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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >A model to predict erosion on mild steel surfaces impacted by boiler fly ash particles
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A model to predict erosion on mild steel surfaces impacted by boiler fly ash particles

机译:预测粉煤灰颗粒影响软钢表面腐蚀的模型

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Fly ash particles entrained in the flue gas from boiler furnaces in coal-fired power stations can cause serious erosive wear on steel surfaces along the flow path. Such erosion can, as a particular example, reduce significantly the operational life of the mild steel heat transfer plates that are used in rotary regenerative heat exchangers ('air heaters') that extract heat from the flue gas and transfer it to the incoming boiler combustion air. This paper describes research into fly ash impingement erosion on such surfaces. The effect of the ash particle impact velocity and impact angle on the erosive wear of mild steel surfaces, using three different power station ash types, was determined through experimental investigations. The experimental data were used to calibrate a fundamentally-derived model for the prediction of erosion rates. The model incorporates the properties of the ash particles and the target metal surface, as well as the characteristics of the ash particle motion in the form of the impingement velocity and the impingement angle. When tested using the three different types of ash, the experimentally-calibrated general model yielded results that generally differed by less than 15% from the values that had been measured experimentally.
机译:燃煤电站锅炉炉膛烟道气中夹带的粉煤灰颗粒会在沿流动路径的钢表面上造成严重的腐蚀磨损。作为一个特定的例子,这种腐蚀会显着降低用于回热式换热器(“空气加热器”)的软钢传热板的使用寿命,该回热式换热器从烟道气中吸收热量并将其传递给锅炉燃烧。空气。本文介绍了在此类表面上飞灰冲击侵蚀的研究。通过实验研究确定了使用三种不同的电站灰类型,灰颗粒的撞击速度和撞击角度对低碳钢表面的侵蚀磨损的影响。实验数据用于校准腐蚀速率预测的基本模型。该模型以冲击速度和冲击角度的形式结合了灰烬颗粒和目标金属表面的特性以及灰烬颗粒运动的特征。当使用三种不同类型的灰分进行测试时,经实验校准的通用模型所产生的结果与经实验测得的值通常相差不到15%。

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