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Development of a high-speed sensing and detection system for automatic removal of packages with leaky seals from a high-speed food processing and packaging line

机译:研发了一种高速传感和检测系统,用于自动从高速食品加工和包装生产线中取出带有泄漏密封的包装

摘要

Contamination of packaged foods due to micro-organisms entering through air leaks can cause serious public health issues and cost companies large amounts of money due to product recalls, consumer impact and subsequent loss of market share. The main source of contamination is leaks in packaging which allow air, moisture and microorganisms to enter the package. In the food processing and packaging industry worldwide, there is an increasing demand for cost effective state of the art inspection technologies that are capable of reliably detecting leaky seals and delivering products at six-sigma. The new technology will develop non-destructive testing technology using digital imaging and sensing combined with a differential vacuum technique to assess seal integrity of food packages on a high-speed production line. The cost of leaky packages in Australian food industries is estimated close to AUD $35 Million per year. Contamination of packaged foods due to micro-organisms entering through air leaks can cause serious public health issues and cost companies large sums of money due to product recalls, compensation claims and loss of market share. The main source of contamination is leaks in packaging which allow air, moisture and micro-organisms to enter the package. Flexible plastic packages are widely used, and are the least expensive form of retaining the quality of the product. These packets can be used to seal, and therefore maximise, the shelf life of both dry and moist products. The seals of food packages need to be airtight so that the food content is not contaminated due to contact with microorganisms that enter as a result of air leakage. Airtight seals also extend the shelf life of packaged foods, and manufacturers attempt to prevent food products with leaky seals being sold to consumers. There are many current NDT (non-destructive testing) methods of testing the seal of flexible packages best suited to random sampling, and for laboratory purposes. The three most commonly used methods are vacuum/pressure decay, bubble test, and helium leak detection. Although these methods can detect very fine leaks, they are limited by their high processing time and are not viable in a production line. Two nondestructive in-line packaging inspection machines are currently available and are discussed in the literature review. The detailed design and development of the High-Speed Sensing and Detection System (HSDS) is the fundamental requirement of this project and the future prototype and production unit. Successful laboratory testing was completed and a methodical design procedure was needed for a successful concept. The Mechanical tests confirmed the vacuum hypothesis and seal integrity with good consistent results. Electrically, the testing also provided solid results to enable the researcher to move the project forward with a certain amount of confidence. The laboratory design testing allowed the researcher to confirm theoretical assumptions before moving into the detailed design phase. Discussion on the development of the alternative concepts in both mechanical and electrical disciplines enables the researcher to make an informed decision. Each major mechanical and electrical component is detailed through the research and design process. The design procedure methodically works through the various major functions both from a mechanical and electrical perspective. It opens up alternative ideas for the major components that although are sometimes not practical in this application, show that the researcher has exhausted all engineering and functionality thoughts. Further concepts were then designed and developed for the entire HSDS unit based on previous practice and theory. In the future, it would be envisaged that both the Prototype and Production version of the HSDS would utilise standard industry available components, manufactured and distributed locally. Future research and testing of the prototype unit could result in a successful trial unit being incorporated in a working food processing production environment. Recommendations and future works are discussed, along with options in other food processing and packaging disciplines, and other areas in the non-food processing industry.
机译:由于微生物通过漏气进入而导致包装食品受到污染,可能导致严重的公共卫生问题,并且由于产品召回,消费者影响以及随后失去的市场份额,使公司损失大量资金。污染的主要来源是包装中的泄漏,泄漏会导致空气,湿气和微生物进入包装。在世界范围内的食品加工和包装行业中,对具有成本效益的最新检验技术的需求日益增长,这些检验技术能够可靠地检测泄漏的密封并以六西格码的速度交付产品。这项新技术将利用数字成像和传感技术以及差动真空技术开发无损检测技术,以评估高速生产线上食品包装的密封完整性。据估计,澳大利亚食品行业泄漏包装的成本每年接近3500万澳元。由于微生物通过漏气进入而导致包装食品受到污染,可能导致严重的公共卫生问题,并且由于产品召回,赔偿要求和市场份额损失而使公司损失大量资金。污染的主要来源是包装中的泄漏,泄漏会导致空气,湿气和微生物进入包装。柔性塑料包装被广泛使用,并且是保持产品质量的最便宜的形式。这些包装盒可用于密封干燥产品和潮湿产品,从而最大限度地延长其货架寿命。食品包装的密封件必须是气密的,以使食品中的内容物不会因与由于漏气而进入的微生物接触而受到污染。气密性密封还延长了包装食品的保质期,制造商试图防止带有泄漏密封的食品被出售给消费者。当前,有许多NDT(非破坏性测试)方法可测试最适合随机采样以及用于实验室目的的软包装密封性。三种最常用的方法是真空/压力衰减,气泡测试和氦气泄漏检测。尽管这些方法可以检测到非常小的泄漏,但它们受到处理时间长的限制,并且在生产线中不可行。目前有两种无损在线包装检查机,并在文献综述中进行了讨论。高速传感和检测系统(HSDS)的详细设计和开发是该项目以及未来原型和生产单元的基本要求。成功的实验室测试已经完成,成功的概念需要系统的设计程序。机械测试确认了真空假设和密封完整性,并获得了良好的一致结果。从电气上讲,测试还提供了可靠的结果,使研究人员能够以一定的信心将项目推进。通过实验室设计测试,研究人员可以在进入详细设计阶段之前确认理论假设。在机械和电气学科中对替代概念的发展进行的讨论使研究人员能够做出明智的决定。通过研究和设计过程详细说明了每个主要的机械和电气组件。从机械和电气的角度来看,设计程序有条不紊地通过各种主要功能。它为主要组件打开了替代性想法,尽管有时在该应用程序中不实用,但表明研究人员已经用尽了所有工程学和功能性思想。然后,根据先前的实践和理论,为整个HSDS单元设计和开发了更多概念。将来,可以预见,HSDS的原型版和生产版都将使用标准的行业可用组件,这些组件在本地制造和分发。原型单元的未来研究和测试可能会导致一个成功的试验单元被并入有效的食品加工生产环境中。讨论了建议和未来的工作,以及其他食品加工和包装学科以及非食品加工行业其他领域的选择。

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    Gibson Gary Raymond;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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