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Material wear and failure mode analysis of breakfast cereal extruder barrels and screw elements.

机译:早餐谷物挤出机机筒和螺杆元件的材料磨损和失效模式分析。

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摘要

Nearly seventy-five years ago, the single screw extruder was introduced as a means to produce metal products. Shortly after that, the extruder found its way into the plastics industry. Today much of the world's polymer industry utilizes extruders to produce items such as soda bottles, PVC piping, and toy figurines. Given the significant economical advantages of extruders over conventional batch flow systems, extruders have also migrated into the food industry. Food applications include the meat, pet food, and cereal industries to name just a few. Cereal manufacturers utilize extruders to produce various forms of Ready-to-Eat (RTE) cereals. These cereals are made from grains such as rice, oats, wheat, and corn.; The food industry has been incorrectly viewed as an extruder application requiring only minimal energy control and performance capability. This misconception has resulted in very little research in the area of material wear and failure mode analysis of breakfast cereal extruders. Breakfast cereal extruder barrels and individual screw elements are subjected to the extreme pressures and temperatures required to shear and cook the cereal ingredients, resulting in excessive material wear and catastrophic failure of these components.; Therefore, this project focuses on the material wear and failure mode analysis of breakfast cereal extruder barrels and screw elements, modeled as a Discrete Time Markov Chain (DTMC) process in which historical data is used to predict future failures. Such predictive analysis will yield cost savings opportunities by providing insight into extruder maintenance scheduling and interchangeability of screw elements.; In this DTMC wear analysis, four states of wear are defined and a probability transition matrix is determined based upon 24,041 hours of operational data. This probability transition matrix is used to predict when an extruder component will move to the next state of wear and/or failure. This information can be used to determine maintenance schedules and screw element interchangeability.
机译:大约七十五年前,单螺杆挤出机被引入作为一种生产金属产品的手段。此后不久,挤出机便进入了塑料行业。如今,世界上许多聚合物行业都使用挤出机生产诸如汽水瓶,PVC管道和玩具公仔等物品。鉴于挤出机相对于传统的间歇式流量系统具有显着的经济优势,因此挤出机也已迁移到食品工业中。食品应用包括肉类,宠物食品和谷物工业等。谷物制造商利用挤出机生产各种形式的即食(RTE)谷物。这些谷物是由谷物制成的,例如大米,燕麦,小麦和玉米。食品工业已被错误地视为仅需要最小能量控制和性能的挤出机应用。这种误解导致早餐谷物挤出机的材料磨损和失效模式分析领域的研究很少。早餐谷物挤出机的机筒和单个螺杆元件承受剪切和烹煮谷物成分所需的极高压力和温度,从而导致过度的材料磨损和这些组件的灾难性故障。因此,该项目专注于早餐谷物挤出机机筒和螺杆元件的材料磨损和失效模式分析,建模为离散时间马尔可夫链(DTMC)过程,其中使用历史数据来预测未来的失败。通过提供对挤出机维护计划和螺杆元件互换性的深入了解,这种预测分析将节省成本。在此DTMC磨损分析中,定义了四个磨损状态,并根据24,041小时的运行数据确定了概率转换矩阵。该概率转移矩阵用于预测挤出机组件何时将移动到下一个磨损和/或故障状态。该信息可用于确定维护计划和螺钉元件的互换性。

著录项

  • 作者

    Mastio, Michael Joseph, Jr.;

  • 作者单位

    University of Missouri - Kansas City.;

  • 授予单位 University of Missouri - Kansas City.;
  • 学科 Engineering Materials Science.; Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 135 p.
  • 总页数 135
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;机械、仪表工业;
  • 关键词

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