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Investigation on Relationship Between Microstructural Characteristics and Mechanical Properties of Wire-Arc-Sprayed Zn-Al Coating

机译:电弧喷涂Zn-Al涂层微观结构特性与机械性能的研究

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摘要

Wire arc spraying is a cost-effective thermal spraying technology to deposit a protective coating layer on the surface of industrial components. Mechanical properties of wire arc spraying coatings are mainly influenced by their heterogeneous microstructure, resulting in complex and anisotropic mechanical properties. The objective of this investigation is to characterize the mechanical behavior of wire-arc-sprayed Zn-15Al alloy using an efficient micromechanical-computational scheme. Scanning electron microscopy images were imported to an object-oriented finite element scheme and distinguished into various phases, and then subsequently discretized into finite elements. To examine the validity of this technique, experimental studies, such as Knoop and Vickers microhardness, resonance frequency, and nanoindentation, were conducted on the freestanding coating samples. The elastic modulus of the coating was also calculated using well-known analytical methods. Comparison of the results obtained in this study was used to investigate the relationship between the microstructural features and mechanical properties in coating materials. Image-based finite element analysis showed good agreement with the experimental measurements and proved the effect of splat boundaries on the reduction in mechanical strength between coating layers and, consequently, lower elastic modulus of the wire-arc-sprayed Zn-15Al coating in the longitudinal direction compared to the transversal one.
机译:电弧喷涂是一种经济高效的热喷涂技术,可在工业部件表面上沉积保护涂层。电弧喷涂涂层的力学性能主要受其非均相微观结构的影响,导致复杂和各向异性的机械性能。该研究的目的是使用高效的微机械计算方案来表征线弧喷涂Zn-15Al合金的力学行为。扫描电子显微镜图像被导入面向对象的有限元方案,并将其区分成各个阶段,然后随后离散化为有限元。为了检查该技术的有效性,在独立涂层样品上进行了实验研究,例如Knoop和Vickers Micro硬度,共振频率和纳米indentation。还使用众所周知的分析方法计算涂层的弹性模量。本研究中获得的结果的比较用于研究涂料中的微观结构特征与机械性能之间的关系。基于图像的有限元分析显示了与实验测量的良好一致性,并证明了Splat边界对涂层层之间的机械强度降低的影响,因此纵向线弧喷涂Zn-15Al涂层的较低弹性模量与横向的方向。

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