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首页> 外文期刊>Surface & Coatings Technology >Temperature dependent elastic modulus of HVOF sprayed Ni-5%Al on 304 stainless steel using nondestructive laser ultrasound technique
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Temperature dependent elastic modulus of HVOF sprayed Ni-5%Al on 304 stainless steel using nondestructive laser ultrasound technique

机译:使用非破坏激光超声技术,HVOF喷涂Ni-5%Al的温度依赖弹性模量

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摘要

In this study, NiAl coating was produced on 304 stainless steel material using High velocity oxygen-fuel (HVOF) spray technique. The influence of oxygen flowrate on the microstructure, porosity and hardness of the coating was investigated. Further, the mechanical properties of HVOF sprayed samples were determined at various temperatures using optical, laser excitation with interferometer reception, completely non-contact and nondestructive based laser ultrasound technique. The outcomes of this study indicate that the microstructure and properties of the coatings are sensitive to the oxygen flowrate. A coating with highest hardness and less porosity was achieved while increasing the oxygen content. Higher Young's modulus was observed at 20 degrees C and gradually decreases with the rise in temperature. The behavior of Young's modulus and Poisson's ratio at elevated temperature indicates that originate from the existence of a gas flow rate in the NiAl coating, leading to reduced flexural strength with increased temperature. Both inversion and experimentation result shows a good agreement in elastic properties of HVOF coated sample. The proposed laser ultrasound technique is valid for remote, noncontact and nondestructive characterization of the Young's modulus and Poisson's ratio of the coatings in elevated temperature environments.
机译:在该研究中,使用高速氧 - 燃料(HVOF)喷涂技术在304个不锈钢材料上生产Nial涂层。研究了氧气流量对涂层微观结构,孔隙率和硬度的影响。此外,使用光学,激光激发与干涉仪接收,完全非接触和基于非破坏性激光超声技术的各种温度,在各种温度下测定HVOF喷涂样品的机械性能。该研究的结果表明涂层的微观结构和性质对氧气流量敏感。在增加氧含量的同时实现具有最高硬度和更少孔隙率的涂层。在20摄氏度下观察到较高的杨氏模量,随着温度的上升逐渐减小。幼小模量和泊松比在升高温度下的比例表明,源自涂层中的气体流速的存在,导致弯曲强度降低,温度升高。两种反转和实验结果表明,HVOF涂层样品的弹性性能良好。所提出的激光超声技术对于较高的温度环境中的涂层模量和泊松比的远程,非接触和非破坏性表征是有效的。

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