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A new method for the measurement of flowability of green moulding sand

机译:测量生型砂流动性的新方法

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The production of castings by green sand moulds is a very important method for the manufacture of final products for different sectors of industry. In this green sand moulding process the quality of castings depends strongly on the quality of the mould, which in turn is determined by parameters such as the type of foundry machine, the characteristics of the moulding sand and the specifications of the patterns. The mould's stability for use casting is achieved by filling und compacting moulding sand. This means, that the clay-bonded moulding sand is changed from the free flowing to the compacted state. In this process flow-ability is a very important parameter. Therefore, a variety of methods for the determination of flowability have been in use. However, it is fair to say that these methods do no longer meet the requirements of the modern moulding process. This paper introduces a new method for the determination of flowability of clay-bonded moulding sand using a specifically designed type of density sensor that was developed by a research team led by Professor Juergen L. Bast at the Mechanical Department of Technical University Bergakademie Freiberg. The high levels of accuracy in the determination of flowability that this method is capable of achieving have been tested and indeed proven by varying sand parameters such as water and clay content, grain composition, mixing time, and compaction pressure. A further innovative characteristics of this new method of sensor-based flowability measurement is the possibility of using the sensor not only for the lab-based testing of sands but in the actual mould during the production process in the foundry, which allows to determine whether the sand in the mould has the required qualities based on real-time flowability measurements.
机译:用生砂模生产铸件是为不同行业的最终产品生产的一种非常重要的方法。在这种生砂铸造工艺中,铸件的质量很大程度上取决于铸模的质量,而铸模的质量又取决于诸如铸造机的类型,型砂的特性和图案规格之类的参数。通过填充和压实型砂,可确保铸模的稳定性。这就是说,黏土型砂从自由流动变为压实状态。在此过程中,流动性是非常重要的参数。因此,已经使用了多种用于确定流动性的方法。但是,可以公平地说,这些方法不再满足现代成型工艺的要求。本文介绍了一种由特殊设计的密度传感器来确定黏结砂型砂流动性的新方法,该方法是由Bergakademie Freiberg工业大学机械系的Juergen L. Bast教授领导的研究小组开发的。该方法能够实现的确定流动性的高精确度已经过测试,并通过改变砂参数(例如水和粘土含量,颗粒成分,混合时间和压实压力)得到了证实。这种基于传感器的流动性测量新方法的另一个创新特征是,不仅可以将传感器用于基于实验室的砂子测试,而且可以在铸造厂生产过程中的实际模具中使用此传感器,从而可以确定基于实时流动性测量,模具中的砂具有所需的质量。

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