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Proper handling of bulk solids to avoid flow problems and product degradation in the ceramic industry

机译:适当处理散装固体,以避免陶瓷工业中的流动问题和产品降解

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摘要

The design of a silo has a significant influence on the running of a plant. The layout of the silo must make provision for the process requirements as well as the flow properties of the bulk solid to be stored. Furthermore, a suitable discharge system must be selected. Only trouble-free interaction between the silo and the discharge system can provide the basis for the smooth operation of the plant and meet all requirements. During the storage of bulk solids in silos, problems such as bridging, piping, irregular flow, segregation or a wide residence time distribution can occur. Attrition of particles is a further problem. This is caused by the relative movement of the particles while the stresses in the silo are acting on them. Attrition is not restricted to silos with the above-mentioned flow problems. Even in silos with otherwise faultless performance, particles may become broken. Two examples of storage applications are described to demonstrate how a properly designed silo can avoid plant shut-downs and ensure the quality of the bulk solid.
机译:筒仓的设计对工厂的运转有重大影响。筒仓的布局必须满足工艺要求以及要存储的散装固体的流动特性。此外,必须选择合适的排放系统。只有料仓和卸料系统之间的无故障相互作用才能为工厂的平稳运行提供基础,并满足所有要求。在将大块固体存储在料仓中的过程中,可能会出现诸如桥接,管道,不规则流动,偏析或停留时间分布较宽的问题。颗粒的磨损是另一个问题。这是由于料仓中的应力作用在粒子上时,粒子的相对运动引起的。磨损不限于具有上述流动问题的筒仓。即使在性能正常的筒仓中,颗粒也可能破裂。描述了两个存储应用示例,以展示设计合理的筒仓如何避免工厂停工并确保散装固体的质量。

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