Study of the properties of silicon bronze-based alloys printed using electron beam additive manufacturing technology

IF 0.4 Q4 METALLURGY & METALLURGICAL ENGINEERING Obrabotka Metallov-Metal Working and Material Science Pub Date : 2023-03-15 DOI:10.17212/1994-6309-2023-25.1-110-130
A. Filippov, E. Khoroshko, N. Shamarin, E. Kolubaev, S. Tarasov
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Abstract

Introduction. Additive technologies make it possible to curb material expenses by reducing allowances for the final dimensional machining of workpieces. For such expensive materials as copper and copper alloys, this method is considerably attractive from a perspective of increasing resource efficiency in production. The operational properties of the C65500 alloy manufactured using additive technologies have not been fully studied and require additional research. The aim of the work is to study the structural and phase state, mechanical and operational properties of C65500 bronze specimens printed using electron beam additive manufacturing technology. In the work, specimens made of C65500 wire with different heat input values are studied, some of which were subjected to thermal treatment and mechanical processing, as well as specimens, manufactured using multi-wire technology. The work uses such research methods as the study of corrosion resistance of bronze specimens using a potentiostat, confocal laser scanning microscopy, friction tests and X-ray phase analysis. Results and discussion. Processing of specimens by plastic deformation (compression) and subsequent annealing leads to the most serious structural changes. Based on X-ray phase analysis, it is found that higher silicon content is observed in the case of the addition of silumins to bronze. The study of mechanical properties shows that the specimens, printed using multi-wire technology, have the highest strength properties. During tribological testing, fluctuations in the value of the friction coefficient are revealed, due to the scheme of the experiment and the combined adhesive-oxidative mechanism of specimens’ wear. The addition of 10 wt.% aluminum filament to bronze in the additive manufacturing process is an effective means for increasing the resistance of the material to electrochemical corrosion and increasing its wear resistance.
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电子束增材制造技术打印硅青铜基合金的性能研究
介绍添加剂技术可以通过减少工件最终尺寸加工的余量来控制材料费用。对于铜和铜合金等昂贵材料,从提高生产资源效率的角度来看,这种方法相当有吸引力。使用添加剂技术制造的C65500合金的操作性能尚未得到充分研究,需要进一步研究。本工作的目的是研究采用电子束增材制造技术印刷的C65500青铜试样的结构和相态、力学性能和操作性能。在这项工作中,研究了具有不同热输入值的C65500线材制成的试样,其中一些试样经过了热处理和机械加工,以及使用多丝技术制造的试样。该工作采用了恒电位仪、共聚焦激光扫描显微镜、摩擦试验和X射线相位分析等研究方法来研究青铜试样的耐腐蚀性。结果和讨论。通过塑性变形(压缩)和随后的退火处理试样会导致最严重的结构变化。基于X射线相分析,发现在青铜中添加硅铝的情况下观察到更高的硅含量。对力学性能的研究表明,使用多丝技术印刷的试样具有最高的强度性能。在摩擦学试验过程中,由于实验方案和试样磨损的粘合剂氧化机制的结合,摩擦系数的值出现了波动。在增材制造工艺中向青铜中添加10wt.%的铝丝是提高材料对电化学腐蚀的抵抗力和提高其耐磨性的有效手段。
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来源期刊
Obrabotka Metallov-Metal Working and Material Science
Obrabotka Metallov-Metal Working and Material Science METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
1.10
自引率
50.00%
发文量
26
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