>This article examines the substrate/coating interface of a coating deposited onto mild steel and stainless s'/> Ultrafine grain formation and coating mechanism arising from a blast coating process: A transmission electron microscopy analysis
首页> 外文期刊>Surface and Interface Analysis: SIA: An International Journal Devoted to the Development and Application of Techniques for the Analysis of Surfaces, Interfaces and Thin Films >Ultrafine grain formation and coating mechanism arising from a blast coating process: A transmission electron microscopy analysis
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Ultrafine grain formation and coating mechanism arising from a blast coating process: A transmission electron microscopy analysis

机译:喷射涂层工艺产生的超细晶粒形成和涂布机构:透射电子显微镜分析

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>This article examines the substrate/coating interface of a coating deposited onto mild steel and stainless steel substrates using an ambient temperature blast coating technique known as CoBlast. The process uses a coincident stream of an abrasive blast medium and coating medium particles to modify the substrate surface. The hypothesis for the high bond strength is that the abrasive medium roughens the surface while simultaneously disrupting the passivating oxide layer of the substrate, thereby exposing the reactive metal that then reacts with the coating medium. The aim of this study is to provide greater insight into the coating/substrate bonding mechanism by analysing the interface between a hydroxyapatite coating on both mild and stainless steel substrates. The coating adhesion was measured via a tensile test, and bond strengths of approximately 45?MPa were measured. The substrate/coating interface was examined using transmission electron microscopy and selected area diffraction. The analysis of the substrate/coating interface revealed the presence of ultrafine grains in both the coating and substrate at interface associated with deformation at the interface caused by particle impaction during deposition. The chemical reactivity resulting from the creation of these ultrafine grains is proposed to explain the high adhesive strength of CoBlast coatings.
机译:>本文使用一种被称为CoBlast的环境温度喷砂涂层技术,检查沉积在低碳钢和不锈钢基材上的涂层的基材/涂层界面。该工艺使用磨料喷砂介质和涂层介质颗粒的一致流来改性基材表面。高粘合强度的假设是,磨料EDI使表面粗糙,同时破坏基底的钝化氧化层,从而暴露出反应性金属,然后与涂层介质反应。本研究的目的是通过分析低碳钢和不锈钢基体上羟基磷灰石涂层之间的界面,对涂层/基体的结合机制提供更深入的了解。通过拉伸试验测量涂层附着力,粘结强度约为45°?测定MPa。使用透射电子显微镜和选区衍射对基底/涂层界面进行了检查。对基体/涂层界面的分析表明,涂层和基体界面均存在超细晶粒,这与沉积过程中颗粒碰撞引起的界面变形有关。这些超细颗粒产生的化学反应性可以解释钴涂层的高粘合强度

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