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Effect of Hafnium on the Structural and Mechanical Properties of the Surface Layers on the Basis of TiNi

机译:Ni对基于TiNi的表层结构和力学性能的影响

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摘要

The study contains a complex method of forming the surface-modified layers using materials with shape memory effect by high-speed gas-flame spraying of mechanically activated powders based on TiNiHf, followed by thermal and thermomechanical treatment. This allowed us to form the nanoscale state in the surface layers, which have high levels of functional, mechanical and performance properties. We demonstrated that pre-mechanoactivation of TiNiHf powder has reduced the coatings' porosity (less than 1%) and provided adhesive strength of the coating with the substrate (110 to 120 MPa). We described the formation mechanism of nanostructured state in TiNiHf powders under severe plastic deformation during mechanical activation, comprising the steps of high-speed deformation, polygonization and recrystallization.
机译:这项研究包含了一种复杂的方法,该方法使用具有形状记忆效果的材料形成表面改性层,方法是对基于TiNiHf的机械活化粉末进行高速火焰喷涂,然后进行热处理和热机械处理。这使我们能够在具有高水平的功能,机械和性能特性的表面层中形成纳米级状态。我们证明了TiNiHf粉末的预机械活化作用降低了涂层的孔隙率(小于1%),并提供了涂层与底材的粘合强度(110至120 MPa)。我们描述了TiNiHf粉末在机械活化过程中在严重塑性变形下的纳米结构态形成机理,包括高速变形,多晶化和再结晶的步骤。

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