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Influence of coating thickness on residual stress and adhesion-strength of cold-sprayed Inconel 718 coatings

机译:涂层厚度对冷喷涂的残余应力和粘合强度的影响718涂层

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摘要

In the cold spray process, deposition of particles takes place through intensive plastic deformation upon impact in a solid state at the temperatures well below their melting point. The high particle impact velocity causes high local stresses which lead to deforming the particles and the substrate plastically in the proximity of the particle-substrate interface. As a result, high residual stresses are introduced in cold spray coatings due to the peening effect of the particles collisions with the substrate. In this study, a powder based on the chemical composition of IN 718 was cold-sprayed on IN 718 substrates by using nitrogen gas for an application as a repair tool for aero engine components. The magnitude of the residual stress and its distribution through the thickness were measured by using the hole-drilling and the bending methods. Residual stress was also estimated by using an approach based on the physical process parameters. Mainly compressive residual stresses were observed in cold sprayed IN 718 coatings. Accumulation of residual stresses in the coatings is highly affected by peening during deposition and it decreases with increase in thickness. It has been observed that the adhesion-strengths of cold sprayed IN 718 coatings are highly influenced by coating thickness and residual stress states of the coating/substrate system. In the presence of residual stresses in the coatings, adhesion-strength decreases with increasing coating thickness. The energy-release-rate criterion has been used to predict adhesion-strength with increasing coating thickness. Predicted bond-strength values are close to the measured adhesion-strength values and decrease with increase in coating thickness.
机译:在冷喷涂过程中,粒子沉积在温度低于其熔点的温度下撞击固态的强烈塑性变形。高颗粒冲击速度导致局部应力的高局部应力,这导致颗粒和衬底在颗粒基底界面的附近变形。结果,由于颗粒与基材的碰撞的喷丸效应,在冷喷涂涂层中引入高残余应力。在该研究中,通过使用氮气作为Aero发动机部件的修复工具,在718个基板中冷喷在718个基质中的粉末。通过使用空穴钻孔和弯曲方法测量残余应力的大小及其通过厚度的分布。还通过使用基于物理过程参数的方法来估算残余应力。主要在718涂层中在冷喷涂中观察到压缩残余应力。在沉积期间,涂层中残留应力的积累受到高度影响,并且随着厚度的增加而降低。已经观察到,通过涂布/衬底系统的涂覆厚度和残余应力状态,718涂层中喷涂的冷喷涂的粘附强度受到高度影响。在涂层中残留应力存在下,粘合强度随着涂层厚度的增加而降低。能量释放速率标准已用于预测涂层厚度增加的粘合强度。预测的粘合强度值接近测量的粘合强度值,并随着涂层厚度的增加而降低。

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