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INNOVATIVE APPLICATIONS OF CONTROLLED PARTICLE INTERACTIONS

机译:控制粒子的创新应用的相互作用

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摘要

Control of inter-particle interaction forces can be achieved through prudent choice of solution chemical conditions.In this work the focus is on colloidal particles in aqueous solutions.The influence of concentration and type of salts,polymers and surfactants as well as temperature are discussed.The particle interactions influence suspension and emulsion behaviour such as dispersion stability,aggregation,settling rate,viscosity,compressibility and permeability.For instance,long-range repulsive inter-particle interactions generally produce stable dispersions of individual particles,that have low viscosities and pack to high densities at low pressures.On the other hand,strong attraction results in aggregation,rapid sedimentation,high viscosities,yield stresses and low density packed structures even under considerable applied consolidation pressures.Several examples are presented to demonstrate how intelligent control of the suspension properties,via the solution conditions,results in innovative processes in a range of different fields.The key is to insure that the inter-particle interaction forces are optimised for each step of the process.In some cases it is necessary to switch from attraction to repulsion or visa versa.The use of 'smart' polymers can be particularly helpful.Three applications are discussed in detail.Near net shape advanced ceramic components can be produced by creating a low viscosity suspensipn,filling a mould and gelling the polymer solution between the particles to create an elastic,shaped ceramic component.Water can be more efficiently and sustainably used in the mineral processing environment,by employing a stimulant sensitive flocculant,which allows for both rapid sedimentation and low sediment bed moisture.Finally,a novel emulsion method for production of tissue scaffolds is presented.
机译:inter-particle互动的控制力量是通过审慎选择的解决方案化学条件。胶体粒子在水的解决方案。的浓度和类型的影响盐、聚合物和表面活性剂温度进行了讨论。交互影响悬架和乳液行为,如色散稳定性、聚合、沉淀率、粘度、压缩性和渗透率。inter-particle通常相互作用产生单个粒子的稳定分散粘度较低,充填密度都很高吗在低压力。吸引力导致聚合,迅速高粘度、屈服应力和沉降即使在低密度包装结构相当大的应用整合压力。演示的智能控制悬架特性,通过解决方案条件,导致在一个创新的过程各种不同的领域。inter-particle互动力量优化过程的每一步。情况下,有必要从景点排斥或签证。聚合物可以特别有用。应用程序中详细讨论。先进陶瓷组件可以产生形状通过创建一个低粘度suspensipn,填补模具和胶凝之间的聚合物溶液创建一个弹性粒子,形状的陶瓷组件。可持续使用的矿物加工环境中,采用一种兴奋剂敏感絮凝剂,它允许快速沉降和低沉积床水分。生产的组织支架。

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