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首页> 外文期刊>Ironmaking & Steelmaking >Development of phosphate coating on the surface of TMT rebar: an option to study the effect of n-SiO2 as an additive
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Development of phosphate coating on the surface of TMT rebar: an option to study the effect of n-SiO2 as an additive

机译:TMT钢筋表面上磷酸盐涂层的研制:一种研究N-SiO2作为添加剂的作用的选择

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Phosphate conversion coatings on the rebar surfaces with oxide scale (OS) and without oxide scale (WOS) have been tried with or without addition of n-silica particles as an additive to check the effect of n-silica on phosphating behaviour of rebar. All the phosphate coatings were characterised using SEM-EDS, XRD, Tafel, EIS, salt spray and pull out test. Hopeite was identified as major zinc phosphate phase in the coating which was obtained on the OS steel surface, whereas hopeite along with spencerite compounds were identified as major zinc phosphate compounds present in the coating which was obtained on the WOS steel surface. Thicker phosphate coatings were obtained when WOS and OS rebars were treated in n-silica-added and n-silica-free phosphating solution, respectively, and vice versa. Nano-silica acts as a catalyst in the formation of more dense and compact phosphate coating on the surface of WOS rebar, whereas nano-silica acts as a poison for phosphating reaction on the surface of OS rebar. Smoother phosphate coatings were obtained on both types of rebar surfaces when treatment was done in silica-added phosphate solution. Silica acts as a levelling agent for phosphate coating on both the steel surfaces. Phosphate coatings showed better resistance against red rust formation when OS rebar was treated in n-silica-free phosphate solution and WOS rebar was treated in n-silica-added phosphate solution. These two phosphate-coated OS and WOS steel substrates produced 29 and 11% increment in bond strength with the concrete structure compared to uncoated steel substrate, respectively.
机译:用氧化物尺度(OS)和不含氧化物尺度(WOS)的钢筋转化涂层已经尝试或不加入N-二氧化硅颗粒作为添加剂,以检查n二氧化硅对钢筋磷化行为的影响。所有磷酸盐涂料都使用SEM-EDS,XRD,Tafel,EIS,盐雾和拉出试验表征。希望在OS钢表面获得的涂层中被鉴定为主要磷酸锌相,而在WOS钢表面上获得的涂层中存在的主要锌磷酸盐化合物的高锌化合物的涂层中获得的主要锌磷酸盐相。当在N-二氧化硅 - 加入的和N-二氧化硅 - 无磷磷酸盐溶液中处理WOS和OS钢筋时,获得较厚的磷酸涂层,反之亦然。纳米二氧化硅作为催化剂作用于在WOS钢筋表面形成更密集和紧凑的磷酸盐涂层,而纳米二氧化硅作为磷酸盐反应的毒药在OS钢筋表面上。当在二氧化硅添加的磷酸溶液中进行处理时,在两种类型的钢筋表面上获得光滑的磷酸盐涂层。二氧化硅用作钢表面上的磷酸盐涂层的平整剂。当在N-二氧化硅 - 无氧磷酸盐溶液中处理OS钢筋处理时,磷酸涂层抗红色锈地形成较好,并且在N-二氧化硅加入的磷酸溶液中处理WOS钢筋。这两个磷酸盐涂覆的OS和WOS钢基材分别在与未涂覆的钢基板相比,用混凝土结构产生29和11%的粘合强度。

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