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Processing optimisation, mechanical properties and microstructural evolution during selective laser melting of Cu-15Sn high-tin bronze

机译:Cu-15Sn高锡青铜的选择性激光熔化过程中的工艺优化,机械性能和显微组织演变

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摘要

Selective laser melting (SLM), as a novel additive manufacturing technique, has attracted increasing attention in copper alloys. In this research, to investigate forming processing and attendant mechanical properties of high-tin bronze in SLM, a statistical relationship between processing parameters (laser power, scanning speed and hatch space) and density of Cu-15Sn bronze in SLM was established using an experimental approach with response surface method and analysis of variance. As such, nearly fully-dense SLM Cu-15Sn bronze specimens were firstly manufactured whose reasonable microstructural evolution and mechanical properties were investigated before and after annealing and compared with QSn15-1-1 (GB/T 5231-2012) drawing specimens. It is found that the SLM Cu-15Sn specimens present the significantly fine grain microstructures that consist of cellular and dendritic structures. The ultimate tensile strength varies from ~ 661 MPa to ~ 545 MPa, the elongation at break from ~ 7.4% to >20% and the Vickers hardness ranges from ~ 212 HV 0.3 to ~ 168 HV 0.3 for SLM Cu-15Sn specimens after annealing, which are generally superior to those of QSn15-1-1 specimens. In addition, it has been proposed that the dominated strengthening mechanism of SLM Cu-15Sn parts has transformed from fine-grain to solid solution strengthening after annealing.
机译:选择性激光熔化(SLM)作为一种新颖的增材制造技术,在铜合金中引起了越来越多的关注。在这项研究中,为了研究SLM中高锡青铜的成形加工和伴随的机械性能,通过实验建立了加工参数(激光功率,扫描速度和孵化空间)与SLM中Cu-15Sn青铜密度之间的统计关系。响应面方法和方差分析的方法。因此,首先制造了几乎完全致密的SLM Cu-15Sn青铜试样,其在退火前后研究了合理的组织演变和力学性能,并与QSn15-1-1(GB / T 5231-2012)拉伸试样进行了比较。发现SLM Cu-15Sn样品呈现出明显细小的晶粒微结构,该微结构由细胞和树突状结构组成。 SLM Cu-15Sn试样退火后的极限抗拉强度为〜661 MPa至〜545 MPa,断裂伸长率为〜7.4%至> 20%,维氏硬度为〜212 HV 0.3至〜168 HV 0.3。通常优于QSn15-1-1标本。另外,已经提出,退火后,SLM Cu-15Sn零件的主要强化机制已从细晶粒转变为固溶强化。

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