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Microstructural and mechanical characterization of Ni-base thermal spray coatings deposited by HVOF

机译:HVOF沉积的镍基热喷涂涂层的组织和力学特性

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摘要

The present work has been conducted in order to determine the microstructural features, hardness and elastic modulus of two different Ni-base coatings deposited by means of HVOF thermal spray, onto a SAE 1045 plain carbon steel substrate. The morphology and chemical composition of the phases that are present in the coatings were characterized by means of SEM, EDS and XRD techniques. Image analysis was used for the evaluation of the coatings porosity. Both conventional and instrumented indentation tests were also carried out on the surface and cross section of the coatings, in order to evaluate the effect of coating microstructure on hardness and elastic modulus. Conventional indentation tests were conducted using a Knoop indenter and a maximum load of 9.8 N. Instrumented indentation tests, in which the indenter depth and applied load were recorded continuously, were carried out employing a Vickers indenter and maximum loads of 0.49, 0.98, 1.96, 4.9 and 9.8 N. Instrumented nanoindentation tests (in a continuous stiffness measurement mode) were also conducted employing a Berkovich indenter with a maximum load of 9.8 N. The elastic modulus was computed by means of the Oliver and Pharr method and compared with the values determined by means of the method earlier advanced by Marshall et al. The results obtained indicate that the elastic modulus values determined on the cross section of the coatings are higher than those obtained on the surface, clearly indicating the anisotropy of the structure. Also, the values found employing a Berkovich indenter are very similar to those derived by means of the Vickers indenter. In addition, the these values are in agreement with those determined by taking into consideration the elastic recovery of the short Knoop diagonal after removal of the load. (C) 2008 Elsevier B.V. All fights reserved.
机译:为了确定通过HVOF热喷涂沉积在SAE 1045碳素钢基体上的两种不同的镍基涂层的显微结构特征,硬度和弹性模量,已经进行了本工作。借助于SEM,EDS和XRD技术表征了涂层中存在的相的形态和化学组成。图像分析用于评估涂层的孔隙率。为了评估涂层微观结构对硬度和弹性模量的影响,还对涂层的表面和横截面进行了常规和仪器压痕测试。传统的压痕测试是使用努氏压头进行的,最大负载为9.8N。使用Vickers压头连续记录压头深度和施加的负载的仪器化压痕测试,最大负载为0.49、0.98、1.96, 4.9和9.8N。还使用最大载荷为9.8 N的Berkovich压头进行了仪器化的纳米压痕测试(以连续刚度测量模式)。弹性模量是通过Oliver和Pharr方法计算的,并与确定的值进行比较借助Marshall等人先前提出的方法。获得的结果表明,在涂层的横截面上确定的弹性模量值比在表面上获得的弹性模量值高,这清楚地表明了结构的各向异性。同样,使用Berkovich压头发现的值与通过维氏压头得出的值非常相似。另外,这些值与通过考虑去除负荷后的短努氏对角线的弹性恢复而确定的值一致。 (C)2008 Elsevier B.V.版权所有。

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