首页> 外文期刊>South African journal of industrial engineering >DESIGN OF AN AUTOMATED MONITORING AND CONTROL SYSTEM FOR THE SOFT DRINK CAPPING MACHINE AND PROCESS MIXER
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DESIGN OF AN AUTOMATED MONITORING AND CONTROL SYSTEM FOR THE SOFT DRINK CAPPING MACHINE AND PROCESS MIXER

机译:软饮料盖机和工艺搅拌机自动监控系统设计

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This paper is based on bottling process optimisation through continuous improvement. A case study was done at XYZ company. The Six Sigma Define, Measure, Analyze, Improve, and Control (DMAIC) methodology revealed that the bottling and capping processes were producing defects at 3 Sigma level. The 5 Whys, Pareto chart, fish bone diagram, and Suppliers, Inputs, Process, Outputs, Customers (SIPOC) model showed that loose-capped bottles (31.6%), under-fills (29.2%), and empty bottles (28.9%) caused the highest cost through poor quality. The monitoring system was designed to monitor the applied torque value, the capping head status, and the beverage temperature upon leaving the heat exchanger. The cooling system on the mix processor was designed using the closed loop control strategy. If the beverage temperature is not within 1 or 2 degrees Celsius, it is directed to secondary cooling; otherwise, it proceeds. The glycol inlet valve is actuated such that the flow of the coolant is adjusted to ensure that the primary cooling is efficient. The results show that it is possible to operate production within the Six Sigma level.
机译:本文通过持续改进,基于瓶装过程优化。 XYZ公司完成了一个案例研究。六西格玛定义,测量,分析,改进和控制(DMAIC)方法显示,瓶装和封盖过程在3个σ水平产生缺陷。 5个WHYS,Pareto图表,鱼骨图和供应商,输入,工艺,产出,客户(SIPOC)模型显示,松散的瓶子(31.6%),填充下填充(29.2%)和空瓶子(28.9%) )通过质量差导致最高的成本。监控系统被设计为在离开热交换器时监测所施加的扭矩值,覆盖头状态和饮料温度。使用闭环控制策略设计了混合处理器上的冷却系统。如果饮料温度不在1或2摄氏度范围内,则指向二次冷却;否则,它会继续。糖阀被致动,使得调节冷却剂的流动以确保初级冷却有效。结果表明,可以在六西格玛水平内运行生产。

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