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Study on the Erosion Wear Behaviors of the PMMA Plates Impacted by Air Flow Containing Sands

机译:含沙的空气流动影响PMMA板的侵蚀磨损行为研究

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The polymethymethacrylate (PMMA) plate was adopted as the test samples. The effects of impact angle, impact velocity, sand size on the erosion wear of the PMMA plates were experimentally investigated. The erosion mechanisms were also analyzed. The results showed that, the erosion volume increased nonlinearly with the increase of impact velocity, the inflection point appeared at around 13 m/s, and then the erosion volume increased rapidly. The erosion volume decreased nonlinearly as the impact angle increased. In our experiments, under the impact angle less than 60°, the smaller sand size could result in higher erosion wear. However, at 90°, the erosion volume by larger sands produced higher erosion. In fact, the erosion mechanism depends on the impact angle, at small impact angles, the main erosion mechanism is micro-cutting, and the erosion mechanism will mainly be impacting fatigue at large impact angles. At the medium impact angles, the erosion mechanism is the combination of the micro-cutting and impacting.
机译:采用聚甲型甲基丙烯酸酯(PMMA)板作为试验样品。实验研究了冲击角,冲击速度,砂尺寸对PMMA板腐蚀磨损的影响。还分析了侵蚀机制。结果表明,侵蚀体积随着冲击速度的增加而增加,拐点出现在约13米/秒,然后侵蚀体积迅速增加。随着冲击角的增加,侵蚀体积不会下降。在我们的实验中,在冲击角度小于60°,较小的砂尺寸可能导致更高的侵蚀磨损。然而,在90°时,较大的沙子的腐蚀体积产生更高的侵蚀。事实上,侵蚀机理取决于冲击角,在小的冲击角度下,主要侵蚀机制是微切的,侵蚀机制将主要是在大冲击角度的疲劳。在中部冲击角处,侵蚀机理是微切割和冲击的组合。

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