Study of grid-structured flotation particle surface wetting behavior characteristics
ZHANG Rui;YU Feng;XING Yaowen;GUI Xiahui
重庆大学 煤矿灾害动力学与控制全国重点实验室重庆大学 资源与安全学院国家能源集团乌海能源有限责任公司中国矿业大学 炼焦煤资源绿色开发全国重点实验室中国矿业大学 国家煤加工与洁净化工程技术研究中心
矿物颗粒间表面润湿性差异是浮选成功的关键,受表面化学性质与物理形貌结构的双重影响。为进一步明确表面物理形貌结构对液滴在矿物颗粒表面上润湿行为的影响,采用光刻显影技术制备了5种具有不同粗糙度系数和表面面积分数的条栅结构聚二甲基硅氧烷(PDMS)表面,并利用自制的动/静态接触角测量系统及润湿三相接触线行为测试系统对液滴在PDMS表面上的润湿行为进行了测试。动/静态接触角测试结果表明:当表面粗糙度系数相同时,固体表面面积分数增加,条栅结构表面不同润湿方向上的接触角均呈减小趋势,而当表面面积分数相同时,条栅结构表面不同润湿方向上的接触角则与固体表面粗糙度系数呈正相关;此外,各样品表面垂直于条栅结构方向的动/静态接触角均大于平行方向(即
Difference of mineral particles in surface wettability is the key to success of flotation process, and the wetting characteristics are influenced by both surface chemical properties and physical morphological structure. In order to further clarify the influence of surface physical morphology on wetting behavior, five groove-structured surfaces with different roughness coefficients and percentages of surface area are prepared with polydimethysiloxane sheet (PDMS) as material and through photo-engraving process. Then the wetting behavior of droplets on PDMS surface is explored using self-made dynamic/static contact angle measuring system and the three-phase contact line movement testing system. As indicated by both dynamic and static contact angle measurements, when the surface roughness remains unchanged, the contact angles in different wetting directions on groove-structure surface all tend to decrease with the increase of surface area, and when the percentages of surface area are identical, the contact angles in different wetting directions are positively correlated with roughness of solid surface; the dynamic and static contact angles of droplets in the direction perpendicular to the grooves on the surfaces of different specimens are all greater than those in the parallel direction (i.e.
flotation;wetting behavior;groove structure;surface morphology;dynamic/static contact angle measurement;test on three-phase contact line behavior;anisotropism intermittence;cycling
主办单位:煤炭科学研究总院有限公司 中国煤炭学会学术期刊工作委员会