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热处理对选择性激光熔化6061铝合金微观结构和力学性能的影响

The Effects of Heat Treatment on Microstructure and Mechanical Properties of Selective Laser Melting 6061 Aluminum Alloy.

作者信息

Liu Wei, Huang Shan, Du Shuangsong, Gao Ting, Zhang Zhengbin, Chen Xuehui, Huang Lei

机构信息

School of Mechanical and Electrical Engineering, Anhui Jianzhu University, Hefei 230601, China.

Key Laboratory of Intelligent Manufacturing of Construction Machinery, Anhui Jianzhu University, Hefei 230601, China.

出版信息

Micromachines (Basel). 2022 Jun 30;13(7):1059. doi: 10.3390/mi13071059.

Abstract

Selective laser melting technology can be used for forming curved panels of 6061 aluminum alloy thermal shield devices for the International Thermonuclear Experimental Reactor (ITER), in order to make the formed parts with better performance. This study proposes different heat treatment processes, including annealed treatment at 300 °C for 2 h, solution treatment at 535 °C and then aging at 175 °C over 2 h, to control the mechanical behavior of the 6061 aluminum alloy samples prepared by selective laser melting (SLM). The mechanical properties such as ductility, tensile strength, and hardness of SLM 6061 aluminum alloy were investigated, and the microstructure of the samples was analyzed. The eutectic silicon skeleton shape disappeared after annealing treatment at 300 °C for 2 h. The tensile strength decreased by 22.86% (from 315 MPa to 243 MPa of the deposited state samples), and the elongation increased from 2.01% to 6.89%. Moreover, the hardness reduced from 120.07 HV to 89.6 HV. After solution aging, the unique microstructure of SLM disappeared. Furthermore, the precipitation of massive Si particles on the α-Al matrix increased, and a trace amount of the MgSi(β) phase was generated. Compared with the deposited samples, the tensile strength decreased by 12.06%, while the hardness of specimens was 118.8 HV. However, the elongation showed a remarkable increase of 297% (from 2.01% to 7.97%). Therefore, solution aging can critically improve the plasticity without losing significant tensile stress in the SLM 6061 aluminum alloy. This study proposes the use of SLM 6061 aluminum alloy for the thermal shields on the ITER and provides a reference for choosing a reasonable heat-treatment method for the optimal performance of the SLM 6061 aluminum alloy.

摘要

选择性激光熔化技术可用于制造国际热核聚变实验堆(ITER)6061铝合金热屏蔽装置的弧形面板,以使成型零件具有更好的性能。本研究提出了不同的热处理工艺,包括在300℃退火2小时、在535℃固溶处理然后在175℃时效2小时以上,以控制通过选择性激光熔化(SLM)制备的6061铝合金样品的力学行为。研究了SLM 6061铝合金的延展性、抗拉强度和硬度等力学性能,并分析了样品的微观结构。在300℃退火2小时后,共晶硅骨架形状消失。抗拉强度下降了22.86%(从沉积态样品的315MPa降至243MPa),伸长率从2.01%增加到6.89%。此外,硬度从120.07HV降至89.6HV。固溶时效后,SLM独特的微观结构消失。此外,α-Al基体上大量Si颗粒的析出增加,并生成了微量的MgSi(β)相。与沉积态样品相比,抗拉强度下降了12.06%,而试样硬度为118.8HV。然而,伸长率显著提高了297%(从2.01%提高到7.97%)。因此,固溶时效可以显著提高SLM 6061铝合金的塑性,而不会损失显著的拉伸应力。本研究提出将SLM 6061铝合金用于ITER的热屏蔽,并为选择合理的热处理方法以实现SLM 6061铝合金的最佳性能提供了参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbe5/9324477/a7224b9e9a1c/micromachines-13-01059-g001.jpg

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