Microstructural evolution characteristics of an unclassified tailing paste in constant shearing
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摘要: 全尾砂膏體作為一種塑性流體,其內部結構的形貌特征與漿體流動性能緊密相關,研究剪切過程中微觀結構的演化特征,對于分析膏體管道輸送及制備工藝中的流動行為具有十分重要的意義.本文借助掃描電鏡技術,拍攝了不同攪拌時間的膏體微觀結構圖像.綜合應用計算機圖像處理技術和分形理論,估算了膏體微結構的分形盒維數,提出以結構系數λ作為微結構形貌特征的表征指標,建立了攪拌過程中微結構時間演化過程的數學模型.某鉛鋅尾礦膏體相關實驗的結果表明:其結構系數λ隨攪拌時間急劇減小,并逐漸趨于平緩,最終達到某一平衡狀態.通過對實驗數據的擬合,得到其演化模型相關的破壞系數及恢復系數,分別為0.171及0.491.Abstract: As a plastic fluid, the morphological features of internal structure in an unclassified tailing paste closely relate to its flow properties. Studies on the evolution characteristics of internal structure during the sheafing flow process have extremely important significance for analyzing flow behavior in pipeline transportation and paste preparation. In this paper, scanning electron microscopy was used to investigate the meso-structure images of the paste at different mixing time. The fractal dimensions of these meso-structure images were estimated by the image processing technology and fractal theory. A structure coefficient A was put forward to explain the morphological features of meso-structure, and a time-evolution mathematical model of meso-structure was built in the mixing process. Some related experiments were done for a lead-zinc tailing paste. It was found that the structure coefficient A flattened out gradually after a steep fall with mixing time, and finally reached an equilibrium state. The failure coefficient and restitution coefficient in the evolution model were obtained to be 0.171 and 0.491 respectively by fitting experimental data.
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Key words:
- pastes /
- tailings /
- microstructural evolution /
- shearing /
- fractal dimension
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