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Young's modulus measurement and study of the relationship between mechanical properties and microstructure of air plasma sprayed alloy 625

机译:空气等离子喷涂合金625的杨氏模量测量及力学性能与微观结构关系的研究

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摘要

The present study is a continuation of the previous research on fabrication of sandwich structures suitable for high temperature applications. The overall performance of sandwich constructions depends on the material properties of skin and core, and their geometrical characteristics. The sandwich structure consisting of a Ni alloy foam covered by alloy 625 is expected to be a good candidate for high temperature applications. Amongst various methods of applying alloy 625 skin on the foam core, thermal spray techniques are the most promising for the rapid deposition of thick sections on the both sides of the foam structure. Microstructural characteristics of alloy 625 coatings on Ni alloy foam have been previously reported. The objective of this investigation was to characterize the mechanical behavior of air plasma sprayed (APS) alloy 625 coatings deposited on Ni alloy foam. The results of tensile tests performed on the free standing as-sprayed and heat treated alloy 625 coating samples are reported. Furthermore this paper examines the available models relating the microstructure to the elastic modulus, E, of the coatings to predict mechanical behavior of alloy 625 coating. Finally, numerical results from finite element analyses performed on the coatings are presented in this study. Comparison between the results of the tensile tests, theoretical models. and numerical simulations obtained from finite element methods will help us to understand microstructural basis of the mechanical characteristics of alloy 625 coating structure.
机译:本研究是对适用于高温应用的夹层结构制造的先前研究的延续。三明治结构的整体性能取决于表皮和芯的材料特性及其几何特性。由镍合金泡沫覆盖并由合金625构成的三明治结构有望成为高温应用的理想选择。在将625合金表皮涂在泡沫芯上的各种方法中,热喷涂技术最有希望在泡沫结构的两侧快速沉积较厚的部分。先前已经报道了Ni合金泡沫上的625合金涂层的微观结构特征。这项研究的目的是表征沉积在镍合金泡沫上的空气等离子喷涂(APS)625合金涂层的机械性能。报告了对自由喷涂和热处理后的625合金涂层样品进行拉伸测试的结果。此外,本文研究了可用的模型,这些模型将微观结构与涂层的弹性模量E相关联,以预测625合金涂层的机械性能。最后,在这项研究中给出了对涂层进行有限元分析的数值结果。拉伸试验结果之间的比较,为理论模型。有限元方法的数值模拟和数值模拟将有助于我们理解625合金涂层结构力学特性的微观结构基础。

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