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Microstructure control of cold-sprayed pure iron coatings formed using mechanically milled powder

机译:使用机械研磨粉末形成冷喷纯铁涂层的微观结构控制

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Nanocrystalline metallic materials with grain sizes of less than 100 nm exhibit high strength and unique characteristics, such as high levels of ductility and corrosion resistance. Mechanical milling techniques can be used to produce large amounts of nanocrystalline metallic powder. However, it is essential to perform a sintering treatment, which induces coarsening of the crystal grains, to form a bulk material from the mechanically milled powder. The cold spray technique is expected to effectively form a nanocrystalline metallic coating using the mechanically milled powder. This study focuses on pure iron coating, which is formed by a cold spray technique using mechanically milled pure iron powder. Pure iron powder, with crystal grains of similar to 100 nm, was obtained by a mechanical milling process, and was deposited onto a low-carbon steel substrate by cold spraying. It was confirmed that a dense, nanocrystalline coating with a hardness of over 300 HV can be achieved; however, the deposition efficiency of this coating was half of that of the coating formed using the as-received powder. The improvement of the deposition efficiency and properties of such coatings was attempted using powder mixtures comprising both milled and as-received powders. The results indicate that the deposition efficiency and microstructure, directly linked to the mechanical properties of the coating, can be controlled by varying the content of the as-received powder of the mixture.
机译:纳米晶金属材料具有小于100nm的晶粒尺寸表现出高强度和独特的特性,例如高水平的延展性和耐腐蚀性。机械铣削技术可用于生产大量的纳米晶金属粉末。然而,必须执行烧结处理,该处理诱导晶粒的粗化,从机械研磨的粉末形成散装材料。预期冷喷涂技术使用机械研磨的粉末有效地形成纳米晶金属涂层。本研究专注于纯铁涂层,该纯铁涂层由使用机械研磨的纯铁粉末的冷喷涂技术形成。用机械研磨工艺获得纯铁粉,具有类似于100nm的晶粒,通过冷喷涂沉积在低碳钢基板上。确实证实,可以实现具有超过300HV的硬度的致密纳米晶涂层;然而,该涂层的沉积效率是使用由接收的粉末形成的涂层的一半。尝试使用包含研磨的和接收的粉末的粉末混合物来试图改善这种涂层的沉积效率和性质。结果表明,通过改变混合物的接收粉末的含量,可以控制与涂层的机械性能直接连接的沉积效率和微观结构。

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