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Structural and technological formation of surface nanostructured Ti-Ni-Mo layers by high-speed gas-flame spraying

机译:高速气体喷涂表面纳米结构Ti-Ni-Mo层的结构和技术形成

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摘要

The article covers a complex method of forming surface-modified layers using materials with shape memory effect (SME) based on TiNiMo including pre-grinding and mechanical activation of the coating material, high-speed gas-flame spraying of Ni adhesive layer and subsequent TiNiMo spraying with molybdenum content up to 2%, thermal and thermomechanical processing in a single technological cycle. This allowed forming nanostructured surface layers with a high level of functional mechanical and performance properties. We defined control parameters of surface steel modification using material with shape memory effect based on TiNiMo, which monitor the structural material state, both at the stage of spraying, and during subsequent combined treatment, which allows affecting purposefully on the functional properties of the SME surface layer. Test results of samples before coating and after surface modification with TiNiMo in the seawater indicate that surface modification brings to a slower damage accumulation and to increase of steel J91171 endurance limit in seawater by 45%. Based on complex metallophysical research of surface layers we obtained new data about nano-sized composition “steel - Ni - TiNiMo”.
机译:本文涵盖形成用材料具有形状记忆效应(SME)的基础上TiNiMo表面改性层包括预研磨和涂覆材料,高速气体火焰喷涂的Ni粘合剂层和随后的TiNiMo的机械活化的复合体的方法在单一技术周期钼含量高达2%时,热和热机械加工喷涂。这使具有高的电平的功能性机械和使用性能形成纳米结构化的表面层。我们定义了使用的材料与基于TiNiMo,其监测结构材料的状态,无论是在喷雾阶段形状记忆效应表面钢修改控制参数,并且在随后的联合治疗,其允许对SME表面的功能特性有目的地影响层。涂布之前和在海水TiNiMo表面改性后样品的测试结果表明,表面改性带来降低到较低的损伤累积,并通过45%在海水中,以增加的钢J91171耐久极限。基于表面层中的复杂metallophysical研究,我们获得的新数据大约纳米级组合物“钢 - 镍 - TiNiMo”。

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