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The use of laboratory erosion tests for the prediction of wear in pneumatic conveyor bends

机译:使用实验室腐蚀测试来预测气动输送机弯头的磨损

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摘要

This thesis describes a programme of work which has been undertaken with the objective of investigating means of using a laboratory erosion tester to predict the life of a bend in a pneumatic conveyor.ududProviding a link between a laboratory erosion tester and erosion tests on a pneumatic conveyor would lead to the development of an inexpensive way of predicting the life of a pipe bend operating under any given set of conveying conditions.ududAn extensive literature review was carried out. From this it was concluded that very little work of an experimental corroborative nature had been out to substantiate whether erosion test results from a laboratory tester could be used to predict the life of a pneumatic conveyor bend.ududTwo test facilities were constructed to carry out tests under accurately controlled conditions. The first of these was a laboratory 'rotating disc accelerator' erosion tester, and the second an industrially scaled pneumatic conveying test facility.ududBoth test facilities yielded results that followed previously reported trends but also illustrated some trends that have been unreported in earlier work. It was found that the 'rotating disc accelerator' simulated erosion with minimal interference from inter-particulate collisions. For the pneumatic conveyor test bend used it was found that puncture of the bend wall occurred in the region where secondary particle impacts occurred, rather than in the region of primary impacts as reported in earlier work. Explanations for both these observations are given.ududAn optically based construction for a cylindrical mirror was used to predict the location of the puncture point in the bend, and the intensification of particle impacts in the region of the pipe bend due to the geometry of the bend. When this was combined with an empirical erosion model derived from results obtained from the rotating disc accelerator, an accurate estimate of the life of the bend could be made. Further development of this model is discussed.ududAn extensive series of recommendations for further work to address some of the findings discovered during this work are given.
机译:本文描述了一项工作计划,旨在研究使用实验室腐蚀测试仪预测气动输送机弯曲寿命的方法。 ud ud提供了实验室腐蚀测试仪与管道腐蚀测试之间的联系气动输送机将导致开发一种廉价的方法来预测在任何给定的输送条件下运行的弯管的使用寿命。 ud ud进行了广泛的文献综述。由此得出的结论是,只有很少的实验性工作可以证实实验室测试仪的腐蚀测试结果是否可以用来预测气动输送机弯头的使用寿命。 ud ud建造了两个测试设施在精确控制的条件下进行测试。其中第一台是实验室的“转盘式加速器”腐蚀测试仪,第二台是工业规模的气动传输测试设备。工作。结果发现,“转盘加速器”模拟了腐蚀,并且颗粒间碰撞的干扰最小。对于使用的气动输送机测试弯头,发现弯头壁的刺孔发生在发生二次粒子撞击的区域,而不是早期工作中报道的一次撞击区域。给出了对这两种观察结果的解释。 ud ud使用基于光学的圆柱镜构造预测折弯处的穿刺点的位置,以及由于几何形状而在弯管区域中粒子撞击的加剧的弯头。当将其与从旋转圆盘加速器获得的结果得出的经验腐蚀模型相结合时,可以对弯头的寿命做出准确的估算。讨论了该模型的进一步开发。 ud ud提出了一系列广泛的建议,以进一步解决该工作中发现的一些发现。

著录项

  • 作者

    Burnett Anthony John;

  • 作者单位
  • 年度 1996
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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