis and electron probe microanalysis. - Crystallised samples A from glassy state: It contained gehlenite and wollastonite in the XRD profile, and in BE images gehlenite crystals grew more largely than wollastonite, suggesting that gehlenite precipitates in preference to wollastonite. - Crystallised samples B from glassy state: It contained cuspidine and gehlenite in the XRD profile. In BE images, cuspidine precipitated but gehlenite was not observed. - Crystallised samples A from molten state: It contained only gehlenite in the XRD profile, and in BE images there was dendritic gehlenite developed across the sample. - Crystallised samples B from molten state: It contained cuspidine and CaF_2 as well as gehlenite in the XRD profile. In BE images, gehlenite comprised the major part, and it is likely that gehlenite crystallises in preference to cuspidine. It is also likely that the pseudo-binary system of gehlenite and cuspidine forms eutectics and that the eutectic composition is rather closer to cuspidine. Consequently, the increase in Al_2O_3 concentration would little affect crystallisation of the glassy portion in actual mould fluxes containing CaF_2 but strongly affects crystallisation of the liquid portion.
机译:已经研究了具有两种成分的样品的结晶行为:(A)42CaO-37SiO_2-21Al_2O_3和(B)43CaO-27SiO_2-19Al_2O_3-11CaF_2(全部质量%)。组合物(A)在钠钙石的初级相区域内,并且组合物(B)按质量计刚好在钠铅石和cuspidine之间。对于每种组合物,从玻璃态和熔融态制备了两种类型的样品。这些样品通过差热分析,X射线衍射分析和电子探针显微分析进行表征。 -来自玻璃态的结晶样品A:在X射线衍射图中,它包含钠钙石和硅灰石,在BE图像中,钠钙石晶体的生长比硅灰石更大,这表明钠钙石比硅灰石优先沉淀。 -来自玻璃态的结晶样品B:其在XRD图谱中包含cuspidine和菱镁矿。在BE图像中,cuspidine沉淀,但未观察到菱沸石。 -熔融状态的结晶样品A:在XRD曲线中仅包含菱沸石,在BE图像中,整个样品上均形成了树枝状菱沸石。 -熔融状态的结晶样品B:X射线衍射图谱中包含cuspidine和CaF_2以及钠钙石。在BE图像中,粗晶是主要成分,并且粗晶优先于cuspidine结晶。粗晶石和cuspidine的假二元体系也可能形成低共熔物,低共熔成分更接近cuspidine。因此,Al_2O_3浓度的增加几乎不会影响含有CaF_2的实际铸模助熔剂中玻璃状部分的结晶,但会严重影响液体部分的结晶。

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