Erosion wear investigation of Fe-Cr-Ti coating with varying boron content

R. Sharma, Shiv Ranjan Kumar
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Abstract

The current work examines the role of the addition of boron on the microstructure, mechanical characteristics, and slurry erosion wear behaviour of the Fe-Cr-Ti alloy. Five distinct Fe-Cr-Ti alloy coatings were prepared, each with varying boron contents (ranging from 0% to 20% by weight), and subsequently applied to 316L steel using the HVOF method. The study encompassed an assessment of mechanical characteristics, including hardness, adhesion tensile strength, and fracture toughness, alongside an examination of slurry erosion wear behavior employing a slurry jet erosion wear tester. X-ray diffraction (XRD) analysis confirmed the emergence of Fe2Br, contributing to the enhancement in the mechanical properties. Remarkably, the addition of 5% boron resulted in a notable improvement in the hardness and adhesion tensile strength by 2.3%, and 9% respectively, but a significant improvement in fracture toughness by 45%. As the impact speed increased from 35 m/sec to 70 m/sec and the slurry concentration increased from 10 weight per cent to 20 weight per cent, and wear rate increased by 51% and 37.7%, respectively. Conversely, an elevation in the impingement angle between 30° and 60° led to a 69.5% increase in wear rate, whereas between 60° and 90°, it resulted in a reduction of 19.3%.
不同硼含量的铁-铬-钛涂层的侵蚀磨损研究
本研究探讨了硼的添加对 Fe-Cr-Ti 合金的微观结构、机械特性和浆料侵蚀磨损行为的影响。研究人员制备了五种不同的铁-铬-钛合金涂层,每种涂层的硼含量(按重量计从 0% 到 20% 不等)各不相同,随后使用 HVOF 方法将这些涂层应用于 316L 钢。研究包括对硬度、附着拉伸强度和断裂韧性等机械特性的评估,以及使用浆液喷射侵蚀磨损测试仪对浆液侵蚀磨损行为的检测。X 射线衍射 (XRD) 分析证实,Fe2Br 的出现有助于提高机械性能。值得注意的是,添加 5%硼后,硬度和粘附拉伸强度分别显著提高了 2.3% 和 9%,但断裂韧性显著提高了 45%。当冲击速度从 35 米/秒提高到 70 米/秒,浆料浓度从 10% 提高到 20% 时,磨损率分别提高了 51% 和 37.7%。相反,撞击角度在 30° 至 60° 之间时,磨损率增加了 69.5%,而在 60° 至 90° 之间时,磨损率降低了 19.3%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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