首页> 外文会议>NATO Advanced Research Workshop on Role of Interfaces in Environmental Protection; May 27-30, 2002; Miskolc, Hungary >ROLE OF CAPILLARY FORCES IN THE REDUCTION OF DUST POLLUTION DURING TRANSPORT AND HANDLING OF POWDERS
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ROLE OF CAPILLARY FORCES IN THE REDUCTION OF DUST POLLUTION DURING TRANSPORT AND HANDLING OF POWDERS

机译:毛细管力在减少粉尘运输和处理过程中的粉尘污染中的作用

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摘要

Mixing of dry powders with oil or liquid binder is often done to minimize segregation and dust pollution during handling and transport. The amount of binder required is determined empirically due to inadequate models. Oil as a binder forms capillary bridges between particles. In the present study, theoretical expressions are developed for the calculation of the capillary force at different oil interlayer thickness between particles. Experimental measurements using AFM were conducted to validate the theory for particle/particle and particle/wall interactions. To initiate flow in a cohesive powder, the work of shear stress is primarily utilized to break the oil bridges. The mechanical work done due to shear is compared with the energy of breakage of the oil bridges. Using the capillary energy approach, a theoretical expression is developed for the calculation of the unconfined yield strength of the powder. This expression was validated experimentally by measuring the unconfined yield strength of silica powder in a Schulze' cell with different oil concentrations.
机译:通常将干粉与油或液体粘合剂混合,以最大程度减少搬运和运输过程中的离析和粉尘污染。由于模型不足,需要根据经验确定所需的粘合剂量。油作为粘合剂在颗粒之间形成毛细管桥。在本研究中,为计算颗粒之间不同油层厚度下的毛细作用力开发了理论表达式。进行了使用原子力显微镜的实验测量,以验证粒子/粒子和粒子/壁相互作用的理论。为了引发粘性粉末中的流动,主要利用剪切应力来破坏油桥。将由于剪切而完成的机械功与油桥的断裂能量进行比较。使用毛细管能量方法,开发了理论表达式来计算粉末的无限制屈服强度。通过在具有不同油浓度的Schulze'细胞中测量二氧化硅粉末的无限制屈服强度,可以通过实验验证该表达。

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