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Improving Strip Surface Quality of AA6111 alloy using Different Casting Atmospheres for the Horizontal Single Belt Strip Casting (HSBC) Process

机译:在水平单带钢连铸(HSBC)工艺中使用不同的铸造气氛改善AA6111合金的带钢表面质量

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摘要

The surface quality of as-cast strip is a key factor in the production of strips produced by Horizontal Single Belt Strip Casting process (HSBC). Aluminum alloys were cast on an HSBC simulator, using different casting atmospheres at meniscus region, including preheated air and pure oxygen. The strip’s bottom surface was analyzed in order to evaluate the effect of casting atmosphere on strip surface quality. The preheated air or oxygen was injected into the hollowed backwall refractory and was released through the orifices on the bottom of the refractory, close to the back-wall meniscus region. The purpose was to flush out the ambient air entrained above the moving substrate. The possibility of eliminating surface defects caused by air pockets’ on the strip’s bottom surface and improving surface quality by controlling the casting atmosphere in the meniscus region were confirmed. The surface profiles of the sand-blasted substrates and those of the related strips were analyzed using 3D Profilometry. The interfacial heat fluxes through using an oxygen atmosphere at the upstream meniscus were also enhanced greatly, as compared to the casting process using a graphite coating on the substrate. A novel way for improving strip surface quality with high attendant interfacial heat fluxes is now proposed for the HSBC process.
机译:铸态带钢的表面质量是通过水平单带钢连铸工艺(HSBC)生产的带钢生产中的关键因素。铝合金是在HSBC模拟机上铸造的,在弯月形区域使用不同的铸造气氛,包括预热的空气和纯氧。分析带钢的底部表面,以评估铸造气氛对带钢表面质量的影响。将预热的空气或氧气注入中空的后壁耐火材料中,并通过耐火材料底部靠近孔弯液面区域的孔口释放。目的是冲洗掉夹带在移动基板上方的环境空气。通过控制弯月面区域的铸造气氛,可以消除由带钢底面上的气穴引起的表面缺陷并改善表面质量的可能性。使用3D轮廓分析法分析喷砂基材和相关带材的表面轮廓。与在基板上使用石墨涂层的铸造工艺相比,通过在上游弯月面使用氧气气氛的界面热通量也得到了大大提高。现在提出了一种用于HSBC工艺的,具有高伴随界面热通量的改善带材表面质量的新颖方法。

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