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气流粉碎对超细WC粉体微观应变行为及团粒破碎行为的影响(英文) 被引量:7
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作者 孙亚丽 刘清才 +3 位作者 黄新 张发兴 杨剑 梅华 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2019年第10期2128-2140,共13页
分别采用Williamson-Hall和单轴压缩法研究经气流粉碎和球磨处理后的超细WC粉体的微观应变及其应力-应变关系,并研究WC粉体中团粒破碎行为。以采用不同处理方法得到的WC粉体为原料制备WC-10%Co硬质合金,并对其性能进行分析。结果表明:... 分别采用Williamson-Hall和单轴压缩法研究经气流粉碎和球磨处理后的超细WC粉体的微观应变及其应力-应变关系,并研究WC粉体中团粒破碎行为。以采用不同处理方法得到的WC粉体为原料制备WC-10%Co硬质合金,并对其性能进行分析。结果表明:相较于球磨处理得到WC粉体,经气流粉碎处理得到的WC粉体的微观应变显著降低;由于粉体中团粒的消除和晶格应变的减小,采用气流粉碎的WC粉体制备的硬质合金具备更加优良的综合性能,其抗弯强度达到4260 MPa。 展开更多
关键词 超细WC粉体 微观应变 应力-应变关系 气流粉碎 团粒破碎机理
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Optimization of magnetic separation process for iron recovery from steel slag 被引量:2
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作者 Yuan-pei Lan qing-cai liu +2 位作者 Fei Meng De-liang Niu Heng Zhao 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2017年第2期165-170,共6页
To improve the efficiency of iron recovery from steel slag and reduce the wear-and-tear on facilities, a new method was proposed by adding a secondary screen sizer to the magnetic separation process according to grain... To improve the efficiency of iron recovery from steel slag and reduce the wear-and-tear on facilities, a new method was proposed by adding a secondary screen sizer to the magnetic separation process according to grain size distribution of magnetic iron (M-Fe) in the slag. The final recycling efficiency was evaluated by calculating the percentage of recycled M-Fe to the maximum amount of M-Fe that could be recovered. Three types of slags, namely basic oxygen furnace slag, desul- furization slag, and iron ladle slag, were studied, and the results showed that the optimized re- covery efficieneies were 93.20%, 92. 48%, and 85.82% respectively, and the recycling efficien eies were improved by 9.58%, 7.11%, and 6.24% respectively. Furthermore, the abrasion between the mill equipment and the remaining slags was significantly reduced owing to the efficient recovery of larger M-Fe particles. In addition, the using amount of grinding balls was reduced by 0. 46 kg when every 1 t steel slag was processed. 展开更多
关键词 Steel slag Magnetic separation Iron recovery Recovery efficiency Abrasion
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Combustion Characteristics and Kinetics of Anthracite Blending with Pine Sawdust
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作者 Guo-qing liu qing-cai liu +3 位作者 Xiao-qing WANG Fei MENG Shan REN Zhen-peng JI 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2015年第9期812-817,共6页
The combustion characteristics and kinetics of anthracite,pine sawdust and their blends were investigated under combustion condition by thermogravimetric analysis,respectively.The fractions of pine sawdust in the blen... The combustion characteristics and kinetics of anthracite,pine sawdust and their blends were investigated under combustion condition by thermogravimetric analysis,respectively.The fractions of pine sawdust in the blended samples were set to be 30%,50%,and 80%.The results showed that the ignition and burnout temperatures of pine sawdust were lower and the maximum combustion rate was higher than those of anthracite.With the increase of pine sawdust content,the ignition temperature and burnout temperature of the blends decreased,while the maximum mass loss rate and the combustible index of the blends increased;that is,the comprehensive combustion property became better.The kinetic parameters for the blends combustion under air condition were calculated based on experimental results using Coats-Redfern model.When the pine sawdust content varied in the range of 30%-80%,the combustion processes of these blends could be divided into two stages and the combustion reactions belong to the first-order reaction.The values of apparent activation energy at two individual stages decreased from 68.78to47.28kJ·mol-1 and from 113.53 to 46.43kJ·mol-1,respectively. 展开更多
关键词 pine sawdust anthracite thermogravimetric analysis combustion characteristics apparent activation energy
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