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Design of a conveyor belt washer.

机译:传送带清洗机的设计。

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摘要

The purpose of this project is to design a device to clean fish solids and plaque from plastic conveyor belts after they have been taken off fishing ships. This project involved a systematic design study along with an experimental investigation into the effectiveness of cleaning methods.While fishing factory ships are at sea, the plastic conveyor belts that are used to transport fish become tainted with a biological plaque that some bacteria create to protect themselves, and fish residue. A brief was evolved that required the development of a land based cleaning device to reduce the non-productive cleaning time at sea.A systematic design procedure was adopted for the design of the belt-cleaning device. Research showed that strongly alkaline solutions were the best method of cleaning protein-based biofilms. This research led to the most promising cleaning mechanism concepts being tested to quantitatively evaluate their cleaning effectiveness. The development of the final concept considered the requirements of New Zealand legislation and a professional code of ethics, materials issues due to the aggressive environment, structural design using finite element methods, and a heat and mass transfer analysis.The final design solution consisted of two units. Firstly, a tank to receive the coiled belt, another insulated tank to store the sodium hydroxide cleaning solution, an overhead crane to load/unload the belt, and a transfer pump and control system to control the flow of fluids. The second unit was a separate rinser to perform the water blasting. This study resulted in the final manufacturing information for the belt washer. This includes detailed drawings and a costing for all parts and construction.
机译:该项目的目的是设计一种装置,用于在将塑料固体传送带从渔船上取下后,将其清除。该项目涉及系统的设计研究以及对清洁方法有效性的实验研究。虽然渔船在海上,用于运输鱼类的塑料传送带被生物菌斑污染,某些细菌会形成生物菌斑来保护自己和鱼渣。提出了一个简短的摘要,该摘要需要开发一种陆基清洁设备,以减少海上的非生产性清洁时间。皮带清洁设备的设计采用了系统的设计程序。研究表明,强碱性溶液是清洁基于蛋白质的生物膜的最佳方法。这项研究导致对最有前途的清洁机制概念进行了测试,以定量评估其清洁效果。最终概念的开发考虑了新西兰法律和职业道德规范的要求,恶劣环境下的材料问题,使用有限元方法进行的结构设计以及传热和传质分析。最终设计解决方案包括两个单位。首先,一个用于容纳盘绕带的储罐,另一个用于存储氢氧化钠清洁溶液的绝热储罐,用于装载/卸载带的高架起重机以及用于控制流体流量的输送泵和控制系统。第二个单元是一个单独的冲洗器,用于执行喷水处理。这项研究得出了带式清洗机的最终制造信息。这包括详细的图纸以及所有零件和结构的成本核算。

著录项

  • 作者

    Wright M. J.;

  • 作者单位
  • 年度 2003
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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