Effects of heat treatment process on the microstructure and properties of BOF slag based glass ceramics
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摘要: 利用轉爐鋼渣作為原料,采用燒結法制備了堿度(CaO/SiO2質量比)分別為0.5、0.6和0.7的微晶玻璃.通過X射線衍射分析、掃描電鏡觀察和能譜分析等手段,結合樣品收縮率與力學強度測試結果,研究了在不同熱處理條件下三種微晶玻璃的結構與性能的變化規律.微晶玻璃的力學強度主要受基礎玻璃燒結性能和內部晶體組織結構的影響.燒結收縮率高,內部晶體呈方柱狀交織形態,則微晶玻璃的力學強度最好.微晶玻璃的晶相主要為黃長石晶體和輝石晶體,高溫條件有利于黃長石晶體生長而促使輝石/黃長石比例減少.堿度為0.6的微晶玻璃收縮率最大,其內部的黃長石晶體呈方柱狀交織排列,構成晶體骨架,并同殘余玻璃相形成力學強度較高的微觀組織,從而使得其具有優異的力學性能.Abstract: Using BOF slag as raw materials, glass ceramics with the basicity (w(CaO)/w(SiO2) of 0.5, 0.6, and 0.7 were produced by sintering. Their structure and properties were studied under different heat treatment conditions by means of X-ray diffraction (XRD), scanning electron microscopy (SEM), energy dispersive spectrometry (EDS), sample shrinkage and mechanical strength testing. Experimental results show that the mechanical strength of the glass ceramics is mainly dependent on the sintering property of parent glass and internal crystal structure. At a higher sintering shrinkage rate, internal crystals in the glass ceramics exhibit a cylindrical intertwined form and the mechanical strength of the glass ceramics performs better. Main crystal phases in the glass ceramics are melilite and pyroxene, and high-temperature conditions are in favor of melilite growth and pyroxene.to-melilite ratio decrease. The maximum shrinkage rate belongs to the glass-ceramic with the basicity of 0.6, in which melilite performs columnar interwoven constituting a crystal skeleton that forms the microstructure of high mechanical strength with residual glass phase. Thereby this glass ceramic has excellent mechanical properties.
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Key words:
- slag /
- glass ceramics /
- heat treatment /
- microstructure /
- mechanical properties /
- sintering
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