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The effect of high-intensity pulsed ion beam on surface structures of MAO film on magnesium alloy AZ31

机译:高强度脉冲离子束对镁合金AZ31上MAO膜表面结构的影响

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摘要

Micro-arc oxidation (MAO) films on AZ31 magnesium alloy were modified by high-intensity pulsed ion beam (H1PIB) irradiation with ion energy of 300 keV at 200 A/cm~2 with up to 10 shots. Scanning electron microscopy, X-ray diffractometry and micro-hardness testers were used to characterize the surface properties of the irradiated MAO films. The thickness of remelted layer increased and then decreased, and the maximal value of 10 urn was obtained at 200 A/cm~2 with 5 shots. The phase structure of the ablated surface still consisted of Mg_2SiO_4 and MgO, which are the same as that of the original ones. Surface roughness of the ablated surface increased and then decreased with the increase of shot number. The surface roughness for the original MAO film is about 2.10 μm, it decreased to 1.18 μm with 1 shot irradiation and then increased to 4.13 μm with irradiation shots up to 10. Correspondingly, the surface energy of the ablated surface augmented, resulting in the tedious decrease of static contact angle from 145.9° for original film to 49.7° for the film with 10 shots. The ablation modification enhanced the continuity and compaction of the MAO films on AZ31 magnesium alloy.
机译:AZ31镁合金上的微弧氧化(MAO)膜通过高强度脉冲离子束(H1PIB)辐照,以300 keV的离子能量在200 A / cm〜2的条件下进行了多达10次照射。使用扫描电子显微镜,X射线衍射仪和显微硬度测试仪来表征辐照后的MAO膜的表面性能。重熔层的厚度先增大后减小,在200 A / cm〜2的条件下经5次喷丸可得到最大值10 urn。烧蚀表面的相结构仍由Mg_2SiO_4和MgO组成,与原始相相同。烧蚀表面的表面粗糙度随着喷丸次数的增加先增加后降低。原始MAO膜的表面粗糙度约为2.10μm,经过1次辐照后,其表面粗糙度降低至1.18μm,直到达到10次辐照时,其表面粗糙度才增加至4.13μm。相应地,烧蚀表面的表面能增加,导致乏味静态接触角从原始胶卷的145.9°降低到10张胶卷的49.7°。烧蚀改性增强了AZ31镁合金上MAO膜的连续性和致密性。

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