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Microstructural and fatigue behavior of cold sprayed Ni-based superalloys coatings

机译:冷喷涂Ni高超合金涂料的微观结构和疲劳行为

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摘要

In the present paper, the microstructural and mechanical properties of Ni based superalloys coatings, cold sprayed on C steel substrates, are analyzed. Different coatings were produced by varying the processing parameters (gas and temperature, pressure and spraying distance) in the ranges 700-850 degrees C, 3.5-4 MPa and 20-60 mm respectively. Optical microscopy was employed for the microstructural characterization and the porosity measurement of the produced coatings. Various experimental evidences underline the possibility of performing repairs through cold spray because of the good level of adhesion achievable by employing optimal processing parameters. In the present paper, the potential repair of cracked steel sheets by employing cold spray technology is presented. 60 degrees and 90 degrees V-type surface notches, machined on carbon steel panels, have been repaired by using Diamalloy cold sprayed powders. The microstructural behavior of the produced coatings was analyzed through optical and scanning electron microscopy. The mechanical properties of the coatings were evaluated through nanoindentation and adhesion tests. The fatigue properties of the coatings were analyzed, through bending tests, in order to evaluate the crack initiation and growth behavior in the coatings during cyclic loading. The K factor was quantified for the different notches geometry. In general, an increase in crack growth rate is recorded in those sheets with 60 degrees V-type notch; crack growth rate also increases as the maximum load during test increases. The cracking mechanisms were studied through SEM observations after fatigue tests. (C) 2017 Elsevier B.V. All rights reserved.
机译:在本文中,分析了Ni基超合金涂层的微观结构和机械性能,冷喷涂在C钢基材上。通过分别改变分别为700-850℃,3.5-4MPa和20-60mm的范围的加工参数(气体和温度,压力和喷雾距离)来生产不同的涂层。使用光学显微镜用于微结构表征和所生产的涂层的孔隙率测量。各种实验证据强调通过冷喷雾进行修复的可能性,因为通过采用最佳加工参数可实现的良好粘合水平。在本文中,提出了采用冷喷涂技术的裂纹钢板潜在修复。在碳钢板上加工的60度和90度V型表面凹口通过使用氨基合金冷喷涂粉末修复。通过光学和扫描电子显微镜分析所生产的涂层的微观结构行为。通过纳米凸缘和粘合试验评估涂层的机械性能。通过弯曲试验分析涂层的疲劳性能,以便在环状载荷期间评估涂层中的裂纹引发和生长行为。对于不同的凹口几何形状量化了K因子。通常,裂纹生长速率的增加在具有60度V型缺口的那些板中记录;随着测试期间的最大载荷增加,裂纹增长率也会增加。通过疲劳试验后的SEM观察来研究裂化机制。 (c)2017年Elsevier B.V.保留所有权利。

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