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Numerical and experimental investigations of particle embedment during the incubation period in the solid particle erosion of ductile materials

机译:延性材料固体颗粒腐蚀期间颗粒嵌入的数值和实验研究

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During solid particle erosion, a transient incubation period can occur due in part to particle embedment into the target. This paper presents a novel three-dimensional smoothed particle hydrodynamics model of the impact and embedding of successive bursts of 362 mu m angular SiC abrasives onto a 6061-T6 aluminum target. The predicted embedment agreed well with measured values from abrasive blasting experiments. Approximately 20% of the particles launched in the first two bursts embedded, but as incoming particles removed previously embedded ones, embedment decreased to a steady-state 8% after 6 bursts. The model has applications for predicting the embedment occurring during abrasive jet machining using multiple nozzle passes, and sheds light on embedment mechanisms during the incubation period of solid particle erosion.
机译:在固体颗粒侵蚀期间,部分含有瞬态培养周期,部分是颗粒嵌入到目标中。 本文介绍了一种新的三维平滑粒子流体动力学模型的冲击和嵌入362μm角SiC磨料的连续爆发到6061-T6铝靶标。 预测嵌入良好地同意磨料爆破实验的测量值。 大约20%的颗粒在嵌入的前两个爆发中发射,而是作为从先前嵌入的颗粒中除去的颗粒,在6次爆发后嵌入量减少到稳态8%。 该模型具有用于预测使用多个喷嘴通过在磨料喷射加工期间发生的嵌入的应用,并且在固体颗粒腐蚀的孵育期间夹持嵌入机制的光。

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