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利用钛酸丁酯与硝酸铵溶液制备的含钛凝胶跟黑索金混合后获得混合炸药,然后在密闭的爆轰反应釜内引爆柱状混合炸药,同时将一铝板放置于药柱正下方研究爆轰产物的固载问题.收集到的样品用X射线衍射仪、透射电镜以及扫描电镜进行了表征,发现样品中含有FeTiO3,少量的金红石、锐钛矿及Al2O3.钛基氧化物颗粒呈球形,尺寸大小在微米级别.从扫描电镜分析,钛基氧化物颗粒被成功地固载于铝板之上,颗粒约10μm.爆轰法能够很方便地制备钛基氧化物及制备颗粒–板结构材料.

Ti-doped gel, prepared by hydrolysis of tetrabutyl titanate and ammonium nitrate solution, was mixed with hexogen to make mix explosive. The mix explosive was detonated in a closed kettle in cylindrical charge with pres-ence of aluminum plate, and then Ti-based oxides were fabricated. The samples were characterized by XRD, TEM, EDX, and SEM. The results showed that samples contained FeTiO3, a few of rutile, anatase, and Al2O3. The Ti-based oxides particles were spherical in micrometer level scale. Ti-based oxides were successfully immobilized on an alu-minum plate driven by Ti-contained detonation wave, and the size of particles on the plate was 10μm. The present re-sults suggest that the detonation method provides an easy way to prepare Ti-based oxides and fabricate particle-plate structure for recycling materials synchronously.

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