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Experimental study of cavitation damage on hydrogen-terminated and oxygen-terminated diamond film surfaces

机译:氢封端和氧封端金刚石膜表面空化损伤的实验研究

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摘要

To investigate the effect of hydrophobic surface on cavitation damage, hydrogen-terminated diamond film and oxygen-terminated diamond film are prepared for the cavitation damage experiment. Because the film surfaces have the same roughness and hardness, the hydrophobic property effect is focused on. Obvious damage pits appear on the hydrogen-terminated surface after 4 h cavitation experiment, while no such pits are found on oxygen-terminated surface. Surface testing results also show that the surface roughness of hydrogen-terminated surface is higher than that of oxygen-terminated surface after the experiment. Such results indicate that the collapse of bubbles growing from the hydrophobic wall to be damaged plays important role in the generation of cavitation damage.
机译:为了研究疏水表面对气蚀损伤的影响,制备了氢封端金刚石膜和氧封端金刚石膜用于气蚀损伤实验。因为膜表面具有相同的粗糙度和硬度,所以疏水性效果受到关注。空化实验4 h后,在氢封端的表面上出现了明显的损伤坑,而在氧封端的表面上没有发现这样的坑。表面测试结果还表明,实验后氢封端表面的表面粗糙度高于氧封端表面的表面粗糙度。这样的结果表明,从疏水壁生长的气泡的破裂将被破坏,在空化破坏的产生中起重要作用。

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