Development of a method for weight continuous dosing of bulk materials and its implementation analysis

V. Mansur, V. Pershin
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引用次数: 1

Abstract

Weight continuous dosing of bulk materials is one of the key operations in many technological processes. As a result of analyzing methods and devices of the weight continuous dosing used by the world’s leading manufacturers of dosing systems, it was found that the main reason of decrease in the accuracy of dosing was the dynamic effects on the weight sensor. The material motion in the process of weight measuring causes these effects. The lowest dynamic impacts on the load sensor were observed when using the two-stage dosing technology. The essence of this technology lies in the fact that at the first stage separate portions with fixed weight are formed, which are fed into a vibrating tray at regular intervals and are converted into a continuous flow at the second stage. The portion weight and the time interval values are selected from the condition of equality of the given dispenser productivity to the ratio of the individual portion weight to the time interval between the supply of portions to the device for their conversion into a continuous flow. Dynamic impacts on the sensor are reduced, but are not completely excluded, since the weight of a separate portion is determined during the material motion. To increase the dosing accuracy, a new strategy in implementing the two-stage dosing technology is proposed based on the fact that constancy of the quotient could be ensured not only with the constancy of the dividend and the divisor, but also with variable values of these quantities. The proposed dosing method was experimentally compared with the prototype, which confirmed advantages of the new dosing strategy over the traditional one.
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散装物料重量连续加药方法的发展及其实施分析
散装物料的称重连续加药是许多工艺过程中的关键操作之一。通过对世界领先的计量系统制造商所采用的称重连续计量方法和装置的分析,发现计量精度下降的主要原因是称重传感器的动态影响。在称重过程中,物料的运动引起了这些影响。采用两级加药技术时,对负载传感器的动态影响最小。该技术的本质在于,在第一阶段形成具有固定重量的分离部分,这些部分按一定间隔送入振动托盘,并在第二阶段转化为连续流。部分重量和时间间隔值是从给定的分配器生产率与单个部分重量与向装置供应部分以将其转化为连续流的时间间隔之间的比率相等的条件中选择的。对传感器的动态影响减少了,但不能完全排除,因为在材料运动期间确定了单独部分的重量。为了提高加药精度,提出了一种两阶段加药技术的实施策略,该策略不仅可以通过被除数和被除数的恒定来保证商的恒定,而且可以通过被除数和被除数的可变值来保证商的恒定。并与原型机进行了实验比较,验证了新加药策略相对于传统加药策略的优越性。
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