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铜锡合金(Cu-4Sn)在选择性激光熔化中的制造可行性及成型性能

Manufacturing Feasibility and Forming Properties of Cu-4Sn in Selective Laser Melting.

作者信息

Mao Zhongfa, Zhang David Z, Wei Peitang, Zhang Kaifei

机构信息

State Key Laboratory on Mechanical Transmission, Chongqing University, Chongqing 400044, China.

College of Engineering, Mathematics and Physical Sciences, University of Exeter, North Park Road, Exeter EX4 4QF, UK.

出版信息

Materials (Basel). 2017 Mar 24;10(4):333. doi: 10.3390/ma10040333.

Abstract

Copper alloys, combined with selective laser melting (SLM) technology, have attracted increasing attention in aerospace engineering, automobile, and medical fields. However, there are some difficulties in SLM forming owing to low laser absorption and excellent thermal conductivity. It is, therefore, necessary to explore a copper alloy in SLM. In this research, manufacturing feasibility and forming properties of Cu-4Sn in SLM were investigated through a systematic experimental approach. Single-track experiments were used to narrow down processing parameter windows. A Greco-Latin square design with orthogonal parameter arrays was employed to control forming qualities of specimens. Analysis of variance was applied to establish statistical relationships, which described the effects of different processing parameters (i.e., laser power, scanning speed, and hatch space) on relative density (RD) and Vickers hardness of specimens. It was found that Cu-4Sn specimens were successfully manufactured by SLM for the first time and both its RD and Vickers hardness were mainly determined by the laser power. The maximum value of RD exceeded 93% theoretical density and the maximum value of Vickers hardness reached 118 HV 0.3/5. The best tensile strength of 316-320 MPa is inferior to that of pressure-processed Cu-4Sn and can be improved further by reducing defects.

摘要

铜合金与选择性激光熔化(SLM)技术相结合,在航空航天工程、汽车和医疗领域引起了越来越多的关注。然而,由于激光吸收率低和导热性好,SLM成型存在一些困难。因此,有必要探索一种适用于SLM的铜合金。在本研究中,通过系统的实验方法研究了Cu-4Sn在SLM中的制造可行性和成型性能。单道实验用于缩小工艺参数窗口。采用具有正交参数阵列的格雷科-拉丁方设计来控制试样的成型质量。应用方差分析建立统计关系,描述了不同工艺参数(即激光功率、扫描速度和扫描间距)对试样相对密度(RD)和维氏硬度的影响。结果发现,首次通过SLM成功制造出Cu-4Sn试样,其RD和维氏硬度主要由激光功率决定。RD的最大值超过理论密度的93%,维氏硬度的最大值达到118 HV 0.3/5。最佳抗拉强度为316-320 MPa,低于压力加工的Cu-4Sn,可通过减少缺陷进一步提高。

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