Al2O3颗粒对Al-Al2O3复合材料腐蚀行为、显微组织及铝基织构的影响

IF 0.8 4区 材料科学 Q3 METALLURGY & METALLURGICAL ENGINEERING
Sabrina Dehrib, Nacer Zazi, Hülya Durmus
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引用次数: 0

摘要

本文研究了添加5%、10%和15%的氧化铝颗粒对Al-Al2O3 MMC复合材料精加工后的微观组织、铝基体的形貌和腐蚀动力学、硬度和织构演变的影响。结果表明:在氧化铝添加量为5%的样品中,氧化铝颗粒在某些区域呈花瓣状,在另一些区域呈片状;在氧化铝添加量为10%的样品中,氧化铝颗粒呈截短的花瓣状和片状混合分布;在Al2O3添加量为15%的样品中,氧化铝在1区呈片状,在2区呈花瓣状和片状混合分布;添加5%和10% Al2O3的试样几乎在所有表面都发生了普遍腐蚀,而添加15% Al2O3的试样则不发生普遍腐蚀。随着Al2O3添加量的增加,耐蚀性提高。在铝中加入氧化铝粉末后,铝的质地略有变化。铝中加入氧化铝粉后,硬度发生变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Effects of Al2O3 Particles on Corrosion Behavior and Microstructure of Al–Al2O3 Composites and Texture of Aluminum Matrix

Effects of Al2O3 Particles on Corrosion Behavior and Microstructure of Al–Al2O3 Composites and Texture of Aluminum Matrix

In this paper, we studied the influence of alumina particles addition, 5, 10, and 15 wt %, on the microstructure after elaboration of Al–Al2O3 MMC composite, morphology and kinetic of corrosion, hardness, texture evolution of aluminum matrix. The results show distribution of alumina particles in shape of petal-like phase in some zones , in form of flack in another region for sample with 5% addition alumina, and in mixture between truncated petal-like phase and flake form particles for the sample with 10% addition of alumina, of flake in zone 1 one and a mixture of petal-like phase and flake in zone 2 for the sample with 15% addition of Al2O3, the samples with 5 and 10% Al2O3 were undergo generalized corrosion almost in the all surfaces, but for the sample with 15% addition of was undergo the corrosion which don’t tends to generalized corrosion. The corrosion resistance increase when the Al2O3 addition increases. The texture of aluminum changes slightly when the alumina powders are added to aluminum. The hardness change when alumina powders are added to aluminum.

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来源期刊
CiteScore
1.90
自引率
18.20%
发文量
90
审稿时长
4-8 weeks
期刊介绍: Protection of Metals and Physical Chemistry of Surfaces is an international peer reviewed journal that publishes articles covering all aspects of the physical chemistry of materials and interfaces in various environments. The journal covers all related problems of modern physical chemistry and materials science, including: physicochemical processes at interfaces; adsorption phenomena; complexing from molecular and supramolecular structures at the interfaces to new substances, materials and coatings; nanoscale and nanostructured materials and coatings, composed and dispersed materials; physicochemical problems of corrosion, degradation and protection; investigation methods for surface and interface systems, processes, structures, materials and coatings. No principe restrictions exist related systems, types of processes, methods of control and study. The journal welcomes conceptual, theoretical, experimental, methodological, instrumental, environmental, and all other possible studies.
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