Ab'/> Hardness evaluation from a bilayer coating system of Ni-P deposited on carbon steel plates by multicycle indentation tests
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Hardness evaluation from a bilayer coating system of Ni-P deposited on carbon steel plates by multicycle indentation tests

机译:多十入缩进试验沉积在碳钢板上的Ni-P的双层涂层系统的硬度评价

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AbstractThe assessment of mechanical properties of materials by instrumented indentation tests have been widely performed in last years. The objective of this work was to develop a methodology to analyze the mechanical behavior of materials from the data obtained by a continuous multicycle indentation test at the microscale of loads to limit the problems associated with the heterogeneity of the materials and to increase the amount of data for the study of thick coatings that only nanoscale analysis does not provide in the case of heterogeneous coatings. To validate our approach, the hardness behavior of a two-layers coating material (Ni-P) is studied. To corroborate the values obtained by the proposed methodology, continuous stiffness measurement tests at the nanoscale were also performed. The bilayer system was found to bear satisfactorily the loading/unloading cycles and provide an important composite hardness at the surface of the coating.Highlights?Multicycle microindentation test is proposed to evaluate the hardness behavior of electroless Ni-P coatings.?Nanoindentation tests were also performed in coatings.
机译:<![cdata [ 抽象 通过仪表压痕测试评估材料的机械性能,在去年中已被广泛进行。这项工作的目的是开发一种方法,以分析通过在Micross of Labess的连续多运行压痕测试获得的数据中的材料的力学行为来限制与材料的异质性相关的问题,并增加数据量对于厚涂层的研究,仅在异构涂层的情况下仅提供纳米级分析。为了验证我们的方法,研究了两层涂料(Ni-P)的硬度行为。为了证实通过所提出的方法获得的值,还进行了纳米级的连续刚度测量试验。发现双层系统令人满意地承受载荷/卸载循环,并在涂层表面提供重要的复合硬度。 突出显示 提出了多运行的微indentation测试,以评估化学型Ni-p涂层的硬度行为。 纳米压腔试验也在涂层中进行。< / ce:para>

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