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The influence of particle rotation on the solid particle erosion rate of metals

机译:颗粒旋转对金属固体颗粒腐蚀速率的影响

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It has long been recognised that particle spin may have a significant effect on the impact erosion rate, particularly of ductile metals. However, no work has previously been carried out to quantify this effect, partly due to the practical difficulty of measuring the magnitude of the rotational speed. Particle spin is a feature of the centrifugal accelerator erosion tester. In this tester it has proved possible to examine the effect on erosion of particle spin direction by varying the target orientation. The results indicated a strong effect of the spin direction on erosion rate at low impact angles when the targets were impacted by angular particles. A quantitative model was developed to explain the effect of particle spin direction on the observed differences. The model is a modification of the Finnie-Bitter model [Wear 3 (1960) 87; Wear 6 (1963) 5; Wear 6 (1963) 160], and is the first to explicitly incorporate the effect of rotating particles on the subsequent erosion rate when the particles impact a metal target. The model supposes that the effective impact velocity, the contact velocity between the particle and the target, is altered due to spin of the particles. The predictions of the model were validated through actual measurement of particle rotational speed by high-speed photographic techniques; the first such measurements. Experimental erosion results conformed to the predictions of the model. An effect of particle spin on the peak erosion rate is also predicted by the model and confirmed by the experimental results.
机译:长期以来,人们已经认识到颗粒旋转可能对冲击腐蚀速率有重大影响,特别是对韧性金属。但是,部分由于测量转速大小的实际困难,以前没有进行任何量化这种效果的工作。粒子自旋是离心加速器腐蚀测试仪的一项功能。在该测试仪中,已证明可以通过改变目标方向来检查对粒子自旋方向腐蚀的影响。结果表明,当目标受到角形颗粒的冲击时,低冲击角下自旋方向对腐蚀速率的影响很大。建立了一个定量模型来解释粒子自旋方向对观察到的差异的影响。该模型是Finnie-Bitter模型的修改[Wear 3(1960)87;穿6(1963)5;磨损6(1963)160],并且是第一个明确纳入旋转粒子对随后的腐蚀速率的影响的方法,当粒子撞击金属靶材时。该模型假设有效的撞击速度(粒子与目标之间的接触速度)由于粒子的旋转而发生了变化。该模型的预测通过高速照相技术对颗粒旋转速度的实际测量得到验证。第一次这样的测量。实验腐蚀结果符合模型的预测。该模型还预测了颗粒自旋对峰值侵蚀速率的影响,并由实验结果证实。

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