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首页> 外文期刊>SN Applied Sciences >Synthesis of α‑Al_2O_3–graphene composite: a novel product to provide multi‑functionalities on steel strip surface
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Synthesis of α‑Al_2O_3–graphene composite: a novel product to provide multi‑functionalities on steel strip surface

机译:α‑Al_2O_3–石墨烯复合材料的合成:一种在钢带表面提供多功能的新型产品

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摘要

We successfully prepare a composite retaining crystalline structure of α-Al_2O_3 and graphene using a dry (no chemical) planetary ball milling technique. The composite was then coated efficiently on steel substrate via a non-transferred plasma torch. Good adhesion with almost uniform microstructural distribution of α-Al_2O_3–graphene composite (4 wt%) on steel substrate was shown in FESEM study. It was remarkably observed that α-Al_2O_3–graphene (4 wt%) composite coated on steel substrate improves its surface properties exhibiting hardness and Young’s modulus of 370 ± 11 VHN and 292 ± 22 GPa, respectively. This sample is also found to show significant high electrical conductivity of ~ 6.6 × 10~6 S/m. This composite can be an alternate coating to hard chrome coating, carburisation and nitriding with added advantage of surface conductivity.
机译:我们使用干(无化学)行星球磨技术成功地制备了保留了α-Al_2O_3和石墨烯的复合晶体结构。然后通过不转移的等离子炬将复合材料有效地涂覆在钢基材上。 FESEM研究显示,α-Al_2O_3-石墨烯复合材料(4 wt%)在钢基材上具有良好的附着力和几乎均匀的微观结构分布。值得注意的是,涂在钢基材上的α-Al_2O_3-石墨烯(4 wt%)复合材料改善了其表面性能,分别具有370±11 VHN和292±22 GPa的硬度和杨氏模量。还发现该样品显示出约6.6×10〜6 S / m的高电导率。这种复合材料可以替代硬铬涂层,渗碳和氮化,具有表面导电性的优势。

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