通过在线测量产品密度来提高螺杆加药装置的加药精度

IF 2.8 4区 工程技术 Q2 ENGINEERING, MANUFACTURING
F. Kruppa, Uta Weiß, B. Oberdorfer, B. Wilke
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引用次数: 0

摘要

细粉状块状材料即使在低压下也表现出高压缩性。体积加药装置的加药误差随着产品压缩性的增加而基本增加。为了提高粉状散装固体体积计量的计量精度,计量过程必须适应产品参数。最重要的参数是随时间变化的产品密度。在纯体积剂量下,它直接影响实际填充的产品数量。为了不断地调节音量,经常尝试用刻度来获得反馈。然而,这通常伴随着延迟。本文的方法是利用微波传感器直接测量产品的质量流量,并将其调节到预定的质量流量。采用螺旋加药装置FVS 3111进行了实验研究。测试了两种场景:一方面,传感器直接集成在产品交付点,通过样品产品咖啡可以改善给药量的平均值与目标重量的差异;另一方面,传感器直接集成在螺杆的开始,并模拟剩余的产品流动。与常规控制相比,也可以实现标准偏差的减小,但在这里,给药量的平均值与标称量之间的差异更大。其原因被认为是产品行为的过于广义的假设,在垂直输送的情况下,通过一个螺旋的手段。总之,螺旋加药装置的加药精度可以通过测量和调节质量流量来提高,从而可以降低制造包装的成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Increasing the dosing accuracy of a screw dosing device by inline measurement of the product density
Fine‐powdered bulk materials exhibit high compressibility even under low pressure. The dosing error in volumetric dosing devices increases fundamentally with increasing product compressibility. In order to increase the dosing accuracy of a volumetric dosing of powdered bulk solids, the dosing process must be adapted to the product parameters. The most important parameter is the time‐variable product density. With a pure volumetric dosage, it has a direct influence on the actually filled product quantity. Attempts are often made to obtain feedback by means of a scale in order to continuously adjust the volume. However, this is often associated with a delay. In this article, the approach is to measure the product mass flow directly by means of a microwave sensor and to regulate it to a predetermined mass flow. The experimental investigations were carried out with a screw dosing device FVS 3111. Two scenarios were tested: on the one hand, the integration of the sensor directly at the product delivery point, whereby the difference of the average value of the dosed quantity to the target weight could be improved with the sample product coffee; on the other, the sensor was integrated directly at the beginning of the screw and the remaining product flow was simulated. A reduction of the standard deviation compared with the conventional control could also be achieved, but here, the difference between the average of the dosed quantity and the nominal quantity is greater. The cause is presumed to be the too generalized assumption of product behaviour in the case of vertical conveying by means of a screw. In summary, the dosing accuracy of a screw dosing device could be increased by measuring and regulating the mass flow and thus the costs of a manufactured packaging could be reduced.
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来源期刊
Packaging Technology and Science
Packaging Technology and Science 工程技术-工程:制造
CiteScore
4.90
自引率
7.70%
发文量
78
审稿时长
>12 weeks
期刊介绍: Packaging Technology & Science publishes original research, applications and review papers describing significant, novel developments in its field. The Journal welcomes contributions in a wide range of areas in packaging technology and science, including: -Active packaging -Aseptic and sterile packaging -Barrier packaging -Design methodology -Environmental factors and sustainability -Ergonomics -Food packaging -Machinery and engineering for packaging -Marketing aspects of packaging -Materials -Migration -New manufacturing processes and techniques -Testing, analysis and quality control -Transport packaging
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