Quantitative Nondestructive Evaluation of Cold Spray Manufactured Aluminum Alloy 6061 and Copper Samples

IF 3.2 3区 材料科学 Q2 MATERIALS SCIENCE, COATINGS & FILMS
Kishore Kumar Indu Kumar, Mann Baijukumar Patel, Samuel Boese, Andrew Gouldstone, Victor K. Champagne Jr., Ozan Ç. Özdemir
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Abstract

Cold spray (CS) is a solid-state process for depositing thick layers of material via the successive high-velocity impact of powder particles onto a solid surface, which leads to high rates of deformation, interparticle bonding, and coating build-up. Although CS is finding commercial utilization in non-load-bearing repair and coating applications, clear nondestructive characterization procedures are necessary to realize its potential in load-bearing structural applications. In this study, the viability of electrical conductivity and through thickness ultrasound wave velocity measurement methods was studied to serve as a means for nondestructive quantitative measurement for quality control in CS and potentially other additive manufacturing (AM) methods. Eddy current, ultrasound, porosity, hardness, and uniaxial tensile strength tests were conducted on CS deposited layers of aluminum alloy 6061 and copper on aluminum alloy 6061 and commercially pure copper substrates, respectively. CS gas dynamic parameters were intentionally and systematically varied to result in corresponding discrete differences in mechanical properties of deposits. Ultrasound measurements of longitudinal wave velocity and eddy current electrical conductivity measurements showed good correlation with process conditions, microstructural characterization results, and destructive mechanical tests (hardness, tensile). The results of this work show that ultrasound wave velocity and electrical conductivity correlate well with increased particle impact velocity in CS deposited aluminum and copper blocks, which evidently show an incremental decrease in porosity, increase in hardness, and increase in tensile strength. The outlined ultrasound and eddy current nondestructive testing methods present effective means for quantitative assessment of cold spray deposited structures while intact with the substrate.

对冷喷制造的铝合金 6061 和铜样品进行无损定量评估
摘要 冷喷(CS)是一种固态工艺,通过粉末颗粒对固体表面的连续高速冲击来沉积厚层材料,从而产生高变形率、颗粒间结合率和涂层堆积率。虽然希尔思在非承重修复和涂层应用中得到了商业利用,但要实现其在承重结构应用中的潜力,还需要明确的无损表征程序。在这项研究中,研究了电导率和厚度超声波速度测量方法的可行性,以作为 CS 质量控制的无损定量测量手段,并可能用于其他增材制造 (AM) 方法。分别对铝合金 6061 和商业纯铜基底上的希尔思沉积层进行了涡流、超声波、孔隙率、硬度和单轴拉伸强度测试。希尔思气体动态参数被有意系统地改变,从而导致沉积层的机械性能出现相应的离散差异。超声纵波速度测量值和涡流电导率测量值与工艺条件、微结构表征结果和破坏性机械测试(硬度、拉伸)显示出良好的相关性。这项工作的结果表明,超声波速度和电导率与希尔思沉积铝块和铜块中颗粒撞击速度的增加有很好的相关性,这些铝块和铜块的孔隙率明显降低,硬度增加,抗拉强度增加。所概述的超声波和涡流无损检测方法是定量评估冷喷沉积结构的有效手段,同时还能保持其与基体的完好性。
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来源期刊
Journal of Thermal Spray Technology
Journal of Thermal Spray Technology 工程技术-材料科学:膜
CiteScore
5.20
自引率
25.80%
发文量
198
审稿时长
2.6 months
期刊介绍: From the scientific to the practical, stay on top of advances in this fast-growing coating technology with ASM International''s Journal of Thermal Spray Technology. Critically reviewed scientific papers and engineering articles combine the best of new research with the latest applications and problem solving. A service of the ASM Thermal Spray Society (TSS), the Journal of Thermal Spray Technology covers all fundamental and practical aspects of thermal spray science, including processes, feedstock manufacture, and testing and characterization. The journal contains worldwide coverage of the latest research, products, equipment and process developments, and includes technical note case studies from real-time applications and in-depth topical reviews.
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